The focused main view could be scrolled but not pointed at: there was no
way to say "this line" or "these lines", which is what every line-level
interaction needs — editing a line, copying part of a diff, and, later,
staging. So a diff main view now always carries a selection while focused,
starting at the first change already on screen so that focusing doesn't
move the view.
The mode of the selection lives on the main context (a single line, a
range from a fixed anchor, or the change block around the cursor); the
selected line and the range anchor stay in the view itself, whose native
range select draws them, so there is no new highlight machinery. The modes
and their keys are the ones the staging view has, including that the arrow
keys step from block to block in hunk mode.
A pane holds something to select only when what it is showing is a diff
with changes in it, which the render works out once its content is final: a
placeholder message is not a diff, and neither is a diff with nothing in it
at all, such as a binary file's or an empty commit's. Whether a selection
is then drawn there follows from the context stack, as it does for every
other view.
A click in the focused main view now has a meaning again: it selects the
line it points at.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
Both callers pass a main context, and focusing one is about to need more
of it than the Context interface offers. Saying so in the signature also
retires the type assertion that was there only to reach ClearSearchString.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
With both implementations gone, nothing is left that lets a side panel
handle a click in the focused main view, so the mechanism for attaching
one to a context can go as well.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
Clicking a line of the focused main view entered the staging or patch
building panel at that line. The focused main view is about to gain a
selection of its own, which is what a click there should set — and with
the explorers on their way out, the dive has nowhere to go.
Nothing replaces the gesture yet, so for the next couple of commits a
click in the focused main view does nothing.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
The focused main view is about to get a real diff selection, which makes
its up/down/page/top/bottom keys mode-aware: what they do depends on the
select state the main view controller owns. Keeping them in a separate
controller would mean either duplicating that state or reaching across
controllers for it, so move them to where the state will live. The two
controllers were attached to the same pair of contexts and nothing else,
so nothing else can notice.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
Where a renderer states which line of which file it is rendering, take
that as the line's identity. The renderer knows, and for a rendering
that no longer looks like a diff nothing else does. Reading the rendered
text stays the way for the renderings that keep a diff's structure, and
for the renderers that say nothing at all.
Which of the two is used is settled for the rendering as a whole, not
row by row. A rendering with records is not parsed at all, not even for
the rows the renderer says nothing about. Its text is no unified diff,
and a row of it can read like one. Under delta, a commit that adds a
test whose input is a diff shows the test's "diff --git a/img.png
b/img.png" line as a row of its own; parsed, that row opens a file
section that runs to the end of the rendering, and every row delta puts
between hunks and files comes out as a header of a file called img.png.
So the untagged rows of such a rendering stay unresolved, as the
protocol has it (spec section 6.4).
Header records are accepted too. This lets a renderer point at a file
with no content lines, such as a pure rename, a mode change or a binary
file: for those files the header is the only row in the diff.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
A diff line's identity is about to become recoverable from a second
source, a diff renderer's own records, and a renderer states the path
however it likes — absolute paths included. The field can't promise
repo-relative any more.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
A diff renderer that restructures the diff — into columns, or with the
+/- markers replaced by colour — leaves us no way to tell which line of
which file a rendered row came from, which is what acting on the row
requires. The OSC 1717 protocol has the renderer say so directly: it
prefixes each line it renders with a record naming the file and the
line's position in the old and new versions of it.
Attach each record to the cells it precedes, so that a row's records
survive wrapping and the columns of a side-by-side rendering, and hand
them to readers together with the row's text: the two have to describe
the same buffer, and a re-render can rebuild it between two reads.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
git doesn't just print the path: it terminates it with a tab when the
path contains a space, and C-quotes the whole field when the path
contains anything it won't print raw — with core.quotePath, which is on
by default, that means any non-ASCII byte, so a file called café shows
up as "b/caf\303\251".
Taking the field verbatim therefore gives a path that doesn't exist, for
a whole class of perfectly ordinary file names. The quoting is Go's own
string syntax, octal escapes and all, so decoding it is a call to
strconv.Unquote.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
To act on the line the user is pointing at in a diff view — to stage it,
to open it in an editor, to keep the cursor on it while the diff is
regenerated — we need to know which file it belongs to and where it sits
in that file. Only the diff the view was rendered from knows that, and
by the time it's on screen all we have is text.
