Prep for the upcoming `git_deflate_bound()` widening to `size_t`. The
local is only ever the return value of `git_deflate_bound()` and the
`xmalloc()`/`stream.avail_out` sizes derived from it; widening it has no
semantic effect today.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
The local is initialised from `git_deflate_bound()` (an unsigned upper
bound on the deflated output, never negative) and used in exactly three
places: the initialising assignment, `strbuf_grow(buf, size)` whose
parameter is already `size_t`, and `stream.avail_out` which became
`size_t` in the prior commit. There is no comparison against zero or a
negative value, no subtraction, no arithmetic that depends on
signedness, and no path that would assign a signed quantity to it.
The original `ssize_t` was the wrong type to begin with: a
`git_deflate_bound()` result above `SSIZE_MAX` would have wrapped
negative on assignment and then implicitly re-extended to a huge
`size_t` at `strbuf_grow()`/`stream.avail_out`, requesting an absurd
allocation. That is not a real-world concern for the object sizes
http-push pushes today, but it is also the reason the type needs to move
to `size_t` before `git_deflate_bound()` itself is widened.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Fixes a pre-existing silent narrowing from `git_deflate_bound()`'s
`unsigned long` return into an `int` local: anything past 2 GiB has
always wrapped negative here and then been re-extended to `size_t`
inside `xmalloc()`. Also prep for the upcoming `git_deflate_bound()`
widening to `size_t`, which would extend the narrowing further if
`bound` stayed `int`.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Prep for the upcoming `git_deflate_bound()` widening to `size_t`: the
local that catches its return needs to be `size_t` too, otherwise the
widening would introduce a silent Windows narrowing here. No semantic
effect with the current unsigned-long-returning `git_deflate_bound()`
(`size_t == unsigned long` on this caller's platforms today).
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Bundling the two widenings: four call sites pass `&stream.avail_in`
directly to `use_pack()`, and widening either type fencepost alone would
force a bridge variable at each. Doing both together is the simpler end
state and is the prerequisite for the `do_compress()` widening in the
next commit, which is what lets `write_no_reuse_object()` lose its last
`cast_size_t_to_ulong()` shim.
The unsigned-long locals widened at the other `use_pack()` callers
(avail / remaining / left) hold pack-window sizes bounded by
`core.packedGitWindowSize`, so the change is type consistency rather
than a new >4GB capability. `git_zstream.avail_in`/`avail_out` likewise
reach zlib's `uInt` fields only after `zlib_buf_cap()`'s 1 GiB cap, so
the wrapper already accepted `size_t`-shaped inputs in practice.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Last stop in the delta-encoding API widening for >4 GiB blobs on
Windows: with `create_delta_index()` done in the prior commit and
`create_delta()`/`diff_delta()` finished here, every byte count that
crosses delta.h is now `size_t`. The struct fields they store into have
been `size_t` since the diff-delta struct widening.
The API change must move with all callers in the same commit (the build
only passes when every `&delta_size` matches the new `size_t*`). Caller
updates are kept minimal:
* builtin/pack-objects.c `get_delta()` and `try_delta()`: widen only
the local `delta_size` variable; the surrounding unsigned-long
locals and their `cast_size_t_to_ulong()` shims are out of scope
here and will be cleaned up in their own commits.
* builtin/fast-import.c, diff.c, t/helper/test-pack-deltas.c:
keep the local unsigned-long delta size (each feeds a still-
unsigned-long downstream consumer: zlib's `avail_in`,
`deflate_it()`, the test helper's own `do_compress()`), and bridge
via a temporary `size_t` plus `cast_size_t_to_ulong()`. The new
casts are paid back in later topics that widen those consumers.
* t/helper/test-delta.c: widen the local outright (no downstream
consumer beyond the test's own `out_size`, which is already
`size_t`).
Note that GCC struggles a bit to figure out that `deltalen` is always
initialized before it is used; To help it along, we initialize it to 0.
This work-around will go away in a later patch series when `deltalen`
can be widened to `size_t`.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
The pair must move together because `find_deltas()` passes `&mem_usage`
to `try_delta()`: widening either alone breaks the type match.
`mem_usage` accumulates per-object byte counts already computed in
`size_t` (`SIZE()` and `sizeof_delta_index()` reach here through
`free_unpacked()`, now `size_t`), and was the last 32-bit-on-Windows
narrowing point in the delta-window memory accounting chain. With this
commit, that chain uses `size_t` consistently except for
`sizeof_delta_index()`'s still-narrow return, whose value is bounded by
`create_delta_index()`'s entries cap.
`window_memory_limit` (config-driven via `git_config_ulong()`) stays
`unsigned long`: it is only compared against `mem_usage` and promotes.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
`free_unpacked()` sums two byte counts: `sizeof_delta_index()` and
`SIZE(n->entry)`. The latter has been `size_t` since the prior topic
"More work supporting objects larger than 4GB on Windows" widened
`SIZE()`/`oe_size()` to `size_t`, so accumulating it into an `unsigned
long` return was a silent Windows-only truncation on a packing run with
many large objects.
