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432 lines
13 KiB
Go
432 lines
13 KiB
Go
// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package ipn
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import (
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"errors"
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"fmt"
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"net"
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"net/netip"
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"net/url"
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"strconv"
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"strings"
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"tailscale.com/ipn/ipnstate"
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"tailscale.com/tailcfg"
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)
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// ServeConfigKey returns a StateKey that stores the
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// JSON-encoded ServeConfig for a config profile.
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func ServeConfigKey(profileID ProfileID) StateKey {
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return StateKey("_serve/" + profileID)
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}
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// ServeConfig is the JSON type stored in the StateStore for
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// StateKey "_serve/$PROFILE_ID" as returned by ServeConfigKey.
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type ServeConfig struct {
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// TCP are the list of TCP port numbers that tailscaled should handle for
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// the Tailscale IP addresses. (not subnet routers, etc)
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TCP map[uint16]*TCPPortHandler `json:",omitempty"`
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// Web maps from "$SNI_NAME:$PORT" to a set of HTTP handlers
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// keyed by mount point ("/", "/foo", etc)
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Web map[HostPort]*WebServerConfig `json:",omitempty"`
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// AllowFunnel is the set of SNI:port values for which funnel
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// traffic is allowed, from trusted ingress peers.
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AllowFunnel map[HostPort]bool `json:",omitempty"`
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// Foreground is a map of an IPN Bus session ID to an alternate foreground
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// serve config that's valid for the life of that WatchIPNBus session ID.
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// This. This allows the config to specify ephemeral configs that are
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// used in the CLI's foreground mode to ensure ungraceful shutdowns
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// of either the client or the LocalBackend does not expose ports
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// that users are not aware of.
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Foreground map[string]*ServeConfig `json:",omitempty"`
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// ETag is the checksum of the serve config that's populated
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// by the LocalClient through the HTTP ETag header during a
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// GetServeConfig request and is translated to an If-Match header
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// during a SetServeConfig request.
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ETag string `json:"-"`
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}
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// HostPort is an SNI name and port number, joined by a colon.
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// There is no implicit port 443. It must contain a colon.
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type HostPort string
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// Port extracts just the port number from hp.
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// An error is reported in the case that the hp does not
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// have a valid numeric port ending.
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func (hp HostPort) Port() (uint16, error) {
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_, port, err := net.SplitHostPort(string(hp))
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if err != nil {
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return 0, err
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}
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port16, err := strconv.ParseUint(port, 10, 16)
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if err != nil {
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return 0, err
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}
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return uint16(port16), nil
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}
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// A FunnelConn wraps a net.Conn that is coming over a
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// Funnel connection. It can be used to determine further
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// information about the connection, like the source address
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// and the target SNI name.
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type FunnelConn struct {
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// Conn is the underlying connection.
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net.Conn
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// Target is what was presented in the "Tailscale-Ingress-Target"
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// HTTP header.
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Target HostPort
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// Src is the source address of the connection.
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// This is the address of the client that initiated the
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// connection, not the address of the Tailscale Funnel
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// node which is relaying the connection. That address
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// can be found in Conn.RemoteAddr.
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Src netip.AddrPort
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}
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// WebServerConfig describes a web server's configuration.
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type WebServerConfig struct {
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Handlers map[string]*HTTPHandler // mountPoint => handler
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}
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// TCPPortHandler describes what to do when handling a TCP
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// connection.
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type TCPPortHandler struct {
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// HTTPS, if true, means that tailscaled should handle this connection as an
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// HTTPS request as configured by ServeConfig.Web.
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//
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// It is mutually exclusive with TCPForward.
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HTTPS bool `json:",omitempty"`
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// HTTP, if true, means that tailscaled should handle this connection as an
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// HTTP request as configured by ServeConfig.Web.
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//
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// It is mutually exclusive with TCPForward.
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HTTP bool `json:",omitempty"`
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// TCPForward is the IP:port to forward TCP connections to.
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// Whether or not TLS is terminated by tailscaled depends on
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// TerminateTLS.
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//
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// It is mutually exclusive with HTTPS.
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TCPForward string `json:",omitempty"`
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// TerminateTLS, if non-empty, means that tailscaled should terminate the
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// TLS connections before forwarding them to TCPForward, permitting only the
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// SNI name with this value. It is only used if TCPForward is non-empty.
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// (the HTTPS mode uses ServeConfig.Web)
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TerminateTLS string `json:",omitempty"`
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}
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// HTTPHandler is either a path or a proxy to serve.
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type HTTPHandler struct {
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// Exactly one of the following may be set.
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Path string `json:",omitempty"` // absolute path to directory or file to serve
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Proxy string `json:",omitempty"` // http://localhost:3000/, localhost:3030, 3030
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Text string `json:",omitempty"` // plaintext to serve (primarily for testing)
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// TODO(bradfitz): bool to not enumerate directories? TTL on mapping for
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// temporary ones? Error codes? Redirects?
