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jupyterhub_config-workspace.py
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jupyterhub_config-workspace.py
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# Authenticate users against OpenShift OAuth provider.
c.JupyterHub.authenticator_class = "openshift"
from oauthenticator.openshift import OpenShiftOAuthenticator
OpenShiftOAuthenticator.scope = ['user:full']
client_id = '%s-%s-users' % (application_name, namespace)
client_secret = os.environ['OAUTH_CLIENT_SECRET']
c.OpenShiftOAuthenticator.client_id = client_id
c.OpenShiftOAuthenticator.client_secret = client_secret
c.Authenticator.enable_auth_state = True
c.CryptKeeper.keys = [ client_secret.encode('utf-8') ]
c.OpenShiftOAuthenticator.oauth_callback_url = (
'https://%s/hub/oauth_callback' % public_hostname)
# Add any additional JupyterHub configuration settings.
c.KubeSpawner.extra_labels = {
'spawner': 'workspace',
'class': 'session',
'user': '{username}'
}
# Set up list of registered users and any users nominated as admins.
if os.path.exists('/opt/app-root/configs/admin_users.txt'):
with open('/opt/app-root/configs/admin_users.txt') as fp:
content = fp.read().strip()
if content:
c.Authenticator.admin_users = set(content.split())
if os.path.exists('/opt/app-root/configs/user_whitelist.txt'):
with open('/opt/app-root/configs/user_whitelist.txt') as fp:
c.Authenticator.whitelist = set(fp.read().strip().split())
# For workshops we provide each user with a persistent volume so they
# don't loose their work. This is mounted on /opt/app-root, so we need
# to copy the contents from the image into the persistent volume the
# first time using an init container.
volume_size = os.environ.get('JUPYTERHUB_VOLUME_SIZE')
if volume_size:
c.KubeSpawner.pvc_name_template = c.KubeSpawner.pod_name_template
c.KubeSpawner.storage_pvc_ensure = True
c.KubeSpawner.storage_capacity = volume_size
c.KubeSpawner.storage_access_modes = ['ReadWriteOnce']
c.KubeSpawner.volumes.extend([
{
'name': 'data',
'persistentVolumeClaim': {
'claimName': c.KubeSpawner.pvc_name_template
}
}
])
c.KubeSpawner.volume_mounts.extend([
{
'name': 'data',
'mountPath': '/opt/app-root',
'subPath': 'workspace'
}
])
c.KubeSpawner.init_containers.extend([
{
'name': 'setup-volume',
'image': '%s' % c.KubeSpawner.image_spec,
'command': [
'/opt/app-root/bin/setup-volume.sh',
'/opt/app-root',
'/mnt/workspace'
],
"resources": {
"limits": {
"memory": os.environ.get('NOTEBOOK_MEMORY', '128Mi')
},
"requests": {
"memory": os.environ.get('NOTEBOOK_MEMORY', '128Mi')
}
},
'volumeMounts': [
{
'name': 'data',
'mountPath': '/mnt'
}
]
}
])
# Make modifications to pod based on user and type of session.
from tornado import gen
@gen.coroutine
def modify_pod_hook(spawner, pod):
pod.spec.automount_service_account_token = True
# Grab the OpenShift user access token from the login state.
auth_state = yield spawner.user.get_auth_state()
access_token = auth_state['access_token']
# Set the session access token from the OpenShift login.
pod.spec.containers[0].env.append(
dict(name='OPENSHIFT_TOKEN', value=access_token))
# See if a template for the project name has been specified.
# Try expanding the name, substituting the username. If the
# result is different then we use it, not if it is the same
# which would suggest it isn't unique.
project = os.environ.get('OPENSHIFT_PROJECT')
if project:
name = project.format(username=spawner.user.name)
if name != project:
pod.spec.containers[0].env.append(
dict(name='PROJECT_NAMESPACE', value=name))
# Ensure project is created if it doesn't exist.
pod.spec.containers[0].env.append(
dict(name='OPENSHIFT_PROJECT', value=name))
return pod
c.KubeSpawner.modify_pod_hook = modify_pod_hook
# Setup culling of terminal instances if timeout parameter is supplied.
idle_timeout = os.environ.get('JUPYTERHUB_IDLE_TIMEOUT')
if idle_timeout and int(idle_timeout):
cull_idle_servers_cmd = ['/opt/app-root/bin/cull-idle-servers']
cull_idle_servers_cmd.append('--timeout=%s' % idle_timeout)
c.JupyterHub.services.extend([
{
'name': 'cull-idle',
'admin': True,
'command': cull_idle_servers_cmd,
}
])