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Linux kernel release 2.0.xxThese are the release notes for linux version 2.0. Read them carefully,as they tell you what this is all about, explain how to install thekernel, and what to do if something goes wrong.WHAT IS LINUX?Linux is a Unix clone written from scratch by Linus Torvalds withassistance from a loosely-knit team of hackers across the Net.It aims towards POSIX compliance.It has all the features you would expect in a modern fully-fledgedUnix, including true multitasking, virtual memory, shared libraries,demand loading, shared copy-on-write executables, proper memorymanagement and TCP/IP networking.It is distributed under the GNU General Public License - see theaccompanying COPYING file for more details.ON WHAT HARDWARE DOES IT RUN?Linux was first developed for 386/486-based PCs. These days it alsoruns on DEC Alphas, SUN Sparcs, M68000 machines (like Atari and Amiga),MIPS and PowerPC.DOCUMENTATION:- there is a lot of documentation available both in electronic form onthe internet and in books, both Linux-specific and pertaining togeneral UNIX questions. I'd recommend looking into the documentationsubdirectories on any Linux ftp site for the LDP (Linux DocumentationProject) books. This README is not meant to be documentation on thesystem: there are much better sources available.- There are various readme's in the kernel Documentation/ subdirectory:these typically contain kernel-specific installation notes for somedrivers for example. See ./Documentation/00-INDEX for a list of whatis contained in each file.INSTALLING the kernel:- If you install the full sources, do acd /usr/srcgzip -cd linux-2.0.XX.tar.gz | tar xfv -to get it all put in place. Replace "XX" with the version number of thelatest kernel. If you use GNU tar,cd /usr/srctar -xzvf linux-2.1.XX.tar.gzis equivalent.- You can also upgrade between 2.0.xx releases by patching. Eachpatch that is released for 2.0.xx contains only bugfixes. Nonew features will be added to the Linux kernel until the 2.1.xxdevelopment effort begins. To install by patching, get all thenewer patch files and docd /usr/srcgzip -cd patchXX.gz | patch -p0(repeat xx for all versions bigger than the version of your currentsource tree, _in_order_) and you should be ok. You may want to removethe backup files (xxx~ or xxx.orig), and make sure that there are nofailed patches (xxx# or xxx.rej). If there are, either you or me hasmade a mistake.Alternatively, the script patch-kernel can be used to automate thisprocess. It determines the current kernel version and applies anypatches found.cd /usr/srclinux/scripts/patch-kernelThe default directory for the kernel source is /usr/src/linux, butcan be specified as the first argument. Patches are applied fromthe current directory, but an alternative directory can be specifiedas the second argument.- make sure you have no stale .o files and dependencies lying around:cd /usr/src/linuxmake mrproperYou should now have the sources correctly installed.CONFIGURING the kernel:- do a "make config" to configure the basic kernel. "make config"needs bash to work: it will search for bash in $BASH, /bin/bash and/bin/sh (in that order), so hopefully one of those is correct.- Alternate configuration commands are:"make menuconfig" Text based color menus, radiolists & dialogs."make xconfig" X windows based configuration tool.NOTES on "make config":- having unnecessary drivers will make the kernel bigger, and canunder some circumstances lead to problems: probing for anonexistent controller card may confuse your other controllers- compiling the kernel with "Processor type" set higher than 386will result in a kernel that does NOT work on a 386. Thekernel will detect this on bootup, and give up.- A kernel with math-emulation compiled in will still use thecoprocessor if one is present: the math emulation will justnever get used in that case. The kernel will be slightly larger,but will work on different machines regardless of whether theyhave a math coprocessor or not.- the "kernel hacking" configuration details usually result in abigger or slower kernel (or both), and can even make the kernelless stable by configuring some routines to actively try tobreak bad code to find kernel problems (kmalloc()). Thus youshould probably answer 'n' to the questions for a "production"kernel.- Check the top Makefile for further site-dependent configuration(default SVGA mode etc).- Finally, do a "make dep" to set up all the dependencies correctly.COMPILING the kernel:- make sure you have gcc-2.6.3 or newer available. It seems older gccversions can have problems compiling newer versions of linux. If youupgrade your compiler, remember to get the new binutils package too(for as/ld/nm and company).- do a "make zImage" to create a compressed kernel image. If you wantto make a bootdisk (without root filesystem or lilo), insert a floppyin your A: drive, and do a "make zdisk". It is also possible to do"make zlilo" if you have lilo installed to suit the kernel makefiles,but you may want to check your particular lilo setup first.- if your kernel is too large for "make zImage", use "make bzImage"instead.- if you configured any of the parts of the kernel as `modules', youwill have to do "make modules" followed by "make modules_install".Read Documentation/modules.txt for more information. For example,an explanation of how to use the modules is included there.- keep a backup kernel handy in case something goes wrong. This isespecially true for the development releases, since each new releasecontains new code which has not been debugged.