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6.828-MIT

于 2020-06-24 发布 文件大小:4820KB
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下载积分: 1 下载次数: 0

代码说明:

  6.828MIT: Laboratory resources,PDF resources

文件列表:

.git, 0 , 2019-07-12
.git\config, 361 , 2019-07-12
.git\description, 73 , 2019-07-11
.git\HEAD, 21 , 2019-07-12
.git\hooks, 0 , 2019-07-11
.git\hooks\applypatch-msg.sample, 478 , 2019-07-11
.git\hooks\commit-msg.sample, 896 , 2019-07-11
.git\hooks\fsmonitor-watchman.sample, 3327 , 2019-07-11
.git\hooks\post-update.sample, 189 , 2019-07-11
.git\hooks\pre-applypatch.sample, 424 , 2019-07-11
.git\hooks\pre-commit.sample, 1638 , 2019-07-11
.git\hooks\pre-push.sample, 1348 , 2019-07-11
.git\hooks\pre-rebase.sample, 4898 , 2019-07-11
.git\hooks\pre-receive.sample, 544 , 2019-07-11
.git\hooks\prepare-commit-msg.sample, 1492 , 2019-07-11
.git\hooks\update.sample, 3610 , 2019-07-11
.git\index, 5809 , 2019-07-12
.git\info, 0 , 2019-07-11
.git\info\exclude, 240 , 2019-07-11
.git\logs, 0 , 2019-07-11
.git\logs\HEAD, 354 , 2019-07-12
.git\logs\refs, 0 , 2019-07-11
.git\logs\refs\heads, 0 , 2019-07-12
.git\logs\refs\heads\lab2, 173 , 2019-07-12
.git\logs\refs\heads\master, 185 , 2019-07-11
.git\logs\refs\remotes, 0 , 2019-07-11
.git\logs\refs\remotes\origin, 0 , 2019-07-11
.git\logs\refs\remotes\origin\HEAD, 185 , 2019-07-11
.git\objects, 0 , 2019-07-11
.git\objects\info, 0 , 2019-07-11
.git\objects\pack, 0 , 2019-07-11
.git\objects\pack\pack-c8f4d6823526e839c0587d2c525c6518b58956cf.idx, 7988 , 2019-07-11
.git\objects\pack\pack-c8f4d6823526e839c0587d2c525c6518b58956cf.pack, 2701659 , 2019-07-11
.git\packed-refs, 312 , 2019-07-11
.git\refs, 0 , 2019-07-11
.git\refs\heads, 0 , 2019-07-12
.git\refs\heads\lab2, 41 , 2019-07-12
.git\refs\heads\master, 41 , 2019-07-11
.git\refs\remotes, 0 , 2019-07-11
.git\refs\remotes\origin, 0 , 2019-07-11
.git\refs\remotes\origin\HEAD, 32 , 2019-07-11
.git\refs\tags, 0 , 2019-07-11
assignment, 0 , 2019-07-11
assignment\Assignment1, 0 , 2019-07-11
