forked from OSchip/llvm-project
[Attributor] Teach AANoCapture to use information in-flight more aggressively
AAReturnedValues, AAMemoryBehavior, and AANoUnwind, can provide information that helps during the tracking or even justifies no-capture. We now use this information and enable no-capture in some test cases designed a long while a ago for these cases. llvm-svn: 375382
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@ -2939,7 +2939,7 @@ struct AANoCaptureImpl : public AANoCapture {
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// Check what state the associated function can actually capture.
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if (F)
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determineFunctionCaptureCapabilities(*F, *this);
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determineFunctionCaptureCapabilities(IRP, *F, *this);
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else
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indicatePessimisticFixpoint();
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}
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@ -2965,7 +2965,8 @@ struct AANoCaptureImpl : public AANoCapture {
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/// Set the NOT_CAPTURED_IN_MEM and NOT_CAPTURED_IN_RET bits in \p Known
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/// depending on the ability of the function associated with \p IRP to capture
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/// state in memory and through "returning/throwing", respectively.
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static void determineFunctionCaptureCapabilities(const Function &F,
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static void determineFunctionCaptureCapabilities(const IRPosition &IRP,
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const Function &F,
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IntegerState &State) {
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// TODO: Once we have memory behavior attributes we should use them here.
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@ -2987,6 +2988,21 @@ struct AANoCaptureImpl : public AANoCapture {
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// exceptions and doesn not return values.
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if (F.doesNotThrow() && F.getReturnType()->isVoidTy())
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State.addKnownBits(NOT_CAPTURED_IN_RET);
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// Check existing "returned" attributes.
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int ArgNo = IRP.getArgNo();
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if (F.doesNotThrow() && ArgNo >= 0) {
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for (unsigned u = 0, e = F.arg_size(); u< e; ++u)
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if (F.hasParamAttribute(u, Attribute::Returned)) {
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if (u == ArgNo)
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State.removeAssumedBits(NOT_CAPTURED_IN_RET);
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else if (F.onlyReadsMemory())
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State.addKnownBits(NO_CAPTURE);
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else
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State.addKnownBits(NOT_CAPTURED_IN_RET);
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break;
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}
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}
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}
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/// See AbstractState::getAsStr().
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@ -3158,15 +3174,54 @@ ChangeStatus AANoCaptureImpl::updateImpl(Attributor &A) {
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const Function *F =
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getArgNo() >= 0 ? IRP.getAssociatedFunction() : IRP.getAnchorScope();
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assert(F && "Expected a function!");
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const auto &IsDeadAA = A.getAAFor<AAIsDead>(*this, IRPosition::function(*F));
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const IRPosition &FnPos = IRPosition::function(*F);
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const auto &IsDeadAA = A.getAAFor<AAIsDead>(*this, FnPos);
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AANoCapture::StateType T;
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// TODO: Once we have memory behavior attributes we should use them here
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// similar to the reasoning in
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// AANoCaptureImpl::determineFunctionCaptureCapabilities(...).
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// TODO: Use the AAReturnedValues to learn if the argument can return or
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// not.
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// Readonly means we cannot capture through memory.
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const auto &FnMemAA = A.getAAFor<AAMemoryBehavior>(*this, FnPos);
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if (FnMemAA.isAssumedReadOnly()) {
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T.addKnownBits(NOT_CAPTURED_IN_MEM);
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if (FnMemAA.isKnownReadOnly())
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addKnownBits(NOT_CAPTURED_IN_MEM);
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}
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// Make sure all returned values are different than the underlying value.
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// TODO: we could do this in a more sophisticated way inside
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// AAReturnedValues, e.g., track all values that escape through returns
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// directly somehow.
