mirror of
https://github.com/tinygo-org/tinygo.git
synced 2026-07-26 06:38:42 +00:00
transform: fix incorrect alignment of heap-to-stack transform
It assumed the maximum alignment was equal to sizeof(void*), which is definitely not the case. So this only worked more or less by accident previously. It now uses the alignment as specified by the frontend, or else `unsafe.Alignof(complex128)` which is typically the maximum alignment of a given platform (though this shouldn't really happen in practice: the optimizer should keep the 'align' attribute in place).
This commit is contained in:
committed by
Ron Evans
parent
571447c7c1
commit
e6caa3fe9e
@@ -21,7 +21,7 @@ require (
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golang.org/x/sys v0.21.0
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golang.org/x/tools v0.22.1-0.20240621165957-db513b091504
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gopkg.in/yaml.v2 v2.4.0
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tinygo.org/x/go-llvm v0.0.0-20240518103902-697964f2a9dc
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tinygo.org/x/go-llvm v0.0.0-20240627184919-3b50c76783a8
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)
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require (
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@@ -106,5 +106,5 @@ gopkg.in/yaml.v2 v2.4.0/go.mod h1:RDklbk79AGWmwhnvt/jBztapEOGDOx6ZbXqjP6csGnQ=
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gopkg.in/yaml.v3 v3.0.0-20200313102051-9f266ea9e77c/go.mod h1:K4uyk7z7BCEPqu6E+C64Yfv1cQ7kz7rIZviUmN+EgEM=
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gopkg.in/yaml.v3 v3.0.1 h1:fxVm/GzAzEWqLHuvctI91KS9hhNmmWOoWu0XTYJS7CA=
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gopkg.in/yaml.v3 v3.0.1/go.mod h1:K4uyk7z7BCEPqu6E+C64Yfv1cQ7kz7rIZviUmN+EgEM=
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tinygo.org/x/go-llvm v0.0.0-20240518103902-697964f2a9dc h1:TCzibFa4oLu+njEP3fnRUmZ+QQeb8BjtOwctgcjzL0k=
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tinygo.org/x/go-llvm v0.0.0-20240518103902-697964f2a9dc/go.mod h1:GFbusT2VTA4I+l4j80b17KFK+6whv69Wtny5U+T8RR0=
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tinygo.org/x/go-llvm v0.0.0-20240627184919-3b50c76783a8 h1:bLsZXRUBavt++CJlMN7sppNziqu3LyamESLhFJcpqFQ=
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tinygo.org/x/go-llvm v0.0.0-20240627184919-3b50c76783a8/go.mod h1:GFbusT2VTA4I+l4j80b17KFK+6whv69Wtny5U+T8RR0=
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+14
-17
@@ -29,10 +29,14 @@ func OptimizeAllocs(mod llvm.Module, printAllocs *regexp.Regexp, maxStackAlloc u
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targetData := llvm.NewTargetData(mod.DataLayout())
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defer targetData.Dispose()
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ptrType := llvm.PointerType(mod.Context().Int8Type(), 0)
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builder := mod.Context().NewBuilder()
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ctx := mod.Context()
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builder := ctx.NewBuilder()
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defer builder.Dispose()
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// Determine the maximum alignment on this platform.
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complex128Type := ctx.StructType([]llvm.Type{ctx.DoubleType(), ctx.DoubleType()}, false)
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maxAlign := int64(targetData.ABITypeAlignment(complex128Type))
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for _, heapalloc := range getUses(allocator) {
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logAllocs := printAllocs != nil && printAllocs.MatchString(heapalloc.InstructionParent().Parent().Name())
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if heapalloc.Operand(0).IsAConstantInt().IsNil() {
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@@ -90,21 +94,14 @@ func OptimizeAllocs(mod llvm.Module, printAllocs *regexp.Regexp, maxStackAlloc u
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}
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// The pointer value does not escape.
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// Determine the appropriate alignment of the alloca. The size of the
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// allocation gives us a hint what the alignment should be.
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var alignment int
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if size%2 != 0 {
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alignment = 1
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} else if size%4 != 0 {
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alignment = 2
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} else if size%8 != 0 {
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alignment = 4
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} else {
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alignment = 8
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}
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if pointerAlignment := targetData.ABITypeAlignment(ptrType); pointerAlignment < alignment {
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// Use min(alignment, alignof(void*)) as the alignment.
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alignment = pointerAlignment
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// Determine the appropriate alignment of the alloca.
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attr := heapalloc.GetCallSiteEnumAttribute(0, llvm.AttributeKindID("align"))
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alignment := int(maxAlign)
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if !attr.IsNil() {
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// 'align' return value attribute is set, so use it.
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// This is basically always the case, but to be sure we'll default
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// to maxAlign if it isn't.
