111 lines
4.4 KiB
LLVM
111 lines
4.4 KiB
LLVM
; RUN: opt %loadPolly -polly-parallel -polly-parallel-force -polly-ast -analyze < %s | FileCheck %s -check-prefix=AST
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; RUN: opt %loadPolly -polly-parallel -polly-parallel-force -polly-codegen -S -verify-dom-info < %s | FileCheck %s -check-prefix=IR
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; RUN: opt %loadPolly -polly-parallel -polly-parallel-force -polly-import-jscop -polly-ast -analyze < %s | FileCheck %s -check-prefix=AST-STRIDE4
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; RUN: opt %loadPolly -polly-parallel -polly-parallel-force -polly-import-jscop -polly-codegen -S < %s | FileCheck %s -check-prefix=IR-STRIDE4
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; This extensive test case tests the creation of the full set of OpenMP calls
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; as well as the subfunction creation using a trivial loop as example.
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; #define N 1024
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; float A[N];
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;
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; void single_parallel_loop(void) {
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; for (long i = 0; i < N; i++)
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; A[i] = 1;
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; }
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; AST: #pragma simd
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; AST: #pragma omp parallel for
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; AST: for (int c0 = 0; c0 <= 1023; c0 += 1)
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; AST: Stmt_S(c0);
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; AST-STRIDE4: #pragma omp parallel for
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; AST-STRIDE4: for (int c0 = 0; c0 <= 1023; c0 += 4)
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; AST-STRIDE4: #pragma simd
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; AST-STRIDE4: for (int c1 = c0; c1 <= c0 + 3; c1 += 1)
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; AST-STRIDE4: Stmt_S(c1);
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; IR-LABEL: single_parallel_loop()
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; IR-NEXT: entry
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; IR-NEXT: %polly.par.userContext = alloca
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; IR-LABEL: polly.parallel.for:
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; IR-NEXT: %polly.par.userContext1 = bitcast {}* %polly.par.userContext to i8*
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; IR-NEXT: call void @GOMP_parallel_loop_runtime_start(void (i8*)* @single_parallel_loop_polly_subfn, i8* %polly.par.userContext1, i32 0, i64 0, i64 1024, i64 1)
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; IR-NEXT: call void @single_parallel_loop_polly_subfn(i8* %polly.par.userContext1)
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; IR-NEXT: call void @GOMP_parallel_end()
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; IR-NEXT: br label %polly.exiting
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; IR: define internal void @single_parallel_loop_polly_subfn(i8* %polly.par.userContext) #1
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; IR-LABEL: polly.par.setup:
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; IR-NEXT: %polly.par.LBPtr = alloca i64
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; IR-NEXT: %polly.par.UBPtr = alloca i64
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; IR-NEXT: %polly.par.userContext1 =
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; IR: br label %polly.par.checkNext
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; IR-LABEL: polly.par.exit:
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; IR-NEXT: call void @GOMP_loop_end_nowait()
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; IR-NEXT: ret void
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; IR-LABEL: polly.par.checkNext:
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; IR-NEXT: %[[parnext:[._a-zA-Z0-9]*]] = call i8 @GOMP_loop_runtime_next(i64* %polly.par.LBPtr, i64* %polly.par.UBPtr)
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; IR-NEXT: %[[cmp:[._a-zA-Z0-9]*]] = icmp ne i8 %[[parnext]], 0
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; IR-NEXT: br i1 %[[cmp]], label %polly.par.loadIVBounds, label %polly.par.exit
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; IR-LABEL: polly.par.loadIVBounds:
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; IR-NEXT: %polly.par.LB = load i64, i64* %polly.par.LBPtr
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; IR-NEXT: %polly.par.UB = load i64, i64* %polly.par.UBPtr
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; IR-NEXT: %polly.par.UBAdjusted = sub i64 %polly.par.UB, 1
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; IR-NEXT: br label %polly.loop_preheader
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; IR-LABEL: polly.loop_exit:
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; IR-NEXT: br label %polly.par.checkNext
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; IR-LABEL: polly.loop_header:
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; IR-NEXT: %polly.indvar = phi i64 [ %polly.par.LB, %polly.loop_preheader ], [ %polly.indvar_next, %polly.stmt.S ]
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; IR-NEXT: br label %polly.stmt.S
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; IR-LABEL: polly.stmt.S:
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; IR-NEXT: %[[gep:[._a-zA-Z0-9]*]] = getelementptr [1024 x float], [1024 x float]* {{.*}}, i64 0, i64 %polly.indvar
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; IR-NEXT: store float 1.000000e+00, float* %[[gep]]
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; IR-NEXT: %polly.indvar_next = add nsw i64 %polly.indvar, 1
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; IR-NEXT: %polly.loop_cond = icmp sle i64 %polly.indvar_next, %polly.par.UBAdjusted
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; IR-NEXT: br i1 %polly.loop_cond, label %polly.loop_header, label %polly.loop_exit
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; IR-LABEL: polly.loop_preheader:
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; IR-NEXT: br label %polly.loop_header
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; IR: attributes #1 = { "polly.skip.fn" }
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; IR-STRIDE4: call void @GOMP_parallel_loop_runtime_start(void (i8*)* @single_parallel_loop_polly_subfn, i8* %polly.par.userContext1, i32 0, i64 0, i64 1024, i64 4)
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; IR-STRIDE4: add nsw i64 %polly.indvar, 3
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; IR-STRIDE4: %polly.indvar_next = add nsw i64 %polly.indvar, 4
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; IR-STRIDE4 %polly.adjust_ub = sub i64 %polly.par.UBAdjusted, 4
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target datalayout = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128-n8:16:32:64"
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@A = common global [1024 x float] zeroinitializer, align 16
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define void @single_parallel_loop() nounwind {
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entry:
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br label %for.i
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for.i:
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%indvar = phi i64 [ %indvar.next, %for.inc], [ 0, %entry ]
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%scevgep = getelementptr [1024 x float], [1024 x float]* @A, i64 0, i64 %indvar
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%exitcond = icmp ne i64 %indvar, 1024
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br i1 %exitcond, label %S, label %exit
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S:
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store float 1.0, float* %scevgep
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br label %for.inc
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for.inc:
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%indvar.next = add i64 %indvar, 1
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br label %for.i
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exit:
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ret void
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}
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