At its core the reference dissects the system elements essential to robust firmware and system programming: pipeline behavior and register usage, exception and interrupt handling, bus and memory architectures, and techniques for predictable real-time performance. It provides pragmatic coverage of memory protection, atomic operations, low-level boot and initialization sequences, context switching, secure firmware update strategies, and the interaction between embedded operating systems and the Cortex-M exception model.
Recognizing modern demands for security and performance, the book devotes focused chapters to TrustZone and on-chip security features, debugging and testing infrastructures, and comprehensive performance optimization. Emerging trends-edge AI integration, open-source development workflows, and the competitive landscape including RISC-V-are examined with practical case studies and best practices to empower engineers and advanced students to design, secure, and optimize next-generation Cortex-M systems.
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