287 lines
10 KiB
Go
287 lines
10 KiB
Go
package handlers
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import (
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"encoding/base64"
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"fmt"
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"net"
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"net/url"
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"strings"
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"time"
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"github.com/authelia/authelia/internal/authentication"
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"github.com/authelia/authelia/internal/authorization"
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"github.com/authelia/authelia/internal/middlewares"
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"github.com/valyala/fasthttp"
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)
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func isURLUnderProtectedDomain(url *url.URL, domain string) bool {
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return strings.HasSuffix(url.Hostname(), domain)
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}
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func isSchemeHTTPS(url *url.URL) bool {
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return url.Scheme == "https"
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}
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func isSchemeWSS(url *url.URL) bool {
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return url.Scheme == "wss"
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}
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// getOriginalURL extract the URL from the request headers (X-Original-URI or X-Forwarded-* headers).
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func getOriginalURL(ctx *middlewares.AutheliaCtx) (*url.URL, error) {
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originalURL := ctx.XOriginalURL()
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if originalURL != nil {
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url, err := url.ParseRequestURI(string(originalURL))
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if err != nil {
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return nil, fmt.Errorf("Unable to parse URL extracted from X-Original-URL header: %v", err)
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}
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ctx.Logger.Debug("Using X-Original-URL header content as targeted site URL")
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return url, nil
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}
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forwardedProto := ctx.XForwardedProto()
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forwardedHost := ctx.XForwardedHost()
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forwardedURI := ctx.XForwardedURI()
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if forwardedProto == nil {
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return nil, errMissingXForwardedProto
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}
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if forwardedHost == nil {
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return nil, errMissingXForwardedHost
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}
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var requestURI string
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scheme := append(forwardedProto, protoHostSeparator...)
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requestURI = string(append(scheme,
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append(forwardedHost, forwardedURI...)...))
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url, err := url.ParseRequestURI(requestURI)
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if err != nil {
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return nil, fmt.Errorf("Unable to parse URL %s: %v", requestURI, err)
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}
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ctx.Logger.Debugf("Using X-Fowarded-Proto, X-Forwarded-Host and X-Forwarded-URI headers " +
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"to construct targeted site URL")
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return url, nil
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}
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// parseBasicAuth parses an HTTP Basic Authentication string.
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// "Basic QWxhZGRpbjpvcGVuIHNlc2FtZQ==" returns ("Aladdin", "open sesame", true).
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func parseBasicAuth(auth string) (username, password string, err error) {
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if !strings.HasPrefix(auth, authPrefix) {
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return "", "", fmt.Errorf("%s prefix not found in %s header", strings.Trim(authPrefix, " "), AuthorizationHeader)
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}
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c, err := base64.StdEncoding.DecodeString(auth[len(authPrefix):])
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if err != nil {
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return "", "", err
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}
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cs := string(c)
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s := strings.IndexByte(cs, ':')
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if s < 0 {
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return "", "", fmt.Errorf("Format of %s header must be user:password", AuthorizationHeader)
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}
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return cs[:s], cs[s+1:], nil
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}
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// isTargetURLAuthorized check whether the given user is authorized to access the resource.
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func isTargetURLAuthorized(authorizer *authorization.Authorizer, targetURL url.URL,
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username string, userGroups []string, clientIP net.IP, authLevel authentication.Level) authorizationMatching {
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level := authorizer.GetRequiredLevel(authorization.Subject{
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Username: username,
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Groups: userGroups,
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IP: clientIP,
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}, targetURL)
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if level == authorization.Bypass {
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return Authorized
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} else if username != "" && level == authorization.Denied {
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// If the user is not anonymous, it means that we went through
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// all the rules related to that user and knowing who he is we can
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// deduce the access is forbidden.
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// For anonymous users though, we cannot be sure that she
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// could not be granted the rights to access the resource. Consequently
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// for anonymous users we send Unauthorized instead of Forbidden.
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return Forbidden
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} else {
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if level == authorization.OneFactor &&
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authLevel >= authentication.OneFactor {
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return Authorized
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} else if level == authorization.TwoFactor &&
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authLevel >= authentication.TwoFactor {
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return Authorized
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}
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}
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return NotAuthorized
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}
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// verifyBasicAuth verify that the provided username and password are correct and
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// that the user is authorized to target the resource.
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func verifyBasicAuth(auth []byte, targetURL url.URL, ctx *middlewares.AutheliaCtx) (username string, groups []string, authLevel authentication.Level, err error) {
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username, password, err := parseBasicAuth(string(auth))
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if err != nil {
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("Unable to parse content of %s header: %s", AuthorizationHeader, err)
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}
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authenticated, err := ctx.Providers.UserProvider.CheckUserPassword(username, password)
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if err != nil {
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("Unable to check credentials extracted from %s header: %s", AuthorizationHeader, err)
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}
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// If the user is not correctly authenticated, send a 401.
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if !authenticated {
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// Request Basic Authentication otherwise
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("User %s is not authenticated", username)
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}
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details, err := ctx.Providers.UserProvider.GetDetails(username)
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if err != nil {
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("Unable to retrieve details of user %s: %s", username, err)
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}
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return username, details.Groups, authentication.OneFactor, nil
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}
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// setForwardedHeaders set the forwarded User and Groups headers.
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func setForwardedHeaders(headers *fasthttp.ResponseHeader, username string, groups []string) {
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if username != "" {
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headers.Set(remoteUserHeader, username)
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headers.Set(remoteGroupsHeader, strings.Join(groups, ","))
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}
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}
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// hasUserBeenInactiveLongEnough check whether the user has been inactive for too long.
