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largefiles: for update -C, only update largefiles when necessary...
largefiles: for update -C, only update largefiles when necessary Before, a --clean update with largefiles would use the "optimization" that it didn't read hashes from standin files before and after the update. Instead of trusting the content of the standin files, it would rehash all the actual largefiles that lfdirstate reported clean and update the standins that didn't have the expected content. It could thus in some "impossible" situations automatically recover from some "largefile got out sync with its standin" issues (even there apparently still were weird corner cases where it could fail). This extra checking is similar to what core --clean intentionally do not do, and it made update --clean unbearable slow. Usually in core Mercurial, --clean will rely on the dirstate to find the files it should update. (It is thus intentionally possible (when trying to trick the system or if there should be bugs) to end up in situations where --clean not will restore the working directory content correctly.) Checking every file when we "know" it is ok is however not an option - that would be too slow. Instead, trust the content of the standin files. Use the same logic for --clean as for linear updates and trust the dirstate and that our "logic" will keep them in sync. It is much cheaper to just rehash the largefiles reported dirty by a status walk and read all standins than to hash largefiles. Most of the changes are just a change of indentation now when the different kinds of updates no longer are handled that differently. Standins for added files are however only written when doing a normal update, while deleted and removed files only will be updated for --clean updates.

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test-bundle-vs-outgoing.t
142 lines | 2.3 KiB | text/troff | Tads3Lexer
/ tests / test-bundle-vs-outgoing.t
this structure seems to tickle a bug in bundle's search for
changesets, so first we have to recreate it
o 8
|
| o 7
| |
| o 6
|/|
o | 5
| |
o | 4
| |
| o 3
| |
| o 2
|/
o 1
|
o 0
$ mkrev()
> {
> revno=$1
> echo "rev $revno"
> echo "rev $revno" > foo.txt
> hg -q ci -m"rev $revno"
> }
setup test repo1
$ hg init repo1
$ cd repo1
$ echo "rev 0" > foo.txt
$ hg ci -Am"rev 0"
adding foo.txt
$ mkrev 1
rev 1
first branch
$ mkrev 2
rev 2
$ mkrev 3
rev 3
back to rev 1 to create second branch
$ hg up -r1
1 files updated, 0 files merged, 0 files removed, 0 files unresolved
$ mkrev 4
rev 4
$ mkrev 5
rev 5
merge first branch to second branch
$ hg up -C -r5
0 files updated, 0 files merged, 0 files removed, 0 files unresolved
$ HGMERGE=internal:local hg merge
0 files updated, 1 files merged, 0 files removed, 0 files unresolved
(branch merge, don't forget to commit)
$ echo "merge rev 5, rev 3" > foo.txt
$ hg ci -m"merge first branch to second branch"
one more commit following the merge
$ mkrev 7
rev 7
back to "second branch" to make another head
$ hg up -r5
1 files updated, 0 files merged, 0 files removed, 0 files unresolved
$ mkrev 8
rev 8
the story so far
$ hg log -G --template "{rev}\n"
@ 8
|
| o 7
| |
| o 6
|/|
o | 5
| |
o | 4
| |
| o 3
| |
| o 2
|/
o 1
|
o 0
check that "hg outgoing" really does the right thing
sanity check of outgoing: expect revs 4 5 6 7 8
$ hg clone -r3 . ../repo2
adding changesets
adding manifests
adding file changes
added 4 changesets with 4 changes to 1 files
updating to branch default
1 files updated, 0 files merged, 0 files removed, 0 files unresolved
this should (and does) report 5 outgoing revisions: 4 5 6 7 8
$ hg outgoing --template "{rev}\n" ../repo2
comparing with ../repo2
searching for changes
4
5
6
7
8
test bundle (destination repo): expect 5 revisions
this should bundle the same 5 revisions that outgoing reported, but it
actually bundles 7
$ hg bundle foo.bundle ../repo2
searching for changes
5 changesets found
test bundle (base revision): expect 5 revisions
this should (and does) give exactly the same result as bundle
with a destination repo... i.e. it's wrong too
$ hg bundle --base 3 foo.bundle
5 changesets found
$ cd ..