b05e8a5e24
- Now that the FederationDomain has `status.conditions`, we can use `kubectl wait` to wait for it to be ready in this hack script
467 lines
18 KiB
Bash
Executable File
467 lines
18 KiB
Bash
Executable File
#!/usr/bin/env bash
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# Copyright 2021-2023 the Pinniped contributors. All Rights Reserved.
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# SPDX-License-Identifier: Apache-2.0
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#
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# A script to perform the setup required to manually test using the supervisor on a kind cluster.
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# Assumes that you installed the apps already using hack/prepare-for-integration-tests.sh.
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#
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# This script is a little hacky to avoid setting up any kind of ingress or load balancer on Kind.
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# It uses an http proxy server and port forwarding to route the requests into the cluster.
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# This is only intended for quick manual testing of features by contributors and is not a
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# representation of how to really deploy or configure Pinniped.
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#
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# This uses the Supervisor and Concierge in the same cluster. Usually the Supervisor would be
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# deployed in one cluster while each workload cluster would have a Concierge. All the workload
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# cluster Concierge configurations would be similar to each other, all trusting the same Supervisor.
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#
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# Depends on `step` which can be installed by `brew install step` on MacOS.
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#
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set -euo pipefail
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# Change working directory to the top of the repo.
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ROOT="$(cd "$(dirname "${BASH_SOURCE[0]}")/.." && pwd)"
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cd "$ROOT"
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function log_error() {
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RED='\033[0;31m'
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NC='\033[0m'
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if [[ ${COLORTERM:-unknown} =~ ^(truecolor|24bit)$ ]]; then
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echo -e "🙁${RED} Error: $* ${NC}"
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else
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echo ":( Error: $*"
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fi
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}
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use_oidc_upstream=no
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use_ldap_upstream=no
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use_ad_upstream=no
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use_flow=""
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while (("$#")); do
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case "$1" in
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--flow)
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shift
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# If there are no more command line arguments, or there is another command line argument but it starts with a dash, then error
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if [[ "$#" == "0" || "$1" == -* ]]; then
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log_error "--flow requires a flow name to be specified (e.g. cli_password or browser_authcode"
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exit 1
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fi
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if [[ "$1" != "browser_authcode" && "$1" != "cli_password" ]]; then
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log_error "--flow must be cli_password or browser_authcode"
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exit 1
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fi
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use_flow=$1
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shift
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;;
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--ldap)
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use_ldap_upstream=yes
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shift
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;;
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--oidc)
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use_oidc_upstream=yes
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shift
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;;
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--ad)
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# Use an ActiveDirectoryIdentityProvider.
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# This assumes that you used the --get-active-directory-vars flag with hack/prepare-for-integration-tests.sh.
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use_ad_upstream=yes
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shift
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;;
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-*)
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log_error "Unsupported flag $1" >&2
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exit 1
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;;
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*)
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log_error "Unsupported positional arg $1" >&2
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exit 1
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;;
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esac
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done
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if [[ "$use_oidc_upstream" == "no" && "$use_ldap_upstream" == "no" && "$use_ad_upstream" == "no" ]]; then
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log_error "Error: Please use --oidc, --ldap, or --ad to specify which type(s) of upstream identity provider(s) you would like. May use one or multiple."
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exit 1
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fi
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# Read the env vars output by hack/prepare-for-integration-tests.sh
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source /tmp/integration-test-env
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# Choose some filenames.
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root_ca_crt_path=root_ca.crt
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root_ca_key_path=root_ca.key
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tls_crt_path=tls.crt
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tls_key_path=tls.key
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# Choose an audience name for the Concierge.
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audience="my-workload-cluster-$(openssl rand -hex 4)"
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# These settings align with how the Dex redirect URI is configured by hack/prepare-for-integration-tests.sh.
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# Note that this hostname can only be resolved inside the cluster, so we will use a web proxy running inside
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# the cluster whenever we want to be able to connect to it.
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issuer_host="pinniped-supervisor-clusterip.supervisor.svc.cluster.local"
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issuer="https://$issuer_host/some/path"
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if [[ "$use_oidc_upstream" == "yes" ]]; then
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# Make an OIDCIdentityProvider which uses Dex to provide identity.
