1; RUN: opt %loadPolly -polly-opt-isl -polly-pattern-matching-based-opts=true -polly-target-throughput-vector-fma=1 -polly-target-latency-vector-fma=8 -polly-target-1st-cache-level-associativity=8 -polly-target-2nd-cache-level-associativity=8 -polly-target-1st-cache-level-size=32768 -polly-target-2nd-cache-level-size=262144 -polly-ast -analyze < %s | FileCheck %s 2; 3; /* C := alpha*A*B + beta*C */ 4; /* _PB_NK % Kc != 0 */ 5; for (i = 0; i < _PB_NI; i++) 6; for (j = 0; j < _PB_NJ; j++) 7; { 8; C[i][j] *= beta; 9; for (k = 0; k < _PB_NK; ++k) 10; C[i][j] += alpha * A[i][k] * B[k][j]; 11; } 12; 13; CHECK: { 14; CHECK-NEXT: // 1st level tiling - Tiles 15; CHECK-NEXT: for (int c0 = 0; c0 <= 32; c0 += 1) 16; CHECK-NEXT: for (int c1 = 0; c1 <= 32; c1 += 1) { 17; CHECK-NEXT: // 1st level tiling - Points 18; CHECK-NEXT: for (int c2 = 0; c2 <= 31; c2 += 1) 19; CHECK-NEXT: for (int c3 = 0; c3 <= 31; c3 += 1) 20; CHECK-NEXT: Stmt_bb9(32 * c0 + c2, 32 * c1 + c3); 21; CHECK-NEXT: } 22; CHECK-NEXT: // 1st level tiling - Tiles 23; CHECK-NEXT: for (int c1 = 0; c1 <= 3; c1 += 1) { 24; CHECK-NEXT: for (int c3 = 0; c3 <= 1055; c3 += 1) 25; CHECK-NEXT: for (int c4 = 256 * c1; c4 <= min(1022, 256 * c1 + 255); c4 += 1) 26; CHECK-NEXT: CopyStmt_0(0, c3, c4); 27; CHECK-NEXT: for (int c2 = 0; c2 <= 10; c2 += 1) { 28; CHECK-NEXT: for (int c3 = 96 * c2; c3 <= 96 * c2 + 95; c3 += 1) 29; CHECK-NEXT: for (int c5 = 256 * c1; c5 <= min(1022, 256 * c1 + 255); c5 += 1) 30; CHECK-NEXT: CopyStmt_1(c3, 0, c5); 31; CHECK-NEXT: // 1st level tiling - Points 32; CHECK-NEXT: // Register tiling - Tiles 33; CHECK-NEXT: for (int c3 = 0; c3 <= 131; c3 += 1) 34; CHECK-NEXT: for (int c4 = 0; c4 <= 23; c4 += 1) 35; CHECK-NEXT: for (int c5 = 0; c5 <= min(255, -256 * c1 + 1022); c5 += 1) { 36; CHECK-NEXT: // Register tiling - Points 37; CHECK-NEXT: // 1st level tiling - Tiles 38; CHECK-NEXT: // 1st level tiling - Points 39; CHECK-NEXT: { 40; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3, 256 * c1 + c5); 41; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3 + 1, 256 * c1 + c5); 42; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3 + 2, 256 * c1 + c5); 43; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3 + 3, 256 * c1 + c5); 44; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3 + 4, 256 * c1 + c5); 45; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3 + 5, 256 * c1 + c5); 46; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3 + 6, 256 * c1 + c5); 47; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4, 8 * c3 + 7, 256 * c1 + c5); 48; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3, 256 * c1 + c5); 49; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3 + 1, 256 * c1 + c5); 50; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3 + 2, 256 * c1 + c5); 51; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3 + 3, 256 * c1 + c5); 52; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3 + 4, 256 * c1 + c5); 53; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3 + 5, 256 * c1 + c5); 54; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3 + 6, 256 * c1 + c5); 55; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 1, 8 * c3 + 7, 256 * c1 + c5); 56; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3, 256 * c1 + c5); 57; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3 + 1, 256 * c1 + c5); 58; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3 + 2, 256 * c1 + c5); 59; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3 + 3, 256 * c1 + c5); 60; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3 + 4, 256 * c1 + c5); 61; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3 + 5, 256 * c1 + c5); 62; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3 + 6, 256 * c1 + c5); 63; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 2, 8 * c3 + 7, 256 * c1 + c5); 64; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3, 256 * c1 + c5); 65; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3 + 1, 256 * c1 + c5); 66; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3 + 2, 256 * c1 + c5); 67; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3 + 3, 256 * c1 + c5); 68; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3 + 4, 256 * c1 + c5); 69; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3 + 5, 256 * c1 + c5); 70; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3 + 6, 256 * c1 + c5); 71; CHECK-NEXT: Stmt_Copy_0(96 * c2 + 4 * c4 + 3, 8 * c3 + 7, 256 * c1 + c5); 72; CHECK-NEXT: } 73; CHECK-NEXT: } 74; CHECK-NEXT: } 75; CHECK-NEXT: } 76; CHECK-NEXT: } 77; 78target datalayout = "e-m:e-i64:64-f80:128-n8:16:32:64-S128" 79target triple = "x86_64-unknown-unknown" 80 81define internal void @kernel_gemm(i32 %arg, i32 %arg1, i32 %arg2, double %arg3, double %arg4, [1056 x double]* %arg5, [1023 x double]* %arg6, [1056 x double]* %arg7) #0 { 82bb: 83 br label %bb8 84 85bb8: ; preds = %bb29, %bb 86 %tmp = phi i64 [ 0, %bb ], [ %tmp30, %bb29 ] 87 br label %bb9 88 89bb9: ; preds = %bb26, %bb8 90 %tmp10 = phi i64 [ 0, %bb8 ], [ %tmp27, %bb26 ] 91 %tmp11 = getelementptr inbounds [1056 x double], [1056 x double]* %arg5, i64 %tmp, i64 %tmp10 92 %tmp12 = load double, double* %tmp11, align 8 93 %tmp13 = fmul double %tmp12, %arg4 94 store double %tmp13, double* %tmp11, align 8 95 br label %Copy_0 96 97Copy_0: ; preds = %Copy_0, %bb9 98 %tmp15 = phi i64 [ 0, %bb9 ], [ %tmp24, %Copy_0 ] 99 %tmp16 = getelementptr inbounds [1023 x double], [1023 x double]* %arg6, i64 %tmp, i64 %tmp15 100 %tmp17 = load double, double* %tmp16, align 8 101 %tmp18 = fmul double %tmp17, %arg3 102 %tmp19 = getelementptr inbounds [1056 x double], [1056 x double]* %arg7, i64 %tmp15, i64 %tmp10 103 %tmp20 = load double, double* %tmp19, align 8 104 %tmp21 = fmul double %tmp18, %tmp20 105 %tmp22 = load double, double* %tmp11, align 8 106 %tmp23 = fadd double %tmp22, %tmp21 107 store double %tmp23, double* %tmp11, align 8 108 %tmp24 = add nuw nsw i64 %tmp15, 1 109 %tmp25 = icmp ne i64 %tmp24, 1023 110 br i1 %tmp25, label %Copy_0, label %bb26 111 112bb26: ; preds = %Copy_0 113 %tmp27 = add nuw nsw i64 %tmp10, 1 114 %tmp28 = icmp ne i64 %tmp27, 1056 115 br i1 %tmp28, label %bb9, label %bb29 116 117bb29: ; preds = %bb26 118 %tmp30 = add nuw nsw i64 %tmp, 1 119 %tmp31 = icmp ne i64 %tmp30, 1056 120 br i1 %tmp31, label %bb8, label %bb32 121 122bb32: ; preds = %bb29 123 ret void 124} 125 126attributes #0 = { nounwind uwtable "target-cpu"="x86-64" "target-features"="+aes,+avx,+cmov,+cx16,+fxsr,+mmx,+pclmul,+popcnt,+sse,+sse2,+sse3,+sse4.1,+sse4.2,+ssse3,+x87,+xsave,+xsaveopt" } 127