DecompObject.OtherOffset;
// If the GEP has no variable indices, we know the precise offset
- // from the base, then use it. If the GEP has variable indices, we're in
- // a bit more trouble: we can't count on the constant offsets that come
- // from non-struct sources, since these can be "rewound" by a negative
- // variable offset. So use only offsets that came from structs.
+ // from the base, then use it. If the GEP has variable indices,
+ // we can't get exact GEP offset to identify pointer alias. So return
+ // false in that case.
+ if (!DecompGEP.VarIndices.empty())
+ return false;
int64_t GEPBaseOffset = DecompGEP.StructOffset;
- if (DecompGEP.VarIndices.empty())
- GEPBaseOffset += DecompGEP.OtherOffset;
+ GEPBaseOffset += DecompGEP.OtherOffset;
return (GEPBaseOffset >= ObjectBaseOffset + (int64_t)ObjectAccessSize);
}
; CHECK-DAG: MayAlias: i32* %a2.0, i32* %r2.1i
; CHECK-DAG: NoAlias: i32* %a1, i32* %r2.0
; CHECK-DAG: NoAlias: i32* %a1, i32* %r2.1
-; CHECK-DAG: NoAlias: i32* %a1, i32* %r2.i
-; CHECK-DAG: NoAlias: i32* %a1, i32* %r2.1i
+; CHECK-DAG: MayAlias: i32* %a1, i32* %r2.i
+; CHECK-DAG: MayAlias: i32* %a1, i32* %r2.1i
%complex = type { i32, i32, [4 x i32] }
define void @complex1(i32 %i) {
%alloca = alloca %complex
}
; CHECK-LABEL: Function: complex2:
-; CHECK-DAG: NoAlias: i32* %alloca, i32* %p120
-; CHECK-DAG: NoAlias: i32* %alloca, i32* %pi20
-; CHECK-DAG: NoAlias: i32* %alloca, i32* %pij1
+; CHECK-DAG: NoAlias: i32* %alloca, i32* %p120
+; CHECK-DAG: MayAlias: i32* %alloca, i32* %pi20
+; CHECK-DAG: MayAlias: i32* %alloca, i32* %pij1
; CHECK-DAG: MayAlias: i32* %a3, i32* %pij1
%inner = type { i32, i32 }
%outer = type { i32, i32, [10 x %inner] }
ret void
}
+; CHECK-LABEL: Function: pointer_offset:
+; CHECK-DAG: MayAlias: i32** %add.ptr, i32** %p1
+; CHECK-DAG: MayAlias: i32** %add.ptr, i32** %q2
+%struct.X = type { i32*, i32* }
+define i32 @pointer_offset(i32 signext %i, i32 signext %j, i32 zeroext %off) {
+entry:
+ %i.addr = alloca i32
+ %j.addr = alloca i32
+ %x = alloca %struct.X
+ store i32 %i, i32* %i.addr
+ store i32 %j, i32* %j.addr
+ %0 = bitcast %struct.X* %x to i8*
+ %p1 = getelementptr inbounds %struct.X, %struct.X* %x, i32 0, i32 0
+ store i32* %i.addr, i32** %p1
+ %q2 = getelementptr inbounds %struct.X, %struct.X* %x, i32 0, i32 1
+ store i32* %j.addr, i32** %q2
+ %add.ptr = getelementptr inbounds i32*, i32** %q2, i32 %off
+ %1 = load i32*, i32** %add.ptr
+ %2 = load i32, i32* %1
+ ret i32 %2
+}