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func hasUserBeenInactiveLongEnough(ctx *middlewares.AutheliaCtx) (bool, error) {
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maxInactivityPeriod := ctx.Configuration.Session.Inactivity
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if maxInactivityPeriod == 0 {
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return false, nil
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}
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lastActivity := ctx.GetSession().LastActivity
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inactivityPeriod := ctx.Clock.Now().Unix() - lastActivity
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ctx.Logger.Tracef("Inactivity report: Inactivity=%d, MaxInactivity=%d",
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inactivityPeriod, maxInactivityPeriod)
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if inactivityPeriod > maxInactivityPeriod {
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return true, nil
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}
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return false, nil
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}
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// verifyFromSessionCookie verify if a user identified by a cookie is allowed to access target URL.
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func verifyFromSessionCookie(targetURL url.URL, ctx *middlewares.AutheliaCtx) (username string, groups []string, authLevel authentication.Level, err error) {
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userSession := ctx.GetSession()
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// No username in the session means the user is anonymous.
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isUserAnonymous := userSession.Username == ""
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if isUserAnonymous && userSession.AuthenticationLevel != authentication.NotAuthenticated {
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("An anonymous user cannot be authenticated. That might be the sign of a compromise")
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}
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if !userSession.KeepMeLoggedIn && !isUserAnonymous {
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inactiveLongEnough, err := hasUserBeenInactiveLongEnough(ctx)
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if err != nil {
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("Unable to check if user has been inactive for a long time: %s", err)
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}
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if inactiveLongEnough {
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// Destroy the session a new one will be regenerated on next request.
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err := ctx.Providers.SessionProvider.DestroySession(ctx.RequestCtx)
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if err != nil {
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("Unable to destroy user session after long inactivity: %s", err)
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}
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return "", nil, authentication.NotAuthenticated, fmt.Errorf("User %s has been inactive for too long", userSession.Username)
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}
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}
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return userSession.Username, userSession.Groups, userSession.AuthenticationLevel, nil
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}
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// VerifyGet is the handler verifying if a request is allowed to go through.
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func VerifyGet(ctx *middlewares.AutheliaCtx) {
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ctx.Logger.Tracef("Headers=%s", ctx.Request.Header.String())
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targetURL, err := getOriginalURL(ctx)
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if err != nil {
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ctx.Error(fmt.Errorf("Unable to parse target URL: %s", err), operationFailedMessage)
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return
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}
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if !isSchemeHTTPS(targetURL) && !isSchemeWSS(targetURL) {
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ctx.Logger.Error(fmt.Errorf("Scheme of target URL %s must be secure since cookies are "+
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"only transported over a secure connection for security reasons", targetURL.String()))
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ctx.ReplyUnauthorized()
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return
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}
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if !isURLUnderProtectedDomain(targetURL, ctx.Configuration.Session.Domain) {
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ctx.Logger.Error(fmt.Errorf("The target URL %s is not under the protected domain %s",
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targetURL.String(), ctx.Configuration.Session.Domain))
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ctx.ReplyUnauthorized()
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return
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}
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var username string
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var groups []string
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var authLevel authentication.Level
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proxyAuthorization := ctx.Request.Header.Peek(AuthorizationHeader)
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hasBasicAuth := proxyAuthorization != nil
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if hasBasicAuth {
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username, groups, authLevel, err = verifyBasicAuth(proxyAuthorization, *targetURL, ctx)
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} else {
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username, groups, authLevel, err = verifyFromSessionCookie(*targetURL, ctx)
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}
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if err != nil {
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ctx.Logger.Error(fmt.Sprintf("Error caught when verifying user authorization: %s", err))
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ctx.ReplyUnauthorized()
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return
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}
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authorization := isTargetURLAuthorized(ctx.Providers.Authorizer, *targetURL, username,
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groups, ctx.RemoteIP(), authLevel)
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if authorization == Forbidden {
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ctx.ReplyForbidden()
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ctx.Logger.Errorf("Access to %s is forbidden to user %s", targetURL.String(), username)
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return
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} else if authorization == NotAuthorized {
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// Kubernetes ingress controller and Traefik use the rd parameter of the verify
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// endpoint to provide the URL of the login portal. The target URL of the user
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// is computed from X-Fowarded-* headers or X-Original-URL.
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rd := string(ctx.QueryArgs().Peek("rd"))
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if rd != "" {
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redirectionURL := fmt.Sprintf("%s?rd=%s", rd, url.QueryEscape(targetURL.String()))
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if strings.Contains(redirectionURL, "/%23/") {
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ctx.Logger.Warn("Characters /%23/ have been detected in redirection URL. This is not needed anymore, please strip it")
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}
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ctx.Redirect(redirectionURL, 302)
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ctx.SetBodyString(fmt.Sprintf("Found. Redirecting to %s", redirectionURL))
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} else {
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ctx.ReplyUnauthorized()
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ctx.Logger.Errorf("Access to %s is not authorized to user %s", targetURL.String(), username)
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}
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} else if authorization == Authorized {
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setForwardedHeaders(&ctx.Response.Header, username, groups)
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}
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// We mark activity of the current user if he comes with a session cookie.
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if !hasBasicAuth && username != "" {
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// Mark current activity
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userSession := ctx.GetSession()
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userSession.LastActivity = time.Now().Unix()
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err = ctx.SaveSession(userSession)
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if err != nil {
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ctx.Error(fmt.Errorf("Unable to update last activity: %s", err), operationFailedMessage)
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return
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}
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}
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}
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