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Mastering Embedded Linux Programming

You're reading from   Mastering Embedded Linux Programming Harness the power of Linux to create versatile and robust embedded solutions

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Product type Paperback
Published in Dec 2015
Publisher Packt
ISBN-13 9781784392536
Length 418 pages
Edition 1st Edition
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Author (1):
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Chris Simmonds Chris Simmonds
Author Profile Icon Chris Simmonds
Chris Simmonds
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Table of Contents (16) Chapters Close

Preface 1. Starting Out FREE CHAPTER 2. Learning About Toolchains 3. All About Bootloaders 4. Porting and Configuring the Kernel 5. Building a Root Filesystem 6. Selecting a Build System 7. Creating a Storage Strategy 8. Introducing Device Drivers 9. Starting up - the init Program 10. Learning About Processes and Threads 11. Managing Memory 12. Debugging with GDB 13. Profiling and Tracing 14. Real-time Programming Index

Interrupt shielding

Using threaded interrupt handlers helps mitigate interrupt overhead by running some threads at a higher priority than interrupt handlers that do not impact the real-time tasks. If you are using a multi-core processor, you can take a different approach and shield one or more cores from processing interrupts completely, allowing them to be dedicated to real-time tasks instead. This works either with a normal Linux kernel or a PREEMPT_RT kernel.

Achieving this is a question of pinning the real-time threads to one CPU and the interrupt handlers to a different one. You can set the CPU affinity off a thread or process using the command line tool taskset, or you can use the sched_setaffinity(2) and pthread_setaffinity_np(3) functions.

To set the affinity of an interrupt, first note that there is a subdirectory for each interrupt number in /proc/irq/<IRQ number>. The control files for the interrupt are in there, including a CPU mask in smp_affinity. Write a bitmask to that...

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