|
9 | 9 |
|
10 | 10 | // CHECK-LABEL: define {{.*}}test_default_parameter_type |
11 | 11 | float test_default_parameter_type(half2 p1, half2 p2, float p3) { |
12 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 12 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
13 | 13 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
14 | 14 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
15 | 15 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
16 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 16 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
17 | 17 | // CHECK: ret float %[[RES]] |
18 | 18 | return dot2add(p1, p2, p3); |
19 | 19 | } |
20 | 20 |
|
21 | 21 | // CHECK-LABEL: define {{.*}}test_float_arg2_type |
22 | 22 | float test_float_arg2_type(half2 p1, float2 p2, float p3) { |
23 | | - // CHECK-SPIRV: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %2 to <2 x half> |
24 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 23 | + // CHECK: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %{{.*}} to <2 x half> |
| 24 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
25 | 25 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
26 | 26 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
27 | 27 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
28 | | - // CHECK-DXIL: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %1 to <2 x half> |
29 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 28 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
30 | 29 | // CHECK: ret float %[[RES]] |
31 | 30 | return dot2add(p1, p2, p3); |
32 | 31 | } |
33 | 32 |
|
34 | 33 | // CHECK-LABEL: define {{.*}}test_float_arg1_type |
35 | 34 | float test_float_arg1_type(float2 p1, half2 p2, float p3) { |
36 | | - // CHECK-SPIRV: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %1 to <2 x half> |
37 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 35 | + // CHECK: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %{{.*}} to <2 x half> |
| 36 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
38 | 37 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
39 | 38 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
40 | 39 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
41 | | - // CHECK-DXIL: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %0 to <2 x half> |
42 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 40 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
43 | 41 | // CHECK: ret float %[[RES]] |
44 | 42 | return dot2add(p1, p2, p3); |
45 | 43 | } |
46 | 44 |
|
47 | 45 | // CHECK-LABEL: define {{.*}}test_double_arg3_type |
48 | 46 | float test_double_arg3_type(half2 p1, half2 p2, double p3) { |
49 | | - // CHECK-SPIRV: %conv = fptrunc reassoc nnan ninf nsz arcp afn double %3 to float |
50 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 47 | + // CHECK: %conv = fptrunc reassoc nnan ninf nsz arcp afn double %{{.*}} to float |
| 48 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
51 | 49 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
52 | 50 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
53 | 51 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
54 | | - // CHECK-DXIL: %conv = fptrunc reassoc nnan ninf nsz arcp afn double %2 to float |
55 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 52 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
56 | 53 | // CHECK: ret float %[[RES]] |
57 | 54 | return dot2add(p1, p2, p3); |
58 | 55 | } |
59 | 56 |
|
60 | 57 | // CHECK-LABEL: define {{.*}}test_float_arg1_arg2_type |
61 | 58 | float test_float_arg1_arg2_type(float2 p1, float2 p2, float p3) { |
62 | | - // CHECK-SPIRV: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %1 to <2 x half> |
63 | | - // CHECK-SPIRV: %conv1 = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %2 to <2 x half> |
64 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 59 | + // CHECK: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %{{.*}} to <2 x half> |
| 60 | + // CHECK: %conv1 = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %{{.*}} to <2 x half> |
| 61 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
65 | 62 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
66 | 63 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
67 | 64 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
68 | | - // CHECK-DXIL: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %0 to <2 x half> |
69 | | - // CHECK-DXIL: %conv1 = fptrunc reassoc nnan ninf nsz arcp afn <2 x float> %1 to <2 x half> |
70 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 65 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
71 | 66 | // CHECK: ret float %[[RES]] |
72 | 67 | return dot2add(p1, p2, p3); |
73 | 68 | } |
74 | 69 |
|
75 | 70 | // CHECK-LABEL: define {{.*}}test_double_arg1_arg2_type |
76 | 71 | float test_double_arg1_arg2_type(double2 p1, double2 p2, float p3) { |
77 | | - // CHECK-SPIRV: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x double> %1 to <2 x half> |
78 | | - // CHECK-SPIRV: %conv1 = fptrunc reassoc nnan ninf nsz arcp afn <2 x double> %2 to <2 x half> |
79 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 72 | + // CHECK: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x double> %{{.*}} to <2 x half> |
| 73 | + // CHECK: %conv1 = fptrunc reassoc nnan ninf nsz arcp afn <2 x double> %{{.*}} to <2 x half> |
| 74 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
80 | 75 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
81 | 76 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
82 | 77 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
