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* improve(ui): consolidate dashboard chat visibility into one Chat/Split/Dashboard toggle The dashboard face spread chat visibility across three separate affordances: a two-option face toggle, an icon-only dock dropdown among the header actions, and a floating vertically-rotated "Show chat" button on the board edge that users could not discover. One concept, three controls. The header now renders a single segmented control - Chat | Split | Dashboard - where Split is dashboard plus docked chat and Dashboard is board-only (the former "Hide chat"). A compact caret attached to the pill picks the dock side (left/right/bottom) and only appears in Split mode when dock mutation is allowed; read-only sessions keep the plain two-option Chat | Dashboard toggle. The floating reopen button, the standalone dock menu button, and their CSS (including the mobile overrides) are deleted, so the header ends up with fewer buttons than before. Verified in the mock-gateway dev harness: mode mapping, caret dropdown, unhide-to-remembered-side, and hidden dock rendering board-only. * fix(ci): unexport board dock settings union and repair stale plugin-sdk baseline BoardVisibleChatDock lost its last external consumer when the board view switch consolidated dock controls; keep it file-local so the production unused-export scan stays clean. Also regenerate docs/.generated/plugin-sdk-api-baseline.sha256: the session-catalog module hash was stale on main (check fails on clean origin/main after the agent-attribution reverts), which blocks every PR's check-plugin-sdk-api-baseline job. * docs(web): describe the Chat/Split/Dashboard switch and dock-side picker
373 lines
22 KiB
Markdown
373 lines
22 KiB
Markdown
---
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summary: "Session dashboards: architecture and implementation plan (technical design, pre-GA)"
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read_when:
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- Implementing or reviewing the session dashboard (boards) feature
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- Changing widget hosting, the widget bridge, or board storage
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title: "Dashboard Architecture"
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---
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<Note>
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Technical design document for the session dashboard feature, written before and
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during implementation. It is the source of truth for the build-out. When the
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feature ships, `/web/dashboard` becomes the user-facing page and this page stays
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as the architecture reference.
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</Note>
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## Vision
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Working with an agent today is a text stream. The dashboard makes it a
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workbench: the agent renders live, interactive widgets; the user pins them onto
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a persistent surface; chat docks to the side (or hides) and the main content is
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the board. You go from "talking to the agent" to "operating a control panel the
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agent built for you" without ever leaving the session.
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Principles:
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- **A board is a face of a session, not a new object.** Every session (thread)
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has two faces: the transcript and the board. A session with no pinned widgets
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is plain chat. Pin one widget and the board exists. Boards inherit the
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session's identity, agent ownership, naming, pinning, and lifecycle. There is
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no `dashboard_create`, no board registry, no separate ACL model.
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- **Agent parity.** Everything the user can do on a board, the agent can do
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with tools: add/update/remove widgets, arrange them, manage tabs, switch the
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visible tab, dock or hide the chat.
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- **Native, not embedded.** The board is Lit components in the Control UI shell
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(the same design system as the rest of the app). Only widget _content_ is
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sandboxed in iframes. No URL bar, no browser chrome.
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- **Small agent surface.** Widgets are addressed by stable name and updated in
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place. Layout is a fluid auto-compacting grid; the agent speaks sizes and
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anchors, never pixels or coordinates.
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- **Capabilities over trust.** Widget code is arbitrary agent-authored HTML/JS
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in a hard sandbox. Reach (gateway data, actions, network) exists only through
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a declared, operator-granted capability manifest.
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## Concepts
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| Concept | Definition |
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| ------------------- | ----------------------------------------------------------------------------------------------------------------------------------------------------------------- |
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| Session (thread) | Existing gateway session, keyed by stable `sessionKey`. Owned by an agent. |
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| Board | The widget face of one session. Exists iff the session has widgets/tabs. Survives `/new`/`/reset` (attached to `sessionKey`, not the transcript). |
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| Tab | A presentation page of a board: which widgets, their arrangement, and the chat dock state (`left`/`right`/`bottom`/`hidden`). Boards start with one implicit tab. |
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| Widget | Named, sandboxed HTML/JS program owned by the session. Addressed as `sessionKey` + `name`. Updated in place by name. |
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| Capability manifest | Per-widget declaration of reach: `data` (read bindings), `actions` (allowlisted verbs), `prompt` (send to session), `net` (allowed origins). |
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| Pin (widget) | Moving a transcript widget onto the session's board (user affordance or agent tool arg). Unpin removes it from the board. |
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| Pin (session) | Existing sidebar pinning of sessions. A pinned session with a board opens on its board face. |
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## UX flows
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- **Graduation:** agent calls `show_widget` in any chat → widget renders inline
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in the transcript exactly as today → hover shows **Pin to dashboard** → widget
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appears on the session's board. The agent can pass `pin: true` to do the same.
