73c695c9e2
Signed-off-by: Mike Brown <brownwm@us.ibm.com>
134 lines
4.2 KiB
Markdown
134 lines
4.2 KiB
Markdown
# cri-o - OCI-based implementation of Kubernetes Container Runtime Interface
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[![Build Status](https://img.shields.io/travis/kubernetes-incubator/cri-o.svg?maxAge=2592000&style=flat-square)](https://travis-ci.org/kubernetes-incubator/cri-o)
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[![Go Report Card](https://goreportcard.com/badge/github.com/kubernetes-incubator/cri-o?style=flat-square)](https://goreportcard.com/report/github.com/kubernetes-incubator/cri-o)
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### Status: pre-alpha
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## What is the scope of this project?
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cri-o is meant to provide an integration path between OCI conformant runtimes and the kubelet.
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Specifically, it implements the Kubelet Container Runtime Interface (CRI) using OCI conformant runtimes.
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The scope of cri-o is tied to the scope of the CRI.
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At a high level, we expect the scope of cri-o to be restricted to the following functionalities:
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* Support multiple image formats including the existing Docker image format
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* Support for multiple means to download images including trust & image verification
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* Container image management (managing image layers, overlay filesystems, etc)
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* Container process lifecycle management
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* Monitoring and logging required to satisfy the CRI
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* Resource isolation as required by the CRI
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## What is not in scope for this project?
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* Building, signing and pushing images to various image storages
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* A CLI utility for interacting with cri-o. Any CLIs built as part of this project are only meant for testing this project and there will be no guarantees on the backwards compatibility with it.
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This is an implementation of the Kubernetes Container Runtime Interface (CRI) that will allow Kubernetes to directly launch and manage Open Container Initiative (OCI) containers.
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The plan is to use OCI projects and best of breed libraries for different aspects:
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- Runtime: [runc](https://github.com/opencontainers/runc) (or any OCI runtime-spec implementation) and [oci runtime tools](https://github.com/opencontainers/runtime-tools)
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- Images: Image management using [containers/image](https://github.com/containers/image)
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- Storage: Storage and management of image layers using [containers/storage](https://github.com/containers/storage)
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- Networking: Networking support through use of [CNI](https://github.com/containernetworking/cni)
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It is currently in active development in the Kubernetes community through the [design proposal](https://github.com/kubernetes/kubernetes/pull/26788). Questions and issues should be raised in the Kubernetes [sig-node Slack channel](https://kubernetes.slack.com/archives/sig-node).
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## Getting started
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### Prerequisites
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`runc` version 1.0.0.rc1 or greater is expected to be installed on the system. It is picked up as the default runtime by ocid.
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### Build
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`glib2-devel` package on Fedora or ` libglib2.0-dev` on Ubuntu or equivalent is required.
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```
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$ GOPATH=/path/to/gopath
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$ mkdir $GOPATH
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$ go get -d github.com/kubernetes-incubator/cri-o
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$ cd $GOPATH/src/github.com/kubernetes-incubator/cri-o
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$ make install.tools
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$ make binaries
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$ make docs
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$ sudo make install
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```
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### Running pods and containers
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#### Start the server
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```
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# ocid --debug
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```
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If the default `--runtime` value does not point to your runtime:
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```
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# ocid --runtime $(which runc)
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```
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#### Create a pod
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```
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$ ocic pod create --config test/testdata/sandbox_config.json
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```
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#### Get pod status
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```
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# ocic pod status --id <pod_id>
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```
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#### Run a container inside a pod
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```
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# ocic ctr create --pod <pod_id> --config test/testdata/container_redis.json
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```
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#### Start a container
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```
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# ocic ctr start --id <ctr_id>
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```
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#### Get container status
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```
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# ocic ctr status --id <ctr_id>
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```
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#### Stop a container
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```
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# ocic ctr stop --id <ctr_id>
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```
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#### Remove a container
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```
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# ocic ctr remove --id <ctr_id>
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```
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#### Stop a pod
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```
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# ocic pod stop --id <pod_id>
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```
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#### Remove a pod
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```
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# ocic pod remove --id <pod_id>
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```
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#### List pods
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```
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# ocic pod list
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```
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#### List containers
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```
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# ocic ctr list
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```
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### Current Roadmap
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1. Basic pod/container lifecycle, basic image pull (already works)
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1. Support for tty handling and state management
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1. Basic integration with kubelet once client side changes are ready
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1. Support for log management, networking integration using CNI, pluggable image/storage management
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1. Support for exec/attach
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1. Target fully automated kubernetes testing without failures
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