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We wanted to call the upcoming release "Git 1.9", with its maintenance track being "Git 1.9.1", "Git 1.9.2", etc., but various third-party tools are reported to assume that there are at least three dewey-decimal components in our version number. Adjust the plan so that vX.Y.0 are feature releases while vX.Y.Z (Z > 0) are maintenance releases. Signed-off-by: Junio C Hamano <gitster@pobox.com>
450 lines
16 KiB
Plaintext
450 lines
16 KiB
Plaintext
From: Junio C Hamano <gitster@pobox.com>
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Date: Wed, 21 Nov 2007 16:32:55 -0800
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Subject: Addendum to "MaintNotes"
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Abstract: Imagine that Git development is racing along as usual, when our friendly
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neighborhood maintainer is struck down by a wayward bus. Out of the
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hordes of suckers (loyal developers), you have been tricked (chosen) to
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step up as the new maintainer. This howto will show you "how to" do it.
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Content-type: text/asciidoc
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How to maintain Git
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===================
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Activities
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----------
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The maintainer's Git time is spent on three activities.
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- Communication (45%)
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Mailing list discussions on general design, fielding user
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questions, diagnosing bug reports; reviewing, commenting on,
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suggesting alternatives to, and rejecting patches.
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- Integration (50%)
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Applying new patches from the contributors while spotting and
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correcting minor mistakes, shuffling the integration and
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testing branches, pushing the results out, cutting the
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releases, and making announcements.
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- Own development (5%)
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Scratching my own itch and sending proposed patch series out.
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The Policy
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----------
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The policy on Integration is informally mentioned in "A Note
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from the maintainer" message, which is periodically posted to
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this mailing list after each feature release is made.
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- Feature releases are numbered as vX.Y.0 and are meant to
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contain bugfixes and enhancements in any area, including
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functionality, performance and usability, without regression.
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- One release cycle for a feature release is expected to last for
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eight to ten weeks.
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- Maintenance releases are numbered as vX.Y.Z and are meant
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to contain only bugfixes for the corresponding vX.Y.0 feature
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release and earlier maintenance releases vX.Y.W (W < Z).
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- 'master' branch is used to prepare for the next feature
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release. In other words, at some point, the tip of 'master'
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branch is tagged with vX.Y.0.
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- 'maint' branch is used to prepare for the next maintenance
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release. After the feature release vX.Y.0 is made, the tip
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of 'maint' branch is set to that release, and bugfixes will
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accumulate on the branch, and at some point, the tip of the
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branch is tagged with vX.Y.1, vX.Y.2, and so on.
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- 'next' branch is used to publish changes (both enhancements
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and fixes) that (1) have worthwhile goal, (2) are in a fairly
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good shape suitable for everyday use, (3) but have not yet
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demonstrated to be regression free. New changes are tested
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in 'next' before merged to 'master'.
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- 'pu' branch is used to publish other proposed changes that do
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not yet pass the criteria set for 'next'.
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- The tips of 'master' and 'maint' branches will not be rewound to
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allow people to build their own customization on top of them.
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Early in a new development cycle, 'next' is rewound to the tip of
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'master' once, but otherwise it will not be rewound until the end
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of the cycle.
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- Usually 'master' contains all of 'maint' and 'next' contains all
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of 'master'. 'pu' contains all the topics merged to 'next', but
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is rebuilt directly on 'master'.
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- The tip of 'master' is meant to be more stable than any
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tagged releases, and the users are encouraged to follow it.
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- The 'next' branch is where new action takes place, and the
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users are encouraged to test it so that regressions and bugs
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are found before new topics are merged to 'master'.
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Note that before v1.9.0 release, the version numbers used to be
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structured slightly differently. vX.Y.Z were feature releases while
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vX.Y.Z.W were maintenance releases for vX.Y.Z.