- In order to boot your new kernel, you'll need to copy the kernelimage (found in /usr/src/linux/arch/i386/boot/zImage after compilation)to the place where your regular bootable kernel is found.For some, this is on a floppy disk, in which case you can "cp/usr/src/linux/arch/i386/boot/zImage /dev/fd0" to make a bootablefloppy. Note that as of Linux 2.0.0, a kernel copied to a 720kdouble-density 3.5" floppy disk no longer boots. In this case,it is highly recommended that you install LILO on yourdouble-density bootfloppy or switch to high-density floppies.If you boot Linux from the hard drive, chances are you use LILO whichuses the kernel image as specified in the file /etc/lilo.conf. Thekernel image file is usually /vmlinuz, or /zImage, or /etc/zImage.To use the new kernel, copy the new image over the old one (save abackup of the original!). Then, you MUST RERUN LILO to update theloading map!! If you don't, you won't be able to boot the new kernelimage.Reinstalling LILO is usually a matter of running /sbin/lilo.You may wish to edit /etc/lilo.conf to specify an entry for yourold kernel image (say, /vmlinux.old) in case the new one does notwork. See the LILO docs for more information.After reinstalling LILO, you should be all set. Shutdown the system,reboot, and enjoy!If you ever need to change the default root device, video mode,ramdisk size, etc. in the kernel image, use the 'rdev' program (oralternatively the LILO boot options when appropriate). No need torecompile the kernel to change these parameters.- reboot with the new kernel and enjoy.IF SOMETHING GOES WRONG:- if you have problems that seem to be due to kernel bugs, please checkthe file MAINTAINERS to see if there is a particular person associatedwith the part of the kernel that you are having trouble with. If thereisn't anyone listed there, then the second best thing is to mailthem to me (Linus.Torvalds@Helsinki.FI), and possibly to any otherrelevant mailing-list or to the newsgroup. The mailing-lists areuseful especially for SCSI and NETworking problems, as I can't testeither of those personally anyway.- In all bug-reports, *please* tell what kernel you are talking about,how to duplicate the problem, and what your setup is (use your commonsense). If the problem is new, tell me so, and if the problem isold, please try to tell me when you first noticed it.- if the bug results in a message likeunable to handle kernel paging request at address C0000010Oops: 0002EIP: 0010:XXXXXXXXeax: xxxxxxxx ebx: xxxxxxxx ecx: xxxxxxxx edx: xxxxxxxxesi: xxxxxxxx edi: xxxxxxxx ebp: xxxxxxxxds: xxxx es: xxxx fs: xxxx gs: xxxxPid: xx, process nr: xxxx xx xx xx xx xx xx xx xx xxor similar kernel debugging information on your screen or in yoursystem log, please duplicate it *exactly*. The dump may lookincomprehensible to you, but it does contain information that mayhelp debugging the problem. The text above the dump is alsoimportant: it tells something about why the kernel dumped code (inthe above example it's due to a bad kernel pointer). More informationon making sense of the dump is in Documentation/oops-tracing.txt- You can use the "ksymoops" program to make sense of the dump. Findthe C++ sources under the scripts/ directory to avoid having to dothe dump lookup by hand:- in debugging dumps like the above, it helps enormously if you canlook up what the EIP value means. The hex value as such doesn't helpme or anybody else very much: it will depend on your particularkernel setup. What you should do is take the hex value from the EIPline (ignore the "0010:"), and look it up in the kernel namelist tosee which kernel function contains the offending address.To find out the kernel function name, you'll need to find the systembinary associated with the kernel that exhibited the symptom. This isthe file 'linux/vmlinux'. To extract the namelist and match it againstthe EIP from the kernel crash, do:nm vmlinux | sort | lessThis will give you a list of kernel addresses sorted in ascendingorder, from which it is simple to find the function that contains theoffending address. Note that the address given by the kerneldebugging messages will not necessarily match exactly with thefunction addresses (in fact, that is very unlikely), so you can'tjust 'grep' the list: the list will, however, give you the startingpoint of each kernel function, so by looking for the function thathas a starting address lower than the one you are searching for butis followed by a function with a higher address you will find the oneyou want. In fact, it may be a good idea to include a bit of"context" in your problem report, giving a few lines around theinteresting one.If you for some reason cannot do the above (you have a pre-compiledkernel image or similar), telling me as much about your setup aspossible will help.- alternately, you can use gdb on a running kernel. (read-only; i.e. youcannot change values or set break points.) To do this, first compile thekernel with -g; edit arch/i386/Makefile appropriately, then do a "makeclean". You'll also need to enable CONFIG_PROC_FS (via "make config").After you've rebooted with the new kernel, do "gdb vmlinux /proc/kcore".You can now use all the usual gdb commands. The command to look up thepoint where your system crashed is "l *0xXXXXXXXX". (Replace the XXXeswith the EIP value.)gdb'ing a non-running kernel currently fails because gdb (wrongly)disregards the starting offset for which the kernel is compiled.
