1 // NOTE: Assertions have been autogenerated by utils/update_cc_test_checks.py
2 // RUN: %clang_cc1 -triple thumbv8.1m.main-none-none-eabi -target-feature +mve.fp -mfloat-abi hard -O0 -disable-O0-optnone -emit-llvm -o - %s | opt -S -passes=mem2reg | FileCheck %s
3 // RUN: %clang_cc1 -triple thumbv8.1m.main-none-none-eabi -target-feature +mve.fp -mfloat-abi hard -O0 -disable-O0-optnone -DPOLYMORPHIC -emit-llvm -o - %s | opt -S -passes=mem2reg | FileCheck %s
4
5 // REQUIRES: aarch64-registered-target || arm-registered-target
6
7 #include <arm_mve.h>
8
9 // CHECK-LABEL: @test_vmulhq_u8(
10 // CHECK-NEXT: entry:
11 // CHECK-NEXT: [[TMP0:%.*]] = call <16 x i8> @llvm.arm.mve.vmulh.v16i8(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 1)
12 // CHECK-NEXT: ret <16 x i8> [[TMP0]]
13 //
test_vmulhq_u8(uint8x16_t a,uint8x16_t b)14 uint8x16_t test_vmulhq_u8(uint8x16_t a, uint8x16_t b)
15 {
16 #ifdef POLYMORPHIC
17 return vmulhq(a, b);
18 #else /* POLYMORPHIC */
19 return vmulhq_u8(a, b);
20 #endif /* POLYMORPHIC */
21 }
22
23 // CHECK-LABEL: @test_vmulhq_s16(
24 // CHECK-NEXT: entry:
25 // CHECK-NEXT: [[TMP0:%.*]] = call <8 x i16> @llvm.arm.mve.vmulh.v8i16(<8 x i16> [[A:%.*]], <8 x i16> [[B:%.*]], i32 0)
26 // CHECK-NEXT: ret <8 x i16> [[TMP0]]
27 //
test_vmulhq_s16(int16x8_t a,int16x8_t b)28 int16x8_t test_vmulhq_s16(int16x8_t a, int16x8_t b)
29 {
30 #ifdef POLYMORPHIC
31 return vmulhq(a, b);
32 #else /* POLYMORPHIC */
33 return vmulhq_s16(a, b);
34 #endif /* POLYMORPHIC */
35 }
36
37 // CHECK-LABEL: @test_vmulhq_u32(
38 // CHECK-NEXT: entry:
39 // CHECK-NEXT: [[TMP0:%.*]] = call <4 x i32> @llvm.arm.mve.vmulh.v4i32(<4 x i32> [[A:%.*]], <4 x i32> [[B:%.*]], i32 1)
40 // CHECK-NEXT: ret <4 x i32> [[TMP0]]
41 //
test_vmulhq_u32(uint32x4_t a,uint32x4_t b)42 uint32x4_t test_vmulhq_u32(uint32x4_t a, uint32x4_t b)
43 {
44 #ifdef POLYMORPHIC
45 return vmulhq(a, b);
46 #else /* POLYMORPHIC */
47 return vmulhq_u32(a, b);
48 #endif /* POLYMORPHIC */
49 }
50
51 // CHECK-LABEL: @test_vmulhq_m_s8(
52 // CHECK-NEXT: entry:
53 // CHECK-NEXT: [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
54 // CHECK-NEXT: [[TMP1:%.*]] = call <16 x i1> @llvm.arm.mve.pred.i2v.v16i1(i32 [[TMP0]])
55 // CHECK-NEXT: [[TMP2:%.*]] = call <16 x i8> @llvm.arm.mve.mulh.predicated.v16i8.v16i1(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 0, <16 x i1> [[TMP1]], <16 x i8> [[INACTIVE:%.*]])
56 // CHECK-NEXT: ret <16 x i8> [[TMP2]]
57 //
test_vmulhq_m_s8(int8x16_t inactive,int8x16_t a,int8x16_t b,mve_pred16_t p)58 int8x16_t test_vmulhq_m_s8(int8x16_t inactive, int8x16_t a, int8x16_t b, mve_pred16_t p)
59 {
60 #ifdef POLYMORPHIC
61 return vmulhq_m(inactive, a, b, p);
62 #else /* POLYMORPHIC */
63 return vmulhq_m_s8(inactive, a, b, p);
64 #endif /* POLYMORPHIC */
65 }
66
67 // CHECK-LABEL: @test_vmulhq_m_u16(
68 // CHECK-NEXT: entry:
69 // CHECK-NEXT: [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
70 // CHECK-NEXT: [[TMP1:%.*]] = call <8 x i1> @llvm.arm.mve.pred.i2v.v8i1(i32 [[TMP0]])
71 // CHECK-NEXT: [[TMP2:%.*]] = call <8 x i16> @llvm.arm.mve.mulh.predicated.v8i16.v8i1(<8 x i16> [[A:%.*]], <8 x i16> [[B:%.*]], i32 1, <8 x i1> [[TMP1]], <8 x i16> [[INACTIVE:%.*]])
72 // CHECK-NEXT: ret <8 x i16> [[TMP2]]
73 //