So parse it back: the view's contents are (usually) a unified diff, and
running them through the patch parser recovers each row's file, kind and
line numbers. "Usually" is why this goes behind a seam, and why it
answers "I don't know" rather than guessing: a diff renderer is free to
restructure what it prints, and a wrong answer here means acting on the
wrong line of the wrong file.
Parsing a whole buffer is a separate entry point from parsing a single
line, because a caller resolving every row of a large diff must not
re-parse a file's section once per line of it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Tags can only be pushed one at a time. Let the push command of the tags
panel work on a range selection of tags too. It asks for one remote and
pushes all selected tags to it with a single git command.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
This lets pushing a range selection of tags push them all with a single
git command.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Tags can only be deleted one at a time. If many of them have piled up,
for example backup tags made before rewriting a branch, deleting them
takes a lot of keypresses.
Let the delete menu work on a range selection of tags. It deletes the
selected tags with one git command for the local tags and one for the
remote tags, and asks for a single remote for all of them. After
deleting local tags, collapse the range selection to its first line;
otherwise it would select the tags that moved up into the place of the
deleted ones.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Deleting a remote tag and deleting a local and remote tag each have
their own copy of the code that asks for the remote and for a
confirmation. Deleting a range selection of tags needs to change it in
the same way for both.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
This lets deleting a range selection of tags delete them all with a
single git command, the same way it works for branches.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Deleting and pushing a range selection of tags will need to show their
operation on all the selected tags. Move the code from BranchesHelper
into a generic function that takes the items and the key of the context
that shows them.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
When somebody else rebases a stack and force-pushes it, pulling the
topmost branch leaves the branches below it diverged. They can be
updated with `f`, but pushing the stack offers to push the branches
below along with the current one, and pulling should be symmetric.
When pulling, find the branches stacked below the current one that can
be updated without losing anything. These are those that are behind
their upstream branches, and those that diverged from them only because
they were rewritten. If there are any, show a menu that lists them and
offers to update them in addition to pulling the current branch, or to
pull only the current branch. The current branch is pulled as before.
The decision is based on the last fetch, not on a new one, so that the
menu appears right away. If the remote has changed since then, a branch
might not be offered although it could be updated; it then shows as
diverged after the pull, and pulling again offers it. The update itself
fetches the upstream branches and checks them again, so it never loses
commits.
Branches that are checked out in another worktree are not offered,
since updating them would change the files there.
The branches below are updated before the current branch is pulled. If
one of them pointed into the commits that a rebasing pull rebases, the
pull would move it when rebase.updateRefs is set, and updating it
afterwards would fail. If updating them fails, the current branch isn't
pulled.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Pushing a stack and fast-forwarding a range of branches each show their
operation on all the branches involved, with their own copy of the same
code. Pulling a stack will need it too, so move it to BranchesHelper.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
FastForwardBranches looks up the worktrees of the branches in the model
on the UI thread, and then does the rest on a worker, with the branches
shown as being fast-forwarded. The next commit needs to update branches
as part of pulling the current one, in the pull's own task.
Move everything except the inline status into PrepareFastForward, which
returns the part to run on a worker.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
If a main branch is checked out in another worktree, auto-forwarding
after a fetch skips it. People who keep the main branch checked out in
their main worktree, and work on feature branches in linked worktrees,
therefore never get it forwarded.
Fast-forward such a branch in the worktree it is checked out in, as `f`
does. Skip the worktree if it has changes to tracked files, since
nobody asked for its files to change. Also skip it if it is mid-rebase
or mid-bisect, because its HEAD is then detached from the branch. A
branch in the current worktree is never forwarded. This covers the case
of the current worktree being mid-rebase on a main branch, whose ref
would otherwise be forwarded under the rebase.
Auto-forwarding now writes the same reflog message as `f`
("lazygit: update to upstream branch").
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
If `f` is used on several branches that are checked out in other
worktrees, the first worktree in which the fast-forward fails stops the
whole operation. For example, an untracked file that the fast-forward
would overwrite leaves the branches after it untouched, even though
nothing is wrong with them.
Try all the branches, and report the errors of the failed ones
together. The checks that refuse to fast-forward any of the branches
still run before anything is moved.
