microsoft/vscode-documentdb · Archived

webview-trpc-messaging

Implements tRPC-based communication between VS Code extension host and React webviews.

First seen Jul 10, 2026

Installation

$ npx skills add microsoft/vscode-documentdb --skill webview-trpc-messaging

Summary

  • Implements tRPC-based communication between VS Code extension host and React webviews.
  • Use when creating new webview procedures (queries, mutations, subscriptions), adding a new webview router, wiring up a webview controller, using the tRPC client from React components, applying telemetry middleware (telemetryMiddlewareBody), or supporting AbortSignal-based cancellation in webview operations.

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More details

Agent compatibility

Declared targets from SKILL.md / docs. Unmarked agents are not listed — the skill may still install via the CLI.

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Repository health

Stars 31
License LICENSE.md
Default branch main
Open issues 121
Status Archived

Package contents

Files included with this skill beyond the listing page.

  • skill md SKILL.md 13,811 B
  • docs SUMMARY.md 425 B

History

  1. First seen on skills.sh
  2. First recorded snapshot · 1 installs

SKILL.md

Webview tRPC Messaging

Type-safe RPC communication between the VS Code extension host (server) and React webviews (client) using tRPC.

Architecture Overview

React Webview (client)                    Extension Host (server)
─────────────────────                     ──────────────────────
useTrpcClient() hook                      WebviewController
  └─ createTRPCClient                       └─ setupTrpc()
       └─ vscodeLink ──── postMessage ────►     ├─ callerFactory(appRouter)
            (send/onReceive)              ◄─────┤   └─ procedure(input)
                                                └─ abort/subscription.stop

Key files (read as needed for implementation details):

File Purpose
@microsoft/vscode-ext-webview (shared) tRPC init via initWebviewTrpc, publicProcedure, router, BaseRouterContext
@microsoft/vscode-ext-webview/host (telemetry) telemetryMiddlewareBody, ProcedureLogger, TelemetryRunner (consumer builds publicProcedureWithTelemetry)
src/webviews/_integration/trpc.ts Consumer tRPC instance: publicProcedureWithTelemetry, the DocumentDB TelemetryRunner, and the RpcEnrichment shape it contributes to ctx.actionContext
src/webviews/_integration/appRouter.ts Root router + publicProcedureWithTelemetry wiring + DocumentDB BaseRouterContext
src/webviews/_integration/configuration.ts Consumer-owned knobs (telemetry namespace, bundle layout, dev-server host)
@microsoft/vscode-ext-webview/host (WebviewController) WebviewController + openWebview factory: WebviewPanel lifecycle, tRPC dispatcher (queries, mutations, subscriptions, abort)
src/webviews/_integration/openAppWebview.ts DocumentDB factory preset that pre-fills router + bundle layout (openAppWebview)
src/webviews/_integration/useTrpcClient.ts React hook providing the tRPC client (pre-typed against AppRouter)
@microsoft/vscode-ext-webview/webview (vscodeLink) Custom tRPC link bridging postMessage transport

Creating a New Router

Each webview maintains its own router. Follow this pattern:

1. Define the router context

Extend BaseRouterContext with view-specific fields:

// src/webviews/documentdb/myView/myViewRouter.ts
import { type BaseRouterContext } from '../../_integration/appRouter';

export type RouterContext = BaseRouterContext & {
  clusterId: string;
  viewId: string;
  databaseName: string;
  // add view-specific fields
};

2. Define procedures

import { z } from 'zod';
import {
  publicProcedure,
  publicProcedureWithTelemetry,
  router,
  type WithTelemetry,
} from '../../_integration/appRouter';
import { type RouterContext } from './myViewRouter';

export const myViewRouter = router({
  // Query with telemetry (preferred for operations that touch external services)
  getData: publicProcedureWithTelemetry.input(z.object({ id: z.string() })).query(async ({ input, ctx }) => {
    const myCtx = ctx as WithTelemetry<RouterContext>;
    // Instrumented procedure: myCtx.actionContext (the full IActionContext) is present.
    myCtx.actionContext.telemetry.properties.itemId = input.id;
    // myCtx.signal is the AbortSignal for cancellation
    return { data: 'result' };
  }),