assignment\Assignment1\Assignment1.pdf, 147659 , 2019-07-11
assignment\Assignment1\sh.c, 6461 , 2019-07-11
assignment\Assignment1\sh_complete.c, 10489 , 2019-07-11
lab, 0 , 2019-07-12
lab\.dir-locals.el, 226 , 2019-07-11
lab\.gdbinit.tmpl, 887 , 2019-07-11
lab\.gitignore, 191 , 2019-07-11
lab\boot, 0 , 2019-07-11
lab\boot\boot.S, 2933 , 2019-07-11
lab\boot\main.c, 3425 , 2019-07-11
lab\boot\Makefrag, 880 , 2019-07-11
lab\boot\sign.pl, 423 , 2019-07-11
lab\CODING, 1249 , 2019-07-11
lab\conf, 0 , 2019-07-12
lab\conf\env.mk, 736 , 2019-07-11
lab\conf\lab.mk, 48 , 2019-07-12
lab\fs, 0 , 2019-07-11
lab\fs\testshell.key, 2986 , 2019-07-11
lab\GNUmakefile, 8814 , 2019-07-12
lab\grade-lab1, 1398 , 2019-07-11
lab\grade-lab2, 734 , 2019-07-11
lab\gradelib.py, 17431 , 2019-07-11
lab\handin-prep, 1734 , 2019-07-11
lab\inc, 0 , 2019-07-12
lab\inc\assert.h, 627 , 2019-07-11
lab\inc\COPYRIGHT, 7995 , 2019-07-11
lab\inc\elf.h, 1305 , 2019-07-11
lab\inc\error.h, 652 , 2019-07-11
lab\inc\kbdreg.h, 3406 , 2019-07-11
lab\inc\memlayout.h, 8215 , 2019-07-11
lab\inc\mmu.h, 11670 , 2019-07-11
lab\inc\stab.h, 1966 , 2019-07-11
lab\inc\stdarg.h, 349 , 2019-07-11
lab\inc\stdio.h, 862 , 2019-07-11
lab\inc\string.h, 899 , 2019-07-11
lab\inc\types.h, 2023 , 2019-07-11
lab\inc\x86.h, 7367 , 2019-07-11
lab\init.d, 118 , 2019-07-11
lab\init.s, 7447 , 2019-07-11
lab\kern, 0 , 2019-07-12
lab\kern\.entry.S.swp, 12288 , 2019-07-11
lab\kern\.pmap.c.swp, 16384 , 2019-07-11
lab\kern\console.c, 10634 , 2019-07-11
lab\kern\console.h, 552 , 2019-07-11
lab\kern\COPYRIGHT, 8048 , 2019-07-11
lab\kern\entry.S, 2899 , 2019-07-12
lab\kern\entrypgdir.c, 30076 , 2019-07-11
lab\kern\init.c, 1782 , 2019-07-12
lab\kern\kclock.c, 365 , 2019-07-11
lab\kern\kclock.h, 1222 , 2019-07-11
lab\kern\kdebug.c, 6339 , 2019-07-12
lab\kern\kdebug.h, 616 , 2019-07-11
lab\kern\kernel.ld, 1334 , 2019-07-11
lab\kern\Makefrag, 2797 , 2019-07-12
lab\kern\monitor.c, 3756 , 2019-07-12
lab\kern\monitor.h, 610 , 2019-07-11

