Full-surface integration suite (tests/full_surface.rs, mcp feature): - one HttpAdapter over real TCP (ProtocolHandler::handle path) serving gateway endpoints, /openapi.json, /mcp, and the WS channels session - gateway: search/schema/call/subscribe/batch/publish presence, envelope shapes, error fidelity end-to-end - from_openapi import -> Internal-by-default invisible from the wire -> External facade composes it via env.invoke -> upstream HTTP API called end-to-end (ADR-015 composition model exercised) - to_openapi 6-path doc validated against openapiv3 over the wire - to_mcp: MCP client connects to /mcp on the served adapter, lists the 4 gateway tools, search returns ACL-filtered ops (Sub excluded) Production fix: the WS upgrade route was reserved but never wired into HttpAdapter's router (the ws-upgrade-session tests built their own router). Now wired with ws_bearer_auth (401 without a resolvable token) around ws_upgrade_handler. Docs sync: all 28 'Port notes' sections/blockquotes stripped from ported ADRs/specs; OQ-01/OQ-02 statuses corrected to resolved in overview.md, websocket.md, and the README table (open-questions.md was already current). Publish prep: cargo publish --dry-run --allow-dirty succeeds; cargo doc --no-deps warning-free (ADR link targets fixed); feature combinations (default / test-support / mcp / wss / all) compile warning-free under clippy -D warnings. Verified: cargo test (182 lib default), --all-features (227 lib + 29 integration), clippy -D warnings x3 feature sets, fmt, doc, publish --dry-run.
418 lines
21 KiB
Markdown
418 lines
21 KiB
Markdown
---
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status: draft
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last_updated: 2026-08-27
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---
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# HTTP MCP — from_mcp and to_mcp
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The MCP-direction adapters (feature-gated behind `mcp`): `from_mcp`
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imports remote MCP tools as call-protocol operations over streamable
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HTTP (reqwest client), and `to_mcp` exposes local operations as MCP
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tools over streamable HTTP (axum server). This document covers both, the
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rmcp integration, and the stdio exclusion (ADR-037).
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## What
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Two adapters, both in `alkhttp`, both behind the `mcp` feature gate:
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1. **`from_mcp`** — discovers remote MCP tools via the MCP
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`tools/list` call over streamable HTTP, and registers each as a
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`HandlerRegistration` bundle with a forwarding handler that calls the
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remote tool via `tools/call`. Uses rmcp's
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`StreamableHttpClientTransport` (reqwest-based). Provenance is
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`FromMCP` (leaf, `composition_authority: None`, `scoped_env: None`,
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`Internal` by default — alkcall ADR-017/018). Implements
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`OperationAdapter` (the async trait from `alkcall::client`).
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2. **`to_mcp`** — exposes the local registry's `External` operations as
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MCP tools over streamable HTTP, using rmcp's `StreamableHttpService`
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(an axum-compatible tower service). An external MCP client (an editor,
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an AI tool) discovers and calls the local deployment's operations
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through the MCP protocol. A pure projection (consumes the registry,
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does not produce entries — alkcall ADR-022 §5).
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### Streamable HTTP only (ADR-037)
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MCP defines two transports: streamable HTTP and stdio. **alkhttp
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supports only streamable HTTP.** Stdio is not built — it is the spawn-
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arbitrary-executable RCE vector that the rest of the architecture is
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designed to avoid (ADR-037). The `mcp` feature gate pulls in rmcp with
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the streamable HTTP transport features only; the stdio transport
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(`transport-child-process`) is not a dependency, not optional, not
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behind a separate feature.
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If an operator wants a stdio-only MCP server, they run a small
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streamable-HTTP-to-stdio bridge themselves, outside alkhttp. The bridge
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is where the RCE risk lives, explicitly in the operator's hands. See
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[ADR-037](decisions/037-mcp-stdio-transport-exclusion.md).
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### from_mcp
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```rust
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pub struct FromMCP {
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/// The MCP server's streamable HTTP endpoint URL.
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endpoint: String,
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/// Bearer token for the MCP server (from Capabilities at registration).
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auth_token: Option<String>,
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/// The importing deployment's name for this MCP server (becomes the
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/// operation namespace).