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- **Board view:** a session with a board gets a view switch (Chat / Split /
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Dashboard). Split = tab strip (only when >1 tab) + fluid grid + docked chat
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pane; Dashboard is the same without the chat. The chat dock is resizable and
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movable (left/right/bottom) via the switch's dock picker. Per-tab dock state
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is remembered.
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- **Drag:** user drags widgets; grid auto-compacts (widgets float up, neighbors
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reflow). Resize by handle snaps to size steps. No pixel placement — for
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anyone.
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- **Reset warning:** `/new` / `/reset` on a board-bearing session asks for
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confirmation in the web UI ("context resets, the dashboard stays") and keeps
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the board.
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- **Sidebar:** pinned sessions render their board face when they have one.
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The Home session's board is the default "agent dashboard".
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- **Interactions** (three tiers, see below): silent state events, visible
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prompt sends, and automation triggers.
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## Interaction tiers
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1. **State events (default).** Widget UI interactions the model should know
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about but not respond to. `bridge.emitState({...})` appends a structured
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session notice (same mechanism as group-activity notices). No agent turn is
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started; the model sees accumulated notices on its next run.
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2. **Prompts (explicit talk).** `bridge.sendPrompt(text)` — requires user
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activation; sends a visible user message into the session (the docked chat
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shows it). Rate-limited; each send is user-confirmed unless the widget holds
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the `prompt` capability grant.
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3. **Automation.** `bridge.runAction(name, args)` — fires a manifest-declared
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action. Initial verb set: `cron.trigger` (run an existing cron job now) and
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`binding.refresh`. Cron jobs already run in visible, isolated run-sessions
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and can use a cheaper model: that is the "small model powers the widget"
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path. No hidden sessions anywhere.
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## Widget model and hosting
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Widget HTML/JS is authored by the agent (typically via `show_widget`), wrapped
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in the standard document shell (CSP meta, size reporter, bridge bootstrap) and
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rendered in `<iframe sandbox="allow-scripts">` (never `allow-same-origin`).
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- **Inline (transcript) widgets** keep the current canvas-document pipeline:
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written under the state dir, served by the gateway, pruned per scope, no
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approval (they are capless by construction — prompt sends are user-confirmed).
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- **Board widgets** are session state: bytes live in the owning agent's SQLite
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DB (`board_widgets`), served by a core gateway route
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(`/__openclaw__/board/<agentId>/<sessionKey>/<name>/`) that reads the DB.
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Pinning a transcript widget copies the bytes. Caps: 256 KB per widget,
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48 widgets per board.
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- **Update in place:** re-emitting a widget with the same `name` replaces the
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bytes, bumps `revision`, broadcasts `board.changed`, and live views reload
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that iframe only.
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- **Byte freezing:** granted capabilities bind to the sha256 of the widget
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bytes. Changing bytes keeps `data`/`net`/`actions` grants only if the new
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revision declares a subset of the granted manifest; a widened manifest
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re-prompts the operator.
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### Widgets host content; MCP apps are one content kind
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The **widget is the OpenClaw primitive**: the named, pinned, sized,
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session-owned board cell with a grant record. What renders inside it is a
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content kind:
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- `html` — agent-authored via `show_widget`, bytes in board storage.
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- `mcp-app` — a third-party MCP app view (`ui://` resource from a configured
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server) hosted inside the widget cell.
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MCP apps do not define the widget model; widgets gained the ability to host
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them. Identity, placement, pinning, grants, and the author-facing API stay
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OpenClaw's — so `show_widget` code stays as short as it is today and never
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needs to know the MCP Apps spec exists.
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Shared infrastructure underneath (this is where the simplification lands):
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- **One sandbox host.** `html` widgets render through the same hardened
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pipeline MCP apps shipped with (double-iframe on the dedicated sandbox
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origin, per-widget CSP declared and fail-closed decoded) instead of a second
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bespoke iframe host. The proxy receives HTML by value, so local content is
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the natural case.
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- **One authorization model.** A widget's reach is a granted allowlist,
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whatever its kind: for `html` widgets, host tools; for `mcp-app` widgets,
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the server's app-visible tools (via the existing `allowedAppToolNames`
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mechanism, made durable per widget instead of per-minting-run).