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cat <<EOF | kubectl apply --namespace "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" -f -
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apiVersion: idp.supervisor.pinniped.dev/v1alpha1
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kind: OIDCIdentityProvider
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metadata:
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name: my-oidc-provider
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spec:
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issuer: "$PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_ISSUER"
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tls:
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certificateAuthorityData: "$PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_ISSUER_CA_BUNDLE"
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authorizationConfig:
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additionalScopes: [ ${PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_ADDITIONAL_SCOPES} ]
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allowPasswordGrant: true
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claims:
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username: "$PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_USERNAME_CLAIM"
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groups: "$PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_GROUPS_CLAIM"
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client:
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secretName: my-oidc-provider-client-secret
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EOF
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# Make a Secret for the above OIDCIdentityProvider to describe the OIDC client configured in Dex.
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cat <<EOF | kubectl apply --namespace "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" -f -
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apiVersion: v1
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kind: Secret
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metadata:
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name: my-oidc-provider-client-secret
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stringData:
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clientID: "$PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_CLIENT_ID"
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clientSecret: "$PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_CLIENT_SECRET"
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type: "secrets.pinniped.dev/oidc-client"
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EOF
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# Grant the test user some RBAC permissions so we can play with kubectl as that user.
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kubectl create clusterrolebinding oidc-test-user-can-view --clusterrole view \
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--user "$PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_USERNAME" \
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--dry-run=client --output yaml | kubectl apply -f -
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fi
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if [[ "$use_ldap_upstream" == "yes" ]]; then
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# Make an LDAPIdentityProvider which uses OpenLDAP to provide identity.
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cat <<EOF | kubectl apply --namespace "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" -f -
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apiVersion: idp.supervisor.pinniped.dev/v1alpha1
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kind: LDAPIdentityProvider
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metadata:
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name: my-ldap-provider
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spec:
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host: "$PINNIPED_TEST_LDAP_HOST"
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tls:
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certificateAuthorityData: "$PINNIPED_TEST_LDAP_LDAPS_CA_BUNDLE"
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bind:
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secretName: my-ldap-service-account
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groupSearch:
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base: "$PINNIPED_TEST_LDAP_GROUPS_SEARCH_BASE"
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attributes:
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groupName: "cn"
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userSearch:
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base: "$PINNIPED_TEST_LDAP_USERS_SEARCH_BASE"
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filter: "cn={}"
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attributes:
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uid: "$PINNIPED_TEST_LDAP_USER_UNIQUE_ID_ATTRIBUTE_NAME"
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username: "$PINNIPED_TEST_LDAP_USER_EMAIL_ATTRIBUTE_NAME"
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EOF
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# Make a Secret for the above LDAPIdentityProvider to describe the bind account.
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cat <<EOF | kubectl apply --namespace "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" -f -
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apiVersion: v1
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kind: Secret
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metadata:
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name: my-ldap-service-account
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stringData:
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username: "$PINNIPED_TEST_LDAP_BIND_ACCOUNT_USERNAME"
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password: "$PINNIPED_TEST_LDAP_BIND_ACCOUNT_PASSWORD"
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type: "kubernetes.io/basic-auth"
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EOF
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# Grant the test user some RBAC permissions so we can play with kubectl as that user.
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kubectl create clusterrolebinding ldap-test-user-can-view --clusterrole view \
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--user "$PINNIPED_TEST_LDAP_USER_EMAIL_ATTRIBUTE_VALUE" \
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--dry-run=client --output yaml | kubectl apply -f -
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fi
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if [[ "$use_ad_upstream" == "yes" ]]; then
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# Make an ActiveDirectoryIdentityProvider. Needs to be pointed to a real AD server by env vars.
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cat <<EOF | kubectl apply --namespace "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" -f -
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apiVersion: idp.supervisor.pinniped.dev/v1alpha1
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kind: ActiveDirectoryIdentityProvider
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metadata:
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name: my-ad-provider
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spec:
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host: "$PINNIPED_TEST_AD_HOST"
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tls:
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certificateAuthorityData: "$PINNIPED_TEST_AD_LDAPS_CA_BUNDLE"
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bind:
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secretName: my-ad-service-account
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EOF
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# Make a Secret for the above ActiveDirectoryIdentityProvider to describe the bind account.
