高性能嵌入式計(jì)算

出版時(shí)間:2007-1  出版社:機(jī)械工業(yè)出版社  作者:(美)Wayne Wolf  頁(yè)數(shù):521  
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內(nèi)容概要

本書是經(jīng)典原版書庫(kù)之一,采用一種獨(dú)特的量化方法來論述現(xiàn)代嵌入式計(jì)算系統(tǒng)的設(shè)計(jì),書中根據(jù)性能、功率和能量消耗以及成本應(yīng)達(dá)到的量化目標(biāo)描述了在設(shè)計(jì)中亟待解決的問題,深入論述了網(wǎng)絡(luò)、可重構(gòu)系統(tǒng)、軟硬件協(xié)同設(shè)計(jì)、安全性以及程序分析。書中包含大量現(xiàn)實(shí)世界中嵌入式計(jì)算應(yīng)用和體系結(jié)構(gòu)的實(shí)例,蓋嵌入式計(jì)算領(lǐng)域的高級(jí)主題,比如可配置處理器、針對(duì)實(shí)時(shí)和功率損耗的軟件優(yōu)化、異構(gòu)多處理器以及嵌入式中間件。本書對(duì)專業(yè)人員、研究人員和學(xué)生來說都是及時(shí)且非常有價(jià)值的資源。     在過去的20年中,雖然嵌入式系統(tǒng)仍是許多消費(fèi)電子設(shè)備、工業(yè)設(shè)備和軍方設(shè)備中不可見的部分,但它作為一個(gè)整體已經(jīng)脫穎而出。如今,嵌入式計(jì)算不再限于簡(jiǎn)單設(shè)備控制,它已經(jīng)能以高實(shí)時(shí)處理率和低能耗來執(zhí)行復(fù)雜的處理任務(wù)。    本書采用一種獨(dú)特的量化方法來論述現(xiàn)代嵌入式計(jì)算系統(tǒng)的設(shè)計(jì),書中根據(jù)性能、功率和能量消耗以及成本應(yīng)達(dá)到的量化目標(biāo)描述了在設(shè)計(jì)中亟待解決的問題。貫穿全書的實(shí)際應(yīng)用使得本書對(duì)專業(yè)人員、研究人員和學(xué)生來說都是及時(shí)且非常有價(jià)值的資源。

作者簡(jiǎn)介

Wayne Wolf擁有斯坦福大學(xué)電子工程博士學(xué)位,現(xiàn)為普林斯頓大學(xué)電子工程教授。在1989年加入普林斯頓大學(xué)之前,他曾在AT&T貝爾實(shí)驗(yàn)室工作。他是IEEE和ACM會(huì)員、IEEE計(jì)算機(jī)協(xié)會(huì)核心成員以及ASEE和SPIE成員。Wolf教授于2003年獲得了ASEE Frederick E.Terman獎(jiǎng),于2006年獲得了IE

書籍目錄

Preface1 Embedded Computing   1.1 The Landscape of High-Performance Embedded Computing   1.2 Example Applications   1.3 Design Goals   1.4 Design Methodologies   1.5 Models of Computation   1.6 Reliability, Safety, and Security   1.7 Consumer Electronics Architectures   1.8 Summary and a Look Ahead What We Learned Further Reading Questions Lab Exercises 2 CPUs   2.1 Introduction   2.2 Comparing Processors   2.3 RISC Processors and Digital Signal Processors   2.4 Parallel Execution Mechanisms   2.5 Variable-Performance CPU Architectures   2.6 Processor Memory Hierarchy   2.7 Additional CPU Mechanisms   2.8 CPU Simulation   2.9 Automated CPU Design   2.10 Summary What We Learned Further Reading Questions Lab Exercises 3 Programs   3.1 Introduction   3.2 Code Generation and Back-End Compilation   3.3 Memory-Oriented Optimizations   3.4 Program Performance Analysis   3.5 Models of Computation and Programming   3.6 Summary What We Learned Further Reading Questions Lab Exercises 4 Processes and Operating Systems   4.1 Introduction   4.2 Real-Time Process Scheduling   4.3 Languages and Scheduling   4.4 Operating System Design   4.5 Verification   4.6 Summary What We Learned Further Reading Questions Lab Exercises5 Multiprocessor Architectures   5.1 Introduction   5.2 Why Embedded Multiprocessors?   5.3 Multiprocessor Design Techniques   5.4 Multiprocessor Architectures   5.5 Processing Elements   5.6 Interconnection Networks   5.7 Memory Systems   5.8 Physically Distributed Systems and Networks   5.9 Multiprocessor Design Methodologies and Algorithms   5.10 Summary What We Learned Further Reading Questions Lab Exercises 6 Multiprocessor Software   6.1 Introduction   6.2 What Is Different About Embedded Multiprocessor Software?   6.3 Real-Time Multiprocessor Operating Systems   6.4 Services and Middleware for Embedded Multiprocessors   6.5 Design Verification   6.6 Summary What We Learned Further Reading Questions Lab Exercises 7 Hardware/Software Co-Design   7.1 Introduction   7.2 Design Platforms   7.3 Performance Analysis   7.4 Hardware/Software Co-Synthesis Algorithms   7.5 Hardware/Software Co-Simulation   7.6 Summary What We Learned Further Reading Questions Lab Exercises Glossary

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