mirror of https://github.com/k3s-io/k3s
478 lines
13 KiB
Bash
Executable File
478 lines
13 KiB
Bash
Executable File
#!/bin/bash
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# Copyright 2014 Google Inc. 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 and constants for the local config.
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# Use the config file specified in $KUBE_CONFIG_FILE, or default to
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# config-default.sh.
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KUBE_ROOT=$(dirname "${BASH_SOURCE}")/../..
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source "${KUBE_ROOT}/cluster/vsphere/config-common.sh"
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source "${KUBE_ROOT}/cluster/vsphere/${KUBE_CONFIG_FILE-"config-default.sh"}"
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# Detect the IP for the master
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#
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# Assumed vars:
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# MASTER_NAME
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# Vars set:
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# KUBE_MASTER
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# KUBE_MASTER_IP
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function detect-master {
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KUBE_MASTER=${MASTER_NAME}
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if [[ -z "${KUBE_MASTER_IP-}" ]]; then
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KUBE_MASTER_IP=$(govc vm.ip ${MASTER_NAME})
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fi
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if [[ -z "${KUBE_MASTER_IP-}" ]]; then
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echo "Could not detect Kubernetes master node. Make sure you've launched a cluster with 'kube-up.sh'" >&2
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exit 1
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fi
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echo "Using master: $KUBE_MASTER (external IP: $KUBE_MASTER_IP)"
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}
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# Detect the information about the minions
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#
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# Assumed vars:
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# MINION_NAMES
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# Vars set:
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# KUBE_MINION_IP_ADDRESS (array)
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function detect-minions {
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KUBE_MINION_IP_ADDRESSES=()
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for (( i=0; i<${#MINION_NAMES[@]}; i++)); do
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local minion_ip=$(govc vm.ip ${MINION_NAMES[$i]})
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if [[ -z "${minion_ip-}" ]] ; then
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echo "Did not find ${MINION_NAMES[$i]}" >&2
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else
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echo "Found ${MINION_NAMES[$i]} at ${minion_ip}"
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KUBE_MINION_IP_ADDRESSES+=("${minion_ip}")
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fi
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done
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if [[ -z "${KUBE_MINION_IP_ADDRESSES-}" ]]; then
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echo "Could not detect Kubernetes minion nodes. Make sure you've launched a cluster with 'kube-up.sh'" >&2
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exit 1
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fi
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}
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function trap-add {
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local handler="$1"
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local signal="${2-EXIT}"
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local cur
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cur="$(eval "sh -c 'echo \$3' -- $(trap -p ${signal})")"
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if [[ -n "${cur}" ]]; then
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handler="${cur}; ${handler}"
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fi
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trap "${handler}" ${signal}
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}
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function verify-prereqs {
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which "govc" >/dev/null || {
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echo "Can't find govc in PATH, please install and retry."
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echo ""
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echo " go install github.com/vmware/govmomi/govc"
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echo ""
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exit 1
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}
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}
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function verify-ssh-prereqs {
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local rc
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rc=0
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ssh-add -L 1> /dev/null 2> /dev/null || rc="$?"
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# "Could not open a connection to your authentication agent."
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if [[ "${rc}" -eq 2 ]]; then
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eval "$(ssh-agent)" > /dev/null
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trap-add "kill ${SSH_AGENT_PID}" EXIT
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fi
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rc=0
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ssh-add -L 1> /dev/null 2> /dev/null || rc="$?"
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# "The agent has no identities."
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if [[ "${rc}" -eq 1 ]]; then
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# Try adding one of the default identities, with or without passphrase.
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ssh-add || true
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fi
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# Expect at least one identity to be available.
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if ! ssh-add -L 1> /dev/null 2> /dev/null; then
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echo "Could not find or add an SSH identity."
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echo "Please start ssh-agent, add your identity, and retry."
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exit 1
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fi
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}
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# Create a temp dir that'll be deleted at the end of this bash session.
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#
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# Vars set:
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# KUBE_TEMP
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function ensure-temp-dir {
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if [[ -z ${KUBE_TEMP-} ]]; then
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KUBE_TEMP=$(mktemp -d -t kubernetes.XXXXXX)
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trap-add 'rm -rf "${KUBE_TEMP}"' EXIT
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fi
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}
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# Verify and find the various tar files that we are going to use on the server.
