There were still many instances of `conflict` left from before we
renamed `Conflict<T>` to `Merge<T>`. I decided to rename many of them
based on the type parameter instead of the container. I think that
made it more readable in many cases.
I think I moved way too many functions onto `Merge<Option<TreeValue>>`
in 82883e648d. This effectively reverts almost all of that
commit. The `Merge<T>` type is simple container and it seems like it
should be at fairly low level in the dependency graph. By moving
functions off of it, we can get rid of the back-depdencies from the
`merge` module to the `conflict` module that I introduced when I moved
`Merge` to the `merge` module. I'm thinking the `conflict` module can
focus on materialized conflicts.
Summary: It releases more frequently and tends to fix more bugs frequently than
direnv; it also seems to (in my experience) behave better with caching in flake
and non-flake scenarios.
Signed-off-by: Austin Seipp <aseipp@pobox.com>
Change-Id: I39f08cd691eeac8e243c2e059edfaa9c
It's messy if pager and child output are interleaved as the pager controls
the tty.
Windows code is untested. I think the underlying I/O behavior is similar, but
I don't have expertise.
Two things will be added:
a. show warning if child exited with non-zero status
b. attach pager stdin to stderr of child process
I think (a) could be propagated from generate_diff() as an error variant, but
for (b), it makes sense to pass ui down to the function.
They are shown next to the change and commit id, since they are other names the
commit can be referred by.
The description is separated from the branches by a ` | ` when there are
branches, so that one can tell the branches from the description without color.
The result looks like this: ![image](https://github.com/martinvonz/jj/assets/4123047/a38aff7b-2b47-49e6-8461-c42e8eb535a4)
Maybe we could load GitBackend without resolving .git symlink, but that would
introduce more subtle bugs. Instead, we calculate the expected Git workdir path
from the canonical ".git" path.
Fixes#2011
Per discussion in #2009. This behavior isn't affected by e7e49527ef "git:
ensure that remote branches never diverge", but it's subtle enough to write
a test.
I was considering how refs would be imported if we had a per-remote view of
named branches (and tags): Each remote has a view, and jj remembers the last
known view state to compute diffs. That's the same for the pseudo "git" remote.
Under the current storage, these view states are represented as follows:
git_refs["refs/heads/{name}"] # pseudo "git" remote branches
git_refs["refs/tags/{name}"] # pseudo "git" remote tags
git_refs["refs/remotes/{remote}/{name}"] # real remote branches
and the diffs are merged in to branches[name].local_target and tags[name].
We also have branches[name].remote_targets[remote], but I think it's redundant
because a tracking branch should also be the last known state, not something
that can diverge from the actual state. To make that clear, this commit
replaces the use of the "merge" API.
This makes it possible to use ed25519 and ed25519-sk keys by trying
them one at a time. However, it still fails if one of them is
password-protected; we don't try the next key in that case.
As reported in #1970, SSH authentication would sometimes run into a
loop where it repeatedly tries to use ssh-agent for authentication
without making progess. The problem can be reproduced by simply
removing `$SSH_AUTH_KEY` from your environment (and not having a Git
credentials helper configured, I think).
This seems to be a bug introduced by b104f8e154c21. That commit meant
to make it so we attempt to use ssh-agent and fall back to using
(password-less) keys after that. The problem is that
`git2::Cred::ssh_key_from_agent()` just returns an object that will be
used later for looking up the credentials from ssh-agent, so the call
will not fail because ssh-agent is not reachable.
This commit attempts to fix the problem by having the credentials
callback attempt to use ssh-agent only once.
Perhaps the most important invariant in `.jj/working_copy/tree_state`
is that its set of files in it matches the files in its tree. In
particular, if a file that exists in the tree doesn't exist in the
file state and doesn't exist on disk either, we won't notice that it's
gone, and we will therefore not delete it from the tree on future
rounds of snapshotting either.