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alignment = int(attr.GetEnumValue())
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}
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// Insert alloca in the entry block. Do it here so that mem2reg can
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Vendored
+23
-8
@@ -7,7 +7,7 @@ declare nonnull ptr @runtime.alloc(i32, ptr)
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; Test allocating a single int (i32) that should be allocated on the stack.
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define void @testInt() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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store i32 5, ptr %alloc
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ret void
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}
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@@ -15,7 +15,7 @@ define void @testInt() {
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; Test allocating an array of 3 i16 values that should be allocated on the
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; stack.
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define i16 @testArray() {
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%alloc = call ptr @runtime.alloc(i32 6, ptr null)
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%alloc = call align 2 ptr @runtime.alloc(i32 6, ptr null)
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%alloc.1 = getelementptr i16, ptr %alloc, i32 1
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store i16 5, ptr %alloc.1
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%alloc.2 = getelementptr i16, ptr %alloc, i32 2
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@@ -23,30 +23,45 @@ define i16 @testArray() {
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ret i16 %val
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}
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; Test allocating objects with an unknown alignment.
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define void @testUnknownAlign() {
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%alloc32 = call ptr @runtime.alloc(i32 32, ptr null)
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store i8 5, ptr %alloc32
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%alloc24 = call ptr @runtime.alloc(i32 24, ptr null)
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store i16 5, ptr %alloc24
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%alloc12 = call ptr @runtime.alloc(i32 12, ptr null)
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store i16 5, ptr %alloc12
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%alloc6 = call ptr @runtime.alloc(i32 6, ptr null)
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store i16 5, ptr %alloc6
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%alloc3 = call ptr @runtime.alloc(i32 3, ptr null)
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store i16 5, ptr %alloc3
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ret void
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}
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; Call a function that will let the pointer escape, so the heap-to-stack
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; transform shouldn't be applied.
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define void @testEscapingCall() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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%val = call ptr @escapeIntPtr(ptr %alloc)
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ret void
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}
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define void @testEscapingCall2() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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%val = call ptr @escapeIntPtrSometimes(ptr %alloc, ptr %alloc)
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ret void
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}
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; Call a function that doesn't let the pointer escape.
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define void @testNonEscapingCall() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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%val = call ptr @noescapeIntPtr(ptr %alloc)
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ret void
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}
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; Return the allocated value, which lets it escape.
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define ptr @testEscapingReturn() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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ret ptr %alloc
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}
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@@ -55,7 +70,7 @@ define void @testNonEscapingLoop() {
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entry:
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br label %loop
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loop:
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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%ptr = call ptr @noescapeIntPtr(ptr %alloc)
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%result = icmp eq ptr null, %ptr
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br i1 %result, label %loop, label %end
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@@ -65,7 +80,7 @@ end:
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; Test a zero-sized allocation.
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define void @testZeroSizedAlloc() {
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%alloc = call ptr @runtime.alloc(i32 0, ptr null)
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%alloc = call align 1 ptr @runtime.alloc(i32 0, ptr null)
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%ptr = call ptr @noescapeIntPtr(ptr %alloc)
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ret void
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}
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Vendored
+22
-3
@@ -22,14 +22,33 @@ define i16 @testArray() {
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ret i16 %val
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}
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define void @testUnknownAlign() {
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%stackalloc4 = alloca [32 x i8], align 8
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%stackalloc3 = alloca [24 x i8], align 8
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%stackalloc2 = alloca [12 x i8], align 8
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%stackalloc1 = alloca [6 x i8], align 8
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%stackalloc = alloca [3 x i8], align 8
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store [32 x i8] zeroinitializer, ptr %stackalloc4, align 8
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store i8 5, ptr %stackalloc4, align 1
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store [24 x i8] zeroinitializer, ptr %stackalloc3, align 8
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store i16 5, ptr %stackalloc3, align 2
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store [12 x i8] zeroinitializer, ptr %stackalloc2, align 8
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store i16 5, ptr %stackalloc2, align 2
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store [6 x i8] zeroinitializer, ptr %stackalloc1, align 8
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store i16 5, ptr %stackalloc1, align 2
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store [3 x i8] zeroinitializer, ptr %stackalloc, align 8
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store i16 5, ptr %stackalloc, align 2
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ret void
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}
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define void @testEscapingCall() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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%val = call ptr @escapeIntPtr(ptr %alloc)
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ret void
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}
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define void @testEscapingCall2() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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%val = call ptr @escapeIntPtrSometimes(ptr %alloc, ptr %alloc)
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ret void
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}
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@@ -42,7 +61,7 @@ define void @testNonEscapingCall() {
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}
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define ptr @testEscapingReturn() {
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%alloc = call ptr @runtime.alloc(i32 4, ptr null)
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%alloc = call align 4 ptr @runtime.alloc(i32 4, ptr null)
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ret ptr %alloc
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}
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