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Operating Systems SCO Increase disk size on OS side on the fly Post 302985218 by goldenboy on Monday 7th of November 2016 10:02:26 AM
Old 11-07-2016
I was not doing that copy by myself, my colleague did, the result is each directory under root has own tar file - /dev was excluded. He said that he used option to preserve file attributes.

At first I've extracted it as it was - hoping that it will work, as on Linux it would, but when I used 'scoadmin' to reconfigure network it didn't let me relink/recompile kernel because it couldn't find some devices. Also partition table was changed, so it seems that it keeps partition table in some file... it was really strange for me.

Eventually, I found that SCO keeps system specific files in those K and P folders so I did like this:
  1. tar /etc/ /usr/SCO/K,P on virtual server
  2. untar backup files (all subfolders of /) from physical server on virtual
  3. overwrite /etc /usr/SCO/K,P with tar file done in first step

Surprisingly after such operation relink of kernel was fine, and boot was fine also, I'm not sure if it works as on production if all services are fine.

The reason I did it that way, I thought that everything that was on physical one will be transferred but overwriting crucial directories with virtual machine default ones (those after installation) will solve the issue with drivers, partition setup, but still services in rc.d (transferred from physical) will be there and will be able to start and will have their configuration files.

So, It would be good to know if such procedure is reliable or if there are some directories that should be included in first step, so that files from new virtual machine are kept same as they were after the installation.

Last edited by rbatte1; 11-07-2016 at 11:43 AM.. Reason: Converted to formatted number-list
 

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COMPAT_IBCS2(8) 					    BSD System Manager's Manual 					   COMPAT_IBCS2(8)

NAME
compat_ibcs2 -- setup procedure for running iBCS2 binaries DESCRIPTION
NetBSD supports running Intel Binary Compatibility Standard 2 (iBCS2) binaries. This only applies to i386 systems for now. Binaries are supported from SCO UNIX and other systems derived from AT&T System V Release 3 UNIX. iBCS2 support is only well tested using SCO binaries. XENIX binaries are also supported although not as well tested. SVR4 binaries are supported by the COMPAT_SVR4 option. iBCS2 supports COFF, ELF, and x.out (XENIX) binary formats. Binaries from SCO OpenServer (version 5.x) are the only ELF binaries that have been tested. Most programs should work, but not ones that use or depend on: kernel internal data structures STREAMS drivers (other than TCP/IP sockets) local X displays (uses a STREAMS pipe) virtual 8086 mode The iBCS2 compatibility feature is active for kernels compiled with the COMPAT_IBCS2 option enabled. If support for iBCS2 ELF executables is desired, the EXEC_ELF32 option should be enabled in addition to COMPAT_IBCS2. Many COFF-format programs and most ELF-format programs are dynamically linked. This means that you will also need the shared libraries that the program depends on. Also, you will need to create a ``shadow root'' directory for iBCS2 binaries on your NetBSD system. This directory is named /emul/ibcs2. Any file operations done by iBCS2 programs run under NetBSD will look in this directory first. So, if an iBCS2 pro- gram opens, for example, /etc/passwd, NetBSD will first try to open /emul/ibcs2/etc/passwd, and if that does not exist open the 'real' /etc/passwd file. It is recommended that you install iBCS2 packages that include configuration files, etc. under /emul/ibcs2, to avoid nam- ing conflicts with possible NetBSD counterparts. Shared libraries should also be installed in the shadow tree. Generally, you will need to look for the shared libraries that iBCS2 binaries depend on only the first few times that you install an iBCS2 program on your NetBSD system. After a while, you will have a sufficient set of iBCS2 shared libraries on your system to be able to run newly imported iBCS2 binaries without any extra work. Setting up shared libraries How to get to know which shared libraries iBCS2 binaries need, and where to get them? Depending on the file type of the executable, there are different possibilities (when following these instructions: you will need to be root on your NetBSD system to do the necessary installation steps). COFF binaries You can simply copy all of the available shared libraries since they are fairly small in size. The COFF shared libraries are typically found in /shlib and can be obtained from the following sources: SCO UNIX version 3.x (aka ODT) SCO UNIX version 5.x (aka OpenServer) SCO UnixWare Many versions of SVR4.2/x86 After copying the shared libraries, you should have at least the following files on your system: /emul/ibcs2/shlib/libc_s /emul/ibcs2/shlib/libnsl_s /emul/ibcs2/shlib/protlib_s ELF binaries You can simply copy all of the available shared libraries from the source system or distribution or use ldd(1) to determine the libraries required by a specific binary. After copying the shared libraries, you should have at least the following files on your system: /emul/ibcs2/usr/lib/libc.so.1 /emul/ibcs2/usr/lib/libcrypt.so /emul/ibcs2/usr/lib/libndbm.so /emul/ibcs2/usr/lib/libsocket.so.1 If you don't have access to a SCO system, you will need to get the extra files you need from a SCO distribution. As of January 1998, SCO sells a copy of SCO OpenServer (iBCS2) and/or SCO UnixWare (SVR4) for personal/non-commercial use for only the cost of shipping (about $20US). The distribution comes on an ISO9660-format CDROM which can be mounted and used to copy the necessary files. Run the following script to copy the basic set of files from a SCO distribution directory mounted somewhere locally: /usr/share/examples/emul/ibcs2/ibcs2-setup [directory] You should now be set up for SCO binaries which only need standard shared libs. BUGS
The information about SCO distributions may become outdated. Attempting to a use a nameserver on the local host does not currently work due to an absurd shortcut taken by the iBCS2 network code (remem- ber that there are no kernel sockets). 16/32/64 bit offsets may not be handled correctly in all cases. BSD
February 8, 1998 BSD
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