You know that you could be testing more to catch bugs earlier, but QA testing can take a lot of time, effort and resources to do it right. MuukTest can get growing engineering teams up to 95% coverage of end-to-end tests in just 3 months.
Our QA experts create, manage, maintain, and update E2E tests on the MuukTest Platform for your web, API, and mobile apps at record speed. We begin exploratory and negative tests after achieving 100% regression coverage within 8 weeks to uncover bugs and increase coverage. The time you spend on development is reduced by managing your testing frameworks, scripts, libraries and maintenance.
We also proactively identify flaky tests and false test results to ensure the accuracy of your tests. Early and frequent testing allows you to detect errors in the early stages your development lifecycle. This reduces the burden of technical debt later on.
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Your mission-critical systems carry the weight of your entire organization. Protecting them shouldn't leave you guessing about hidden vulnerabilities or compliance risks.
Rocket® z/Assure™ Vulnerability Analysis Program (VAP) is a specialized mainframe security solution built to proactively scan and safeguard your most valuable environments. By identifying system-level risks before they become active threats, we partner with you to ensure your infrastructure remains locked down, resilient, and fully compliant. We understand the responsibility of managing enterprise security, and our tool gives you the exact insights you need to confidently eliminate weak points.
Key benefits for your security team:
- Identify and resolve hidden vulnerabilities with deep, automated scanning.
- Protect your mission-critical data from evolving external and internal threats.
- Streamline compliance reporting with clear, actionable security insights.
Take control of your mainframe security. Partner with Rocket Software to protect your digital foundation today.
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afl-unicorn
AFL-Unicorn provides the capability to fuzz any binary that can be emulated using the Unicorn Engine, allowing you to target specific code segments for testing. If you can emulate the desired code with the Unicorn Engine, you can effectively use AFL-Unicorn for fuzzing purposes. The Unicorn Mode incorporates block-edge instrumentation similar to what AFL's QEMU mode employs, enabling AFL to gather block coverage information from the emulated code snippets to drive its input generation process. The key to this functionality lies in the careful setup of a Unicorn-based test harness, which is responsible for loading the target code, initializing the state, and incorporating data mutated by AFL from its disk storage. After establishing these parameters, the test harness emulates the binary code of the target, and upon encountering a crash or error, triggers a signal to indicate the issue. While this framework has primarily been tested on Ubuntu 16.04 LTS, it is designed to be compatible with any operating system that can run both AFL and Unicorn without issues. With this setup, developers can enhance their fuzzing efforts and improve their binary analysis workflows significantly.
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ObjectSecurity BinLens
Traditional methods of cybersecurity fall short when it comes to safeguarding modern IT/OT/ICS software and devices. The generation of Software Bill of Materials (SBOM) is primarily focused on identifying only known vulnerabilities in existing software. Moreover, source code analysis alongside static application security testing (SAST) often yields excessive false-positive results, which can hinder timely remediation efforts. Additionally, network scans can be ineffective for devices that are not directly connected to the network. To achieve deeper security insights, consider BinLens™—an all-encompassing solution for advanced binary analysis. Formerly known as the ObjectSecurity OT.AI Platform, BinLens™ takes an integrated approach that merges various techniques to identify potential zero-day vulnerabilities with exceptional accuracy. Its capabilities are enhanced by automated symbolic execution, which is particularly adept at revealing memory-safety violations and other undefined behaviors present in binary programs, leading to a significantly reduced false-positive rate compared to other tools available in the market. Furthermore, BinLens™ simplifies and automates critical manual reverse engineering processes such as static analysis, disassembly, and decompilation, making it an invaluable asset in the realm of cybersecurity.
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