cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
92 lines
4.1 KiB
ArmAsm
92 lines
4.1 KiB
ArmAsm
# REQUIRES: x86
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# UNSUPPORTED: system-windows
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## FIXME: In principle this test should pass on Windows
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# RUN: rm -rf %t; split-file %s %t
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## This test verifies that we attempt to re-root absolute paths if -syslibroot
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## is specified. Therefore we would like to be able to specify an absolute path
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## without worrying that it may match an actual file on the system outside the
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## syslibroot. `chroot` would do the job but isn't cross-platform, so I've used
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## this %t/%:t hack instead.
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# RUN: mkdir -p %t/%:t
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# RUN: llvm-mc -filetype=obj -triple=x86_64-apple-darwin %t/foo.s -o %t/foo.o
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# RUN: llvm-mc -filetype=obj -triple=x86_64-apple-darwin %t/bar.s -o %t/bar.o
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# RUN: llvm-mc -filetype=obj -triple=x86_64-apple-darwin %t/test.s -o %t/test.o
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## bar.a is under %t/%:t, and so verifies that rerooting happens. foo.a isn't,
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## and therefore verifies that we still fall back to the original path if no
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## file exists at the rerooted path.
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# RUN: llvm-ar rcs %t/foo.a %t/foo.o
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# RUN: %lld -dylib %t/foo.o -o %t/libfoo.dylib
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# RUN: llvm-ar rcs %t/%:t/bar.a %t/bar.o
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# RUN: %lld -dylib %t/bar.o -o %t/%:t/libbar.dylib
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## Test our various file-loading flags to make sure all bases are covered.
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# RUN: %lld --reproduce %t/repro1.tar -lSystem -syslibroot %t %t/foo.a %t/bar.a %t/test.o -o /dev/null -t | FileCheck %s -DDIR="%t/%:t"
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# RUN: tar xf %t/repro1.tar -C %t
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# RUN: cd %t/repro1; %no-arg-lld @response.txt | FileCheck %s -DDIR="%:t/%:t"
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# RUN: %lld --reproduce %t/repro2.tar -lSystem -syslibroot %t -force_load %t/foo.a -force_load %t/bar.a %t/test.o -o /dev/null -t | FileCheck %s -DDIR="%t/%:t"
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# RUN: tar xf %t/repro2.tar -C %t
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# RUN: cd %t/repro2; %no-arg-lld @response.txt | FileCheck %s -DDIR="%:t/%:t"
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# RUN: %lld --reproduce %t/repro3.tar -lSystem -syslibroot %t %t/libfoo.dylib %t/libbar.dylib %t/test.o -o /dev/null -t | FileCheck %s -DDIR="%t/%:t"
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# RUN: tar xf %t/repro3.tar -C %t
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# RUN: cd %t/repro3; %no-arg-lld @response.txt | FileCheck %s -DDIR="%:t/%:t"
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# RUN: %lld --reproduce %t/repro4.tar -lSystem -syslibroot %t -weak_library %t/libfoo.dylib -weak_library %t/libbar.dylib %t/test.o -o /dev/null -t | FileCheck %s -DDIR="%t/%:t"
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# RUN: tar xf %t/repro4.tar -C %t
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# RUN: cd %t/repro4; %no-arg-lld @response.txt | FileCheck %s -DDIR="%:t/%:t"
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# RUN: %lld --reproduce %t/repro7.tar -lSystem -syslibroot %t -force_load %t/foo.a -force_load %t/bar.a %t/test.o -o /dev/null -t | FileCheck %s -DDIR="%t/%:t"
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# RUN: tar xf %t/repro7.tar -C %t
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# RUN: cd %t/repro7; %no-arg-lld @response.txt | FileCheck %s -DDIR="%:t/%:t"
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# RUN: echo "%t/libfoo.dylib" > %t/filelist
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# RUN: echo "%t/libbar.dylib" >> %t/filelist
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# RUN: %lld --reproduce %t/repro5.tar -lSystem -syslibroot %t -filelist %t/filelist %t/test.o -o /dev/null -t | FileCheck %s -DDIR="%t/%:t"
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# RUN: tar xf %t/repro5.tar -C %t
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# RUN: cd %t/repro5; %no-arg-lld @response.txt | FileCheck %s -DDIR="%:t/%:t"
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## The {{^}} ensures that we only match relative paths if DIR is relative.
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# CHECK: {{^}}[[DIR]]/{{(lib)?}}bar
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## Paths to object files don't get rerooted.
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# RUN: mv %t/bar.o %t/%:t/bar.o
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# RUN: not %lld -lSystem -syslibroot %t %t/foo.o %t/bar.o %t/test.o -o \
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# RUN: /dev/null 2>&1 | FileCheck %s --check-prefix=OBJ
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# OBJ: error: cannot open {{.*[\\/]}}bar.o: {{[Nn]}}o such file or directory
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## Now create a "decoy" libfoo.dylib under %t/%:t to demonstrate that the
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## rerooted path takes precedence over the original path. We will get an
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## undefined symbol error since we aren't loading %t/libfoo.dylib.
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# RUN: cp %t/%:t/libbar.dylib %t/%:t/libfoo.dylib
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# RUN: not %lld --reproduce %t/repro6.tar -lSystem -syslibroot %t %t/libfoo.dylib %t/libbar.dylib %t/test.o \
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# RUN: -o /dev/null -t 2> %t/error | FileCheck %s -DDIR="%t/%:t" --check-prefix=FOO
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# RUN: FileCheck %s --check-prefix=UNDEF < %t/error
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# RUN: tar xf %t/repro6.tar -C %t
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# RUN: cd %t/repro6; not %no-arg-lld @response.txt 2> %t/error | FileCheck %s -DDIR="%:t/%:t" --check-prefix=FOO
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# RUN: FileCheck %s --check-prefix=UNDEF < %t/error
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# FOO: [[DIR]]/libfoo.dylib
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# UNDEF: error: undefined symbol: _foo
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#--- foo.s
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.globl _foo
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_foo:
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#--- bar.s
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.globl _bar
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_bar:
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#--- test.s
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.text
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.globl _main
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_main:
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callq _foo
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callq _bar
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ret
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