612 lines
20 KiB
Go
612 lines
20 KiB
Go
// Copyright 2025 The Go MCP SDK Authors. All rights reserved.
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// Use of this source code is governed by an MIT-style
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// license that can be found in the LICENSE file.
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// This file contains code shared between client and server, including
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// method handler and middleware definitions.
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//
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// Much of this is here so that we can factor out commonalities using
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// generics. If this becomes unwieldy, it can perhaps be simplified with
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// reflection.
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package mcp
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import (
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"context"
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"encoding/json"
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"fmt"
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"log/slog"
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"net/http"
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"reflect"
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"slices"
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"strings"
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"time"
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"github.com/modelcontextprotocol/go-sdk/auth"
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internaljson "github.com/modelcontextprotocol/go-sdk/internal/json"
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"github.com/modelcontextprotocol/go-sdk/internal/jsonrpc2"
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"github.com/modelcontextprotocol/go-sdk/jsonrpc"
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)
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const (
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// latestProtocolVersion is the latest protocol version that this version of
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// the SDK supports.
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//
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// It is the version that the client sends in the initialization request, and
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// the default version used by the server.
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latestProtocolVersion = protocolVersion20250618
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protocolVersion20251125 = "2025-11-25" // not yet released
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protocolVersion20250618 = "2025-06-18"
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protocolVersion20250326 = "2025-03-26"
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protocolVersion20241105 = "2024-11-05"
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)
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var supportedProtocolVersions = []string{
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protocolVersion20251125,
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protocolVersion20250618,
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protocolVersion20250326,
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protocolVersion20241105,
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}
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// negotiatedVersion returns the effective protocol version to use, given a
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// client version.
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func negotiatedVersion(clientVersion string) string {
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// In general, prefer to use the clientVersion, but if we don't support the
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// client's version, use the latest version.
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//
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// This handles the case where a new spec version is released, and the SDK
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// does not support it yet.
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if !slices.Contains(supportedProtocolVersions, clientVersion) {
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return latestProtocolVersion
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}
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return clientVersion
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}
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// A MethodHandler handles MCP messages.
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// For methods, exactly one of the return values must be nil.
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// For notifications, both must be nil.
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type MethodHandler func(ctx context.Context, method string, req Request) (result Result, err error)
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// A Session is either a [ClientSession] or a [ServerSession].
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type Session interface {
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// ID returns the session ID, or the empty string if there is none.
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ID() string
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sendingMethodInfos() map[string]methodInfo
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receivingMethodInfos() map[string]methodInfo
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sendingMethodHandler() MethodHandler
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receivingMethodHandler() MethodHandler
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getConn() *jsonrpc2.Connection
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}
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// Middleware is a function from [MethodHandler] to [MethodHandler].
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type Middleware func(MethodHandler) MethodHandler
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// addMiddleware wraps the handler in the middleware functions.
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func addMiddleware(handlerp *MethodHandler, middleware []Middleware) {
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for _, m := range slices.Backward(middleware) {
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*handlerp = m(*handlerp)
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}
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}
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func defaultSendingMethodHandler(ctx context.Context, method string, req Request) (Result, error) {
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info, ok := req.GetSession().sendingMethodInfos()[method]
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if !ok {
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// This can be called from user code, with an arbitrary value for method.
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return nil, jsonrpc2.ErrNotHandled
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}
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params := req.GetParams()
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if initParams, ok := params.(*InitializeParams); ok {
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// Fix the marshaling of initialize params, to work around #607.
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//
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// The initialize params we produce should never be nil, nor have nil
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// capabilities, so any panic here is a bug.
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params = initParams.toV2()
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}
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// Notifications don't have results.
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if strings.HasPrefix(method, "notifications/") {
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return nil, req.GetSession().getConn().Notify(ctx, method, params)
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}
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// Create the result to unmarshal into.
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// The concrete type of the result is the return type of the receiving function.
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res := info.newResult()
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if err := call(ctx, req.GetSession().getConn(), method, params, res); err != nil {
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return nil, err
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}
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return res, nil
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}
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// Helper method to avoid typed nil.
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func orZero[T any, P *U, U any](p P) T {
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if p == nil {
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var zero T
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return zero
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}
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return any(p).(T)
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}
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func handleNotify(ctx context.Context, method string, req Request) error {
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mh := req.GetSession().sendingMethodHandler()
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_, err := mh(ctx, method, req)
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return err
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}
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func handleSend[R Result](ctx context.Context, method string, req Request) (R, error) {
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mh := req.GetSession().sendingMethodHandler()
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// mh might be user code, so ensure that it returns the right values for the jsonrpc2 protocol.