The sole caller, `find_deltas()`, still holds its own `mem_usage` in an
`unsigned long` for now, and therefore still truncates silently.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
These three are a single accounting tuple (the globals tracking
cumulative cached-delta bytes, plus the helper that compares them
against an incoming delta size) and are latently 32-bit on Windows where
`unsigned long` != `size_t`: a pack with many large cached deltas could
wrap silently.
The widening is internally consistent on its own: the additions and
subtractions against delta_cache_size already come from `size_t` sources
(`DELTA_SIZE()` returns `size_t`), and `delta_cacheable()`'s sole caller
in `try_delta()` still passes `unsigned long`, which promotes.
Prerequisite for dropping `try_delta()`'s `cast_size_t_to_ulong()`
shims, which becomes possible once 1create_delta()` and `diff_delta()`
are widened in a later commit.
Note: since `max_delta_cache_size` changes data type to `size_t`, a pair
of new helpers is introduced to parse config values of that type, too.
Assisted-by: Opus 4.7
Helped-by: Patrick Steinhardt <ps@pks.im>
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
The sole caller (`try_delta()` in builtin/pack-objects.c) passes an
`unsigned long`, which promotes safely, so no caller fixups are needed.
Splitting it out keeps the `diff_delta()`/`create_delta()` widening,
which does ripple to several callers, in its own commit.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Preparation for widening the delta-encoding API to `size_t` in
subsequent commits, which is what lets pack-objects drop the
`cast_size_t_to_ulong()` shims that 606c192380 (odb, packfile: use
size_t for streaming object sizes, 2026-05-08) had to leave behind in
`get_delta()` and `try_delta()` because their downstream consumers were
still narrow.
The struct is private to diff-delta.c, so widening its fields in
isolation is a no-op at runtime: the values stored continue to fit in 32
bits on Windows because the public API around it still truncates.
Splitting it out keeps the API-change commit focused on caller updates.
Since the `memsize` attribute is returned by the `sizeof_delta_index()`
function verbatim, that function's return type is adjusted, too.
Assisted-by: Opus 4.7
Helped-by: Patrick Steinhardt <ps@pks.im>
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
The Apache timeout in HTTP tests has been increased to prevent test
failures on heavily loaded CI runners. The tests creating an
enormous number of refs have been isolated to their own repositories
to avoid slowing down subsequent tests.
* jk/t5551-expensive-test-timeouts-fix:
t5551: put many-tags case into its own repo
t/lib-httpd: bump apache timeout
Most of the t5551 http fetch tests use a handful of refs. But there are
a few test cases which check our handling of large numbers of refs.
These tests use the same server-side repo, so all subsequent tests end
up having to consider those extra refs, too.
The result is that the test script is a bit slower than it needs to be.
In a normal run, moving the "2,000 tags" test into its own repo drops my
runtime for the whole script from ~2.7s to ~1.9s.
This is a modest gain, but when we add the "--long" flag it gets much
bigger. There we trigger a test (marked with EXPENSIVE) that adds
100,000 tags, and the script runtime jumps to ~95s. But if we use the
same "many tags" repo for that, our runtime drops to just ~37s.
This is a pretty easy win to drop the cost of the script. It may even be
a larger gain on a heavily loaded system, since one of the main costs
here is unpacked refs, which are heavy on system time and I/O costs.
It's possible we are reducing test coverage, since all of those other
tests were inadvertently using large ref advertisements (and thus could
have uncovered some unexpected interaction). But that seems somewhat
unlikely; the tests targeted at the large number of refs are doing
roughly similar things to the other tests.
Note that the real performance culprit is the 100k-tag --long test, not
the 2k-tag one. So we could just let the 100k one use its own repo, and
keep the 2k tags in the main repo. But since these two tests are
somewhat interlinked, it's easier to just move them both (and it does
provide a small gain even for the 2000-tag test). I also notice that the
2000-tag test is gated on the CMDLINE_LIMIT prereq, and without that the
later EXPENSIVE test will fail (since we won't have a too-many-refs
clone). Nobody seems to have noticed or complained after many years, and
I left it alone for this patch.
Signed-off-by: Jeff King <peff@peff.net>
[jc: made the new "many-tags.git" bare to match the original "repo.git"]
Signed-off-by: Junio C Hamano <gitster@pobox.com>
We lost ability to use https:// proxies during this cycle; this is
a hotfix for the regression.
* js/http-https-proxy-fix:
http: accept https:// proxies again
Since enabling more tests with 7a094d68a2 (ci: run expensive tests on
push builds to integration branches, 2026-05-08), we sometimes see test
failures or timeouts in GitHub CI. The culprit seems to be the "enormous
ref negotiation" test in t5551, which creates ~100k tag refs in our http
server-side repo.
Iterating through the loose refs of this repo to generate a ref
advertisement can take a long time, especially on a platform with slow
I/O. On my otherwise unloaded local machine, a cold cache ref
advertisement takes ~10s. On a busy CI machine running tests in
parallel, it can presumably top 60s, which runs afoul of Apache's
default CGI timeout.
