Shorten history of xv6
Cut section about commentary Add (failing) link to xv6 source section pointing to the text. Delete the incorrect/incomplete list of universities using jos/xv6
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@ -43,22 +43,15 @@ systems Engineering</a>. We hope that xv6 will be useful in other
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courses too. This page collects resources to aid the use of xv6 in
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courses too. This page collects resources to aid the use of xv6 in
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other courses, including a commentary on the source code itself.
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other courses, including a commentary on the source code itself.
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<p><font color="red">Status: The xv6 code is in pretty good shape, but
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the commentary is rough.</font>
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<h2>History and Background</h2>
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<h2>History and Background</h2>
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<p>For many years, MIT had no operating systems course. In the fall
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<p>For many years, MIT had no operating systems course. In the fall of 2002,
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of 2002, Frans Kaashoek, Josh Cates, and Emil Sit created a new,
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one was created to teach operating systems engineering. In the course lectures,
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experimental course (6.097) to teach operating systems engineering.
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the class worked through <a href="#v6">Sixth Edition Unix (aka V6)</a> using
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In the course lectures, the class worked through <a href="#v6">Sixth
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John Lions's famous commentary. In the lab assignments, students wrote most of
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Edition Unix (aka V6)</a> using John Lions's famous commentary. In
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an exokernel operating system, eventually named Jos, for the Intel x86.
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the lab assignments, students wrote most of an exokernel operating
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Exposing students to multiple systems–V6 and Jos–helped develop a
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system, eventually named Jos, for the Intel x86. Exposing students to
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sense of the spectrum of operating system designs.
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multiple systems–V6 and Jos–helped develop a sense of the
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spectrum of operating system designs. In the fall of 2003, the
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experimental 6.097 became the official course 6.828; the course has
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been offered each fall since then.
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<p>
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<p>
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V6 presented pedagogic challenges from the start.
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V6 presented pedagogic challenges from the start.
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@ -80,27 +73,18 @@ uniprocessors such as
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enabling/disabling interrupts) and helps relevance.
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enabling/disabling interrupts) and helps relevance.
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Finally, writing a new system allowed us to write cleaner versions
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Finally, writing a new system allowed us to write cleaner versions
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of the rougher parts of V6, like the scheduler and file system.
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of the rougher parts of V6, like the scheduler and file system.
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<p> 6.828 substituted xv6 for V6 in the fall of 2006. Based on
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6.828 substituted xv6 for V6 in the fall of 2006.
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that experience, we cleaned up rough patches of xv6. Since then, xv6
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has stabilized, so we are making it available in the hopes that others
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will find it useful too.
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<p>
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6.828 uses both xv6 and Jos.
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Courses taught at UCLA, NYU, Peking University, Stanford, Tsinghua,
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and University Texas (Austin) have used
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Jos without xv6; we believe other courses could use
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xv6 without Jos, though we are not aware of any that have.
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<h2>Xv6 sources</h2>
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<h2>Xv6 sources</h2>
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The latest xv6 is <a href="xv6-rev5.tar.gz">xv6-rev5.tar.gz</a>.
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The latest xv6 is <a href="xv6-rev5.tar.gz">xv6-rev5.tar.gz</a>. We distribute
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We distribute the sources in electronic form but also as
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the sources in electronic form but also as a printed booklet with line numbers
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a printed booklet with line numbers that keep everyone
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that keep everyone together during lectures. The booklet is available as <a
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together during lectures. The booklet is available as
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href="xv6-rev5.pdf">xv6-rev5.pdf</a>. The xv6 source code is licensed under
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<a href="xv6-rev5.pdf">xv6-rev5.pdf</a>.
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the traditional <a href="http://www.opensource.org/licenses/mit-license.php">MIT
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The xv6 source code is licensed under the traditional <a href="http://www.opensource.org/licenses/mit-license.php">MIT license</a>;
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license</a>; see the LICENSE file in the source distribution. To help students
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see the LICENSE file in the source distribution.
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read through xv6 and learn about the main ideas in operating systems we also
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distribute a <a href="book-rev6.pdf">textbook/commentary</a> for the latest xv6.
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<p>
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<p>
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xv6 compiles using the GNU C compiler,
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xv6 compiles using the GNU C compiler,
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@ -115,89 +99,10 @@ can be found on the <a href="../2010/tools.html">6.828 tools page</a>.
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<h2>Xv6 lecture material</h2>
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<h2>Xv6 lecture material</h2>
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In 6.828, the lectures in the first half of the course introduce the
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In 6.828, the lectures in the first half of the course cover the xv6 sources and
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PC hardware, the Intel x86, and then xv6. The lectures in the second
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text. The lectures in the second half consider advanced topics using research
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half consider advanced topics using research papers; for some, xv6
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papers; for some, xv6 serves as a useful base for making discussions concrete.
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serves as a useful base for making discussions concrete. The lecture
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The lecture notes are available from the 6.828 schedule page.
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notes are available from the 6.828 schedule page, and the chapters of
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the commentary are below.
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<h2>Xv6 commentary (rough)</h2>
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<p>The chapters are rough drafts.
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<p>Introduction yet to be written.<br>
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<ul>
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<li>read with the code side by side
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<li>code references look like (xxxx) or (xxxx-yyyy) in small text.
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<li><a href="xv6-rev5.pdf">this pdf</a> is the one with matching line numbers.
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<li>each chapter starts with an introduction to the topic,
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spends most of the text on code,
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and then wraps up talking about how xv6
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compares to real-world operating systems.
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</ul>
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<a href="unix.pdf">Chapter 0: Operating system interfaces</a>
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<blockquote>
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The Unix system call interface. (rev 4)
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</blockquote>
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<a href="boot.pdf">Chapter 1: Bootstrap</a>
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<blockquote>
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From power on to kernel start. (rev 4)
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</blockquote>
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<a href="mem.pdf">Chapter 2: Processes</a>
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<blockquote>
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Memory and process allocation, segments, the first user process. (rev 4)
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</blockquote>
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<a href="trap.pdf">Chapter 3: Traps</a>
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<blockquote>
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Low-level trap mechanism, trap handler, system call arguments, sbrk, fork.
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</blockquote>
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<a href="lock.pdf">Chapter 4: Locks</a>
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<blockquote>
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Locks and interrupts.
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</blockquote>
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<a href="sched.pdf">Chapter 5: Scheduling and coordination</a>
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<blockquote>
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Scheduling, sleep and wakeup, pipes, wait and exit.
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</blockquote>
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<a href="disk.pdf">Chapter 6: Buffer cache</a>
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<blockquote>
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Buffer cache and IDE disk driver.
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</blockquote>
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<a href="fsdata.pdf">Chapter 7: File system data</a>
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<blockquote>
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Block in use bitmap, block allocation, inode structure, inode contents,
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directories, path names.
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</blockquote>
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<a href="fscall.pdf">Chapter 8: File system calls</a>
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<blockquote>
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FIle descriptors, open, close, dup, read, write.
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</blockquote>
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<a href="exec.pdf">Chapter 9: Exec</a>
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<blockquote>
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Exec
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</blockquote>
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Appendix A: Low-level C and inline assembly
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<blockquote>
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Intro to C and inline assembly for people who only know Java (say).
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Examples drawn entirely from xv6 source.
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</blockquote>
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Appendix B: Additional drivers.
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<blockquote>
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Keyboard, screen, probably MP hardware.
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</blockquote>
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<a name="v6"></a>
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<a name="v6"></a>
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<h2>Unix Version 6</h2>
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<h2>Unix Version 6</h2>
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