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A Typical Git Day
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-----------------
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A typical Git day for the maintainer implements the above policy
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by doing the following:
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- Scan mailing list. Respond with review comments, suggestions
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etc. Kibitz. Collect potentially usable patches from the
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mailing list. Patches about a single topic go to one mailbox (I
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read my mail in Gnus, and type \C-o to save/append messages in
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files in mbox format).
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- Write his own patches to address issues raised on the list but
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nobody has stepped up solving. Send it out just like other
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contributors do, and pick them up just like patches from other
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contributors (see above).
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- Review the patches in the saved mailboxes. Edit proposed log
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message for typofixes and clarifications, and add Acks
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collected from the list. Edit patch to incorporate "Oops,
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that should have been like this" fixes from the discussion.
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- Classify the collected patches and handle 'master' and
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'maint' updates:
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- Obviously correct fixes that pertain to the tip of 'maint'
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are directly applied to 'maint'.
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- Obviously correct fixes that pertain to the tip of 'master'
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are directly applied to 'master'.
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- Other topics are not handled in this step.
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This step is done with "git am".
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$ git checkout master ;# or "git checkout maint"
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$ git am -sc3 mailbox
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$ make test
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In practice, almost no patch directly goes to 'master' or
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'maint'.
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- Review the last issue of "What's cooking" message, review the
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topics ready for merging (topic->master and topic->maint). Use
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"Meta/cook -w" script (where Meta/ contains a checkout of the
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'todo' branch) to aid this step.
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And perform the merge. Use "Meta/Reintegrate -e" script (see
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later) to aid this step.
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$ Meta/cook -w last-issue-of-whats-cooking.mbox
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$ git checkout master ;# or "git checkout maint"
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$ echo ai/topic | Meta/Reintegrate -e ;# "git merge ai/topic"
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$ git log -p ORIG_HEAD.. ;# final review
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$ git diff ORIG_HEAD.. ;# final review
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$ make test ;# final review
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- Handle the remaining patches:
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- Anything unobvious that is applicable to 'master' (in other
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words, does not depend on anything that is still in 'next'
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and not in 'master') is applied to a new topic branch that
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is forked from the tip of 'master'. This includes both
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enhancements and unobvious fixes to 'master'. A topic
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branch is named as ai/topic where "ai" is two-letter string
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named after author's initial and "topic" is a descriptive name
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of the topic (in other words, "what's the series is about").
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- An unobvious fix meant for 'maint' is applied to a new
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topic branch that is forked from the tip of 'maint'. The
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topic is named as ai/maint-topic.
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- Changes that pertain to an existing topic are applied to
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the branch, but:
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- obviously correct ones are applied first;
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- questionable ones are discarded or applied to near the tip;
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- Replacement patches to an existing topic are accepted only
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for commits not in 'next'.
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The above except the "replacement" are all done with:
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$ git checkout ai/topic ;# or "git checkout -b ai/topic master"
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$ git am -sc3 mailbox
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while patch replacement is often done by:
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$ git format-patch ai/topic~$n..ai/topic ;# export existing
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then replace some parts with the new patch, and reapplying:
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$ git checkout ai/topic
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$ git reset --hard ai/topic~$n
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$ git am -sc3 -s 000*.txt
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The full test suite is always run for 'maint' and 'master'
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after patch application; for topic branches the tests are run
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as time permits.
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- Merge maint to master as needed:
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$ git checkout master
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$ git merge maint
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$ make test
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- Merge master to next as needed:
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$ git checkout next
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$ git merge master
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$ make test
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- Review the last issue of "What's cooking" again and see if topics
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that are ready to be merged to 'next' are still in good shape
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(e.g. has there any new issue identified on the list with the
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series?)
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- Prepare 'jch' branch, which is used to represent somewhere
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between 'master' and 'pu' and often is slightly ahead of 'next'.
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$ Meta/Reintegrate master..pu >Meta/redo-jch.sh
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The result is a script that lists topics to be merged in order to
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rebuild 'pu' as the input to Meta/Reintegrate script. Remove
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later topics that should not be in 'jch' yet. Add a line that
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consists of '### match next' before the name of the first topic
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in the output that should be in 'jch' but not in 'next' yet.
