mirror of
https://github.com/0rangebananaspy/authelia.git
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cac8919f97
* test: add redis restart test back to traefik2 suite * refactor(suites): mustpress -> mustinput for totp * refactor(suites): rename suites for test ordering
330 lines
9.3 KiB
Go
330 lines
9.3 KiB
Go
package suites
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import (
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"context"
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"fmt"
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"net/http"
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"testing"
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"time"
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log "github.com/sirupsen/logrus"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/suite"
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)
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type HighAvailabilityWebDriverSuite struct {
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*RodSuite
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}
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func NewHighAvailabilityWebDriverSuite() *HighAvailabilityWebDriverSuite {
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return &HighAvailabilityWebDriverSuite{RodSuite: new(RodSuite)}
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}
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func (s *HighAvailabilityWebDriverSuite) SetupSuite() {
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browser, err := StartRod()
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if err != nil {
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log.Fatal(err)
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}
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s.RodSession = browser
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}
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func (s *HighAvailabilityWebDriverSuite) TearDownSuite() {
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err := s.RodSession.Stop()
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if err != nil {
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log.Fatal(err)
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}
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}
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func (s *HighAvailabilityWebDriverSuite) SetupTest() {
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s.Page = s.doCreateTab(s.T(), HomeBaseURL)
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s.verifyIsHome(s.T(), s.Page)
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}
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func (s *HighAvailabilityWebDriverSuite) TearDownTest() {
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s.collectCoverage(s.Page)
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s.MustClose()
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}
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func (s *HighAvailabilityWebDriverSuite) TestShouldKeepUserSessionActive() {
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ctx, cancel := context.WithTimeout(context.Background(), 60*time.Second)
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defer func() {
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cancel()
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s.collectScreenshot(ctx.Err(), s.Page)
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}()
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secret := s.doRegisterThenLogout(s.T(), s.Context(ctx), "john", "password")
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err := haDockerEnvironment.Restart("redis-node-0")
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s.Require().NoError(err)
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s.doLoginTwoFactor(s.T(), s.Context(ctx), "john", "password", false, secret, "")
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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}
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func (s *HighAvailabilityWebDriverSuite) TestShouldKeepUserSessionActiveWithPrimaryRedisNodeFailure() {
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ctx, cancel := context.WithTimeout(context.Background(), 60*time.Second)
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defer func() {
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cancel()
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s.collectScreenshot(ctx.Err(), s.Page)
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}()
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secret := s.doRegisterThenLogout(s.T(), s.Context(ctx), "john", "password")
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s.doLoginTwoFactor(s.T(), s.Context(ctx), "john", "password", false, secret, "")
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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err := haDockerEnvironment.Stop("redis-node-0")
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s.Require().NoError(err)
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defer func() {
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err = haDockerEnvironment.Start("redis-node-0")
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s.Require().NoError(err)
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}()
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s.doVisit(s.T(), s.Context(ctx), HomeBaseURL)
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s.verifyIsHome(s.T(), s.Context(ctx))
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// Verify the user is still authenticated.
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s.doVisit(s.T(), s.Context(ctx), GetLoginBaseURL())
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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// Then logout and login again to check we can see the secret.
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s.doLogout(s.T(), s.Context(ctx))
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s.verifyIsFirstFactorPage(s.T(), s.Context(ctx))
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s.doLoginTwoFactor(s.T(), s.Context(ctx), "john", "password", false, secret, fmt.Sprintf("%s/secret.html", SecureBaseURL))
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s.verifySecretAuthorized(s.T(), s.Context(ctx))
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}
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func (s *HighAvailabilityWebDriverSuite) TestShouldKeepUserSessionActiveWithPrimaryRedisSentinelFailureAndSecondaryRedisNodeFailure() {
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ctx, cancel := context.WithTimeout(context.Background(), 90*time.Second)
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defer func() {
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cancel()
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s.collectScreenshot(ctx.Err(), s.Page)
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}()
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secret := s.doRegisterThenLogout(s.T(), s.Context(ctx), "john", "password")
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s.doLoginTwoFactor(s.T(), s.Context(ctx), "john", "password", false, secret, "")
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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err := haDockerEnvironment.Stop("redis-sentinel-0")
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s.Require().NoError(err)
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defer func() {
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err = haDockerEnvironment.Start("redis-sentinel-0")
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s.Require().NoError(err)
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}()
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err = haDockerEnvironment.Stop("redis-node-2")
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s.Require().NoError(err)
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defer func() {
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err = haDockerEnvironment.Start("redis-node-2")
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s.Require().NoError(err)
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}()
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s.doVisit(s.T(), s.Context(ctx), HomeBaseURL)
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s.verifyIsHome(s.T(), s.Context(ctx))
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// Verify the user is still authenticated.