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namespace: String,
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}
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#[async_trait]
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impl OperationAdapter for FromMCP {
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async fn import(&self) -> Result<Vec<HandlerRegistration>, AdapterError>;
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}
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```
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The adapter:
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1. Connects to the MCP server's streamable HTTP endpoint using rmcp's
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`StreamableHttpClientTransport::from_uri(endpoint)` (the rmcp
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`streamable_http.rs` client example shows the pattern: `client_info
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.serve(transport).await`, then `client.list_tools()`,
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`client.call_tool()`). On connection failure, returns
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`AdapterError::DiscoveryFailed`; on 401, `AdapterError::Unauthorized`.
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2. Calls `tools/list` → the list of MCP tools (name, description,
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`inputSchema`, optional `outputSchema`).
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3. For each tool, constructs a `HandlerRegistration`:
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- `spec.name` = the tool name (or `namespace/tool_name` if a
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namespace prefix is configured — same local-naming sugar as
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`from_call`'s `FromCallConfig::namespace_prefix`, alkcall ADR-024
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§5).
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- `spec.namespace` = the configured `namespace`.
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- `spec.op_type` = `Mutation` (MCP tools are call/response; the MCP
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spec doesn't have a native streaming/tool-subscription distinction
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— `tools/call` returns a result. If MCP adds a streaming-tool
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extension, a `Sub` mapping would be added.) All `from_mcp`
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handlers are `HandlerKind::Once` (alkcall ADR-021); `from_mcp`
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never produces a `StreamingHandler` (nor a `HandlerKind::Sink` —
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the `Pub` type, alkcall ADR-046, has no MCP representation).
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- `spec.visibility` = `Internal` (adapter-registered, alkcall
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ADR-017).
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- `spec.input_schema` = the tool's `inputSchema` (JSON Schema).
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- `spec.output_schema` = depends on whether the tool declares
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`outputSchema` (MCP 2025-06-18+):
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- **`outputSchema` present** → `output_schema` = the declared
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schema (converted from JSON Schema). The result arrives in
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`CallToolResult.structured_content` and is composable with
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local operations (the data matches the declared type).
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- **`outputSchema` absent** (older MCP servers) → `output_schema`
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= the MCP `ContentBlock` union (`text | image | audio |
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resource | resource_link` — a well-defined MCP type, *not*
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`Type.Unknown()`). The result arrives in
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`CallToolResult.content` as a `Vec<ContentBlock>`. The common
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sub-case is a single `Text` block (which older servers often
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fill with JSON-stringified data), but the *type* is the
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`ContentBlock` union regardless of what the text contains.
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See "Output handling" below.
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- `spec.error_schemas` = the MCP tool's error description mapped to
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`ErrorDefinition` (alkcall ADR-016 — MCP tool definitions carry
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error descriptions; the adapter maps them).
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- `spec.access_control` = `AccessControl::default()`.
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- `handler` = a forwarding handler (see Forwarding Handler below).
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- `provenance` = `FromMCP`, `composition_authority: None`,
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`scoped_env: None` (leaf — alkcall ADR-018).
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- `capabilities` = the bearer token for the MCP server (injected by
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the assembly layer at registration — see No-Env-Vars below).
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4. Returns the bundles. The caller (the assembly layer) registers them
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in the `OperationRegistry`.
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### Forwarding handler
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At call time, the `from_mcp` forwarding handler:
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1. Reads the call input (`serde_json::Value` — the tool arguments).
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2. Calls `client.call_tool({ name: tool_name, arguments: input })` via
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the rmcp client (the `streamable_http.rs` example shows
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`client.call_tool(CallToolRequestParams::new(name).with_arguments(...))`).
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3. On success: extracts the result from the `CallToolResult`, following
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the `structuredContent`-preferred-over-content-blocks rule (see
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"Output handling" below), wraps in a `ResponseEnvelope`, returns.
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4. On `result.isError`: maps to a `CallError` with the MCP error content
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(the TS `from_mcp.ts` handler shows the error mapping), returns.
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5. The rmcp client connection is maintained for the lifetime of the
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registration (the MCP server is a persistent streamable HTTP
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endpoint, not a per-call connection).
