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caddyhttp: Reject 0-RTT early data in IP matchers and set Early-Data header when proxying (#6427)
* caddyhttp: Reject 0-RTT early data in IP matchers and set Early-Data header when proxying See RFC 8470: https://httpwg.org/specs/rfc8470.html Thanks to Michael Wedl (@MWedl) at the University of Applied Sciences St. Poelten for reporting this. * Don't return value for {remote} placeholder in early data * Add Caddyfile support
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@ -60,8 +60,6 @@ type NetworkAddress struct {
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// ListenAll calls Listen() for all addresses represented by this struct, i.e. all ports in the range.
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// (If the address doesn't use ports or has 1 port only, then only 1 listener will be created.)
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// It returns an error if any listener failed to bind, and closes any listeners opened up to that point.
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//
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// TODO: Experimental API: subject to change or removal.
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func (na NetworkAddress) ListenAll(ctx context.Context, config net.ListenConfig) ([]any, error) {
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var listeners []any
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var err error
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@ -130,8 +128,6 @@ func (na NetworkAddress) ListenAll(ctx context.Context, config net.ListenConfig)
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// Unix sockets will be unlinked before being created, to ensure we can bind to
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// it even if the previous program using it exited uncleanly; it will also be
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// unlinked upon a graceful exit (or when a new config does not use that socket).
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//
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// TODO: Experimental API: subject to change or removal.
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func (na NetworkAddress) Listen(ctx context.Context, portOffset uint, config net.ListenConfig) (any, error) {
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if na.IsUnixNetwork() {
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unixSocketsMu.Lock()
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@ -221,8 +217,6 @@ func (na NetworkAddress) JoinHostPort(offset uint) string {
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}
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// Expand returns one NetworkAddress for each port in the port range.
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//
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// This is EXPERIMENTAL and subject to change or removal.
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func (na NetworkAddress) Expand() []NetworkAddress {
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size := na.PortRangeSize()
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addrs := make([]NetworkAddress, size)
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@ -143,6 +143,9 @@ func (m *MatchRemoteIP) Provision(ctx caddy.Context) error {
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// Match returns true if r matches m.
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func (m MatchRemoteIP) Match(r *http.Request) bool {
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if r.TLS != nil && !r.TLS.HandshakeComplete {
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return false // if handshake is not finished, we infer 0-RTT that has not verified remote IP; could be spoofed
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}
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address := r.RemoteAddr
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clientIP, zoneID, err := parseIPZoneFromString(address)
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if err != nil {
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@ -228,6 +231,9 @@ func (m *MatchClientIP) Provision(ctx caddy.Context) error {
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// Match returns true if r matches m.
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func (m MatchClientIP) Match(r *http.Request) bool {
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if r.TLS != nil && !r.TLS.HandshakeComplete {
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return false // if handshake is not finished, we infer 0-RTT that has not verified remote IP; could be spoofed
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}
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address := GetVar(r.Context(), ClientIPVarKey).(string)
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clientIP, zoneID, err := parseIPZoneFromString(address)
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if err != nil {
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@ -178,6 +178,22 @@ type (
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// "http/2", "http/3", or minimum versions: "http/2+", etc.
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MatchProtocol string
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// MatchTLS matches HTTP requests based on the underlying
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// TLS connection state. If this matcher is specified but
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// the request did not come over TLS, it will never match.
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// If this matcher is specified but is empty and the request
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// did come in over TLS, it will always match.
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MatchTLS struct {
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// Matches if the TLS handshake has completed. QUIC 0-RTT early
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// data may arrive before the handshake completes. Generally, it
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// is unsafe to replay these requests if they are not idempotent;
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// additionally, the remote IP of early data packets can more
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// easily be spoofed. It is conventional to respond with HTTP 425
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// Too Early if the request cannot risk being processed in this
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// state.
