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* feat(skills): add dotnet-mcp-builder, deprecate csharp-mcp-server-generator Adds a comprehensive skill for building MCP (Model Context Protocol) servers in C#/.NET against the official ModelContextProtocol 1.x NuGet packages. Covers both transports (STDIO, Streamable HTTP — SSE is deprecated) and every primitive in the current MCP spec (2025-11-25): tools, prompts, resources, elicitation (form + URL mode), sampling, roots, completions, logging, and MCP Apps. Includes a thin .NET MCP client reference and testing guidance (MCP Inspector + in-memory transport for unit tests). Steers the model toward the current stable 1.x packages instead of the 0.x previews it tends to pin by default, and enforces the STDIO stdout/stderr trap. Also deprecates the existing csharp-mcp-server-generator skill, which predates ModelContextProtocol 1.0 and only covered a subset of the current spec. Its SKILL.md now redirects users to dotnet-mcp-builder so existing install URLs keep working without surprises. * fix: address PR review from aaronpowell - Delete csharp-mcp-server-generator skill (rather than deprecating it) - Update mcp-apps.md pitfalls section to reference .NET Tool.Meta type instead of the serialized _meta JSON property names - Rebuild docs/README.skills.md Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com> * chore: remove C# MCP development plugin files * chore: remove csharp-mcp-development plugin entry from marketplace --------- Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
221 lines
8.9 KiB
Markdown
221 lines
8.9 KiB
Markdown
# MCP Apps (interactive UI)
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[MCP Apps](https://modelcontextprotocol.io/extensions/apps/overview) is the official extension that lets a tool return an **interactive UI** rendered in a sandboxed iframe inside the host (Claude, Claude Desktop, VS Code Copilot, Goose, Postman, MCPJam). Typical use cases: charts, dashboards, multi-step forms, 3D viewers, real-time monitors, PDF/video viewers.
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> **Important:** as of early 2026, the C# SDK does **not** ship a typed convenience layer for MCP Apps (tracked in [csharp-sdk#1431](https://github.com/modelcontextprotocol/csharp-sdk/issues/1431)). You implement the spec by hand: serve a `ui://` resource and emit the right `_meta` on the tool. It's not hard — just untyped. This page shows you the pattern.
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## How it works (short version)
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1. You register a **resource** at a `ui://` URI returning an HTML bundle.
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2. You register a **tool** whose definition includes `_meta.ui.resourceUri` pointing to that URI.
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3. When the LLM calls the tool, the host fetches the UI resource and renders it in a sandboxed iframe in the chat.
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4. The HTML talks to the host over `postMessage` JSON-RPC (use `@modelcontextprotocol/ext-apps` from the bundle, or hand-roll it).
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5. The app can call back into your MCP server (any tool), update the model context, etc.
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The full protocol spec is at [`@modelcontextprotocol/ext-apps`](https://github.com/modelcontextprotocol/ext-apps).
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## Step 1: Serve the UI resource
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Bundle your HTML/JS/CSS into a single string (or load from `wwwroot`). Serve it at a `ui://` URI.
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```csharp
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using System.ComponentModel;
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using System.IO;
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using System.Reflection;
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using ModelContextProtocol.Protocol;
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using ModelContextProtocol.Server;
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[McpServerResourceType]
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public static class ChartUiResource
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{
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[McpServerResource(
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UriTemplate = "ui://charts/interactive",
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Name = "Interactive chart",
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MimeType = "text/html+skybridge")] // see "MIME type" note below
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[Description("UI bundle for the interactive chart MCP App.")]
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public static TextResourceContents GetUi()
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{
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// Load a bundled HTML/JS file from embedded resources or wwwroot.
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var html = LoadEmbeddedString("MyMcpServer.AppUi.chart.html");
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return new TextResourceContents
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{
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Uri = "ui://charts/interactive",
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MimeType = "text/html+skybridge",
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Text = html
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};
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}
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private static string LoadEmbeddedString(string resourceName)
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{
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var asm = Assembly.GetExecutingAssembly();
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using var stream = asm.GetManifestResourceStream(resourceName)
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?? throw new InvalidOperationException($"Missing embedded resource {resourceName}");
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using var reader = new StreamReader(stream);
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return reader.ReadToEnd();
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}
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}
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```
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**MIME type note:** the spec uses `text/html+skybridge` for app HTML so hosts can distinguish UI bundles from regular `text/html` previews. Use that, even though plain `text/html` may work today on lenient hosts.
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## Step 2: Emit `_meta` on the tool
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The C# SDK's `[McpServerTool]` doesn't expose `_meta` in the attribute today, so set it via the lower-level `Tool` definition. Do this once at startup:
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```csharp
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using ModelContextProtocol.Protocol;
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using ModelContextProtocol.Server;
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using System.Text.Json;
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using System.Text.Json.Nodes;
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builder.Services.Configure<McpServerOptions>(options =>
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{
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options.Capabilities ??= new();
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options.Capabilities.Tools ??= new();
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// Define the tool manually so we can attach _meta.
