1//===-- SIInstrInfo.td - SI Instruction Infos -------------*- 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 9def isWave32 : Predicate<"Subtarget->getWavefrontSize() == 32">, 10 AssemblerPredicate <(all_of FeatureWavefrontSize32)>; 11def isWave64 : Predicate<"Subtarget->getWavefrontSize() == 64">, 12 AssemblerPredicate <(all_of FeatureWavefrontSize64)>; 13 14class GCNPredicateControl : PredicateControl { 15 Predicate SIAssemblerPredicate = isGFX6GFX7; 16 Predicate VIAssemblerPredicate = isGFX8GFX9; 17} 18 19// Execpt for the NONE field, this must be kept in sync with the 20// SIEncodingFamily enum in AMDGPUInstrInfo.cpp 21def SIEncodingFamily { 22 int NONE = -1; 23 int SI = 0; 24 int VI = 1; 25 int SDWA = 2; 26 int SDWA9 = 3; 27 int GFX80 = 4; 28 int GFX9 = 5; 29 int GFX10 = 6; 30 int SDWA10 = 7; 31 int GFX90A = 8; 32} 33 34//===----------------------------------------------------------------------===// 35// SI DAG Nodes 36//===----------------------------------------------------------------------===// 37 38def AMDGPUclamp : SDNode<"AMDGPUISD::CLAMP", SDTFPUnaryOp>; 39 40def SIsbuffer_load : SDNode<"AMDGPUISD::SBUFFER_LOAD", 41 SDTypeProfile<1, 3, [SDTCisVT<1, v4i32>, SDTCisVT<2, i32>, SDTCisVT<3, i32>]>, 42 [SDNPMayLoad, SDNPMemOperand] 43>; 44 45def SIds_ordered_count : SDNode<"AMDGPUISD::DS_ORDERED_COUNT", 46 SDTypeProfile<1, 2, [SDTCisVT<0, i32>, SDTCisVT<1, i32>, SDTCisVT<2, i16>]>, 47 [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain, SDNPInGlue] 48>; 49 50def SIatomic_inc : SDNode<"AMDGPUISD::ATOMIC_INC", SDTAtomic2, 51 [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain] 52>; 53 54def SIatomic_dec : SDNode<"AMDGPUISD::ATOMIC_DEC", SDTAtomic2, 55 [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain] 56>; 57 58def SDTAtomic2_f32 : SDTypeProfile<1, 2, [ 59 SDTCisSameAs<0,2>, SDTCisFP<0>, SDTCisPtrTy<1> 60]>; 61 62def SIatomic_fmin : SDNode<"AMDGPUISD::ATOMIC_LOAD_FMIN", SDTAtomic2_f32, 63 [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain] 64>; 65 66def SIatomic_fmax : SDNode<"AMDGPUISD::ATOMIC_LOAD_FMAX", SDTAtomic2_f32, 67 [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain] 68>; 69 70// load_d16_{lo|hi} ptr, tied_input 71def SIload_d16 : SDTypeProfile<1, 2, [ 72 SDTCisPtrTy<1>, 73 SDTCisSameAs<0, 2> 74]>; 75 76 77def SDTtbuffer_load : SDTypeProfile<1, 8, 78 [ // vdata 79 SDTCisVT<1, v4i32>, // rsrc 80 SDTCisVT<2, i32>, // vindex(VGPR) 81 SDTCisVT<3, i32>, // voffset(VGPR) 82 SDTCisVT<4, i32>, // soffset(SGPR) 83 SDTCisVT<5, i32>, // offset(imm) 84 SDTCisVT<6, i32>, // format(imm) 85 SDTCisVT<7, i32>, // cachepolicy, swizzled buffer(imm) 86 SDTCisVT<8, i1> // idxen(imm) 87 ]>; 88 89def SItbuffer_load : SDNode<"AMDGPUISD::TBUFFER_LOAD_FORMAT", SDTtbuffer_load, 90 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]>; 91def SItbuffer_load_d16 : SDNode<"AMDGPUISD::TBUFFER_LOAD_FORMAT_D16", 92 SDTtbuffer_load, 93 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]>; 94 95def SDTtbuffer_store : SDTypeProfile<0, 9, 96 [ // vdata 97 SDTCisVT<1, v4i32>, // rsrc 98 SDTCisVT<2, i32>, // vindex(VGPR) 99 SDTCisVT<3, i32>, // voffset(VGPR) 100 SDTCisVT<4, i32>, // soffset(SGPR) 101 SDTCisVT<5, i32>, // offset(imm) 102 SDTCisVT<6, i32>, // format(imm) 103 SDTCisVT<7, i32>, // cachepolicy, swizzled buffer(imm) 104 SDTCisVT<8, i1> // idxen(imm) 105 ]>; 106 107def SItbuffer_store : SDNode<"AMDGPUISD::TBUFFER_STORE_FORMAT", SDTtbuffer_store, 108 [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>; 109def SItbuffer_store_d16 : SDNode<"AMDGPUISD::TBUFFER_STORE_FORMAT_D16", 110 SDTtbuffer_store, 111 [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>; 112 113def SDTBufferLoad : SDTypeProfile<1, 7, 114 [ // vdata 115 SDTCisVT<1, v4i32>, // rsrc 116 SDTCisVT<2, i32>, // vindex(VGPR) 117 SDTCisVT<3, i32>, // voffset(VGPR) 118 SDTCisVT<4, i32>, // soffset(SGPR) 119 SDTCisVT<5, i32>, // offset(imm) 120 SDTCisVT<6, i32>, // cachepolicy, swizzled buffer(imm) 121 SDTCisVT<7, i1>]>; // idxen(imm) 122 123def SIbuffer_load : SDNode <"AMDGPUISD::BUFFER_LOAD", SDTBufferLoad, 124 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>; 125def SIbuffer_load_ubyte : SDNode <"AMDGPUISD::BUFFER_LOAD_UBYTE", SDTBufferLoad, 126 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>; 127def SIbuffer_load_ushort : SDNode <"AMDGPUISD::BUFFER_LOAD_USHORT", SDTBufferLoad, 128 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>; 129def SIbuffer_load_byte : SDNode <"AMDGPUISD::BUFFER_LOAD_BYTE", SDTBufferLoad, 130 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>; 131def SIbuffer_load_short: SDNode <"AMDGPUISD::BUFFER_LOAD_SHORT", SDTBufferLoad, 132 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>; 133def SIbuffer_load_format : SDNode <"AMDGPUISD::BUFFER_LOAD_FORMAT", SDTBufferLoad, 134 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>; 135def SIbuffer_load_format_d16 : SDNode <"AMDGPUISD::BUFFER_LOAD_FORMAT_D16", 136 SDTBufferLoad, 137 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>; 138 139def SDTBufferStore : SDTypeProfile<0, 8, 140 [ // vdata 141 SDTCisVT<1, v4i32>, // rsrc 142 SDTCisVT<2, i32>, // vindex(VGPR) 143 SDTCisVT<3, i32>, // voffset(VGPR) 144 SDTCisVT<4, i32>, // soffset(SGPR) 145 SDTCisVT<5, i32>, // offset(imm) 146 SDTCisVT<6, i32>, // cachepolicy, swizzled buffer(imm) 147 SDTCisVT<7, i1>]>; // idxen(imm) 148 149def SIbuffer_store : SDNode <"AMDGPUISD::BUFFER_STORE", SDTBufferStore, 150 [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>; 151def SIbuffer_store_byte: SDNode <"AMDGPUISD::BUFFER_STORE_BYTE", 152 SDTBufferStore, 153 [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>; 154def SIbuffer_store_short : SDNode <"AMDGPUISD::BUFFER_STORE_SHORT", 155 SDTBufferStore, 156 [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>; 157def SIbuffer_store_format : SDNode <"AMDGPUISD::BUFFER_STORE_FORMAT", 158 SDTBufferStore, 159 [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>; 160def SIbuffer_store_format_d16 : SDNode <"AMDGPUISD::BUFFER_STORE_FORMAT_D16", 161 SDTBufferStore, 162 [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>; 163 164class SDBufferAtomic<string opcode> : SDNode <opcode, 165 SDTypeProfile<1, 8, 166 [SDTCisVT<2, v4i32>, // rsrc 167 SDTCisVT<3, i32>, // vindex(VGPR) 168 SDTCisVT<4, i32>, // voffset(VGPR) 169 SDTCisVT<5, i32>, // soffset(SGPR) 170 SDTCisVT<6, i32>, // offset(imm) 171 SDTCisVT<7, i32>, // cachepolicy(imm) 172 SDTCisVT<8, i1>]>, // idxen(imm) 173 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad, SDNPMayStore] 174>; 175 176def SIbuffer_atomic_swap : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SWAP">; 177def SIbuffer_atomic_add : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_ADD">; 178def SIbuffer_atomic_sub : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SUB">; 179def SIbuffer_atomic_smin : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SMIN">; 180def SIbuffer_atomic_umin : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_UMIN">; 181def SIbuffer_atomic_smax : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SMAX">; 182def SIbuffer_atomic_umax : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_UMAX">; 183def SIbuffer_atomic_and : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_AND">; 184def SIbuffer_atomic_or : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_OR">; 185def SIbuffer_atomic_xor : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_XOR">; 186def SIbuffer_atomic_inc : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_INC">; 187def SIbuffer_atomic_dec : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_DEC">; 188def SIbuffer_atomic_csub : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_CSUB">; 189def SIbuffer_atomic_fadd : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_FADD">; 190def SIbuffer_atomic_fmin : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_FMIN">; 191def SIbuffer_atomic_fmax : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_FMAX">; 192 193def SIbuffer_atomic_cmpswap : SDNode <"AMDGPUISD::BUFFER_ATOMIC_CMPSWAP", 194 SDTypeProfile<1, 9, 195 [SDTCisVT<0, i32>, // dst 196 SDTCisVT<1, i32>, // src 197 SDTCisVT<2, i32>, // cmp 198 SDTCisVT<3, v4i32>, // rsrc 199 SDTCisVT<4, i32>, // vindex(VGPR) 200 SDTCisVT<5, i32>, // voffset(VGPR) 201 SDTCisVT<6, i32>, // soffset(SGPR) 202 SDTCisVT<7, i32>, // offset(imm) 203 SDTCisVT<8, i32>, // cachepolicy(imm) 204 SDTCisVT<9, i1>]>, // idxen(imm) 205 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad, SDNPMayStore] 206>; 207 208class SDGlobalAtomicNoRtn<string opcode, ValueType ty> : SDNode <opcode, 209 SDTypeProfile<0, 2, 210 [SDTCisPtrTy<0>, // vaddr 211 SDTCisVT<1, ty>]>, // vdata 212 [SDNPMemOperand, SDNPHasChain, SDNPMayLoad, SDNPMayStore] 213>; 214 215def SIpc_add_rel_offset : SDNode<"AMDGPUISD::PC_ADD_REL_OFFSET", 216 SDTypeProfile<1, 2, [SDTCisVT<0, iPTR>, SDTCisSameAs<0,1>, SDTCisSameAs<0,2>]> 217>; 218 219def SIlds : SDNode<"AMDGPUISD::LDS", 220 SDTypeProfile<1, 1, [SDTCisVT<0, iPTR>, SDTCisSameAs<0,1>]> 221>; 222 223def SIload_d16_lo : SDNode<"AMDGPUISD::LOAD_D16_LO", 224 SIload_d16, 225 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain] 226>; 227 228def SIload_d16_lo_u8 : SDNode<"AMDGPUISD::LOAD_D16_LO_U8", 229 SIload_d16, 230 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain] 231>; 232 233def SIload_d16_lo_i8 : SDNode<"AMDGPUISD::LOAD_D16_LO_I8", 234 SIload_d16, 235 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain] 236>; 237 238def SIload_d16_hi : SDNode<"AMDGPUISD::LOAD_D16_HI", 239 SIload_d16, 240 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain] 241>; 242 243def SIload_d16_hi_u8 : SDNode<"AMDGPUISD::LOAD_D16_HI_U8", 244 SIload_d16, 245 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain] 246>; 247 248def SIload_d16_hi_i8 : SDNode<"AMDGPUISD::LOAD_D16_HI_I8", 249 SIload_d16, 250 [SDNPMayLoad, SDNPMemOperand, SDNPHasChain] 251>; 252 253def SIdenorm_mode : SDNode<"AMDGPUISD::DENORM_MODE", 254 SDTypeProfile<0 ,1, [SDTCisInt<0>]>, 255 [SDNPHasChain, SDNPOptInGlue, SDNPOutGlue] 256>; 257 258//===----------------------------------------------------------------------===// 259// ValueType helpers 260//===----------------------------------------------------------------------===// 261 262// Returns 1 if the source arguments have modifiers, 0 if they do not. 263// XXX - do f16 instructions? 264class isFloatType<ValueType SrcVT> { 265 bit ret = !or(!eq(SrcVT.Value, f16.Value), 266 !eq(SrcVT.Value, f32.Value), 267 !eq(SrcVT.Value, f64.Value), 268 !eq(SrcVT.Value, v2f16.Value), 269 !eq(SrcVT.Value, v4f16.Value), 270 !eq(SrcVT.Value, v2f32.Value), 271 !eq(SrcVT.Value, v2f64.Value), 272 !eq(SrcVT.Value, v4f64.Value)); 273} 274 275class isIntType<ValueType SrcVT> { 276 bit ret = !or(!eq(SrcVT.Value, i16.Value), 277 !eq(SrcVT.Value, i32.Value), 278 !eq(SrcVT.Value, i64.Value), 279 !eq(SrcVT.Value, v2i32.Value)); 280} 281 282class isPackedType<ValueType SrcVT> { 283 bit ret = !or(!eq(SrcVT.Value, v2i16.Value), 284 !eq(SrcVT.Value, v2f16.Value), 285 !eq(SrcVT.Value, v4f16.Value), 286 !eq(SrcVT.Value, v2f32.Value)); 287} 288 289 290//===----------------------------------------------------------------------===// 291// PatFrags for global memory operations 292//===----------------------------------------------------------------------===// 293 294foreach as = [ "global", "flat", "constant", "local", "private", "region" ] in { 295let AddressSpaces = !cast<AddressSpaceList>("LoadAddress_"#as).AddrSpaces in { 296 297 298defm atomic_inc_#as : binary_atomic_op<SIatomic_inc>; 299defm atomic_dec_#as : binary_atomic_op<SIatomic_dec>; 300defm atomic_load_fmin_#as : binary_atomic_op<SIatomic_fmin, 0>; 301defm atomic_load_fmax_#as : binary_atomic_op<SIatomic_fmax, 0>; 302 303 304} // End let AddressSpaces = ... 