mirror of https://github.com/k3s-io/k3s
375 lines
12 KiB
Bash
375 lines
12 KiB
Bash
#!/bin/bash
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# Copyright 2014 The Kubernetes Authors All rights reserved.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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# A library of helper functions that each provider hosting Kubernetes must implement to use cluster/kube-*.sh scripts.
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KUBE_ROOT=$(dirname "${BASH_SOURCE}")/../..
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readonly ROOT=$(dirname "${BASH_SOURCE}")
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source "$ROOT/${KUBE_CONFIG_FILE:-"config-default.sh"}"
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source "$KUBE_ROOT/cluster/common.sh"
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export LIBVIRT_DEFAULT_URI=qemu:///system
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readonly POOL=kubernetes
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readonly POOL_PATH="$(cd $ROOT && pwd)/libvirt_storage_pool"
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ETCD_VERSION=${ETCD_VERSION:-v2.0.9}
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# join <delim> <list...>
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# Concatenates the list elements with the delimiter passed as first parameter
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#
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# Ex: join , a b c
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# -> a,b,c
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function join {
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local IFS="$1"
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shift
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echo "$*"
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}
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# Must ensure that the following ENV vars are set
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function detect-master {
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KUBE_MASTER_IP=$MASTER_IP
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KUBE_MASTER=$MASTER_NAME
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export KUBERNETES_MASTER=http://$KUBE_MASTER_IP:8080
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echo "KUBE_MASTER_IP: $KUBE_MASTER_IP"
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echo "KUBE_MASTER: $KUBE_MASTER"
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}
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# Get minion IP addresses and store in KUBE_MINION_IP_ADDRESSES[]
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function detect-minions {
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KUBE_MINION_IP_ADDRESSES=("${MINION_IPS[@]}")
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}
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# Verify prereqs on host machine
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function verify-prereqs {
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if ! which virsh >/dev/null; then
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echo "Can't find virsh in PATH, please fix and retry." >&2
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exit 1
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fi
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if ! virsh nodeinfo >/dev/null; then
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exit 1
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fi
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if [[ "$(</sys/kernel/mm/ksm/run)" -ne "1" ]]; then
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echo "KSM is not enabled" >&2
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echo "Enabling it would reduce the memory footprint of large clusters" >&2
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if [[ -t 0 ]]; then
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read -t 5 -n 1 -p "Do you want to enable KSM (requires root password) (y/n)? " answer
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echo ""
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if [[ "$answer" == 'y' ]]; then
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su -c 'echo 1 > /sys/kernel/mm/ksm/run'
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fi
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else
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echo "You can enable it with (as root):" >&2
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echo "" >&2
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echo " echo 1 > /sys/kernel/mm/ksm/run" >&2
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echo "" >&2
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fi
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fi
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}
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# Destroy the libvirt storage pool and all the images inside
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#
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# If 'keep_base_image' is passed as first parameter,
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# the base image is kept, as well as the storage pool.
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# All the other images are deleted.
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function destroy-pool {
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virsh pool-info $POOL >/dev/null 2>&1 || return
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rm -rf "$POOL_PATH"/kubernetes/*
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rm -rf "$POOL_PATH"/kubernetes_config*/*
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local vol
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virsh vol-list $POOL | awk 'NR>2 && !/^$/ && $1 ~ /^kubernetes/ {print $1}' | \
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while read vol; do
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virsh vol-delete $vol --pool $POOL
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done
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rm -rf "$POOL_PATH"/etcd/*
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virsh vol-delete etcd --pool $POOL || true
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[[ "$1" == 'keep_base_image' ]] && return
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set +e
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virsh vol-delete coreos_base.img --pool $POOL
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virsh pool-destroy $POOL
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rmdir "$POOL_PATH"
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set -e
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}
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# Creates the libvirt storage pool and populate it with
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# - the CoreOS base image
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# - the kubernetes binaries
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function initialize-pool {
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mkdir -p "$POOL_PATH"
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if ! virsh pool-info $POOL >/dev/null 2>&1; then
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virsh pool-create-as $POOL dir --target "$POOL_PATH"
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fi
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wget -N -P "$ROOT" http://${COREOS_CHANNEL:-alpha}.release.core-os.net/amd64-usr/current/coreos_production_qemu_image.img.bz2
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if [[ "$ROOT/coreos_production_qemu_image.img.bz2" -nt "$POOL_PATH/coreos_base.img" ]]; then
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bunzip2 -f -k "$ROOT/coreos_production_qemu_image.img.bz2"
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virsh vol-delete coreos_base.img --pool $POOL 2> /dev/null || true
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mv "$ROOT/coreos_production_qemu_image.img" "$POOL_PATH/coreos_base.img"
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fi
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# if ! virsh vol-list $POOL | grep -q coreos_base.img; then
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# virsh vol-create-as $POOL coreos_base.img 10G --format qcow2
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# virsh vol-upload coreos_base.img "$ROOT/coreos_production_qemu_image.img" --pool $POOL
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# fi
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mkdir -p "$POOL_PATH/kubernetes"
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kube-push-internal
