1; RUN: llc -march=r600 -mcpu=juniper < %s | FileCheck -check-prefix=EG -check-prefix=FUNC %s 2 3; === WIDTH ================================================================== 4; 9 implicit args = 9 dwords to first image argument. 5; First width at dword index 9+1 -> KC0[2].Z 6 7; FUNC-LABEL: {{^}}width_2d: 8; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 9; EG: MOV * [[VAL]], KC0[2].Z 10define void @width_2d (%opencl.image2d_t addrspace(1)* %in, 11 i32 addrspace(1)* %out) { 12entry: 13 %0 = call [3 x i32] @llvm.OpenCL.image.get.size.2d( 14 %opencl.image2d_t addrspace(1)* %in) #0 15 %1 = extractvalue [3 x i32] %0, 0 16 store i32 %1, i32 addrspace(1)* %out 17 ret void 18} 19 20; FUNC-LABEL: {{^}}width_3d: 21; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 22; EG: MOV * [[VAL]], KC0[2].Z 23define void @width_3d (%opencl.image3d_t addrspace(1)* %in, 24 i32 addrspace(1)* %out) { 25entry: 26 %0 = call [3 x i32] @llvm.OpenCL.image.get.size.3d( 27 %opencl.image3d_t addrspace(1)* %in) #0 28 %1 = extractvalue [3 x i32] %0, 0 29 store i32 %1, i32 addrspace(1)* %out 30 ret void 31} 32 33 34; === HEIGHT ================================================================= 35; First height at dword index 9+2 -> KC0[2].W 36 37; FUNC-LABEL: {{^}}height_2d: 38; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 39; EG: MOV * [[VAL]], KC0[2].W 40define void @height_2d (%opencl.image2d_t addrspace(1)* %in, 41 i32 addrspace(1)* %out) { 42entry: 43 %0 = call [3 x i32] @llvm.OpenCL.image.get.size.2d( 44 %opencl.image2d_t addrspace(1)* %in) #0 45 %1 = extractvalue [3 x i32] %0, 1 46 store i32 %1, i32 addrspace(1)* %out 47 ret void 48} 49 50; FUNC-LABEL: {{^}}height_3d: 51; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 52; EG: MOV * [[VAL]], KC0[2].W 53define void @height_3d (%opencl.image3d_t addrspace(1)* %in, 54 i32 addrspace(1)* %out) { 55entry: 56 %0 = call [3 x i32] @llvm.OpenCL.image.get.size.3d( 57 %opencl.image3d_t addrspace(1)* %in) #0 58 %1 = extractvalue [3 x i32] %0, 1 59 store i32 %1, i32 addrspace(1)* %out 60 ret void 61} 62 63 64; === DEPTH ================================================================== 65; First depth at dword index 9+3 -> KC0[3].X 66 67; FUNC-LABEL: {{^}}depth_3d: 68; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 69; EG: MOV * [[VAL]], KC0[3].X 70define void @depth_3d (%opencl.image3d_t addrspace(1)* %in, 71 i32 addrspace(1)* %out) { 72entry: 73 %0 = call [3 x i32] @llvm.OpenCL.image.get.size.3d( 74 %opencl.image3d_t addrspace(1)* %in) #0 75 %1 = extractvalue [3 x i32] %0, 2 76 store i32 %1, i32 addrspace(1)* %out 77 ret void 78} 79 80 81; === CHANNEL DATA TYPE ====================================================== 82; First channel data type at dword index 9+4 -> KC0[3].Y 83 84; FUNC-LABEL: {{^}}data_type_2d: 85; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 86; EG: MOV * [[VAL]], KC0[3].Y 87define void @data_type_2d (%opencl.image2d_t addrspace(1)* %in, 88 i32 addrspace(1)* %out) { 89entry: 90 %0 = call [2 x i32] @llvm.OpenCL.image.get.format.2d( 91 %opencl.image2d_t addrspace(1)* %in) #0 92 %1 = extractvalue [2 x i32] %0, 0 93 store i32 %1, i32 addrspace(1)* %out 94 ret void 95} 96 97; FUNC-LABEL: {{^}}data_type_3d: 98; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 99; EG: MOV * [[VAL]], KC0[3].Y 100define void @data_type_3d (%opencl.image3d_t addrspace(1)* %in, 101 i32 addrspace(1)* %out) { 102entry: 103 %0 = call [2 x i32] @llvm.OpenCL.image.get.format.3d( 104 %opencl.image3d_t addrspace(1)* %in) #0 105 %1 = extractvalue [2 x i32] %0, 0 106 store i32 %1, i32 addrspace(1)* %out 107 ret void 108} 109 110 111; === CHANNEL ORDER ========================================================== 112; First channel order at dword index 9+5 -> KC0[3].Z 113 114; FUNC-LABEL: {{^}}channel_order_2d: 115; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 116; EG: MOV * [[VAL]], KC0[3].Z 117define void @channel_order_2d (%opencl.image2d_t addrspace(1)* %in, 