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51aa59a737
This PR adds a WebSocket grid feature that allows servers to communicate via a single two-way connection. There are two request types: * Single requests, which are `[]byte => ([]byte, error)`. This is for efficient small roundtrips with small payloads. * Streaming requests which are `[]byte, chan []byte => chan []byte (and error)`, which allows for different combinations of full two-way streams with an initial payload. Only a single stream is created between two machines - and there is, as such, no server/client relation since both sides can initiate and handle requests. Which server initiates the request is decided deterministically on the server names. Requests are made through a mux client and server, which handles message passing, congestion, cancelation, timeouts, etc. If a connection is lost, all requests are canceled, and the calling server will try to reconnect. Registered handlers can operate directly on byte slices or use a higher-level generics abstraction. There is no versioning of handlers/clients, and incompatible changes should be handled by adding new handlers. The request path can be changed to a new one for any protocol changes. First, all servers create a "Manager." The manager must know its address as well as all remote addresses. This will manage all connections. To get a connection to any remote, ask the manager to provide it given the remote address using. ``` func (m *Manager) Connection(host string) *Connection ``` All serverside handlers must also be registered on the manager. This will make sure that all incoming requests are served. The number of in-flight requests and responses must also be given for streaming requests. The "Connection" returned manages the mux-clients. Requests issued to the connection will be sent to the remote. * `func (c *Connection) Request(ctx context.Context, h HandlerID, req []byte) ([]byte, error)` performs a single request and returns the result. Any deadline provided on the request is forwarded to the server, and canceling the context will make the function return at once. * `func (c *Connection) NewStream(ctx context.Context, h HandlerID, payload []byte) (st *Stream, err error)` will initiate a remote call and send the initial payload. ```Go // A Stream is a two-way stream. // All responses *must* be read by the caller. // If the call is canceled through the context, //The appropriate error will be returned. type Stream struct { // Responses from the remote server. // Channel will be closed after an error or when the remote closes. // All responses *must* be read by the caller until either an error is returned or the channel is closed. // Canceling the context will cause the context cancellation error to be returned. Responses <-chan Response // Requests sent to the server. // If the handler is defined with 0 incoming capacity this will be nil. // Channel *must* be closed to signal the end of the stream. // If the request context is canceled, the stream will no longer process requests. Requests chan<- []byte } type Response struct { Msg []byte Err error } ``` There are generic versions of the server/client handlers that allow the use of type safe implementations for data types that support msgpack marshal/unmarshal.
322 lines
9.2 KiB
Go
322 lines
9.2 KiB
Go
// Copyright (c) 2015-2023 MinIO, Inc.
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//
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// This file is part of MinIO Object Storage stack
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package grid
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import (
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"context"
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"crypto/tls"
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"fmt"
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"net/http"
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"runtime/debug"
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"strings"
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"github.com/gobwas/ws"
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"github.com/gobwas/ws/wsutil"
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"github.com/google/uuid"
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"github.com/minio/madmin-go/v3"
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"github.com/minio/minio/internal/logger"
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"github.com/minio/minio/internal/pubsub"
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"github.com/minio/mux"
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)
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const (
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// apiVersion is a major version of the entire api.
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// Bumping this should only be done when overall,
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// incompatible changes are made, not when adding a new handler
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// or changing an existing handler.
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apiVersion = "v1"
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// RoutePath is the remote path to connect to.
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RoutePath = "/minio/grid/" + apiVersion
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)
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// Manager will contain all the connections to the grid.
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// It also handles incoming requests and routes them to the appropriate connection.
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type Manager struct {
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// ID is an instance ID, that will change whenever the server restarts.
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// This allows remotes to keep track of whether state is preserved.
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ID uuid.UUID
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// Immutable after creation, so no locks.
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targets map[string]*Connection
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// serverside handlers.
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handlers handlers
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// local host name.
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local string
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// Validate incoming requests.
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authRequest func(r *http.Request) error
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}
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// ManagerOptions are options for creating a new grid manager.
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type ManagerOptions struct {
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Dialer ContextDialer // Outgoing dialer.
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Local string // Local host name.
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Hosts []string // All hosts, including local in the grid.