83 | | - // CHECK-DXIL: %conv = fptrunc reassoc nnan ninf nsz arcp afn <2 x double> %0 to <2 x half> |
84 | | - // CHECK-DXIL: %conv1 = fptrunc reassoc nnan ninf nsz arcp afn <2 x double> %1 to <2 x half> |
85 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 78 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
86 | 79 | // CHECK: ret float %[[RES]] |
87 | 80 | return dot2add(p1, p2, p3); |
88 | 81 | } |
89 | 82 |
|
90 | 83 | // CHECK-LABEL: define {{.*}}test_int16_arg1_arg2_type |
91 | 84 | float test_int16_arg1_arg2_type(int16_t2 p1, int16_t2 p2, float p3) { |
92 | | - // CHECK-SPIRV: %conv = sitofp <2 x i16> %1 to <2 x half> |
93 | | - // CHECK-SPIRV: %conv1 = sitofp <2 x i16> %2 to <2 x half> |
94 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 85 | + // CHECK: %conv = sitofp <2 x i16> %{{.*}} to <2 x half> |
| 86 | + // CHECK: %conv1 = sitofp <2 x i16> %{{.*}} to <2 x half> |
| 87 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
95 | 88 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
96 | 89 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
97 | 90 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
98 | | - // CHECK-DXIL: %conv = sitofp <2 x i16> %0 to <2 x half> |
99 | | - // CHECK-DXIL: %conv1 = sitofp <2 x i16> %1 to <2 x half> |
100 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 91 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
101 | 92 | // CHECK: ret float %[[RES]] |
102 | 93 | return dot2add(p1, p2, p3); |
103 | 94 | } |
104 | 95 |
|
105 | 96 | // CHECK-LABEL: define {{.*}}test_int32_arg1_arg2_type |
106 | 97 | float test_int32_arg1_arg2_type(int32_t2 p1, int32_t2 p2, float p3) { |
107 | | - // CHECK-SPIRV: %conv = sitofp <2 x i32> %1 to <2 x half> |
108 | | - // CHECK-SPIRV: %conv1 = sitofp <2 x i32> %2 to <2 x half> |
109 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 98 | + // CHECK: %conv = sitofp <2 x i32> %{{.*}} to <2 x half> |
| 99 | + // CHECK: %conv1 = sitofp <2 x i32> %{{.*}} to <2 x half> |
| 100 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
110 | 101 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
111 | 102 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
112 | 103 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
113 | | - // CHECK-DXIL: %conv = sitofp <2 x i32> %0 to <2 x half> |
114 | | - // CHECK-DXIL: %conv1 = sitofp <2 x i32> %1 to <2 x half> |
115 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 104 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
116 | 105 | // CHECK: ret float %[[RES]] |
117 | 106 | return dot2add(p1, p2, p3); |
118 | 107 | } |
119 | 108 |
|
120 | 109 | // CHECK-LABEL: define {{.*}}test_int64_arg1_arg2_type |
121 | 110 | float test_int64_arg1_arg2_type(int64_t2 p1, int64_t2 p2, float p3) { |
122 | | - // CHECK-SPIRV: %conv = sitofp <2 x i64> %1 to <2 x half> |
123 | | - // CHECK-SPIRV: %conv1 = sitofp <2 x i64> %2 to <2 x half> |
124 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %7, <2 x half> %8) |
| 111 | + // CHECK: %conv = sitofp <2 x i64> %{{.*}} to <2 x half> |
| 112 | + // CHECK: %conv1 = sitofp <2 x i64> %{{.*}} to <2 x half> |
| 113 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
125 | 114 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
126 | 115 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
127 | 116 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
128 | | - // CHECK-DXIL: %conv = sitofp <2 x i64> %0 to <2 x half> |
129 | | - // CHECK-DXIL: %conv1 = sitofp <2 x i64> %1 to <2 x half> |
130 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %6, <2 x half> %7, float %8) |
| 117 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
131 | 118 | // CHECK: ret float %[[RES]] |
132 | 119 | return dot2add(p1, p2, p3); |
133 | 120 | } |
134 | 121 |
|
135 | 122 | // CHECK-LABEL: define {{.*}}test_bool_arg1_arg2_type |
136 | 123 | float test_bool_arg1_arg2_type(bool2 p1, bool2 p2, float p3) { |
137 | | - // CHECK-SPIRV: %loadedv = trunc <2 x i32> %3 to <2 x i1> |
138 | | - // CHECK-SPIRV: %conv = uitofp <2 x i1> %loadedv to <2 x half> |
139 | | - // CHECK-SPIRV: %loadedv1 = trunc <2 x i32> %4 to <2 x i1> |
140 | | - // CHECK-SPIRV: %conv2 = uitofp <2 x i1> %loadedv1 to <2 x half> |
141 | | - // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %9, <2 x half> %10) |
| 124 | + // CHECK: %loadedv = trunc <2 x i32> %{{.*}} to <2 x i1> |
| 125 | + // CHECK: %conv = uitofp <2 x i1> %loadedv to <2 x half> |
| 126 | + // CHECK: %loadedv1 = trunc <2 x i32> %{{.*}} to <2 x i1> |
| 127 | + // CHECK: %conv2 = uitofp <2 x i1> %loadedv1 to <2 x half> |
| 128 | + // CHECK-SPIRV: %[[MUL:.*]] = call reassoc nnan ninf nsz arcp afn half @llvm.spv.fdot.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}) |
142 | 129 | // CHECK-SPIRV: %[[CONV:.*]] = fpext reassoc nnan ninf nsz arcp afn half %[[MUL]] to float |
143 | 130 | // CHECK-SPIRV: %[[C:.*]] = load float, ptr %c.addr.i, align 4 |
144 | 131 | // CHECK-SPIRV: %[[RES:.*]] = fadd reassoc nnan ninf nsz arcp afn float %[[CONV]], %[[C]] |
145 | | - // CHECK-DXIL: %loadedv = trunc <2 x i32> %2 to <2 x i1> |
146 | | - // CHECK-DXIL: %conv = uitofp <2 x i1> %loadedv to <2 x half> |
147 | | - // CHECK-DXIL: %loadedv1 = trunc <2 x i32> %3 to <2 x i1> |
148 | | - // CHECK-DXIL: %conv2 = uitofp <2 x i1> %loadedv1 to <2 x half> |
149 | | - // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %8, <2 x half> %9, float %10) |
| 132 | + // CHECK-DXIL: %[[RES:.*]] = call {{.*}} float @llvm.dx.dot2add.v2f16(<2 x half> %{{.*}}, <2 x half> %{{.*}}, float %{{.*}}) |
150 | 133 | // CHECK: ret float %[[RES]] |
151 | 134 | return dot2add(p1, p2, p3); |
152 | 135 | } |
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