forked from OSchip/llvm-project
121 lines
4.5 KiB
LLVM
121 lines
4.5 KiB
LLVM
; RUN: opt %loadPolly -polly-stmt-granularity=bb -polly-print-delicm -disable-output < %s | FileCheck %s -match-full-lines
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;
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; Reduction over parametric number of elements and a loopguard if the
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; reduction loop is not executed at all, such that A[j] is also not accessed.
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; Reduction variable promoted to register.
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;
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; void func(double *A) {
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; for (int j = 0; j < 2; j += 1) { /* outer */
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; if (i > 0) {
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; double phi = A[j];
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; for (int i = 0; i < n; i += 1) /* reduction */
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; phi += 4.2;
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; A[j] = phi;
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; }
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; }
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; }
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;
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define void @func(i32 %n, double* noalias nonnull %A) {
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entry:
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br label %outer.preheader
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outer.preheader:
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br label %outer.for
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outer.for:
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%j = phi i32 [0, %outer.preheader], [%j.inc, %outer.inc]
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%j.cmp = icmp slt i32 %j, 2
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br i1 %j.cmp, label %reduction.guard, label %outer.exit
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reduction.guard:
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%guard.cmp = icmp sle i32 %n,0
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br i1 %guard.cmp, label %reduction.skip, label %reduction.preheader
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reduction.preheader:
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%A_idx = getelementptr inbounds double, double* %A, i32 %j
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%init = load double, double* %A_idx
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br label %reduction.for
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reduction.for:
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%i = phi i32 [0, %reduction.preheader], [%i.inc, %reduction.inc]
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%phi = phi double [%init, %reduction.preheader], [%add, %reduction.inc]
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br label %body
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body:
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%add = fadd double %phi, 4.2
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br label %reduction.inc
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reduction.inc:
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%i.inc = add nuw nsw i32 %i, 1
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%i.cmp = icmp slt i32 %i.inc, %n
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br i1 %i.cmp, label %reduction.for, label %reduction.exit
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reduction.exit:
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store double %add, double* %A_idx
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br label %reduction.skip
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reduction.skip:
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br label %outer.inc
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outer.inc:
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%j.inc = add nuw nsw i32 %j, 1
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br label %outer.for
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outer.exit:
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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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; CHECK: Statistics {
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; CHECK: Compatible overwrites: 1
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; CHECK: Overwrites mapped to: 1
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; CHECK: Value scalars mapped: 2
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; CHECK: PHI scalars mapped: 1
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; CHECK: }
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; CHECK: After accesses {
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; CHECK-NEXT: Stmt_reduction_preheader
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; CHECK-NEXT: ReadAccess := [Reduction Type: NONE] [Scalar: 0]
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; CHECK-NEXT: [n] -> { Stmt_reduction_preheader[i0] -> MemRef_A[i0] };
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; CHECK-NEXT: MustWriteAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_reduction_preheader[i0] -> MemRef_phi__phi[] };
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; CHECK-NEXT: new: [n] -> { Stmt_reduction_preheader[i0] -> MemRef_A[i0] };
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; CHECK-NEXT: Stmt_reduction_for
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; CHECK-NEXT: ReadAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_reduction_for[i0, i1] -> MemRef_phi__phi[] };
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; CHECK-NEXT: new: [n] -> { Stmt_reduction_for[i0, i1] -> MemRef_A[i0] };
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; CHECK-NEXT: MustWriteAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_reduction_for[i0, i1] -> MemRef_phi[] };
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; CHECK-NEXT: new: [n] -> { Stmt_reduction_for[i0, i1] -> MemRef_A[i0] };
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; CHECK-NEXT: Stmt_body
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; CHECK-NEXT: MustWriteAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_body[i0, i1] -> MemRef_add[] };
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; CHECK-NEXT: new: [n] -> { Stmt_body[i0, i1] -> MemRef_A[i0] };
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; CHECK-NEXT: ReadAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_body[i0, i1] -> MemRef_phi[] };
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; CHECK-NEXT: new: [n] -> { Stmt_body[i0, i1] -> MemRef_A[i0] };
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; CHECK-NEXT: Stmt_reduction_inc
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; CHECK-NEXT: ReadAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_reduction_inc[i0, i1] -> MemRef_add[] };
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; CHECK-NEXT: new: [n] -> { Stmt_reduction_inc[i0, i1] -> MemRef_A[i0] };
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; CHECK-NEXT: MustWriteAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_reduction_inc[i0, i1] -> MemRef_phi__phi[] };
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; CHECK-NEXT: new: [n] -> { Stmt_reduction_inc[i0, i1] -> MemRef_A[i0] : i1 <= -2 + n };
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; CHECK-NEXT: Stmt_reduction_exit
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; CHECK-NEXT: MustWriteAccess := [Reduction Type: NONE] [Scalar: 0]
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; CHECK-NEXT: [n] -> { Stmt_reduction_exit[i0] -> MemRef_A[i0] };
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; CHECK-NEXT: ReadAccess := [Reduction Type: NONE] [Scalar: 1]
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; CHECK-NEXT: [n] -> { Stmt_reduction_exit[i0] -> MemRef_add[] };
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; CHECK-NEXT: new: [n] -> { Stmt_reduction_exit[i0] -> MemRef_A[i0] };
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; CHECK-NEXT: }
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