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auto CheckReturnedArgs = [&](const AAReturnedValues &RVAA) {
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bool SeenConstant = false;
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for (auto &It : RVAA.returned_values()) {
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if (isa<Constant>(It.first)) {
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if (SeenConstant)
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return false;
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SeenConstant = true;
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} else if (!isa<Argument>(It.first) ||
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It.first == getAssociatedArgument())
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return false;
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}
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return true;
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};
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const auto &NoUnwindAA = A.getAAFor<AANoUnwind>(*this, FnPos);
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if (NoUnwindAA.isAssumedNoUnwind()) {
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bool IsVoidTy = F->getReturnType()->isVoidTy();
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const AAReturnedValues *RVAA =
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IsVoidTy ? nullptr : &A.getAAFor<AAReturnedValues>(*this, FnPos);
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if (IsVoidTy || CheckReturnedArgs(*RVAA)) {
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T.addKnownBits(NOT_CAPTURED_IN_RET);
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if (T.isKnown(NOT_CAPTURED_IN_MEM))
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return ChangeStatus::UNCHANGED;
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if (NoUnwindAA.isKnownNoUnwind() &&
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(IsVoidTy || RVAA->getState().isAtFixpoint())) {
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addKnownBits(NOT_CAPTURED_IN_RET);
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if (isKnown(NOT_CAPTURED_IN_MEM))
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return indicateOptimisticFixpoint();
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}
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}
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}
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// Use the CaptureTracker interface and logic with the specialized tracker,
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// defined in AACaptureUseTracker, that can look at in-flight abstract
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@ -405,35 +405,33 @@ entry:
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;
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; Make sure the returned flag on %r is strong enough to justify nocapture on %b but **not** on %r.
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;
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; FIXME: The "returned" information is not propagated to the fullest extend causing us to miss "nocapture" on %b in the following:
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either1(i32* readonly %b, i32* readonly returned %r)
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either1(i32* nocapture readonly %b, i32* readonly returned %r)
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;
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either2(i32* readonly %b, i32* readonly returned %r)
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either3(i32* readonly %b, i32* readonly returned %r)
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either2(i32* nocapture readonly %b, i32* readonly returned %r)
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either3(i32* nocapture readonly %b, i32* readonly returned %r)
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;
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; FIXME: The "nounwind" information is not derived to the fullest extend causing us to miss "nocapture" on %b in the following:
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either4(i32* readonly %b, i32* readonly returned %r)
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define i32* @not_captured_by_readonly_call_not_returned_either1(i32* %b, i32* returned %r) #0 {
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; CHECK: define i32* @not_captured_by_readonly_call_not_returned_either4(i32* nocapture readonly %b, i32* readonly returned %r)
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define i32* @not_captured_by_readonly_call_not_returned_either1(i32* %b, i32* returned %r) {
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entry:
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%call = call i32* @readonly_unknown(i32* %b, i32* %r) nounwind
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ret i32* %call
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}
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declare i32* @readonly_unknown_r1a(i32*, i32* returned) readonly
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define i32* @not_captured_by_readonly_call_not_returned_either2(i32* %b, i32* %r) #0 {
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define i32* @not_captured_by_readonly_call_not_returned_either2(i32* %b, i32* %r) {
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entry:
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%call = call i32* @readonly_unknown_r1a(i32* %b, i32* %r) nounwind
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ret i32* %call
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}
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declare i32* @readonly_unknown_r1b(i32*, i32* returned) readonly nounwind
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define i32* @not_captured_by_readonly_call_not_returned_either3(i32* %b, i32* %r) #0 {
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define i32* @not_captured_by_readonly_call_not_returned_either3(i32* %b, i32* %r) {
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entry:
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%call = call i32* @readonly_unknown_r1b(i32* %b, i32* %r)
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ret i32* %call
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}
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define i32* @not_captured_by_readonly_call_not_returned_either4(i32* %b, i32* %r) #0 {
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define i32* @not_captured_by_readonly_call_not_returned_either4(i32* %b, i32* %r) nounwind {
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entry:
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%call = call i32* @readonly_unknown_r1a(i32* %b, i32* %r)
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ret i32* %call
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@ -1,5 +1,5 @@
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; RUN: opt -functionattrs -S < %s | FileCheck %s --check-prefix=FNATTR
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; RUN: opt -attributor -attributor-manifest-internal -attributor-disable=false -attributor-max-iterations-verify -attributor-max-iterations=6 -S < %s | FileCheck %s --check-prefix=ATTRIBUTOR
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; RUN: opt -attributor -attributor-manifest-internal -attributor-disable=false -attributor-max-iterations-verify -attributor-max-iterations=7 -S < %s | FileCheck %s --check-prefix=ATTRIBUTOR
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; RUN: opt -attributor -attributor-manifest-internal -attributor-disable=false -functionattrs -S < %s | FileCheck %s --check-prefix=BOTH
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;
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; Test cases specifically designed for the "returned" argument attribute.
