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			330 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			Bash
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			330 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			Bash
		
	
	
		
			Executable File
		
	
	
	
	
#!/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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# This command builds and runs a local kubernetes cluster. It's just like
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# local-up.sh, but this one launches the three separate binaries.
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# You may need to run this as root to allow kubelet to open docker's socket.
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DOCKER_OPTS=${DOCKER_OPTS:-""}
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DOCKER_NATIVE=${DOCKER_NATIVE:-""}
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DOCKER=(docker ${DOCKER_OPTS})
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DOCKERIZE_KUBELET=${DOCKERIZE_KUBELET:-""}
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ALLOW_PRIVILEGED=${ALLOW_PRIVILEGED:-""}
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KUBE_ROOT=$(dirname "${BASH_SOURCE}")/..
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cd "${KUBE_ROOT}"
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if [ "$(id -u)" != "0" ]; then
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    echo "WARNING : This script MAY be run as root for docker socket / iptables functionality... if failures occur... Retry as root." 2>&1
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fi
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# Stop right away if the build fails
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set -e
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source "${KUBE_ROOT}/hack/lib/init.sh"
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function usage {
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            echo "This script starts a local kube cluster. "
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            echo "Example 1: hack/local-up-cluster.sh -o _output/dockerized/bin/linux/amd64/ (run from docker output)"
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            echo "Example 2: hack/local-up-cluster.sh (build a local copy of the source)"
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}
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### Allow user to supply the source directory.
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GO_OUT=""
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while getopts "o:" OPTION
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do
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    case $OPTION in
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        o) 
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            echo "skipping build"
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            echo "using source $OPTARG"
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            GO_OUT="$OPTARG"
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            if [ $GO_OUT == "" ]; then
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                echo "You provided an invalid value for the build output directory."
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                exit 
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            fi
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            ;;
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        ?)
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            usage    
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            exit
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            ;;
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    esac
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done
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if [ "x$GO_OUT" == "x" ]; then
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    "${KUBE_ROOT}/hack/build-go.sh"
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else
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    echo "skipped the build."
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fi
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function test_docker {
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    ${DOCKER[@]} ps 2> /dev/null 1> /dev/null
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    if [ "$?" != "0" ]; then
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      echo "Failed to successfully run 'docker ps', please verify that docker is installed and \$DOCKER_HOST is set correctly."
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      exit 1
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    fi
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}
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# Shut down anyway if there's an error.
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set +e
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API_PORT=${API_PORT:-8080}
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API_HOST=${API_HOST:-127.0.0.1}
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# By default only allow CORS for requests on localhost
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API_CORS_ALLOWED_ORIGINS=${API_CORS_ALLOWED_ORIGINS:-"/127.0.0.1(:[0-9]+)?$,/localhost(:[0-9]+)?$"}
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KUBELET_PORT=${KUBELET_PORT:-10250}
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LOG_LEVEL=${LOG_LEVEL:-3}
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CONTAINER_RUNTIME=${CONTAINER_RUNTIME:-"docker"}
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CHAOS_CHANCE=${CHAOS_CHANCE:-0.0}
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function test_apiserver_off {
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    # For the common local scenario, fail fast if server is already running.
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    # this can happen if you run local-up-cluster.sh twice and kill etcd in between.
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    curl $API_HOST:$API_PORT
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    if [ ! $? -eq 0 ]; then
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        echo "API SERVER port is free, proceeding..."
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    else
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        echo "ERROR starting API SERVER, exiting.  Some host on $API_HOST is serving already on $API_PORT"
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        exit 1
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    fi
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}
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function detect_binary {
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    # Detect the OS name/arch so that we can find our binary
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    case "$(uname -s)" in
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      Darwin)
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        host_os=darwin
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        ;;
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      Linux)
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        host_os=linux
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        ;;
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      *)
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        echo "Unsupported host OS.  Must be Linux or Mac OS X." >&2
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        exit 1
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        ;;
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    esac
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    case "$(uname -m)" in
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      x86_64*)
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        host_arch=amd64
