1; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
2; RUN: opt -enable-vplan-native-path -loop-vectorize -S %s | FileCheck %s
3
4; Make sure phi nodes are generated correctly, even if the use list order of
5; the predecessors in the scalar code does not match the order in the generated
6; vector blocks.
7
8; Test from PR45958.
9
10define void @test([2000 x i32]* %src, i64 %n) {
11; CHECK-LABEL: @test(
12; CHECK-NEXT:  entry:
13; CHECK-NEXT:    [[MIN_ITERS_CHECK:%.*]] = icmp ult i64 [[N:%.*]], 4
14; CHECK-NEXT:    br i1 [[MIN_ITERS_CHECK]], label [[SCALAR_PH:%.*]], label [[VECTOR_PH:%.*]]
15; CHECK:       vector.ph:
16; CHECK-NEXT:    [[N_MOD_VF:%.*]] = urem i64 [[N]], 4
17; CHECK-NEXT:    [[N_VEC:%.*]] = sub i64 [[N]], [[N_MOD_VF]]
18; CHECK-NEXT:    [[BROADCAST_SPLATINSERT:%.*]] = insertelement <4 x i64> poison, i64 [[N]], i32 0
19; CHECK-NEXT:    [[BROADCAST_SPLAT:%.*]] = shufflevector <4 x i64> [[BROADCAST_SPLATINSERT]], <4 x i64> poison, <4 x i32> zeroinitializer
20; CHECK-NEXT:    br label [[VECTOR_BODY:%.*]]
21; CHECK:       vector.body:
22; CHECK-NEXT:    [[INDEX:%.*]] = phi i64 [ 0, [[VECTOR_PH]] ], [ [[INDEX_NEXT:%.*]], [[LOOP_1_LATCH5:%.*]] ]
23; CHECK-NEXT:    [[VEC_IND:%.*]] = phi <4 x i64> [ <i64 0, i64 1, i64 2, i64 3>, [[VECTOR_PH]] ], [ [[VEC_IND_NEXT:%.*]], [[LOOP_1_LATCH5]] ]
24; CHECK-NEXT:    br label [[LOOP_2_HEADER1:%.*]]
25; CHECK:       loop.2.header1:
26; CHECK-NEXT:    [[VEC_PHI:%.*]] = phi <4 x i64> [ zeroinitializer, [[VECTOR_BODY]] ], [ [[TMP5:%.*]], [[LOOP_2_LATCH4:%.*]] ]
27; CHECK-NEXT:    br label [[LOOP_32:%.*]]
28; CHECK:       loop.32:
29; CHECK-NEXT:    [[VEC_PHI3:%.*]] = phi <4 x i64> [ zeroinitializer, [[LOOP_2_HEADER1]] ], [ [[TMP2:%.*]], [[LOOP_32]] ]
30; CHECK-NEXT:    [[TMP0:%.*]] = getelementptr inbounds [2000 x i32], [2000 x i32]* [[SRC:%.*]], <4 x i64> [[VEC_IND]], <4 x i64> [[VEC_PHI3]]
31; CHECK-NEXT:    [[WIDE_MASKED_GATHER:%.*]] = call <4 x i32> @llvm.masked.gather.v4i32.v4p0i32(<4 x i32*> [[TMP0]], i32 4, <4 x i1> <i1 true, i1 true, i1 true, i1 true>, <4 x i32> undef)
32; CHECK-NEXT:    [[TMP1:%.*]] = mul nsw <4 x i32> [[WIDE_MASKED_GATHER]], <i32 10, i32 10, i32 10, i32 10>
33; CHECK-NEXT:    call void @llvm.masked.scatter.v4i32.v4p0i32(<4 x i32> [[TMP1]], <4 x i32*> [[TMP0]], i32 4, <4 x i1> <i1 true, i1 true, i1 true, i1 true>)