  // Mutation without telemetry (rare, use for fire-and-forget)
  doAction: publicProcedure.input(z.string()).mutation(({ input }) => {
    // lightweight operation
  }),
});

3. Register in appRouter

// src/webviews/_integration/appRouter.ts
import { myViewRouter } from '../../documentdb/myView/myViewRouter';

export const appRouter = router({
  common: commonRouter,
  mongoClusters: {
    documentView: documentViewRouter,
    collectionView: collectionViewRouter,
    myView: myViewRouter, // <-- add here
  },
});

4. Create the controller

Construction-only panels are opened with a factory function that builds the config + router context and calls the openAppWebview preset (which pre-fills the app router, caller factory, and bundle layout):

// src/webviews/documentdb/myView/myViewController.ts
import * as vscode from 'vscode';
import { API } from '../../../DocumentDBExperiences';
import { type AppWebviewController, openAppWebview } from '../../_integration/openAppWebview';
import { type RouterContext } from './myViewRouter';

export function openMyViewPanel(initialData: MyViewConfig): AppWebviewController<MyViewConfig> {
  const title = `${initialData.databaseName}`;

  const trpcContext: RouterContext = {
    dbExperience: API.DocumentDB,
    webviewName: 'myView',
    clusterId: initialData.clusterId,
    viewId: initialData.viewId,
    databaseName: initialData.databaseName,
  };

  return openAppWebview({
    title,
    webviewName: 'myView',
    config: initialData,
    context: trpcContext,
  });
}

The returned AppWebviewController handle exposes panel, onDisposed, revealToForeground, isDisposed, and dispose. Genuinely stateful panels may still extend WebviewController from @microsoft/vscode-ext-webview/host directly instead of using the factory.

Important: The webviewName field passed to openAppWebview is the
registry key (viewType, must match a key in WebviewRegistry, e.g.
collectionView). The webviewName in the tRPC context is a **telemetry
label** used in telemetry event names. These may be the same string but serve
different purposes -- do not confuse them.

5. Register in WebviewRegistry

Add your React component to the registry. The key must match the webviewName passed to openAppWebview (viewType). The WebviewName type (exported from the same file) ensures compile-time validation of webview names.

// src/webviews/_integration/WebviewRegistry.ts
import { MyView } from '../../documentdb/myView/MyView';

export const WebviewRegistry = {
  collectionView: CollectionView,
  documentView: DocumentView,
  myViewName: MyView, // <-- add your entry
} as const;

export type WebviewName = keyof typeof WebviewRegistry;

Telemetry: publicProcedure vs publicProcedureWithTelemetry

Base When to use ctx.actionContext
publicProcedure Fire-and-forget, no external calls, telemetry reported separately absent (do not read it)
publicProcedureWithTelemetry Default choice. Any procedure touching DB, network, or user-visible work Guaranteed, injected by the DocumentDB TelemetryRunner

publicProcedureWithTelemetry is publicProcedure.use(telemetryMiddlewareBody(documentDbTelemetryRunner, ...)) (built in trpc.ts). The framework's telemetryMiddlewareBody delegates to the DocumentDB TelemetryRunner, which wraps the call in callWithTelemetryAndErrorHandling, contributes the full IActionContext to ctx.actionContext, auto-generates a telemetry event named documentDB.rpc.{type}.{path}, and records errors, duration, and abort status.

actionContext is not a field on the base RouterContext — it is an additive enrichment. Narrow to WithTelemetry<RouterContext> (= RouterContext & { actionContext }) in an instrumented procedure to read it; a plain publicProcedure procedure narrows to bare RouterContext, so reading actionContext there is a compile error instead of a runtime undefined.

