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95b8531fdd
Signed-off-by: Paul Meyer <49727155+katexochen@users.noreply.github.com>
105 lines
4.3 KiB
YAML
105 lines
4.3 KiB
YAML
name: E2E autoscaling test
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description: "Test autoscaling functionality of the operator."
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inputs:
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kubeconfig:
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description: "The kubeconfig of the cluster to test."
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required: true
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runs:
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using: "composite"
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steps:
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# This action assumes that the cluster is in an ready state, with all nodes joined and ready.
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- name: Determine number of workers in cluster
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id: worker_count
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shell: bash
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env:
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KUBECONFIG: ${{ inputs.kubeconfig }}
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run: |
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worker_count=$(kubectl get nodes -o json --selector='!node-role.kubernetes.io/control-plane' | jq '.items | length')
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echo "worker_count=${worker_count}" >> $GITHUB_OUTPUT
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echo "The cluster currently has ${worker_count} nodes."
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# The following step identifies the name of the worker scaling group. As the scaling group is
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# a custom resource definition, we need to wait for its creation.
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- name: Find worker scaling group
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id: worker_name
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shell: bash
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env:
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KUBECONFIG: ${{ inputs.kubeconfig }}
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run: |
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TIMEOUT=1200
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WAIT=0
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until [[ $(( "$(kubectl get scalinggroups -o json | jq '.items | length')" )) -ge 2 ]] || [[ $WAIT -gt $TIMEOUT ]];
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do
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echo "Waiting for creation of custom resource definitions..."
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WAIT=$((WAIT+30))
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sleep 30
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done
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if [[ $WAIT -gt $TIMEOUT ]]; then
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echo "Timed out waiting for nodes to join"
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exit 1
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fi
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worker_group=$(kubectl get scalinggroups -o json | jq -r '.items[].metadata.name | select(contains("worker"))')
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echo "worker_name=${worker_group}" >> $GITHUB_OUTPUT
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echo "The name of your worker scaling group is '${worker_group}'."
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- name: Patch autoscaling to true
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shell: bash
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env:
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KUBECONFIG: ${{ inputs.kubeconfig }}
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run: |
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worker_group=${{ steps.worker_name.outputs.worker_name }}
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kubectl patch scalinggroups ${worker_group} --patch '{"spec":{"autoscaling": true}}' --type='merge'
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kubectl get scalinggroup ${worker_group} -o jsonpath='{.spec}' | jq
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- name: Set an autoscaling target/limit
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id: scaling_limit
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shell: bash
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env:
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KUBECONFIG: ${{ inputs.kubeconfig }}
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run: |
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worker_group=${{ steps.worker_name.outputs.worker_name }}
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worker_count=${{ steps.worker_count.outputs.worker_count }}
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worker_target=$((worker_count + 2))
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echo "worker_target=${worker_target}" >> $GITHUB_OUTPUT
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kubectl patch scalinggroups ${worker_group} --patch '{"spec":{"max": '${worker_target}'}}' --type='merge'
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kubectl get scalinggroup ${worker_group} -o jsonpath='{.spec}' | jq
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# Number of replicas that are deployed to trigger autoscaling of nodes can't be determined exact.
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# The following steps calculates a value based on the limit of 110 pods per nodes, that is
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# described at https://kubernetes.io/docs/setup/best-practices/cluster-large/.
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# We try to fill the existing nodes and one additional node up to the limit,
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# and add half capacity for the second additional node so we have some space to the upper and
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# lower bound. If we deploy to many replicas, the deployment won't finish as we run into our
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# scaling limit. If we deploy not enough replicas, we won't see the desired number of nodes.
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- name: Deployment to trigger autoscaling
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shell: bash
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env:
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KUBECONFIG: ${{ inputs.kubeconfig }}
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run: |
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worker_count=${{ steps.worker_count.outputs.worker_count }}
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kubectl create -n default deployment nginx --image=nginx --replicas $(( 110 * (worker_count + 1) + 55 ))
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- name: Wait for autoscaling and check result
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shell: bash
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env:
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KUBECONFIG: ${{ inputs.kubeconfig }}
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run: |
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kubectl wait deployment nginx --for condition=available --timeout=15m
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worker_count=$(kubectl get nodes -o json --selector='!node-role.kubernetes.io/control-plane' | jq '.items | length')
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if [[ $(( "${{ steps.scaling_limit.outputs.worker_target }}" )) -ne $(( "${worker_count}" )) ]]; then
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echo "::error::Expected worker count ${{ steps.scaling_limit.outputs.worker_target }}, but was ${worker_count}"
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exit 1
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fi
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- name: Delete deployment
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if: always()
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shell: bash
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env:
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KUBECONFIG: ${{ inputs.kubeconfig }}
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run: kubectl delete deployment nginx
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