118 i32 addrspace(1)* %out) { 119entry: 120 %0 = call [2 x i32] @llvm.OpenCL.image.get.format.2d( 121 %opencl.image2d_t addrspace(1)* %in) #0 122 %1 = extractvalue [2 x i32] %0, 1 123 store i32 %1, i32 addrspace(1)* %out 124 ret void 125} 126 127; FUNC-LABEL: {{^}}channel_order_3d: 128; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 129; EG: MOV * [[VAL]], KC0[3].Z 130define void @channel_order_3d (%opencl.image3d_t addrspace(1)* %in, 131 i32 addrspace(1)* %out) { 132entry: 133 %0 = call [2 x i32] @llvm.OpenCL.image.get.format.3d( 134 %opencl.image3d_t addrspace(1)* %in) #0 135 %1 = extractvalue [2 x i32] %0, 1 136 store i32 %1, i32 addrspace(1)* %out 137 ret void 138} 139 140 141; === 2ND IMAGE ============================================================== 142; 9 implicit args + 2 explicit args + 5 implicit args for 1st image argument 143; = 16 dwords to 2nd image argument. 144; Height of the second image is at 16+2 -> KC0[4].Z 145; 146; FUNC-LABEL: {{^}}image_arg_2nd: 147; EG: MEM_RAT_CACHELESS STORE_RAW [[VAL:T[0-9]+\.X]] 148; EG: MOV * [[VAL]], KC0[4].Z 149define void @image_arg_2nd (%opencl.image3d_t addrspace(1)* %in1, 150 i32 %x, 151 %opencl.image2d_t addrspace(1)* %in2, 152 i32 addrspace(1)* %out) { 153entry: 154 %0 = call [3 x i32] @llvm.OpenCL.image.get.size.2d( 155 %opencl.image2d_t addrspace(1)* %in2) #0 156 %1 = extractvalue [3 x i32] %0, 1 157 store i32 %1, i32 addrspace(1)* %out 158 ret void 159} 160 161%opencl.image2d_t = type opaque 162%opencl.image3d_t = type opaque 163 164declare [3 x i32] @llvm.OpenCL.image.get.size.2d(%opencl.image2d_t addrspace(1)*) #0 165declare [3 x i32] @llvm.OpenCL.image.get.size.3d(%opencl.image3d_t addrspace(1)*) #0 166declare [2 x i32] @llvm.OpenCL.image.get.format.2d(%opencl.image2d_t addrspace(1)*) #0 167declare [2 x i32] @llvm.OpenCL.image.get.format.3d(%opencl.image3d_t addrspace(1)*) #0 168 169attributes #0 = { readnone } 170 171!opencl.kernels = !{!0, !1, !2, !3, !4, !5, !6, !7, !8, !9} 172!0 = !{void (%opencl.image2d_t addrspace(1)*, i32 addrspace(1)*)* @width_2d, 173 !10, !20, !30, !40, !50} 174!1 = !{void (%opencl.image3d_t addrspace(1)*, i32 addrspace(1)*)* @width_3d, 175 !10, !21, !31, !41, !50} 176!2 = !{void (%opencl.image2d_t addrspace(1)*, i32 addrspace(1)*)* @height_2d, 177 !10, !20, !30, !40, !50} 178!3 = !{void (%opencl.image3d_t addrspace(1)*, i32 addrspace(1)*)* @height_3d, 179 !10, !21, !31, !41, !50} 180!4 = !{void (%opencl.image3d_t addrspace(1)*, i32 addrspace(1)*)* @depth_3d, 181 !10, !21, !31, !41, !50} 182!5 = !{void (%opencl.image2d_t addrspace(1)*, i32 addrspace(1)*)* @data_type_2d, 183 !10, !20, !30, !40, !50} 184!6 = !{void (%opencl.image3d_t addrspace(1)*, i32 addrspace(1)*)* @data_type_3d, 185 !10, !21, !31, !41, !50} 186!7 = !{void (%opencl.image2d_t addrspace(1)*, i32 addrspace(1)*)* @channel_order_2d, 187 !10, !20, !30, !40, !50} 188!8 = !{void (%opencl.image3d_t addrspace(1)*, i32 addrspace(1)*)* @channel_order_3d, 189 !10, !21, !31, !41, !50} 190!9 = !{void (%opencl.image3d_t addrspace(1)*, i32, %opencl.image2d_t addrspace(1)*, 191 i32 addrspace(1)*)* @image_arg_2nd, !12, !22, !32, !42, !52} 192 193!10 = !{!"kernel_arg_addr_space", i32 1, i32 1} 194!20 = !{!"kernel_arg_access_qual", !"read_only", !"none"} 195!21 = !{!"kernel_arg_access_qual", !"read_only", !"none"} 196!30 = !{!"kernel_arg_type", !"image2d_t", !"int*"} 197!31 = !{!"kernel_arg_type", !"image3d_t", !"int*"} 198!40 = !{!"kernel_arg_base_type", !"image2d_t", !"int*"} 199!41 = !{!"kernel_arg_base_type", !"image3d_t", !"int*"} 200!50 = !{!"kernel_arg_type_qual", !"", !""} 201 202!12 = !{!"kernel_arg_addr_space", i32 1, i32 0, i32 1, i32 1} 203!22 = !{!"kernel_arg_access_qual", !"read_only", !"none", !"write_only", !"none"} 204!32 = !{!"kernel_arg_type", !"image3d_t", !"sampler_t", !"image2d_t", !"int*"} 205!42 = !{!"kernel_arg_base_type", !"image3d_t", !"sampler_t", !"image2d_t", !"int*"} 206!52 = !{!"kernel_arg_type_qual", !"", !"", !"", !""} 207