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        <title>存储器层次结构</title>
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        <description>第三章 存储器层次结构

3.1 存储器概述

3.1.1 存储器的分类

存储器是计算机系统中用于存储程序和数据的重要部件。根据不同的分类标准，存储器可以分为多种类型：

按存储介质分类：

1.</description>
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        <title>多处理器系统</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E5%A4%9A%E5%A4%84%E7%90%86%E5%99%A8%E7%B3%BB%E7%BB%9F&amp;rev=1772353538&amp;do=diff</link>
        <description>第十三章 多处理器系统

本章导学

多处理器系统是现代计算机体系结构的核心组成部分，它通过并行处理技术提升系统性能。本章将深入探讨多处理器系统的基本概念、互连网络、缓存一致性、同步机制以及多核技术等关键内容，为理解现代高性能计算系统奠定基础。$$S = \frac{T_1}{T_p}$$$T_1$$T_p$$p$$$S_{max} = \frac{1}{(1-f) + \frac{f}{p}}$$$f$$(1-f)$$$S = \frac{1}{(1-0.9) + \frac{0.9}{100}} = \frac{1}{0.1 + 0.009} = \frac{1}{0.109} \approx 9.17$$$p$$$50 = \frac{1}{0.1 + \frac{0.9}{p}}$$$$0.1 + \frac{0.9}{p} = 0.02$$$$\frac{0.9}{p} = -0.08$$$\frac{1}{0.1} = 10$$N$$N-1$$\lfloor N/2 \rfloor$$\sqrt{N} \times \sqrt{N}$$2(\sqrt{N}-1)$$\sqr…</description>
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        <dc:date>2026-03-01T08:21:16+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>高速缓冲存储器</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E9%AB%98%E9%80%9F%E7%BC%93%E5%86%B2%E5%AD%98%E5%82%A8%E5%99%A8&amp;rev=1772353276&amp;do=diff</link>
        <description>第四章 高速缓冲存储器

4.1 Cache的基本概念

4.1.1 Cache的工作原理

高速缓冲存储器（Cache）是介于CPU和主存之间的高速小容量存储器，用于解决CPU与主存之间速度不匹配的矛盾。

Cache的基本思想</description>
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        <dc:date>2026-03-01T08:22:46+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>汇编语言基础</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E6%B1%87%E7%BC%96%E8%AF%AD%E8%A8%80%E5%9F%BA%E7%A1%80&amp;rev=1772353366&amp;do=diff</link>
        <description>第七章 汇编语言基础

7.1 汇编语言概述

7.1.1 汇编语言的基本概念

汇编语言（Assembly Language）是一种面向机器的低级程序设计语言，它使用助记符来表示机器指令，使用符号地址代替机器地址，是机器语言（二进制代码）的符号化表示。</description>
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        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>计算机系统概论</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%B3%BB%E7%BB%9F%E6%A6%82%E8%AE%BA&amp;rev=1772429315&amp;do=diff</link>
        <description>第一章 计算机系统概论

1.1 计算机系统概述

1.1.1 计算机的定义与发展历程

计算机是一种能够按照事先存储的程序，自动、高速地进行大量数值计算和各种信息处理的现代化智能电子设备。从1946年第一台电子计算机ENIAC诞生至今，计算机已经经历了七十多年的发展历程。$时钟周期 = 1 / 主频 = 1 / (3 × 10^9) 秒$$每条指令执行时间 = 4 × 时钟周期 = 4 / (3 × 10^9) 秒$$运算速度 = 1 / 每条指令执行时间 = (3 × 10^9) / 4 = 750 × 10^6 指令/秒 = 750 MIPS$…</description>
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        <dc:date>2026-03-01T08:24:52+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>输入输出系统</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E8%BE%93%E5%85%A5%E8%BE%93%E5%87%BA%E7%B3%BB%E7%BB%9F&amp;rev=1772353492&amp;do=diff</link>
        <description>第十一章 输入输出系统

11.1 I/O系统概述

11.1.1 I/O系统的重要性

基本概念：
输入输出（I/O）系统是计算机与外部世界进行信息交换的桥梁。外部世界包括用户、其他计算机、各种传感器和执行机构等。</description>
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        <dc:date>2026-03-03T15:54:31+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>数据的表示和运算</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E6%95%B0%E6%8D%AE%E7%9A%84%E8%A1%A8%E7%A4%BA%E5%92%8C%E8%BF%90%E7%AE%97&amp;rev=1772553271&amp;do=diff</link>
        <description>第二章 数据的表示和运算