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The handler is opaque to the `CallAdapter` — a `HandlerKind::Once`
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wrapping an `Arc<dyn Handler>` that the registry dispatches. `alkcall`
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never sees rmcp.
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### Output handling (structuredContent vs content blocks)
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MCP `CallToolResult` (rmcp `model.rs`) carries two result fields:
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`content: Vec<ContentBlock>` (always present, defaults to `[]`) and
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`structured_content: Option<Value>` (present when the tool declared
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`outputSchema`). The `from_mcp` handler follows the same rule the TS
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adapter (`@alkdev/operations/src/from_mcp.ts`) and the rmcp SDK
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(`CallToolResult::into_typed`) use:
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- **`structured_content` present** (tool declared `outputSchema`): the
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handler uses `structured_content` as the result, validated/cast
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against the declared `output_schema`. This is the composable case —
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the data matches the declared type, so a composing handler can use it
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as a typed value.
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- **`structured_content` absent** (older server, no `outputSchema`):
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the handler maps `content: Vec<ContentBlock>` to the
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`ContentBlock`-union `output_schema` (text/image/audio/resource/
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resource_link). The TS `mapMCPContentBlocks` shows the mapping; the
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Rust `ContentBlock` enum (`rmcp/src/model/content.rs`) is the same
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shape. The common sub-case is a single `Text` block — older servers
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often JSON-stringify structured data into the `text` field. The
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adapter does *not* attempt to `JSON.parse` the text heuristically
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(fragile, not the adapter's concern); it carries the `ContentBlock`
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union as the typed result. A consumer that knows the text is JSON can
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parse it downstream.
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The `isError: true` case is handled separately (step 4 above) — it
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maps to a `CallError`, not to the output handling path.
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### to_mcp
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```rust
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pub fn to_mcp_service(
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registry: Arc<OperationRegistry>,
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identity_provider: Arc<dyn IdentityProvider>,
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) -> StreamableHttpService<...>;
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```
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`to_mcp` exposes the local registry's operations as a **fixed gateway
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tool set** over streamable HTTP — not one MCP tool per operation. This
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is the tool-gateway pattern (ADR-041): the LLM has a few tools in
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context (search, schema, call, batch), not hundreds, and discovers
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operations on demand through the gateway. See
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[ADR-041](decisions/041-mcp-tool-gateway-pattern.md) for the
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rationale (the tool-bloat problem, the `memory`/`worktree` tool pattern
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that informed the design).
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The rmcp `simple_auth_streamhttp.rs` server example shows the
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streamable-HTTP-service-into-axum-`Router` pattern:
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```rust
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// From the rmcp example:
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let mcp_service: StreamableHttpService<Counter, LocalSessionManager> =
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StreamableHttpService::new(
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|| Ok(Counter::new()),
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LocalSessionManager::default().into(),
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StreamableHttpServerConfig::default(),
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);
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let protected_mcp_router = Router::new()
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.nest_service("/mcp", mcp_service)
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.layer(middleware::from_fn_with_state(token_store, auth_middleware));
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```
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`alkhttp`'s `to_mcp` follows the same axum integration pattern,
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but the rmcp `Service` impl is a gateway service (4 fixed tools) rather
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than a per-operation tool registry.
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#### The gateway tool set
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`to_mcp` exposes four MCP tools that gate access to the full operation
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registry:
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| MCP tool | Call protocol operation | Purpose |
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|----------|------------------------|---------|
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| `search` | `services/list` | List/search available operations (filtered by the caller's `AccessControl`). Returns names + descriptions, not full schemas. |
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| `schema` | `services/schema` | Get an operation's full `OperationSpec` (input/output JSON Schemas, error schemas). |
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| `call` | `call.requested` (Query/Mutation) | Invoke an operation by name with a JSON input. Returns the output or a typed error (alkcall ADR-016). |
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| `batch` | multiple `call.requested` | Invoke multiple operations in one tool call (correlated request IDs, OQ-14). |
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The LLM calls `search` to discover operations, `schema` to learn an
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operation's input shape, `call` to invoke. Same pattern as `man
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<command>` — discover on demand, don't preload. See ADR-041 for the
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rationale.