34; CHECK-NEXT:    [[TMP2]] = add nuw nsw <4 x i64> [[VEC_PHI3]], <i64 1, i64 1, i64 1, i64 1>
35; CHECK-NEXT:    [[TMP3:%.*]] = icmp eq <4 x i64> [[TMP2]], [[BROADCAST_SPLAT]]
36; CHECK-NEXT:    [[TMP4:%.*]] = extractelement <4 x i1> [[TMP3]], i32 0
37; CHECK-NEXT:    br i1 [[TMP4]], label [[LOOP_2_LATCH4]], label [[LOOP_32]]
38; CHECK:       loop.2.latch4:
39; CHECK-NEXT:    [[TMP5]] = add nuw nsw <4 x i64> [[VEC_PHI]], <i64 1, i64 1, i64 1, i64 1>
40; CHECK-NEXT:    [[TMP6:%.*]] = icmp eq <4 x i64> [[TMP5]], [[BROADCAST_SPLAT]]
41; CHECK-NEXT:    [[TMP7:%.*]] = extractelement <4 x i1> [[TMP6]], i32 0
42; CHECK-NEXT:    br i1 [[TMP7]], label [[LOOP_1_LATCH5]], label [[LOOP_2_HEADER1]]
43; CHECK:       loop.1.latch5:
44; CHECK-NEXT:    [[TMP8:%.*]] = add nuw nsw <4 x i64> [[VEC_IND]], <i64 1, i64 1, i64 1, i64 1>
45; CHECK-NEXT:    [[TMP9:%.*]] = icmp eq <4 x i64> [[TMP8]], [[BROADCAST_SPLAT]]
46; CHECK-NEXT:    [[INDEX_NEXT]] = add nuw i64 [[INDEX]], 4
47; CHECK-NEXT:    [[VEC_IND_NEXT]] = add <4 x i64> [[VEC_IND]], <i64 4, i64 4, i64 4, i64 4>
48; CHECK-NEXT:    [[TMP11:%.*]] = icmp eq i64 [[INDEX_NEXT]], [[N_VEC]]
49; CHECK-NEXT:    br i1 [[TMP11]], label [[MIDDLE_BLOCK:%.*]], label [[VECTOR_BODY]], [[LOOP0:!llvm.loop !.*]]
50; CHECK:       middle.block:
51; CHECK-NEXT:    [[CMP_N:%.*]] = icmp eq i64 [[N]], [[N_VEC]]
52; CHECK-NEXT:    br i1 [[CMP_N]], label [[EXIT:%.*]], label [[SCALAR_PH]]
53; CHECK:       scalar.ph:
54; CHECK-NEXT:    [[BC_RESUME_VAL:%.*]] = phi i64 [ [[N_VEC]], [[MIDDLE_BLOCK]] ], [ 0, [[ENTRY:%.*]] ]
55; CHECK-NEXT:    br label [[LOOP_1_HEADER:%.*]]
56; CHECK:       loop.1.header:
57; CHECK-NEXT:    [[IV_1:%.*]] = phi i64 [ [[BC_RESUME_VAL]], [[SCALAR_PH]] ], [ [[IV_1_NEXT:%.*]], [[LOOP_1_LATCH:%.*]] ]
58; CHECK-NEXT:    br label [[LOOP_2_HEADER:%.*]]
59; CHECK:       loop.2.header:
60; CHECK-NEXT:    [[IV_2:%.*]] = phi i64 [ 0, [[LOOP_1_HEADER]] ], [ [[IV_2_NEXT:%.*]], [[LOOP_2_LATCH:%.*]] ]
61; CHECK-NEXT:    br label [[LOOP_3:%.*]]
62; CHECK:       loop.3:
63; CHECK-NEXT:    [[IV_3:%.*]] = phi i64 [ 0, [[LOOP_2_HEADER]] ], [ [[IV_3_NEXT:%.*]], [[LOOP_3]] ]
64; CHECK-NEXT:    [[GEP_SRC:%.*]] = getelementptr inbounds [2000 x i32], [2000 x i32]* [[SRC]], i64 [[IV_1]], i64 [[IV_3]]
65; CHECK-NEXT:    [[L1:%.*]] = load i32, i32* [[GEP_SRC]], align 4