2.1 数制与编码

2.1.1 进位计数制

考点1:进制
进制数码基数位权二进制0,12$2^k$八进制0,1,3,4,5,6,78$8^k$十进制0,1,3,4,5,6,7,8,910$10^k$十六进制0,1,3,4,5,6,7,8,9,A,B,C,D,E,F16$16^k$
考点2：进制的转换$(1011.01)_2$$(735)_8$$(2A3)_{16}$$(13.6875)_{10}$$(156)_{10}$$(254)_{10}$$(1011010.1101)_2$$(275)_8$$(11010110)_2$$(3F)_{16}$$(17)_8$</description>
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        <dc:date>2026-03-01T08:26:03+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>现代处理器技术</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E7%8E%B0%E4%BB%A3%E5%A4%84%E7%90%86%E5%99%A8%E6%8A%80%E6%9C%AF&amp;rev=1772353563&amp;do=diff</link>
        <description>第十四章 现代处理器技术

本章导学

随着摩尔定律的演进和应用需求的多样化，现代处理器技术经历了革命性的发展。本章将深入探讨向量处理器、GPU架构、领域专用加速器、先进存储技术以及可靠性设计等前沿主题，帮助读者了解计算机体系结构的最新发展趋势。$$C[0:n-1] = A[0:n-1] \, op \, B[0:n-1]$$$n$$op$$N$$M$$$T_{mul} = 10 + 64 = 74 \text{周期}$$$$T_{add} = 10 + 64 = 74 \text{周期}$$$$T_{strip} = T_{mul} + T_{add} = 148 \text{周期}$$$T_{total} = 4 \times 148 = 592$$$T_{chain} = 10 + 10 + 64 = 84 \text{周期/条带}$$$$T_{total} = 4 \times 84 = 336 \text{周期}$$$\lceil \log_2 k \rceil + 1$$k$$r$$k=64$$$2^r \geq k + r + 1$$$r=6$$64 \geq 64+6+…</description>
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        <dc:date>2026-03-01T08:21:47+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>虚拟存储器</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E8%99%9A%E6%8B%9F%E5%AD%98%E5%82%A8%E5%99%A8&amp;rev=1772353307&amp;do=diff</link>
        <description>第五章 虚拟存储器

5.1 虚拟存储器的基本概念

5.1.1 虚拟存储器的引入

在早期的计算机系统中，程序必须全部装入内存才能运行。这带来了几个问题：

1. 内存容量限制：大程序无法在小内存系统中运行
2.</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2026-03-01T08:24:04+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>指令流水线</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E6%8C%87%E4%BB%A4%E6%B5%81%E6%B0%B4%E7%BA%BF&amp;rev=1772353444&amp;do=diff</link>
        <description>第九章 指令流水线

9.1 流水线技术概述

9.1.1 流水线的基本概念

流水线（Pipeline）技术是将一个复杂的操作分解为若干个子操作，每个子操作由专门的硬件完成，多个操作的不同子操作在时间上重叠执行，从而提高系统吞吐率的技术。</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2026-03-01T08:22:17+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>指令系统</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E6%8C%87%E4%BB%A4%E7%B3%BB%E7%BB%9F&amp;rev=1772353337&amp;do=diff</link>
        <description>第六章 指令系统

6.1 指令系统概述

6.1.1 指令系统的基本概念

指令系统是计算机硬件能够识别和执行的全部指令的集合，它是计算机硬件与软件之间的接口，也是计算机系统结构的重要组成部分。指令系统的完备性、规整性和高效性直接影响着计算机系统的性能、成本和适用范围。</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2026-03-01T08:24:25+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>总线系统</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:%E6%80%BB%E7%BA%BF%E7%B3%BB%E7%BB%9F&amp;rev=1772353465&amp;do=diff</link>
        <description>第十章 总线系统

10.1 总线系统概述

10.1.1 总线的基本概念

总线（Bus）是连接计算机各功能部件的公共信息传输线，是一组能为多个部件分时共享的公共信息传送线路。总线不仅是一组传输线，还包括相应的总线接口和总线控制逻辑。</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2026-03-01T08:23:43+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>cpu的功能和结构</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:cpu%E7%9A%84%E5%8A%9F%E8%83%BD%E5%92%8C%E7%BB%93%E6%9E%84&amp;rev=1772353423&amp;do=diff</link>
        <description>第八章 CPU的功能和结构

8.1 CPU的功能与组成

8.1.1 CPU的基本功能

中央处理器（Central Processing Unit，CPU）是计算机系统的核心部件，负责执行程序中的指令，控制计算机各部件协调工作。CPU的基本功能包括：</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2026-03-01T08:25:13+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>dma方式</title>
        <link>https://www.zhuzhugst.com/doku.php?id=%E8%AE%A1%E7%AE%97%E6%9C%BA%E7%BB%84%E6%88%90%E4%B8%8E%E4%BD%93%E7%B3%BB%E7%BB%93%E6%9E%84:dma%E6%96%B9%E5%BC%8F&amp;rev=1772353513&amp;do=diff</link>
        <description>第十二章 DMA方式

12.1 DMA概述

12.1.1 DMA的基本概念

定义：
DMA（Direct Memory Access，直接存储器访问）是一种I/O控制方式，允许I/O设备在无需CPU干预的情况下，直接与主存进行高速数据传输。DMA方式下，数据传输在设备控制器和内存之间直接进行，仅在传输开始和结束时需要CPU参与。</description>
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