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res, err := mh(ctx, method, req)
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if err != nil {
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var z R
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return z, err
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}
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return res.(R), nil
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}
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// defaultReceivingMethodHandler is the initial MethodHandler for servers and clients, before being wrapped by middleware.
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func defaultReceivingMethodHandler[S Session](ctx context.Context, method string, req Request) (Result, error) {
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info, ok := req.GetSession().receivingMethodInfos()[method]
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if !ok {
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// This can be called from user code, with an arbitrary value for method.
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return nil, jsonrpc2.ErrNotHandled
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}
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return info.handleMethod(ctx, method, req)
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}
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func handleReceive[S Session](ctx context.Context, session S, jreq *jsonrpc.Request) (Result, error) {
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info, err := checkRequest(jreq, session.receivingMethodInfos())
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if err != nil {
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return nil, err
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}
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params, err := info.unmarshalParams(jreq.Params)
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if err != nil {
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return nil, fmt.Errorf("handling '%s': %w", jreq.Method, err)
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}
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mh := session.receivingMethodHandler()
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re, _ := jreq.Extra.(*RequestExtra)
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req := info.newRequest(session, params, re)
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// mh might be user code, so ensure that it returns the right values for the jsonrpc2 protocol.
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res, err := mh(ctx, jreq.Method, req)
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if err != nil {
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return nil, err
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}
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return res, nil
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}
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// checkRequest checks the given request against the provided method info, to
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// ensure it is a valid MCP request.
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//
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// If valid, the relevant method info is returned. Otherwise, a non-nil error
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// is returned describing why the request is invalid.
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//
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// This is extracted from request handling so that it can be called in the
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// transport layer to preemptively reject bad requests.
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func checkRequest(req *jsonrpc.Request, infos map[string]methodInfo) (methodInfo, error) {
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info, ok := infos[req.Method]
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if !ok {
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return methodInfo{}, fmt.Errorf("%w: %q unsupported", jsonrpc2.ErrNotHandled, req.Method)
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}
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if info.flags¬ification != 0 && req.IsCall() {
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return methodInfo{}, fmt.Errorf("%w: unexpected id for %q", jsonrpc2.ErrInvalidRequest, req.Method)
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}
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if info.flags¬ification == 0 && !req.IsCall() {
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return methodInfo{}, fmt.Errorf("%w: missing id for %q", jsonrpc2.ErrInvalidRequest, req.Method)
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}
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// missingParamsOK is checked here to catch the common case where "params" is
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// missing entirely.
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//
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// However, it's checked again after unmarshalling to catch the rare but
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// possible case where "params" is JSON null (see https://go.dev/issue/33835).
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if info.flags&missingParamsOK == 0 && len(req.Params) == 0 {
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return methodInfo{}, fmt.Errorf("%w: missing required \"params\"", jsonrpc2.ErrInvalidRequest)
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}
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return info, nil
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}
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// methodInfo is information about sending and receiving a method.
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type methodInfo struct {
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// flags is a collection of flags controlling how the JSONRPC method is
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// handled. See individual flag values for documentation.
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flags methodFlags
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// Unmarshal params from the wire into a Params struct.
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// Used on the receive side.
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unmarshalParams func(json.RawMessage) (Params, error)
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newRequest func(Session, Params, *RequestExtra) Request
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// Run the code when a call to the method is received.
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// Used on the receive side.
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handleMethod MethodHandler
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// Create a pointer to a Result struct.
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// Used on the send side.
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newResult func() Result
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}
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// The following definitions support converting from typed to untyped method handlers.
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// Type parameter meanings:
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// - S: sessions
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// - P: params
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// - R: results
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// A typedMethodHandler is like a MethodHandler, but with type information.
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type (
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typedClientMethodHandler[P Params, R Result] func(context.Context, *ClientRequest[P]) (R, error)
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typedServerMethodHandler[P Params, R Result] func(context.Context, *ServerRequest[P]) (R, error)
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)
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type paramsPtr[T any] interface {
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*T
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Params
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}
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type methodFlags int
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const (
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notification methodFlags = 1 << iota // method is a notification, not request
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missingParamsOK // params may be missing or null
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)
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func newClientMethodInfo[P paramsPtr[T], R Result, T any](d typedClientMethodHandler[P, R], flags methodFlags) methodInfo {
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mi := newMethodInfo[P, R](flags)
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mi.newRequest = func(s Session, p Params, _ *RequestExtra) Request {
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r := &ClientRequest[P]{Session: s.(*ClientSession)}
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if p != nil {
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r.Params = p.(P)
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}
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return r
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}
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mi.handleMethod = MethodHandler(func(ctx context.Context, _ string, req Request) (Result, error) {
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return d(ctx, req.(*ClientRequest[P]))
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})
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return mi
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}
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func newServerMethodInfo[P paramsPtr[T], R Result, T any](d typedServerMethodHandler[P, R], flags methodFlags) methodInfo {
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mi := newMethodInfo[P, R](flags)
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mi.newRequest = func(s Session, p Params, re *RequestExtra) Request {
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r := &ServerRequest[P]{Session: s.(*ServerSession), Extra: re}
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if p != nil {
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r.Params = p.(P)
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}
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return r
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}
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mi.handleMethod = MethodHandler(func(ctx context.Context, _ string, req Request) (Result, error) {
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return d(ctx, req.(*ServerRequest[P]))
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})
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return mi
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}
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// newMethodInfo creates a methodInfo from a typedMethodHandler.