305} // End foreach AddrSpace 306 307 308//===----------------------------------------------------------------------===// 309// SDNodes PatFrags for loads/stores with a glue input. 310// This is for SDNodes and PatFrag for local loads and stores to 311// enable s_mov_b32 m0, -1 to be glued to the memory instructions. 312// 313// These mirror the regular load/store PatFrags and rely on special 314// processing during Select() to add the glued copy. 315// 316//===----------------------------------------------------------------------===// 317 318def AMDGPUld_glue : SDNode <"ISD::LOAD", SDTLoad, 319 [SDNPHasChain, SDNPMayLoad, SDNPMemOperand, SDNPInGlue] 320>; 321 322def AMDGPUatomic_ld_glue : SDNode <"ISD::ATOMIC_LOAD", SDTAtomicLoad, 323 [SDNPHasChain, SDNPMayLoad, SDNPMemOperand, SDNPInGlue] 324>; 325 326def unindexedload_glue : PatFrag <(ops node:$ptr), (AMDGPUld_glue node:$ptr)> { 327 let IsLoad = 1; 328 let IsUnindexed = 1; 329} 330 331def load_glue : PatFrag <(ops node:$ptr), (unindexedload_glue node:$ptr)> { 332 let IsLoad = 1; 333 let IsNonExtLoad = 1; 334} 335 336def atomic_load_32_glue : PatFrag<(ops node:$ptr), 337 (AMDGPUatomic_ld_glue node:$ptr)> { 338 let IsAtomic = 1; 339 let MemoryVT = i32; 340} 341 342def atomic_load_64_glue : PatFrag<(ops node:$ptr), 343 (AMDGPUatomic_ld_glue node:$ptr)> { 344 let IsAtomic = 1; 345 let MemoryVT = i64; 346} 347 348def extload_glue : PatFrag<(ops node:$ptr), (unindexedload_glue node:$ptr)> { 349 let IsLoad = 1; 350 let IsAnyExtLoad = 1; 351} 352 353def sextload_glue : PatFrag<(ops node:$ptr), (unindexedload_glue node:$ptr)> { 354 let IsLoad = 1; 355 let IsSignExtLoad = 1; 356} 357 358def zextload_glue : PatFrag<(ops node:$ptr), (unindexedload_glue node:$ptr)> { 359 let IsLoad = 1; 360 let IsZeroExtLoad = 1; 361} 362 363def extloadi8_glue : PatFrag<(ops node:$ptr), (extload_glue node:$ptr)> { 364 let IsLoad = 1; 365 let MemoryVT = i8; 366} 367 368def zextloadi8_glue : PatFrag<(ops node:$ptr), (zextload_glue node:$ptr)> { 369 let IsLoad = 1; 370 let MemoryVT = i8; 371} 372 373def extloadi16_glue : PatFrag<(ops node:$ptr), (extload_glue node:$ptr)> { 374 let IsLoad = 1; 375 let MemoryVT = i16; 376} 377 378def zextloadi16_glue : PatFrag<(ops node:$ptr), (zextload_glue node:$ptr)> { 379 let IsLoad = 1; 380 let MemoryVT = i16; 381} 382 383def sextloadi8_glue : PatFrag<(ops node:$ptr), (sextload_glue node:$ptr)> { 384 let IsLoad = 1; 385 let MemoryVT = i8; 386} 387 388def sextloadi16_glue : PatFrag<(ops node:$ptr), (sextload_glue node:$ptr)> { 389 let IsLoad = 1; 390 let MemoryVT = i16; 391} 392 393 394let IsLoad = 1, AddressSpaces = LoadAddress_local.AddrSpaces in { 395def load_local_m0 : PatFrag<(ops node:$ptr), (load_glue node:$ptr)> { 396 let IsNonExtLoad = 1; 397} 398 399let MemoryVT = i8 in { 400def extloadi8_local_m0 : PatFrag<(ops node:$ptr), (extloadi8_glue node:$ptr)>; 401def sextloadi8_local_m0 : PatFrag<(ops node:$ptr), (sextloadi8_glue node:$ptr)>; 402def zextloadi8_local_m0 : PatFrag<(ops node:$ptr), (zextloadi8_glue node:$ptr)>; 403} 404 405let MemoryVT = i16 in { 406def extloadi16_local_m0 : PatFrag<(ops node:$ptr), (extloadi16_glue node:$ptr)>; 407def sextloadi16_local_m0 : PatFrag<(ops node:$ptr), (sextloadi16_glue node:$ptr)>; 408def zextloadi16_local_m0 : PatFrag<(ops node:$ptr), (zextloadi16_glue node:$ptr)>; 409} 410 411def load_align8_local_m0 : PatFrag<(ops node:$ptr), 412 (load_local_m0 node:$ptr)>, Aligned<8> { 413 let IsLoad = 1; 414 let IsNonExtLoad = 1; 415} 416 417def load_align16_local_m0 : PatFrag<(ops node:$ptr), 418 (load_local_m0 node:$ptr)>, Aligned<16> { 419 let IsLoad = 1; 420 let IsNonExtLoad = 1; 421} 422 423} // End IsLoad = 1 424 425let IsAtomic = 1, AddressSpaces = LoadAddress_local.AddrSpaces in { 426def atomic_load_32_local_m0 : PatFrag<(ops node:$ptr), 427 (atomic_load_32_glue node:$ptr)> { 428 let MemoryVT = i32; 429} 430def atomic_load_64_local_m0 : PatFrag<(ops node:$ptr), 431 (atomic_load_64_glue node:$ptr)> { 432 let MemoryVT = i64; 433} 434 435} // End let AddressSpaces = LoadAddress_local.AddrSpaces 436 437 438def AMDGPUst_glue : SDNode <"ISD::STORE", SDTStore, 439 [SDNPHasChain, SDNPMayStore, SDNPMemOperand, SDNPInGlue] 440>; 441 442def AMDGPUatomic_st_glue : SDNode <"ISD::ATOMIC_STORE", SDTAtomicStore, 443 [SDNPHasChain, SDNPMayStore, SDNPMemOperand, SDNPInGlue] 444>; 445 446def unindexedstore_glue : PatFrag<(ops node:$val, node:$ptr), 447 (AMDGPUst_glue node:$val, node:$ptr)> { 448 let IsStore = 1; 449 let IsUnindexed = 1; 450} 451 452def store_glue : PatFrag<(ops node:$val, node:$ptr), 453 (unindexedstore_glue node:$val, node:$ptr)> { 454 let IsStore = 1; 455 let IsTruncStore = 0; 456} 457 458def truncstore_glue : PatFrag<(ops node:$val, node:$ptr), 459 (unindexedstore_glue node:$val, node:$ptr)> { 460 let IsStore = 1; 461 let IsTruncStore = 1; 462} 463 464def truncstorei8_glue : PatFrag<(ops node:$val, node:$ptr), 465 (truncstore_glue node:$val, node:$ptr)> { 466 let IsStore = 1; 467 let MemoryVT = i8; 468} 469 470def truncstorei16_glue : PatFrag<(ops node:$val, node:$ptr), 471 (truncstore_glue node:$val, node:$ptr)> { 472 let IsStore = 1; 473 let MemoryVT = i16; 474} 475 476let IsStore = 1, AddressSpaces = StoreAddress_local.AddrSpaces in { 477def store_local_m0 : PatFrag<(ops node:$val, node:$ptr), 478 (store_glue node:$val, node:$ptr)> { 479 let IsStore = 1; 480 let IsTruncStore = 0; 481} 482 483def truncstorei8_local_m0 : PatFrag<(ops node:$val, node:$ptr), 484 (unindexedstore_glue node:$val, node:$ptr)> { 485 let IsStore = 1; 486 let MemoryVT = i8; 487} 488 489def truncstorei16_local_m0 : PatFrag<(ops node:$val, node:$ptr), 490 (unindexedstore_glue node:$val, node:$ptr)> { 491 let IsStore = 1; 492 let MemoryVT = i16; 493} 494} 495 496def store_align8_local_m0 : PatFrag <(ops node:$value, node:$ptr), 497 (store_local_m0 node:$value, node:$ptr)>, 498 Aligned<8> { 499 let IsStore = 1; 500 let IsTruncStore = 0; 501} 502 503def store_align16_local_m0 : PatFrag <(ops node:$value, node:$ptr), 504 (store_local_m0 node:$value, node:$ptr)>, 505 Aligned<16> { 506 let IsStore = 1; 507 let IsTruncStore = 0; 508} 509 510let AddressSpaces = StoreAddress_local.AddrSpaces in { 511 512def atomic_store_local_32_m0 : PatFrag < 513 (ops node:$value, node:$ptr), 514 (AMDGPUatomic_st_glue node:$value, node:$ptr)> { 515 let IsAtomic = 1; 516 let MemoryVT = i32; 517} 518def atomic_store_local_64_m0 : PatFrag < 519 (ops node:$value, node:$ptr), 520 (AMDGPUatomic_st_glue node:$value, node:$ptr)> { 521 let IsAtomic = 1; 522 let MemoryVT = i64; 523} 524} // End let AddressSpaces = StoreAddress_local.AddrSpaces 525 526 527def si_setcc_uniform : PatFrag < 528 (ops node:$lhs, node:$rhs, node:$cond), 529 (setcc node:$lhs, node:$rhs, node:$cond), [{ 530 for (SDNode *Use : N->uses()) { 531 if (Use->isMachineOpcode() || Use->getOpcode() != ISD::CopyToReg) 532 return false; 533 534 unsigned Reg = cast<RegisterSDNode>(Use->getOperand(1))->getReg(); 535 if (Reg != AMDGPU::SCC) 536 return false; 537 } 538 return true; 539}]>; 540 541//===----------------------------------------------------------------------===// 542// SDNodes PatFrags for a16 loads and stores with 3 components. 543// v3f16/v3i16 is widened to v4f16/v4i16, so we need to match on the memory 544// load/store size. 545//===----------------------------------------------------------------------===// 546 547class mubuf_intrinsic_load<SDPatternOperator name, ValueType vt> : PatFrag < 548 (ops node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 549 node:$auxiliary, node:$idxen), 550 (name node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 551 node:$auxiliary, node:$idxen)> { 552 let IsLoad = 1; 553 let MemoryVT = vt; 554} 555 556class mubuf_intrinsic_store<SDPatternOperator name, ValueType vt> : PatFrag < 557 (ops node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 558 node:$auxiliary, node:$idxen), 559 (name node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 560 node:$auxiliary, node:$idxen)> { 561 let IsStore = 1; 562 let MemoryVT = vt; 563} 564 565class mtbuf_intrinsic_load<SDPatternOperator name, ValueType vt> : PatFrag < 566 (ops node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 567 node:$format, node:$auxiliary, node:$idxen), 568 (name node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 569 node:$format, node:$auxiliary, node:$idxen)> { 570 let IsLoad = 1; 571 let MemoryVT = vt; 572} 573 574class mtbuf_intrinsic_store<SDPatternOperator name, ValueType vt> : PatFrag < 575 (ops node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 576 node:$format, node:$auxiliary, node:$idxen), 577 (name node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset, 578 node:$format, node:$auxiliary, node:$idxen)> { 579 let IsStore = 1; 580 let MemoryVT = vt; 581} 582 583//===----------------------------------------------------------------------===// 584// SDNodes PatFrags for d16 loads 585//===----------------------------------------------------------------------===// 586 587class LoadD16Frag <SDPatternOperator op> : PatFrag< 588 (ops node:$ptr, node:$tied_in), 589 (op node:$ptr, node:$tied_in)> { 590 let IsLoad = 1; 591} 592 593foreach as = [ "global", "flat", "constant", "local", "private", "region" ] in { 594let AddressSpaces = !cast<AddressSpaceList>("LoadAddress_"#as).AddrSpaces in { 595 596def load_d16_hi_#as : LoadD16Frag <SIload_d16_hi>; 597 598def az_extloadi8_d16_hi_#as : LoadD16Frag <SIload_d16_hi_u8> { 599 let MemoryVT = i8; 600} 601 602def sextloadi8_d16_hi_#as : LoadD16Frag <SIload_d16_hi_i8> { 603 let MemoryVT = i8; 604} 605 606def load_d16_lo_#as : LoadD16Frag <SIload_d16_lo>; 607 608def az_extloadi8_d16_lo_#as : LoadD16Frag <SIload_d16_lo_u8> { 609 let MemoryVT = i8; 610} 611 612def sextloadi8_d16_lo_#as : LoadD16Frag <SIload_d16_lo_i8> { 613 let MemoryVT = i8; 614} 615 616} // End let AddressSpaces = ... 