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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/multi-user/README.md

    	"Action": "s3:ListBucket*",
    	"Resource": "arn:aws:s3:::mybucket",
    	"Condition": {"IpAddress": {"aws:SourceIp": "203.0.113.0/24"}}
      }
    }
    ```
    
    - `aws:UserAgent` - This value is a string that contains information about the requester's client application. This string is generated by the client and can be unreliable. You can only use this context key from `mc` or other MinIO SDKs which standardize the User-Agent string.
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  6. 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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  7. internal/grid/README.md

    and furthermore provides reuse of the structs used for the request and response.
    
    Note that Responses sent for serialization are automatically reused for similar requests.
    If the response contains shared data it will cause issues, since each unique response is reused.
    To disable this behavior, use `(SingleHandler).WithSharedResponse()` to disable it.
    
    ## Streaming Requests
    
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  8. 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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  9. README.md

    - `mc admin update` is not supported and should be avoided in kubernetes/container environments, please upgrade containers by upgrading relevant container images.
    - **We do not recommend upgrading one MinIO server at a time, the product is designed to support parallel upgrades please follow our recommended guidelines.**
    
    ## Explore Further
    
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  10. 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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