4ff3190935
Signed-off-by: Ondrej Nosek <onosek@redhat.com>
175 lines
5.4 KiB
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175 lines
5.4 KiB
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=====================
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Contributing to Pungi
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=====================
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Set up development environment
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==============================
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In order to work on *Pungi*, you should install recent version of *Fedora*.
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These packages will have to installed:
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* createrepo
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* createrepo_c
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* cvs
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* gcc
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* genisoimage
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* gettext
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* git
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* isomd5sum
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* jigdo
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* kobo
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* kobo-rpmlib
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* koji
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* libcurl-devel
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* libselinux-python
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* lorax
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* python-jsonschema
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* python-kickstart
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* python-libcomps
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* python-lockfile
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* python-lxml
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* python2-multilib
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* python-productmd
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* repoview
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* syslinux
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* yum
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* yum-utils
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For running unit tests, these packages are recommended as well:
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* python-mock
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* python-nose
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* python-nose-cov
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While being difficult, it is possible to work on *Pungi* using *virtualenv*.
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Install *python-virtualenvwrapper* (after installation you have to add the command
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to *source /usr/local/bin/virtualenvwrapper.sh* to your shell startup file,
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depending on where it was installed by package manager) and use following steps.
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It will link system libraries into the virtual environment and install all packages
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preferably from PyPI or from tarball. You will still need to install all of the non-Python
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packages above as they are used by calling an executable. ::
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$ mkvirtualenv pungienv
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$ for pkg in createrepo koji libcomps pykickstart rpm rpmUtils selinux urlgrabber yum; do ln -vs "$(deactivate && python -c 'import os, '$pkg'; print os.path.dirname('$pkg'.__file__)')" "$(virtualenvwrapper_get_site_packages_dir)"; done
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$ for pkg in _deltarpm krbV _selinux deltarpm sqlitecachec _sqlitecache; do ln -vs "$(deactivate && python -c 'import os, '$pkg'; print '$pkg'.__file__')" "$(virtualenvwrapper_get_site_packages_dir)"; done
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$ pip install -U pip
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$ PYCURL_SSL_LIBRARY=nss pip install pycurl --no-binary :all:
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$ pip install jsonschema kobo lockfile lxml mock nose nose-cov productmd pyopenssl python-multilib requests setuptools sphinx
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Now you should be able to run all existing tests.
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Developing
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==========
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Currently the development workflow for Pungi is on master branch:
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- Make your own fork at https://pagure.io/pungi
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- Clone your fork locally (replacing $USERNAME with your own)::
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git clone git@pagure.io:forks/$USERNAME/pungi.git
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- cd into your local clone and add the remote upstream for rebasing::
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cd pungi
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git remote add upstream git@pagure.io:pungi.git
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.. note::
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This workflow assumes that you never ``git commit`` directly to the master
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branch of your fork. This will make more sense when we cover rebasing
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below.
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- create a topic branch based on master::
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git branch my_topic_branch master
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git checkout my_topic_branch
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- Make edits, changes, add new features, etc. and then make sure to pull
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from upstream master and rebase before submitting a pull request::
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# lets just say you edited setup.py for sake of argument
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git checkout my_topic_branch
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# make changes to setup.py
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git add setup.py
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git commit -s -m "added awesome feature to setup.py"
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# now we rebase
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git checkout master
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git pull --rebase upstream master
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git push origin master
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git push origin --tags
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git checkout my_topic_branch
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git rebase master
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# resolve merge conflicts if any as a result of your development in
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# your topic branch
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git push origin my_topic_branch
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.. note::
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In order to for your commit to be merged, you must sign-off on it. Use
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``-s`` option when running ``git commit``.
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- Create pull request in the pagure.io web UI
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- For convenience, here is a bash shell function that can be placed in your
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~/.bashrc and called such as ``pullupstream pungi-4-devel`` that will
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automate a large portion of the rebase steps from above::
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pullupstream () {
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if [[ -z "$1" ]]; then
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printf "Error: must specify a branch name (e.g. - master, devel)\n"
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else
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pullup_startbranch=$(git describe --contains --all HEAD)
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git checkout $1
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git pull --rebase upstream master
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git push origin $1
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git push origin --tags
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git checkout ${pullup_startbranch}
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fi
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}
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Testing
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=======
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You must write unit tests for any new code (except for trivial changes). Any
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code without sufficient test coverage may not be merged.
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To run all existing tests, suggested method is to use *nosetests*. With
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additional options, it can generate code coverage. To make sure even tests from
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executable files are run, don't forget to use the ``--exe`` option. ::
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$ make test
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$ make test-cover
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# Running single test file
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$ python tests/test_arch.py [TestCase...]
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In the ``tests/`` directory there is a shell script ``test_compose.sh`` that
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you can use to try and create a miniature compose on dummy data. The actual
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data will be created by running ``make test-data`` in project root. ::
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$ make test-data
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$ make test-compose
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This testing compose does not actually use all phases that are available, and
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there is no checking that the result is correct. It only tells you whether it
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crashed or not.
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.. note::
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Even when it finishes successfully, it may print errors about
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``repoclosure`` on *Server-Gluster.x86_64* in *test* phase. This is not a
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bug.
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Documenting
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===========
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You must write documentation for any new features and functional changes.
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Any code without sufficient documentation may not be merged.
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To generate the documentation, run ``make doc`` in project root.
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