Cyber attacks continue to grow, with the impact expected to hit over $10 Trillion in 2025 (McKinsey & Co.). The cost of protecting critical systems and general purpose I.T. is estimated at $2 Trillion, supporting a huge ecosystem of anti-virus & anti-malware companies, firewalls, and support systems.
The unfortunate reality is compute systems were simply not designed for the types of attacks we face today. Complex solutions have grown to resolve complex problems, and the computer architectures have simply not kept up. Until now.
Memory safety is the #1 fundamental issue in computer security, with overflows, escalation attacks and more, impacting systems daily. New Memory Safe technologies can reduce these impact by 70%, smart thinking can take this even further.
Welcome to a safer future.
Memory safety is vital in industries where software reliability is crucial. Our innovative solutions, built on hardware-enforced memory safety, address these challenges by eliminating common memory vulnerabilities. We are proud to be driving secure computing forward, ensuring a safer world for tomorrow’s critical industries.
ICENI™ and CHERIoT’s memory-safe programming flow aligns with IEC 62304 for medical device software, enabling modular, high-availability applications with strong isolation, secure data sharing, and robust design.
Water processing, energy generation, and public transportation are the unseen foundations of daily life—yet they remain vulnerable. ICENI™ provides a seamless upgrade path with pin-compatible devices, strengthening these critical systems.
Secure and manage software risks across cyber physical systems. Integrating Memory Safe technologies, utilizing the ICENI™ platform, instantly reduces threats from misconfiguration and software supply chain.
The automotive industry relies on rigorously tested, robust systems, but as any connected platforms they remain vulnerable to Memory Safe failures. These vulnerabilities can expose critical functions like powertrain and braking systems to risk. ICENI™ mitigates these threats by containing security failures without compromising safety, enabling auditing, fine-grained control, and limiting the impact of potential attacks.
Aerospace and defence applications have long required high-integrity and high-availability systems, driven by the need for high-grade, mission-critical performance.
CHERI technology helps meet these demands from a new perspective by enabling high-integrity systems development using widely adopted languages like C/C++, overcoming the limitations of specialist languages such as Fortran, Cobol, and Ada.
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