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mkdir -p "$POOL_PATH/kubernetes/manifests"
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if [[ "$ENABLE_NODE_LOGGING" == "true" ]]; then
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if [[ "$LOGGING_DESTINATION" == "elasticsearch" ]]; then
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cp "$KUBE_ROOT/cluster/saltbase/salt/fluentd-es/fluentd-es.manifest" "$POOL_PATH/kubernetes/manifests"
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elif [[ "$LOGGING_DESTINATION" == "gcp" ]]; then
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cp "$KUBE_ROOT/cluster/saltbase/salt/fluentd-gcp/fluentd-gcp.manifest" "$POOL_PATH/kubernetes/manifests"
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fi
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fi
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mkdir -p "$POOL_PATH/kubernetes/addons"
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if [[ "$ENABLE_CLUSTER_DNS" == "true" ]]; then
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render-template "$ROOT/skydns-svc.yaml" > "$POOL_PATH/kubernetes/addons/skydns-svc.yaml"
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render-template "$ROOT/skydns-rc.yaml" > "$POOL_PATH/kubernetes/addons/skydns-rc.yaml"
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fi
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mkdir -p "$POOL_PATH/etcd"
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if [[ ! -f "$ROOT/etcd-${ETCD_VERSION}-linux-amd64.tar.gz" ]]; then
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wget -P "$ROOT" https://github.com/coreos/etcd/releases/download/${ETCD_VERSION}/etcd-${ETCD_VERSION}-linux-amd64.tar.gz
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fi
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if [[ "$ROOT/etcd-${ETCD_VERSION}-linux-amd64.tar.gz" -nt "$POOL_PATH/etcd/etcd" ]]; then
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tar -x -C "$POOL_PATH/etcd" -f "$ROOT/etcd-${ETCD_VERSION}-linux-amd64.tar.gz" etcd-${ETCD_VERSION}-linux-amd64
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rm -rf "$POOL_PATH/etcd/bin/*"
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mkdir -p "$POOL_PATH/etcd/bin"
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mv "$POOL_PATH"/etcd/etcd-${ETCD_VERSION}-linux-amd64/{etcd,etcdctl} "$POOL_PATH/etcd/bin"
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rm -rf "$POOL_PATH/etcd/etcd-${ETCD_VERSION}-linux-amd64"
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fi
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virsh pool-refresh $POOL
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}
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function destroy-network {
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set +e
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virsh net-destroy kubernetes_global
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virsh net-destroy kubernetes_pods
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set -e
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}
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function initialize-network {
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virsh net-create "$ROOT/network_kubernetes_global.xml"
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virsh net-create "$ROOT/network_kubernetes_pods.xml"
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}
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function render-template {
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eval "echo \"$(cat $1)\""
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}
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function wait-cluster-readiness {
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echo "Wait for cluster readiness"
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local kubectl="${KUBE_ROOT}/cluster/kubectl.sh"
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local timeout=120
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while [[ $timeout -ne 0 ]]; do
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nb_ready_minions=$("${kubectl}" get nodes -o template -t "{{range.items}}{{range.status.conditions}}{{.type}}{{end}}:{{end}}" --api-version=v1beta3 2>/dev/null | tr ':' '\n' | grep -c Ready || true)
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echo "Nb ready minions: $nb_ready_minions / $NUM_MINIONS"
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if [[ "$nb_ready_minions" -eq "$NUM_MINIONS" ]]; then
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return 0
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fi
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timeout=$(($timeout-1))
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sleep .5
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done
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return 1
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}
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# Instantiate a kubernetes cluster
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function kube-up {
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detect-master
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detect-minions
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get-password
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initialize-pool keep_base_image
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initialize-network
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readonly ssh_keys="$(cat ~/.ssh/id_*.pub | sed 's/^/ - /')"
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readonly kubernetes_dir="$POOL_PATH/kubernetes"
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readonly etcd_dir="$POOL_PATH/etcd"
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readonly discovery=$(curl -s https://discovery.etcd.io/new)
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readonly machines=$(join , "${KUBE_MINION_IP_ADDRESSES[@]}")
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local i
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for (( i = 0 ; i <= $NUM_MINIONS ; i++ )); do
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if [[ $i -eq $NUM_MINIONS ]]; then
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type=master
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name=$MASTER_NAME
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public_ip=$MASTER_IP
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else
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type=minion-$(printf "%02d" $i)
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name=${MINION_NAMES[$i]}
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public_ip=${MINION_IPS[$i]}
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fi
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image=$name.img
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config=kubernetes_config_$type
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virsh vol-create-as $POOL $image 10G --format qcow2 --backing-vol coreos_base.img --backing-vol-format qcow2
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mkdir -p "$POOL_PATH/$config/openstack/latest"
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render-template "$ROOT/user_data.yml" > "$POOL_PATH/$config/openstack/latest/user_data"
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virsh pool-refresh $POOL
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domain_xml=$(mktemp)
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render-template $ROOT/coreos.xml > $domain_xml
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virsh create $domain_xml
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rm $domain_xml
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done
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export KUBE_SERVER="http://192.168.10.1:8080"
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export CONTEXT="libvirt-coreos"
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create-kubeconfig
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wait-cluster-readiness
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echo "Kubernetes cluster is running. The master is running at:"
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echo
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echo " http://${KUBE_MASTER_IP}:8080"
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echo
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echo "You can control the Kubernetes cluster with: 'cluster/kubectl.sh'"
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echo "You can connect on the master with: 'ssh core@${KUBE_MASTER_IP}'"
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}
