Lorax is a set of tools used to create bootable images.
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Brian C. Lane bd385419ad Create /dev/random and /dev/urandom before running rpm -qa (#1420523)
In order to run rpm inside the newly created image it now needs to
create a couple device nodes to satisfy nss, which is used by rpm.

(cherry picked from commit d95e69aa34)
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docs New lorax documentation - 25.12 2016-07-28 07:57:51 -07:00
etc Remove empty config files 2010-12-08 12:40:46 +01:00
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share/templates.d/99-generic Create /dev/random and /dev/urandom before running rpm -qa (#1420523) 2017-02-22 10:21:27 -08:00
src Print the full NEVRA when installing packages. 2017-01-30 09:20:20 -08:00
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ANNOUNCE Added draft on initial announce email as I keep adding to it. 2008-10-06 09:51:01 -10:00
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requirements.txt Mock more modules for RTD 2015-04-09 11:01:20 -07:00
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TODO Update TODO and POLICY to reflect the current state of things 2012-01-06 14:41:21 -05:00

I am the Lorax.  I speak for the trees [and images].

Tree building tools such as pungi and revisor rely on 'buildinstall' in
anaconda/scripts/ to produce the boot images and other such control files
in the final tree.  The existing buildinstall scripts written in a mix of
bash and Python are unmaintainable.  Lorax is an attempt to replace them
with something more flexible.


EXISTING WORKFLOW:

pungi and other tools call scripts/buildinstall, which in turn call other
scripts to do the image building and data generation.  Here's how it
currently looks:

   -> buildinstall
       * process command line options
       * write temporary yum.conf to point to correct repo
       * find anaconda release RPM
       * unpack RPM, pull in those versions of upd-instroot, mk-images,
         maketreeinfo.py, makestamp.py, and buildinstall

       -> call upd-instroot

       -> call maketreeinfo.py

       -> call mk-images (which figures out which mk-images.ARCH to call)

       -> call makestamp.py

       * clean up


PROBLEMS:

The existing workflow presents some problems with maintaining the scripts.
First, almost all knowledge of what goes in to the stage 1 and stage 2
images lives in upd-instroot.  The mk-images* scripts copy things from the
root created by upd-instroot in order to build the stage 1 image, though
it's not completely clear from reading the scripts.


NEW IDEAS:

Create a new central driver with all information living in Python modules.
Configuration files will provide the knowledge previously contained in the
upd-instroot and mk-images* scripts.


-- 
David Cantrell <dcantrell@redhat.com>