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#
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# Vars set:
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# SERVER_BINARY_TAR
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# SALT_TAR
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function find-release-tars {
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SERVER_BINARY_TAR="${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 "$SERVER_BINARY_TAR" ]]; then
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echo "!!! Cannot find kubernetes-server-linux-amd64.tar.gz"
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exit 1
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fi
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SALT_TAR="${KUBE_ROOT}/server/kubernetes-salt.tar.gz"
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if [[ ! -f "$SALT_TAR" ]]; then
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SALT_TAR="${KUBE_ROOT}/_output/release-tars/kubernetes-salt.tar.gz"
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fi
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if [[ ! -f "$SALT_TAR" ]]; then
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echo "!!! Cannot find kubernetes-salt.tar.gz"
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exit 1
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fi
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}
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# Take the local tar files and upload them to the master.
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#
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# Assumed vars:
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# MASTER_NAME
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# SERVER_BINARY_TAR
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# SALT_TAR
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function upload-server-tars {
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local vm_ip
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vm_ip=$(govc vm.ip "${MASTER_NAME}")
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kube-ssh ${vm_ip} "mkdir -p /home/kube/cache/kubernetes-install"
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local tar
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for tar in "${SERVER_BINARY_TAR}" "${SALT_TAR}"; do
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kube-scp ${vm_ip} "${tar}" "/home/kube/cache/kubernetes-install/${tar##*/}"
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done
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}
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# Ensure that we have a password created for validating to the master. Will
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# read from $HOME/.kubernetes_auth if available.
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#
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# Vars set:
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# KUBE_USER
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# KUBE_PASSWORD
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function get-password {
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local file="$HOME/.kubernetes_auth"
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if [[ -r "$file" ]]; then
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KUBE_USER=$(cat "$file" | python -c 'import json,sys;print json.load(sys.stdin)["User"]')
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KUBE_PASSWORD=$(cat "$file" | python -c 'import json,sys;print json.load(sys.stdin)["Password"]')
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return
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fi
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KUBE_USER=admin
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KUBE_PASSWORD=$(python -c 'import string,random; print "".join(random.SystemRandom().choice(string.ascii_letters + string.digits) for _ in range(16))')
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# Store password for reuse.
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cat << EOF > "$file"
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{
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"User": "$KUBE_USER",
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"Password": "$KUBE_PASSWORD"
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}
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EOF
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chmod 0600 "$file"
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}
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# Run command over ssh
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function kube-ssh {
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local host="$1"
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shift
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ssh ${SSH_OPTS-} "kube@${host}" "$@" 2> /dev/null
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}
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# Copy file over ssh
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function kube-scp {
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local host="$1"
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local src="$2"
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local dst="$3"
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scp ${SSH_OPTS-} "${src}" "kube@${host}:${dst}"
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}
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# Instantiate a generic kubernetes virtual machine (master or minion)
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#
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# Usage:
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# kube-up-vm VM_NAME [options to pass to govc vm.create]
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#
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# Example:
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# kube-up-vm "vm-name" -c 2 -m 4096
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#
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# Assumed vars:
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# DISK
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# GUEST_ID
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function kube-up-vm {
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local vm_name="$1"
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shift
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govc vm.create \
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-debug \
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-disk="${DISK}" \
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-g="${GUEST_ID}" \
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-link=true \
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"$@" \
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"${vm_name}"
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# Retrieve IP first, to confirm the guest operations agent is running.