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#### `Sub` and `Pub` exclusion
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The gateway exposes only `Query` and `Mutation` operations
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(request/response). `Sub` operations (streaming responses — many
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`call.responded` events) and `Pub` operations (streaming requests —
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the consumer publishes chunks to a `HandlerKind::Sink` handler,
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alkcall ADR-046) are both filtered out of `search` results and cannot
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be invoked via `call` — MCP tool calls are request/response by
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protocol design; neither a streaming response nor a client-side
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publish fits the LLM tool-call pattern. This is unaffected by the
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streaming handler work (alkcall ADR-021): the `StreamingHandler` type
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and `invoke_streaming()` dispatch path exist in alkcall and are used
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by `to_openapi`'s `/subscribe` endpoint (and `invoke_sink()` by
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`/publish` — [ADR-068](decisions/068-gateway-publish-endpoint.md)),
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but `to_mcp` does not expose them — it filters by `op_type` and only
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dispatches `Query`/`Mutation` via `invoke()`. See
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[ADR-041](decisions/041-mcp-tool-gateway-pattern.md) §2.
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#### `to_mcp` service behavior
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1. On MCP `tools/list`: returns the fixed gateway tool set (4 tools:
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`search`, `schema`, `call`, `batch`), not the registry's
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operations. The gateway tools have stable names and schemas; the
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registry's operations are discovered through `search`.
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2. On MCP `tools/call`:
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- `search` → dispatches `services/list` (filtered by the caller's
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`AccessControl`), returns operation names + descriptions.
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- `schema` → dispatches `services/schema`, returns the
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`OperationSpec`.
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- `call` → dispatches `OperationRegistry::invoke()` (the same
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dispatch spine the HTTP gateway uses — the gateway surface per
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[ADR-047](decisions/047-remove-direct-call-http-surface.md), the
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HTTP-to-call mapping per
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[ADR-036](decisions/036-http-to-call-operation-mapping.md)). The
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result is mapped to an MCP `CallToolResult`
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(`structuredContent` for the output, or `isError: true` for a
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`CallError` with typed `details` per alkcall ADR-016).
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- `batch` → dispatches multiple `call.requested` events, returns
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an array of results.
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3. Auth: the Bearer middleware resolves the token via
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`IdentityProvider::resolve_from_token()`, same as the HTTP server's
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auth ([ADR-004](decisions/004-auth-as-shared-core.md)). The MCP
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client authenticates by bearer token; no `PeerId` (browsers and MCP
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clients are not alk peers —
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[ADR-034](decisions/034-outgoing-only-x509-and-three-peer-roles.md)
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§4). `AccessControl` gates `search` results and `call` dispatch — the
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LLM sees only what it's authorized to call.
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#### Shared dispatch spine with `to_openapi`
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`to_mcp`'s `call` tool and `to_openapi`'s `/call` endpoint share the
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same dispatch spine: resolve caller identity (Bearer →
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`IdentityProvider::resolve_from_token`) → build a root
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`OperationContext` → `OperationRegistry::invoke()` → map the
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`ResponseEnvelope` to the gateway's wire shape (`CallToolResult` for
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MCP, HTTP JSON for OpenAPI). The wire framing, discovery listing
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(`tools/list` vs `/search`), streaming (excluded in `to_mcp` vs
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`to_openapi`'s `/subscribe` SSE and `/publish` NDJSON — the OpenAPI
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gateway is 6 endpoints per
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[ADR-068](decisions/068-gateway-publish-endpoint.md), while `to_mcp`
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stays the 4 fixed tools), and server integration (rmcp
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`StreamableHttpService` tower service vs axum route handlers) are
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genuinely per-gateway and are not shared. See also
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[http-adapters.md](http-adapters.md) §"Shared dispatch spine with
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`to_mcp`".
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Research findings
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(`/workspace/@alkdev/alknet/docs/research/alknet-http-gateway-factoring/findings.md`)
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recommend extracting a **thin shared spine** (the concrete
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`GatewayDispatch` struct holding `Arc<OperationRegistry>` +
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`Arc<dyn IdentityProvider>` with a `resolve + build_context + invoke`
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method returning a `ResponseEnvelope`, named in alkcall ADR-021 and
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extended with `invoke_streaming()` for the streaming path), **not** a
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trait or gateway abstraction. The spine is small (~15–30 lines per
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endpoint), but it is the one place where a divergence bug (identity
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resolved differently, `OperationContext.internal` set inconsistently,
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`CallError` mapped asymmetrically) would be a security/correctness
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issue. The server-integration and wire-framing layers stay
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per-gateway; a third gateway (GraphQL, gRPC) is not on the horizon,
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and if one appears its server-integration layer needs its own shape
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anyway. This is an implementation factoring note, not an ADR — the
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decision is internal to `alkhttp` and does not cross crate boundaries.