617} // End foreach AddrSpace 618 619def lshr_rev : PatFrag < 620 (ops node:$src1, node:$src0), 621 (srl $src0, $src1) 622>; 623 624def ashr_rev : PatFrag < 625 (ops node:$src1, node:$src0), 626 (sra $src0, $src1) 627>; 628 629def lshl_rev : PatFrag < 630 (ops node:$src1, node:$src0), 631 (shl $src0, $src1) 632>; 633 634def add_ctpop : PatFrag < 635 (ops node:$src0, node:$src1), 636 (add (ctpop $src0), $src1) 637>; 638 639def xnor : PatFrag < 640 (ops node:$src0, node:$src1), 641 (not (xor $src0, $src1)) 642>; 643 644foreach I = 1-4 in { 645def shl#I#_add : PatFrag < 646 (ops node:$src0, node:$src1), 647 (add (shl_oneuse $src0, (i32 I)), $src1)> { 648 // FIXME: Poor substitute for disabling pattern in SelectionDAG 649 let PredicateCode = [{return false;}]; 650 let GISelPredicateCode = [{return true;}]; 651} 652} 653 654multiclass SIAtomicM0Glue2 <string op_name, bit is_amdgpu = 0, 655 SDTypeProfile tc = SDTAtomic2, 656 bit IsInt = 1> { 657 658 def _glue : SDNode < 659 !if(is_amdgpu, "AMDGPUISD", "ISD")#"::ATOMIC_"#op_name, tc, 660 [SDNPHasChain, SDNPMayStore, SDNPMayLoad, SDNPMemOperand, SDNPInGlue] 661 >; 662 663 let AddressSpaces = StoreAddress_local.AddrSpaces in { 664 defm _local_m0 : binary_atomic_op <!cast<SDNode>(NAME#"_glue"), IsInt>; 665 } 666 667 let AddressSpaces = StoreAddress_region.AddrSpaces in { 668 defm _region_m0 : binary_atomic_op <!cast<SDNode>(NAME#"_glue"), IsInt>; 669 } 670} 671 672defm atomic_load_add : SIAtomicM0Glue2 <"LOAD_ADD">; 673defm atomic_load_sub : SIAtomicM0Glue2 <"LOAD_SUB">; 674defm atomic_inc : SIAtomicM0Glue2 <"INC", 1>; 675defm atomic_dec : SIAtomicM0Glue2 <"DEC", 1>; 676defm atomic_load_and : SIAtomicM0Glue2 <"LOAD_AND">; 677defm atomic_load_min : SIAtomicM0Glue2 <"LOAD_MIN">; 678defm atomic_load_max : SIAtomicM0Glue2 <"LOAD_MAX">; 679defm atomic_load_or : SIAtomicM0Glue2 <"LOAD_OR">; 680defm atomic_load_xor : SIAtomicM0Glue2 <"LOAD_XOR">; 681defm atomic_load_umin : SIAtomicM0Glue2 <"LOAD_UMIN">; 682defm atomic_load_umax : SIAtomicM0Glue2 <"LOAD_UMAX">; 683defm atomic_swap : SIAtomicM0Glue2 <"SWAP">; 684defm atomic_load_fadd : SIAtomicM0Glue2 <"LOAD_FADD", 0, SDTAtomic2_f32, 0>; 685defm atomic_load_fmin : SIAtomicM0Glue2 <"LOAD_FMIN", 1, SDTAtomic2_f32, 0>; 686defm atomic_load_fmax : SIAtomicM0Glue2 <"LOAD_FMAX", 1, SDTAtomic2_f32, 0>; 687 688def as_i1timm : SDNodeXForm<timm, [{ 689 return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i1); 690}]>; 691 692def as_i8imm : SDNodeXForm<imm, [{ 693 return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i8); 694}]>; 695 696def as_i8timm : SDNodeXForm<timm, [{ 697 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16); 698}]>; 699 700def as_i16imm : SDNodeXForm<imm, [{ 701 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16); 702}]>; 703 704def as_i16timm : SDNodeXForm<timm, [{ 705 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16); 706}]>; 707 708def as_i32imm: SDNodeXForm<imm, [{ 709 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i32); 710}]>; 711 712def as_i32timm: SDNodeXForm<timm, [{ 713 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i32); 714}]>; 715 716def as_i64imm: SDNodeXForm<imm, [{ 717 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i64); 718}]>; 719 720def cond_as_i32imm: SDNodeXForm<cond, [{ 721 return CurDAG->getTargetConstant(N->get(), SDLoc(N), MVT::i32); 722}]>; 723 724// Copied from the AArch64 backend: 725def bitcast_fpimm_to_i32 : SDNodeXForm<fpimm, [{ 726return CurDAG->getTargetConstant( 727 N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i32); 728}]>; 729 730def frameindex_to_targetframeindex : SDNodeXForm<frameindex, [{ 731 auto FI = cast<FrameIndexSDNode>(N); 732 return CurDAG->getTargetFrameIndex(FI->getIndex(), MVT::i32); 733}]>; 734 735// Copied from the AArch64 backend: 736def bitcast_fpimm_to_i64 : SDNodeXForm<fpimm, [{ 737return CurDAG->getTargetConstant( 738 N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i64); 739}]>; 740 741class bitextract_imm<int bitnum> : SDNodeXForm<imm, [{ 742 uint64_t Imm = N->getZExtValue(); 743 unsigned Bit = (Imm >> }] # bitnum # [{ ) & 1; 744 return CurDAG->getTargetConstant(Bit, SDLoc(N), MVT::i1); 745}]>; 746 747def SIMM16bit : ImmLeaf <i32, 748 [{return isInt<16>(Imm);}] 749>; 750 751def UIMM16bit : ImmLeaf <i32, 752 [{return isUInt<16>(Imm);}] 753>; 754 755def i64imm_32bit : ImmLeaf<i64, [{ 756 return (Imm & 0xffffffffULL) == static_cast<uint64_t>(Imm); 757}]>; 758 759def InlineImm16 : ImmLeaf<i16, [{ 760 return isInlineImmediate16(Imm); 761}]>; 762 763def InlineImm32 : ImmLeaf<i32, [{ 764 return isInlineImmediate32(Imm); 765}]>; 766 767def InlineImm64 : ImmLeaf<i64, [{ 768 return isInlineImmediate64(Imm); 769}]>; 770 771def InlineImmFP32 : FPImmLeaf<f32, [{ 772 return isInlineImmediate(Imm); 773}]>; 774 775def InlineImmFP64 : FPImmLeaf<f64, [{ 776 return isInlineImmediate(Imm); 777}]>; 778 779 780class VGPRImm <dag frag> : PatLeaf<frag, [{ 781 return isVGPRImm(N); 782}]>; 783 784def NegateImm : SDNodeXForm<imm, [{ 785 return CurDAG->getConstant(-N->getSExtValue(), SDLoc(N), MVT::i32); 786}]>; 787 788// TODO: When FP inline imm values work? 789def NegSubInlineConst32 : ImmLeaf<i32, [{ 790 return Imm < -16 && Imm >= -64; 791}], NegateImm>; 792 793def NegSubInlineIntConst16 : ImmLeaf<i16, [{ 794 return Imm < -16 && Imm >= -64; 795}], NegateImm>; 796 797def ShiftAmt32Imm : ImmLeaf <i32, [{ 798 return Imm < 32; 799}]>; 800 801def getNegV2I16Imm : SDNodeXForm<build_vector, [{ 802 return SDValue(packNegConstantV2I16(N, *CurDAG), 0); 803}]>; 804 805def NegSubInlineConstV216 : PatLeaf<(build_vector), [{ 806 assert(N->getNumOperands() == 2); 807 assert(N->getOperand(0).getValueType().getSizeInBits() == 16); 808 SDValue Src0 = N->getOperand(0); 809 SDValue Src1 = N->getOperand(1); 810 if (Src0 == Src1) 811 return isNegInlineImmediate(Src0.getNode()); 812 813 return (isNullConstantOrUndef(Src0) && isNegInlineImmediate(Src1.getNode())) || 814 (isNullConstantOrUndef(Src1) && isNegInlineImmediate(Src0.getNode())); 815}], getNegV2I16Imm>; 816 817//===----------------------------------------------------------------------===// 818// MUBUF/SMEM Patterns 819//===----------------------------------------------------------------------===// 820 821def extract_cpol : SDNodeXForm<timm, [{ 822 return CurDAG->getTargetConstant(N->getZExtValue() & AMDGPU::CPol::ALL, SDLoc(N), MVT::i8); 823}]>; 824 825def extract_swz : SDNodeXForm<timm, [{ 826 return CurDAG->getTargetConstant((N->getZExtValue() >> 3) & 1, SDLoc(N), MVT::i8); 827}]>; 828 829def set_glc : SDNodeXForm<timm, [{ 830 return CurDAG->getTargetConstant(N->getZExtValue() | AMDGPU::CPol::GLC, SDLoc(N), MVT::i8); 831}]>; 832 833//===----------------------------------------------------------------------===// 834// Custom Operands 835//===----------------------------------------------------------------------===// 836 837def SoppBrTarget : AsmOperandClass { 838 let Name = "SoppBrTarget"; 839 let ParserMethod = "parseSOppBrTarget"; 840} 841 842def sopp_brtarget : Operand<OtherVT> { 843 let EncoderMethod = "getSOPPBrEncoding"; 844 let DecoderMethod = "decodeSoppBrTarget"; 845 let OperandType = "OPERAND_PCREL"; 846 let ParserMatchClass = SoppBrTarget; 847} 848 849def si_ga : Operand<iPTR>; 850 851def InterpSlotMatchClass : AsmOperandClass { 852 let Name = "InterpSlot"; 853 let PredicateMethod = "isInterpSlot"; 854 let ParserMethod = "parseInterpSlot"; 855 let RenderMethod = "addImmOperands"; 856} 857 858def InterpSlot : Operand<i32> { 859 let PrintMethod = "printInterpSlot"; 860 let ParserMatchClass = InterpSlotMatchClass; 861 let OperandType = "OPERAND_IMMEDIATE"; 862} 863 864def AttrMatchClass : AsmOperandClass { 865 let Name = "Attr"; 866 let PredicateMethod = "isInterpAttr"; 867 let ParserMethod = "parseInterpAttr"; 868 let RenderMethod = "addImmOperands"; 869} 870 871// It appears to be necessary to create a separate operand for this to 872// be able to parse attr<num> with no space. 873def Attr : Operand<i32> { 874 let PrintMethod = "printInterpAttr"; 875 let ParserMatchClass = AttrMatchClass; 876 let OperandType = "OPERAND_IMMEDIATE"; 877} 878 879def AttrChanMatchClass : AsmOperandClass { 880 let Name = "AttrChan"; 881 let PredicateMethod = "isAttrChan"; 882 let RenderMethod = "addImmOperands"; 883} 884 885def AttrChan : Operand<i32> { 886 let PrintMethod = "printInterpAttrChan"; 887 let ParserMatchClass = AttrChanMatchClass; 888 let OperandType = "OPERAND_IMMEDIATE"; 889} 890 891def SendMsgMatchClass : AsmOperandClass { 892 let Name = "SendMsg"; 893 let PredicateMethod = "isSendMsg"; 894 let ParserMethod = "parseSendMsgOp"; 895 let RenderMethod = "addImmOperands"; 896} 897 898def SwizzleMatchClass : AsmOperandClass { 899 let Name = "Swizzle"; 900 let PredicateMethod = "isSwizzle"; 901 let ParserMethod = "parseSwizzleOp"; 902 let RenderMethod = "addImmOperands"; 903 let IsOptional = 1; 904} 905 906def EndpgmMatchClass : AsmOperandClass { 907 let Name = "EndpgmImm"; 908 let PredicateMethod = "isEndpgm"; 909 let ParserMethod = "parseEndpgmOp"; 910 let RenderMethod = "addImmOperands"; 911 let IsOptional = 1; 912} 913 914def ExpTgtMatchClass : AsmOperandClass { 915 let Name = "ExpTgt"; 916 let PredicateMethod = "isExpTgt"; 917 let ParserMethod = "parseExpTgt"; 918 let RenderMethod = "printExpTgt"; 919} 920 921def SWaitMatchClass : AsmOperandClass { 922 let Name = "SWaitCnt"; 923 let RenderMethod = "addImmOperands"; 924 let ParserMethod = "parseSWaitCntOps"; 925} 926 927def VReg32OrOffClass : AsmOperandClass { 928 let Name = "VReg32OrOff"; 929 let ParserMethod = "parseVReg32OrOff"; 930} 931 932let OperandType = "OPERAND_IMMEDIATE" in { 933def SendMsgImm : Operand<i32> { 934 let PrintMethod = "printSendMsg"; 935 let ParserMatchClass = SendMsgMatchClass; 936} 937 938def SwizzleImm : Operand<i16> { 939 let PrintMethod = "printSwizzle"; 940 let ParserMatchClass = SwizzleMatchClass; 941} 942 943def EndpgmImm : Operand<i16> { 944 let PrintMethod = "printEndpgm"; 945 let ParserMatchClass = EndpgmMatchClass; 946} 947 948def WAIT_FLAG : Operand <i32> { 949 let ParserMatchClass = SWaitMatchClass; 950 let PrintMethod = "printWaitFlag"; 951} 952} // End OperandType = "OPERAND_IMMEDIATE" 953 954include "SIInstrFormats.td" 955include "VIInstrFormats.td" 956 957def BoolReg : AsmOperandClass { 958 let Name = "BoolReg"; 959 let ParserMethod = "parseBoolReg"; 960 let RenderMethod = "addRegOperands"; 961} 962 963class BoolRC : RegisterOperand<SReg_1> { 964 let ParserMatchClass = BoolReg; 965 let DecoderMethod = "decodeBoolReg"; 966} 967 968def SSrc_i1 : RegisterOperand<SReg_1_XEXEC> { 969 let ParserMatchClass = BoolReg; 970 let DecoderMethod = "decodeBoolReg"; 971} 972 973def VOPDstS64orS32 : BoolRC { 974 let PrintMethod = "printVOPDst"; 975} 976 977// SCSrc_i1 is the operand for pseudo instructions only. 978// Boolean immediates shall not be exposed to codegen instructions. 979def SCSrc_i1 : RegisterOperand<SReg_1_XEXEC> { 980 let OperandNamespace = "AMDGPU"; 981 let OperandType = "OPERAND_REG_IMM_INT32"; 982 let ParserMatchClass = BoolReg; 983 let DecoderMethod = "decodeBoolReg"; 984} 985 986// ===----------------------------------------------------------------------===// 987// ExpSrc* Special cases for exp src operands which are printed as 988// "off" depending on en operand. 