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  1. docs/config/README.md

    MINIO_ETCD_COMMENT          (sentence)  optionally add a comment to this setting
    ```
    
    This behavior is consistent across all keys; each key self-documents itself with valid examples.
    
    ## Dynamic systems without restarting server
    
    The following sub-systems are dynamic i.e., configuration parameters for each sub-systems can be changed while the server is running without any restarts.
    
    ```
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  2. internal/grid/README.md

    On startup all remote servers must be specified. 
    From that individual connections will be spawned to each remote server, 
    or incoming requests will be hooked up to the appropriate connection.
    
    To get a connection to a specific server, use `Manager.Connection(host)` to get a connection to the specified host.
    From this connection individual requests can be made.
    
    Each handler, with optional subroutes can be registered with the manager using 
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  3. docs/kms/README.md

    # KMS Guide [![Slack](https://slack.min.io/slack?type=svg)](https://slack.min.io)
    
    MinIO uses a key-management-system (KMS) to support SSE-S3. If a client requests SSE-S3, or auto-encryption is enabled, the MinIO server encrypts each object with an unique object key which is protected by a master key managed by the KMS.
    
    ## Quick Start
    
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  4. docs/throttle/README.md

    MinIO server allows to throttle incoming requests:
    
    - limit the number of active requests allowed across the cluster
    - limit the wait duration for each request in the queue
    
    These values are enabled using server's configuration or environment variables.
    
    ## Examples
    
    ### Configuring connection limit
    
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  5. docs/tls/kubernetes/README.md

    cs/minio/kubernetes/upstream/operations/installation.html#procedure), where there are multiple pods with different domain names expected to run, you will either need wildcard certificates valid for all the domains or have specific certificates for each domain. If you are going to use specific certificates, make sure to create Kubernetes secrets accordingly.
    
    For testing purposes, here is [how to create self-signed certificates](https://github.com/minio/minio/tree/master/docs/tls#3-genera...
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  6. docs/sts/web-identity.md

    OpenID Provider in the beginning. For some setups, extra configuration may be required for this step to work correctly.
    
    For a simple setup where the user/client app accesses MinIO directly (i.e. with no intervening proxies/load-balancers), and each MinIO server (if there are more than one) has a unique domain name, this redirection should work automatically with no further configuration. For example, if the MinIO service is being accessed by the browser at the URL `https://minio-node-1.example.org`,...
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  7. helm/minio/README.md

    ### Configuration
    
    Refer the [Values file](./values.yaml) for all the possible config fields.
    
    You can specify each parameter using the `--set key=value[,key=value]` argument to `helm install`. For example,
    
    ```bash
    helm install --name my-release --set persistence.size=1Ti minio/minio
    ```
    
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  8. docs/erasure/README.md

    as half of drives and still the data remains safe. Further, MinIO's erasure code is at the object level and can heal one object at a time. For RAID, healing can be done only at the volume level which translates into high downtime. As MinIO encodes each object individually, it can heal objects incrementally. Storage servers once deployed should not require drive replacement or healing for the lifetime of the server. MinIO's erasure coded backend is designed for operational efficiency and takes full...
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  9. docs/site-replication/README.md

    ## Configuring Site Replication
    
    - Configure an alias in `mc` for each of the sites. For example if you have three MinIO sites, you may run:
    
    ```sh
    mc alias set minio1 https://minio1.example.com:9000 adminuser adminpassword
    mc alias set minio2 https://minio2.example.com:9000 adminuser adminpassword
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  10. docs/erasure/storage-class/README.md

    ## Overview
    
    MinIO supports two storage classes, Reduced Redundancy class and Standard class. These classes can be defined using environment variables
    set before starting MinIO server. After the data and parity drives for each storage class are defined using environment variables,
    you can set the storage class of an object via request metadata field `x-amz-storage-class`. MinIO server then honors the storage class by
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