The result in t5551 is a test failure, where Apache simply hangs up the
connection and the client reports an error. But worse, t5559 runs the
same test with HTTP/2, and a bug in Apache causes the connection to hang
indefinitely! We eventually see this as a CI timeout after 6 hours.
Let's bump Apache's timeout to something much larger: 600 seconds. This
doesn't eliminate the possibility of a timeout, but it makes it much
less likely. It should eliminate both the test failures and the CI
timeouts in practice, and it protects us from running into similar
problems with other tests in the future.
There are two counter-arguments to consider.
One, could/should we just make the test faster? Probably yes. The
biggest mistake here is having such an absurd number of unpacked refs on
a system which is bottle-necked on I/O. But I think it's worth bumping
the timeout so that we can fix this (and possibly other) correctness
issues, and then consider performance separately (which we'll do in
subsequent patches).
And two, is this just papering over a problem that users might see in
the real world? We could teach Git to handle this case more gracefully
with optimizations or keep-alives. But I think it's really an artificial
situation. You need a combination of this silly number of loose refs,
plus a very heavily loaded system. If you were trying to run a real
server and it took more than 60s to generate the ref advertisement, I
don't think the timeout is your biggest problem. Your crappy service is,
and you should adjust your resources to match your load. I.e., it is
probably reasonable for Git to assume that advertisements happen
fast-ish and don't need protocol-level keepalives.
Though the patch here is small, tons of work went into analyzing the
problem. Many thanks to the contributors credited below.
Helped-by: Michael Montalbo <mmontalbo@gmail.com>
Helped-by: Patrick Steinhardt <ps@pks.im>
Signed-off-by: Jeff King <peff@peff.net>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Since 663d7abe07 (http: reject unsupported proxy URL schemes,
2026-05-05), set_curl_proxy_type() returns 0 only for the "http"
and SOCKS variants via dedicated early returns, and -1 for
everything else. The "https" branch configures the CURL handle for
HTTPS proxying but then falls through to the trailing `return -1`
intended for unknown schemes, so the caller in get_curl_handle()
treats a perfectly valid https:// proxy URL as unsupported and
refuses to use it.
Noticed while looking into a Coverity report against the same
function; the unchecked curl_easy_setopt() return values it flags
are orthogonal to this fix.
Assisted-by: Opus 4.7
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Add a "Preserving Quotation Marks" section to prevent AI-assisted
translation and review from incorrectly converting language-specific
UTF-8 curly quotes (e.g., „ U+201E, " U+201C for Bulgarian) into
ASCII straight quotes " (U+0022), which would cause PO string
truncation and syntax errors.
Also update the "Special characters" item in the Quality checklist
to reference the new section.
Signed-off-by: Jiang Xin <worldhello.net@gmail.com>
In t4216 we have have a prerequisite that is active in case the system's
`char` type is signed by default. This prerequisite isn't really used by
anything though: while it is used to guard one of our tests, that
specific test is essentially a no-op. So all this infrastructure does is
to provide some debugging hint to a reader that pays a lot of attention.
Besides that, the way we set up the prerequisite also results in broken
TAP output on systems where `char` is unsigned by default: we use
`test_cmp()` to diff two files outside of of any test body, and if the
files differ we enable the prerequisite. If so, the call to `test_cmp()`
would also print output, and that output is of course not valid TAP
output.
That wasn't a problem before 389c83025d (t: let prove fail when parsing
invalid TAP output, 2026-06-04), because our TAP parser was configured
to be lenient. But starting with that commit, t4216 is now failing on
systems with unsigned chars.
Drop the whole infrastructure. The prerequisite is not used anywhere
else, and the only location where it's used doesn't really provide much
value.
Reported-by: Todd Zullinger <tmz@pobox.com>
Signed-off-by: Patrick Steinhardt <ps@pks.im>
Tested-by: Todd Zullinger <tmz@pobox.com>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
Xcode 15 and later has a linker set to complain when the same library
archive is listed twice on the command line. Squelch the annoyance.
* hn/macos-linker-warning:
config.mak.uname: avoid macOS dup-library warning
Wean the Windows builds in GitLab CI procedure away from
(unfortunately unreliable) Chocolatey to install dependencies.
* ps/gitlab-ci-windows:
gitlab-ci: migrate Windows builds away from Chocolatey
The `__MINGW64__` constant is defined, surprise, surprise, only when
building for a 64-bit CPU architecture.
Therefore using it as a guard to define `_POSIX_C_SOURCE` (so that
`localtime_r()` is declared, among other functions) is not enough, we
also need to check `__MINGW32__`.
Technically, the latter constant is defined even for 64-bit builds. But
let's make things a bit easier to understand by testing for both
constants.
Making it so fixes this compile warning (turned error in GCC v14.1):
archive-zip.c: In function 'dos_time':
archive-zip.c:612:9: error: implicit declaration of function 'localtime_r';
did you mean 'localtime_s'? [-Wimplicit-function-declaration]
612 | localtime_r(&time, &tm);
| ^~~~~~~~~~~
| localtime_s
Signed-off-by: Johannes Schindelin <johannes.schindelin@gmx.de>
Signed-off-by: Junio C Hamano <gitster@pobox.com>