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# Delete a kubernetes cluster
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function kube-down {
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virsh list | awk 'NR>2 && !/^$/ && $2 ~ /^kubernetes/ {print $2}' | \
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while read dom; do
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virsh destroy $dom
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done
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destroy-pool keep_base_image
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destroy-network
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}
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function find-release-tars {
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SERVER_BINARY_TAR="${KUBE_ROOT}/server/kubernetes-server-linux-amd64.tar.gz"
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if [[ ! -f "$SERVER_BINARY_TAR" ]]; then
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SERVER_BINARY_TAR="${KUBE_ROOT}/_output/release-tars/kubernetes-server-linux-amd64.tar.gz"
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fi
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if [[ ! -f "$SERVER_BINARY_TAR" ]]; then
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echo "!!! Cannot find kubernetes-server-linux-amd64.tar.gz"
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exit 1
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fi
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}
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# The kubernetes binaries are pushed to a host directory which is exposed to the VM
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function upload-server-tars {
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tar -x -C "$POOL_PATH/kubernetes" -f "$SERVER_BINARY_TAR" kubernetes
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rm -rf "$POOL_PATH/kubernetes/bin"
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mv "$POOL_PATH/kubernetes/kubernetes/server/bin" "$POOL_PATH/kubernetes/bin"
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rmdir "$POOL_PATH/kubernetes/kubernetes/server" "$POOL_PATH/kubernetes/kubernetes"
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}
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# Update a kubernetes cluster with latest source
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function kube-push {
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kube-push-internal
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ssh-to-node "$MASTER_NAME" "sudo systemctl restart kube-apiserver kube-controller-manager kube-scheduler"
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for ((i=0; i < NUM_MINIONS; i++)); do
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ssh-to-node "${MINION_NAMES[$i]}" "sudo systemctl restart kubelet kube-proxy"
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done
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wait-cluster-readiness
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}
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function kube-push-internal {
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case "${KUBE_PUSH:-release}" in
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release)
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kube-push-release;;
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local)
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kube-push-local;;
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*)
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echo "The only known push methods are \"release\" to use the relase tarball or \"local\" to use the binaries built by make. KUBE_PUSH is set \"$KUBE_PUSH\"" >&2
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return 1;;
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esac
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}
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function kube-push-release {
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find-release-tars
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upload-server-tars
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}
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function kube-push-local {
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rm -rf "$POOL_PATH/kubernetes/bin/*"
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mkdir -p "$POOL_PATH/kubernetes/bin"
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cp "${KUBE_ROOT}/_output/local/go/bin"/* "$POOL_PATH/kubernetes/bin"
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}
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# Execute prior to running tests to build a release if required for env
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function test-build-release {
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echo "TODO"
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}
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# Execute prior to running tests to initialize required structure
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function test-setup {
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echo "TODO"
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}
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# Execute after running tests to perform any required clean-up
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function test-teardown {
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kube-down
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}
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# Set the {KUBE_USER} and {KUBE_PASSWORD} environment values required to interact with provider
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function get-password {
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export KUBE_USER=''
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export KUBE_PASSWORD=''
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}
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# SSH to a node by name or IP ($1) and run a command ($2).
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function ssh-to-node {
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local node="$1"
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local cmd="$2"
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local machine
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if [[ "$node" == "$MASTER_IP" ]] || [[ "$node" =~ ^"$MINION_IP_BASE" ]]; then
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machine="$node"
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elif [[ "$node" == "$MASTER_NAME" ]]; then
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machine="$MASTER_IP"
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else
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for ((i=0; i < NUM_MINIONS; i++)); do
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if [[ "$node" == "${MINION_NAMES[$i]}" ]]; then
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machine="${MINION_IPS[$i]}"
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break
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fi
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done
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fi
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if [[ -z "$machine" ]]; then
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echo "$node is an unknown machine to ssh to" >&2
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fi
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ssh -o StrictHostKeyChecking=no -o UserKnownHostsFile=/dev/null -o ControlMaster=no "core@$machine" "$cmd"
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}
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# Restart the kube-proxy on a node ($1)
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function restart-kube-proxy {
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ssh-to-node "$1" "sudo systemctl restart kube-proxy"
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}
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# Restart the apiserver
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function restart-apiserver {
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ssh-to-node "$1" "sudo systemctl restart kube-apiserver"
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}
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# Perform preparations required to run e2e tests
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function prepare-e2e() {
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echo "libvirt-coreos doesn't need special preparations for e2e tests" 1>&2
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}
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