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- Now we are ready to start merging topics to 'next'. For each
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branch whose tip is not merged to 'next', one of three things can
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happen:
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- The commits are all next-worthy; merge the topic to next;
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- The new parts are of mixed quality, but earlier ones are
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next-worthy; merge the early parts to next;
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- Nothing is next-worthy; do not do anything.
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This step is aided with Meta/redo-jch.sh script created earlier.
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If a topic that was already in 'next' gained a patch, the script
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would list it as "ai/topic~1". To include the new patch to the
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updated 'next', drop the "~1" part; to keep it excluded, do not
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touch the line. If a topic that was not in 'next' should be
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merged to 'next', add it at the end of the list. Then:
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$ git checkout -B jch master
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$ Meta/redo-jch.sh -c1
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to rebuild the 'jch' branch from scratch. "-c1" tells the script
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to stop merging at the first line that begins with '###'
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(i.e. the "### match next" line you added earlier).
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At this point, build-test the result. It may reveal semantic
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conflicts (e.g. a topic renamed a variable, another added a new
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reference to the variable under its old name), in which case
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prepare an appropriate merge-fix first (see appendix), and
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rebuild the 'jch' branch from scratch, starting at the tip of
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'master'.
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Then do the same to 'next'
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$ git checkout next
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$ sh Meta/redo-jch.sh -c1 -e
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The "-e" option allows the merge message that comes from the
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history of the topic and the comments in the "What's cooking" to
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be edited. The resulting tree should match 'jch' as the same set
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of topics are merged on 'master'; otherwise there is a mismerge.
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Investigate why and do not proceed until the mismerge is found
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and rectified.
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$ git diff jch next
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When all is well, clean up the redo-jch.sh script with
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$ sh Meta/redo-jch.sh -u
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This removes topics listed in the script that have already been
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merged to 'master'. This may lose '### match next' marker;
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add it again to the appropriate place when it happens.
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- Rebuild 'pu'.
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$ Meta/Reintegrate master..pu >Meta/redo-pu.sh
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Edit the result by adding new topics that are not still in 'pu'
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in the script. Then
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$ git checkout -B pu jch
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$ sh Meta/redo-pu.sh
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When all is well, clean up the redo-pu.sh script with
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$ sh Meta/redo-pu.sh -u
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Double check by running
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$ git branch --no-merged pu
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to see there is no unexpected leftover topics.
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At this point, build-test the result for semantic conflicts, and
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if there are, prepare an appropriate merge-fix first (see
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appendix), and rebuild the 'pu' branch from scratch, starting at
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the tip of 'jch'.
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- Update "What's cooking" message to review the updates to
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existing topics, newly added topics and graduated topics.
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This step is helped with Meta/cook script.
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$ Meta/cook
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This script inspects the history between master..pu, finds tips
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of topic branches, compares what it found with the current
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contents in Meta/whats-cooking.txt, and updates that file.
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Topics not listed in the file but are found in master..pu are
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added to the "New topics" section, topics listed in the file that
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are no longer found in master..pu are moved to the "Graduated to
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master" section, and topics whose commits changed their states
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(e.g. used to be only in 'pu', now merged to 'next') are updated
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with change markers "<<" and ">>".
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Look for lines enclosed in "<<" and ">>"; they hold contents from
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old file that are replaced by this integration round. After
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verifying them, remove the old part. Review the description for
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each topic and update its doneness and plan as needed. To review
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the updated plan, run
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$ Meta/cook -w
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which will pick up comments given to the topics, such as "Will
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merge to 'next'", etc. (see Meta/cook script to learn what kind
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of phrases are supported).
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- Compile, test and install all four (five) integration branches;
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Meta/Dothem script may aid this step.
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- Format documentation if the 'master' branch was updated;
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Meta/dodoc.sh script may aid this step.
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- Push the integration branches out to public places; Meta/pushall
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script may aid this step.
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Observations
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------------
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Some observations to be made.
