1//===-- AMDGPUGIsel.td - AMDGPU GlobalISel Patterns---------*- tablegen -*-===// 2// 3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4// See https://llvm.org/LICENSE.txt for license information. 5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6// 7//===----------------------------------------------------------------------===// 8// This files contains patterns that should only be used by GlobalISel. For 9// example patterns for V_* instructions that have S_* equivalents. 10// SelectionDAG does not support selecting V_* instructions. 11//===----------------------------------------------------------------------===// 12 13include "AMDGPU.td" 14include "AMDGPUCombine.td" 15 16def sd_vsrc0 : ComplexPattern<i32, 1, "">; 17def gi_vsrc0 : 18 GIComplexOperandMatcher<s32, "selectVSRC0">, 19 GIComplexPatternEquiv<sd_vsrc0>; 20 21def sd_vcsrc : ComplexPattern<i32, 1, "">; 22def gi_vcsrc : 23 GIComplexOperandMatcher<s32, "selectVCSRC">, 24 GIComplexPatternEquiv<sd_vcsrc>; 25 26def gi_vop3mods0 : 27 GIComplexOperandMatcher<s32, "selectVOP3Mods0">, 28 GIComplexPatternEquiv<VOP3Mods0>; 29 30def gi_vop3mods : 31 GIComplexOperandMatcher<s32, "selectVOP3Mods">, 32 GIComplexPatternEquiv<VOP3Mods>; 33 34def gi_vop3_no_mods : 35 GIComplexOperandMatcher<s32, "selectVOP3NoMods">, 36 GIComplexPatternEquiv<VOP3NoMods>; 37 38def gi_vop3mods_nnan : 39 GIComplexOperandMatcher<s32, "selectVOP3Mods_nnan">, 40 GIComplexPatternEquiv<VOP3Mods_nnan>; 41 42def gi_vop3omods : 43 GIComplexOperandMatcher<s32, "selectVOP3OMods">, 44 GIComplexPatternEquiv<VOP3OMods>; 45 46def gi_vop3pmods : 47 GIComplexOperandMatcher<s32, "selectVOP3PMods">, 48 GIComplexPatternEquiv<VOP3PMods>; 49 50def gi_vop3pmodsdot : 51 GIComplexOperandMatcher<s32, "selectVOP3PModsDOT">, 52 GIComplexPatternEquiv<VOP3PModsDOT>; 53 54def gi_vop3opselmods : 55 GIComplexOperandMatcher<s32, "selectVOP3OpSelMods">, 56 GIComplexPatternEquiv<VOP3OpSelMods>; 57 58// FIXME: Why do we have both VOP3OpSel and VOP3OpSelMods? 59def gi_vop3opsel : 60 GIComplexOperandMatcher<s32, "selectVOP3OpSelMods">, 61 GIComplexPatternEquiv<VOP3OpSel>; 62 63def gi_smrd_imm : 64 GIComplexOperandMatcher<s64, "selectSmrdImm">, 65 GIComplexPatternEquiv<SMRDImm>; 66 67def gi_smrd_imm32 : 68 GIComplexOperandMatcher<s64, "selectSmrdImm32">, 69 GIComplexPatternEquiv<SMRDImm32>; 70 71def gi_smrd_sgpr : 72 GIComplexOperandMatcher<s64, "selectSmrdSgpr">, 73 GIComplexPatternEquiv<SMRDSgpr>; 74 75def gi_flat_offset : 76 GIComplexOperandMatcher<s64, "selectFlatOffset">, 77 GIComplexPatternEquiv<FlatOffset>; 78def gi_global_offset : 79 GIComplexOperandMatcher<s64, "selectGlobalOffset">, 80 GIComplexPatternEquiv<GlobalOffset>; 81def gi_global_saddr : 82 GIComplexOperandMatcher<s64, "selectGlobalSAddr">, 83 GIComplexPatternEquiv<GlobalSAddr>; 84 85def gi_mubuf_scratch_offset : 86 