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}
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// WebHandlerExists reports whether if the ServeConfig Web handler exists for
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// the given host:port and mount point.
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func (sc *ServeConfig) WebHandlerExists(hp HostPort, mount string) bool {
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h := sc.GetWebHandler(hp, mount)
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return h != nil
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}
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// GetWebHandler returns the HTTPHandler for the given host:port and mount point.
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// Returns nil if the handler does not exist.
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func (sc *ServeConfig) GetWebHandler(hp HostPort, mount string) *HTTPHandler {
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if sc == nil || sc.Web[hp] == nil {
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return nil
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}
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return sc.Web[hp].Handlers[mount]
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}
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// GetTCPPortHandler returns the TCPPortHandler for the given port.
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// If the port is not configured, nil is returned.
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func (sc *ServeConfig) GetTCPPortHandler(port uint16) *TCPPortHandler {
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if sc == nil {
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return nil
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}
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return sc.TCP[port]
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}
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// IsTCPForwardingAny reports whether ServeConfig is currently forwarding in
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// TCPForward mode on any port. This is exclusive of Web/HTTPS serving.
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func (sc *ServeConfig) IsTCPForwardingAny() bool {
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if sc == nil || len(sc.TCP) == 0 {
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return false
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}
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for _, h := range sc.TCP {
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if h.TCPForward != "" {
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return true
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}
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}
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return false
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}
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// IsTCPForwardingOnPort reports whether if ServeConfig is currently forwarding
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// in TCPForward mode on the given port. This is exclusive of Web/HTTPS serving.
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func (sc *ServeConfig) IsTCPForwardingOnPort(port uint16) bool {
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if sc == nil || sc.TCP[port] == nil {
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return false
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}
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return !sc.IsServingWeb(port)
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}
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// IsServingWeb reports whether if ServeConfig is currently serving Web
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// (HTTP/HTTPS) on the given port. This is exclusive of TCPForwarding.
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func (sc *ServeConfig) IsServingWeb(port uint16) bool {
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return sc.IsServingHTTP(port) || sc.IsServingHTTPS(port)
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}
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// IsServingHTTPS reports whether if ServeConfig is currently serving HTTPS on
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// the given port. This is exclusive of HTTP and TCPForwarding.
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func (sc *ServeConfig) IsServingHTTPS(port uint16) bool {
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if sc == nil || sc.TCP[port] == nil {
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return false
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}
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return sc.TCP[port].HTTPS
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}
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// IsServingHTTP reports whether if ServeConfig is currently serving HTTP on the
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// given port. This is exclusive of HTTPS and TCPForwarding.
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func (sc *ServeConfig) IsServingHTTP(port uint16) bool {
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if sc == nil || sc.TCP[port] == nil {
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return false
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}
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return sc.TCP[port].HTTP
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}
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// IsFunnelOn reports whether if ServeConfig is currently allowing funnel
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// traffic for any host:port.
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//
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// View version of ServeConfig.IsFunnelOn.
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func (v ServeConfigView) IsFunnelOn() bool { return v.ж.IsFunnelOn() }
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// IsFunnelOn reports whether if ServeConfig is currently allowing funnel
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// traffic for any host:port.
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func (sc *ServeConfig) IsFunnelOn() bool {
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if sc == nil {
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return false
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}
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for _, b := range sc.AllowFunnel {
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if b {
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return true
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}
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}
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return false
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}
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// CheckFunnelAccess checks whether Funnel access is allowed for the given node
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// and port.
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// It checks:
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// 1. HTTPS is enabled on the Tailnet
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// 2. the node has the "funnel" nodeAttr
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// 3. the port is allowed for Funnel
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//
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// The node arg should be the ipnstate.Status.Self node.
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func CheckFunnelAccess(port uint16, node *ipnstate.PeerStatus) error {
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if !node.HasCap(tailcfg.CapabilityHTTPS) {
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return errors.New("Funnel not available; HTTPS must be enabled. See https://tailscale.com/s/https.")
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}
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if !node.HasCap(tailcfg.NodeAttrFunnel) {
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return errors.New("Funnel not available; \"funnel\" node attribute not set. See https://tailscale.com/s/no-funnel.")
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}
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return CheckFunnelPort(port, node)
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}
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// CheckFunnelPort checks whether the given port is allowed for Funnel.
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// It uses the tailcfg.CapabilityFunnelPorts nodeAttr to determine the allowed
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// ports.