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### No-Env-Vars
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The `from_mcp` forwarding handler reads the MCP server's bearer token
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from `context.capabilities` (the same injection path as `from_openapi`),
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not from `std::env::var`. The assembly layer injects the token at
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registration; the handler reads it per-call. This is the no-env-vars
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invariant ([ADR-014](decisions/014-secret-material-flow-and-capability-injection.md),
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[overview.md](overview.md)).
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## Why
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MCP is the protocol editors and AI tools use to discover and call tools.
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`from_mcp` lets the alk stack compose external MCP servers (a remote tool
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server, a third-party MCP endpoint) into the call protocol — the same
|
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composition pattern as `from_openapi` and `from_call`. `to_mcp` lets
|
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external MCP clients (an editor, an AI tool) discover and call the local
|
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deployment's operations through the MCP protocol, without those clients
|
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needing to speak EventEnvelope.
|
||
|
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`to_mcp` uses the **tool-gateway pattern** (ADR-041): a fixed set of
|
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meta-tools (`search`, `schema`, `call`, `batch`) gates access to the
|
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full operation registry, so the LLM has a few tools in context instead
|
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of hundreds. This addresses the tool-bloat problem — an LLM connecting
|
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to a node with 200 operations gets 4 MCP tools, not 200, and discovers
|
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operations on demand through `search` + `schema`. Same pattern as the
|
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`memory` and `worktree` tools (one entry point, large dataset behind
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it), and the same principle as Linux's `man` command (don't preload all
|
||
documentation; query on demand).
|
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|
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The streamable-HTTP-only constraint (ADR-037) is a security position:
|
||
alkhttp does not import the MCP stdio RCE vector. The streamable HTTP
|
||
path is network-isolated, auth-gatable, and runs under alkhttp's
|
||
auth/identity/capabilities machinery — the same machinery that gates
|
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every other HTTP request.
|
||
|
||
## Constraints
|
||
|
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- **Streamable HTTP only.** Stdio is not built (ADR-037). The `mcp`
|
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feature pulls in rmcp with streamable HTTP transport features only.
|
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- **`from_mcp`-registered ops are `Internal` by default.** Composition
|
||
material, not directly callable from the wire (alkcall ADR-017).
|
||
- **`from_mcp` handlers read credentials from
|
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`OperationContext.capabilities`.** No env vars
|
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([ADR-014](decisions/014-secret-material-flow-and-capability-injection.md)).
|
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- **`to_mcp` is a pure projection.** Consumes the registry, does not
|
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produce entries. Not an `OperationAdapter`.
|
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- **MCP clients are not alk peers.** A browser or MCP client
|
||
connecting to `to_mcp` authenticates by bearer token, gets no
|
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`PeerId`, is not in the peer graph
|
||
([ADR-034](decisions/034-outgoing-only-x509-and-three-peer-roles.md)
|
||
§4).
|
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- **The `mcp` feature is optional.** A deployment that doesn't need MCP
|
||
doesn't compile rmcp. The default feature set is `h2` + `http1`.
