294 lines
7.8 KiB
Go
294 lines
7.8 KiB
Go
package passtlsclientcert
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import (
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"context"
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"crypto/x509"
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"crypto/x509/pkix"
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"encoding/pem"
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"fmt"
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"io"
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"net/http"
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"net/url"
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"strings"
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"github.com/containous/traefik/config"
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"github.com/containous/traefik/log"
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"github.com/containous/traefik/middlewares"
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"github.com/containous/traefik/tracing"
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"github.com/opentracing/opentracing-go/ext"
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"github.com/sirupsen/logrus"
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)
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const (
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xForwardedTLSClientCert = "X-Forwarded-Tls-Client-Cert"
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xForwardedTLSClientCertInfo = "X-Forwarded-Tls-Client-Cert-Info"
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typeName = "PassClientTLSCert"
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)
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var attributeTypeNames = map[string]string{
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"0.9.2342.19200300.100.1.25": "DC", // Domain component OID - RFC 2247
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}
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// DistinguishedNameOptions is a struct for specifying the configuration for the distinguished name info.
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type DistinguishedNameOptions struct {
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CommonName bool
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CountryName bool
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DomainComponent bool
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LocalityName bool
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OrganizationName bool
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SerialNumber bool
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StateOrProvinceName bool
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}
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func newDistinguishedNameOptions(info *config.TLSCLientCertificateDNInfo) *DistinguishedNameOptions {
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if info == nil {
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return nil
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}
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return &DistinguishedNameOptions{
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CommonName: info.CommonName,
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CountryName: info.Country,
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DomainComponent: info.DomainComponent,
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LocalityName: info.Locality,
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OrganizationName: info.Organization,
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SerialNumber: info.SerialNumber,
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StateOrProvinceName: info.Province,
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}
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}
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// passTLSClientCert is a middleware that helps setup a few tls info features.
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type passTLSClientCert struct {
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next http.Handler
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name string
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pem bool // pass the sanitized pem to the backend in a specific header
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info *tlsClientCertificateInfo // pass selected information from the client certificate
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}
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// New constructs a new PassTLSClientCert instance from supplied frontend header struct.
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func New(ctx context.Context, next http.Handler, config config.PassTLSClientCert, name string) (http.Handler, error) {
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middlewares.GetLogger(ctx, name, typeName).Debug("Creating middleware")
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return &passTLSClientCert{
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next: next,
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name: name,
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pem: config.PEM,
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info: newTLSClientInfo(config.Info),
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}, nil
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}
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// tlsClientCertificateInfo is a struct for specifying the configuration for the passTLSClientCert middleware.
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type tlsClientCertificateInfo struct {
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notAfter bool
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notBefore bool
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sans bool
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subject *DistinguishedNameOptions
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issuer *DistinguishedNameOptions
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}
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func newTLSClientInfo(info *config.TLSClientCertificateInfo) *tlsClientCertificateInfo {
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if info == nil {
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return nil
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}
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return &tlsClientCertificateInfo{
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issuer: newDistinguishedNameOptions(info.Issuer),
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notAfter: info.NotAfter,
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notBefore: info.NotBefore,
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subject: newDistinguishedNameOptions(info.Subject),
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sans: info.Sans,
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}
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}
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func (p *passTLSClientCert) GetTracingInformation() (string, ext.SpanKindEnum) {
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return p.name, tracing.SpanKindNoneEnum
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}
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func (p *passTLSClientCert) ServeHTTP(rw http.ResponseWriter, req *http.Request) {
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logger := middlewares.GetLogger(req.Context(), p.name, typeName)
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p.modifyRequestHeaders(logger, req)
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p.next.ServeHTTP(rw, req)
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}
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func getDNInfo(prefix string, options *DistinguishedNameOptions, cs *pkix.Name) string {
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if options == nil {
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return ""
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}
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content := &strings.Builder{}
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// Manage non standard attributes
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for _, name := range cs.Names {
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// Domain Component - RFC 2247
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if options.DomainComponent && attributeTypeNames[name.Type.String()] == "DC" {
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content.WriteString(fmt.Sprintf("DC=%s,", name.Value))
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}
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}
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if options.CountryName {
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writeParts(content, cs.Country, "C")
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}
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if options.StateOrProvinceName {
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writeParts(content, cs.Province, "ST")
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}
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if options.LocalityName {
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writeParts(content, cs.Locality, "L")
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}
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if options.OrganizationName {
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writeParts(content, cs.Organization, "O")
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}
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if options.SerialNumber {
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writePart(content, cs.SerialNumber, "SN")
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}
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if options.CommonName {
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writePart(content, cs.CommonName, "CN")