The next commit uses forwardBranches for auto-forwarding branches in
other worktrees, where stopping at the first failure is worse. A
worktree that fails every time would prevent the ones after it from
ever being forwarded. For this, forwardBranches also takes the git
commands to use, since a background worker doesn't block switching
repos.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
AutoForwardBranches runs in the Then callback of the refresh after a
fetch. This is on the UI thread, so the git command for updating the
branches blocks the UI while it runs. This is fine for a single
update-ref, but the next commit adds a git status and a git merge for
each branch that is checked out in another worktree.
Keep reading the branches from the model on the UI thread, and move the
git work to a worker.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
The worktree loader associates a worktree that is mid-rebase or
mid-bisect with the branch involved, even though its HEAD is detached.
Fast-forwarding such a branch therefore ran the fast-forward in that
worktree. This moved the detached HEAD and put the upstream commits
into the rebase in progress, while the branch stayed where it was.
Remember in the worktree model when its branch comes from a rebase or
bisect, and refuse to fast-forward the branch in that case. Updating
only the ref is no option for a rebase; the rebase writes the branch
when it finishes.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Branches that lazygit forwards to their upstream move by a direct ref
write, so no git command turns up in their reflog to explain it. Until
now the entry had no message either, leaving `git reflog <branch>` with
nothing but a blank line about it. Name lazygit and what it did, so that
a branch which moved on its own can be traced.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
After somebody else rebased and force-pushed a stack of branches, every
branch of the stack has to be brought back to its upstream, and pressing
`f` on them one by one is as tedious as the checking out and pulling it
replaces.
Let `f` work on a range selection. The upstream branches are fetched with
one `git fetch` per remote, and the branches that aren't checked out
anywhere move in a single `git update-ref` call. All the selected
branches are looked at before any of them is moved, so a branch that has
to be refused leaves the others alone rather than updating the stack
halfway.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
When somebody else rebases a branch and force-pushes it, the local
branch is left diverged from it, so `f` refuses to touch it. To get back
in sync, the branch has to be checked out and pulled, and for a stack of
branches that means doing it once per branch.
Such a branch has none of its own work in it, though: the commits it is
ahead by are the old versions of the ones that are now on the remote
branch. So when the branch has diverged and none of the commits it is
ahead by is ours, reset it to its upstream instead of refusing. This is
the same state that checking the branch out and pulling it would produce,
as rebase drops commits that the upstream already has.
A branch that isn't checked out anywhere is reset with the same
`git update-ref` that a fast-forward uses. One that is checked out
somewhere is reset with `git reset --keep`, and only when that worktree
has no changes to tracked files, so that the files under the user's feet
change no more than they have to. `--keep` also refuses to overwrite an
untracked file that the reset would bring in, which `--hard` would do
silently.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Fast-forwarding a branch that isn't checked out ran a single
`git fetch <remote> refs/heads/<branch>:<branch>`, so git's own refusal
to move a local branch backwards served as the safety check. A later
commit widens the set of branches the command accepts, and for that
lazygit has to make that decision itself.
Fetch the remote branch on its own, updating only its remote-tracking
branch. Then ask git whether the branch is an ancestor of it, and only
then move the branch: with `git update-ref` when it isn't checked out
anywhere, guarded by the hash we knew it to have, and with
`git merge --ff-only` in its worktree when it is checked out there.
Keeping `git pull --ff-only` for the latter case would fetch a second
time.
Fast-forwarding a branch that isn't checked out in a worktree had no
integration test at all, so add one. The second new test covers a repo
that keeps no reflogs, because a later commit starts reading those and
this case has to keep working without them.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Most of the logic of this controller belongs in a helper, and the next
commit reshapes it, so move it over unchanged first to keep that diff
about the change itself.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The function asks git whether HEAD is an ancestor of a ref, and its name
says what the one caller wants to know. A later commit asks the same
question about a branch that isn't checked out, so let the caller name
both refs.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The flag says whether this load is the one that kicks off the values
determined in the background afterwards. A later commit adds a second of
those next to the behind-counts, so name the flag after what it controls
rather than after its only user so far.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
After rebasing a stack of branches, every branch of the stack has to be
force-pushed, and so far the only way to do that in lazygit was to check
out each branch in turn and push it. For a stack of a dozen branches
that is a lot of work for a routine task.