989// ===----------------------------------------------------------------------===// 990 991def ExpSrc0 : RegisterOperand<VGPR_32> { 992 let PrintMethod = "printExpSrc0"; 993 let ParserMatchClass = VReg32OrOffClass; 994} 995 996def ExpSrc1 : RegisterOperand<VGPR_32> { 997 let PrintMethod = "printExpSrc1"; 998 let ParserMatchClass = VReg32OrOffClass; 999} 1000 1001def ExpSrc2 : RegisterOperand<VGPR_32> { 1002 let PrintMethod = "printExpSrc2"; 1003 let ParserMatchClass = VReg32OrOffClass; 1004} 1005 1006def ExpSrc3 : RegisterOperand<VGPR_32> { 1007 let PrintMethod = "printExpSrc3"; 1008 let ParserMatchClass = VReg32OrOffClass; 1009} 1010 1011class SDWASrc<ValueType vt> : RegisterOperand<VS_32> { 1012 let OperandNamespace = "AMDGPU"; 1013 string Type = !if(isFloatType<vt>.ret, "FP", "INT"); 1014 let OperandType = "OPERAND_REG_INLINE_C_"#Type#vt.Size; 1015 let DecoderMethod = "decodeSDWASrc"#vt.Size; 1016 let EncoderMethod = "getSDWASrcEncoding"; 1017} 1018 1019def SDWASrc_i32 : SDWASrc<i32>; 1020def SDWASrc_i16 : SDWASrc<i16>; 1021def SDWASrc_f32 : SDWASrc<f32>; 1022def SDWASrc_f16 : SDWASrc<f16>; 1023 1024def SDWAVopcDst : BoolRC { 1025 let OperandNamespace = "AMDGPU"; 1026 let OperandType = "OPERAND_SDWA_VOPC_DST"; 1027 let EncoderMethod = "getSDWAVopcDstEncoding"; 1028 let DecoderMethod = "decodeSDWAVopcDst"; 1029 let PrintMethod = "printVOPDst"; 1030} 1031 1032class NamedMatchClass<string CName, bit Optional = 1> : AsmOperandClass { 1033 let Name = "Imm"#CName; 1034 let PredicateMethod = "is"#CName; 1035 let ParserMethod = !if(Optional, "parseOptionalOperand", "parse"#CName); 1036 let RenderMethod = "addImmOperands"; 1037 let IsOptional = Optional; 1038 let DefaultMethod = !if(Optional, "default"#CName, ?); 1039} 1040 1041class NamedOperandBit<string Name, AsmOperandClass MatchClass> : Operand<i1> { 1042 let PrintMethod = "print"#Name; 1043 let ParserMatchClass = MatchClass; 1044} 1045 1046class NamedOperandBit_0<string Name, AsmOperandClass MatchClass> : 1047 OperandWithDefaultOps<i1, (ops (i1 0))> { 1048 let PrintMethod = "print"#Name; 1049 let ParserMatchClass = MatchClass; 1050} 1051 1052class NamedOperandBit_1<string Name, AsmOperandClass MatchClass> : 1053 OperandWithDefaultOps<i1, (ops (i1 1))> { 1054 let PrintMethod = "print"#Name; 1055 let ParserMatchClass = MatchClass; 1056} 1057 1058class NamedOperandU8<string Name, AsmOperandClass MatchClass> : Operand<i8> { 1059 let PrintMethod = "print"#Name; 1060 let ParserMatchClass = MatchClass; 1061} 1062 1063class NamedOperandU16<string Name, AsmOperandClass MatchClass> : Operand<i16> { 1064 let PrintMethod = "print"#Name; 1065 let ParserMatchClass = MatchClass; 1066} 1067 1068class NamedOperandU32<string Name, AsmOperandClass MatchClass> : Operand<i32> { 1069 let PrintMethod = "print"#Name; 1070 let ParserMatchClass = MatchClass; 1071} 1072 1073class NamedOperandU32_0<string Name, AsmOperandClass MatchClass> : 1074 OperandWithDefaultOps<i32, (ops (i32 0))> { 1075 let PrintMethod = "print"#Name; 1076 let ParserMatchClass = MatchClass; 1077} 1078 1079class NamedOperandU32Default0<string Name, AsmOperandClass MatchClass> : 1080 OperandWithDefaultOps<i32, (ops (i32 0))> { 1081 let PrintMethod = "print"#Name; 1082 let ParserMatchClass = MatchClass; 1083} 1084 1085class NamedOperandU32Default1<string Name, AsmOperandClass MatchClass> : 1086 OperandWithDefaultOps<i32, (ops (i32 1))> { 1087 let PrintMethod = "print"#Name; 1088 let ParserMatchClass = MatchClass; 1089} 1090 1091let OperandType = "OPERAND_IMMEDIATE" in { 1092 1093def offen : NamedOperandBit<"Offen", NamedMatchClass<"Offen">>; 1094def idxen : NamedOperandBit<"Idxen", NamedMatchClass<"Idxen">>; 1095def addr64 : NamedOperandBit<"Addr64", NamedMatchClass<"Addr64">>; 1096 1097def flat_offset : NamedOperandU16<"FlatOffset", NamedMatchClass<"FlatOffset">>; 1098def offset : NamedOperandU16<"Offset", NamedMatchClass<"Offset">>; 1099def offset0 : NamedOperandU8<"Offset0", NamedMatchClass<"Offset0">>; 1100def offset1 : NamedOperandU8<"Offset1", NamedMatchClass<"Offset1">>; 1101 1102def gds : NamedOperandBit<"GDS", NamedMatchClass<"GDS">>; 1103 1104def omod : NamedOperandU32<"OModSI", NamedMatchClass<"OModSI">>; 1105def omod0 : NamedOperandU32_0<"OModSI", NamedMatchClass<"OModSI">>; 1106 1107// We need to make the cases with a default of 0 distinct from no 1108// default to help deal with some cases where the operand appears 1109// before a mandatory operand. 1110def clampmod : NamedOperandBit<"ClampSI", NamedMatchClass<"ClampSI">>; 1111def clampmod0 : NamedOperandBit_0<"ClampSI", NamedMatchClass<"ClampSI">>; 1112def highmod : NamedOperandBit<"High", NamedMatchClass<"High">>; 1113 1114def CPol : NamedOperandU32<"CPol", NamedMatchClass<"CPol">>; 1115def CPol_0 : NamedOperandU32Default0<"CPol", NamedMatchClass<"CPol">>; 1116def CPol_GLC1 : NamedOperandU32Default1<"CPol", NamedMatchClass<"CPol">>; 1117 1118def TFE : NamedOperandBit<"TFE", NamedMatchClass<"TFE">>; 1119def TFE_0 : NamedOperandBit_0<"TFE", NamedMatchClass<"TFE">>; 1120def SWZ : NamedOperandBit<"SWZ", NamedMatchClass<"SWZ">>; 1121def SWZ_0 : NamedOperandBit_0<"SWZ", NamedMatchClass<"SWZ">>; 1122def UNorm : NamedOperandBit<"UNorm", NamedMatchClass<"UNorm">>; 1123def DA : NamedOperandBit<"DA", NamedMatchClass<"DA">>; 1124def R128A16 : NamedOperandBit<"R128A16", NamedMatchClass<"R128A16">>; 1125def GFX10A16 : NamedOperandBit<"GFX10A16", NamedMatchClass<"GFX10A16">>; 1126def D16 : NamedOperandBit<"D16", NamedMatchClass<"D16">>; 1127def LWE : NamedOperandBit<"LWE", NamedMatchClass<"LWE">>; 1128def exp_compr : NamedOperandBit<"ExpCompr", NamedMatchClass<"ExpCompr">>; 1129def exp_vm : NamedOperandBit<"ExpVM", NamedMatchClass<"ExpVM">>; 1130 1131def FORMAT : NamedOperandU8<"FORMAT", NamedMatchClass<"FORMAT", 0>>; 1132 1133def DMask : NamedOperandU16<"DMask", NamedMatchClass<"DMask">>; 1134def Dim : NamedOperandU8<"Dim", NamedMatchClass<"Dim", 0>>; 1135 1136def dpp8 : NamedOperandU32<"DPP8", NamedMatchClass<"DPP8", 0>>; 1137 1138def dpp_ctrl : NamedOperandU32<"DPPCtrl", NamedMatchClass<"DPPCtrl", 0>>; 1139def row_mask : NamedOperandU32<"RowMask", NamedMatchClass<"RowMask">>; 1140def bank_mask : NamedOperandU32<"BankMask", NamedMatchClass<"BankMask">>; 1141def bound_ctrl : NamedOperandBit<"BoundCtrl", NamedMatchClass<"BoundCtrl">>; 1142def FI : NamedOperandU32<"FI", NamedMatchClass<"FI">>; 1143 1144def dst_sel : NamedOperandU32<"SDWADstSel", NamedMatchClass<"SDWADstSel">>; 1145def src0_sel : NamedOperandU32<"SDWASrc0Sel", NamedMatchClass<"SDWASrc0Sel">>; 1146def src1_sel : NamedOperandU32<"SDWASrc1Sel", NamedMatchClass<"SDWASrc1Sel">>; 1147def dst_unused : NamedOperandU32<"SDWADstUnused", NamedMatchClass<"SDWADstUnused">>; 1148 1149def op_sel0 : NamedOperandU32Default0<"OpSel", NamedMatchClass<"OpSel">>; 1150def op_sel_hi0 : NamedOperandU32Default0<"OpSelHi", NamedMatchClass<"OpSelHi">>; 1151def neg_lo0 : NamedOperandU32Default0<"NegLo", NamedMatchClass<"NegLo">>; 1152def neg_hi0 : NamedOperandU32Default0<"NegHi", NamedMatchClass<"NegHi">>; 1153 1154def blgp : NamedOperandU32<"BLGP", NamedMatchClass<"BLGP">>; 1155def cbsz : NamedOperandU32<"CBSZ", NamedMatchClass<"CBSZ">>; 1156def abid : NamedOperandU32<"ABID", NamedMatchClass<"ABID">>; 1157 1158def hwreg : NamedOperandU32<"Hwreg", NamedMatchClass<"Hwreg", 0>>; 1159 1160def exp_tgt : NamedOperandU32<"ExpTgt", NamedMatchClass<"ExpTgt", 0>> { 1161 1162} 1163 1164} // End OperandType = "OPERAND_IMMEDIATE" 1165 1166class KImmMatchClass<int size> : AsmOperandClass { 1167 let Name = "KImmFP"#size; 1168 let PredicateMethod = "isKImmFP"#size; 1169 let ParserMethod = "parseImm"; 1170 let RenderMethod = "addKImmFP"#size#"Operands"; 1171} 1172 1173class kimmOperand<ValueType vt> : Operand<vt> { 1174 let OperandNamespace = "AMDGPU"; 1175 let OperandType = "OPERAND_KIMM"#vt.Size; 1176 let PrintMethod = "printU"#vt.Size#"ImmOperand"; 1177 let ParserMatchClass = !cast<AsmOperandClass>("KImmFP"#vt.Size#"MatchClass"); 1178} 1179 1180// 32-bit VALU immediate operand that uses the constant bus. 1181def KImmFP32MatchClass : KImmMatchClass<32>; 1182def f32kimm : kimmOperand<i32>; 1183 1184// 32-bit VALU immediate operand with a 16-bit value that uses the 1185// constant bus. 1186def KImmFP16MatchClass : KImmMatchClass<16>; 1187def f16kimm : kimmOperand<i16>; 1188 1189class FPInputModsMatchClass <int opSize> : AsmOperandClass { 1190 let Name = "RegOrImmWithFP"#opSize#"InputMods"; 1191 let ParserMethod = "parseRegOrImmWithFPInputMods"; 1192 let PredicateMethod = "isRegOrImmWithFP"#opSize#"InputMods"; 1193} 1194 1195def FP16InputModsMatchClass : FPInputModsMatchClass<16>; 1196def FP32InputModsMatchClass : FPInputModsMatchClass<32>; 1197def FP64InputModsMatchClass : FPInputModsMatchClass<64>; 1198 1199class InputMods <AsmOperandClass matchClass> : Operand <i32> { 1200 let OperandNamespace = "AMDGPU"; 1201 let OperandType = "OPERAND_INPUT_MODS"; 1202 let ParserMatchClass = matchClass; 1203} 1204 1205class FPInputMods <FPInputModsMatchClass matchClass> : InputMods <matchClass> { 1206 let PrintMethod = "printOperandAndFPInputMods"; 1207} 1208 1209def FP16InputMods : FPInputMods<FP16InputModsMatchClass>; 1210def FP32InputMods : FPInputMods<FP32InputModsMatchClass>; 1211def FP64InputMods : FPInputMods<FP64InputModsMatchClass>; 1212 1213class IntInputModsMatchClass <int opSize> : AsmOperandClass { 1214 let Name = "RegOrImmWithInt"#opSize#"InputMods"; 1215 let ParserMethod = "parseRegOrImmWithIntInputMods"; 1216 let PredicateMethod = "isRegOrImmWithInt"#opSize#"InputMods"; 1217} 1218def Int32InputModsMatchClass : IntInputModsMatchClass<32>; 1219def Int64InputModsMatchClass : IntInputModsMatchClass<64>; 1220 1221class IntInputMods <IntInputModsMatchClass matchClass> : InputMods <matchClass> { 1222 let PrintMethod = "printOperandAndIntInputMods"; 1223} 1224def Int32InputMods : IntInputMods<Int32InputModsMatchClass>; 1225def Int64InputMods : IntInputMods<Int64InputModsMatchClass>; 1226 1227class OpSelModsMatchClass : AsmOperandClass { 1228 let Name = "OpSelMods"; 1229 let ParserMethod = "parseRegOrImm"; 1230 let PredicateMethod = "isRegOrImm"; 1231} 1232 1233def IntOpSelModsMatchClass : OpSelModsMatchClass; 1234def IntOpSelMods : InputMods<IntOpSelModsMatchClass>; 1235 1236class FPSDWAInputModsMatchClass <int opSize> : AsmOperandClass { 1237 let Name = "SDWAWithFP"#opSize#"InputMods"; 1238 let ParserMethod = "parseRegOrImmWithFPInputMods"; 1239 let PredicateMethod = "isSDWAFP"#opSize#"Operand"; 1240} 1241 1242def FP16SDWAInputModsMatchClass : FPSDWAInputModsMatchClass<16>; 1243def FP32SDWAInputModsMatchClass : FPSDWAInputModsMatchClass<32>; 1244 1245class FPSDWAInputMods <FPSDWAInputModsMatchClass matchClass> : 1246 InputMods <matchClass> { 1247 let PrintMethod = "printOperandAndFPInputMods"; 1248} 1249 1250def FP16SDWAInputMods : FPSDWAInputMods<FP16SDWAInputModsMatchClass>; 1251def FP32SDWAInputMods : FPSDWAInputMods<FP32SDWAInputModsMatchClass>; 1252 1253def FPVRegInputModsMatchClass : AsmOperandClass { 1254 let Name = "VRegWithFPInputMods"; 1255 let ParserMethod = "parseRegWithFPInputMods"; 1256 let PredicateMethod = "isVRegWithInputMods"; 1257} 1258 1259def FPVRegInputMods : InputMods <FPVRegInputModsMatchClass> { 1260 let PrintMethod = "printOperandAndFPInputMods"; 1261} 1262 1263class IntSDWAInputModsMatchClass <int opSize> : AsmOperandClass { 1264 let Name = "SDWAWithInt"#opSize#"InputMods"; 1265 let ParserMethod = "parseRegOrImmWithIntInputMods"; 1266 let PredicateMethod = "isSDWAInt"#opSize#"Operand"; 1267} 1268 1269def Int16SDWAInputModsMatchClass : IntSDWAInputModsMatchClass<16>; 1270def Int32SDWAInputModsMatchClass : IntSDWAInputModsMatchClass<32>; 1271 1272class IntSDWAInputMods <IntSDWAInputModsMatchClass matchClass> : 1273 InputMods <matchClass> { 1274 let PrintMethod = "printOperandAndIntInputMods"; 1275} 1276 1277def Int16SDWAInputMods : IntSDWAInputMods<Int16SDWAInputModsMatchClass>; 1278def Int32SDWAInputMods : IntSDWAInputMods<Int32SDWAInputModsMatchClass>; 1279 1280def IntVRegInputModsMatchClass : AsmOperandClass { 1281 let Name = "VRegWithIntInputMods"; 1282 let ParserMethod = "parseRegWithIntInputMods"; 1283 let PredicateMethod = "isVRegWithInputMods"; 1284} 1285 1286def IntVRegInputMods : InputMods <IntVRegInputModsMatchClass> { 1287 let PrintMethod = "printOperandAndIntInputMods"; 1288} 1289 1290class PackedFPInputModsMatchClass <int opSize> : AsmOperandClass { 1291 let Name = "PackedFP"#opSize#"InputMods"; 1292 let ParserMethod = "parseRegOrImm"; 1293 let PredicateMethod = "isRegOrImm"; 1294// let PredicateMethod = "isPackedFP"#opSize#"InputMods"; 1295} 1296 1297class PackedIntInputModsMatchClass <int opSize> : AsmOperandClass { 1298 let Name = "PackedInt"#opSize#"InputMods"; 1299 let ParserMethod = "parseRegOrImm"; 1300 let PredicateMethod = "isRegOrImm"; 1301// let PredicateMethod = "isPackedInt"#opSize#"InputMods"; 1302} 1303 1304def