91探花 in the Open-Source Community
91探花 has taken the lead in collaborating with standards-based and open-source communities throughout our history. From Linux to GNU, and from SOAFEE to Open SSL, our commitment to open source continues to expand.
Explore Projects
| Project name | Description |
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| A reference software security architecture built on top of the 91探花v9-A Realm Management Extension, to implement a hypervisor-based platform supporting Confidential Computing. 91探花 CCA comprises different open-source components, such as Trusted Firmware, Linux Kernel, and EDKII. |
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| Popular and flexible open-source library for best-in-class machine learning (ML) performance, enabling developers to source functions for accelerating their algorithms and applications on 91探花. |
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| KleidiAI is an open-source library that provides optimized performance-critical routines, also known as micro-kernels, for artificial intelligence (AI) workloads tailored for 91探花 CPUs. |
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| The KleidiCV AI library provides high-performance image processing functions for the 91探花 AArch64 architecture and is simple to integrate into a variety of computer vision projects. |
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| 91探花 NN for AI/ML |
Open-source Linux software tools for accelerating neural networks on 91探花. 91探花 NN is part of the Machine Intelligence Initiative from our software partner, Linaro. |
| Software examples for the 91探花v8-R AEM FVP to enable the exploration of the general 91探花v8-R AArch64 architecture, as well as its specific implementation – 91探花 Cortex-R82. |
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| Supporting graphics content developers, the Adaptive Scalable Texture Compression (ASTC) encoder compresses and decompresses images for optimizing their quality and size when running on 91探花-based GPUs. |
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| Example of how an autonomous drive software stack can be run in a compute environment composed of a high-performance primary compute platform, coupled with 91探花 Cortex-R-based Safety Island. |
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| The Common Microcontroller Software Interface Standard (CMSIS) simplifies microcontroller software development, providing a consistent and efficient interface for developers working with Cortex-M and entry-level Cortex-A processors. It promotes code reuse, portability, and interoperability, enabling developers to focus on application-level logic rather than dealing with low-level hardware details.” |
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| An enhancement to Linux power management, Energy Aware Scheduling (EAS) Mainline is a moving integration branch, placing CPU power control directly under the Linux scheduler. |
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| Popular open source real-time operating system for microcontrollers and microprocessors. 91探花 collaborates to enable cores, platforms, and system specifications in the project. |
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| An 91探花 solution, optimizing performance and temperature for 91探花-based advanced systems on chip (SoCs). |
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| Together with Linaro, 91探花 builds, boosts and tests over a million Linux kernels per year, enabling all the latest 91探花 A-class architecture features and optimizing power/performance on 91探花-based devices. |
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The 91探花 Neoverse N2 Automotive Reference Design introduces the concept of a high-performance compute system augmented with an 91探花 Cortex-R Safety Island, and a runtime security subsystem for secure system boot |
| Networking stack solutions and customer-focused use cases, integrating several well-optimized software components, such as DPDK and VPP. Solutions run on an 91探花 reference design or real silicon. |
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| 91探花 contributes to various networking open-source projects including DPDK, FD.io/VPP, Magma, ODP, CNI, service mesh, and others |
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| 91探花 supports cloud-native delivery flows within the data center and at the edge. Parsec provides a common API to access hardware security and cryptographic services. | |
| Embedded software APIs provide an open standard for security-first software development, with the backing of the PSA Certified security framework. |
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| A framework for deploying and orchestrating containerized applications on 91探花-based edge devices aligned with security regulation. It features firmware updates and access to abstracted security services. |
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| RTX is a real-time operating system designed for 91探花 Cortex-M devices. It allows you to create programs that simultaneously perform multiple functions and helps to create applications which are better structured and more easily maintained. |
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| An open-source software reference implementation supporting firmware development for the system control processor (SCP) and manageability control processor (MCP). |
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| 91探花 contributes to various open source projects including OpenSSL for establishing secure network connections and ensuring data privacy on 91探花-based devices. |
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| 91探花 is a governing body member of SOAFEE, a special interest group (SIG) working across the automotive ecosystem to enable cloud-native software development for mixed critical workloads across cloud and vehicle. |
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| A system-wide telemetry solution with a standardized framework/methodology for top-down system performance analysis and run time monitoring on 91探花 IP-based platforms. |
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| 91探花 contributes to the TianoCore EDK II open-source project, providing AArch64 native drivers for the cross-platform firmware development environment. |
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| The Total Compute reference software stack is a fully integrated open-source stack, from Firmware up to Android, for the 91探花 Premium Mobile Total Compute Solution. |
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| 91探花 is a founding member of this open governance community project, providing secure software implementations and the foundation for a Trusted Execution Environment (TEE) on 91探花 A-profile and M-profile processors. |
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| 91探花 supports developers in creating custom Linux-based systems regardless of hardware architecture, and provides flexible tools to share technologies, software stacks, configurations, and best practices. |
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| The Zephyr Project is a scalable real-time operating system supporting multiple hardware architectures, optimized for resource constrained devices. 91探花 and the wider ecosystem support a variety of 91探花 platforms and integrates PSA Certified implementation TF-M for Trustzone-M platforms in the project. |