When the current branch is pushed and there are branches below it in the
stack that have commits to push, show a menu that offers to push them
along with it. The menu lists the branches and how far each of them has
diverged from its remote branch, so that the user can see what is about
to happen. It doesn't show where each branch goes; the branches panel
doesn't show that for a normal push either. Pushing only the current
branch is the second entry. If any of the branches has diverged from its
remote branch, a single confirmation covers force-pushing all of them.
A branch is offered if its tip is a commit of the current branch that
isn't merged yet, it has an upstream that is stored locally, that
upstream is not gone, and it is ahead of its push destination. Branches
without an upstream are left out because a branch that was never pushed
can't be told apart from one that is meant to stay local. A branch that
is only behind is left out because pushing it would move the remote
branch back to an older commit; the lease doesn't catch that when the
remote-tracking branch is up to date.
Each branch is pushed to where `git push` would push it if it were
checked out, using the destination git reports in the %(push) field.
This honors push.default, remote.pushDefault and
branch.<name>.pushRemote without lazygit having to interpret them.
Branches going to the same remote are pushed in one command, with
--force-with-lease when the user confirmed force-pushing; the lease
checks each ref against its remote-tracking branch, so a coworker's
unseen push is still rejected. The current branch joins that command
when its remote-tracking branch is stored locally. Otherwise it needs a
plain push first, for example with --set-upstream, and that option
would apply to every refspec of a combined command; so in that case it
is pushed on its own as before, and the other branches follow in a
second command.
Pushing the current branch on its own still runs a bare `git push`, so
users who rely on push.default or remote.<name>.push for it see no
change. The push is non-atomic, as git defaults to; if one branch's
lease fails, the others still go through and the error names the one to
look at.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Pushing the current branch has three cases: it has an upstream, it has
none but push.default is "current", or the user is prompted for one.
Each case ends in a push, and the first one also checks whether a force
push is needed. Let the three cases call a common callback instead, and
put the check and the push there. This makes it possible to run the same
three cases with a different callback, so that the branches stacked
below the current one can be pushed along with it.
The check returns false for a branch without an upstream, so the other
two cases behave as before.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
lazygit will offer to push these along with the current branch, so that
a rebased stack can be pushed in one go. The commits panel already marks
the tips of stacked branches, and this uses the same criterion. A branch
is below the given one if its tip is one of the loaded commits of that
branch that isn't merged into a main branch. This needs no git command.
In whole-graph mode the commit list also contains commits of other
branches, but those are marked as merged, so they don't count.
Not used yet.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
PushOpts can only describe a push of the current branch. It takes the
branch's name and the upstream to push it to, and builds a single
refspec from them. Pushing several branches in one command needs one
refspec per branch, so let callers pass the refspecs themselves. The
sync controller, the only caller so far, builds the same single refspec
that PushCmdObj built before.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
The next commit needs to render the diff again when the terminal
switches between dark and light, with the same care not to replace
whatever else the main view might show.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
The task runs a command with its output shown through the configured
diff renderer. A pty is one way of getting the output to the renderer,
and is about to become one of two, so the task can no longer be named
after it.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
The pull request icons in the branches panel come from the remotes, so a
branches render that happens before the remotes are in the model shows no icons,
and the render that follows once the remotes land has to add them. The branches
refresh already waits for the worktrees for exactly this reason.
Wait for the remotes as well. They are read from the git config before their
branches are loaded, so the wait is over well before the branch load itself is
done, and the first render of the branch list shows the icons no matter which of
the two finishes first.
Start the remotes scope before the branches scope, so that an early return in
performRefresh can't leave the branches refresh waiting for a scope that was
never started. The worktrees scope goes first for the same reason.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
When lazygit starts up in a repo with many remote branches, the pull request
icons in the branches panel show up a good while after the branch list itself,
even though the pull requests come from the cache file and are in the model
before the first render. In the repo where this showed up (5400 remote
branches) the icons were up to half a second late.
The icons are rendered from Model.PullRequestsMap, and that map is built from
the remotes' URLs, because a branch's upstream remote tells us which repo
owner's pull requests to look for. The map therefore stays empty until the
remotes are in the model, and the remotes refresh doesn't put them there until
it has also enumerated and sorted all remote branches. In a big repo that takes
hundreds of milliseconds; reading the remotes themselves takes ten.
