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https://github.com/c64scene-ar/llvm-6502.git
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12b5fa5f6e
Avoid running forever by checking we are not reassociating an expression into the same form. Tested with @avoid_infinite_loops in nary-add.ll git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@237269 91177308-0d34-0410-b5e6-96231b3b80d8
210 lines
4.4 KiB
LLVM
210 lines
4.4 KiB
LLVM
; RUN: opt < %s -nary-reassociate -S | FileCheck %s
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target datalayout = "e-i64:64-v16:16-v32:32-n16:32:64"
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declare void @foo(i32)
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; foo(a + c);
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; foo((a + (b + c));
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; =>
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; t = a + c;
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; foo(t);
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; foo(t + b);
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define void @left_reassociate(i32 %a, i32 %b, i32 %c) {
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; CHECK-LABEL: @left_reassociate(
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%1 = add i32 %a, %c
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; CHECK: [[BASE:%[a-zA-Z0-9]+]] = add i32 %a, %c
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call void @foo(i32 %1)
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%2 = add i32 %b, %c
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%3 = add i32 %a, %2
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; CHECK: add i32 [[BASE]], %b
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call void @foo(i32 %3)
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ret void
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}
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; foo(a + c);
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; foo((a + b) + c);
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; =>
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; t = a + c;
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; foo(t);
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; foo(t + b);
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define void @right_reassociate(i32 %a, i32 %b, i32 %c) {
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; CHECK-LABEL: @right_reassociate(
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%1 = add i32 %a, %c
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; CHECK: [[BASE:%[a-zA-Z0-9]+]] = add i32 %a, %c
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call void @foo(i32 %1)
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%2 = add i32 %a, %b
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%3 = add i32 %2, %c
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; CHECK: add i32 [[BASE]], %b
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call void @foo(i32 %3)
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ret void
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}
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; t1 = a + c;
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; foo(t1);
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; t2 = a + b;
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; foo(t2);
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; t3 = t2 + c;
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; foo(t3);
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;
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; Do not rewrite t3 into t1 + b because t2 is used elsewhere and is likely free.
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define void @no_reassociate(i32 %a, i32 %b, i32 %c) {
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; CHECK-LABEL: @no_reassociate(
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%1 = add i32 %a, %c
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; CHECK: add i32 %a, %c
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call void @foo(i32 %1)
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%2 = add i32 %a, %b
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; CHECK: add i32 %a, %b
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call void @foo(i32 %2)
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%3 = add i32 %2, %c
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; CHECK: add i32 %2, %c
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call void @foo(i32 %3)
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ret void
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}
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; if (p1)
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; foo(a + c);
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; if (p2)
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; foo(a + c);
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; if (p3)
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; foo((a + b) + c);
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;
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; No action because (a + c) does not dominate ((a + b) + c).
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define void @conditional(i1 %p1, i1 %p2, i1 %p3, i32 %a, i32 %b, i32 %c) {
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; CHECK-LABEL: @conditional(
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entry:
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br i1 %p1, label %then1, label %branch1
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then1:
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%0 = add i32 %a, %c
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; CHECK: add i32 %a, %c
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call void @foo(i32 %0)
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br label %branch1
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branch1:
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br i1 %p2, label %then2, label %branch2
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then2:
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%1 = add i32 %a, %c
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; CHECK: add i32 %a, %c
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call void @foo(i32 %1)
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br label %branch2
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branch2:
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br i1 %p3, label %then3, label %return
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then3:
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%2 = add i32 %a, %b
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; CHECK: %2 = add i32 %a, %b
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%3 = add i32 %2, %c
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; CHECK: add i32 %2, %c
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call void @foo(i32 %3)
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br label %return
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return:
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ret void
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}
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; This test involves more conditional reassociation candidates. It exercises
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; the stack optimization in tryReassociatedAdd that pops the candidates that
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; do not dominate the current instruction.
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;
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; def1
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; cond1
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; / \
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; / \
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; cond2 use2
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; / \
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; / \
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; def2 def3
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; cond3
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; / \
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; / \
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; def4 use1
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;
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; NaryReassociate should match use1 with def3, and use2 with def1.
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define void @conditional2(i32 %a, i32 %b, i32 %c, i1 %cond1, i1 %cond2, i1 %cond3) {
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entry:
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%def1 = add i32 %a, %b
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br i1 %cond1, label %bb1, label %bb6
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bb1:
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br i1 %cond2, label %bb2, label %bb3
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bb2:
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%def2 = add i32 %a, %b
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call void @foo(i32 %def2)
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ret void
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bb3:
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%def3 = add i32 %a, %b
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br i1 %cond3, label %bb4, label %bb5
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bb4:
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%def4 = add i32 %a, %b
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call void @foo(i32 %def4)
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ret void
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bb5:
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%0 = add i32 %a, %c
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%1 = add i32 %0, %b
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; CHECK: [[t1:%[0-9]+]] = add i32 %def3, %c
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call void @foo(i32 %1) ; foo((a + c) + b);
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; CHECK-NEXT: call void @foo(i32 [[t1]])
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ret void
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bb6:
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%2 = add i32 %a, %c
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%3 = add i32 %2, %b
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; CHECK: [[t2:%[0-9]+]] = add i32 %def1, %c
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call void @foo(i32 %3) ; foo((a + c) + b);
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; CHECK-NEXT: call void @foo(i32 [[t2]])
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ret void
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}
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; foo((a + b) + c)
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; foo(((a + d) + b) + c)
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; =>
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; t = (a + b) + c;
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; foo(t);
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; foo(t + d);
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define void @quaternary(i32 %a, i32 %b, i32 %c, i32 %d) {
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; CHECK-LABEL: @quaternary(
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%1 = add i32 %a, %b
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%2 = add i32 %1, %c
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call void @foo(i32 %2)
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; CHECK: call void @foo(i32 [[TMP1:%[a-zA-Z0-9]]])
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%3 = add i32 %a, %d
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%4 = add i32 %3, %b
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%5 = add i32 %4, %c
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; CHECK: [[TMP2:%[a-zA-Z0-9]]] = add i32 [[TMP1]], %d
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call void @foo(i32 %5)
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; CHECK: call void @foo(i32 [[TMP2]]
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ret void
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}
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define void @iterative(i32 %a, i32 %b, i32 %c) {
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%ab = add i32 %a, %b
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%abc = add i32 %ab, %c
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call void @foo(i32 %abc)
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%ab2 = add i32 %ab, %b
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%ab2c = add i32 %ab2, %c
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; CHECK: %ab2c = add i32 %abc, %b
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call void @foo(i32 %ab2c)
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; CHECK-NEXT: call void @foo(i32 %ab2c)
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%ab3 = add i32 %ab2, %b
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%ab3c = add i32 %ab3, %c
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; CHECK-NEXT: %ab3c = add i32 %ab2c, %b
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call void @foo(i32 %ab3c)
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; CHECK-NEXT: call void @foo(i32 %ab3c)
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ret void
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}
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define void @avoid_infinite_loop(i32 %a, i32 %b) {
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; CHECK-LABEL: @avoid_infinite_loop
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%ab = add i32 %a, %b
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; CHECK-NEXT: %ab
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%ab2 = add i32 %ab, %b
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; CHECK-NEXT: %ab2
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call void @foo(i32 %ab2)
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; CHECK-NEXT: @foo(i32 %ab2)
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ret void
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}
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