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	simplify flannel configuration on rackspace
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		@@ -83,6 +83,10 @@ coreos:
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    peer-addr: $private_ipv4:7001
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    peer-bind-addr: $private_ipv4:7001
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  flannel:
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    ip_masq: true
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    interface: eth2
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  fleet:
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    public-ip: $private_ipv4
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    metadata: kubernetes_role=minion
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@@ -96,20 +100,16 @@ coreos:
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    - name: fleet.service
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      command: start
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    - name: flanneld.service
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      command: start
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      drop-ins:
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      - name: 50-network-config.conf
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        content: |
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          [Service]
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          ExecStartPre=/usr/bin/etcdctl set /coreos.com/network/config '{ "Network": "KUBE_NETWORK", "Backend": {"Type": "host-gw"}}'
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          ExecStart=
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          ExecStart=/usr/libexec/sdnotify-proxy /run/flannel/sd.sock \
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            /usr/bin/docker run --net=host --privileged=true --rm \
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              --volume=/run/flannel:/run/flannel \
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              --env=NOTIFY_SOCKET=/run/flannel/sd.sock \
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              --env-file=/run/flannel/options.env \
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              --volume=${ETCD_SSL_DIR}:/etc/ssl/etcd:ro \
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              quay.io/coreos/flannel:${FLANNEL_VER} /opt/bin/flanneld -etcd-endpoints http://127.0.0.1:4001 --ip-masq=true --iface=eth2
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        - name: 50-flannel.conf
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          content: |
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            [Unit]
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            Requires=etcd.service
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            After=etcd.service
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            [Service]
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            ExecStartPre=-/usr/bin/etcdctl mk /coreos.com/network/config '{"Network":"KUBE_NETWORK", "Backend": {"Type": "host-gw"}}'
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      command: start
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    - name: docker.service
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      command: start
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      drop-ins:
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@@ -120,6 +120,7 @@ coreos:
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            # won't land in flannel's network...
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            Requires=flanneld.service
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            After=flanneld.service
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            Restart=Always
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    - name: download-release.service
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      command: start
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      content: |
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@@ -321,7 +321,8 @@ kube-up() {
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  detect-master
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  # TODO look for a better way to get the known_tokens to the master. This is needed over file injection since the files were too large on a 4 node cluster.
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  $(scp -o StrictHostKeyChecking=no -i ~/.ssh/${SSH_KEY_NAME} ${KUBE_TEMP}/known_tokens.csv core@${KUBE_MASTER_IP}:known_tokens.csv)
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  $(scp -o StrictHostKeyChecking=no -i ~/.ssh/${SSH_KEY_NAME} ${KUBE_TEMP}/known_tokens.csv core@${KUBE_MASTER_IP}:/home/core/known_tokens.csv)
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  $(sleep 2)
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  $(ssh -o StrictHostKeyChecking=no -i ~/.ssh/${SSH_KEY_NAME} core@${KUBE_MASTER_IP} sudo mv /home/core/known_tokens.csv /var/lib/kube-apiserver/known_tokens.csv)
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  $(ssh -o StrictHostKeyChecking=no -i ~/.ssh/${SSH_KEY_NAME} core@${KUBE_MASTER_IP} sudo chown root.root /var/lib/kube-apiserver/known_tokens.csv)
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  $(ssh -o StrictHostKeyChecking=no -i ~/.ssh/${SSH_KEY_NAME} core@${KUBE_MASTER_IP} sudo systemctl restart kube-apiserver)
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@@ -1,7 +1,6 @@
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# Rackspace
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* Supported Version: v0.16.2
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 * `git checkout v0.16.2`
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* Supported Version: v0.18.1
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In general, the dev-build-and-up.sh workflow for Rackspace is the similar to GCE. The specific implementation is different due to the use of CoreOS, Rackspace Cloud Files and the overall network design.
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@@ -20,8 +19,9 @@ The current cluster design is inspired by:
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##Provider: Rackspace
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- To install the latest released version of kubernetes use `export KUBERNETES_PROVIDER=rackspace; wget -q -O - https://get.k8s.io | bash`
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- To build your own released version from source use `export KUBERNETES_PROVIDER=rackspace` and run the `bash hack/dev-build-and-up.sh`
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- Note: The get.k8s.io install method is not working yet for our scripts.
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  * To install the latest released version of kubernetes use `export KUBERNETES_PROVIDER=rackspace; wget -q -O - https://get.k8s.io | bash`
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## Build
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1. The kubernetes binaries will be built via the common build scripts in `build/`.
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