1; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
2; RUN: opt < %s -loop-vectorize -mtriple=aarch64--linux-gnu -mattr=+neon -force-vector-width=2 -force-vector-interleave=1 \
3; RUN:   -prefer-predicate-over-epilogue=scalar-epilogue -S -o - | FileCheck %s
4; RUN: opt < %s -loop-vectorize -mtriple=aarch64--linux-gnu -mattr=+sve -force-vector-width=2 -force-vector-interleave=1 \
5; RUN:   -prefer-predicate-over-epilogue=scalar-epilogue -scalable-vectorization=on -S -o - | FileCheck --check-prefix=SVE %s
6
7define dso_local double @test(ptr nocapture noundef readonly %data, ptr nocapture noundef readonly %offset, i32 noundef %size) local_unnamed_addr {
8; CHECK-LABEL: @test(
9; CHECK-NEXT:  entry:
10; CHECK-NEXT:    [[CMP6:%.*]] = icmp sgt i32 [[SIZE:%.*]], 0
11; CHECK-NEXT:    br i1 [[CMP6]], label [[FOR_BODY_PREHEADER:%.*]], label [[FOR_COND_CLEANUP:%.*]]
12; CHECK:       for.body.preheader:
13; CHECK-NEXT:    [[WIDE_TRIP_COUNT:%.*]] = zext i32 [[SIZE]] to i64
14; CHECK-NEXT:    [[MIN_ITERS_CHECK:%.*]] = icmp ult i64 [[WIDE_TRIP_COUNT]], 2
15; CHECK-NEXT:    br i1 [[MIN_ITERS_CHECK]], label [[SCALAR_PH:%.*]], label [[VECTOR_PH:%.*]]
16; CHECK:       vector.ph:
17; CHECK-NEXT:    [[N_MOD_VF:%.*]] = urem i64 [[WIDE_TRIP_COUNT]], 2
18; CHECK-NEXT:    [[N_VEC:%.*]] = sub i64 [[WIDE_TRIP_COUNT]], [[N_MOD_VF]]
19; CHECK-NEXT:    br label [[VECTOR_BODY:%.*]]
20; CHECK:       vector.body:
21; CHECK-NEXT:    [[INDEX:%.*]] = phi i64 [ 0, [[VECTOR_PH]] ], [ [[INDEX_NEXT:%.*]], [[VECTOR_BODY]] ]
22; CHECK-NEXT:    [[VEC_PHI:%.*]] = phi <2 x double> [ <double 0.000000e+00, double -0.000000e+00>, [[VECTOR_PH]] ], [ [[TMP14:%.*]], [[VECTOR_BODY]] ]
23; CHECK-NEXT:    [[TMP0:%.*]] = add i64 [[INDEX]], 0
24; CHECK-NEXT:    [[TMP1:%.*]] = add i64 [[INDEX]], 1
25; CHECK-NEXT:    [[TMP2:%.*]] = getelementptr inbounds i32, ptr [[OFFSET:%.*]], i64 [[TMP0]]
26; CHECK-NEXT:    [[TMP3:%.*]] = getelementptr inbounds i32, ptr [[OFFSET]], i64 [[TMP1]]
27; CHECK-NEXT:    [[TMP4:%.*]] = load i32, ptr [[TMP2]], align 4
28; CHECK-NEXT:    [[TMP5:%.*]] = load i32, ptr [[TMP3]], align 4
29; CHECK-NEXT:    [[TMP6:%.*]] = sext i32 [[TMP4]] to i64
30; CHECK-NEXT:    [[TMP7:%.*]] = sext i32 [[TMP5]] to i64
31; CHECK-NEXT:    [[TMP8:%.*]] = getelementptr inbounds double, ptr [[DATA:%.*]], i64 [[TMP6]]
32; CHECK-NEXT:    [[TMP9:%.*]] = getelementptr inbounds double, ptr [[DATA]], i64 [[TMP7]]
33; CHECK-NEXT:    [[TMP10:%.*]] = load double, ptr [[TMP8]], align 8
34; CHECK-NEXT:    [[TMP11:%.*]] = load double, ptr [[TMP9]], align 8
35; CHECK-NEXT:    [[TMP12:%.*]] = insertelement <2 x double> poison, double [[TMP10]], i32 0
36; CHECK-NEXT:    [[TMP13:%.*]] = insertelement <2 x double> [[TMP12]], double [[TMP11]], i32 1
37; CHECK-NEXT:    [[TMP14]] = fadd <2 x double> [[VEC_PHI]], [[TMP13]]
38; CHECK-NEXT:    [[INDEX_NEXT]] = add nuw i64 [[INDEX]], 2
39; CHECK-NEXT:    [[TMP15:%.*]] = icmp eq i64 [[INDEX_NEXT]], [[N_VEC]]
40; CHECK-NEXT:    br i1 [[TMP15]], label [[MIDDLE_BLOCK:%.*]], label [[VECTOR_BODY]], !llvm.loop [[LOOP0:![0-9]+]]
41;
42; SVE-LABEL: @test(
43; SVE-NEXT:  entry:
44; SVE-NEXT:    [[CMP6:%.*]] = icmp sgt i32 [[SIZE:%.*]], 0
45; SVE-NEXT:    br i1 [[CMP6]], label [[FOR_BODY_PREHEADER:%.*]], label [[FOR_COND_CLEANUP:%.*]]
46; SVE:       for.body.preheader:
47; SVE-NEXT:    [[WIDE_TRIP_COUNT:%.*]] = zext i32 [[SIZE]] to i64
48; SVE-NEXT:    [[TMP0:%.*]] = call i64 @llvm.vscale.i64()
49; SVE-NEXT:    [[TMP1:%.*]] = mul i64 [[TMP0]], 2
50; SVE-NEXT:    [[MIN_ITERS_CHECK:%.*]] = icmp ult i64 [[WIDE_TRIP_COUNT]], [[TMP1]]