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//
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// If isRequest is set, the method is treated as a request rather than a
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// notification.
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func newMethodInfo[P paramsPtr[T], R Result, T any](flags methodFlags) methodInfo {
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return methodInfo{
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flags: flags,
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unmarshalParams: func(m json.RawMessage) (Params, error) {
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var p P
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if m != nil {
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if err := internaljson.Unmarshal(m, &p); err != nil {
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return nil, fmt.Errorf("unmarshaling %q into a %T: %w", m, p, err)
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}
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}
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// We must check missingParamsOK here, in addition to checkRequest, to
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// catch the edge cases where "params" is set to JSON null.
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// See also https://go.dev/issue/33835.
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//
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// We need to ensure that p is non-null to guard against crashes, as our
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// internal code or externally provided handlers may assume that params
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// is non-null.
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if flags&missingParamsOK == 0 && p == nil {
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return nil, fmt.Errorf("%w: missing required \"params\"", jsonrpc2.ErrInvalidRequest)
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}
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return orZero[Params](p), nil
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},
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// newResult is used on the send side, to construct the value to unmarshal the result into.
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// R is a pointer to a result struct. There is no way to "unpointer" it without reflection.
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// TODO(jba): explore generic approaches to this, perhaps by treating R in
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// the signature as the unpointered type.
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newResult: func() Result { return reflect.New(reflect.TypeFor[R]().Elem()).Interface().(R) },
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}
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}
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// serverMethod is glue for creating a typedMethodHandler from a method on Server.
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func serverMethod[P Params, R Result](
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f func(*Server, context.Context, *ServerRequest[P]) (R, error),
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) typedServerMethodHandler[P, R] {
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return func(ctx context.Context, req *ServerRequest[P]) (R, error) {
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return f(req.Session.server, ctx, req)
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}
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}
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// clientMethod is glue for creating a typedMethodHandler from a method on Client.
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func clientMethod[P Params, R Result](
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f func(*Client, context.Context, *ClientRequest[P]) (R, error),
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) typedClientMethodHandler[P, R] {
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return func(ctx context.Context, req *ClientRequest[P]) (R, error) {
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return f(req.Session.client, ctx, req)
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}
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}
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// serverSessionMethod is glue for creating a typedServerMethodHandler from a method on ServerSession.
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func serverSessionMethod[P Params, R Result](f func(*ServerSession, context.Context, P) (R, error)) typedServerMethodHandler[P, R] {
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return func(ctx context.Context, req *ServerRequest[P]) (R, error) {
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return f(req.GetSession().(*ServerSession), ctx, req.Params)
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}
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}
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// clientSessionMethod is glue for creating a typedMethodHandler from a method on ServerSession.
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func clientSessionMethod[P Params, R Result](f func(*ClientSession, context.Context, P) (R, error)) typedClientMethodHandler[P, R] {
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return func(ctx context.Context, req *ClientRequest[P]) (R, error) {
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return f(req.GetSession().(*ClientSession), ctx, req.Params)
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}
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}
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// MCP-specific error codes.
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const (
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// CodeResourceNotFound indicates that a requested resource could not be found.
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CodeResourceNotFound = -32002
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// CodeURLElicitationRequired indicates that the server requires URL elicitation
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// before processing the request. The client should execute the elicitation handler
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// with the elicitations provided in the error data.
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CodeURLElicitationRequired = -32042
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)
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// URLElicitationRequiredError returns an error indicating that URL elicitation is required
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// before the request can be processed. The elicitations parameter should contain the
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// elicitation requests that must be completed.
