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gluster/glusterfs

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5,191 Stars·1,110 Forks·C·GPL-2.0·12 Aufrufewww.gluster.org↗

Glusterfs

GlusterFS ist ein softwaredefiniertes verteiltes Dateisystem und Scale-Out-Storage-Cluster, das Festplattenressourcen von mehreren Servern in einem einzigen globalen Namensraum aggregiert. Es fungiert als vereinheitlichte Speicherplattform, die es ermöglicht, dieselben zugrunde liegenden Daten über Datei-, Block- und Objektspeicherschnittstellen bereitzustellen.

Das System zeichnet sich durch eine dezentrale Architektur aus, die konsistentes Hashing verwendet, um Dateien über Netzwerkknoten hinweg ohne zentralen Metadaten-Server zu verteilen. Es stellt Datenintegrität und -verfügbarkeit durch selbstheilende Replikation, Quorum-basierte Konsistenz zur Vermeidung von Split-Brain-Szenarien sowie asynchrone Geo-Replikation für die Notfallwiederherstellung über entfernte geografische Standorte hinweg sicher.

Die Plattform bietet eine breite Abdeckung von Funktionen über Multi-Protokoll-Speicherexport via NFS, Samba und iSCSI sowie umfassende Volume-Verwaltung, einschließlich Point-in-Time-Snapshots, Speicherkontingenten und elastischer Kapazitätserweiterung. Die Sicherheit wird durch TLS-Verschlüsselung für Daten während der Übertragung, Identitätsmanagement-Integration und granulare POSIX-Zugriffskontrolle gehandhabt.

Die Software ist als Binärpakete über Community-Repositories für verschiedene Linux-Distributionen verfügbar.

