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 -fallow-half-arguments-and-returns -O0 -disable-O0-optnone -S -emit-llvm -o - %s | opt -S -mem2reg | FileCheck %s
3 // RUN: %clang_cc1 -triple thumbv8.1m.main-none-none-eabi -target-feature +mve.fp -mfloat-abi hard -fallow-half-arguments-and-returns -O0 -disable-O0-optnone -DPOLYMORPHIC -S -emit-llvm -o - %s | opt -S -mem2reg | FileCheck %s
4 
5 #include <arm_mve.h>
6 
7 // CHECK-LABEL: @test_vmulltq_int_u8(
8 // CHECK-NEXT:  entry:
9 // CHECK-NEXT:    [[TMP0:%.*]] = call <8 x i16> @llvm.arm.mve.vmull.v8i16.v16i8(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 1, i32 1)
10 // CHECK-NEXT:    ret <8 x i16> [[TMP0]]
11 //
test_vmulltq_int_u8(uint8x16_t a,uint8x16_t b)12 int16x8_t test_vmulltq_int_u8(uint8x16_t a, uint8x16_t b)
13 {
14 #ifdef POLYMORPHIC
15     return vmulltq_int(a, b);
16 #else /* POLYMORPHIC */
17     return vmulltq_int_u8(a, b);
18 #endif /* POLYMORPHIC */
19 }
20 
21 // CHECK-LABEL: @test_vmulltq_int_s16(
22 // CHECK-NEXT:  entry:
23 // CHECK-NEXT:    [[TMP0:%.*]] = call <4 x i32> @llvm.arm.mve.vmull.v4i32.v8i16(<8 x i16> [[A:%.*]], <8 x i16> [[B:%.*]], i32 0, i32 1)
24 // CHECK-NEXT:    ret <4 x i32> [[TMP0]]
25 //
test_vmulltq_int_s16(int16x8_t a,int16x8_t b)26 int32x4_t test_vmulltq_int_s16(int16x8_t a, int16x8_t b)
27 {
28 #ifdef POLYMORPHIC
29     return vmulltq_int(a, b);
30 #else /* POLYMORPHIC */
31     return vmulltq_int_s16(a, b);
32 #endif /* POLYMORPHIC */
33 }
34 
35 // CHECK-LABEL: @test_vmulltq_int_u32(
36 // CHECK-NEXT:  entry:
37 // CHECK-NEXT:    [[TMP0:%.*]] = call <2 x i64> @llvm.arm.mve.vmull.v2i64.v4i32(<4 x i32> [[A:%.*]], <4 x i32> [[B:%.*]], i32 1, i32 1)
38 // CHECK-NEXT:    ret <2 x i64> [[TMP0]]
39 //
test_vmulltq_int_u32(uint32x4_t a,uint32x4_t b)40 uint64x2_t test_vmulltq_int_u32(uint32x4_t a, uint32x4_t b)
41 {
42 #ifdef POLYMORPHIC
43     return vmulltq_int(a, b);
44 #else /* POLYMORPHIC */
45     return vmulltq_int_u32(a, b);
46 #endif /* POLYMORPHIC */
47 }
48 
49 // CHECK-LABEL: @test_vmulltq_poly_p16(
50 // CHECK-NEXT:  entry:
51 // CHECK-NEXT:    [[TMP0:%.*]] = call <4 x i32> @llvm.arm.mve.vmull.poly.v4i32.v8i16(<8 x i16> [[A:%.*]], <8 x i16> [[B:%.*]], i32 1)
52 // CHECK-NEXT:    ret <4 x i32> [[TMP0]]
53 //
test_vmulltq_poly_p16(uint16x8_t a,uint16x8_t b)54 uint32x4_t test_vmulltq_poly_p16(uint16x8_t a, uint16x8_t b)
55 {
56 #ifdef POLYMORPHIC
57     return vmulltq_poly(a, b);
58 #else /* POLYMORPHIC */
59     return vmulltq_poly_p16(a, b);
60 #endif /* POLYMORPHIC */
61 }
62 
63 // CHECK-LABEL: @test_vmulltq_int_m_s8(
64 // CHECK-NEXT:  entry:
65 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
66 // CHECK-NEXT:    [[TMP1:%.*]] = call <8 x i1> @llvm.arm.mve.pred.i2v.v8i1(i32 [[TMP0]])
67 // CHECK-NEXT:    [[TMP2:%.*]] = call <8 x i16> @llvm.arm.mve.mull.int.predicated.v8i16.v16i8.v8i1(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 0, i32 1, <8 x i1> [[TMP1]], <8 x i16> [[INACTIVE:%.*]])
68 // CHECK-NEXT:    ret <8 x i16> [[TMP2]]
69 //