PackedF16InputModsMatchClass : PackedFPInputModsMatchClass<16>; 1305def PackedI16InputModsMatchClass : PackedIntInputModsMatchClass<16>; 1306 1307class PackedFPInputMods <PackedFPInputModsMatchClass matchClass> : InputMods <matchClass> { 1308// let PrintMethod = "printPackedFPInputMods"; 1309} 1310 1311class PackedIntInputMods <PackedIntInputModsMatchClass matchClass> : InputMods <matchClass> { 1312 //let PrintMethod = "printPackedIntInputMods"; 1313} 1314 1315def PackedF16InputMods : PackedFPInputMods<PackedF16InputModsMatchClass>; 1316def PackedI16InputMods : PackedIntInputMods<PackedI16InputModsMatchClass>; 1317 1318//===----------------------------------------------------------------------===// 1319// Complex patterns 1320//===----------------------------------------------------------------------===// 1321 1322def DS1Addr1Offset : ComplexPattern<i32, 2, "SelectDS1Addr1Offset">; 1323def DS64Bit4ByteAligned : ComplexPattern<i32, 3, "SelectDS64Bit4ByteAligned">; 1324def DS128Bit8ByteAligned : ComplexPattern<i64, 3, "SelectDS128Bit8ByteAligned">; 1325 1326def MOVRELOffset : ComplexPattern<i32, 2, "SelectMOVRELOffset">; 1327 1328def VOP3Mods0 : ComplexPattern<untyped, 4, "SelectVOP3Mods0">; 1329def VOP3Mods : ComplexPattern<untyped, 2, "SelectVOP3Mods">; 1330def VOP3NoMods : ComplexPattern<untyped, 1, "SelectVOP3NoMods">; 1331// VOP3Mods, but the input source is known to never be NaN. 1332def VOP3Mods_nnan : ComplexPattern<fAny, 2, "SelectVOP3Mods_NNaN">; 1333 1334def VOP3OMods : ComplexPattern<untyped, 3, "SelectVOP3OMods">; 1335 1336def VOP3PMods : ComplexPattern<untyped, 2, "SelectVOP3PMods">; 1337 1338def VOP3OpSel : ComplexPattern<untyped, 2, "SelectVOP3OpSel">; 1339 1340def VOP3OpSelMods : ComplexPattern<untyped, 2, "SelectVOP3OpSelMods">; 1341 1342def VOP3PMadMixMods : ComplexPattern<untyped, 2, "SelectVOP3PMadMixMods">; 1343 1344//===----------------------------------------------------------------------===// 1345// SI assembler operands 1346//===----------------------------------------------------------------------===// 1347 1348def SIOperand { 1349 int ZERO = 0x80; 1350 int VCC = 0x6A; 1351 int FLAT_SCR = 0x68; 1352} 1353 1354// This should be kept in sync with SISrcMods enum 1355def SRCMODS { 1356 int NONE = 0; 1357 int NEG = 1; 1358 int ABS = 2; 1359 int NEG_ABS = 3; 1360 1361 int NEG_HI = ABS; 1362 int OP_SEL_0 = 4; 1363 int OP_SEL_1 = 8; 1364 int DST_OP_SEL = 8; 1365} 1366 1367def DSTCLAMP { 1368 int NONE = 0; 1369 int ENABLE = 1; 1370} 1371 1372def DSTOMOD { 1373 int NONE = 0; 1374} 1375 1376def TRAPID{ 1377 int LLVM_TRAP = 2; 1378 int LLVM_DEBUG_TRAP = 3; 1379} 1380 1381def HWREG { 1382 int MODE = 1; 1383 int STATUS = 2; 1384 int TRAPSTS = 3; 1385 int HW_ID = 4; 1386 int GPR_ALLOC = 5; 1387 int LDS_ALLOC = 6; 1388 int IB_STS = 7; 1389 int MEM_BASES = 15; 1390 int TBA_LO = 16; 1391 int TBA_HI = 17; 1392 int TMA_LO = 18; 1393 int TMA_HI = 19; 1394 int FLAT_SCR_LO = 20; 1395 int FLAT_SCR_HI = 21; 1396 int XNACK_MASK = 22; 1397 int POPS_PACKER = 25; 1398 int SHADER_CYCLES = 29; 1399} 1400 1401class getHwRegImm<int Reg, int Offset = 0, int Size = 32> { 1402 int ret = !and(!or(Reg, 1403 !shl(Offset, 6), 1404 !shl(!add(Size, -1), 11)), 65535); 1405} 1406 1407//===----------------------------------------------------------------------===// 1408// 1409// SI Instruction multiclass helpers. 1410// 1411// Instructions with _32 take 32-bit operands. 1412// Instructions with _64 take 64-bit operands. 1413// 1414// VOP_* instructions can use either a 32-bit or 64-bit encoding. The 32-bit 1415// encoding is the standard encoding, but instruction that make use of 1416// any of the instruction modifiers must use the 64-bit encoding. 1417// 1418// Instructions with _e32 use the 32-bit encoding. 1419// Instructions with _e64 use the 64-bit encoding. 1420// 1421//===----------------------------------------------------------------------===// 1422 1423class SIMCInstr <string pseudo, int subtarget> { 1424 string PseudoInstr = pseudo; 1425 int Subtarget = subtarget; 1426} 1427 1428//===----------------------------------------------------------------------===// 1429// Vector ALU classes 1430//===----------------------------------------------------------------------===// 1431 1432class getNumSrcArgs<ValueType Src0, ValueType Src1, ValueType Src2> { 1433 int ret = 1434 !if (!eq(Src0.Value, untyped.Value), 0, 1435 !if (!eq(Src1.Value, untyped.Value), 1, // VOP1 1436 !if (!eq(Src2.Value, untyped.Value), 2, // VOP2 1437 3))); // VOP3 1438} 1439 1440// Returns the register class to use for the destination of VOP[123C] 1441// instructions for the given VT. 1442class getVALUDstForVT<ValueType VT> { 1443 RegisterOperand ret = !if(!eq(VT.Size, 32), VOPDstOperand<VGPR_32>, 1444 !if(!eq(VT.Size, 128), VOPDstOperand<VReg_128>, 1445 !if(!eq(VT.Size, 64), VOPDstOperand<VReg_64>, 1446 !if(!eq(VT.Size, 16), VOPDstOperand<VGPR_32>, 1447 VOPDstS64orS32)))); // else VT == i1 1448} 1449 1450// Returns the register class to use for the destination of VOP[12C] 1451// instructions with SDWA extension 1452class getSDWADstForVT<ValueType VT> { 1453 RegisterOperand ret = !if(!eq(VT.Size, 1), 1454 SDWAVopcDst, // VOPC 1455 VOPDstOperand<VGPR_32>); // VOP1/2 32-bit dst 1456} 1457 1458// Returns the register class to use for source 0 of VOP[12C] 1459// instructions for the given VT. 1460class getVOPSrc0ForVT<ValueType VT> { 1461 bit isFP = isFloatType<VT>.ret; 1462 1463 RegisterOperand ret = 1464 !if(isFP, 1465 !if(!eq(VT.Size, 64), 1466 VSrc_f64, 1467 !if(!eq(VT.Value, f16.Value), 1468 VSrc_f16, 1469 !if(!eq(VT.Value, v2f16.Value), 1470 VSrc_v2f16, 1471 !if(!eq(VT.Value, v4f16.Value), 1472 AVSrc_64, 1473 VSrc_f32 1474 ) 1475 ) 1476 ) 1477 ), 1478 !if(!eq(VT.Size, 64), 1479 VSrc_b64, 1480 !if(!eq(VT.Value, i16.Value), 1481 VSrc_b16, 1482 !if(!eq(VT.Value, v2i16.Value), 1483 VSrc_v2b16, 1484 VSrc_b32 1485 ) 1486 ) 1487 ) 1488 ); 1489} 1490 1491class getSOPSrcForVT<ValueType VT> { 1492 RegisterOperand ret = !if(!eq(VT.Size, 64), SSrc_b64, SSrc_b32); 1493} 1494 1495// Returns the vreg register class to use for source operand given VT 1496class getVregSrcForVT<ValueType VT> { 1497 RegisterClass ret = !if(!eq(VT.Size, 128), VReg_128, 1498 !if(!eq(VT.Size, 96), VReg_96, 1499 !if(!eq(VT.Size, 64), VReg_64, 1500 !if(!eq(VT.Size, 48), VReg_64, 1501 VGPR_32)))); 1502} 1503 1504class getSDWASrcForVT <ValueType VT> { 1505 bit isFP = isFloatType<VT>.ret; 1506 RegisterOperand retFlt = !if(!eq(VT.Size, 16), SDWASrc_f16, SDWASrc_f32); 1507 RegisterOperand retInt = !if(!eq(VT.Size, 16), SDWASrc_i16, SDWASrc_i32); 1508 RegisterOperand ret = !if(isFP, retFlt, retInt); 1509} 1510 1511// Returns the register class to use for sources of VOP3 instructions for the 1512// given VT. 1513class getVOP3SrcForVT<ValueType VT> { 1514 bit isFP = isFloatType<VT>.ret; 1515 RegisterOperand ret = 1516 !if(!eq(VT.Size, 128), 1517 VSrc_128, 1518 !if(!eq(VT.Size, 64), 1519 !if(isFP, 1520 !if(!eq(VT.Value, v2f32.Value), 1521 VSrc_v2f32, 1522 VSrc_f64), 1523 !if(!eq(VT.Value, v2i32.Value), 1524 VSrc_v2b32, 1525 VSrc_b64)), 1526 !if(!eq(VT.Value, i1.Value), 1527 SSrc_i1, 1528 !if(isFP, 1529 !if(!eq(VT.Value, f16.Value), 1530 VSrc_f16, 1531 !if(!eq(VT.Value, v2f16.Value), 1532 VSrc_v2f16, 1533 !if(!eq(VT.Value, v4f16.Value), 1534 AVSrc_64, 1535 VSrc_f32 1536 ) 1537 ) 1538 ), 1539 !if(!eq(VT.Value, i16.Value), 1540 VSrc_b16, 1541 !if(!eq(VT.Value, v2i16.Value), 1542 VSrc_v2b16, 1543 VSrc_b32 1544 ) 1545 ) 1546 ) 1547 ) 1548 ) 1549 ); 1550} 1551 1552// Float or packed int 1553class isModifierType<ValueType SrcVT> { 1554 bit ret = !or(!eq(SrcVT.Value, f16.Value), 1555 !eq(SrcVT.Value, f32.Value), 1556 !eq(SrcVT.Value, f64.Value), 1557 !eq(SrcVT.Value, v2f16.Value), 1558 !eq(SrcVT.Value, v2i16.Value), 1559 !eq(SrcVT.Value, v2f32.Value), 1560 !eq(SrcVT.Value, v2i32.Value)); 1561} 1562 1563// Return type of input modifiers operand for specified input operand 1564class getSrcMod <ValueType VT, bit EnableF32SrcMods> { 1565 bit isFP = isFloatType<VT>.ret; 1566 bit isPacked = isPackedType<VT>.ret; 1567 Operand ret = !if(!eq(VT.Size, 64), 1568 !if(isFP, FP64InputMods, Int64InputMods), 1569 !if(isFP, 1570 !if(!eq(VT.Value, f16.Value), 1571 FP16InputMods, 1572 FP32InputMods 1573 ), 1574 !if(EnableF32SrcMods, FP32InputMods, Int32InputMods)) 1575 ); 1576} 1577 1578class getOpSelMod <ValueType VT> { 1579 Operand ret = !if(!eq(VT.Value, f16.Value), FP16InputMods, IntOpSelMods); 1580} 1581 1582// Return type of input modifiers operand specified input operand for DPP 1583class getSrcModDPP <ValueType VT> { 1584 bit isFP = isFloatType<VT>.ret; 1585 Operand ret = !if(isFP, FPVRegInputMods, IntVRegInputMods); 1586} 1587 1588// Return type of input modifiers operand specified input operand for SDWA 1589class getSrcModSDWA <ValueType VT> { 1590 Operand ret = !if(!eq(VT.Value, f16.Value), FP16SDWAInputMods, 1591 !if(!eq(VT.Value, f32.Value), FP32SDWAInputMods, 1592 !if(!eq(VT.Value, i16.Value), Int16SDWAInputMods, 1593 Int32SDWAInputMods))); 1594} 1595 1596// Returns the input arguments for VOP[12C] instructions for the given SrcVT. 1597class getIns32 <RegisterOperand Src0RC, RegisterClass Src1RC, int NumSrcArgs> { 1598 dag ret = !if(!eq(NumSrcArgs, 1), (ins Src0RC:$src0), // VOP1 1599 !if(!eq(NumSrcArgs, 2), (ins Src0RC:$src0, Src1RC:$src1), // VOP2 1600 (ins))); 1601} 1602 1603// Returns the input arguments for VOP3 instructions for the given SrcVT. 1604class getIns64 <RegisterOperand Src0RC, RegisterOperand Src1RC, 1605 RegisterOperand Src2RC, int NumSrcArgs, 1606 bit HasClamp, bit HasModifiers, bit HasSrc2Mods, bit HasOMod, 1607 Operand Src0Mod, Operand Src1Mod, Operand Src2Mod> { 1608 1609 dag ret = 1610 !if (!eq(NumSrcArgs, 0), 1611 // VOP1 without input operands (V_NOP, V_CLREXCP) 1612 (ins), 1613 /* else */ 1614 !if (!eq(NumSrcArgs, 1), 1615 !if (HasModifiers, 1616 // VOP1 with modifiers 1617 !if(HasOMod, 1618 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1619 clampmod0:$clamp, omod0:$omod), 1620 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1621 clampmod0:$clamp)) 1622 /* else */, 1623 // VOP1 without modifiers 1624 !if (HasClamp, 1625 (ins Src0RC:$src0, clampmod0:$clamp), 1626 (ins Src0RC:$src0)) 1627 /* endif */ ), 1628 !if (!eq(NumSrcArgs, 2), 1629 !if (HasModifiers, 1630 // VOP 2 with modifiers 1631 !if(HasOMod, 1632 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1633 Src1Mod:$src1_modifiers, Src1RC:$src1, 1634 clampmod0:$clamp, omod0:$omod), 1635 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1636 Src1Mod:$src1_modifiers, Src1RC:$src1, 1637 clampmod0:$clamp)) 1638 /* else */, 1639 // VOP2 without modifiers 1640 !if (HasClamp, 1641 (ins Src0RC:$src0, Src1RC:$src1, clampmod0:$clamp), 1642 (ins Src0RC:$src0, Src1RC:$src1)) 1643 1644 /* endif */ ) 1645 /* NumSrcArgs == 3 */, 1646 !if (HasModifiers, 1647 !if (HasSrc2Mods, 1648 // VOP3 with modifiers 1649 !if (HasOMod, 1650 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1651 Src1Mod:$src1_modifiers, Src1RC:$src1, 1652 Src2Mod:$src2_modifiers, Src2RC:$src2, 1653 clampmod0:$clamp, omod0:$omod), 1654 !if (HasClamp, 1655 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1656 Src1Mod:$src1_modifiers, Src1RC:$src1, 1657 Src2Mod:$src2_modifiers, Src2RC:$src2, 1658 clampmod0:$clamp), 1659 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1660 Src1Mod:$src1_modifiers, Src1RC:$src1, 1661 Src2Mod:$src2_modifiers, Src2RC:$src2))), 1662 // VOP3 with modifiers except