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[资料共享] Debugging Systems-on-Chip: Communication-centric and Abstraction-based Techni...

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Debugging Systems-on-Chip: Communication-centric and Abstraction-based Techniques    ---  调试芯片上的系统(Systems-on-Chip):基于通信的抽象技术

This book describes an approach and supporting infrastructure to facilitate debugging the silicon implementation of a System-on-Chip (SOC), allowing its associated product to be introduced into the market more quickly. Readers learn step-by-step the key requirements for debugging a modern, silicon SOC implementation, nine factors that complicate this debugging task, and a new debug approach that addresses these requirements and complicating factors. The authors’ novel communication-centric, scan-based, abstraction-based, run/stop-based (CSAR) debug approach is discussed in detail, showing how it helps to meet debug requirements and address the nine, previously identified factors that complicate debugging silicon implementations of SOCs. The authors also derive the debug infrastructure requirements to support debugging of a silicon implementation of an SOC with their CSAR debug approach. This debug infrastructure consists of a generic on-chip debug architecture, a configurable automated design-for-debug flow to be used during the design of an SOC, and customizable off-chip debugger software. Coverage includes an evaluation of the efficiency and effectiveness of the CSAR approach and its supporting infrastructure, using six industrial SOCs and an illustrative, example SOC model. The authors also quantify the hardware cost and design effort to support their approach.

本书介绍了一种方法和支持的基础架构,以便于调试硅片上实现的芯片上系统(SOC),从而使相关产品更快地被引入市场。读者逐步学习调试现代硅SOC实现的关键要求,这些调试任务复杂化的9个因素,以及解决这些要求和复杂因素的新调试方法。作者提出的新颖的以通信为中心,以扫描为基础,以抽象为基础,以运行/停止为基础(CSAR)的调试方法并进行了详细的讨论,本书展示了如何帮助满足调试要求,并解决了以前确定的九个因素,使调试复杂化硅实现的SOC。作者还推出了调试基础架构要求,以支持使用CSAR调试方法对硅实现的SOC进行调试。该调试架构包括通用的片上调试架构,可在SOC设计期间使用的可配置自动调试设计流程,以及可定制的片外调试器软件。本书覆盖的范围包括使用六个工业SOC和一个说明性的示例SOC模型及其配套基础设施来评估CSAR方法的效率和有效性。作者还量化硬件成本和设计努力来支持他们提出的方法。

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