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Google Kubernetes Engine (GKE)Utilize a secure and managed Kubernetes platform to deploy advanced applications seamlessly. Google Kubernetes Engine (GKE) offers a powerful framework for executing both stateful and stateless containerized solutions, catering to diverse requirements ranging from artificial intelligence and machine learning to various web services and backend functionalities, whether straightforward or intricate. Leverage cutting-edge features like four-way auto-scaling and efficient management systems to optimize performance. Improve your configuration with enhanced provisioning options for GPUs and TPUs, take advantage of integrated developer tools, and enjoy multi-cluster capabilities supported by site reliability engineers. Initiate your projects swiftly with the convenience of single-click cluster deployment, ensuring a reliable and highly available control plane with choices for both multi-zonal and regional clusters. Alleviate operational challenges with automatic repairs, timely upgrades, and managed release channels that streamline processes. Prioritizing security, the platform incorporates built-in vulnerability scanning for container images alongside robust data encryption methods. Gain insights through integrated Cloud Monitoring, which offers visibility into your infrastructure, applications, and Kubernetes metrics, ultimately expediting application development while maintaining high security standards. This all-encompassing solution not only boosts operational efficiency but also strengthens the overall reliability and integrity of your deployments while fostering a secure environment for innovation.
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What is Apache Mesos?
Mesos operates on principles akin to those of the Linux kernel; however, it does so at a higher abstraction level. Its kernel spans across all machines, enabling applications like Hadoop, Spark, Kafka, and Elasticsearch by providing APIs that oversee resource management and scheduling for entire data centers and cloud systems. Moreover, Mesos possesses native functionalities for launching containers with Docker and AppC images. This capability allows both cloud-native and legacy applications to coexist within a single cluster, while also supporting customizable scheduling policies tailored to specific needs. Users gain access to HTTP APIs that facilitate the development of new distributed applications, alongside tools dedicated to cluster management and monitoring. Additionally, the platform features a built-in Web UI, which empowers users to monitor the status of the cluster and browse through container sandboxes, improving overall operability and visibility. This comprehensive framework not only enhances user experience but also positions Mesos as a highly adaptable choice for efficiently managing intricate application deployments in diverse environments. Its design fosters scalability and flexibility, making it suitable for organizations of varying sizes and requirements.
What is Apache Hadoop YARN?
The fundamental principle of YARN centers on distributing resource management and job scheduling/monitoring through the use of separate daemons for each task. It features a centralized ResourceManager (RM) paired with unique ApplicationMasters (AM) for every application, which can either be a single job or a Directed Acyclic Graph (DAG) of jobs. In tandem, the ResourceManager and NodeManager establish the computational infrastructure required for data processing. The ResourceManager acts as the primary authority, overseeing resource allocation for all applications within the framework. In contrast, the NodeManager serves as a local agent on each machine, managing containers, monitoring their resource consumption—including CPU, memory, disk, and network usage—and communicating this data back to the ResourceManager/Scheduler. Furthermore, the ApplicationMaster operates as a dedicated library for each application, tasked with negotiating resource distribution with the ResourceManager while coordinating with the NodeManagers to efficiently execute and monitor tasks. This clear division of roles significantly boosts the efficiency and scalability of the resource management system, ultimately facilitating better performance in large-scale computing environments. Such an architecture allows for more dynamic resource allocation and the ability to handle diverse workloads effectively.
Integrations Supported
Apache Aurora
Apache Flink
Apache Knox
Apache OpenWhisk
Apache PredictionIO
Apache Spark
Cloudera Data Platform
DX Unified Infrastructure Management
Hue
Kapacitor
Integrations Supported
Apache Aurora
Apache Flink
Apache Knox
Apache OpenWhisk
Apache PredictionIO
Apache Spark
Cloudera Data Platform
DX Unified Infrastructure Management
Hue
Kapacitor
API Availability
Has API
API Availability
Has API
Pricing Information
Pricing not provided.
Free Trial Offered?
Free Version
Pricing Information
Pricing not provided.
Free Trial Offered?
Free Version
Supported Platforms
SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux
Supported Platforms
SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux
Customer Service / Support
Standard Support
24 Hour Support
Web-Based Support
Customer Service / Support
Standard Support
24 Hour Support
Web-Based Support
Training Options
Documentation Hub
Webinars
Online Training
On-Site Training
Training Options
Documentation Hub
Webinars
Online Training
On-Site Training
Company Facts
Organization Name
Apache Software Foundation
Date Founded
1999
Company Location
United States
Company Website
mesos.apache.org
Company Facts
Organization Name
Apache Software Foundation
Date Founded
1999
Company Location
Uniited States
Company Website
hadoop.apache.org/docs/current/hadoop-yarn/hadoop-yarn-site/YARN.html
Categories and Features
Cloud Management
Access Control
Billing & Provisioning
Capacity Analytics
Cost Management
Demand Monitoring
Multi-Cloud Management
Performance Analytics
SLA Management
Supply Monitoring
Workflow Approval
Container Management
Access Control
Application Development
Automatic Scaling
Build Automation
Container Health Management
Container Storage
Deployment Automation
File Isolation
Hybrid Deployments
Network Isolation
Orchestration
Shared File Systems
Version Control
Virtualization