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@ -39,6 +39,20 @@ l1:
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ret i1 1 ; escaping value not caught by def-use chaining.
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}
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; c4b is c4 but without the escaping part
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; FNATTR: define i1 @c4b(i32* %q, i32 %bitno)
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; ATTRIBUTOR: define i1 @c4b(i32* nocapture readnone %q, i32 %bitno)
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define i1 @c4b(i32* %q, i32 %bitno) {
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%tmp = ptrtoint i32* %q to i32
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%tmp2 = lshr i32 %tmp, %bitno
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%bit = trunc i32 %tmp2 to i1
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br i1 %bit, label %l1, label %l0
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l0:
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ret i1 0 ; not escaping!
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l1:
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ret i1 0 ; not escaping!
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}
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@lookup_table = global [2 x i1] [ i1 0, i1 1 ]
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; FNATTR: define i1 @c5(i32* %q, i32 %bitno)
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@ -331,5 +345,20 @@ entry:
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ret void
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}
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declare i8* @unknownpi8pi8(i8*,i8* returned)
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define i8* @test_returned1(i8* %A, i8* returned %B) nounwind readonly {
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; ATTRIBUTOR: define i8* @test_returned1(i8* nocapture readonly %A, i8* readonly returned %B)
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entry:
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%p = call i8* @unknownpi8pi8(i8* %A, i8* %B)
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ret i8* %p
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}
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define i8* @test_returned2(i8* %A, i8* %B) {
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; ATTRIBUTOR: define i8* @test_returned2(i8* nocapture readonly %A, i8* readonly returned %B)
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entry:
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%p = call i8* @unknownpi8pi8(i8* %A, i8* %B) nounwind readonly
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ret i8* %p
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}
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declare i8* @llvm.launder.invariant.group.p0i8(i8*)
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declare i8* @llvm.strip.invariant.group.p0i8(i8*)
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@ -220,7 +220,7 @@ bb:
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define dso_local noalias i32* @f3(i32* %arg) {
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; FIXME: missing nonnull. It should be nonnull @f3(i32* nonnull readonly %arg)
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; ATTRIBUTOR: define dso_local noalias i32* @f3(i32* readonly %arg)
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; ATTRIBUTOR: define dso_local noalias i32* @f3(i32* nocapture readonly %arg)
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bb:
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; FIXME: missing nonnull. It should be @f1(i32* nonnull readonly %arg)
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; ATTRIBUTOR: %tmp = call i32* @f1(i32* readonly %arg)
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@ -1,4 +1,4 @@
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; RUN: opt -functionattrs -enable-nonnull-arg-prop -attributor -attributor-manifest-internal -attributor-disable=false -attributor-max-iterations-verify -attributor-max-iterations=7 -S < %s | FileCheck %s
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; RUN: opt -functionattrs -enable-nonnull-arg-prop -attributor -attributor-manifest-internal -attributor-disable=false -attributor-max-iterations-verify -attributor-max-iterations=8 -S < %s | FileCheck %s
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;
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; This is an evolved example to stress test SCC parameter attribute propagation.
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; The SCC in this test is made up of the following six function, three of which
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