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func URLElicitationRequiredError(elicitations []*ElicitParams) error {
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// Validate that all elicitations are URL mode
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for _, elicit := range elicitations {
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mode := elicit.Mode
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if mode == "" {
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mode = "form" // default mode
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}
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if mode != "url" {
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panic(fmt.Sprintf("URLElicitationRequiredError requires all elicitations to be URL mode, got %q", mode))
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}
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}
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data, err := json.Marshal(map[string]any{
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"elicitations": elicitations,
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})
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if err != nil {
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// This should never happen with valid ElicitParams
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panic(fmt.Sprintf("failed to marshal elicitations: %v", err))
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}
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return &jsonrpc.Error{
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Code: CodeURLElicitationRequired,
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Message: "URL elicitation required",
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Data: json.RawMessage(data),
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}
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}
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// Internal error codes
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const (
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// The error code if the method exists and was called properly, but the peer does not support it.
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//
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// TODO(rfindley): this code is wrong, and we should fix it to be
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// consistent with other SDKs.
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codeUnsupportedMethod = -31001
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)
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// notifySessions calls Notify on all the sessions.
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// Should be called on a copy of the peer sessions.
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// The logger must be non-nil.
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func notifySessions[S Session, P Params](sessions []S, method string, params P, logger *slog.Logger) {
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if sessions == nil {
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return
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}
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// Notify with the background context, so the messages are sent on the
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// standalone stream.
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// TODO: make this timeout configurable, or call handleNotify asynchronously.
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ctx, cancel := context.WithTimeout(context.Background(), 10*time.Second)
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defer cancel()
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// TODO: there's a potential spec violation here, when the feature list
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// changes before the session (client or server) is initialized.
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for _, s := range sessions {
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req := newRequest(s, params)
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if err := handleNotify(ctx, method, req); err != nil {
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logger.Warn(fmt.Sprintf("calling %s: %v", method, err))
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}
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}
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}
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func newRequest[S Session, P Params](s S, p P) Request {
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switch s := any(s).(type) {
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case *ClientSession:
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return &ClientRequest[P]{Session: s, Params: p}
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case *ServerSession:
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return &ServerRequest[P]{Session: s, Params: p}
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default:
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panic("bad session")
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}
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}
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// Meta is additional metadata for requests, responses and other types.
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type Meta map[string]any
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// GetMeta returns metadata from a value.
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func (m Meta) GetMeta() map[string]any { return m }
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// SetMeta sets the metadata on a value.
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func (m *Meta) SetMeta(x map[string]any) { *m = x }
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const progressTokenKey = "progressToken"
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func getProgressToken(p Params) any {
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return p.GetMeta()[progressTokenKey]
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}
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func setProgressToken(p Params, pt any) {
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switch pt.(type) {
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// Support int32 and int64 for atomic.IntNN.
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case int, int32, int64, string:
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default:
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panic(fmt.Sprintf("progress token %v is of type %[1]T, not int or string", pt))
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}
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m := p.GetMeta()
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if m == nil {
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m = map[string]any{}
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}
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m[progressTokenKey] = pt
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}
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// A Request is a method request with parameters and additional information, such as the session.
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// Request is implemented by [*ClientRequest] and [*ServerRequest].
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type Request interface {
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isRequest()
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GetSession() Session
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GetParams() Params
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// GetExtra returns the Extra field for ServerRequests, and nil for ClientRequests.
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GetExtra() *RequestExtra
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}
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// A ClientRequest is a request to a client.
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type ClientRequest[P Params] struct {
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Session *ClientSession
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Params P
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}
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// A ServerRequest is a request to a server.
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type ServerRequest[P Params] struct {
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Session *ServerSession
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Params P
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Extra *RequestExtra
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}
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// RequestExtra is extra information included in requests, typically from
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// the transport layer.
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type RequestExtra struct {
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TokenInfo *auth.TokenInfo // bearer token info (e.g. from OAuth) if any
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Header http.Header // header from HTTP request, if any
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// If set, CloseSSEStream explicitly closes the current SSE request stream.
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//
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// [SEP-1699] introduced server-side SSE stream disconnection: for
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// long-running requests, servers may opt to close the SSE stream and
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// ask the client to retry at a later time. CloseSSEStream implements this
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// feature; if RetryAfter is set, an event is sent with a `retry:` field
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// to configure the reconnection delay.
