
JS7 JobScheduler, an Open Source Workload Automation System, is designed for performance and resilience. JS7 implements state-of-the-art security standards. It offers unlimited performance for parallel executions of jobs and workflows.
JS7 provides cross-platform job execution and managed file transfer. It supports complex dependencies without the need for coding. The JS7 REST-API allows automation of inventory management and job control.
JS7 can operate thousands of Agents across any platform in parallel.
Platforms
- Cloud scheduling for Docker®, OpenShift®, Kubernetes® etc.
- True multi-platform scheduling on premises, for Windows®, Linux®, AIX®, Solaris®, macOS® etc.
- Hybrid cloud and on-premises use
User Interface
- Modern GUI with no-code approach for inventory management, monitoring, and control using web browsers
- Near-real-time information provides immediate visibility to status changes, log outputs of jobs and workflows.
- Multi-client functionality, role-based access management
- OIDC authentication and LDAP integration
High Availability
- Redundancy & Resilience based on asynchronous design and autonomous Agents
- Clustering of all JS7 Products, automatic fail-over and manual switch-over
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Engineered for peak performance and efficient resource use, KrakenD can manage a staggering 70k requests per second on just one instance. Its stateless build ensures hassle-free scalability, sidelining complications like database upkeep or node synchronization.
In terms of features, KrakenD is a jack-of-all-trades. It accommodates multiple protocols and API standards, offering granular access control, data shaping, and caching capabilities. A standout feature is its Backend For Frontend pattern, which consolidates various API calls into a single response, simplifying client interactions.
On the security front, KrakenD is OWASP-compliant and data-agnostic, streamlining regulatory adherence. Operational ease comes via its declarative setup and robust third-party tool integration. With its open-source community edition and transparent pricing model, KrakenD is the go-to API Gateway for organizations that refuse to compromise on performance or scalability.
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API7 Enterprise
API7 Enterprise serves as a commercial API gateway and management platform that leverages the capabilities of Apache APISIX. This solution enables engineering teams to effectively manage, secure, and monitor API traffic throughout their systems.
Its notable features encompass:
- A unified control over gateway clusters, configurations, and API policies.
- Mechanisms for API authentication, access governance, and rate limiting.
- Advanced traffic routing and distribution tailored for canary and blue-green deployment strategies.
- Seamless integration with systems for metrics, logging, and tracing.
- Versatile deployment options including Kubernetes, virtual machines, bare metal, and cloud environments.
- Opportunities for extensibility through plugins, with professional support readily accessible from API7.ai.
It's important to note that API7 Enterprise is proprietary commercial software, whereas Apache APISIX, which it is based on, remains an independent open-source project. This distinction emphasizes the robust capabilities of API7 Enterprise while also acknowledging the foundational role of its open-source counterpart.
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AccuKnox
AccuKnox offers a Cloud Native Application Security Platform (CNAPP) that follows a zero trust model. This platform is developed in collaboration with the Stanford Research Institute (SRI) and is founded on groundbreaking advancements in container security, anomaly detection, and data provenance. It is versatile enough to be implemented in both public and private cloud settings. The runtime security features of AccuKnox enable users to understand the application behavior of workloads, whether they are running in a public cloud, private cloud, on-premises virtual machines, bare metal, or within Kubernetes orchestrated or non-orchestrated pure-container clusters. In the event that a ransomware attacker breaches the pod's security and gains access to the vault pod, they may execute command injections, potentially encrypting the sensitive secrets stored in volume mount points. Consequently, organizations could be faced with exorbitant costs, often amounting to millions, to recover and decrypt their stolen secrets. This highlights the critical need for robust security measures in today’s digital landscape.
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