GIComplexOperandMatcher<s32, "selectMUBUFScratchOffset">, 87 GIComplexPatternEquiv<MUBUFScratchOffset>; 88def gi_mubuf_scratch_offen : 89 GIComplexOperandMatcher<s32, "selectMUBUFScratchOffen">, 90 GIComplexPatternEquiv<MUBUFScratchOffen>; 91 92def gi_flat_scratch_offset : 93 GIComplexOperandMatcher<s32, "selectScratchOffset">, 94 GIComplexPatternEquiv<ScratchOffset>; 95 96def gi_flat_scratch_saddr : 97 GIComplexOperandMatcher<s32, "selectScratchSAddr">, 98 GIComplexPatternEquiv<ScratchSAddr>; 99 100def gi_flat_scratch_svaddr : 101 GIComplexOperandMatcher<s32, "selectScratchSVAddr">, 102 GIComplexPatternEquiv<ScratchSVAddr>; 103 104def gi_ds_1addr_1offset : 105 GIComplexOperandMatcher<s32, "selectDS1Addr1Offset">, 106 GIComplexPatternEquiv<DS1Addr1Offset>; 107 108def gi_ds_64bit_4byte_aligned : 109 GIComplexOperandMatcher<s64, "selectDS64Bit4ByteAligned">, 110 GIComplexPatternEquiv<DS64Bit4ByteAligned>; 111 112def gi_ds_128bit_8byte_aligned : 113 GIComplexOperandMatcher<s64, "selectDS128Bit8ByteAligned">, 114 GIComplexPatternEquiv<DS128Bit8ByteAligned>; 115 116def gi_mubuf_addr64 : 117 GIComplexOperandMatcher<s64, "selectMUBUFAddr64">, 118 GIComplexPatternEquiv<MUBUFAddr64>; 119 120def gi_mubuf_offset : 121 GIComplexOperandMatcher<s64, "selectMUBUFOffset">, 122 GIComplexPatternEquiv<MUBUFOffset>; 123 124def gi_smrd_buffer_imm : 125 GIComplexOperandMatcher<s64, "selectSMRDBufferImm">, 126 GIComplexPatternEquiv<SMRDBufferImm>; 127 128def gi_smrd_buffer_imm32 : 129 GIComplexOperandMatcher<s64, "selectSMRDBufferImm32">, 130 GIComplexPatternEquiv<SMRDBufferImm32>; 131 132// Separate load nodes are defined to glue m0 initialization in 133// SelectionDAG. The GISel selector can just insert m0 initialization 134// directly before selecting a glue-less load, so hide this 135// distinction. 136 137def : GINodeEquiv<G_LOAD, AMDGPUld_glue> { 138 let CheckMMOIsNonAtomic = 1; 139 let IfSignExtend = G_SEXTLOAD; 140 let IfZeroExtend = G_ZEXTLOAD; 141} 142 143def : GINodeEquiv<G_STORE, AMDGPUst_glue> { 144 let CheckMMOIsNonAtomic = 1; 145} 146 147def : GINodeEquiv<G_LOAD, AMDGPUatomic_ld_glue> { 148 bit CheckMMOIsAtomic = 1; 149} 150 151def : GINodeEquiv<G_STORE, AMDGPUatomic_st_glue> { 152 bit CheckMMOIsAtomic = 1; 153} 154 155 156def : GINodeEquiv<G_ATOMIC_CMPXCHG, atomic_cmp_swap_glue>; 157def : GINodeEquiv<G_ATOMICRMW_XCHG, atomic_swap_glue>; 158def : GINodeEquiv<G_ATOMICRMW_ADD, atomic_load_add_glue>; 159def : GINodeEquiv<G_ATOMICRMW_SUB, atomic_load_sub_glue>; 160def : GINodeEquiv<G_ATOMICRMW_AND, atomic_load_and_glue>; 161def : GINodeEquiv<G_ATOMICRMW_OR, atomic_load_or_glue>; 162def : GINodeEquiv<G_ATOMICRMW_XOR, atomic_load_xor_glue>; 163def : GINodeEquiv<G_ATOMICRMW_MIN, atomic_load_min_glue>; 164def : GINodeEquiv<G_ATOMICRMW_MAX, atomic_load_max_glue>; 165def : GINodeEquiv<G_ATOMICRMW_UMIN, atomic_load_umin_glue>; 