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发表评论

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  • fptree
    FP-growth算法的改进C++程序,具有较好的扩展性和应用性,本程序改成用行读取,然后在内存中解析。更有效的方式是采用块读取方式(本人在以前项目中验证过,速度大为提高。)(FP-growth algorithm C++ Procedures, have good scalability and application, the procedure changed to use line to read, and then resolve in memory. More effective approach is the use of block-read mode (I tested before the project, speed greatly improved.))
    2008-02-23 11:36:19下载
    积分:1
  • BIOS1121
    BIOS深度了解,图示介绍,对于初学者来说很有帮助,有需要的快下载吧(BIOS-depth understanding, icon introduced, useful for beginners, there is a need to download it fast)
    2011-10-23 14:42:03下载
    积分:1
  • 6875
    简单写字板,精选ios编程学习源码,很好的参考资料。(Simple WordPad, selection of learning IOS programming source code, a good reference.)
    2013-12-13 17:01:37下载
    积分:1
  • config
    A config for all to setup and start with, but none to truly use...
    2009-11-25 07:02:24下载
    积分:1
  • caozuoxitongshiyanwendang
    操作系统的实验文档 包含设计与说明 带源码例子(Document contains the operating system design and description of experimental)
    2010-11-17 11:26:54下载
    积分:1
  • ozmtool
    说明:  OZMTOOL to extract DSDT from old BIOS
    2019-06-06 15:18:02下载
    积分:1
  • _C_OS_DSP
    嵌入式操作系统_C_OS_II的特点及应用嵌入式操作系统_C_OS_II的特点及应用
    2009-04-09 09:38:59下载
    积分:1
  • process_attemper
    1、 :编写并调试一个模拟的进程调度程序,采用“最高优先数优先”调度算法对进程进行调度。 “最高优先数优先调度算法的基本思想是把CPU分配给就绪队列中优先数最高的进程。尝试静态优先数与动态优先数两种方法: a) 静态优先数是指优先数在整个进程运行期间不再改变。优先数可以在数据输入时指定,也可以根据到达顺序、运行时间确定。 b) 动态优先数是指进程的优先数在创建进程时可以给定一个初始值,并且可以按一定原则修改优先数。例如进程获得一次CPU后就将其优先数减少1。或者进程等待的时间超过某一时限时增加其优先数的值。 2、 编写并调试一个模拟的进程调度程序,模拟实现多级反馈队列调度算法。 3、 编写并调试一个模拟的进程调度程序,模拟实现最低松弛度优先算法。 4、 程序与报告要求: a) 对上述要求1、2、3,至少要完成一项,鼓励尝试多种算法。 b) 输出结果要尽量详细清晰,能够反映调度后队列变化,PCB内部变化。 c) 可以选择在Windows或Linux环境下编写、运行程序 d) 鼓励使用不同的开发工具在不同平台环境上进行开发比较。 e) 在实验报告中,一方面可以对实验结果进行分析,一方面可以对各种算法进行比较,分析它们的优劣,说明各种算法适用于哪些情况下的调度。 (1 : Prepare a simulation and debugging process scheduling procedures, "Priority number of the highest priority" to the process of scheduling algorithms for scheduling. "Highest priority priority scheduling algorithm for the basic idea is to place the CPU allocated to the priority queue highest process. Taste Examination several static and dynamic priority priority number two methods : a) static priority number is priority number in operation during the entire process will not change. priority number in the designated input data, can be reached under the order, running time determine. b) dynamic priority number refers to several priorities for the process of the creation process can be given an initial value, and according to the principle of amending certain priority number.)
    2007-07-04 12:57:51下载
    积分:1
  • run
    自己动手写操作系统,小练习包括fifo.cfork.cpopen.c等,保护模式,超过1M内存管理模式,等代码,生成的中间文件等,适合初学者参考!(Do-it-yourself write operation system, small exercises include fifo. C fork. C popen. C, and other protection mode, more than 1 M memory management mode, and the code, generation of the middle of the documents, etc, and is suitable for beginners reference )
    2011-12-22 23:10:08下载
    积分:1
  • ucore-lab1
    Ucore是一个很小的适于学习的操作系统,此“麻雀”包含虚存管理、进程管理、处理器调度、同步互斥、进程间通信、文件系统等主要内核功能,总的内核代码量(C+asm)不会超过5K行。充分体现了“小而全”的指导思想。 这是ucore的实验1:系统软件启动过程。实验目的:操作系统是一个软件,也需要通过某种机制加载并运行它。在这里我们将通过另外一个更加简单的软件-bootloader 来完成这些工作。为此,我们需要完成一个能够切换到x86 的保护模式并显示字符的bootloader,为将来启动操作系统做准备。proj1 提供了一个非常小的bootloader,整个bootloader 的大小小于512 个字节,这样才能放到硬盘的主引导扇区中。通过分析和实现这个bootloader,读者可以了解到:基于分段机制的存储管理、设备管理的基本概念、PC 启动bootloader 的过程、bootloader 的文件组成、编译运行bootloader 的过程、调试bootloader 的方法、在汇编级了解栈的结构和处理过程、中断处理机制、通过串口/并口/CGA 输出字符的方法。文件中包括源代码、实验指导书和实验报告。(Ucore is a small operating system for learning, the " Sparrow" contains the virtual memory management, process management, processor scheduling, synchronization mutually exclusive, inter-process communication, file system and other major kernel functions, the total amount of kernel code ( C+ asm) no more than 5K lines. Fully embodies the " small" the guiding ideology. This is ucore experiment 1: the system software boot process. Purpose: the operating system is a software, but also need some mechanism to load and run it. Here we will adopt another more simple software-bootloader to complete these tasks. To this end, we need to be able to complete a switch to the x86 protected mode and display the characters bootloader, the operating system to start to prepare for the future. proj1 provides a very small bootloader, the bootloader is less than 512 bytes in size, so as to put the hard disk master boot sector. Through the analysis and to achieve this bootloader, the read)
    2011-06-07 14:36:34下载
    积分:1
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  • 106208会员总数
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