Access telemetry safely:

const myCtx = ctx as WithTelemetry<RouterContext>;
myCtx.actionContext.telemetry.properties.myCustomProp = 'value';
myCtx.actionContext.telemetry.measurements.itemCount = items.length;

AbortSignal Support

Every tRPC operation (query, mutation, subscription) receives its own AbortController. Cancellation flows:

Client (React)                              Server (Extension Host)
──────────────                              ──────────────────────
// Queries/Mutations:
ac = new AbortController()
trpcClient.myProc.query(input,
  { signal: ac.signal })
ac.abort()  →  sends 'abort' msg  →  abortController.abort()
                                        → ctx.signal.aborted = true

// Subscriptions:
sub = trpcClient.mySub.subscribe(...)
sub.unsubscribe()  →  'subscription.stop'  →  abortController.abort()

Using abort in procedures

// Pass signal to APIs that accept it (MongoDB driver, fetch, etc.)
getData: publicProcedureWithTelemetry
    .input(z.object({ filter: z.record(z.unknown()) }))
    .query(async ({ input, ctx }) => {
        const myCtx = ctx as RouterContext;

        // Option 1: Pass to driver (preferred)
        const cursor = collection.find(input.filter, { signal: myCtx.signal });

        // Option 2: Manual check in loops
        for (const item of items) {
            if (myCtx.signal?.aborted) return;
            await processItem(item);
        }
    }),

Client-side abort

const trpcClient = useTrpcClient();
const abortControllerRef = useRef<AbortController>();

const runQuery = async () => {
  abortControllerRef.current?.abort(); // cancel previous
  const ac = new AbortController();
  abortControllerRef.current = ac;

  const result = await trpcClient.mongoClusters.collectionView.myQuery.query(input, { signal: ac.signal });
};

When publicProcedureWithTelemetry detects an aborted signal, the DocumentDB TelemetryRunner sets telemetry.properties.aborted = 'true' and result = 'Canceled' automatically.

Subscriptions

Subscriptions stream multiple values from server to client using async generators:

// Server (router)
streamData: publicProcedureWithTelemetry
    .input(z.object({ batchSize: z.number() }))
    .subscription(async function* ({ input, ctx }) {
        const myCtx = ctx as RouterContext;

        for (let i = 0; i < total; i += input.batchSize) {
            if (myCtx.signal?.aborted) return; // check before each yield
            const batch = await fetchBatch(i, input.batchSize);
            yield batch;
        }
    }),

// Client (React)
const sub = trpcClient.mongoClusters.myView.streamData.subscribe(
    { batchSize: 100 },
    {
        onData(batch) { /* handle each batch */ },
        onComplete() { /* all done */ },
        onError(err) { /* handle error */ },
    },
);

// To stop:
sub.unsubscribe();

Client-Side Hook Usage

import { useTrpcClient } from '../_integration/useTrpcClient';
import { useConfiguration } from '@microsoft/vscode-ext-webview/react';

export const MyComponent = () => {
  const trpcClient = useTrpcClient();
  const config = useConfiguration<MyViewConfig>();

  useEffect(() => {
    trpcClient.mongoClusters.myView.getData.query({ id: config.documentId }).then(setData);
  }, []);
};

useConfiguration<T>() retrieves the initial config passed to WebviewController constructor (serialized via encodeURIComponent(JSON.stringify(...))).

Common Pitfalls

  • Never use any in procedure context casts — narrow with ctx as WithTelemetry<RouterContext> when the procedure reads telemetry (ctx.actionContext.telemetry), or ctx as RouterContext otherwise
  • Always prefer publicProcedureWithTelemetry unless you have a specific reason not to
  • Always check myCtx.signal?.aborted in long-running loops — not checking causes wasted work after client cancels
  • Do not mutate the shared context objectWebviewController clones it per-operation already, but router code should treat ctx as read-only
  • Input validation uses zod — always define .input(z.object({...})) for type safety
  • The commonRouter handles cross-cutting concerns (error reporting, telemetry events, surveys, URL opening) — do not duplicate these in view-specific routers