
Okyline is an Executable Data Design (EDD) platform focused on executable validation contracts and operational data quality control.
Rather than managing separate specifications, validation code, tests, and monitoring dashboards, Okyline centralizes validation and quality supervision around a single readable executable contract acting as the operational reference for enterprise data flows.
The same contract powers deterministic validation, advanced business invariant checks, multi-format execution, data quality gates, and historical quality analytics across APIs, events, files, LLM structured outputs, and distributed operational systems.
Contracts are designed directly from annotated sample data, making validation rules immediately understandable for developers, architects, QA teams, and business analysts.
The Community Edition includes the public specification, a free Java runtime engine, a Claude AI assistant for contract generation, and an online studio supporting executable JSON validation contracts and JSON Schema transpilation.
The Enterprise Edition adds native validation for JSONL, XML, CSV, FIXED, and EDI flows together with operational quality dashboards and data quality gates, without requiring databases or centralized infrastructure.erprise Edition supports direct validation of JSON, JSONL, XML, CSV, FIXED, and EDI flows with operational quality dashboards and analytics, without databases.
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Airlock Digital delivers an easy-to-manage and scalable application control solution to protect endpoints with confidence. Built by cybersecurity professionals and trusted by organizations worldwide, Airlock Digital enforces a Deny by Default security posture to block all untrusted code, including unknown applications, unwanted scripts, malware, and ransomware.
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Threagile
Threagile empowers teams to implement Agile Threat Modeling with remarkable ease, seamlessly integrating into DevSecOps workflows. This open-source toolkit allows users to represent an architecture and its assets in a flexible, declarative manner using a YAML file, which can be edited directly within an IDE or any YAML-compatible editor. When the Threagile toolkit is executed, it processes a series of risk rules that perform security evaluations on the architecture model, generating a comprehensive report detailing potential vulnerabilities and suggested mitigation strategies. Additionally, visually appealing data-flow diagrams are automatically produced, along with various output formats such as Excel and JSON for further analysis. The tool also supports ongoing risk management directly within the Threagile YAML model file, enabling teams to track their progress on risk mitigation effectively. Threagile can be operated through the command line, and for added convenience, a Docker container is available, or it can be set up as a REST server for broader accessibility. This versatility ensures that teams can choose the deployment method that best fits their development environment.
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Google Cloud Deployment Manager
Easily create and oversee cloud resources utilizing straightforward templates. Google Cloud Deployment Manager enables you to outline all necessary resources for your application in a declarative format using YAML. Additionally, Python or Jinja2 templates can be employed to parameterize the configuration, facilitating the reuse of standard deployment methods like a load-balanced, auto-scaled instance group. By considering your configuration as code, you can achieve repeatable deployments effortlessly. Through the creation of configuration files that delineate the resources, the resource creation process can be replicated consistently and reliably. Unlike many tools that follow an imperative approach, which requires users to specify each step involved in resource creation and configuration, a declarative approach empowers users to define desired configurations and allows the system to determine the necessary steps. This shift in focus lets users concentrate on the collective resources that make up their application or service rather than managing each resource in isolation. Ultimately, this methodology streamlines the deployment process, enhancing efficiency and reliability.
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