66; CHECK-NEXT:    [[MUL:%.*]] = mul nsw i32 [[L1]], 10
67; CHECK-NEXT:    store i32 [[MUL]], i32* [[GEP_SRC]], align 4
68; CHECK-NEXT:    [[IV_3_NEXT]] = add nuw nsw i64 [[IV_3]], 1
69; CHECK-NEXT:    [[EC_3:%.*]] = icmp eq i64 [[IV_3_NEXT]], [[N]]
70; CHECK-NEXT:    br i1 [[EC_3]], label [[LOOP_2_LATCH]], label [[LOOP_3]]
71; CHECK:       loop.2.latch:
72; CHECK-NEXT:    [[IV_2_NEXT]] = add nuw nsw i64 [[IV_2]], 1
73; CHECK-NEXT:    [[EC_2:%.*]] = icmp eq i64 [[IV_2_NEXT]], [[N]]
74; CHECK-NEXT:    br i1 [[EC_2]], label [[LOOP_1_LATCH]], label [[LOOP_2_HEADER]]
75; CHECK:       loop.1.latch:
76; CHECK-NEXT:    [[IV_1_NEXT]] = add nuw nsw i64 [[IV_1]], 1
77; CHECK-NEXT:    [[EC_1:%.*]] = icmp eq i64 [[IV_1_NEXT]], [[N]]
78; CHECK-NEXT:    br i1 [[EC_1]], label [[EXIT]], label [[LOOP_1_HEADER]], [[LOOP2:!llvm.loop !.*]]
79; CHECK:       exit:
80; CHECK-NEXT:    ret void
81;
82entry:
83  br label %loop.1.header
84
85loop.1.header:
86  %iv.1 = phi i64 [ 0, %entry ], [ %iv.1.next, %loop.1.latch ]
87  br label %loop.2.header
88
89loop.2.header:
90  %iv.2 = phi i64 [ 0, %loop.1.header ], [ %iv.2.next, %loop.2.latch ]
91  br label %loop.3
92
93loop.3:
94  %iv.3 = phi i64 [ 0, %loop.2.header ], [ %iv.3.next, %loop.3 ]
95  %gep.src = getelementptr inbounds [2000 x i32], [2000 x i32]* %src, i64 %iv.1, i64 %iv.3
96  %l1 = load i32, i32* %gep.src, align 4
97  %mul = mul nsw i32 %l1, 10
98  store i32 %mul, i32* %gep.src, align 4
99  %iv.3.next = add nuw nsw i64 %iv.3, 1
100  %ec.3 = icmp eq i64 %iv.3.next, %n
101  br i1 %ec.3, label %loop.2.latch, label %loop.3
102
103loop.2.latch:
104  %iv.2.next = add nuw nsw i64 %iv.2, 1
105  %ec.2 = icmp eq i64 %iv.2.next, %n
106  br i1 %ec.2, label %loop.1.latch, label %loop.2.header
107
108loop.1.latch:
109  %iv.1.next = add nuw nsw i64 %iv.1, 1
110  %ec.1 = icmp eq i64 %iv.1.next, %n
111  br i1 %ec.1, label %exit, label %loop.1.header, !llvm.loop !0
112
113exit:                                             ; preds = %loop.1.latch
114  ret void
115
116; uselistorder directives
117  uselistorder label %loop.3, { 1, 0 }
118  uselistorder label %loop.2.header, { 1, 0 }
119}
120
121!0 = distinct !{!0, !1, !2}
122!1 = !{!"llvm.loop.vectorize.width", i32 4}
123!2 = !{!"llvm.loop.vectorize.enable", i1 true}
124