166def : GINodeEquiv<G_ATOMICRMW_UMAX, atomic_load_umax_glue>; 167def : GINodeEquiv<G_ATOMICRMW_FADD, atomic_load_fadd_glue>; 168 169def : GINodeEquiv<G_AMDGPU_FFBH_U32, AMDGPUffbh_u32_impl>; 170def : GINodeEquiv<G_AMDGPU_FFBL_B32, AMDGPUffbl_b32_impl>; 171def : GINodeEquiv<G_AMDGPU_FMIN_LEGACY, AMDGPUfmin_legacy>; 172def : GINodeEquiv<G_AMDGPU_FMAX_LEGACY, AMDGPUfmax_legacy>; 173def : GINodeEquiv<G_AMDGPU_RCP_IFLAG, AMDGPUrcp_iflag>; 174 175def : GINodeEquiv<G_AMDGPU_CVT_F32_UBYTE0, AMDGPUcvt_f32_ubyte0>; 176def : GINodeEquiv<G_AMDGPU_CVT_F32_UBYTE1, AMDGPUcvt_f32_ubyte1>; 177def : GINodeEquiv<G_AMDGPU_CVT_F32_UBYTE2, AMDGPUcvt_f32_ubyte2>; 178def : GINodeEquiv<G_AMDGPU_CVT_F32_UBYTE3, AMDGPUcvt_f32_ubyte3>; 179 180def : GINodeEquiv<G_AMDGPU_CVT_PK_I16_I32, AMDGPUpk_i16_i32_impl>; 181def : GINodeEquiv<G_AMDGPU_SMED3, AMDGPUsmed3>; 182def : GINodeEquiv<G_AMDGPU_UMED3, AMDGPUumed3>; 183def : GINodeEquiv<G_AMDGPU_FMED3, AMDGPUfmed3_impl>; 184def : GINodeEquiv<G_AMDGPU_CLAMP, AMDGPUclamp>; 185 186def : GINodeEquiv<G_AMDGPU_ATOMIC_CMPXCHG, AMDGPUatomic_cmp_swap>; 187def : GINodeEquiv<G_AMDGPU_BUFFER_LOAD, SIbuffer_load>; 188def : GINodeEquiv<G_AMDGPU_BUFFER_LOAD_USHORT, SIbuffer_load_ushort>; 189def : GINodeEquiv<G_AMDGPU_BUFFER_LOAD_UBYTE, SIbuffer_load_ubyte>; 190def : GINodeEquiv<G_AMDGPU_BUFFER_LOAD_SSHORT, SIbuffer_load_short>; 191def : GINodeEquiv<G_AMDGPU_BUFFER_LOAD_SBYTE, SIbuffer_load_byte>; 192def : GINodeEquiv<G_AMDGPU_BUFFER_LOAD_FORMAT, SIbuffer_load_format>; 193def : GINodeEquiv<G_AMDGPU_BUFFER_LOAD_FORMAT_D16, SIbuffer_load_format_d16>; 194def : GINodeEquiv<G_AMDGPU_TBUFFER_LOAD_FORMAT, SItbuffer_load>; 195def : GINodeEquiv<G_AMDGPU_TBUFFER_LOAD_FORMAT_D16, SItbuffer_load_d16>; 196def : GINodeEquiv<G_AMDGPU_BUFFER_STORE, SIbuffer_store>; 197def : GINodeEquiv<G_AMDGPU_BUFFER_STORE_SHORT, SIbuffer_store_short>; 198def : GINodeEquiv<G_AMDGPU_BUFFER_STORE_BYTE, SIbuffer_store_byte>; 199def : GINodeEquiv<G_AMDGPU_BUFFER_STORE_FORMAT, SIbuffer_store_format>; 200def : GINodeEquiv<G_AMDGPU_BUFFER_STORE_FORMAT_D16, SIbuffer_store_format_d16>; 201def : GINodeEquiv<G_AMDGPU_TBUFFER_STORE_FORMAT, SItbuffer_store>; 202def : GINodeEquiv<G_AMDGPU_TBUFFER_STORE_FORMAT_D16, SItbuffer_store_d16>; 203 204// FIXME: Check MMO is atomic 205def : GINodeEquiv<G_AMDGPU_ATOMIC_INC, SIatomic_inc>; 206def : GINodeEquiv<G_AMDGPU_ATOMIC_DEC, SIatomic_dec>; 207def : GINodeEquiv<G_AMDGPU_ATOMIC_INC, atomic_inc_glue>; 208def : GINodeEquiv<G_AMDGPU_ATOMIC_DEC, atomic_dec_glue>; 209def : GINodeEquiv<G_AMDGPU_ATOMIC_FMIN, SIatomic_fmin>; 210def : GINodeEquiv<G_AMDGPU_ATOMIC_FMAX, SIatomic_fmax>; 211def : GINodeEquiv<G_AMDGPU_ATOMIC_FMIN, atomic_load_fmin_glue>; 212def : GINodeEquiv<G_AMDGPU_ATOMIC_FMAX, atomic_load_fmax_glue>; 213 214 215def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_SWAP, SIbuffer_atomic_swap>; 