test_vmulltq_int_m_s8(int16x8_t inactive,int8x16_t a,int8x16_t b,mve_pred16_t p)70 int16x8_t test_vmulltq_int_m_s8(int16x8_t inactive, int8x16_t a, int8x16_t b, mve_pred16_t p)
71 {
72 #ifdef POLYMORPHIC
73     return vmulltq_int_m(inactive, a, b, p);
74 #else /* POLYMORPHIC */
75     return vmulltq_int_m_s8(inactive, a, b, p);
76 #endif /* POLYMORPHIC */
77 }
78 
79 // CHECK-LABEL: @test_vmulltq_int_m_u16(
80 // CHECK-NEXT:  entry:
81 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
82 // CHECK-NEXT:    [[TMP1:%.*]] = call <4 x i1> @llvm.arm.mve.pred.i2v.v4i1(i32 [[TMP0]])
83 // CHECK-NEXT:    [[TMP2:%.*]] = call <4 x i32> @llvm.arm.mve.mull.int.predicated.v4i32.v8i16.v4i1(<8 x i16> [[A:%.*]], <8 x i16> [[B:%.*]], i32 1, i32 1, <4 x i1> [[TMP1]], <4 x i32> [[INACTIVE:%.*]])
84 // CHECK-NEXT:    ret <4 x i32> [[TMP2]]
85 //
test_vmulltq_int_m_u16(uint32x4_t inactive,uint16x8_t a,uint16x8_t b,mve_pred16_t p)86 uint32x4_t test_vmulltq_int_m_u16(uint32x4_t inactive, uint16x8_t a, uint16x8_t b, mve_pred16_t p)
87 {
88 #ifdef POLYMORPHIC
89     return vmulltq_int_m(inactive, a, b, p);
90 #else /* POLYMORPHIC */
91     return vmulltq_int_m_u16(inactive, a, b, p);
92 #endif /* POLYMORPHIC */
93 }
94 
95 // CHECK-LABEL: @test_vmulltq_int_m_s32(
96 // CHECK-NEXT:  entry:
97 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
98 // CHECK-NEXT:    [[TMP1:%.*]] = call <4 x i1> @llvm.arm.mve.pred.i2v.v4i1(i32 [[TMP0]])
99 // CHECK-NEXT:    [[TMP2:%.*]] = call <2 x i64> @llvm.arm.mve.mull.int.predicated.v2i64.v4i32.v4i1(<4 x i32> [[A:%.*]], <4 x i32> [[B:%.*]], i32 0, i32 1, <4 x i1> [[TMP1]], <2 x i64> [[INACTIVE:%.*]])
100 // CHECK-NEXT:    ret <2 x i64> [[TMP2]]
101 //
test_vmulltq_int_m_s32(int64x2_t inactive,int32x4_t a,int32x4_t b,mve_pred16_t p)102 int64x2_t test_vmulltq_int_m_s32(int64x2_t inactive, int32x4_t a, int32x4_t b, mve_pred16_t p)
103 {
104 #ifdef POLYMORPHIC
105     return vmulltq_int_m(inactive, a, b, p);
106 #else /* POLYMORPHIC */
107     return vmulltq_int_m_s32(inactive, a, b, p);
108 #endif /* POLYMORPHIC */
109 }
110 
111 // CHECK-LABEL: @test_vmulltq_poly_m_p8(
112 // CHECK-NEXT:  entry:
113 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
114 // CHECK-NEXT:    [[TMP1:%.*]] = call <8 x i1> @llvm.arm.mve.pred.i2v.v8i1(i32 [[TMP0]])
115 // CHECK-NEXT:    [[TMP2:%.*]] = call <8 x i16> @llvm.arm.mve.mull.poly.predicated.v8i16.v16i8.v8i1(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 1, <8 x i1> [[TMP1]], <8 x i16> [[INACTIVE:%.*]])
116 // CHECK-NEXT:    ret <8 x i16> [[TMP2]]
117 //
test_vmulltq_poly_m_p8(uint16x8_t inactive,uint8x16_t a,uint8x16_t b,mve_pred16_t p)118 uint16x8_t test_vmulltq_poly_m_p8(uint16x8_t inactive, uint8x16_t a, uint8x16_t b, mve_pred16_t p)
119 {
120 #ifdef POLYMORPHIC
121     return vmulltq_poly_m(inactive, a, b, p);
122 #else /* POLYMORPHIC */
123     return vmulltq_poly_m_p8(inactive, a, b, p);
124 #endif /* POLYMORPHIC */
125 }
126 
127 // CHECK-LABEL: @test_vmulltq_int_x_u8(
128 // CHECK-NEXT:  entry:
129 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