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govc vm.ip "${vm_name}" > /dev/null
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govc guest.mkdir \
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-vm="${vm_name}" \
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-p \
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/home/kube/.ssh
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ssh-add -L > "${KUBE_TEMP}/${vm_name}-authorized_keys"
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govc guest.upload \
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-vm="${vm_name}" \
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-f \
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"${KUBE_TEMP}/${vm_name}-authorized_keys" \
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/home/kube/.ssh/authorized_keys
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}
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# Kick off a local script on a kubernetes virtual machine (master or minion)
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#
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# Usage:
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# kube-run VM_NAME LOCAL_FILE
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function kube-run {
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local vm_name="$1"
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local file="$2"
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local dst="/tmp/$(basename "${file}")"
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govc guest.upload -vm="${vm_name}" -f -perm=0755 "${file}" "${dst}"
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local vm_ip
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vm_ip=$(govc vm.ip "${vm_name}")
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kube-ssh ${vm_ip} "nohup sudo ${dst} < /dev/null 1> ${dst}.out 2> ${dst}.err &"
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}
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# Instantiate a kubernetes cluster
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#
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# Assumed vars:
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# KUBE_ROOT
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# <Various vars set in config file>
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function kube-up {
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verify-ssh-prereqs
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find-release-tars
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ensure-temp-dir
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get-password
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python "${KUBE_ROOT}/third_party/htpasswd/htpasswd.py" \
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-b -c "${KUBE_TEMP}/htpasswd" "$KUBE_USER" "$KUBE_PASSWORD"
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local htpasswd
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htpasswd=$(cat "${KUBE_TEMP}/htpasswd")
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echo "Starting master VM (this can take a minute)..."
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(
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echo "#! /bin/bash"
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echo "readonly MY_NAME=${MASTER_NAME}"
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grep -v "^#" "${KUBE_ROOT}/cluster/vsphere/templates/hostname.sh"
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echo "cd /home/kube/cache/kubernetes-install"
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echo "readonly MASTER_NAME='${MASTER_NAME}'"
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echo "readonly NODE_INSTANCE_PREFIX='${INSTANCE_PREFIX}-minion'"
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echo "readonly PORTAL_NET='${PORTAL_NET}'"
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echo "readonly SERVER_BINARY_TAR='${SERVER_BINARY_TAR##*/}'"
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echo "readonly SALT_TAR='${SALT_TAR##*/}'"
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echo "readonly MASTER_HTPASSWD='${htpasswd}'"
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grep -v "^#" "${KUBE_ROOT}/cluster/vsphere/templates/create-dynamic-salt-files.sh"
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grep -v "^#" "${KUBE_ROOT}/cluster/vsphere/templates/install-release.sh"
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grep -v "^#" "${KUBE_ROOT}/cluster/vsphere/templates/salt-master.sh"
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) > "${KUBE_TEMP}/master-start.sh"
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kube-up-vm ${MASTER_NAME} -c ${MASTER_CPU-1} -m ${MASTER_MEMORY_MB-1024}
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upload-server-tars
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kube-run ${MASTER_NAME} "${KUBE_TEMP}/master-start.sh"
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# Print master IP, so user can log in for debugging.
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detect-master
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echo
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echo "Starting minion VMs (this can take a minute)..."
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for (( i=0; i<${#MINION_NAMES[@]}; i++)); do
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(
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echo "#! /bin/bash"
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echo "readonly MY_NAME=${MINION_NAMES[$i]}"
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grep -v "^#" "${KUBE_ROOT}/cluster/vsphere/templates/hostname.sh"
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echo "KUBE_MASTER=${KUBE_MASTER}"
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echo "KUBE_MASTER_IP=${KUBE_MASTER_IP}"
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echo "MINION_IP_RANGE=${MINION_IP_RANGES[$i]}"
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grep -v "^#" "${KUBE_ROOT}/cluster/vsphere/templates/salt-minion.sh"
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) > "${KUBE_TEMP}/minion-start-${i}.sh"
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(
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kube-up-vm "${MINION_NAMES[$i]}" -c ${MINION_CPU-1} -m ${MINION_MEMORY_MB-1024}
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kube-run "${MINION_NAMES[$i]}" "${KUBE_TEMP}/minion-start-${i}.sh"
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) &
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done
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local fail=0
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local job
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for job in $(jobs -p); do
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wait "${job}" || fail=$((fail + 1))
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done
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if (( $fail != 0 )); then
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echo "${fail} commands failed. Exiting." >&2
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exit 2
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fi
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# Print minion IPs, so user can log in for debugging.
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detect-minions
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echo
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echo "Waiting for master and minion initialization."
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echo
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echo " This will continually check to see if the API for kubernetes is reachable."
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echo " This might loop forever if there was some uncaught error during start up."