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//
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// [SEP-1699]: https://github.com/modelcontextprotocol/modelcontextprotocol/issues/1699
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CloseSSEStream func(CloseSSEStreamArgs)
|
|
}
|
|
|
|
// CloseSSEStreamArgs are arguments for [RequestExtra.CloseSSEStream].
|
|
type CloseSSEStreamArgs struct {
|
|
// RetryAfter configures the reconnection delay sent to the client via the
|
|
// SSE retry field. If zero, no retry field is sent.
|
|
RetryAfter time.Duration
|
|
}
|
|
|
|
func (*ClientRequest[P]) isRequest() {}
|
|
func (*ServerRequest[P]) isRequest() {}
|
|
|
|
func (r *ClientRequest[P]) GetSession() Session { return r.Session }
|
|
func (r *ServerRequest[P]) GetSession() Session { return r.Session }
|
|
|
|
func (r *ClientRequest[P]) GetParams() Params { return r.Params }
|
|
func (r *ServerRequest[P]) GetParams() Params { return r.Params }
|
|
|
|
func (r *ClientRequest[P]) GetExtra() *RequestExtra { return nil }
|
|
func (r *ServerRequest[P]) GetExtra() *RequestExtra { return r.Extra }
|
|
|
|
func serverRequestFor[P Params](s *ServerSession, p P) *ServerRequest[P] {
|
|
return &ServerRequest[P]{Session: s, Params: p}
|
|
}
|
|
|
|
func clientRequestFor[P Params](s *ClientSession, p P) *ClientRequest[P] {
|
|
return &ClientRequest[P]{Session: s, Params: p}
|
|
}
|
|
|
|
// Params is a parameter (input) type for an MCP call or notification.
|
|
type Params interface {
|
|
// GetMeta returns metadata from a value.
|
|
GetMeta() map[string]any
|
|
// SetMeta sets the metadata on a value.
|
|
SetMeta(map[string]any)
|
|
|
|
// isParams discourages implementation of Params outside of this package.
|
|
isParams()
|
|
}
|
|
|
|
// RequestParams is a parameter (input) type for an MCP request.
|
|
type RequestParams interface {
|
|
Params
|
|
|
|
// GetProgressToken returns the progress token from the params' Meta field, or nil
|
|
// if there is none.
|
|
GetProgressToken() any
|
|
|
|
// SetProgressToken sets the given progress token into the params' Meta field.
|
|
// It panics if its argument is not an int or a string.
|
|
SetProgressToken(any)
|
|
}
|
|
|
|
// Result is a result of an MCP call.
|
|
type Result interface {
|
|
// isResult discourages implementation of Result outside of this package.
|
|
isResult()
|
|
|
|
// GetMeta returns metadata from a value.
|
|
GetMeta() map[string]any
|
|
// SetMeta sets the metadata on a value.
|
|
SetMeta(map[string]any)
|
|
}
|
|
|
|
// emptyResult is returned by methods that have no result, like ping.
|
|
// Those methods cannot return nil, because jsonrpc2 cannot handle nils.
|
|
type emptyResult struct{}
|
|
|
|
func (*emptyResult) isResult() {}
|
|
func (*emptyResult) GetMeta() map[string]any { panic("should never be called") }
|
|
func (*emptyResult) SetMeta(map[string]any) { panic("should never be called") }
|
|
|
|
type listParams interface {
|
|
// Returns a pointer to the param's Cursor field.
|
|
cursorPtr() *string
|
|
}
|
|
|
|
type listResult[T any] interface {
|
|
// Returns a pointer to the param's NextCursor field.
|
|
nextCursorPtr() *string
|
|
}
|
|
|
|
// keepaliveSession represents a session that supports keepalive functionality.
|
|
type keepaliveSession interface {
|
|
Ping(ctx context.Context, params *PingParams) error
|
|
Close() error
|
|
}
|
|
|
|
// startKeepalive starts the keepalive mechanism for a session.
|
|
// It assigns the cancel function to the provided cancelPtr and starts a goroutine
|
|
// that sends ping messages at the specified interval.
|
|
func startKeepalive(session keepaliveSession, interval time.Duration, cancelPtr *context.CancelFunc) {
|
|
ctx, cancel := context.WithCancel(context.Background())
|
|
// Assign cancel function before starting goroutine to avoid race condition.
|
|
// We cannot return it because the caller may need to cancel during the
|
|
// window between goroutine scheduling and function return.
|
|
*cancelPtr = cancel
|
|
|
|
go func() {
|
|
ticker := time.NewTicker(interval)
|
|
defer ticker.Stop()
|
|
|
|
for {
|
|
select {
|
|
case <-ctx.Done():
|
|
return
|
|
case <-ticker.C:
|
|
pingCtx, pingCancel := context.WithTimeout(context.Background(), interval/2)
|
|
err := session.Ping(pingCtx, nil)
|
|
pingCancel()
|
|
if err != nil {
|
|
// Ping failed, close the session
|
|
_ = session.Close()
|
|
return
|
|
}
|
|
}
|
|
}
|
|
}()
|
|
}
|