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- **Host tools for `html` widgets** (exposed over the widget bridge, checked
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against the grant):
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- `openclaw.prompt.send` — tier 2; routed through the visible composer,
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user-confirmed unless granted
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- `openclaw.state.emit` — tier 1 session notices (coalesced, size-capped)
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- `openclaw.data.read` — parameterized read-only bindings (existing
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allowlisted read RPC set), resolved gateway-side
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- `openclaw.cron.trigger` — tier 3 automation
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- **`net` = CSP.** Network reach uses the already-shipped per-widget CSP
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declaration (`connect-src` origins) — the self-updating weather widget
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fetches its API directly from the sandbox, no gateway involvement.
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- **Grants.** A widget declaring nothing renders immediately (sandboxed,
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`default-src 'none'`, prompt sends individually confirmed) — same trust as
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today's inline chat widgets. Declared tools/origins put the widget in
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`pending` on the board: a placeholder card lists them human-readably with
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one-tap **Allow**/**Reject**. Grants are per widget name; for `html` widgets
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they are byte-frozen (sha256), and changed bytes keep the grant only if the
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declaration shrank.
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- **Authoring shim.** The document wrapper injects `window.openclaw.prompt`,
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`window.openclaw.state`, `window.openclaw.data`, and `window.openclaw.cron`
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as the stable author API. Dashboard calls share one view-ticket-bound
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request channel; size reporting and theme tokens remain separate host
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notifications.
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### Plugin capability declarations
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Enabled plugins can extend the widget host through `dashboard.dataBindings`
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and `dashboard.actionVerbs` in `openclaw.plugin.json`. Plugin-local ids become
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grant names prefixed by the plugin id, such as `workboard.cards.list` and
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`workboard.dispatch`; `%` and `.` in the plugin-id segment are escaped so a
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different plugin/local-id split cannot inherit the same persisted grant. During
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plugin registration, OpenClaw verifies that every binding targets an RPC
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registered by the same plugin with `operator.read` and every action targets one
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with `operator.write`; invalid declarations fail the plugin load. The validated
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registry is rebuilt only with plugin lifecycle changes, while widget grants
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remain per-widget and byte-and-revision-bound.
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### Modeled residual: WebRTC data channels
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The sandbox CSP emits the proposed `webrtc 'block'` directive, but
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[Chromium's current CSP directive set](https://chromium.googlesource.com/chromium/src/+/main/services/network/public/mojom/content_security_policy.mojom#95)
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does not implement it. Scriptable widgets can therefore use WebRTC data
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channels for egress in current Chromium. The same residual already ships for
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inline chat widgets and the MCP Apps host on `main`.
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**Accepted tradeoff:** OpenClaw does not gate scriptable widgets on this
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residual. Widget content gains access to sensitive OpenClaw data only through
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an operator-granted, byte-frozen `data:read` capability, and the sandbox
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Permissions Policy blocks camera and microphone access. A DOM API guard is
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best-effort defense-in-depth, not a security boundary, and belongs in
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follow-up hardening.
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### Transcript display: one widget card
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Inline display unifies on the widget primitive. When a tool result carries UI —
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`show_widget` output or an MCP tool result with an app resource — the system
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materializes an **ephemeral, auto-named widget** (session-scoped, pruned) and
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the transcript renders a single widget card that dispatches on content kind.
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MCP app auto-display stays exactly as the spec expects (zero extra model work);
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it just _is_ a widget underneath. This deletes the parallel `mcpApp`
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special-cases in chat rendering (surface gating, separate dedup), gives every
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inline UI the same pin affordance, and makes the widget registry the primary
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re-open path (transcript-scan reconstruction stays as fallback for never-pinned
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history). The read-only ticketed standalone host overlaps with boards as a
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persistent re-open surface — consolidation candidate to evaluate in T6, not
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assumed.
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Composition: v1 is grid adjacency (agent chrome widget next to an app widget on
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one tab). v2 adds **host-managed app slots** — agent widget HTML declares a
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slot region and the host composites the real app view as a sibling sandbox.
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The app never renders inside the agent's iframe: nesting would break bridge
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identity and enable overlay/clickjack of granted app UI, so the slot is a
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layout contract, not an embed.