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s.doVisit(s.T(), s.Context(ctx), GetLoginBaseURL())
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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}
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func (s *HighAvailabilityWebDriverSuite) TestShouldKeepUserDataInDB() {
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ctx, cancel := context.WithTimeout(context.Background(), 60*time.Second)
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defer func() {
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cancel()
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s.collectScreenshot(ctx.Err(), s.Page)
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}()
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secret := s.doRegisterThenLogout(s.T(), s.Context(ctx), "john", "password")
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err := haDockerEnvironment.Restart("mariadb")
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s.Require().NoError(err)
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s.doLoginTwoFactor(s.T(), s.Context(ctx), "john", "password", false, secret, "")
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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}
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func (s *HighAvailabilityWebDriverSuite) TestShouldKeepSessionAfterAutheliaRestart() {
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ctx, cancel := context.WithTimeout(context.Background(), 120*time.Second)
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defer func() {
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cancel()
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s.collectScreenshot(ctx.Err(), s.Page)
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}()
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secret := s.doRegisterAndLogin2FA(s.T(), s.Context(ctx), "john", "password", false, "")
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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err := haDockerEnvironment.Restart("authelia-backend")
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s.Require().NoError(err)
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err = waitUntilAutheliaBackendIsReady(haDockerEnvironment)
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s.Require().NoError(err)
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s.doVisit(s.T(), s.Context(ctx), HomeBaseURL)
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s.verifyIsHome(s.T(), s.Context(ctx))
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// Verify the user is still authenticated.
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s.doVisit(s.T(), s.Context(ctx), GetLoginBaseURL())
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s.verifyIsSecondFactorPage(s.T(), s.Context(ctx))
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// Then logout and login again to check the secret is still there.
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s.doLogout(s.T(), s.Context(ctx))
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s.verifyIsFirstFactorPage(s.T(), s.Context(ctx))
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s.doLoginTwoFactor(s.T(), s.Context(ctx), "john", "password", false, secret, fmt.Sprintf("%s/secret.html", SecureBaseURL))
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s.verifySecretAuthorized(s.T(), s.Context(ctx))
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}
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var UserJohn = "john"
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var UserBob = "bob"
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var UserHarry = "harry"
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var Users = []string{UserJohn, UserBob, UserHarry}
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var expectedAuthorizations = map[string](map[string]bool){
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fmt.Sprintf("%s/secret.html", PublicBaseURL): {
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UserJohn: true, UserBob: true, UserHarry: true,
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},
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fmt.Sprintf("%s/secret.html", SecureBaseURL): {
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UserJohn: true, UserBob: true, UserHarry: true,
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},
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fmt.Sprintf("%s/secret.html", AdminBaseURL): {
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UserJohn: true, UserBob: false, UserHarry: false,
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},
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fmt.Sprintf("%s/secret.html", SingleFactorBaseURL): {
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UserJohn: true, UserBob: true, UserHarry: true,
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},
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fmt.Sprintf("%s/secret.html", MX1MailBaseURL): {
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UserJohn: true, UserBob: true, UserHarry: false,
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},
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fmt.Sprintf("%s/secret.html", MX2MailBaseURL): {
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UserJohn: false, UserBob: true, UserHarry: false,
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},
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fmt.Sprintf("%s/groups/admin/secret.html", DevBaseURL): {
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UserJohn: true, UserBob: false, UserHarry: false,
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},
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fmt.Sprintf("%s/groups/dev/secret.html", DevBaseURL): {
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UserJohn: true, UserBob: true, UserHarry: false,
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},
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fmt.Sprintf("%s/users/john/secret.html", DevBaseURL): {
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UserJohn: true, UserBob: false, UserHarry: false,
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},
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fmt.Sprintf("%s/users/harry/secret.html", DevBaseURL): {
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UserJohn: true, UserBob: false, UserHarry: true,
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},
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fmt.Sprintf("%s/users/bob/secret.html", DevBaseURL): {
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UserJohn: true, UserBob: true, UserHarry: false,
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},
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}