216def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_ADD, SIbuffer_atomic_add>; 217def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_SUB, SIbuffer_atomic_sub>; 218def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_SMIN, SIbuffer_atomic_smin>; 219def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_UMIN, SIbuffer_atomic_umin>; 220def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_SMAX, SIbuffer_atomic_smax>; 221def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_UMAX, SIbuffer_atomic_umax>; 222def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_AND, SIbuffer_atomic_and>; 223def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_OR, SIbuffer_atomic_or>; 224def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_XOR, SIbuffer_atomic_xor>; 225def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_INC, SIbuffer_atomic_inc>; 226def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_DEC, SIbuffer_atomic_dec>; 227def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_FADD, SIbuffer_atomic_fadd>; 228def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_FMIN, SIbuffer_atomic_fmin>; 229def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_FMAX, SIbuffer_atomic_fmax>; 230def : GINodeEquiv<G_AMDGPU_BUFFER_ATOMIC_CMPSWAP, SIbuffer_atomic_cmpswap>; 231def : GINodeEquiv<G_AMDGPU_S_BUFFER_LOAD, SIsbuffer_load>; 232 233def : GINodeEquiv<G_FPTRUNC_ROUND_UPWARD, SIfptrunc_round_upward>; 234def : GINodeEquiv<G_FPTRUNC_ROUND_DOWNWARD, SIfptrunc_round_downward>; 235 236class GISelSop2Pat < 237 SDPatternOperator node, 238 Instruction inst, 239 ValueType dst_vt, 240 ValueType src0_vt = dst_vt, ValueType src1_vt = src0_vt> : GCNPat < 241 242 (dst_vt (node (src0_vt SReg_32:$src0), (src1_vt SReg_32:$src1))), 243 (inst src0_vt:$src0, src1_vt:$src1) 244>; 245 246class GISelVop2Pat < 247 SDPatternOperator node, 248 Instruction inst, 249 ValueType dst_vt, 250 ValueType src0_vt = dst_vt, ValueType src1_vt = src0_vt> : GCNPat < 251 252 (dst_vt (node (src0_vt (sd_vsrc0 src0_vt:$src0)), (src1_vt VGPR_32:$src1))), 253 (inst src0_vt:$src0, src1_vt:$src1) 254>; 255 256class GISelVop2CommutePat < 257 SDPatternOperator node, 258 Instruction inst, 259 ValueType dst_vt, 260 ValueType src0_vt = dst_vt, ValueType src1_vt = src0_vt> : GCNPat < 261 262 (dst_vt (node (src1_vt VGPR_32:$src1), (src0_vt (sd_vsrc0 src0_vt:$src0)))), 263 (inst src0_vt:$src0, src1_vt:$src1) 264>; 265 266class GISelVop3Pat2 < 267 SDPatternOperator node, 268 Instruction inst, 269 ValueType dst_vt, 270 ValueType src0_vt = dst_vt, ValueType src1_vt = src0_vt> : GCNPat < 271 272 (dst_vt (node (src0_vt (sd_vcsrc src0_vt:$src0)), (src1_vt (sd_vcsrc src1_vt:$src1)))), 273 (inst src0_vt:$src0, src1_vt:$src1) 274>; 275 276class GISelVop3Pat2CommutePat < 277 