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### Server-sourced widgets (pinned MCP apps)
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With the unified host, pinning a third-party MCP app is just a widget whose
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content is fetched from the server instead of stored: `board_widgets` keeps the
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descriptor (`serverName`, `toolName`, `uiResourceUri`, originating
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`toolCallId` + `sessionKey`) instead of HTML bytes, and the board re-mints the
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view lease past the chat-turn 10-minute TTL (re-fetching the `ui://` resource
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on staleness). Chat inline MCP app views get the same **Pin to dashboard**
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affordance as agent widgets. Re-opened views are read-only today by design;
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pinned apps that should stay interactive get a durable grant over the server's
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app-visible tools (explicit allowlist shown to the operator on pin), decoupled
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from the minting run. Ungranted pins stay read-only — still useful for display
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dashboards. v1 pins to the originating session's board; cross-session pinning
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needs a lease broker and waits. Coordinate with open PR #109807 (`ui/message`
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composer routing, theme/size propagation).
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### WorkBoard integration
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The WorkBoard integration program keeps cards and boards plugin-owned while stitching dispatched cards back to their session boards through the existing `sessionKey` and `runId`, exposing WorkBoard feeds and dispatch through plugin-declared bindings and actions, and composing those results with the existing `html` and `mcp-app` widget kinds instead of introducing a WorkBoard-specific widget type.
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## Layout: fluid grid
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12 columns, fixed row height, **auto-compacting** (gravity-up, push-aside on
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drag — gridstack semantics, implemented natively; grid math stays pure and
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DOM-free). Widget layout state per tab: `{ name, w (1-12), h (rows) }` plus
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order. Agent vocabulary:
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- `size`: `sm` (3×3) · `md` (6×4) · `lg` (8×6) · `xl` (12×8) · `full`
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(single-widget tab)
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- `after: <widgetName>` optional ordering anchor; omitted = append
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- User drags/resizes freely; the same order+size model round-trips.
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## Data model (per-agent DB)
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New tables in `agents/<agentId>/agent/openclaw-agent.sqlite`
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(**requires an agent-DB schema-version bump — operator sign-off required
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before this lands**):
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```sql
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CREATE TABLE board_tabs (
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session_key TEXT NOT NULL,
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tab_id TEXT NOT NULL, -- slug
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title TEXT NOT NULL,
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position INTEGER NOT NULL,
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chat_dock TEXT NOT NULL DEFAULT 'right', -- left|right|bottom|hidden
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created_by TEXT NOT NULL, -- 'user' | 'agent'
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PRIMARY KEY (session_key, tab_id)
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) STRICT;
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CREATE TABLE board_widgets (
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session_key TEXT NOT NULL,
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name TEXT NOT NULL, -- stable widget name
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tab_id TEXT NOT NULL,
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title TEXT,
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html BLOB NOT NULL, -- wrapped document source
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sha256 TEXT NOT NULL,
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revision INTEGER NOT NULL,
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size_w INTEGER NOT NULL,
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size_h INTEGER NOT NULL,
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position INTEGER NOT NULL, -- order within tab (auto-compact input)
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manifest TEXT NOT NULL DEFAULT '{}', -- capability manifest JSON
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grant_state TEXT NOT NULL DEFAULT 'none', -- none|pending|granted|rejected
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granted_sha TEXT, -- byte-frozen grant
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created_by TEXT NOT NULL,
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created_at INTEGER NOT NULL,
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updated_at INTEGER NOT NULL,
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PRIMARY KEY (session_key, name)
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) STRICT;
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```
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Board existence = any rows for the `sessionKey`. Deleting a session deletes its
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board rows. `/new`/`/reset` does not touch them.
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## Protocol surface
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RPCs (core method table, typebox schemas in `gateway-protocol`):
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- `board.get { sessionKey }` → tabs + widget metadata (no bytes) — `operator.read`
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- `board.update { sessionKey, ops[] }` — tab CRUD/reorder, widget move/resize/
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remove/unpin, dock state, focus-tab — `operator.write`
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- `board.widget.put { sessionKey, name, html, manifest, placement }` —
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`operator.write` (agent tool path and pin path)
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- `board.widget.grant { sessionKey, name, decision }` — `operator.approvals`
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- `board.event { ticket, payload }` — ticket-bound tier-1 state event ingest;
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the legacy trusted-host `{ sessionKey, widget, payload }` shape remains —
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`operator.write`
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- `board.prompt.authorize { ticket }` — returns whether a visible prompt send
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still needs per-click confirmation — `operator.read`
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- `board.data.read { ticket, bindingId, params? }` — gateway-side allowlisted
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core or active-plugin read binding resolution — `operator.read`
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- `board.action { ticket, action, ... }` — exact-grant automation dispatch
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through the existing cron run-now path or an active plugin's validated action
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verb — `operator.write`
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Events (in `EVENT_SCOPE_GUARDS`, read scope):
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- `board.changed { sessionKey, revision, widget? }` — persisted state changed;
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UI refetches (and reloads one iframe when `widget` is present).