51; SVE-NEXT:    br i1 [[MIN_ITERS_CHECK]], label [[SCALAR_PH:%.*]], label [[VECTOR_PH:%.*]]
52; SVE:       vector.ph:
53; SVE-NEXT:    [[TMP2:%.*]] = call i64 @llvm.vscale.i64()
54; SVE-NEXT:    [[TMP3:%.*]] = mul i64 [[TMP2]], 2
55; SVE-NEXT:    [[N_MOD_VF:%.*]] = urem i64 [[WIDE_TRIP_COUNT]], [[TMP3]]
56; SVE-NEXT:    [[N_VEC:%.*]] = sub i64 [[WIDE_TRIP_COUNT]], [[N_MOD_VF]]
57; SVE-NEXT:    br label [[VECTOR_BODY:%.*]]
58; SVE:       vector.body:
59; SVE-NEXT:    [[INDEX:%.*]] = phi i64 [ 0, [[VECTOR_PH]] ], [ [[INDEX_NEXT:%.*]], [[VECTOR_BODY]] ]
60; SVE-NEXT:    [[VEC_PHI:%.*]] = phi <vscale x 2 x double> [ insertelement (<vscale x 2 x double> shufflevector (<vscale x 2 x double> insertelement (<vscale x 2 x double> poison, double -0.000000e+00, i32 0), <vscale x 2 x double> poison, <vscale x 2 x i32> zeroinitializer), double 0.000000e+00, i32 0), [[VECTOR_PH]] ], [ [[TMP9:%.*]], [[VECTOR_BODY]] ]
61; SVE-NEXT:    [[TMP4:%.*]] = add i64 [[INDEX]], 0
62; SVE-NEXT:    [[TMP5:%.*]] = getelementptr inbounds i32, ptr [[OFFSET:%.*]], i64 [[TMP4]]
63; SVE-NEXT:    [[TMP6:%.*]] = getelementptr inbounds i32, ptr [[TMP5]], i32 0
64; SVE-NEXT:    [[WIDE_LOAD:%.*]] = load <vscale x 2 x i32>, ptr [[TMP6]], align 4
65; SVE-NEXT:    [[TMP7:%.*]] = sext <vscale x 2 x i32> [[WIDE_LOAD]] to <vscale x 2 x i64>
66; SVE-NEXT:    [[TMP8:%.*]] = getelementptr inbounds double, ptr [[DATA:%.*]], <vscale x 2 x i64> [[TMP7]]
67; SVE-NEXT:    [[WIDE_MASKED_GATHER:%.*]] = call <vscale x 2 x double> @llvm.masked.gather.nxv2f64.nxv2p0(<vscale x 2 x ptr> [[TMP8]], i32 8, <vscale x 2 x i1> shufflevector (<vscale x 2 x i1> insertelement (<vscale x 2 x i1> poison, i1 true, i32 0), <vscale x 2 x i1> poison, <vscale x 2 x i32> zeroinitializer), <vscale x 2 x double> undef)
68; SVE-NEXT:    [[TMP9]] = fadd <vscale x 2 x double> [[VEC_PHI]], [[WIDE_MASKED_GATHER]]
69; SVE-NEXT:    [[TMP10:%.*]] = call i64 @llvm.vscale.i64()
70; SVE-NEXT:    [[TMP11:%.*]] = mul i64 [[TMP10]], 2
71; SVE-NEXT:    [[INDEX_NEXT]] = add nuw i64 [[INDEX]], [[TMP11]]
72; SVE-NEXT:    [[TMP12:%.*]] = icmp eq i64 [[INDEX_NEXT]], [[N_VEC]]
73; SVE-NEXT:    br i1 [[TMP12]], label [[MIDDLE_BLOCK:%.*]], label [[VECTOR_BODY]], !llvm.loop [[LOOP0:![0-9]+]]
74;
75entry:
76  %cmp6 = icmp sgt i32 %size, 0
77  br i1 %cmp6, label %for.body.preheader, label %for.cond.cleanup
78
79for.body.preheader:                               ; preds = %entry
80  %wide.trip.count = zext i32 %size to i64
81  br label %for.body
82
83for.cond.cleanup.loopexit:                        ; preds = %for.body
84  %add.lcssa = phi double [ %add, %for.body ]
85  br label %for.cond.cleanup
86
87for.cond.cleanup:                                 ; preds = %for.cond.cleanup.loopexit, %entry
88  %res.0.lcssa = phi double [ 0.000000e+00, %entry ], [ %add.lcssa, %for.cond.cleanup.loopexit ]
89  ret double %res.0.lcssa
90
91for.body:                                         ; preds = %for.body.preheader, %for.body
92  %indvars.iv = phi i64 [ 0, %for.body.preheader ], [ %indvars.iv.next, %for.body ]
93  %res.07 = phi double [ 0.000000e+00, %for.body.preheader ], [ %add, %for.body ]
94  %arrayidx = getelementptr inbounds i32, ptr %offset, i64 %indvars.iv
95  %0 = load i32, ptr %arrayidx, align 4
96  %idxprom1 = sext i32 %0 to i64
97  %arrayidx2 = getelementptr inbounds double, ptr %data, i64 %idxprom1
98  %1 = load double, ptr %arrayidx2, align 8
99  %add = fadd double %res.07, %1
100  %indvars.iv.next = add nuw nsw i64 %indvars.iv, 1
101  %exitcond.not = icmp eq i64 %indvars.iv.next, %wide.trip.count
102  br i1 %exitcond.not, label %for.cond.cleanup.loopexit, label %for.body
103}
104