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AddAuth AuthFn // Add authentication to the given audience.
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AuthRequest func(r *http.Request) error // Validate incoming requests.
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TLSConfig *tls.Config // TLS to apply to the connnections.
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Incoming func(n int64) // Record incoming bytes.
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Outgoing func(n int64) // Record outgoing bytes.
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BlockConnect chan struct{} // If set, incoming and outgoing connections will be blocked until closed.
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TraceTo *pubsub.PubSub[madmin.TraceInfo, madmin.TraceType]
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}
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// NewManager creates a new grid manager
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func NewManager(ctx context.Context, o ManagerOptions) (*Manager, error) {
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found := false
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if o.AuthRequest == nil {
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return nil, fmt.Errorf("grid: AuthRequest must be set")
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}
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m := &Manager{
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ID: uuid.New(),
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targets: make(map[string]*Connection, len(o.Hosts)),
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local: o.Local,
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authRequest: o.AuthRequest,
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}
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m.handlers.init()
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if ctx == nil {
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ctx = context.Background()
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}
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for _, host := range o.Hosts {
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if host == o.Local {
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if found {
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return nil, fmt.Errorf("grid: local host found multiple times")
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}
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found = true
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// No connection to local.
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continue
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}
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m.targets[host] = newConnection(connectionParams{
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ctx: ctx,
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id: m.ID,
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local: o.Local,
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remote: host,
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dial: o.Dialer,
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handlers: &m.handlers,
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auth: o.AddAuth,
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blockConnect: o.BlockConnect,
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tlsConfig: o.TLSConfig,
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publisher: o.TraceTo,
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})
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}
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if !found {
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return nil, fmt.Errorf("grid: local host not found")
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}
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return m, nil
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}
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// AddToMux will add the grid manager to the given mux.
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func (m *Manager) AddToMux(router *mux.Router) {
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router.Handle(RoutePath, m.Handler())
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}
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// Handler returns a handler that can be used to serve grid requests.
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// This should be connected on RoutePath to the main server.
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func (m *Manager) Handler() http.HandlerFunc {
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return func(w http.ResponseWriter, req *http.Request) {
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defer func() {
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if debugPrint {
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fmt.Printf("grid: Handler returning from: %v %v\n", req.Method, req.URL)
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}
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if r := recover(); r != nil {
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debug.PrintStack()
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err := fmt.Errorf("grid: panic: %v\n", r)
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logger.LogIf(context.Background(), err, err.Error())
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w.WriteHeader(http.StatusInternalServerError)
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}
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}()
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if debugPrint {
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fmt.Printf("grid: Got a %s request for: %v\n", req.Method, req.URL)
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}
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ctx := req.Context()
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if err := m.authRequest(req); err != nil {
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logger.LogOnceIf(ctx, fmt.Errorf("auth %s: %w", req.RemoteAddr, err), req.RemoteAddr+err.Error())
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w.WriteHeader(http.StatusForbidden)
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return
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}
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conn, _, _, err := ws.UpgradeHTTP(req, w)
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if err != nil {
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if debugPrint {
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fmt.Printf("grid: Unable to upgrade: %v. http.ResponseWriter is type %T\n", err, w)
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}
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w.WriteHeader(http.StatusUpgradeRequired)
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return
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}
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defer conn.Close()
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if debugPrint {
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fmt.Printf("grid: Upgraded request: %v\n", req.URL)
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}
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msg, _, err := wsutil.ReadClientData(conn)
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if err != nil {
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logger.LogIf(ctx, fmt.Errorf("grid: reading connect: %w", err))
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return
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}
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if debugPrint {
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fmt.Printf("%s handler: Got message, length %v\n", m.local, len(msg))
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}
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var message message
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_, _, err = message.parse(msg)
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if err != nil {
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if debugPrint {
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fmt.Println("parse err:", err)
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}
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logger.LogIf(ctx, fmt.Errorf("handleMessages: parsing connect: %w", err))
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return
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}
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if message.Op != OpConnect {
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if debugPrint {
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fmt.Println("op err:", message.Op)
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}
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logger.LogIf(ctx, fmt.Errorf("handler: unexpected op: %v", message.Op))
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return
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}
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var cReq connectReq
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_, err = cReq.UnmarshalMsg(message.Payload)
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if err != nil {
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if debugPrint {
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fmt.Println("handler: creq err:", err)
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}
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logger.LogIf(ctx, fmt.Errorf("handleMessages: parsing ConnectReq: %w", err))
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return
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}
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remote := m.targets[cReq.Host]
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if remote == nil {
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if debugPrint {
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fmt.Printf("%s: handler: unknown host: %v. Have %v\n", m.local, cReq.Host, m.targets)
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}
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logger.LogIf(ctx, fmt.Errorf("handler: unknown host: %v", cReq.Host))
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return
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}
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if debugPrint {
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fmt.Printf("handler: Got Connect Req %+v\n", cReq)
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}
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logger.LogIf(ctx, remote.handleIncoming(ctx, conn, cReq))
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}
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}
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// AuthFn should provide an authentication string for the given aud.