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func CheckFunnelPort(wantedPort uint16, node *ipnstate.PeerStatus) error {
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deny := func(allowedPorts string) error {
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if allowedPorts == "" {
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return fmt.Errorf("port %d is not allowed for funnel", wantedPort)
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}
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return fmt.Errorf("port %d is not allowed for funnel; allowed ports are: %v", wantedPort, allowedPorts)
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}
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var portsStr string
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parseAttr := func(attr string) (string, error) {
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u, err := url.Parse(attr)
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if err != nil {
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return "", deny("")
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}
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portsStr := u.Query().Get("ports")
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if portsStr == "" {
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return "", deny("")
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}
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u.RawQuery = ""
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if u.String() != string(tailcfg.CapabilityFunnelPorts) {
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return "", deny("")
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}
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return portsStr, nil
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}
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for attr := range node.CapMap {
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attr := string(attr)
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if !strings.HasPrefix(attr, string(tailcfg.CapabilityFunnelPorts)) {
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continue
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}
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var err error
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portsStr, err = parseAttr(attr)
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if err != nil {
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return err
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}
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break
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}
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if portsStr == "" {
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for _, attr := range node.Capabilities {
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attr := string(attr)
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if !strings.HasPrefix(attr, string(tailcfg.CapabilityFunnelPorts)) {
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continue
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}
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var err error
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portsStr, err = parseAttr(attr)
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if err != nil {
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return err
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}
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break
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}
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}
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if portsStr == "" {
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return deny("")
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}
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wantedPortString := strconv.Itoa(int(wantedPort))
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for _, ps := range strings.Split(portsStr, ",") {
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if ps == "" {
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continue
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}
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first, last, ok := strings.Cut(ps, "-")
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if !ok {
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if first == wantedPortString {
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return nil
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}
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continue
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}
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fp, err := strconv.ParseUint(first, 10, 16)
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if err != nil {
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continue
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}
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lp, err := strconv.ParseUint(last, 10, 16)
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if err != nil {
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continue
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}
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pr := tailcfg.PortRange{First: uint16(fp), Last: uint16(lp)}
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if pr.Contains(wantedPort) {
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return nil
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}
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}
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return deny(portsStr)
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}
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// RangeOverTCPs ranges over both background and foreground TCPs.
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// If the returned bool from the given f is false, then this function stops
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// iterating immediately and does not check other foreground configs.
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func (v ServeConfigView) RangeOverTCPs(f func(port uint16, _ TCPPortHandlerView) bool) {
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parentCont := true
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v.TCP().Range(func(k uint16, v TCPPortHandlerView) (cont bool) {
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parentCont = f(k, v)
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return parentCont
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})
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v.Foreground().Range(func(k string, v ServeConfigView) (cont bool) {
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if !parentCont {
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return false
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}
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v.TCP().Range(func(k uint16, v TCPPortHandlerView) (cont bool) {
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parentCont = f(k, v)
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return parentCont
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})
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return parentCont
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})
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}
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// RangeOverWebs ranges over both background and foreground Webs.
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// If the returned bool from the given f is false, then this function stops
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// iterating immediately and does not check other foreground configs.
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func (v ServeConfigView) RangeOverWebs(f func(_ HostPort, conf WebServerConfigView) bool) {
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parentCont := true
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v.Web().Range(func(k HostPort, v WebServerConfigView) (cont bool) {
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parentCont = f(k, v)
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return parentCont
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})
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v.Foreground().Range(func(k string, v ServeConfigView) (cont bool) {
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if !parentCont {
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return false
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}
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v.Web().Range(func(k HostPort, v WebServerConfigView) (cont bool) {
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parentCont = f(k, v)
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return parentCont
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})
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return parentCont
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})
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}
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// FindTCP returns the first TCP that matches with the given port. It
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// prefers a foreground match first followed by a background search if none
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// existed.
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func (v ServeConfigView) FindTCP(port uint16) (res TCPPortHandlerView, ok bool) {
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v.Foreground().Range(func(_ string, v ServeConfigView) (cont bool) {
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res, ok = v.TCP().GetOk(port)
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return !ok
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})
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if ok {
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return res, ok
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}
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return v.TCP().GetOk(port)
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}
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// FindWeb returns the first Web that matches with the given HostPort. It
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// prefers a foreground match first followed by a background search if none
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// existed.
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func (v ServeConfigView) FindWeb(hp HostPort) (res WebServerConfigView, ok bool) {
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v.Foreground().Range(func(_ string, v ServeConfigView) (cont bool) {
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res, ok = v.Web().GetOk(hp)
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return !ok
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})
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if ok {
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return res, ok
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}
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return v.Web().GetOk(hp)
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}
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// HasAllowFunnel returns whether this config has at least one AllowFunnel
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// set in the background or foreground configs.
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func (v ServeConfigView) HasAllowFunnel() bool {
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return v.AllowFunnel().Len() > 0 || func() bool {
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var exists bool
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v.Foreground().Range(func(k string, v ServeConfigView) (cont bool) {
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exists = v.AllowFunnel().Len() > 0
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return !exists
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})
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return exists
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}()
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}
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// FindFunnel reports whether target exists in in either the background AllowFunnel
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// or any of the foreground configs.
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func (v ServeConfigView) HasFunnelForTarget(target HostPort) bool {
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if v.AllowFunnel().Get(target) {
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return true
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}
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var exists bool
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v.Foreground().Range(func(_ string, v ServeConfigView) (cont bool) {
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if exists = v.AllowFunnel().Get(target); exists {
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return false
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}
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return true
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})
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return exists
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}
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