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}
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if content.Len() > 0 {
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return prefix + `="` + strings.TrimSuffix(content.String(), ",") + `"`
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}
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return ""
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}
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func writeParts(content io.StringWriter, entries []string, prefix string) {
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for _, entry := range entries {
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writePart(content, entry, prefix)
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}
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}
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func writePart(content io.StringWriter, entry string, prefix string) {
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if len(entry) > 0 {
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_, err := content.WriteString(fmt.Sprintf("%s=%s,", prefix, entry))
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if err != nil {
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log.Error(err)
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}
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}
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}
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// getXForwardedTLSClientCertInfo Build a string with the wanted client certificates information
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// like Subject="C=%s,ST=%s,L=%s,O=%s,CN=%s",NB=%d,NA=%d,SAN=%s;
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func (p *passTLSClientCert) getXForwardedTLSClientCertInfo(certs []*x509.Certificate) string {
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var headerValues []string
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for _, peerCert := range certs {
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var values []string
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var sans string
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var nb string
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var na string
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if p.info != nil {
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subject := getDNInfo("Subject", p.info.subject, &peerCert.Subject)
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if len(subject) > 0 {
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values = append(values, subject)
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}
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issuer := getDNInfo("Issuer", p.info.issuer, &peerCert.Issuer)
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if len(issuer) > 0 {
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values = append(values, issuer)
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}
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}
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ci := p.info
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if ci != nil {
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if ci.notBefore {
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nb = fmt.Sprintf("NB=%d", uint64(peerCert.NotBefore.Unix()))
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values = append(values, nb)
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}
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if ci.notAfter {
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na = fmt.Sprintf("NA=%d", uint64(peerCert.NotAfter.Unix()))
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values = append(values, na)
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}
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if ci.sans {
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sans = fmt.Sprintf("SAN=%s", strings.Join(getSANs(peerCert), ","))
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values = append(values, sans)
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}
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}
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value := strings.Join(values, ",")
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headerValues = append(headerValues, value)
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}
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return strings.Join(headerValues, ";")
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}
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// modifyRequestHeaders set the wanted headers with the certificates information.
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func (p *passTLSClientCert) modifyRequestHeaders(logger logrus.FieldLogger, r *http.Request) {
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if p.pem {
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if r.TLS != nil && len(r.TLS.PeerCertificates) > 0 {
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r.Header.Set(xForwardedTLSClientCert, getXForwardedTLSClientCert(logger, r.TLS.PeerCertificates))
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} else {
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logger.Warn("Try to extract certificate on a request without TLS")
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}
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}
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if p.info != nil {
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if r.TLS != nil && len(r.TLS.PeerCertificates) > 0 {
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headerContent := p.getXForwardedTLSClientCertInfo(r.TLS.PeerCertificates)
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r.Header.Set(xForwardedTLSClientCertInfo, url.QueryEscape(headerContent))
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} else {
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logger.Warn("Try to extract certificate on a request without TLS")
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}
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}
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}
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// sanitize As we pass the raw certificates, remove the useless data and make it http request compliant.
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func sanitize(cert []byte) string {
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s := string(cert)
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r := strings.NewReplacer("-----BEGIN CERTIFICATE-----", "",
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"-----END CERTIFICATE-----", "",
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"\n", "")
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cleaned := r.Replace(s)
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return url.QueryEscape(cleaned)
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}
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// extractCertificate extract the certificate from the request.
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func extractCertificate(logger logrus.FieldLogger, cert *x509.Certificate) string {
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b := pem.Block{Type: "CERTIFICATE", Bytes: cert.Raw}
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certPEM := pem.EncodeToMemory(&b)
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if certPEM == nil {
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logger.Error("Cannot extract the certificate content")
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return ""
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}
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return sanitize(certPEM)
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}
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// getXForwardedTLSClientCert Build a string with the client certificates.
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func getXForwardedTLSClientCert(logger logrus.FieldLogger, certs []*x509.Certificate) string {
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var headerValues []string
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for _, peerCert := range certs {
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headerValues = append(headerValues, extractCertificate(logger, peerCert))
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}
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return strings.Join(headerValues, ",")
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}
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// getSANs get the Subject Alternate Name values.
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func getSANs(cert *x509.Certificate) []string {
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var sans []string
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if cert == nil {
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return sans
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}
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sans = append(sans, cert.DNSNames...)
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sans = append(sans, cert.EmailAddresses...)
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var ips []string
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for _, ip := range cert.IPAddresses {
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ips = append(ips, ip.String())
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}
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sans = append(sans, ips...)
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var uris []string
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for _, uri := range cert.URIs {
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uris = append(uris, uri.String())
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}
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return append(sans, uris...)
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}
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