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- `board.command { sessionKey, command }` — transient UI drive (agent switches
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the visible tab, toggles chat dock) — the `ui.command` pattern.
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Widget bytes are served over the authenticated HTTP surface, not the socket.
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## Agent tools
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Three tools total (core, always registered; rendering gated on the
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`inline-widgets` client cap as today):
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- `show_widget { title, widget_code, name?, pin?, size?, tab?, after?,
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capabilities? }` — create/update by name; `pin` places it on the board.
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Without `name`/`pin` it behaves exactly like today (inline, ephemeral).
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- `dashboard { action, ... }` — board management verbs: `read`, `tab_create`,
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`tab_update`, `tab_delete`, `tabs_reorder`, `widget_move`, `widget_remove`,
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`unpin`, `focus_tab`, `set_chat_dock`.
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- The existing `automations` tool covers the automation tier; no new tool needed.
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Tool descriptions teach the size/anchor vocabulary and the tier model. The
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agent is told about user tier-1 events via session notices, e.g.
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`[dashboard] user clicked "Refresh" on widget weather (tab main)`.
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## What this replaces
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- **`extensions/workspaces` is deleted.** Experimental, `enabledByDefault:
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false`, never in a stable release (first appeared in 2026.7.2 betas). No
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migration; a doctor rule removes stale `<stateDir>/workspaces/` if present.
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Harvested ideas: pure grid math, bridge security model (port bootstrap,
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binding gating, rate limits), byte-frozen approval.
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- **Widget hosting moves from `extensions/canvas` to core.** The canvas doc
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store, document wrapper, HTTP serving, and the `show_widget` tool become core
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(`src/canvas/`); the plugin keeps the node-canvas control tool (`canvas`) and
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A2UI. The `pluginSurfaceUrls["canvas"]` advertisement and
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`/__openclaw__/canvas` paths are shipped native-client contracts and stay
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stable. Discord sessions keep the Discord-owned `show_widget` variant.
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## Non-goals (this program)
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- Multi-user board sharing/ACLs (future; will arrive via session sharing).
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- Native macOS/iOS board rendering (they get it wherever they embed the
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Control UI; the inline-widget path is unchanged).
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- Builtin data widgets (sessions/usage/cron cards) — the capability bridge plus
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agent-authored widgets cover v1; a builtin kind registry can come later.
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## Implementation plan
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Independent worktrees, Codex-built, review+land sequentially. Land-then-fix.
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| # | Branch | Scope | Depends on |
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| --- | ------------------------------------ | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- | -------------------------------- |
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| T1 | `claude/dashboard-remove-workspaces` | Delete workspaces plugin + UI + docs + i18n keys; doctor cleanup rule | — |
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| T2 | `claude/dashboard-canvas-core` | Promote widget hosting + `show_widget` to core; canvas plugin keeps node tool; zero behavior change | — |
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| T3 | `claude/dashboard-domain` | Agent-DB tables (schema bump), `board.*` RPCs + events, `dashboard` tool, `show_widget` pin/name/manifest args, tier-1 notices, reset-keeps-board | T2 |
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| T4 | `claude/dashboard-ui` | Board face + tab strip + fluid auto-compact grid + chat dock (left/right/bottom/hidden) + transcript pin affordance + sidebar board face + reset confirm | T3 (mock-first via dev fixtures) |
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| T5 | `claude/dashboard-capabilities` | Grant store/UI + byte freezing; move `html` widgets onto the shared sandbox host; host tools (`openclaw.prompt.send/state.emit/data.read/cron.trigger`); `net` CSP; authoring shim | T3, T4 |
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| T7 | `claude/dashboard-mcp-apps` | `mcp-app` content kind: pin affordance on inline app views, descriptor storage, lease re-mint/refresh, durable server-tool grants (reuses shipped MCP Apps host) | T3, T4 |
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| T6 | polish | Live E2E on a scratch gateway (real keys), screenshots, fixes, user-focused `/web/dashboard` rewrite, enable-by-default review | all |
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Validation per repo rules: focused vitest locally, full gates on
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Crabbox/Testbox, `$autoreview` before every land, live proof for T6.
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