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).
122 lines
2.9 KiB
LLVM
122 lines
2.9 KiB
LLVM
; RUN: llvm-dis < %s.bc| FileCheck %s
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; RUN: verify-uselistorder < %s.bc
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; BinaryFloatOperation.3.2.ll.bc was generated by passing this file to llvm-as-3.2.
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; The test checks that LLVM does not misread binary float instructions from
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; older bitcode files.
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define void @fadd(float %x1, double %x2 ,half %x3, fp128 %x4, x86_fp80 %x5, ppc_fp128 %x6){
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entry:
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; CHECK: %res1 = fadd float %x1, %x1
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%res1 = fadd float %x1, %x1
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; CHECK-NEXT: %res2 = fadd double %x2, %x2
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%res2 = fadd double %x2, %x2
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; CHECK-NEXT: %res3 = fadd half %x3, %x3
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%res3 = fadd half %x3, %x3
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; CHECK-NEXT: %res4 = fadd fp128 %x4, %x4
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%res4 = fadd fp128 %x4, %x4
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; CHECK-NEXT: %res5 = fadd x86_fp80 %x5, %x5
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%res5 = fadd x86_fp80 %x5, %x5
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; CHECK-NEXT: %res6 = fadd ppc_fp128 %x6, %x6
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%res6 = fadd ppc_fp128 %x6, %x6
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ret void
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}
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define void @faddFloatVec(<2 x float> %x1, <3 x float> %x2 ,<4 x float> %x3, <8 x float> %x4, <16 x float> %x5){
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entry:
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; CHECK: %res1 = fadd <2 x float> %x1, %x1
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%res1 = fadd <2 x float> %x1, %x1
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; CHECK-NEXT: %res2 = fadd <3 x float> %x2, %x2
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%res2 = fadd <3 x float> %x2, %x2
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; CHECK-NEXT: %res3 = fadd <4 x float> %x3, %x3
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%res3 = fadd <4 x float> %x3, %x3
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; CHECK-NEXT: %res4 = fadd <8 x float> %x4, %x4
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%res4 = fadd <8 x float> %x4, %x4
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; CHECK-NEXT: %res5 = fadd <16 x float> %x5, %x5
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%res5 = fadd <16 x float> %x5, %x5
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ret void
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}
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define void @faddDoubleVec(<2 x double> %x1, <3 x double> %x2 ,<4 x double> %x3, <8 x double> %x4, <16 x double> %x5){
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entry:
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; CHECK: %res1 = fadd <2 x double> %x1, %x1
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%res1 = fadd <2 x double> %x1, %x1
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; CHECK-NEXT: %res2 = fadd <3 x double> %x2, %x2
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%res2 = fadd <3 x double> %x2, %x2
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; CHECK-NEXT: %res3 = fadd <4 x double> %x3, %x3
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%res3 = fadd <4 x double> %x3, %x3
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; CHECK-NEXT: %res4 = fadd <8 x double> %x4, %x4
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%res4 = fadd <8 x double> %x4, %x4
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; CHECK-NEXT: %res5 = fadd <16 x double> %x5, %x5
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%res5 = fadd <16 x double> %x5, %x5
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ret void
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}
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define void @faddHalfVec(<2 x half> %x1, <3 x half> %x2 ,<4 x half> %x3, <8 x half> %x4, <16 x half> %x5){
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entry:
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; CHECK: %res1 = fadd <2 x half> %x1, %x1
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%res1 = fadd <2 x half> %x1, %x1
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; CHECK-NEXT: %res2 = fadd <3 x half> %x2, %x2
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%res2 = fadd <3 x half> %x2, %x2
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; CHECK-NEXT: %res3 = fadd <4 x half> %x3, %x3
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%res3 = fadd <4 x half> %x3, %x3
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; CHECK-NEXT: %res4 = fadd <8 x half> %x4, %x4
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%res4 = fadd <8 x half> %x4, %x4
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; CHECK-NEXT: %res5 = fadd <16 x half> %x5, %x5
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%res5 = fadd <16 x half> %x5, %x5
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ret void
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}
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define void @fsub(float %x1){
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entry:
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; CHECK: %res1 = fsub float %x1, %x1
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%res1 = fsub float %x1, %x1
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ret void
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}
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define void @fmul(float %x1){
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entry:
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; CHECK: %res1 = fmul float %x1, %x1
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%res1 = fmul float %x1, %x1
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ret void
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}
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define void @fdiv(float %x1){
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entry:
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; CHECK: %res1 = fdiv float %x1, %x1
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%res1 = fdiv float %x1, %x1
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ret void
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}
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define void @frem(float %x1){
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entry:
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; CHECK: %res1 = frem float %x1, %x1
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%res1 = frem float %x1, %x1
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ret void
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}
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