mirror of
https://github.com/SagerNet/sing-box.git
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210 lines
5.8 KiB
Go
210 lines
5.8 KiB
Go
//go:build with_ech
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package tls
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import (
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"context"
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"crypto/tls"
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"crypto/x509"
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"encoding/base64"
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"net"
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"net/netip"
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"os"
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"github.com/sagernet/sing-box/adapter"
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"github.com/sagernet/sing-box/option"
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cftls "github.com/sagernet/sing-box/transport/cloudflaretls"
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"github.com/sagernet/sing-dns"
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E "github.com/sagernet/sing/common/exceptions"
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mDNS "github.com/miekg/dns"
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)
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type echClientConfig struct {
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config *cftls.Config
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}
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func (e *echClientConfig) NextProtos() []string {
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return e.config.NextProtos
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}
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func (e *echClientConfig) SetNextProtos(nextProto []string) {
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e.config.NextProtos = nextProto
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}
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func (e *echClientConfig) Config() (*STDConfig, error) {
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return nil, E.New("unsupported usage for ECH")
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}
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func (e *echClientConfig) Client(conn net.Conn) Conn {
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return &echConnWrapper{cftls.Client(conn, e.config)}
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}
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type echConnWrapper struct {
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*cftls.Conn
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}
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func (c *echConnWrapper) ConnectionState() tls.ConnectionState {
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state := c.Conn.ConnectionState()
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return tls.ConnectionState{
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Version: state.Version,
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HandshakeComplete: state.HandshakeComplete,
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DidResume: state.DidResume,
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CipherSuite: state.CipherSuite,
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NegotiatedProtocol: state.NegotiatedProtocol,
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NegotiatedProtocolIsMutual: state.NegotiatedProtocolIsMutual,
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ServerName: state.ServerName,
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PeerCertificates: state.PeerCertificates,
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VerifiedChains: state.VerifiedChains,
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SignedCertificateTimestamps: state.SignedCertificateTimestamps,
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OCSPResponse: state.OCSPResponse,
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TLSUnique: state.TLSUnique,
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}
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}
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func newECHClient(router adapter.Router, serverAddress string, options option.OutboundTLSOptions) (Config, error) {
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var serverName string
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if options.ServerName != "" {
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serverName = options.ServerName
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} else if serverAddress != "" {
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if _, err := netip.ParseAddr(serverName); err != nil {
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serverName = serverAddress
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}
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}
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if serverName == "" && !options.Insecure {
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return nil, E.New("missing server_name or insecure=true")
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}
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var tlsConfig cftls.Config
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if options.DisableSNI {
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tlsConfig.ServerName = "127.0.0.1"
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} else {
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tlsConfig.ServerName = serverName
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}
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if options.Insecure {
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tlsConfig.InsecureSkipVerify = options.Insecure
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} else if options.DisableSNI {
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tlsConfig.InsecureSkipVerify = true
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tlsConfig.VerifyConnection = func(state cftls.ConnectionState) error {
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verifyOptions := x509.VerifyOptions{
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DNSName: serverName,
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Intermediates: x509.NewCertPool(),
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}
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for _, cert := range state.PeerCertificates[1:] {
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verifyOptions.Intermediates.AddCert(cert)
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}
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_, err := state.PeerCertificates[0].Verify(verifyOptions)
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return err
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}
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}
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if len(options.ALPN) > 0 {
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tlsConfig.NextProtos = options.ALPN
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}
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if options.MinVersion != "" {
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minVersion, err := ParseTLSVersion(options.MinVersion)
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if err != nil {
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return nil, E.Cause(err, "parse min_version")
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}
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tlsConfig.MinVersion = minVersion
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}
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if options.MaxVersion != "" {
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maxVersion, err := ParseTLSVersion(options.MaxVersion)
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if err != nil {
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return nil, E.Cause(err, "parse max_version")
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}
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tlsConfig.MaxVersion = maxVersion
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}
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if options.CipherSuites != nil {
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find:
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for _, cipherSuite := range options.CipherSuites {
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for _, tlsCipherSuite := range cftls.CipherSuites() {
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if cipherSuite == tlsCipherSuite.Name {
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tlsConfig.CipherSuites = append(tlsConfig.CipherSuites, tlsCipherSuite.ID)
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continue find
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}
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}
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return nil, E.New("unknown cipher_suite: ", cipherSuite)
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}
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}
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var certificate []byte
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if options.Certificate != "" {
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certificate = []byte(options.Certificate)
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} else if options.CertificatePath != "" {
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content, err := os.ReadFile(options.CertificatePath)
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if err != nil {
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return nil, E.Cause(err, "read certificate")
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}
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certificate = content
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}
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if len(certificate) > 0 {
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certPool := x509.NewCertPool()
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if !certPool.AppendCertsFromPEM(certificate) {
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return nil, E.New("failed to parse certificate:\n\n", certificate)
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}
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tlsConfig.RootCAs = certPool
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}
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// ECH Config
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tlsConfig.ECHEnabled = true
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tlsConfig.PQSignatureSchemesEnabled = options.ECH.PQSignatureSchemesEnabled
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tlsConfig.DynamicRecordSizingDisabled = options.ECH.DynamicRecordSizingDisabled
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if options.ECH.Config != "" {
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clientConfigContent, err := base64.StdEncoding.DecodeString(options.ECH.Config)
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if err != nil {
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return nil, err
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}
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clientConfig, err := cftls.UnmarshalECHConfigs(clientConfigContent)
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if err != nil {
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return nil, err
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}
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tlsConfig.ClientECHConfigs = clientConfig
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} else {
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tlsConfig.GetClientECHConfigs = fetchECHClientConfig(router)
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}
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return &echClientConfig{&tlsConfig}, nil
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}
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const typeHTTPS = 65
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func fetchECHClientConfig(router adapter.Router) func(ctx context.Context, serverName string) ([]cftls.ECHConfig, error) {
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return func(ctx context.Context, serverName string) ([]cftls.ECHConfig, error) {
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message := &mDNS.Msg{
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MsgHdr: mDNS.MsgHdr{
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RecursionDesired: true,
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},
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Question: []mDNS.Question{
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{
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Name: serverName + ".",
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Qtype: mDNS.TypeHTTPS,
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Qclass: mDNS.ClassINET,
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},
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},
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}
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response, err := router.Exchange(ctx, message)
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if err != nil {
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return nil, err
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}
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if response.Rcode != mDNS.RcodeSuccess {
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return nil, dns.RCodeError(response.Rcode)
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}
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for _, rr := range response.Answer {
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switch resource := rr.(type) {
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case *mDNS.HTTPS:
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for _, value := range resource.Value {
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if value.Key().String() == "ech" {
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echConfig, err := base64.StdEncoding.DecodeString(value.String())
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if err != nil {
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return nil, E.Cause(err, "decode ECH config")
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}
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return cftls.UnmarshalECHConfigs(echConfig)
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}
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}
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default:
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return nil, E.New("unknown resource record type: ", resource.Header().Rrtype)
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}
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}
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return nil, E.New("no ECH config found")
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}
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}
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