test_vmulhq_m_u16(uint16x8_t inactive,uint16x8_t a,uint16x8_t b,mve_pred16_t p)74 uint16x8_t test_vmulhq_m_u16(uint16x8_t inactive, uint16x8_t a, uint16x8_t b, mve_pred16_t p)
75 {
76 #ifdef POLYMORPHIC
77 return vmulhq_m(inactive, a, b, p);
78 #else /* POLYMORPHIC */
79 return vmulhq_m_u16(inactive, a, b, p);
80 #endif /* POLYMORPHIC */
81 }
82
83 // CHECK-LABEL: @test_vmulhq_m_s32(
84 // CHECK-NEXT: entry:
85 // CHECK-NEXT: [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
86 // CHECK-NEXT: [[TMP1:%.*]] = call <4 x i1> @llvm.arm.mve.pred.i2v.v4i1(i32 [[TMP0]])
87 // CHECK-NEXT: [[TMP2:%.*]] = call <4 x i32> @llvm.arm.mve.mulh.predicated.v4i32.v4i1(<4 x i32> [[A:%.*]], <4 x i32> [[B:%.*]], i32 0, <4 x i1> [[TMP1]], <4 x i32> [[INACTIVE:%.*]])
88 // CHECK-NEXT: ret <4 x i32> [[TMP2]]
89 //
test_vmulhq_m_s32(int32x4_t inactive,int32x4_t a,int32x4_t b,mve_pred16_t p)90 int32x4_t test_vmulhq_m_s32(int32x4_t inactive, int32x4_t a, int32x4_t b, mve_pred16_t p)
91 {
92 #ifdef POLYMORPHIC
93 return vmulhq_m(inactive, a, b, p);
94 #else /* POLYMORPHIC */
95 return vmulhq_m_s32(inactive, a, b, p);
96 #endif /* POLYMORPHIC */
97 }
98
99 // CHECK-LABEL: @test_vmulhq_x_u8(
100 // CHECK-NEXT: entry:
101 // CHECK-NEXT: [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
102 // CHECK-NEXT: [[TMP1:%.*]] = call <16 x i1> @llvm.arm.mve.pred.i2v.v16i1(i32 [[TMP0]])
103 // CHECK-NEXT: [[TMP2:%.*]] = call <16 x i8> @llvm.arm.mve.mulh.predicated.v16i8.v16i1(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 1, <16 x i1> [[TMP1]], <16 x i8> undef)
104 // CHECK-NEXT: ret <16 x i8> [[TMP2]]
105 //
test_vmulhq_x_u8(uint8x16_t a,uint8x16_t b,mve_pred16_t p)106 uint8x16_t test_vmulhq_x_u8(uint8x16_t a, uint8x16_t b, mve_pred16_t p)
107 {
108 #ifdef POLYMORPHIC
109 return vmulhq_x(a, b, p);
110 #else /* POLYMORPHIC */
111 return vmulhq_x_u8(a, b, p);
112 #endif /* POLYMORPHIC */
113 }
114
115 // CHECK-LABEL: @test_vmulhq_x_s16(
116 // CHECK-NEXT: entry:
117 // CHECK-NEXT: [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
118 // CHECK-NEXT: [[TMP1:%.*]] = call <8 x i1> @llvm.arm.mve.pred.i2v.v8i1(i32 [[TMP0]])
119 // CHECK-NEXT: [[TMP2:%.*]] = call <8 x i16> @llvm.arm.mve.mulh.predicated.v8i16.v8i1(<8 x i16> [[A:%.*]], <8 x i16> [[B:%.*]], i32 0, <8 x i1> [[TMP1]], <8 x i16> undef)
120 // CHECK-NEXT: ret <8 x i16> [[TMP2]]
121 //
test_vmulhq_x_s16(int16x8_t a,int16x8_t b,mve_pred16_t p)122 int16x8_t test_vmulhq_x_s16(int16x8_t a, int16x8_t b, mve_pred16_t p)
123 {
124 #ifdef POLYMORPHIC
125 return vmulhq_x(a, b, p);
126 #else /* POLYMORPHIC */
127 return vmulhq_x_s16(a, b, p);
128 #endif /* POLYMORPHIC */
129 }
130
131 // CHECK-LABEL: @test_vmulhq_x_u32(
132 // CHECK-NEXT: entry:
133 // CHECK-NEXT: [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
134 // CHECK-NEXT: [[TMP1:%.*]] = call <4 x i1> @llvm.arm.mve.pred.i2v.v4i1(i32 [[TMP0]])
135 // CHECK-NEXT: [[TMP2:%.*]] = call <4 x i32> @llvm.arm.mve.mulh.predicated.v4i32.v4i1(<4 x i32> [[A:%.*]], <4 x i32> [[B:%.*]], i32 1, <4 x i1> [[TMP1]], <4 x i32> undef)
136 // CHECK-NEXT: ret <4 x i32> [[TMP2]]
137 //
test_vmulhq_x_u32(uint32x4_t a,uint32x4_t b,mve_pred16_t p)138 uint32x4_t test_vmulhq_x_u32(uint32x4_t a, uint32x4_t b, mve_pred16_t p)
139 {
140 #ifdef POLYMORPHIC
141 return vmulhq_x(a, b, p);
142 #else /* POLYMORPHIC */
143 return vmulhq_x_u32(a, b, p);
144 #endif /* POLYMORPHIC */
145 }
146