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        ;;
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      i?86_64*)
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        host_arch=amd64
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        ;;
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      amd64*)
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        host_arch=amd64
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        ;;
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      arm*)
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        host_arch=arm
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        ;;
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      i?86*)
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        host_arch=x86
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        ;;
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      *)
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        echo "Unsupported host arch. Must be x86_64, 386 or arm." >&2
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        exit 1
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        ;;
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    esac
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   GO_OUT="${KUBE_ROOT}/_output/local/bin/${host_os}/${host_arch}"
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}
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cleanup_dockerized_kubelet()
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{
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  if [[ -e $KUBELET_CIDFILE ]]; then 
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    docker kill $(<$KUBELET_CIDFILE) > /dev/null
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    rm -f $KUBELET_CIDFILE
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  fi
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}
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cleanup()
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{
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  echo "Cleaning up..."
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  # Check if the API server is still running
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  [[ -n "${APISERVER_PID-}" ]] && APISERVER_PIDS=$(pgrep -P ${APISERVER_PID} ; ps -o pid= -p ${APISERVER_PID})
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  [[ -n "${APISERVER_PIDS-}" ]] && sudo kill ${APISERVER_PIDS}
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  # Check if the controller-manager is still running
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  [[ -n "${CTLRMGR_PID-}" ]] && CTLRMGR_PIDS=$(pgrep -P ${CTLRMGR_PID} ; ps -o pid= -p ${CTLRMGR_PID})
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  [[ -n "${CTLRMGR_PIDS-}" ]] && sudo kill ${CTLRMGR_PIDS}
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  if [[ -n "$DOCKERIZE_KUBELET" ]]; then
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    cleanup_dockerized_kubelet
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  else
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    # Check if the kubelet is still running
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    [[ -n "${KUBELET_PID-}" ]] && KUBELET_PIDS=$(pgrep -P ${KUBELET_PID} ; ps -o pid= -p ${KUBELET_PID})
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    [[ -n "${KUBELET_PIDS-}" ]] && sudo kill ${KUBELET_PIDS}
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  fi
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  # Check if the proxy is still running
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  [[ -n "${PROXY_PID-}" ]] && PROXY_PIDS=$(pgrep -P ${PROXY_PID} ; ps -o pid= -p ${PROXY_PID})
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  [[ -n "${PROXY_PIDS-}" ]] && sudo kill ${PROXY_PIDS}
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  # Check if the scheduler is still running
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  [[ -n "${SCHEDULER_PID-}" ]] && SCHEDULER_PIDS=$(pgrep -P ${SCHEDULER_PID} ; ps -o pid= -p ${SCHEDULER_PID})
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  [[ -n "${SCHEDULER_PIDS-}" ]] && sudo kill ${SCHEDULER_PIDS}
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  # Check if the etcd is still running
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  [[ -n "${ETCD_PID-}" ]] && kube::etcd::stop
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  [[ -n "${ETCD_DIR-}" ]] && kube::etcd::clean_etcd_dir
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  exit 0
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}
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function startETCD {
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    echo "Starting etcd"
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    kube::etcd::start
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}
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function set_service_accounts {
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    SERVICE_ACCOUNT_LOOKUP=${SERVICE_ACCOUNT_LOOKUP:-false}
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    SERVICE_ACCOUNT_KEY=${SERVICE_ACCOUNT_KEY:-"/tmp/kube-serviceaccount.key"}
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    # Generate ServiceAccount key if needed
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    if [[ ! -f "${SERVICE_ACCOUNT_KEY}" ]]; then
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      mkdir -p "$(dirname ${SERVICE_ACCOUNT_KEY})"
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      openssl genrsa -out "${SERVICE_ACCOUNT_KEY}" 2048 2>/dev/null
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    fi
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}
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function start_apiserver {
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    # Admission Controllers to invoke prior to persisting objects in cluster
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    ADMISSION_CONTROL=NamespaceLifecycle,NamespaceAutoProvision,LimitRanger,SecurityContextDeny,ServiceAccount,ResourceQuota
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    # This is the default dir and filename where the apiserver will generate a self-signed cert
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    # which should be able to be used as the CA to verify itself
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    CERT_DIR=/var/run/kubernetes
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    ROOT_CA_FILE=$CERT_DIR/apiserver.crt
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    priv_arg=""
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    if [[ -n "${ALLOW_PRIVILEGED}" ]]; then
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      priv_arg="--allow-privileged "
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    fi
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    APISERVER_LOG=/tmp/kube-apiserver.log
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    sudo -E "${GO_OUT}/kube-apiserver" ${priv_arg}\
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      --v=${LOG_LEVEL} \
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      --cert-dir="${CERT_DIR}" \
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      --service-account-key-file="${SERVICE_ACCOUNT_KEY}" \
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      --service-account-lookup="${SERVICE_ACCOUNT_LOOKUP}" \
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      --admission-control="${ADMISSION_CONTROL}" \
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      --address="${API_HOST}" \
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      --port="${API_PORT}" \
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      --etcd-servers="http://127.0.0.1:4001" \
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      --service-cluster-ip-range="10.0.0.0/24" \
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      --cors-allowed-origins="${API_CORS_ALLOWED_ORIGINS}" >"${APISERVER_LOG}" 2>&1 &
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    APISERVER_PID=$!