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HandshakeComplete *bool `json:"handshake_complete,omitempty"`
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}
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// MatchNot matches requests by negating the results of its matcher
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// sets. A single "not" matcher takes one or more matcher sets. Each
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// matcher set is OR'ed; in other words, if any matcher set returns
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@ -213,6 +229,7 @@ func init() {
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caddy.RegisterModule(MatchHeader{})
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caddy.RegisterModule(MatchHeaderRE{})
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caddy.RegisterModule(new(MatchProtocol))
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caddy.RegisterModule(MatchTLS{})
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caddy.RegisterModule(MatchNot{})
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}
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@ -1236,6 +1253,53 @@ func (MatchProtocol) CELLibrary(_ caddy.Context) (cel.Library, error) {
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)
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}
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// CaddyModule returns the Caddy module information.
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func (MatchTLS) CaddyModule() caddy.ModuleInfo {
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return caddy.ModuleInfo{
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ID: "http.matchers.tls",
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New: func() caddy.Module { return new(MatchTLS) },
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}
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}
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// Match returns true if r matches m.
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func (m MatchTLS) Match(r *http.Request) bool {
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if r.TLS == nil {
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return false
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}
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if m.HandshakeComplete != nil {
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if (!*m.HandshakeComplete && r.TLS.HandshakeComplete) ||
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(*m.HandshakeComplete && !r.TLS.HandshakeComplete) {
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return false
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}
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}
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return true
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}
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// UnmarshalCaddyfile parses Caddyfile tokens for this matcher. Syntax:
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//
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// ... tls [early_data]
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//
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// EXPERIMENTAL SYNTAX: Subject to change.
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func (m *MatchTLS) UnmarshalCaddyfile(d *caddyfile.Dispenser) error {
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// iterate to merge multiple matchers into one
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for d.Next() {
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if d.NextArg() {
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switch d.Val() {
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case "early_data":
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var false bool
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m.HandshakeComplete = &false
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}
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}
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if d.NextArg() {
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return d.ArgErr()
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}
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if d.NextBlock(0) {
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return d.Err("malformed tls matcher: blocks are not supported yet")
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}
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}
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return nil
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}
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// CaddyModule returns the Caddy module information.
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func (MatchNot) CaddyModule() caddy.ModuleInfo {
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return caddy.ModuleInfo{
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@ -142,8 +142,16 @@ func addHTTPVarsToReplacer(repl *caddy.Replacer, req *http.Request, w http.Respo
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}
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return port, true
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case "http.request.remote":
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if req.TLS != nil && !req.TLS.HandshakeComplete {
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// without a complete handshake (QUIC "early data") we can't trust the remote IP address to not be spoofed
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return nil, true
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}
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return req.RemoteAddr, true
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case "http.request.remote.host":
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if req.TLS != nil && !req.TLS.HandshakeComplete {
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// without a complete handshake (QUIC "early data") we can't trust the remote IP address to not be spoofed
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return nil, true
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}
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host, _, err := net.SplitHostPort(req.RemoteAddr)
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if err != nil {
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// req.RemoteAddr is host:port for tcp and udp sockets and /unix/socket.path
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@ -605,6 +605,18 @@ func (h Handler) prepareRequest(req *http.Request, repl *caddy.Replacer) (*http.
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req.Header.Set("User-Agent", "")
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}
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// Indicate if request has been conveyed in early data.
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// RFC 8470: "An intermediary that forwards a request prior to the
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// completion of the TLS handshake with its client MUST send it with
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// the Early-Data header field set to “1” (i.e., it adds it if not
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// present in the request). An intermediary MUST use the Early-Data
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// header field if the request might have been subject to a replay and
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// might already have been forwarded by it or another instance
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// (see Section 6.2)."
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if req.TLS != nil && !req.TLS.HandshakeComplete {
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req.Header.Set("Early-Data", "1")
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}
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reqUpType := upgradeType(req.Header)
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removeConnectionHeaders(req.Header)
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