forked from OSchip/llvm-project
75 lines
1.7 KiB
LLVM
75 lines
1.7 KiB
LLVM
; RUN: opt -S -functionattrs %s | FileCheck %s
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declare nonnull i8* @ret_nonnull()
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; Return a pointer trivially nonnull (call return attribute)
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define i8* @test1() {
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; CHECK: define nonnull i8* @test1
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%ret = call i8* @ret_nonnull()
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ret i8* %ret
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}
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; Return a pointer trivially nonnull (argument attribute)
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define i8* @test2(i8* nonnull %p) {
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; CHECK: define nonnull i8* @test2
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ret i8* %p
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}
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; Given an SCC where one of the functions can not be marked nonnull,
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; can we still mark the other one which is trivially nonnull
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define i8* @scc_binder() {
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; CHECK: define i8* @scc_binder
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call i8* @test3()
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ret i8* null
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}
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define i8* @test3() {
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; CHECK: define nonnull i8* @test3
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call i8* @scc_binder()
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%ret = call i8* @ret_nonnull()
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ret i8* %ret
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}
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; Given a mutual recursive set of functions, we can mark them
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; nonnull if neither can ever return null. (In this case, they
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; just never return period.)
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define i8* @test4_helper() {
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; CHECK: define noalias nonnull i8* @test4_helper
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%ret = call i8* @test4()
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ret i8* %ret
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}
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define i8* @test4() {
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; CHECK: define noalias nonnull i8* @test4
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%ret = call i8* @test4_helper()
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ret i8* %ret
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}
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; Given a mutual recursive set of functions which *can* return null
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; make sure we haven't marked them as nonnull.
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define i8* @test5_helper() {
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; CHECK: define noalias i8* @test5_helper
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%ret = call i8* @test5()
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ret i8* null
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}
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define i8* @test5() {
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; CHECK: define noalias i8* @test5
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%ret = call i8* @test5_helper()
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ret i8* %ret
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}
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; Local analysis, but going through a self recursive phi
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define i8* @test6() {
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entry:
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; CHECK: define nonnull i8* @test6
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%ret = call i8* @ret_nonnull()
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br label %loop
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loop:
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%phi = phi i8* [%ret, %entry], [%phi, %loop]
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br i1 undef, label %loop, label %exit
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exit:
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ret i8* %phi
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}
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