Features

  • Distributed Network Filesystems - Provides a scalable distributed filesystem that aggregates disk resources from multiple servers into a single global namespace.
  • Distributed Storage Aggregators - Combines disk resources from multiple servers into a single global namespace for scalable storage.
  • Unified Storage Interfaces - Provides a unified storage platform that exposes the same data through file, block, and object storage interfaces.
  • Distributed File Systems - Aggregates disk resources from multiple servers into a single scalable global namespace as a distributed file system.
  • Storage Service Self-Healing - Automatically detects and repairs mismatched file replicas using background daemons to ensure data integrity across nodes.
  • Block Storage - Provides a unified storage platform that exposes data as raw block devices.
  • Distributed Data Replication - Copies data across multiple servers to ensure high availability and protection against hardware failure.
  • Storage Synchronization Services - Mirrors storage volumes across distant sites to enable disaster recovery and localized access.
  • Geo-Replicated Volumes - Replicates data between remote volumes using SSH and matching identifiers to maintain consistency across sites.
  • Distributed Storage - Aggregates storage across network nodes to provide scalable file, block, and object storage.
  • Scale-Out Storage Clusters - Aggregates physical servers into a high-availability cluster providing unified block, file, and object storage.
  • Elastic Storage Aggregation - Aggregates physical disks from multiple servers into a single global namespace that supports online expansion and shrinkage.
  • Storage Pool Managers - Establishes a network of peer storage servers to create a shared pool of resources.
  • Geographic Data Replication - Implements asynchronous synchronization of storage volumes between geographically dispersed data centers for disaster recovery.
  • Multi-Protocol Storage Interfaces - Exposes the same underlying distributed data simultaneously through file, block, and object storage interfaces.
  • Multi-Protocol Storage Providers - Exposes the same underlying data through unified object, block, and file storage interfaces.
  • Object Storage - Provides an interface to store and retrieve unstructured data as objects as part of a unified storage platform.
  • Distributed Volume Provisioning - Configures and starts a shared storage pool across multiple servers to provide a scalable namespace.
  • Replicated Persistent Volumes - Maintains multiple copies of data across nodes to ensure high availability and automatic failover.
  • Volume Listing and Inspection - Provides capabilities to retrieve configuration details, connectivity status, and resource usage for storage volumes.
  • Volume Scaling - Enables expanding or shrinking storage volume capacity by dynamically adding or removing underlying bricks.
  • Quorum-Based Consistency - Prevents data divergence and split-brain scenarios by requiring a minimum number of active nodes before allowing write operations.
  • Storage Abstraction - Abstracts physical hardware to provide replicated volumes, automated data healing, and a unified storage interface.
  • Logical Volume Management - Groups export directories across multiple servers into a single logical pool to increase filesystem capacity.
  • Redundant Storage Configurations - Sets up data distribution using replication or erasure coding to balance capacity and fault tolerance.
  • Unified File and Object Storage - Exposes the same underlying data as both objects and files to simplify storage management.
  • Distributed Volume Synchronizations - Run self-heal operations after version updates to resolve inconsistencies and clear backlogs.
  • Capacity Scaling - Increases system performance and capacity by adding new nodes to the cluster via a scale-out architecture.
  • Storage Scaling - Expands cluster capacity and performance by adding new storage servers and rebalancing data online.
  • Distributed Storage Deployments - Provides mechanisms to install and configure a scalable storage system across multiple physical servers.
  • High Availability Clusters - Ensures continuous data access and automatic failover through replicated storage volumes across network nodes.
  • Storage Management - Provides a command-line interface to manage cluster operations, volume configurations, and persistent file storage.
  • Consistent Hashing Distribution - Determines file placement across network nodes using a consistent hashing algorithm to ensure scalable capacity.
  • Multi-Protocol Storage Interfaces - Shares distributed volumes using industry-standard network protocols to ensure broad compatibility across different devices.
  • FUSE-Based Filesystem Mounts - Integrates distributed storage into the operating system using a FUSE-based client for concurrent I/O.
  • Scoped Permission Assignments - Provides granular control by granting or denying access to files and directories for specific users or groups.
  • Data Encryption - Secures communication between clients and servers using TLS to protect network data in transit.
  • Secure Network Communication - Ensures secure data transmission between cluster nodes and clients using SSL to prevent interception.
  • Consistent Hashing - Uses a consistent hashing algorithm to distribute files across network nodes without requiring a central metadata server.
  • Distributed Storage Clusters - Aggregates physical storage servers into a single logical pool of scalable object, block, and file storage.
  • Split-Brain Prevention - Blocks write operations when quorum is not met to prevent split-brain scenarios and data divergence.
  • Disk and Swap Monitoring - Monitors free disk space and inodes with configurable thresholds to trigger warnings before exhaustion.
  • Real-time Performance Monitoring - Tracks live metrics such as read/write calls and file descriptor counts across storage bricks.
  • File-Object Bridges - Exposes distributed files via a RESTful API and allows object uploads to appear as files.
  • iSCSI Target Exports - Translates iSCSI commands into file operations to present distributed storage as a network block device.
  • Metadata-Only Replicas - Maintains consistency across three nodes by storing only metadata on one node to optimize replication storage.
  • Point-In-Time Snapshots - Captures the state of the filesystem at a specific moment for data recovery purposes.
  • Volume Snapshot and Clone Engines - Creates point-in-time copies of volumes with custom naming and automated deletion policies.
  • Automated Snapshot Lifecycles - Manages the lifecycle of volume snapshots, including monitoring and deletion to control storage overhead.
  • Synchronous Replication Management - Writes data to all replica bricks simultaneously to ensure strict consistency during single-brick failures.
  • Resumable Sync Checkpoints - Uses timestamps to verify and manage the state of data synchronization to remote geographic sites.
  • Disaster Recovery Solutions - Synchronizes storage volumes asynchronously between distant geographic sites for disaster recovery and business continuity.
  • Distributed Storage Configurations - Allows tuning of stripe block sizes and hash-range allocation to optimize data distribution across storage bricks.
  • Samba Storage Exports - Exports distributed volumes as network shares to provide file access to Windows clients via Samba.