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type AuthFn func(aud string) string
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// Connection will return the connection for the specified host.
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// If the host does not exist nil will be returned.
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func (m *Manager) Connection(host string) *Connection {
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return m.targets[host]
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}
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// RegisterSingleHandler will register a stateless handler that serves
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// []byte -> ([]byte, error) requests.
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// subroutes are joined with "/" to a single subroute.
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func (m *Manager) RegisterSingleHandler(id HandlerID, h SingleHandlerFn, subroute ...string) error {
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if !id.valid() {
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return ErrUnknownHandler
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}
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s := strings.Join(subroute, "/")
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if debugPrint {
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fmt.Println("RegisterSingleHandler: ", id.String(), "subroute:", s)
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}
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if len(subroute) == 0 {
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if m.handlers.hasAny(id) && !id.isTestHandler() {
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return ErrHandlerAlreadyExists
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}
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m.handlers.single[id] = h
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return nil
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}
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subID := makeSubHandlerID(id, s)
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if m.handlers.hasSubhandler(subID) && !id.isTestHandler() {
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return ErrHandlerAlreadyExists
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}
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m.handlers.subSingle[subID] = h
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// Copy so clients can also pick it up for other subpaths.
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m.handlers.subSingle[makeZeroSubHandlerID(id)] = h
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return nil
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}
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/*
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// RegisterStateless will register a stateless handler that serves
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// []byte -> stream of ([]byte, error) requests.
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func (m *Manager) RegisterStateless(id HandlerID, h StatelessHandler) error {
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if !id.valid() {
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return ErrUnknownHandler
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}
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if m.handlers.hasAny(id) && !id.isTestHandler() {
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return ErrHandlerAlreadyExists
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}
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m.handlers.stateless[id] = &h
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return nil
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}
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*/
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// RegisterStreamingHandler will register a stateless handler that serves
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// two-way streaming requests.
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func (m *Manager) RegisterStreamingHandler(id HandlerID, h StreamHandler) error {
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if !id.valid() {
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return ErrUnknownHandler
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}
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if debugPrint {
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fmt.Println("RegisterStreamingHandler: subroute:", h.Subroute)
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}
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if h.Subroute == "" {
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if m.handlers.hasAny(id) && !id.isTestHandler() {
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return ErrHandlerAlreadyExists
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}
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m.handlers.streams[id] = &h
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return nil
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}
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subID := makeSubHandlerID(id, h.Subroute)
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if m.handlers.hasSubhandler(subID) && !id.isTestHandler() {
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return ErrHandlerAlreadyExists
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}
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m.handlers.subStreams[subID] = &h
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// Copy so clients can also pick it up for other subpaths.
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m.handlers.subStreams[makeZeroSubHandlerID(id)] = &h
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return nil
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}
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// HostName returns the name of the local host.
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func (m *Manager) HostName() string {
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return m.local
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}
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// Targets returns the names of all remote targets.
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func (m *Manager) Targets() []string {
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var res []string
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for k := range m.targets {
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res = append(res, k)
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}
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return res
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}
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// debugMsg should *only* be used by tests.
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//
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//lint:ignore U1000 This is used by tests.
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func (m *Manager) debugMsg(d debugMsg, args ...any) {
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for _, c := range m.targets {
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c.debugMsg(d, args...)
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}
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}
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