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Suppose you have a history containing the three commits A, B and C:

A-B-C

I would like to combine the two commits A and B to one commit AB:

AB-C

I tried

git rebase -i A

which opens up my editor with the following contents:

pick e97a17b B
pick asd314f C

I change this to

squash e97a17b B
pick asd314f C

Then Git 1.6.0.4 says:

Cannot 'squash' without a previous commit

Is there a way or is this just impossible?

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See also: Edit the root commit in Git?. –  Cupcake Jun 5 at 13:42
    
See also: Squash the first two commits in Git?. –  Cupcake Jun 5 at 13:42

7 Answers 7

up vote 30 down vote accepted

Use git rebase -i --root as of Git version 1.7.12.

In the interactive rebase file, change the second line of commit B to squash and leave the other lines at pick:

pick f4202da A
squash bea708e B
pick a8c6abc C

This will combine the two commits A and B to one commit AB.

Found in this answer.

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You tried:

git rebase -i A

It is possible to start like that if you continue with edit rather than squash:

edit e97a17b B
pick asd314f C

then run

git reset --soft HEAD^
git commit --amend
git rebase --continue

Done.

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2  
If you are doing this to quietly fix a github gist, you'll have to add -m "initial" to the commit. ;-) –  Richard Bronosky Aug 20 '11 at 6:36
1  
git rebase --abort to start over and do it the right way (not squashing the first commit in the editor) –  oma May 30 '13 at 17:11

A was the initial commit, but now you want B to be the initial commit. git commits are whole trees, not diffs even if they are normally described and viewed in terms of the diff that they introduce.

This recipe works even if there are multiple commits between A and B, and B and C.

# Go back to the last commit that we want
# to form the initial commit (detach HEAD)
git checkout <sha1_for_B>

# reset the branch pointer to the initial commit,
# but leaving the index and working tree intact.
git reset --soft <sha1_for_A>

# amend the initial tree using the tree from 'B'
git commit --amend

# temporarily tag this new initial commit
# (or you could remember the new commit sha1 manually)
git tag tmp

# go back to the original branch (assume master for this example)
git checkout master

# Replay all the commits after B onto the new initial commit
git rebase --onto tmp <sha1_for_B>

# remove the temporary tag
git tag -d tmp
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this triggers a massive interactive rebase when i do the git rebase --onto tmp <sha1_for_B> –  Alex Jul 29 at 17:37

In the case of interactive rebase, you have to do it before A so that the list will be:

pick A
pick B
pick C

to become:

pick A
squash B
pick C

If A is the initial commit, you have to have a different initial commit before A. Git thinks in differences, it will work on the difference between (A and B) and (B and C). Hence the squash not working in your example.

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In the case that you have hundreds or thousands of commits, using kostmo's answer of

git rebase -i --root

can be impractical and slow, just due to the large number of commits that the rebase script has to process twice, once to generate the interactive rebase editor list (where you select what action to take for each commit), and once to actually execute the re-application of commits.

Here is an alternative solution that will avoid the time cost of generating the interactive rebase editor list by not using an interactive rebase in the first place. In this way, it's similar to Charles Bailey's solution. You simply create an orphan branch from the second commit, and then rebase all the descendant commits on top of it:

git checkout --orphan orphan <second-commit-sha>
git commit -m "Enter a commit message for the new root commit"
git rebase --onto orphan <second-commit-sha> master

Documentation

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In a related question, I managed to come up with a different approach to the need of squashing against the first commit, which is, well, to make it the second one.

If you're interested: git: how to insert a commit as the first, shifting all the others?

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Would it be better if the answer was repeated here too? I'm not sure. –  Cupcake Jul 20 '13 at 4:12

You have to perform a bit of command-line magic.

git checkout -b a A
git checkout B <files>
git commit --amend
git checkout master
git rebase a

That should leave you with a branch that has AB and C as commits.

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Because the old and new initial commits have no common ancestor you may get some unnecessary conflicts as git tries to apply the whole history of master onto a, even though they have a tree in common. By using the --onto option to git rebase you can tell git the correct place to start applying. –  Charles Bailey Jan 12 '09 at 18:53

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