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    # Wait for kube-apiserver to come up before launching the rest of the components.
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    echo "Waiting for apiserver to come up"
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    kube::util::wait_for_url "http://${API_HOST}:${API_PORT}/api/v1/pods" "apiserver: " 1 10 || exit 1
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}
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function start_controller_manager {
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    CTLRMGR_LOG=/tmp/kube-controller-manager.log
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    sudo -E "${GO_OUT}/kube-controller-manager" \
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      --v=${LOG_LEVEL} \
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      --service-account-private-key-file="${SERVICE_ACCOUNT_KEY}" \
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      --root-ca-file="${ROOT_CA_FILE}" \
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      --master="${API_HOST}:${API_PORT}" >"${CTLRMGR_LOG}" 2>&1 &
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    CTLRMGR_PID=$!
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}
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function start_kubelet {
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    KUBELET_LOG=/tmp/kubelet.log
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    if [[ -z "${DOCKERIZE_KUBELET}" ]]; then
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      sudo -E "${GO_OUT}/kubelet" ${priv_arg}\
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        --v=${LOG_LEVEL} \
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        --chaos-chance="${CHAOS_CHANCE}" \
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        --container-runtime="${CONTAINER_RUNTIME}" \
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        --hostname-override="127.0.0.1" \
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        --address="127.0.0.1" \
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        --api-servers="${API_HOST}:${API_PORT}" \
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        --port="$KUBELET_PORT" >"${KUBELET_LOG}" 2>&1 &
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      KUBELET_PID=$!
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    else
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      # Docker won't run a container with a cidfile (container id file)
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      # unless that file does not already exist; clean up an existing
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      # dockerized kubelet that might be running.
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      cleanup_dockerized_kubelet
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      docker run \
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        --volume=/:/rootfs:ro \
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        --volume=/var/run:/var/run:rw \
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        --volume=/sys:/sys:ro \
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        --volume=/var/lib/docker/:/var/lib/docker:ro \
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        --volume=/var/lib/kubelet/:/var/lib/kubelet:rw \
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        --net=host \
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        --privileged=true \
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        -i \
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        --cidfile=$KUBELET_CIDFILE \
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        gcr.io/google_containers/kubelet \
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        /kubelet --v=3 --containerized ${priv_arg}--chaos-chance="${CHAOS_CHANCE}" --hostname-override="127.0.0.1" --address="127.0.0.1" --api-servers="${API_HOST}:${API_PORT}" --port="$KUBELET_PORT" --resource-container="" &> $KUBELET_LOG &
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    fi
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}
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function start_kubeproxy {
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    PROXY_LOG=/tmp/kube-proxy.log
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    sudo -E "${GO_OUT}/kube-proxy" \
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      --v=${LOG_LEVEL} \
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      --master="http://${API_HOST}:${API_PORT}" >"${PROXY_LOG}" 2>&1 &
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    PROXY_PID=$!
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    SCHEDULER_LOG=/tmp/kube-scheduler.log
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    sudo -E "${GO_OUT}/kube-scheduler" \
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      --v=${LOG_LEVEL} \
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      --master="http://${API_HOST}:${API_PORT}" >"${SCHEDULER_LOG}" 2>&1 &
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    SCHEDULER_PID=$!
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}
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function print_success {
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cat <<EOF
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Local Kubernetes cluster is running. Press Ctrl-C to shut it down.
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Logs:
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  ${APISERVER_LOG}
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  ${CTLRMGR_LOG}
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  ${PROXY_LOG}
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  ${SCHEDULER_LOG}
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  ${KUBELET_LOG}
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To start using your cluster, open up another terminal/tab and run:
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  cluster/kubectl.sh config set-cluster local --server=http://${API_HOST}:${API_PORT} --insecure-skip-tls-verify=true
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  cluster/kubectl.sh config set-context local --cluster=local
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  cluster/kubectl.sh config use-context local
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  cluster/kubectl.sh
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EOF
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}
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test_docker
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test_apiserver_off
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### IF the user didn't supply an output/ for the build... Then we detect.
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if [ "$GO_OUT" == "" ]; then 
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    detect_binary
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fi
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echo "Detected host and ready to start services.  Doing some housekeeping first..."
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echo "Using GO_OUT $GO_OUT"
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KUBELET_CIDFILE=/tmp/kubelet.cid
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trap cleanup EXIT
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echo "Starting services now!"
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startETCD
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set_service_accounts
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start_apiserver
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start_controller_manager
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start_kubelet
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start_kubeproxy
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print_success
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while true; do sleep 1; done
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