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cat <<EOF | kubectl apply --namespace "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" -f -
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apiVersion: v1
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kind: Secret
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metadata:
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name: my-ad-service-account
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stringData:
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username: "$PINNIPED_TEST_AD_BIND_ACCOUNT_USERNAME"
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password: "$PINNIPED_TEST_AD_BIND_ACCOUNT_PASSWORD"
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type: "kubernetes.io/basic-auth"
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EOF
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# Grant the test user some RBAC permissions so we can play with kubectl as that user.
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kubectl create clusterrolebinding ldap-test-user-can-view --clusterrole view \
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--user "$PINNIPED_TEST_AD_USER_USER_PRINCIPAL_NAME" \
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--dry-run=client --output yaml | kubectl apply -f -
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fi
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# Create a CA and TLS serving certificates for the Supervisor's FederationDomain.
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if [[ ! -f "$root_ca_crt_path" ]]; then
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step certificate create \
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"Supervisor CA" "$root_ca_crt_path" "$root_ca_key_path" \
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--profile root-ca \
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--no-password --insecure --force
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fi
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if [[ ! -f "$tls_crt_path" || ! -f "$tls_key_path" ]]; then
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step certificate create \
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"$issuer_host" "$tls_crt_path" "$tls_key_path" \
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--profile leaf \
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--not-after 8760h \
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--ca "$root_ca_crt_path" --ca-key "$root_ca_key_path" \
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--no-password --insecure --force
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fi
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# Put the TLS certificate into a Secret for the Supervisor's FederationDomain.
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kubectl create secret tls -n "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" my-federation-domain-tls --cert "$tls_crt_path" --key "$tls_key_path" \
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--dry-run=client --output yaml | kubectl apply -f -
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# Variable that will be used to build up the "identityProviders" yaml for the FederationDomain.
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fd_idps=""
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if [[ "$use_oidc_upstream" == "yes" ]]; then
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# Indenting the heredoc by 4 spaces to make it indented the correct amount in the FederationDomain below.
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fd_idps="${fd_idps}$(
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cat <<EOF
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- displayName: "My OIDC IDP"
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objectRef:
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apiGroup: idp.supervisor.pinniped.dev
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kind: OIDCIdentityProvider
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name: my-oidc-provider
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transforms:
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expressions:
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- type: username/v1
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expression: '"oidc:" + username'
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- type: groups/v1 # the pinny user doesn't belong to any groups in Dex, so this isn't strictly needed, but doesn't hurt
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expression: 'groups.map(group, "oidc:" + group)'
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examples:
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- username: ryan@example.com
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groups: [ a, b ]
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expects:
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username: oidc:ryan@example.com
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groups: [ oidc:a, oidc:b ]
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EOF
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)"
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fi
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if [[ "$use_ldap_upstream" == "yes" ]]; then
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# Indenting the heredoc by 4 spaces to make it indented the correct amount in the FederationDomain below.
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fd_idps="${fd_idps}$(
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cat <<EOF
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- displayName: "My LDAP IDP"
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objectRef:
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apiGroup: idp.supervisor.pinniped.dev
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kind: LDAPIdentityProvider
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name: my-ldap-provider
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transforms: # these are contrived to exercise all the available features
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constants:
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- name: prefix
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type: string
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stringValue: "ldap:"
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- name: onlyIncludeGroupsWithThisPrefix
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type: string
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stringValue: "ball-" # pinny belongs to ball-game-players in openldap
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- name: mustBelongToOneOfThese
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type: stringList
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stringListValue: [ ball-admins, seals ] # pinny belongs to seals in openldap
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- name: additionalAdmins
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type: stringList
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stringListValue: [ pinny.ldap@example.com, ryan@example.com ] # pinny's email address in openldap
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expressions:
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- type: policy/v1
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expression: 'groups.exists(g, g in strListConst.mustBelongToOneOfThese)'
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message: "Only users in certain kube groups are allowed to authenticate"
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- type: groups/v1
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expression: 'username in strListConst.additionalAdmins ? groups + ["ball-admins"] : groups'
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- type: groups/v1
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expression: 'groups.filter(group, group.startsWith(strConst.onlyIncludeGroupsWithThisPrefix))'
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- type: username/v1
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expression: 'strConst.prefix + username'
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- type: groups/v1
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expression: 'groups.map(group, strConst.prefix + group)'
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examples:
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- username: ryan@example.com
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groups: [ ball-developers, seals, non-ball-group ] # allowed to auth because belongs to seals
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expects:
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username: ldap:ryan@example.com
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groups: [ ldap:ball-developers, ldap:ball-admins ] # gets ball-admins because of username, others dropped because they lack "ball-" prefix
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- username: someone_else@example.com
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groups: [ ball-developers, ball-admins, non-ball-group ] # allowed to auth because belongs to ball-admins
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expects:
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username: ldap:someone_else@example.com
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groups: [ ldap:ball-developers, ldap:ball-admins ] # seals dropped because it lacks prefix
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- username: paul@example.com
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groups: [ not-ball-admins-group, not-seals-group ] # reject because does not belong to any of the required groups
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expects:
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rejected: true
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message: "Only users in certain kube groups are allowed to authenticate"
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EOF
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)"
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fi
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if [[ "$use_ad_upstream" == "yes" ]]; then
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# Indenting the heredoc by 4 spaces to make it indented the correct amount in the FederationDomain below.