  • Dynamic Cluster Membership Management - Manages the addition and removal of storage servers without disrupting active distributed volume operations.
  • Volume Mounts - Provides a native FUSE-based client to attach distributed storage volumes for high-concurrency access.
  • Client-Side Small File Caches - Accelerates read operations by storing the contents of small files on the client side.
  • Local Data Locality Optimizations - Reduces network latency by prioritizing the allocation of files to the server's local drive.
  • Filesystem Metadata Caches - Reduces lookup overhead by caching file and directory attribute information locally on the client.
  • Online Storage Volume Configuration - Adjusts storage parameters and performance settings while online to optimize behavior without interrupting availability.
  • Parallel Storage Access Protocols - Increases throughput by distributing data requests directly to servers while routing metadata operations separately.
  • Consistency Scanners - Crawls the filesystem to identify and heal files with dirty attributes to maintain cluster consistency.
  • Persistent Storage Provisioning - Creates and starts distributed storage volumes assigned to specific tenants for data persistence.
  • Brick Provisioning - Automatically partitions and formats filesystems to create the bricks required for shared volumes.
  • Named Volume Lifecycles - Provides capabilities to start, stop, and delete storage volumes to manage their operational lifecycle.
  • Data Rebalancing - Redistributes files across the storage topology after volume changes to optimize usage.
  • Thin Arbiters - Tracks brick health using a lightweight process to ensure consistency without storing full replicas.
  • Snapshot Volume Creation - Creates read-only copies of a volume to preserve data states for backup and recovery.
  • Volume Restorations - Provides the ability to revert a storage volume to a previously captured point-in-time state during offline operations.
  • Disk Quota Enforcement - Limits the disk space a user or group can consume to prevent storage exhaustion.
  • Group Storage Quotas - Implements storage limits for specific user groups within a distributed volume.
  • Centralized Software Upgrading - Provides tools for triggering and managing software updates across a cluster of remote storage servers.
  • Block Storage Services - Integrates with orchestration services to provide persistent block storage volumes for virtual machines.
  • Cluster Server Managements - Manages the pool of trusted servers authorized to participate in the distributed storage cluster.
  • Cluster Upgrades - Provides processes for managing version updates across distributed storage server clusters to maintain high availability.
  • Protocol Failover High Availability - Maintains client connectivity during server failure using a resource manager to failover NFS requests to active nodes.
  • Storage Cluster Deployment - Supports the automated provisioning and configuration of distributed storage clusters using infrastructure-as-code.
  • Node Software Updates - Provides online and offline procedures to update server software on storage nodes.
  • Virtual Machine Deployment - Supports installation across virtualized instances using standard hypervisors to create distributed storage clusters.
  • Brick Replacement - Swaps corrupted storage units with new ones and synchronizes data to restore redundancy.
  • NFS Configurations - Provides standard network file system access to distributed volumes using inline or kernel-based servers.
  • NFS Client Mounts - Enables clients to connect to distributed volumes using the standard NFS protocol over TCP.
  • NFS Directory Exporting - Bridges user-space servers with distributed storage to serve files to clients via NFS protocols.
  • RDMA Protocol Implementations - Accelerates data transfer between clients and bricks using the RDMA protocol to reduce latency.
  • CIFS Storage Exports - Shares distributed volumes with Windows clients using the CIFS protocol or direct network mapping.
  • Storage Request Pipelines - Processes storage requests through a modular translator pipeline to implement features like encryption and access control.
  • Thread-Pool Disk I/O Engines - Increases read and write speeds by using an asynchronous interface instead of standard synchronous system calls.
  • Storage Volume Resizing - Increases overall storage capacity and distribution by adding new bricks to an active cluster.
  • Inode Consumption Limits - Enforces hard limits on both disk space and inode consumption to prevent storage exhaustion.
  • Read-Only Snapshot Access - Provides read-only access to snapshot data via mounts or hidden directory entry points.
  • Bitrot Protection - Calculates and verifies checksums for files to identify silent data corruption and bitrot.
  • Administrative Role Management - Assigns specific permission levels to users to control the management of volumes and configurations.
  • Storage Access Restrictions - Controls client access to distributed storage volumes using IP address allow-lists and reject-lists.
  • Access Control Lists - Implements granular user and group permissions using POSIX access control lists to secure stored data.
  • Request Interception Control - Uses a translator pipeline to intercept, modify, or redirect storage requests for encryption and access control.
  • IP Access Restrictions - Limits NFS volume access to specific IP addresses or defined netgroups for network-level security.
  • Cluster Monitoring Systems - Tracks performance metrics and resource usage across the distributed cluster to optimize overall throughput.
  • Replication Health Monitors - Tracks synchronization state and pending operations to identify faults or bottlenecks in data replication.
  • Node Health Tracking - Provides periodic health checks to ensure storage nodes are responsive and available within the cluster.
  • Software Update Managers - Implements administrative processes for updating distributed storage software across servers to enable new features.
  • Cluster Version Updaters - Provides utilities for performing rolling updates of cluster-wide storage software while preserving data and configuration.
  • Distributed Filesystems - Software-defined storage scaling to petabytes.
  • Storage Management - Scalable software-defined distributed storage.
  • More to explore - Scale-out network-attached storage.

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Häufig gestellte Fragen

Was macht gluster/glusterfs?

GlusterFS ist ein softwaredefiniertes verteiltes Dateisystem und Scale-Out-Storage-Cluster, das Festplattenressourcen von mehreren Servern in einem einzigen globalen Namensraum aggregiert. Es fungiert als vereinheitlichte Speicherplattform, die es ermöglicht, dieselben zugrunde liegenden Daten über Datei-, Block- und Objektspeicherschnittstellen bereitzustellen.

Was sind die Hauptfunktionen von gluster/glusterfs?

Die Hauptfunktionen von gluster/glusterfs sind: Distributed Network Filesystems, Distributed Storage Aggregators, Unified Storage Interfaces, Distributed File Systems, Storage Service Self-Healing, Block Storage, Distributed Data Replication, Storage Synchronization Services.

Welche Open-Source-Alternativen gibt es zu gluster/glusterfs?

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