RaimaDB
RaimaDB, an embedded time series database that can be used for Edge and IoT devices, can run in-memory. It is a lightweight, secure, and extremely powerful RDBMS. It has been field tested by more than 20 000 developers around the world and has been deployed in excess of 25 000 000 times.
RaimaDB is a high-performance, cross-platform embedded database optimized for mission-critical applications in industries such as IoT and edge computing. Its lightweight design makes it ideal for resource-constrained environments, supporting both in-memory and persistent storage options. RaimaDB offers flexible data modeling, including traditional relational models and direct relationships through network model sets. With ACID-compliant transactions and advanced indexing methods like B+Tree, Hash Table, R-Tree, and AVL-Tree, it ensures data reliability and efficiency. Built for real-time processing, it incorporates multi-version concurrency control (MVCC) and snapshot isolation, making it a robust solution for applications demanding speed and reliability.
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Docmosis
Docmosis is a self-hosted or SaaS template-based document generation solution. Integrate with custom-built software applications or popular third-party apps using the API.
Create templates using MS Word or LibreOffice. Add plain-text placeholders to control: the insertion of text/images/tables; conditionally add/remove any content; perform calculations; loop over repeating data; format data/numbers and much more.
Integrate with: Custom software built using Java, C#, Python, PHP, Ruby and more via a REST API; Low-code and no-code platforms like Appian, Bubble, Mendix, Outsystems; Third-party form builders or apps that can perform a webhook such as FormAssembly or Salesforce.
Used by customers in Finance, Health, Legal, Education, Government, HR, Insurance, Logistics, and Manufacturing to generate customized letters invoices, proposals, contracts, statements, reports and more.
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Rocket COBOL
Rocket COBOL offers a robust array of tools for the modernization and development of COBOL applications, allowing organizations to transition their essential COBOL systems into distributed, virtual, containerized, and multicloud settings while maintaining established business logic and minimizing technical debt. This suite facilitates replatforming and modernization with minimal alterations to the code, empowering developers to create, enhance, and deploy COBOL applications through widely used integrated development environments such as Visual Studio, Eclipse, and Visual Studio Code. Additionally, it seamlessly incorporates GenAI-powered development tools and DevOps practices to boost both productivity and onboarding efficiency. Furthermore, Rocket COBOL's capabilities streamline modernization efforts by providing features like automated testing and continuous integration/continuous deployment (CI/CD), along with comprehensive static code analysis enriched with GenAI insights to identify code dependencies and assess the impact of changes, ultimately leading to a more efficient development process. With its user-friendly approach, Rocket COBOL not only aids in modernization but also ensures that organizations can adapt quickly to evolving technological landscapes.
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Assembler Code Refactoring
Rocket Assembler Code Refactoring is an advanced modernization solution designed to automatically convert outdated Assembler code into structured pseudocode or modern programming languages like COBOL, C, or Java, all while preserving the original external behavior. This approach helps facilitate quicker and safer modernization efforts, ultimately enhancing maintainability. Given that Assembler code often suffers from density, lacks thorough documentation, and is increasingly supported by a dwindling number of experts, maintenance can become cumbersome, expensive, and prone to errors. The solution effectively counters these issues by providing transformations that maintain semantics and are auditable, leading to fewer outages and ensuring secure modernization without compromising system stability. The core engine operates fully automated, utilizing mathematically assured logic equivalence to mitigate conversion risks, which significantly speeds up projects and guarantees that the outputs remain semantically consistent with the initial code. As a result, organizations can transition their legacy systems with confidence, ultimately leading to improved operational efficiency.
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