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var visualizeTool = new Tool
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{
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Name = "visualize_data",
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Description = "Visualize the user's data as an interactive chart.",
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InputSchema = JsonDocument.Parse("""
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{
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"type": "object",
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"properties": {
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"datasetId": { "type": "string", "description": "Dataset to visualize." }
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},
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"required": ["datasetId"]
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}
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""").RootElement,
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Meta = new JsonObject
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{
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["ui"] = new JsonObject
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{
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["resourceUri"] = "ui://charts/interactive"
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// Optionally:
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// ["csp"] = new JsonObject { ["default-src"] = "'self' https://cdn.example.com" },
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// ["permissions"] = new JsonArray("clipboard-write")
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}
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}
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};
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// Implement the call handler that returns the data the UI will render.
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options.Capabilities.Tools.ToolCollection ??= new();
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options.Capabilities.Tools.ToolCollection.Add(McpServerTool.Create(
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async (CallToolRequestParams req, CancellationToken ct) =>
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{
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var args = req.Arguments ?? new();
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var datasetId = args["datasetId"]!.GetValue<string>();
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var data = await LoadDataset(datasetId, ct);
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return new CallToolResult
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{
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Content = [new TextContentBlock { Text = JsonSerializer.Serialize(data) }],
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StructuredContent = JsonSerializer.SerializeToNode(data)
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};
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},
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visualizeTool));
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});
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```
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If you don't need full structured content, the tool can return *just* JSON in a text block — the UI fetches it via `app.callServerTool(...)` after rendering.
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### Backwards compatibility key
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Some older hosts expect `_meta["ui/resourceUri"]` instead of `_meta.ui.resourceUri`. Set both for safety:
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```csharp
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Meta = new JsonObject
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{
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["ui"] = new JsonObject { ["resourceUri"] = "ui://charts/interactive" },
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["ui/resourceUri"] = "ui://charts/interactive" // legacy
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}
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```
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## Step 3: The HTML bundle
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A minimum viable bundle: vanilla JS using `@modelcontextprotocol/ext-apps`. The simplest build is a single self-contained HTML file.
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```html
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<!doctype html>
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<html>
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<head>
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<meta charset="utf-8" />
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<title>Chart</title>
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<style>body { font-family: system-ui; margin: 0; }</style>
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</head>
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<body>
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<div id="root">Loading…</div>
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<script type="module">
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import { App } from "https://esm.sh/@modelcontextprotocol/ext-apps@1";
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const app = new App();
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await app.connect();
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// Fetch the data we need from the server.
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const resp = await app.callServerTool({
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name: "visualize_data",
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arguments: { datasetId: "default" }
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});
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const data = JSON.parse(resp.content[0].text);
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document.getElementById("root").textContent =
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`Loaded ${data.points.length} data points.`;
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// Tell the model what just happened (becomes part of its context).
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await app.updateModelContext({
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content: [{ type: "text", text: "User opened the chart UI." }]
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});
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</script>
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</body>
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</html>
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```
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**Tip:** for non-trivial UIs, build with Vite (React/Vue/Svelte/Solid — any of the [official starter templates](https://github.com/modelcontextprotocol/ext-apps/tree/main/examples)) and have the build emit a single inlined HTML you embed as a project resource.
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## Project layout
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A pragmatic layout for an MCP App in .NET:
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```
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MyMcpServer/
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├── Program.cs
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├── Tools/
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│ └── VisualizeDataTool.cs # (or registered via Configure as above)
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├── Resources/
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│ └── ChartUiResource.cs # serves the ui:// resource
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├── AppUi/
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│ ├── chart.html # bundled UI (Embedded Resource)
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│ └── package.json + src/... # if you build with Vite, output to chart.html
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└── MyMcpServer.csproj
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```
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In the csproj:
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```xml
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<ItemGroup>
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<EmbeddedResource Include="AppUi\chart.html" />
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</ItemGroup>
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```
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Read it via `Assembly.GetManifestResourceStream("MyMcpServer.AppUi.chart.html")`.
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## Testing locally
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1. Run your MCP server (STDIO or HTTP).
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2. Use a host that supports MCP Apps — Claude Desktop or VS Code Copilot Chat are the easiest.
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3. Trigger the tool via the LLM. The UI renders inline.
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For pure-UI iteration, [MCP Inspector](https://github.com/modelcontextprotocol/inspector) shows resource contents but does not fully render apps; for that, point Claude Desktop at your dev server.
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## Pitfalls
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- **Wrong MIME type.** Use `text/html+skybridge`. Plain `text/html` may still work but isn't future-proof.
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- **CSP too tight or too loose.** If your UI loads from a CDN, declare it in `Meta["ui"]["csp"]` on the `Tool` definition (this serialises to `_meta.ui.csp` on the wire). Otherwise the iframe sandbox blocks it.
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- **Forgetting `Tool.Meta` on the tool.** Without the `Meta` property containing the `ui.resourceUri` entry, the host treats your tool as a regular text-returning tool. The UI never appears.
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- **Trying to use browser APIs outside the sandbox.** No cookies, no localStorage from the parent. Use `app.updateModelContext` and tool calls for state.
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## Future-proofing
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When the C# SDK ships its typed MCP Apps helpers (issue [#1431](https://github.com/modelcontextprotocol/csharp-sdk/issues/1431)), you'll likely be able to replace the manual `Configure` block with an attribute or fluent builder. The serving of `ui://` resources won't change. Keep your UI HTML as embedded resources so the migration is mechanical.
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