In addition, PSA provides direction for implementing secure methods for device identification and over-the-air updates with certificate-based authentication (instead of traditional password protection), as well as for implementing secure boot sequences.
systems and can be supported by ARM RTOS and products of the company's software partners, including ARM Mbed OS.
To encourage rapid adoption of PSA, the company also plans to promote an open-source firmware reference implementation called Trusted Firmware-M that supports the PSA specification. Its code will be released to the open source community in 2018, and until then, Trusted Firmware-M will target ARMv8-M systems.
The new architecture represents a “fundamental shift” in the economics of IoT security, ARM officials said, and the introduction of a set of foundational rules will enable developers and manufacturers to kenya mobile database the cost, time, and risk associated with modern IoT security.
“To make this vision a reality, we as a global population must become more knowledgeable about protecting our devices, trusting the IT industry to do everything it can to protect users and their data,” said Paul Williamson, vice president and general manager of ARM’s IoT Device IP business. “Manufacturers have to work hard to earn that trust so we can stand up to hackers who relentlessly search for vulnerabilities to find more entry points into our lives.”
The full PSA, along with its specifications, will be released in Q1 2018. According to Rob Coombs, ARM's director of IoT security, the PSA represents the culmination of years of work by ARM and its partners.
In addition to the PSA release, the company also introduced ARM TrustZone CryptoIsland, a new product line of on-chip and smart card-level security subsystems for applications that require high levels of security (such as LPWA communications and storage), as well as a new ARM CoreSight SDC-600 Secure Debug Channel for debugging.
This architecture is independent of operating
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