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  1. docs/orchestration/README.md

    services, that scale well. It is not about just retrofitting monolithic applications onto modern container based compute environment. A cloud-native application is portable and resilient by design, and can scale horizontally by simply replicating. Modern orchestration platforms like Kubernetes, DC/OS make replicating and managing containers in huge clusters easier than ever.
    
    While containers provide isolated application execution environment, orchestration platforms allow seamless scaling...
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  2. docs/docker/README.md

    ```sh
    docker ps -a
    ```
    
    `-a` flag makes sure you get all the containers (Created, Running, Exited). Then identify the `Container ID` from the output.
    
    ### Starting and Stopping Containers
    
    To start a stopped container, you can use the [`docker start`](https://docs.docker.com/engine/reference/commandline/start/) command.
    
    ```sh
    docker start <container_id>
    ```
    
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  3. docs/tls/kubernetes/README.md

              - key: public.crt
                path: CAs/public.crt
    ```
    
    Note that the `secretName` should be same as the secret name created in previous step. Then add the below section under
    `spec.containers[].volumeMounts[]`
    
    ```yaml
        volumeMounts:
            - name: secret-volume
              mountPath: /<user-running-minio>/.minio/certs
    ```
    
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  4. helm/minio/README.md

    | `rootPassword`          | `rootPassword`         | Root password. | yes      |
    
    All corresponding variables will be ignored in values file.
    
    ### Configure TLS
    
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  5. docs/metrics/healthcheck/README.md

    ## Liveness probe
    
    This probe always responds with '200 OK'. Only fails if 'etcd' is configured and unreachable. When liveness probe fails, Kubernetes like platforms restart the container.
    
    ```
    livenessProbe:
      httpGet:
        path: /minio/health/live
        port: 9000
        scheme: HTTP
      initialDelaySeconds: 120
      periodSeconds: 30
      timeoutSeconds: 10
      successThreshold: 1
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  6. docs/multi-tenancy/README.md

    ## Cloud Scale Deployment
    
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  7. README.md

    This README provides quickstart instructions on running MinIO on bare metal hardware, including container-based installations. For Kubernetes environments, use the [MinIO Kubernetes Operator](https://github.com/minio/operator/blob/master/README.md).
    
    ## Container Installation
    
    Use the following commands to run a standalone MinIO server as a container.
    
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  8. docs/orchestration/kubernetes/README.md

    ## Monitoring MinIO in Kubernetes
    
    MinIO server exposes un-authenticated liveness endpoints so Kubernetes can natively identify unhealthy MinIO containers. MinIO also exposes Prometheus compatible data on a different endpoint to enable Prometheus users to natively monitor their MinIO deployments.
    
    ## Explore Further
    
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  9. docs/bucket/versioning/README.md

    When you PUT an object in a versioning-enabled bucket, the noncurrent version is not overwritten. The following figure shows that when a new version of `spark.csv` is PUT into a bucket that already contains an object with the same name, the original object (ID = `ede336f2`) remains in the bucket, MinIO generates a new version (ID = `fae684da`), and adds the newer version to the bucket.
    
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  10. docs/bigdata/README.md

    Kubernetes manages stateless Spark and Hive containers elastically on the compute nodes. Spark has native scheduler integration with Kubernetes. Hive, for legacy reasons, uses YARN scheduler on top of Kubernetes.
    
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