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* Each topic is tested individually, and also together with other
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topics cooking first in 'pu', then in 'jch' and then in 'next'.
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Until it matures, no part of it is merged to 'master'.
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* A topic already in 'next' can get fixes while still in
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'next'. Such a topic will have many merges to 'next' (in
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other words, "git log --first-parent next" will show many
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"Merge branch 'ai/topic' to next" for the same topic.
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* An unobvious fix for 'maint' is cooked in 'next' and then
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merged to 'master' to make extra sure it is Ok and then
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merged to 'maint'.
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* Even when 'next' becomes empty (in other words, all topics
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prove stable and are merged to 'master' and "git diff master
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next" shows empty), it has tons of merge commits that will
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never be in 'master'.
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* In principle, "git log --first-parent master..next" should
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show nothing but merges (in practice, there are fixup commits
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and reverts that are not merges).
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* Commits near the tip of a topic branch that are not in 'next'
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are fair game to be discarded, replaced or rewritten.
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Commits already merged to 'next' will not be.
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* Being in the 'next' branch is not a guarantee for a topic to
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be included in the next feature release. Being in the
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'master' branch typically is.
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Appendix
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--------
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Preparing a "merge-fix"
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~~~~~~~~~~~~~~~~~~~~~~~
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A merge of two topics may not textually conflict but still have
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conflict at the semantic level. A classic example is for one topic
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to rename an variable and all its uses, while another topic adds a
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new use of the variable under its old name. When these two topics
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are merged together, the reference to the variable newly added by
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the latter topic will still use the old name in the result.
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The Meta/Reintegrate script that is used by redo-jch and redo-pu
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scripts implements a crude but usable way to work this issue around.
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When the script merges branch $X, it checks if "refs/merge-fix/$X"
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exists, and if so, the effect of it is squashed into the result of
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the mechanical merge. In other words,
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$ echo $X | Meta/Reintegrate
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is roughly equivalent to this sequence:
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$ git merge --rerere-autoupdate $X
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$ git commit
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$ git cherry-pick -n refs/merge-fix/$X
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$ git commit --amend
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The goal of this "prepare a merge-fix" step is to come up with a
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commit that can be squashed into a result of mechanical merge to
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correct semantic conflicts.
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After finding that the result of merging branch "ai/topic" to an
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integration branch had such a semantic conflict, say pu~4, check the
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problematic merge out on a detached HEAD, edit the working tree to
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fix the semantic conflict, and make a separate commit to record the
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fix-up:
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$ git checkout pu~4
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$ git show -s --pretty=%s ;# double check
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Merge branch 'ai/topic' to pu
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$ edit
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$ git commit -m 'merge-fix/ai/topic' -a
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Then make a reference "refs/merge-fix/ai/topic" to point at this
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result:
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$ git update-ref refs/merge-fix/ai/topic HEAD
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Then double check the result by asking Meta/Reintegrate to redo the
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merge:
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$ git checkout pu~5 ;# the parent of the problem merge
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$ echo ai/topic | Meta/Reintegrate
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$ git diff pu~4
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This time, because you prepared refs/merge-fix/ai/topic, the
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resulting merge should have been tweaked to include the fix for the
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semantic conflict.
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Note that this assumes that the order in which conflicting branches
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are merged does not change. If the reason why merging ai/topic
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branch needs this merge-fix is because another branch merged earlier
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to the integration branch changed the underlying assumption ai/topic
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branch made (e.g. ai/topic branch added a site to refer to a
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variable, while the other branch renamed that variable and adjusted
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existing use sites), and if you changed redo-jch (or redo-pu) script
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to merge ai/topic branch before the other branch, then the above
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merge-fix should not be applied while merging ai/topic, but should
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instead be applied while merging the other branch. You would need
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to move the fix to apply to the other branch, perhaps like this:
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$ mf=refs/merge-fix
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$ git update-ref $mf/$the_other_branch $mf/ai/topic
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$ git update-ref -d $mf/ai/topic
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