Load the two separately, and put the remotes in the model as soon as they have
been read from the git config. The branches refresh then finds them there, and
the pull request icons are part of the first render of the branch list.
Carry over the branches of the remotes we already have in the model in that
first update, so that the remote branches, and the branch counts in the remotes
panel, stay in place until the fresh ones are loaded.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Reading HEAD is worth keeping for the repos it can answer for, because
the menu opens on a keystroke and asking git costs a process per entry.
So go to git only for the placeholder, and for anything else the read
can't make sense of. That last part also gets the menu an answer for
layouts we don't know about yet, where it used to give up and say
"Branch unknown".
Git needs two commands to cover every repo. `git symbolic-ref` names the
branch even when it has no commit yet; `git rev-parse` resolves a
detached HEAD, and fails on a branch without a commit.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
A repo that keeps its refs in a reftable shows ".invalid" in the branch
column. Git stores the real HEAD in a binary table there and leaves
"ref: refs/heads/.invalid" in the HEAD file, so that anything still
reading the HEAD file fails loudly instead of getting a stale answer.
We read that file and take the placeholder for a branch name.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The menu shows "Branch unknown" for every submodule, whatever it has
checked out. A submodule has no .git directory; its .git is a file
naming the directory, and for a submodule git writes that name relative
to the submodule. We hand it to os.ReadFile unchanged, so it resolves
against lazygit's own working directory and the read fails. A worktree
created with --relative-paths (or with worktree.useRelativePaths set)
gets a relative name too, and fails the same way.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
A repo with no branch checked out puts a bare short hash in the branch
column, where it reads as a branch name. Spell it out the way the
worktrees panel already does.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The next commits change what the recent repos menu shows for a repo
without a branch, and teach it about layouts whose HEAD it reads wrongly
today. Give the reading a function of its own first, one that reports
what it found rather than what to display. This keeps the later changes
apart from each other, and it lets the tests call the reading directly
instead of going through a ReposHelper.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The path column is the last one, so nothing pushes it aside; instead it
runs off the right edge of the menu itself, and the reader has no way of
telling that there is more to it. Give it a maximum width as well, sized
so that the three columns and the spaces between them fill the menu at
its widest.
A path loses its middle rather than its end, because the directory that
immediately contains the repo says more about where it is than the root
of the tree does. The whole path, with the home directory still
abbreviated, joins the names in the tooltip when it doesn't fit.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
The recent repos menu is about to size its columns to fit into a menu of
that width.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
Each column of a menu is padded to the width of its widest entry, so a
single long name in the first two columns of the recent repos menu
pushes the path column off the right edge for every entry. Anyone whose
worktree directories are named after their branches hits this: with a
90 column menu and one 42 character name, the path column starts at
column 86 of 88.
Truncate both names to 30 characters, and put the ones that got
truncated into the item's tooltip, so that the full text is still on
screen for the selected entry. Filtering keeps matching the full names
and the full path, which the columns no longer show in their entirety.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
The third column of the recent repos menu spells out the full path of
each repo. That repeats the directory name which the first column
already shows, and it writes out the home directory in full. Both are
wasted width in a menu that is limited to 90 columns; the path column is
the first thing to run off the right edge, and users who don't know that
'L' scrolls the menu horizontally never see it at all.
Show the directory that contains the repo instead, with the home
directory abbreviated to '~'. For a list of 106 recent repos this takes
the column from 111 characters down to 97 at its longest, and from 47
down to 28 in the median.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
Nothing needs to look up the branch of a repo by its path, so a slice
indexed like the list of paths does the job, and its elements are plain
strings instead of the values of type "any" that a sync.Map hands back.
The next commits measure and truncate the branch name, which needs a
string.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
The left and the right edge of a popup panel were each derived by
halving the panel's width, so a panel that asked for an odd width lost a
column and came out one column left of centre. Resizing the window then
moved the panel's right edge only every other column, and left a gap of
one column between the panel and where it should end half of the time.
Derive the right edge from the left one and the width instead, the way
the branch above already does it for a popup that has a parent. This
also means that a panel of an odd width is now as wide as the width its
text was wrapped to.
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>