SDPatternOperator node, 278 Instruction inst, 279 ValueType dst_vt, 280 ValueType src0_vt = dst_vt, ValueType src1_vt = src0_vt> : GCNPat < 281 282 (dst_vt (node (src0_vt (sd_vcsrc src0_vt:$src0)), (src1_vt (sd_vcsrc src1_vt:$src1)))), 283 (inst src0_vt:$src1, src1_vt:$src0) 284>; 285 286class GISelVop3Pat2ModsPat < 287 SDPatternOperator node, 288 Instruction inst, 289 ValueType dst_vt, 290 ValueType src0_vt = dst_vt, ValueType src1_vt = src0_vt> : GCNPat < 291 292 (dst_vt (node (src0_vt (VOP3Mods0 src0_vt:$src0, i32:$src0_modifiers, i1:$clamp, i32:$omods)), 293 (src1_vt (VOP3Mods src1_vt:$src1, i32:$src1_modifiers)))), 294 (inst i32:$src0_modifiers, src0_vt:$src0, 295 i32:$src1_modifiers, src1_vt:$src1, $clamp, $omods) 296>; 297 298multiclass GISelVop2IntrPat < 299 SDPatternOperator node, Instruction inst, 300 ValueType dst_vt, ValueType src_vt = dst_vt> { 301 302 def : GISelVop2Pat <node, inst, dst_vt, src_vt>; 303 304 // FIXME: Intrinsics aren't marked as commutable, so we need to add an explicit 305 // pattern to handle commuting. This is another reason why legalizing to a 306 // generic machine instruction may be better that matching the intrinsic 307 // directly. 308 def : GISelVop2CommutePat <node, inst, dst_vt, src_vt>; 309} 310 311// Since GlobalISel is more flexible then SelectionDAG, I think we can get 312// away with adding patterns for integer types and not legalizing all 313// loads and stores to vector types. This should help simplify the load/store 314// legalization. 315foreach Ty = [i64, p0, p1, p4] in { 316 defm : SMRD_Pattern <"S_LOAD_DWORDX2", Ty>; 317} 318 319def gi_as_i32timm : GICustomOperandRenderer<"renderTruncTImm">, 320 GISDNodeXFormEquiv<as_i32timm>; 321 322def gi_as_i16timm : GICustomOperandRenderer<"renderTruncTImm">, 323 GISDNodeXFormEquiv<as_i16timm>; 324 325def gi_as_i8timm : GICustomOperandRenderer<"renderTruncTImm">, 326 GISDNodeXFormEquiv<as_i8timm>; 327 328def gi_as_i1timm : GICustomOperandRenderer<"renderTruncTImm">, 329 GISDNodeXFormEquiv<as_i1timm>; 330 331def gi_NegateImm : GICustomOperandRenderer<"renderNegateImm">, 332 GISDNodeXFormEquiv<NegateImm>; 333 334def gi_bitcast_fpimm_to_i32 : GICustomOperandRenderer<"renderBitcastImm">, 335 GISDNodeXFormEquiv<bitcast_fpimm_to_i32>; 336 337def gi_IMMPopCount : GICustomOperandRenderer<"renderPopcntImm">, 338 GISDNodeXFormEquiv<IMMPopCount>; 339 340def gi_extract_cpol : GICustomOperandRenderer<"renderExtractCPol">, 341 GISDNodeXFormEquiv<extract_cpol>; 342 343def gi_extract_swz : GICustomOperandRenderer<"renderExtractSWZ">, 344 GISDNodeXFormEquiv<extract_swz>; 345 346def gi_set_glc : GICustomOperandRenderer<"renderSetGLC">, 347 GISDNodeXFormEquiv<set_glc>; 348 349def gi_frameindex_to_targetframeindex : GICustomOperandRenderer<"renderFrameIndex">, 350 GISDNodeXFormEquiv<frameindex_to_targetframeindex>; 351