|
||
|
||
## Design Decisions
|
||
|
||
| Decision | ADR | Summary |
|
||
|----------|-----|---------|
|
||
| MCP stdio transport excluded | [ADR-037](decisions/037-mcp-stdio-transport-exclusion.md) | Streamable HTTP only; stdio is not built |
|
||
| `to_mcp` tool-gateway pattern | [ADR-041](decisions/041-mcp-tool-gateway-pattern.md) | 4 fixed gateway tools (search/schema/call/batch), not one tool per operation; `Sub` and `Pub` excluded |
|
||
| `from_mcp` is an `OperationAdapter` | alkcall ADR-022 (Call Protocol Client and Adapter Contract) | Async trait (`alkcall::client`); produces `HandlerRegistration` bundles |
|
||
| `to_mcp` is a projection | alkcall ADR-022 (Call Protocol Client and Adapter Contract) | Consumes the registry, doesn't produce entries |
|
||
| Adapter-registered ops are `Internal` | alkcall ADR-017 (Privilege Model and Authority Context) | `from_mcp` ops are composition material |
|
||
| `from_mcp` provenance is a leaf | alkcall ADR-018 (Handler Registration, Provenance, and Composition Authority) | `composition_authority: None`, `scoped_env: None` |
|
||
| Error fidelity | alkcall ADR-016 (Operation Error Schemas) | MCP tool errors mapped to `ErrorDefinition`s |
|
||
| No-env-vars credential injection | [ADR-014](decisions/014-secret-material-flow-and-capability-injection.md) | Handler reads `context.capabilities`, not env vars |
|
||
| MCP clients are not alk peers | [ADR-034](decisions/034-outgoing-only-x509-and-three-peer-roles.md) §4 | Bearer token, no `PeerId` |
|
||
| Streaming handler for subscriptions | alkcall ADR-021 (Streaming Handler for Subscription Operations) | `from_mcp` handlers are always `HandlerKind::Once` (MCP tools are request/response); `to_mcp` excludes `Sub` (and `Pub`) ops (unchanged by the streaming handler) |
|
||
|
||
## Open Questions
|
||
|
||
See [open-questions.md](open-questions.md) for full details.
|
||
|
||
- **OQ-40** (resolved): reqwest client config — the shared
|
||
`ClientWithMiddleware` used by `from_mcp` (same client as
|
||
`from_openapi`).
|
||
|
||
## References
|
||
|
||
- [ADR-037](decisions/037-mcp-stdio-transport-exclusion.md) — the
|
||
stdio exclusion this document enforces
|
||
- [overview.md](overview.md) — adapter location map, feature gates
|
||
- the alkcall crate's `docs/architecture/client-and-adapters.md` —
|
||
`OperationAdapter` trait, `AdapterError` variants
|
||
- `/workspace/rust-sdk/` — MCP Rust SDK (rmcp v1.8.0); streamable HTTP
|
||
transport
|
||
- `/workspace/rust-sdk/crates/rmcp/src/model/tool.rs` — `Tool` with
|
||
`output_schema: Option<Arc<JsonObject>>` (the `outputSchema` field)
|
||
- `/workspace/rust-sdk/crates/rmcp/src/model/content.rs` — `ContentBlock`
|
||
enum (text/image/audio/resource/resource_link — the fallback
|
||
`output_schema` type when `outputSchema` is absent)
|
||
- `/workspace/rust-sdk/crates/rmcp/src/model.rs` (~line 2868) —
|
||
`CallToolResult` with `content: Vec<ContentBlock>` and
|
||
`structured_content: Option<Value>` (the two result fields); see also
|
||
`into_typed` (~line 3057) for the SDK's own
|
||
structured-content-preferred-over-text-block fallback logic
|
||
- `/workspace/rust-sdk/examples/servers/src/simple_auth_streamhttp.rs`
|
||
— streamable HTTP MCP server with Bearer auth (the `to_mcp` pattern)
|
||
- `/workspace/rust-sdk/examples/clients/src/streamable_http.rs` —
|
||
streamable HTTP MCP client (the `from_mcp` pattern)
|
||
- `/workspace/@alkdev/operations/src/from_mcp.ts` — TypeScript prior art
|
||
(`createMCPClient`, `mapMCPContentBlocks`, the `MCPClientLoader`; the
|
||
`structuredContent`-preferred-over-content-blocks logic)
|
||
- `/workspace/@alkdev/operations/docs/architecture/adapters.md` —
|
||
TypeScript adapter architecture doc (the `from_mcp` `outputSchema`/
|
||
`structuredContent` handling, the `MUTATION` tool-type decision)
|
||
- `/workspace/@alkdev/alknet/docs/research/alknet-http-gateway-factoring/findings.md`
|
||
— research on the shared dispatch spine between `to_mcp` and
|
||
`to_openapi` (recommendation: thin shared struct, not a trait)
|