k3s/test/kubemark/start-kubemark-master.sh

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#!/bin/bash
# Copyright 2015 The Kubernetes Authors.
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
# TODO: figure out how to get etcd tag from some real configuration and put it here.
function write_supervisor_conf() {
local name=$1
local exec_command=$2
cat >>"/etc/supervisor/conf.d/${name}.conf" <<EOF
[program:${name}]
command=${exec_command}
stderr_logfile=/var/log/${name}.log
stdout_logfile=/var/log/${name}.log
autorestart=true
startretries=1000000
EOF
}
EVENT_STORE_IP=$1
EVENT_STORE_URL="http://${EVENT_STORE_IP}:4002"
NUM_NODES=$2
EVENT_PD=$3
# KUBEMARK_ETCD_IMAGE may be empty so it has to be kept as a last argument
KUBEMARK_ETCD_IMAGE=$4
if [[ -z "${KUBEMARK_ETCD_IMAGE}" ]]; then
# Default etcd version.
KUBEMARK_ETCD_IMAGE="2.2.1"
fi
function retry() {
for i in {1..4}; do
"$@" && return 0 || sleep $i
done
"$@"
}
function mount-master-pd() {
local -r pd_name=$1
local -r mount_point=$2
if [[ ! -e "/dev/disk/by-id/${pd_name}" ]]; then
echo "Can't find ${pd_name}. Skipping mount."
return
fi
device_info=$(ls -l "/dev/disk/by-id/${pd_name}")
local relative_path=${device_info##* }
pd_device="/dev/disk/by-id/${relative_path}"
echo "Mounting master-pd"
local -r pd_path="/dev/disk/by-id/${pd_name}"
# Format and mount the disk, create directories on it for all of the master's
# persistent data, and link them to where they're used.
mkdir -p "${mount_point}"
# Format only if the disk is not already formatted.
if ! tune2fs -l "${pd_path}" ; then
echo "Formatting '${pd_path}'"
mkfs.ext4 -F -E lazy_itable_init=0,lazy_journal_init=0,discard "${pd_path}"
fi
echo "Mounting '${pd_path}' at '${mount_point}'"
mount -o discard,defaults "${pd_path}" "${mount_point}"
echo "Mounted master-pd '${pd_path}' at '${mount_point}'"
}
main_etcd_mount_point="/mnt/disks/master-pd"
mount-master-pd "google-master-pd" "${main_etcd_mount_point}"
# Contains all the data stored in etcd.
mkdir -m 700 -p "${main_etcd_mount_point}/var/etcd"
ln -s -f "${main_etcd_mount_point}/var/etcd" /var/etcd
mkdir -p /etc/srv
# Contains the dynamically generated apiserver auth certs and keys.
mkdir -p "${main_etcd_mount_point}/srv/kubernetes"
ln -s -f "${main_etcd_mount_point}/srv/kubernetes" /etc/srv/kubernetes
# Directory for kube-apiserver to store SSH key (if necessary).
mkdir -p "${main_etcd_mount_point}/srv/sshproxy"
ln -s -f "${main_etcd_mount_point}/srv/sshproxy" /etc/srv/sshproxy
if [ "${EVENT_PD:-false}" == "true" ]; then
event_etcd_mount_point="/mnt/disks/master-event-pd"
mount-master-pd "google-master-event-pd" "${event_etcd_mount_point}"
# Contains all the data stored in event etcd.
mkdir -m 700 -p "${event_etcd_mount_point}/var/etcd/events"
ln -s -f "${event_etcd_mount_point}/var/etcd/events" /var/etcd/events
fi
ETCD_QUOTA_BYTES=""
if [ "${KUBEMARK_ETCD_VERSION:0:2}" == "3." ]; then
# TODO: Set larger quota to see if that helps with
# 'mvcc: database space exceeded' errors. If so, pipe
# though our setup scripts.
ETCD_QUOTA_BYTES="--quota-backend-bytes=4294967296 "
fi
if [ "${EVENT_STORE_IP}" == "127.0.0.1" ]; then
# Retry starting etcd to avoid pulling image errors.
retry sudo docker run --net=host \
-v /var/etcd/events/data:/var/etcd/data -v /var/log:/var/log -d \
gcr.io/google_containers/etcd:${KUBEMARK_ETCD_IMAGE} /bin/sh -c "/usr/local/bin/etcd \
--listen-peer-urls http://127.0.0.1:2381 \
--advertise-client-urls=http://127.0.0.1:4002 \
--listen-client-urls=http://0.0.0.0:4002 \
--data-dir=/var/etcd/data ${ETCD_QUOTA_BYTES} 1>> /var/log/etcd-events.log 2>&1"
fi
# Retry starting etcd to avoid pulling image errors.
retry sudo docker run --net=host \
-v /var/etcd/data:/var/etcd/data -v /var/log:/var/log -d \
gcr.io/google_containers/etcd:${KUBEMARK_ETCD_IMAGE} /bin/sh -c "/usr/local/bin/etcd \
--listen-peer-urls http://127.0.0.1:2380 \
--advertise-client-urls=http://127.0.0.1:2379 \
--listen-client-urls=http://0.0.0.0:2379 \
--data-dir=/var/etcd/data ${ETCD_QUOTA_BYTES} 1>> /var/log/etcd.log 2>&1"
ulimit_command='bash -c "ulimit -n 65536;'
cd /
tar xzf kubernetes-server-linux-amd64.tar.gz
write_supervisor_conf "kube-scheduler" "${ulimit_command} /kubernetes/server/bin/kube-scheduler --master=127.0.0.1:8080 $(cat /scheduler_flags | tr '\n' ' ')\""
write_supervisor_conf "kube-apiserver" "${ulimit_command} /kubernetes/server/bin/kube-apiserver --insecure-bind-address=0.0.0.0 \
--etcd-servers=http://127.0.0.1:2379 \
--etcd-servers-overrides=/events#${EVENT_STORE_URL} \
--tls-cert-file=/srv/kubernetes/server.cert \
--tls-private-key-file=/srv/kubernetes/server.key \
--client-ca-file=/srv/kubernetes/ca.crt \
--token-auth-file=/srv/kubernetes/known_tokens.csv \
--secure-port=443 \
--basic-auth-file=/srv/kubernetes/basic_auth.csv \
--target-ram-mb=$((${NUM_NODES} * 60)) \
$(cat /apiserver_flags | tr '\n' ' ')\""
write_supervisor_conf "kube-contoller-manager" "${ulimit_command} /kubernetes/server/bin/kube-controller-manager \
--master=127.0.0.1:8080 \
--service-account-private-key-file=/srv/kubernetes/server.key \
--root-ca-file=/srv/kubernetes/ca.crt \
$(cat /controllers_flags | tr '\n' ' ')\""
supervisorctl reread
supervisorctl update
until [ "$(curl 127.0.0.1:8080/healthz 2> /dev/null)" == "ok" ]; do
sleep 1
done