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fd_idps="${fd_idps}$(
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cat <<EOF
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- displayName: "My AD IDP"
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objectRef:
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apiGroup: idp.supervisor.pinniped.dev
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kind: ActiveDirectoryIdentityProvider
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name: my-ad-provider
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EOF
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)"
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fi
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# Make a FederationDomain using the TLS Secret and identity providers from above.
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cat <<EOF | kubectl apply --namespace "$PINNIPED_TEST_SUPERVISOR_NAMESPACE" -f -
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apiVersion: config.supervisor.pinniped.dev/v1alpha1
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kind: FederationDomain
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metadata:
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name: my-federation-domain
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spec:
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issuer: $issuer
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tls:
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secretName: my-federation-domain-tls
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identityProviders:${fd_idps}
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EOF
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echo "Waiting for FederationDomain to initialize or update..."
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kubectl wait --for=condition=Ready FederationDomain/my-federation-domain -n "$PINNIPED_TEST_SUPERVISOR_NAMESPACE"
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# Test that the federation domain is working before we proceed.
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echo "Fetching FederationDomain discovery info via command: https_proxy=\"$PINNIPED_TEST_PROXY\" curl -fLsS --cacert \"$root_ca_crt_path\" \"$issuer/.well-known/openid-configuration\""
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https_proxy="$PINNIPED_TEST_PROXY" curl -fLsS --cacert "$root_ca_crt_path" "$issuer/.well-known/openid-configuration" | jq .
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if [[ "$OSTYPE" == "darwin"* ]]; then
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certificateAuthorityData=$(cat "$root_ca_crt_path" | base64)
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else
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# Linux base64 requires an extra flag to keep the output on one line.
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certificateAuthorityData=$(cat "$root_ca_crt_path" | base64 -w 0)
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fi
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# Make a JWTAuthenticator which respects JWTs from the Supervisor's issuer.
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# The issuer URL must be accessible from within the cluster for OIDC discovery.
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cat <<EOF | kubectl apply -f -
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apiVersion: authentication.concierge.pinniped.dev/v1alpha1
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kind: JWTAuthenticator
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metadata:
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name: my-jwt-authenticator
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spec:
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issuer: $issuer
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audience: $audience
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tls:
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certificateAuthorityData: $certificateAuthorityData
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EOF
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echo "Waiting for JWTAuthenticator to initialize or update..."
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# Sleeping is a race, but that's probably good enough for the purposes of this script.
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sleep 5
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# Compile the CLI.
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go build ./cmd/pinniped
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# In case Pinniped was just installed moments ago, wait for the CredentialIssuer to be ready.
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while [[ -z "$(kubectl get credentialissuer pinniped-concierge-config -o=jsonpath='{.status.strategies[?(@.status == "Success")].type}')" ]]; do
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echo "Waiting for a successful strategy on CredentialIssuer"
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sleep 2
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done
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# Use the CLI to get the kubeconfig. Tell it that you don't want the browser to automatically open for browser-based
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# flows so we can open our own browser with the proxy settings. Generate a kubeconfig for each IDP.