src2 1663 !if (HasOMod, 1664 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1665 Src1Mod:$src1_modifiers, Src1RC:$src1, 1666 Src2RC:$src2, clampmod0:$clamp, omod0:$omod), 1667 !if (HasClamp, 1668 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1669 Src1Mod:$src1_modifiers, Src1RC:$src1, 1670 Src2RC:$src2, clampmod0:$clamp), 1671 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1672 Src1Mod:$src1_modifiers, Src1RC:$src1, 1673 Src2RC:$src2)))) 1674 /* else */, 1675 // VOP3 without modifiers 1676 !if (HasClamp, 1677 (ins Src0RC:$src0, Src1RC:$src1, Src2RC:$src2, clampmod0:$clamp), 1678 (ins Src0RC:$src0, Src1RC:$src1, Src2RC:$src2)) 1679 /* endif */ )))); 1680} 1681 1682class getInsVOP3Base<RegisterOperand Src0RC, RegisterOperand Src1RC, 1683 RegisterOperand Src2RC, int NumSrcArgs, 1684 bit HasClamp, bit HasModifiers, bit HasSrc2Mods, bit HasOMod, 1685 Operand Src0Mod, Operand Src1Mod, Operand Src2Mod, bit HasOpSel, 1686 bit IsVOP3P> { 1687 // getInst64 handles clamp and omod. implicit mutex between vop3p and omod 1688 dag base = getIns64 <Src0RC, Src1RC, Src2RC, NumSrcArgs, 1689 HasClamp, HasModifiers, HasSrc2Mods, HasOMod, 1690 Src0Mod, Src1Mod, Src2Mod>.ret; 1691 dag opsel = (ins op_sel0:$op_sel); 1692 dag vop3pFields = (ins op_sel_hi0:$op_sel_hi, neg_lo0:$neg_lo, neg_hi0:$neg_hi); 1693 dag ret = !con(base, 1694 !if(HasOpSel, opsel,(ins)), 1695 !if(IsVOP3P, vop3pFields,(ins))); 1696} 1697 1698class getInsVOP3P <RegisterOperand Src0RC, RegisterOperand Src1RC, 1699 RegisterOperand Src2RC, int NumSrcArgs, bit HasClamp, 1700 Operand Src0Mod, Operand Src1Mod, Operand Src2Mod> { 1701 dag ret = getInsVOP3Base<Src0RC, Src1RC, Src2RC, NumSrcArgs, 1702 HasClamp, 1/*HasModifiers*/, 1/*HasSrc2Mods*/, 1703 0/*HasOMod*/, Src0Mod, Src1Mod, Src2Mod, 1704 1/*HasOpSel*/, 1/*IsVOP3P*/>.ret; 1705} 1706 1707class getInsVOP3OpSel <RegisterOperand Src0RC, RegisterOperand Src1RC, 1708 RegisterOperand Src2RC, int NumSrcArgs, 1709 bit HasClamp, bit HasOMod, 1710 Operand Src0Mod, Operand Src1Mod, Operand Src2Mod> { 1711 dag ret = getInsVOP3Base<Src0RC, Src1RC, 1712 Src2RC, NumSrcArgs, 1713 HasClamp, 1/*HasModifiers*/, 1/*HasSrc2Mods*/, HasOMod, 1714 Src0Mod, Src1Mod, Src2Mod, 1/*HasOpSel*/, 0>.ret; 1715} 1716 1717class getInsDPPBase <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC, 1718 int NumSrcArgs, bit HasModifiers, 1719 Operand Src0Mod, Operand Src1Mod> { 1720 1721 dag ret = !if (!eq(NumSrcArgs, 0), 1722 // VOP1 without input operands (V_NOP) 1723 (ins ), 1724 !if (!eq(NumSrcArgs, 1), 1725 !if (HasModifiers, 1726 // VOP1_DPP with modifiers 1727 (ins DstRC:$old, Src0Mod:$src0_modifiers, 1728 Src0RC:$src0) 1729 /* else */, 1730 // VOP1_DPP without modifiers 1731 (ins DstRC:$old, Src0RC:$src0) 1732 /* endif */), 1733 !if (HasModifiers, 1734 // VOP2_DPP with modifiers 1735 (ins DstRC:$old, 1736 Src0Mod:$src0_modifiers, Src0RC:$src0, 1737 Src1Mod:$src1_modifiers, Src1RC:$src1) 1738 /* else */, 1739 // VOP2_DPP without modifiers 1740 (ins DstRC:$old, 1741 Src0RC:$src0, Src1RC:$src1) 1742 ))); 1743} 1744 1745class getInsDPP <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC, 1746 int NumSrcArgs, bit HasModifiers, 1747 Operand Src0Mod, Operand Src1Mod> { 1748 dag ret = !con(getInsDPPBase<DstRC, Src0RC, Src1RC, NumSrcArgs, 1749 HasModifiers, Src0Mod, Src1Mod>.ret, 1750 (ins dpp_ctrl:$dpp_ctrl, row_mask:$row_mask, 1751 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl)); 1752} 1753 1754class getInsDPP16 <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC, 1755 int NumSrcArgs, bit HasModifiers, 1756 Operand Src0Mod, Operand Src1Mod> { 1757 dag ret = !con(getInsDPP<DstRC, Src0RC, Src1RC, NumSrcArgs, 1758 HasModifiers, Src0Mod, Src1Mod>.ret, 1759 (ins FI:$fi)); 1760} 1761 1762class getInsDPP8 <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC, 1763 int NumSrcArgs, bit HasModifiers, 1764 Operand Src0Mod, Operand Src1Mod> { 1765 dag ret = !con(getInsDPPBase<DstRC, Src0RC, Src1RC, NumSrcArgs, 1766 HasModifiers, Src0Mod, Src1Mod>.ret, 1767 (ins dpp8:$dpp8, FI:$fi)); 1768} 1769 1770 1771// Ins for SDWA 1772class getInsSDWA <RegisterOperand Src0RC, RegisterOperand Src1RC, int NumSrcArgs, 1773 bit HasSDWAOMod, Operand Src0Mod, Operand Src1Mod, 1774 ValueType DstVT> { 1775 1776 dag ret = !if(!eq(NumSrcArgs, 0), 1777 // VOP1 without input operands (V_NOP) 1778 (ins), 1779 !if(!eq(NumSrcArgs, 1), 1780 // VOP1 1781 !if(!not(HasSDWAOMod), 1782 // VOP1_SDWA without omod 1783 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1784 clampmod:$clamp, 1785 dst_sel:$dst_sel, dst_unused:$dst_unused, 1786 src0_sel:$src0_sel), 1787 // VOP1_SDWA with omod 1788 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1789 clampmod:$clamp, omod:$omod, 1790 dst_sel:$dst_sel, dst_unused:$dst_unused, 1791 src0_sel:$src0_sel)), 1792 !if(!eq(NumSrcArgs, 2), 1793 !if(!eq(DstVT.Size, 1), 1794 // VOPC_SDWA 1795 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1796 Src1Mod:$src1_modifiers, Src1RC:$src1, 1797 clampmod:$clamp, src0_sel:$src0_sel, src1_sel:$src1_sel), 1798 // VOP2_SDWA 1799 !if(!not(HasSDWAOMod), 1800 // VOP2_SDWA without omod 1801 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1802 Src1Mod:$src1_modifiers, Src1RC:$src1, 1803 clampmod:$clamp, 1804 dst_sel:$dst_sel, dst_unused:$dst_unused, 1805 src0_sel:$src0_sel, src1_sel:$src1_sel), 1806 // VOP2_SDWA with omod 1807 (ins Src0Mod:$src0_modifiers, Src0RC:$src0, 1808 Src1Mod:$src1_modifiers, Src1RC:$src1, 1809 clampmod:$clamp, omod:$omod, 1810 dst_sel:$dst_sel, dst_unused:$dst_unused, 1811 src0_sel:$src0_sel, src1_sel:$src1_sel))), 1812 (ins)/* endif */))); 1813} 1814 1815// Outs for DPP 1816class getOutsDPP <bit HasDst, ValueType DstVT, RegisterOperand DstRCDPP> { 1817 dag ret = !if(HasDst, 1818 !if(!eq(DstVT.Size, 1), 1819 (outs), // no dst for VOPC, we use "vcc"-token as dst in SDWA VOPC instructions 1820 (outs DstRCDPP:$vdst)), 1821 (outs)); // V_NOP 1822} 1823 1824// Outs for SDWA 1825class getOutsSDWA <bit HasDst, ValueType DstVT, RegisterOperand DstRCSDWA> { 1826 dag ret = !if(HasDst, 1827 !if(!eq(DstVT.Size, 1), 1828 (outs DstRCSDWA:$sdst), 1829 (outs DstRCSDWA:$vdst)), 1830 (outs)); // V_NOP 1831} 1832 1833// Returns the assembly string for the inputs and outputs of a VOP[12C] 1834// instruction. This does not add the _e32 suffix, so it can be reused 1835// by getAsm64. 1836class getAsm32 <bit HasDst, int NumSrcArgs, ValueType DstVT = i32> { 1837 string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC 1838 string src0 = ", $src0"; 1839 string src1 = ", $src1"; 1840 string src2 = ", $src2"; 1841 string ret = !if(HasDst, dst, "") # 1842 !if(!eq(NumSrcArgs, 1), src0, "") # 1843 !if(!eq(NumSrcArgs, 2), src0#src1, "") # 1844 !if(!eq(NumSrcArgs, 3), src0#src1#src2, ""); 1845} 1846 1847// Returns the assembly string for the inputs and outputs of a VOP3 1848// instruction. 1849class getAsm64 <bit HasDst, int NumSrcArgs, bit HasIntClamp, bit HasModifiers, 1850 bit HasOMod, ValueType DstVT = i32> { 1851 string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC 1852 string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,"); 1853 string src1 = !if(!eq(NumSrcArgs, 1), "", 1854 !if(!eq(NumSrcArgs, 2), " $src1_modifiers", 1855 " $src1_modifiers,")); 1856 string src2 = !if(!eq(NumSrcArgs, 3), " $src2_modifiers", ""); 1857 string iclamp = !if(HasIntClamp, "$clamp", ""); 1858 string ret = 1859 !if(!not(HasModifiers), 1860 getAsm32<HasDst, NumSrcArgs, DstVT>.ret # iclamp, 1861 dst#", "#src0#src1#src2#"$clamp"#!if(HasOMod, "$omod", "")); 1862} 1863 1864// Returns the assembly string for the inputs and outputs of a VOP3P 1865// instruction. 1866class getAsmVOP3P <bit HasDst, int NumSrcArgs, bit HasModifiers, 1867 bit HasClamp, ValueType DstVT = i32> { 1868 string dst = " $vdst"; 1869 string src0 = !if(!eq(NumSrcArgs, 1), "$src0", "$src0,"); 1870 string src1 = !if(!eq(NumSrcArgs, 1), "", 1871 !if(!eq(NumSrcArgs, 2), " $src1", 1872 " $src1,")); 1873 string src2 = !if(!eq(NumSrcArgs, 3), " $src2", ""); 1874 1875 string mods = !if(HasModifiers, "$neg_lo$neg_hi", ""); 1876 string clamp = !if(HasClamp, "$clamp", ""); 1877 1878 // Each modifier is printed as an array of bits for each operand, so 1879 // all operands are printed as part of src0_modifiers. 1880 string ret = dst#", "#src0#src1#src2#"$op_sel$op_sel_hi"#mods#clamp; 1881} 1882 1883class getAsmVOP3OpSel <int NumSrcArgs, 1884 bit HasClamp, 1885 bit HasOMod, 1886 bit Src0HasMods, 1887 bit Src1HasMods, 1888 bit Src2HasMods> { 1889 string dst = " $vdst"; 1890 1891 string isrc0 = !if(!eq(NumSrcArgs, 1), "$src0", "$src0,"); 1892 string isrc1 = !if(!eq(NumSrcArgs, 1), "", 1893 !if(!eq(NumSrcArgs, 2), " $src1", 1894 " $src1,")); 1895 string isrc2 = !if(!eq(NumSrcArgs, 3), " $src2", ""); 1896 1897 string fsrc0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,"); 1898 string fsrc1 = !if(!eq(NumSrcArgs, 1), "", 1899 !if(!eq(NumSrcArgs, 2), " $src1_modifiers", 1900 " $src1_modifiers,")); 1901 string fsrc2 = !if(!eq(NumSrcArgs, 3), " $src2_modifiers", ""); 1902 1903 string src0 = !if(Src0HasMods, fsrc0, isrc0); 1904 string src1 = !if(Src1HasMods, fsrc1, isrc1); 1905 string src2 = !if(Src2HasMods, fsrc2, isrc2); 1906 1907 string clamp = !if(HasClamp, "$clamp", ""); 1908 1909 string ret = dst#", "#src0#src1#src2#"$op_sel"#clamp; 1910} 1911 1912class getAsmDPP <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> { 1913 string dst = !if(HasDst, 1914 !if(!eq(DstVT.Size, 1), 1915 "$sdst", 1916 "$vdst"), 1917 ""); // use $sdst for VOPC 1918 string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,"); 1919 string src1 = !if(!eq(NumSrcArgs, 1), "", 1920 !if(!eq(NumSrcArgs, 2), " $src1_modifiers", 1921 " $src1_modifiers,")); 1922 string args = !if(!not(HasModifiers), 1923 getAsm32<0, NumSrcArgs, DstVT>.ret, 1924 ", "#src0#src1); 1925 string ret = dst#args#" $dpp_ctrl$row_mask$bank_mask$bound_ctrl"; 1926} 1927 1928class getAsmDPP16 <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> { 1929 string ret = getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret#"$fi"; 1930} 1931 1932class getAsmDPP8 <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> 1933 : getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT> { 1934 let ret = dst#args#" $dpp8$fi"; 1935} 1936 1937 1938class getAsmSDWA <bit HasDst, int NumSrcArgs, ValueType DstVT = i32> { 1939 string dst = !if(HasDst, 1940 !if(!eq(DstVT.Size, 1), 1941 " vcc", // use vcc token as dst for VOPC instructioins 1942 "$vdst"), 1943 ""); 1944 string src0 = "$src0_modifiers"; 1945 string src1 = "$src1_modifiers"; 1946 string args = !if(!eq(NumSrcArgs, 0), 1947 "", 1948 !if(!eq(NumSrcArgs, 1), 1949 ", "#src0#"$clamp", 1950 ", "#src0#", "#src1#"$clamp" 1951 ) 1952 ); 1953 string sdwa = !if(!eq(NumSrcArgs, 0), 1954 "", 1955 !if(!eq(NumSrcArgs, 1), 1956 " $dst_sel $dst_unused $src0_sel", 1957 !if(!eq(DstVT.Size, 1), 1958 " $src0_sel $src1_sel", // No dst_sel and dst_unused for VOPC 1959 " $dst_sel $dst_unused $src0_sel $src1_sel" 1960 ) 1961 ) 1962 ); 1963 string ret = dst#args#sdwa; 1964} 1965 1966class getAsmSDWA9 <bit HasDst, bit HasOMod, int NumSrcArgs, 1967 ValueType DstVT = i32> { 1968 string dst = !if(HasDst, 1969 !if(!eq(DstVT.Size, 1), 1970 "$sdst", // VOPC 1971 "$vdst"), // VOP1/2 1972 ""); 1973 string src0 = "$src0_modifiers"; 1974 string src1 = "$src1_modifiers"; 1975 string out_mods = !if(!not(HasOMod), "$clamp", "$clamp$omod"); 1976 string args = !if(!eq(NumSrcArgs, 0), "", 1977 !if(!eq(NumSrcArgs, 