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echo
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printf "Waiting for ${KUBE_MASTER} to become available..."
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until curl --insecure --user "${KUBE_USER}:${KUBE_PASSWORD}" --max-time 5 \
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--fail --output /dev/null --silent "https://${KUBE_MASTER_IP}/api/v1beta1/pods"; do
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printf "."
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sleep 2
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done
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printf " OK\n"
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local i
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for (( i=0; i<${#MINION_NAMES[@]}; i++)); do
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printf "Waiting for ${MINION_NAMES[$i]} to become available..."
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until curl --max-time 5 \
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--fail --output /dev/null --silent "http://${KUBE_MINION_IP_ADDRESSES[$i]}:10250/healthz"; do
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printf "."
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sleep 2
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done
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printf " OK\n"
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done
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echo
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echo "Sanity checking cluster..."
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sleep 5
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# Basic sanity checking
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local i
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for (( i=0; i<${#MINION_NAMES[@]}; i++)); do
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# Make sure docker is installed
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kube-ssh "${KUBE_MINION_IP_ADDRESSES[$i]}" which docker > /dev/null || {
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echo "Docker failed to install on ${MINION_NAMES[$i]}. Your cluster is unlikely" >&2
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echo "to work correctly. Please run ./cluster/kube-down.sh and re-create the" >&2
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echo "cluster. (sorry!)" >&2
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exit 1
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}
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done
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echo
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echo "Kubernetes cluster is running. The master is running at:"
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echo
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echo " https://${KUBE_MASTER_IP}"
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echo
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echo "The user name and password to use is located in ~/.kubernetes_auth."
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echo
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local kube_cert=".kubecfg.crt"
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local kube_key=".kubecfg.key"
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local ca_cert=".kubernetes.ca.crt"
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(
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umask 077
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kube-ssh "${KUBE_MASTER_IP}" sudo cat /usr/share/nginx/kubecfg.crt >"${HOME}/${kube_cert}" 2>/dev/null
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kube-ssh "${KUBE_MASTER_IP}" sudo cat /usr/share/nginx/kubecfg.key >"${HOME}/${kube_key}" 2>/dev/null
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kube-ssh "${KUBE_MASTER_IP}" sudo cat /usr/share/nginx/ca.crt >"${HOME}/${ca_cert}" 2>/dev/null
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cat << EOF > ~/.kubernetes_auth
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{
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"User": "$KUBE_USER",
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"Password": "$KUBE_PASSWORD",
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"CAFile": "$HOME/$ca_cert",
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"CertFile": "$HOME/$kube_cert",
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"KeyFile": "$HOME/$kube_key"
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}
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EOF
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chmod 0600 ~/.kubernetes_auth "${HOME}/${kube_cert}" \
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"${HOME}/${kube_key}" "${HOME}/${ca_cert}"
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)
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}
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# Delete a kubernetes cluster
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function kube-down {
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govc vm.destroy ${MASTER_NAME} &
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for (( i=0; i<${#MINION_NAMES[@]}; i++)); do
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govc vm.destroy ${MINION_NAMES[i]} &
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done
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wait
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}
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# Update a kubernetes cluster with latest source
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function kube-push {
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verify-ssh-prereqs
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find-release-tars
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detect-master
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upload-server-tars
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(
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echo "#! /bin/bash"
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echo "cd /home/kube/cache/kubernetes-install"
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echo "readonly SERVER_BINARY_TAR='${SERVER_BINARY_TAR##*/}'"
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echo "readonly SALT_TAR='${SALT_TAR##*/}'"
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grep -v "^#" "${KUBE_ROOT}/cluster/vsphere/templates/install-release.sh"
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echo "echo Executing configuration"
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echo "sudo salt '*' mine.update"
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echo "sudo salt --force-color '*' state.highstate"
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) | kube-ssh "${KUBE_MASTER_IP}"
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get-password
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echo
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echo "Kubernetes cluster is running. The master is running at:"
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echo
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echo " https://${KUBE_MASTER_IP}"
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echo
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echo "The user name and password to use is located in ~/.kubernetes_auth."
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echo
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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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echo "TODO"
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}
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function setup-monitoring {
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echo "TODO"
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}
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