130 // CHECK-NEXT:    [[TMP1:%.*]] = call <8 x i1> @llvm.arm.mve.pred.i2v.v8i1(i32 [[TMP0]])
131 // CHECK-NEXT:    [[TMP2:%.*]] = call <8 x i16> @llvm.arm.mve.mull.int.predicated.v8i16.v16i8.v8i1(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 1, i32 1, <8 x i1> [[TMP1]], <8 x i16> undef)
132 // CHECK-NEXT:    ret <8 x i16> [[TMP2]]
133 //
test_vmulltq_int_x_u8(uint8x16_t a,uint8x16_t b,mve_pred16_t p)134 uint16x8_t test_vmulltq_int_x_u8(uint8x16_t a, uint8x16_t b, mve_pred16_t p)
135 {
136 #ifdef POLYMORPHIC
137     return vmulltq_int_x(a, b, p);
138 #else /* POLYMORPHIC */
139     return vmulltq_int_x_u8(a, b, p);
140 #endif /* POLYMORPHIC */
141 }
142 
143 // CHECK-LABEL: @test_vmulltq_int_x_s16(
144 // CHECK-NEXT:  entry:
145 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
146 // CHECK-NEXT:    [[TMP1:%.*]] = call <4 x i1> @llvm.arm.mve.pred.i2v.v4i1(i32 [[TMP0]])
147 // CHECK-NEXT:    [[TMP2:%.*]] = call <4 x i32> @llvm.arm.mve.mull.int.predicated.v4i32.v8i16.v4i1(<8 x i16> [[A:%.*]], <8 x i16> [[B:%.*]], i32 0, i32 1, <4 x i1> [[TMP1]], <4 x i32> undef)
148 // CHECK-NEXT:    ret <4 x i32> [[TMP2]]
149 //
test_vmulltq_int_x_s16(int16x8_t a,int16x8_t b,mve_pred16_t p)150 int32x4_t test_vmulltq_int_x_s16(int16x8_t a, int16x8_t b, mve_pred16_t p)
151 {
152 #ifdef POLYMORPHIC
153     return vmulltq_int_x(a, b, p);
154 #else /* POLYMORPHIC */
155     return vmulltq_int_x_s16(a, b, p);
156 #endif /* POLYMORPHIC */
157 }
158 
159 // CHECK-LABEL: @test_vmulltq_int_x_u32(
160 // CHECK-NEXT:  entry:
161 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
162 // CHECK-NEXT:    [[TMP1:%.*]] = call <4 x i1> @llvm.arm.mve.pred.i2v.v4i1(i32 [[TMP0]])
163 // CHECK-NEXT:    [[TMP2:%.*]] = call <2 x i64> @llvm.arm.mve.mull.int.predicated.v2i64.v4i32.v4i1(<4 x i32> [[A:%.*]], <4 x i32> [[B:%.*]], i32 1, i32 1, <4 x i1> [[TMP1]], <2 x i64> undef)
164 // CHECK-NEXT:    ret <2 x i64> [[TMP2]]
165 //
test_vmulltq_int_x_u32(uint32x4_t a,uint32x4_t b,mve_pred16_t p)166 uint64x2_t test_vmulltq_int_x_u32(uint32x4_t a, uint32x4_t b, mve_pred16_t p)
167 {
168 #ifdef POLYMORPHIC
169     return vmulltq_int_x(a, b, p);
170 #else /* POLYMORPHIC */
171     return vmulltq_int_x_u32(a, b, p);
172 #endif /* POLYMORPHIC */
173 }
174 
175 // CHECK-LABEL: @test_vmulltq_poly_x_p8(
176 // CHECK-NEXT:  entry:
177 // CHECK-NEXT:    [[TMP0:%.*]] = zext i16 [[P:%.*]] to i32
178 // CHECK-NEXT:    [[TMP1:%.*]] = call <8 x i1> @llvm.arm.mve.pred.i2v.v8i1(i32 [[TMP0]])
179 // CHECK-NEXT:    [[TMP2:%.*]] = call <8 x i16> @llvm.arm.mve.mull.poly.predicated.v8i16.v16i8.v8i1(<16 x i8> [[A:%.*]], <16 x i8> [[B:%.*]], i32 1, <8 x i1> [[TMP1]], <8 x i16> undef)
180 // CHECK-NEXT:    ret <8 x i16> [[TMP2]]
181 //
test_vmulltq_poly_x_p8(uint8x16_t a,uint8x16_t b,mve_pred16_t p)182 uint16x8_t test_vmulltq_poly_x_p8(uint8x16_t a, uint8x16_t b, mve_pred16_t p)
183 {
184 #ifdef POLYMORPHIC
185     return vmulltq_poly_x(a, b, p);
186 #else /* POLYMORPHIC */
187     return vmulltq_poly_x_p8(a, b, p);
188 #endif /* POLYMORPHIC */
189 }
190