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func (s *HighAvailabilityWebDriverSuite) TestShouldVerifyAccessControl() {
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verifyUserIsAuthorized := func(ctx context.Context, t *testing.T, targetURL string, authorized bool) {
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s.doVisit(t, s.Context(ctx), targetURL)
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s.verifyURLIs(t, s.Context(ctx), targetURL)
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if authorized {
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s.verifySecretAuthorized(t, s.Context(ctx))
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} else {
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s.verifyBodyContains(t, s.Context(ctx), "403 Forbidden")
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}
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}
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verifyAuthorization := func(username string) func(t *testing.T) {
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return func(t *testing.T) {
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ctx, cancel := context.WithTimeout(context.Background(), 20*time.Second)
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defer func() {
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s.collectScreenshot(ctx.Err(), s.Page)
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cancel()
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}()
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s.doRegisterAndLogin2FA(t, s.Context(ctx), username, "password", false, "")
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for url, authorizations := range expectedAuthorizations {
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t.Run(url, func(t *testing.T) {
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verifyUserIsAuthorized(ctx, t, url, authorizations[username])
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})
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}
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s.doLogout(t, s.Context(ctx))
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}
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}
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for _, user := range Users {
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s.T().Run(user, verifyAuthorization(user))
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}
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}
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type HighAvailabilitySuite struct {
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suite.Suite
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}
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func NewHighAvailabilitySuite() *HighAvailabilitySuite {
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return &HighAvailabilitySuite{}
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}
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func DoGetWithAuth(t *testing.T, username, password string) int {
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client := NewHTTPClient()
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req, err := http.NewRequest("GET", fmt.Sprintf("%s/secret.html", SingleFactorBaseURL), nil)
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assert.NoError(t, err)
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req.SetBasicAuth(username, password)
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res, err := client.Do(req)
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assert.NoError(t, err)
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return res.StatusCode
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}
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func (s *HighAvailabilitySuite) TestBasicAuth() {
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s.Assert().Equal(DoGetWithAuth(s.T(), "john", "password"), 200)
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s.Assert().Equal(DoGetWithAuth(s.T(), "john", "bad-password"), 302)
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s.Assert().Equal(DoGetWithAuth(s.T(), "dontexist", "password"), 302)
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}
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func (s *HighAvailabilitySuite) Test1FAScenario() {
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suite.Run(s.T(), New1FAScenario())
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}
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func (s *HighAvailabilitySuite) Test2FAScenario() {
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suite.Run(s.T(), New2FAScenario())
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}
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func (s *HighAvailabilitySuite) TestRegulationScenario() {
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suite.Run(s.T(), NewRegulationScenario())
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}
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func (s *HighAvailabilitySuite) TestCustomHeadersScenario() {
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suite.Run(s.T(), NewCustomHeadersScenario())
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}
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func (s *HighAvailabilitySuite) TestRedirectionCheckScenario() {
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suite.Run(s.T(), NewRedirectionCheckScenario())
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}
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func (s *HighAvailabilitySuite) TestHighAvailabilityWebDriverSuite() {
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suite.Run(s.T(), NewHighAvailabilityWebDriverSuite())
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}
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func TestHighAvailabilityWebDriverSuite(t *testing.T) {
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if testing.Short() {
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t.Skip("skipping suite test in short mode")
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}
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suite.Run(t, NewHighAvailabilityWebDriverSuite())
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}
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func TestHighAvailabilitySuite(t *testing.T) {
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if testing.Short() {
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t.Skip("skipping suite test in short mode")
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}
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suite.Run(t, NewHighAvailabilitySuite())
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}
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