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flow_arg=""
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if [[ -n "$use_flow" ]]; then
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flow_arg="--upstream-identity-provider-flow $use_flow"
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fi
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if [[ "$use_oidc_upstream" == "yes" ]]; then
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https_proxy="$PINNIPED_TEST_PROXY" no_proxy="127.0.0.1" \
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./pinniped get kubeconfig --oidc-skip-browser $flow_arg --upstream-identity-provider-type oidc >kubeconfig-oidc.yaml
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fi
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if [[ "$use_ldap_upstream" == "yes" ]]; then
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https_proxy="$PINNIPED_TEST_PROXY" no_proxy="127.0.0.1" \
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./pinniped get kubeconfig --oidc-skip-browser $flow_arg --upstream-identity-provider-type ldap >kubeconfig-ldap.yaml
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fi
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if [[ "$use_ad_upstream" == "yes" ]]; then
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https_proxy="$PINNIPED_TEST_PROXY" no_proxy="127.0.0.1" \
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./pinniped get kubeconfig --oidc-skip-browser $flow_arg --upstream-identity-provider-type activedirectory >kubeconfig-ad.yaml
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fi
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# Clear the local CLI cache to ensure that the kubectl command below will need to perform a fresh login.
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rm -f "$HOME/.config/pinniped/sessions.yaml"
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rm -f "$HOME/.config/pinniped/credentials.yaml"
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echo
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echo "Ready! 🚀"
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if [[ "$use_oidc_upstream" == "yes" || "$use_flow" == "browser_authcode" ]]; then
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echo
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echo "To be able to access the Supervisor URL during login, start Chrome like this:"
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echo " open -a \"Google Chrome\" --args --proxy-server=\"$PINNIPED_TEST_PROXY\""
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echo "Note that Chrome must be fully quit before being started with --proxy-server."
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echo "Then open the login URL shown below in that new Chrome window."
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echo
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echo "When prompted for username and password, use these values:"
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echo
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fi
|
|
|
|
if [[ "$use_oidc_upstream" == "yes" ]]; then
|
|
echo " OIDC Username: $PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_USERNAME"
|
|
echo " OIDC Password: $PINNIPED_TEST_SUPERVISOR_UPSTREAM_OIDC_PASSWORD"
|
|
echo
|
|
fi
|
|
|
|
if [[ "$use_ldap_upstream" == "yes" ]]; then
|
|
echo " LDAP Username: $PINNIPED_TEST_LDAP_USER_CN"
|
|
echo " LDAP Password: $PINNIPED_TEST_LDAP_USER_PASSWORD"
|
|
echo
|
|
fi
|
|
|
|
if [[ "$use_ad_upstream" == "yes" ]]; then
|
|
echo " AD Username: $PINNIPED_TEST_AD_USER_USER_PRINCIPAL_NAME"
|
|
echo " AD Password: $PINNIPED_TEST_AD_USER_PASSWORD"
|
|
echo
|
|
fi
|
|
|
|
# Echo the commands that may be used to login and print the identity of the currently logged in user.
|
|
# Once the CLI has cached your tokens, it will automatically refresh your short-lived credentials whenever
|
|
# they expire, so you should not be prompted to log in again for the rest of the day.
|
|
if [[ "$use_oidc_upstream" == "yes" ]]; then
|
|
echo "To log in using OIDC, run:"
|
|
echo "PINNIPED_DEBUG=true https_proxy=\"$PINNIPED_TEST_PROXY\" no_proxy=\"127.0.0.1\" ./pinniped whoami --kubeconfig ./kubeconfig-oidc.yaml"
|
|
echo
|
|
fi
|
|
if [[ "$use_ldap_upstream" == "yes" ]]; then
|
|
echo "To log in using LDAP, run:"
|
|
echo "PINNIPED_DEBUG=true https_proxy=\"$PINNIPED_TEST_PROXY\" no_proxy=\"127.0.0.1\" ./pinniped whoami --kubeconfig ./kubeconfig-ldap.yaml"
|
|
echo
|
|
fi
|
|
if [[ "$use_ad_upstream" == "yes" ]]; then
|
|
echo "To log in using AD, run:"
|
|
echo "PINNIPED_DEBUG=true https_proxy=\"$PINNIPED_TEST_PROXY\" no_proxy=\"127.0.0.1\" ./pinniped whoami --kubeconfig ./kubeconfig-ad.yaml"
|
|
echo
|
|
fi
|