1), 1978 ", "#src0, 1979 ", "#src0#", "#src1 1980 ) 1981 ); 1982 string sdwa = !if(!eq(NumSrcArgs, 0), "", 1983 !if(!eq(NumSrcArgs, 1), 1984 out_mods#" $dst_sel $dst_unused $src0_sel", 1985 !if(!eq(DstVT.Size, 1), 1986 " $src0_sel $src1_sel", // No dst_sel, dst_unused and output modifiers for VOPC 1987 out_mods#" $dst_sel $dst_unused $src0_sel $src1_sel" 1988 ) 1989 ) 1990 ); 1991 string ret = dst#args#sdwa; 1992} 1993 1994class getHas64BitOps <int NumSrcArgs, ValueType DstVT, ValueType Src0VT, 1995 ValueType Src1VT> { 1996 bit ret = !if(!eq(NumSrcArgs, 3), 1997 0, 1998 !if(!eq(DstVT.Size, 64), 1999 1, 2000 !if(!eq(Src0VT.Size, 64), 2001 1, 2002 !if(!eq(Src1VT.Size, 64), 2003 1, 2004 0 2005 ) 2006 ) 2007 ) 2008 ); 2009} 2010 2011class getHasSDWA <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32, 2012 ValueType Src1VT = i32> { 2013 bit ret = !if(!eq(NumSrcArgs, 3), 2014 0, // NumSrcArgs == 3 - No SDWA for VOP3 2015 !if(!eq(DstVT.Size, 64), 2016 0, // 64-bit dst - No SDWA for 64-bit operands 2017 !if(!eq(Src0VT.Size, 64), 2018 0, // 64-bit src0 2019 !if(!eq(Src1VT.Size, 64), 2020 0, // 64-bit src2 2021 1 2022 ) 2023 ) 2024 ) 2025 ); 2026} 2027 2028class getHasDPP <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32, 2029 ValueType Src1VT = i32> { 2030 bit ret = !if(!eq(NumSrcArgs, 3), 2031 0, // NumSrcArgs == 3 - No DPP for VOP3 2032 1); 2033} 2034 2035class getHasExt64BitDPP <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32, 2036 ValueType Src1VT = i32> { 2037 bit ret = !and(getHasDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret, 2038 getHas64BitOps<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret); 2039} 2040 2041// Function that checks if instruction supports DPP and SDWA 2042class getHasExt <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32, 2043 ValueType Src1VT = i32> { 2044 bit ret = !or(getHasDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret, 2045 getHasSDWA<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret); 2046} 2047 2048// Return an AGPR+VGPR operand class for the given VGPR register class. 2049class getLdStRegisterOperand<RegisterClass RC> { 2050 RegisterOperand ret = 2051 !if(!eq(RC.Size, 32), AVLdSt_32, 2052 !if(!eq(RC.Size, 64), AVLdSt_64, 2053 !if(!eq(RC.Size, 96), AVLdSt_96, 2054 !if(!eq(RC.Size, 128), AVLdSt_128, 2055 !if(!eq(RC.Size, 160), AVLdSt_160, 2056 RegisterOperand<VReg_1> // invalid register 2057 ))))); 2058} 2059 2060class BitOr<bit a, bit b> { 2061 bit ret = !if(a, 1, !if(b, 1, 0)); 2062} 2063 2064class BitAnd<bit a, bit b> { 2065 bit ret = !if(a, !if(b, 1, 0), 0); 2066} 2067 2068def PatGenMode { 2069 int NoPattern = 0; 2070 int Pattern = 1; 2071} 2072 2073class VOPProfile <list<ValueType> _ArgVT, bit _EnableF32SrcMods = 0, 2074 bit _EnableClamp = 0> { 2075 2076 field list<ValueType> ArgVT = _ArgVT; 2077 field bit EnableF32SrcMods = _EnableF32SrcMods; 2078 field bit EnableClamp = _EnableClamp; 2079 2080 field ValueType DstVT = ArgVT[0]; 2081 field ValueType Src0VT = ArgVT[1]; 2082 field ValueType Src1VT = ArgVT[2]; 2083 field ValueType Src2VT = ArgVT[3]; 2084 field RegisterOperand DstRC = getVALUDstForVT<DstVT>.ret; 2085 field RegisterOperand DstRCDPP = getVALUDstForVT<DstVT>.ret; 2086 field RegisterOperand DstRCSDWA = getSDWADstForVT<DstVT>.ret; 2087 field RegisterOperand Src0RC32 = getVOPSrc0ForVT<Src0VT>.ret; 2088 field RegisterClass Src1RC32 = getVregSrcForVT<Src1VT>.ret; 2089 field RegisterOperand Src0RC64 = getVOP3SrcForVT<Src0VT>.ret; 2090 field RegisterOperand Src1RC64 = getVOP3SrcForVT<Src1VT>.ret; 2091 field RegisterOperand Src2RC64 = getVOP3SrcForVT<Src2VT>.ret; 2092 field RegisterClass Src0DPP = getVregSrcForVT<Src0VT>.ret; 2093 field RegisterClass Src1DPP = getVregSrcForVT<Src1VT>.ret; 2094 field RegisterOperand Src0SDWA = getSDWASrcForVT<Src0VT>.ret; 2095 field RegisterOperand Src1SDWA = getSDWASrcForVT<Src0VT>.ret; 2096 field Operand Src0Mod = getSrcMod<Src0VT, EnableF32SrcMods>.ret; 2097 field Operand Src1Mod = getSrcMod<Src1VT, EnableF32SrcMods>.ret; 2098 field Operand Src2Mod = getSrcMod<Src2VT, EnableF32SrcMods>.ret; 2099 field Operand Src0ModDPP = getSrcModDPP<Src0VT>.ret; 2100 field Operand Src1ModDPP = getSrcModDPP<Src1VT>.ret; 2101 field Operand Src0ModSDWA = getSrcModSDWA<Src0VT>.ret; 2102 field Operand Src1ModSDWA = getSrcModSDWA<Src1VT>.ret; 2103 2104 2105 field bit HasDst = !ne(DstVT.Value, untyped.Value); 2106 field bit HasDst32 = HasDst; 2107 field bit EmitDst = HasDst; // force dst encoding, see v_movreld_b32 special case 2108 field int NumSrcArgs = getNumSrcArgs<Src0VT, Src1VT, Src2VT>.ret; 2109 field bit HasSrc0 = !ne(Src0VT.Value, untyped.Value); 2110 field bit HasSrc1 = !ne(Src1VT.Value, untyped.Value); 2111 field bit HasSrc2 = !ne(Src2VT.Value, untyped.Value); 2112 2113 // HasSrc*FloatMods affects the SDWA encoding. We ignore EnableF32SrcMods. 2114 field bit HasSrc0FloatMods = isFloatType<Src0VT>.ret; 2115 field bit HasSrc1FloatMods = isFloatType<Src1VT>.ret; 2116 field bit HasSrc2FloatMods = isFloatType<Src2VT>.ret; 2117 2118 // HasSrc*IntMods affects the SDWA encoding. We ignore EnableF32SrcMods. 2119 field bit HasSrc0IntMods = isIntType<Src0VT>.ret; 2120 field bit HasSrc1IntMods = isIntType<Src1VT>.ret; 2121 field bit HasSrc2IntMods = isIntType<Src2VT>.ret; 2122 2123 field bit HasClamp = !or(isModifierType<Src0VT>.ret, EnableClamp); 2124 field bit HasSDWAClamp = EmitDst; 2125 field bit HasFPClamp = !and(isFloatType<DstVT>.ret, HasClamp); 2126 field bit HasIntClamp = !if(isFloatType<DstVT>.ret, 0, HasClamp); 2127 field bit HasClampLo = HasClamp; 2128 field bit HasClampHi = !and(isPackedType<DstVT>.ret, HasClamp); 2129 field bit HasHigh = 0; 2130 2131 field bit IsPacked = isPackedType<Src0VT>.ret; 2132 field bit HasOpSel = IsPacked; 2133 field bit HasOMod = !if(HasOpSel, 0, isFloatType<DstVT>.ret); 2134 field bit HasSDWAOMod = isFloatType<DstVT>.ret; 2135 2136 field bit HasModifiers = !or(isModifierType<Src0VT>.ret, 2137 isModifierType<Src1VT>.ret, 2138 isModifierType<Src2VT>.ret, 2139 HasOMod, 2140 EnableF32SrcMods); 2141 2142 field bit HasSrc0Mods = HasModifiers; 2143 field bit HasSrc1Mods = !if(HasModifiers, !or(HasSrc1FloatMods, HasSrc1IntMods), 0); 2144 field bit HasSrc2Mods = !if(HasModifiers, !or(HasSrc2FloatMods, HasSrc2IntMods), 0); 2145 2146 field bit HasExt = getHasExt<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret; 2147 field bit HasExtDPP = getHasDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret; 2148 field bit HasExt64BitDPP = getHasExt64BitDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret; 2149 field bit HasExtSDWA = getHasSDWA<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret; 2150 field bit HasExtSDWA9 = HasExtSDWA; 2151 field int NeedPatGen = PatGenMode.NoPattern; 2152 2153 field bit IsMAI = 0; 2154 field bit IsDOT = 0; 2155 2156 field Operand Src0PackedMod = !if(HasSrc0FloatMods, PackedF16InputMods, PackedI16InputMods); 2157 field Operand Src1PackedMod = !if(HasSrc1FloatMods, PackedF16InputMods, PackedI16InputMods); 2158 field Operand Src2PackedMod = !if(HasSrc2FloatMods, PackedF16InputMods, PackedI16InputMods); 2159 2160 field dag Outs = !if(HasDst,(outs DstRC:$vdst),(outs)); 2161 2162 // VOP3b instructions are a special case with a second explicit 2163 // output. This is manually overridden for them. 2164 field dag Outs32 = Outs; 2165 field dag Outs64 = Outs; 2166 field dag OutsDPP = getOutsDPP<HasDst, DstVT, DstRCDPP>.ret; 2167 field dag OutsDPP8 = getOutsDPP<HasDst, DstVT, DstRCDPP>.ret; 2168 field dag OutsSDWA = getOutsSDWA<HasDst, DstVT, DstRCSDWA>.ret; 2169 2170 field dag Ins32 = getIns32<Src0RC32, Src1RC32, NumSrcArgs>.ret; 2171 field dag Ins64 = getIns64<Src0RC64, Src1RC64, Src2RC64, NumSrcArgs, 2172 HasIntClamp, HasModifiers, HasSrc2Mods, 2173 HasOMod, Src0Mod, Src1Mod, Src2Mod>.ret; 2174 field dag InsVOP3P = getInsVOP3P<Src0RC64, Src1RC64, Src2RC64, 2175 NumSrcArgs, HasClamp, 2176 Src0PackedMod, Src1PackedMod, Src2PackedMod>.ret; 2177 field dag InsVOP3OpSel = getInsVOP3OpSel<Src0RC64, Src1RC64, Src2RC64, 2178 NumSrcArgs, HasClamp, HasOMod, 2179 getOpSelMod<Src0VT>.ret, 2180 getOpSelMod<Src1VT>.ret, 2181 getOpSelMod<Src2VT>.ret>.ret; 2182 field dag InsDPP = !if(HasExtDPP, 2183 getInsDPP<DstRCDPP, Src0DPP, Src1DPP, NumSrcArgs, 2184 HasModifiers, Src0ModDPP, Src1ModDPP>.ret, 2185 (ins)); 2186 field dag InsDPP16 = getInsDPP16<DstRCDPP, Src0DPP, Src1DPP, NumSrcArgs, 2187 HasModifiers, Src0ModDPP, Src1ModDPP>.ret; 2188 field dag InsDPP8 = getInsDPP8<DstRCDPP, Src0DPP, Src1DPP, NumSrcArgs, 0, 2189 Src0ModDPP, Src1ModDPP>.ret; 2190 field dag InsSDWA = getInsSDWA<Src0SDWA, Src1SDWA, NumSrcArgs, 2191 HasSDWAOMod, Src0ModSDWA, Src1ModSDWA, 2192 DstVT>.ret; 2193 2194 2195 field string Asm32 = getAsm32<HasDst, NumSrcArgs, DstVT>.ret; 2196 field string Asm64 = getAsm64<HasDst, NumSrcArgs, HasIntClamp, HasModifiers, HasOMod, DstVT>.ret; 2197 field string AsmVOP3P = getAsmVOP3P<HasDst, NumSrcArgs, HasModifiers, HasClamp, DstVT>.ret; 2198 field string AsmVOP3OpSel = getAsmVOP3OpSel<NumSrcArgs, 2199 HasClamp, HasOMod, 2200 HasSrc0FloatMods, 2201 HasSrc1FloatMods, 2202 HasSrc2FloatMods>.ret; 2203 field string AsmDPP = !if(HasExtDPP, 2204 getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret, ""); 2205 field string AsmDPP16 = getAsmDPP16<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret; 2206 field string AsmDPP8 = getAsmDPP8<HasDst, NumSrcArgs, 0, DstVT>.ret; 2207 field string AsmSDWA = getAsmSDWA<HasDst, NumSrcArgs, DstVT>.ret; 2208 field string AsmSDWA9 = getAsmSDWA9<HasDst, HasSDWAOMod, NumSrcArgs, DstVT>.ret; 2209 2210 field string TieRegDPP = "$old"; 2211} 2212 2213class VOP_NO_EXT <VOPProfile p> : VOPProfile <p.ArgVT> { 2214 let HasExt = 0; 2215 let HasExtDPP = 0; 2216 let HasExt64BitDPP = 0; 2217 let HasExtSDWA = 0; 2218 let HasExtSDWA9 = 0; 2219} 2220 2221class VOP_PAT_GEN <VOPProfile p, int mode=PatGenMode.Pattern> : VOPProfile <p.ArgVT> { 2222 let NeedPatGen = mode; 2223} 2224 2225def VOP_F16_F16 : VOPProfile <[f16, f16, untyped, untyped]>; 2226def VOP_F16_I16 : VOPProfile <[f16, i16, untyped, untyped]>; 2227def VOP_I16_F16 : VOPProfile <[i16, f16, untyped, untyped]>; 2228 2229def VOP_F16_F16_F16 : VOPProfile <[f16, f16, f16, untyped]>; 2230def VOP_F16_F16_I16 : VOPProfile <[f16, f16, i16, untyped]>; 2231def VOP_F16_F16_I32 : VOPProfile <[f16, f16, i32, untyped]>; 2232def VOP_I16_I16_I16 : VOPProfile <[i16, i16, i16, untyped]>; 2233def VOP_I16_I16_I16_ARITH : VOPProfile <[i16, i16, i16, untyped], 0, /*EnableClamp=*/1>; 2234 2235def VOP_I16_I16_I16_I16 : VOPProfile <[i16, i16, i16, i16, untyped]>; 2236def VOP_F16_F16_F16_F16 : VOPProfile <[f16, f16, f16, f16, untyped]>; 2237 2238def VOP_I32_I16_I16_I32 : VOPProfile <[i32, i16, i16, i32, untyped]>; 2239 2240def VOP_V2F16_V2F16_V2F16 : VOPProfile <[v2f16, v2f16, v2f16, untyped]>; 2241def VOP_V2I16_V2I16_V2I16 : VOPProfile <[v2i16, v2i16, v2i16, untyped]>; 2242def VOP_B32_F16_F16 : VOPProfile <[i32, f16, f16, untyped]>; 2243 2244def VOP_V2F16_V2F16_V2F16_V2F16 : VOPProfile <[v2f16, v2f16, v2f16, v2f16]>; 2245def VOP_V2I16_V2I16_V2I16_V2I16 : VOPProfile <[v2i16, v2i16, v2i16, v2i16]>; 2246def VOP_V2I16_F32_F32 : VOPProfile <[v2i16, f32, f32, untyped]>; 2247def VOP_V2I16_I32_I32 : VOPProfile <[v2i16, i32, i32, untyped]>; 2248 2249def VOP_F32_V2F16_V2F16_V2F16 : VOPProfile <[f32, v2f16, v2f16, v2f16]>; 2250 2251def VOP_NONE : VOPProfile <[untyped, untyped, untyped, untyped]>; 2252 2253def VOP_F32_F32 : VOPProfile <[f32, f32, untyped, untyped]>; 2254def VOP_F32_F64 : VOPProfile <[f32, f64, untyped, untyped]>; 2255def VOP_F32_I32 : VOPProfile <[f32, i32, untyped, untyped]>; 2256def VOP_F64_F32 : VOPProfile <[f64, f32, untyped, untyped]>; 2257def VOP_F64_F64 : VOPProfile <[f64, f64, untyped, untyped]>; 2258def VOP_F64_I32 : VOPProfile <[f64, i32, untyped, untyped]>; 2259def VOP_I32_F32 : VOPProfile <[i32, f32, untyped, untyped]>; 2260def VOP_I32_F64 : VOPProfile <[i32, f64, untyped, untyped]>; 2261def VOP_I32_I32 : VOPProfile <[i32, i32, untyped, untyped]>; 2262def VOP_F16_F32 : VOPProfile <[f16, f32, untyped, untyped]>; 2263def VOP_F32_F16 : VOPProfile <[f32, f16, untyped, untyped]>; 2264def VOP_I64_I64 : VOPProfile <[i64, i64, untyped, untyped]>; 2265 2266def VOP_F32_F32_F16 : VOPProfile <[f32, f32, f16, untyped]>; 2267def VOP_F32_F32_F32 : VOPProfile <[f32, f32, f32, untyped]>; 2268def VOP_F32_F32_I32 : VOPProfile <[f32, f32, i32, untyped]>; 2269def VOP_F64_F64_F64 : VOPProfile <[f64, f64, f64, untyped]>; 2270def VOP_F64_F64_I32 : VOPProfile <[f64, f64, i32, untyped]>; 2271def VOP_I32_F32_F32 : VOPProfile <[i32, f32, f32, untyped]>; 2272def VOP_I32_F32_I32 : VOPProfile <[i32, f32, i32, untyped]>; 2273def VOP_I32_I32_I32 : VOPProfile <[i32, i32, i32, untyped]>; 2274def VOP_I32_I32_I32_ARITH : VOPProfile <[i32, i32, i32, untyped], 0, /*EnableClamp=*/1>; 2275def VOP_V2F16_F32_F32 : VOPProfile <[v2f16, f32, f32, untyped]>; 2276def VOP_F32_F16_F16_F16 : VOPProfile <[f32, f16, f16, f16]>; 2277 2278def VOP_I64_I64_I32 : VOPProfile <[i64, i64, i32, untyped]>; 2279def VOP_I64_I32_I64 : VOPProfile <[i64, i32, i64, untyped]>; 2280def VOP_I64_I64_I64 : VOPProfile <[i64, i64, i64, untyped]>; 2281 2282def VOP_F16_F32_F16_F32 : VOPProfile <[f16, f32, f16, f32]>; 2283def VOP_F32_F32_F16_F16 : VOPProfile <[f32, f32, f16, f16]>; 2284def VOP_F32_F32_F32_F32 : VOPProfile <[f32, f32, f32, f32]>; 2285def VOP_F64_F64_F64_F64 : VOPProfile <[f64, f64, f64, f64]>; 2286def VOP_I32_I32_I32_I32 : VOPProfile <[i32, i32, i32, i32]>; 2287def VOP_I64_I32_I32_I64 : VOPProfile <[i64, i32, i32, i64]>; 2288def VOP_I32_F32_I32_I32 : VOPProfile <[i32, f32, i32, i32]>; 2289def VOP_I64_I64_I32_I64 : VOPProfile <[i64, i64, i32, i64]>; 2290def VOP_V4I32_I64_I32_V4I32 : VOPProfile <[v4i32, i64, i32, v4i32]>; 2291 2292def VOP_F32_V2F16_V2F16_F32 : VOPProfile <[f32, v2f16, v2f16, f32]>; 2293def VOP_I32_V2I16_V2I16_I32 : VOPProfile <[i32, v2i16, v2i16, i32]>; 2294 2295def VOP_V4F32_F32_F32_V4F32 : VOPProfile <[v4f32, f32, f32, v4f32]>; 2296def VOP_V16F32_F32_F32_V16F32 : VOPProfile <[v16f32, f32, f32, v16f32]>; 2297def VOP_V32F32_F32_F32_V32F32 : VOPProfile <[v32f32, f32, f32, v32f32]>; 2298def VOP_V4F32_V4F16_V4F16_V4F32 : VOPProfile <[v4f32, v4f16, v4f16, v4f32]>; 2299def VOP_V16F32_V4F16_V4F16_V16F32 : VOPProfile <[v16f32, v4f16, v4f16, v16f32]>; 2300def VOP_V32F32_V4F16_V4F16_V32F32 : VOPProfile <[v32f32, v4f16, v4f16, v32f32]>; 2301def VOP_V4F32_V2I16_V2I16_V4F32 : VOPProfile <[v4f32, v2i16, v2i16, v4f32]>; 2302def VOP_V16F32_V2I16_V2I16_V16F32 : VOPProfile <[v16f32, v2i16, v2i16, v16f32]>; 2303def VOP_V32F32_V2I16_V2I16_V32F32 : VOPProfile <[v32f32, v2i16, v2i16, v32f32]>; 2304def VOP_V4I32_I32_I32_V4I32 : VOPProfile <[v4i32, i32, i32, v4i32]>; 2305def VOP_V16I32_I32_I32_V16I32 : VOPProfile <[v16i32, i32, i32, v16i32]>; 2306def VOP_V32I32_I32_I32_V32I32 : VOPProfile <[v32i32, i32, i32, v32i32]>; 2307 2308def VOP_V4F64_F64_F64_V4F64 : VOPProfile <[v4f64, f64, f64, v4f64]>; 2309def VOP_V1F64_F64_F64_V1F64 : VOPProfile <[v1f64, f64, f64, v1f64]>; 2310 2311def VOP_V2F32_V2F32_V2F32_V2F32 : VOPProfile <[v2f32, v2f32, v2f32, v2f32]>; 2312def VOP_V2F32_V2F32_V2F32 : VOPProfile <[v2f32, v2f32, v2f32, untyped]>; 2313def VOP_V2I32_V2I32_V2I32 : VOPProfile <[v2i32, v2i32, v2i32, untyped]>; 2314def VOP_V4F32_V4I16_V4I16_V4F32 : VOPProfile <[v4f32, v4i16, v4i16, v4f32]>; 2315def VOP_V16F32_V4I16_V4I16_V16F32 : VOPProfile <[v16f32, v4i16, v4i16, v16f32]>; 2316def VOP_V32F32_V4I16_V4I16_V32F32 : VOPProfile <[v32f32, v4i16, v4i16, v32f32]>; 2317 2318class Commutable_REV <string revOp, bit isOrig> { 2319 string RevOp = revOp; 2320 bit IsOrig = isOrig; 2321} 2322 2323class AtomicNoRet <string noRetOp, bit isRet> { 2324 string NoRetOp = noRetOp; 2325 bit IsRet = isRet; 2326} 2327 2328//===----------------------------------------------------------------------===// 2329// Interpolation opcodes 2330//===----------------------------------------------------------------------===// 2331 2332class VINTRPDstOperand <RegisterClass rc> : RegisterOperand <rc, "printVINTRPDst">; 2333 2334class VINTRP_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 2335 VINTRPCommon <outs, ins, "", pattern>, 2336 SIMCInstr<opName, SIEncodingFamily.NONE> { 2337 let isPseudo = 1; 2338 let isCodeGenOnly = 1; 2339} 2340 2341// FIXME-GFX10: WIP. 2342class VINTRP_Real_si <bits <2> op, string opName, dag outs, dag ins, 2343 string asm, int encodingFamily> : 2344 VINTRPCommon <outs, ins, asm, []>, 2345 VINTRPe <op>, 2346 SIMCInstr<opName, encodingFamily> { 2347} 2348 2349class VINTRP_Real_vi <bits <2> op, string opName, dag outs, dag ins, 2350 string asm> : 2351 VINTRPCommon <outs, ins, asm, []>, 2352 VINTRPe_vi <op>, 2353 SIMCInstr<opName, SIEncodingFamily.VI> { 2354 let AssemblerPredicate = VIAssemblerPredicate; 2355 let DecoderNamespace = "GFX8"; 2356} 2357 2358// FIXME-GFX10: WIP. 2359multiclass VINTRP_m <bits <2> op, dag outs, dag ins, string asm, 2360 list<dag> pattern = []> { 2361 def "" : VINTRP_Pseudo <NAME, outs, ins, pattern>; 2362 2363 let AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7" in { 2364 def _si : VINTRP_Real_si <op, NAME, outs, ins, asm, SIEncodingFamily.SI>; 2365 } // End AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7" 2366 2367 def _vi : VINTRP_Real_vi <op, NAME, outs, ins, asm>; 2368 2369 let AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10" in { 2370 def _gfx10 : VINTRP_Real_si<op, NAME, outs, ins, asm, SIEncodingFamily.GFX10>; 2371 } // End AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10" 2372} 2373//===----------------------------------------------------------------------===// 2374// Vector instruction mappings 2375//===----------------------------------------------------------------------===// 2376 2377// Maps an opcode in e32 form to its e64 equivalent 2378def getVOPe64 : InstrMapping { 2379 let FilterClass = "VOP"; 2380 let RowFields = ["OpName"]; 2381 let ColFields = ["Size", "VOP3"]; 2382 let KeyCol = ["4", "0"]; 2383 let ValueCols = [["8", "1"]]; 2384} 2385 2386// Maps an opcode in e64 form to its e32 equivalent 2387def getVOPe32 : InstrMapping { 2388 let FilterClass = "VOP"; 2389 let RowFields = ["OpName"]; 2390 let ColFields = ["Size", "VOP3"]; 2391 let KeyCol = ["8", "1"]; 2392 let ValueCols = [["4", "0"]]; 2393} 2394 2395// Maps ordinary instructions to their SDWA counterparts 2396def getSDWAOp : InstrMapping { 2397 let FilterClass = "VOP"; 2398 let RowFields = ["OpName"]; 2399 let ColFields = ["AsmVariantName"]; 2400 let KeyCol = ["Default"]; 2401 let ValueCols = [["SDWA"]]; 2402} 2403 2404// Maps SDWA instructions to their ordinary counterparts 2405def getBasicFromSDWAOp : InstrMapping { 2406 let FilterClass = "VOP"; 2407 let RowFields = ["OpName"]; 2408 let ColFields = ["AsmVariantName"]; 2409 let KeyCol = ["SDWA"]; 2410 let ValueCols = [["Default"]]; 2411} 2412 2413// Maps ordinary instructions to their DPP counterparts 2414def getDPPOp32 : InstrMapping { 2415 let FilterClass = "VOP"; 2416 let RowFields = ["OpName"]; 2417 let ColFields = ["AsmVariantName"]; 2418 let KeyCol = ["Default"]; 2419 let ValueCols = [["DPP"]]; 2420} 2421 2422// Maps an commuted opcode to its original version 2423def getCommuteOrig : InstrMapping { 2424 let FilterClass = "Commutable_REV"; 2425 let RowFields = ["RevOp"]; 2426 let ColFields = ["IsOrig"]; 2427 let KeyCol = ["0"]; 2428 let ValueCols = [["1"]]; 2429} 2430 2431// Maps an original opcode to its commuted version 2432def getCommuteRev : InstrMapping { 2433 let FilterClass = "Commutable_REV"; 2434 let RowFields = ["RevOp"]; 2435 let ColFields = ["IsOrig"]; 2436 let KeyCol = ["1"]; 2437 let ValueCols = [["0"]]; 2438} 2439 2440def getMCOpcodeGen : InstrMapping { 2441 let FilterClass = "SIMCInstr"; 2442 let RowFields = ["PseudoInstr"]; 2443 let ColFields = ["Subtarget"]; 2444 let KeyCol = [!cast<string>(SIEncodingFamily.NONE)]; 2445 let ValueCols = [[!cast<string>(SIEncodingFamily.SI)], 2446 [!cast<string>(SIEncodingFamily.VI)], 2447 [!cast<string>(SIEncodingFamily.SDWA)], 2448 [!cast<string>(SIEncodingFamily.SDWA9)], 2449 // GFX80 encoding is added to work around a multiple matching 2450 // issue for buffer instructions with unpacked d16 data. This 2451 // does not actually change the encoding, and thus may be 2452 // removed later. 2453 [!cast<string>(SIEncodingFamily.GFX80)], 2454 [!cast<string>(SIEncodingFamily.GFX9)], 2455 [!cast<string>(SIEncodingFamily.GFX10)], 2456 [!cast<string>(SIEncodingFamily.SDWA10)], 2457 [!cast<string>(SIEncodingFamily.GFX90A)]]; 2458} 2459 2460// Get equivalent SOPK instruction. 2461def getSOPKOp : InstrMapping { 2462 let FilterClass = "SOPKInstTable"; 2463 let RowFields = ["BaseCmpOp"]; 2464 let ColFields = ["IsSOPK"]; 2465 let KeyCol = ["0"]; 2466 let ValueCols = [["1"]]; 2467} 2468 2469def getAddr64Inst : InstrMapping { 2470 let FilterClass = "MUBUFAddr64Table"; 2471 let RowFields = ["OpName"]; 2472 let ColFields = ["IsAddr64"]; 2473 let KeyCol = ["0"]; 2474 let ValueCols = [["1"]]; 2475} 2476 2477def getIfAddr64Inst : InstrMapping { 2478 let FilterClass = "MUBUFAddr64Table"; 2479 let RowFields = ["OpName"]; 2480 let ColFields = ["IsAddr64"]; 2481 let KeyCol = ["1"]; 2482 let ValueCols = [["1"]]; 2483} 2484 2485def getMUBUFNoLdsInst : InstrMapping { 2486 let FilterClass = "MUBUFLdsTable"; 2487 let RowFields = ["OpName"]; 2488 let ColFields = ["IsLds"]; 2489 let KeyCol = ["1"]; 2490 let ValueCols = [["0"]]; 2491} 2492 2493// Maps an atomic opcode to its returnless version. 2494def getAtomicNoRetOp : InstrMapping { 2495 let FilterClass = "AtomicNoRet"; 2496 let RowFields = ["NoRetOp"]; 2497 let ColFields = ["IsRet"]; 2498 let KeyCol = ["1"]; 2499 let ValueCols = [["0"]]; 2500} 2501 2502// Maps a GLOBAL to its SADDR form. 2503def getGlobalSaddrOp : InstrMapping { 2504 let FilterClass = "GlobalSaddrTable"; 2505 let RowFields = ["SaddrOp"]; 2506 let ColFields = ["IsSaddr"]; 2507 let KeyCol = ["0"]; 2508 let ValueCols = [["1"]]; 2509} 2510 2511// Maps a v_cmpx opcode with sdst to opcode without sdst. 2512def getVCMPXNoSDstOp : InstrMapping { 2513 let FilterClass = "VCMPXNoSDstTable"; 2514 let RowFields = ["NoSDstOp"]; 2515 let ColFields = ["HasSDst"]; 2516 let KeyCol = ["1"]; 2517 let ValueCols = [["0"]]; 2518} 2519 2520// Maps a SOPP to a SOPP with S_NOP 2521def getSOPPWithRelaxation : InstrMapping { 2522 let FilterClass = "SOPPRelaxTable"; 2523 let RowFields = ["KeyName"]; 2524 let ColFields = ["IsRelaxed"]; 2525 let KeyCol = ["0"]; 2526 let ValueCols = [["1"]]; 2527} 2528 2529// Maps flat scratch opcodes by addressing modes 2530def getFlatScratchInstSTfromSS : InstrMapping { 2531 let FilterClass = "FlatScratchInst"; 2532 let RowFields = ["SVOp"]; 2533 let ColFields = ["Mode"]; 2534 let KeyCol = ["SS"]; 2535 let ValueCols = [["ST"]]; 2536} 2537 2538def getFlatScratchInstSSfromSV : InstrMapping { 2539 let FilterClass = "FlatScratchInst"; 2540 let RowFields = ["SVOp"]; 2541 let ColFields = ["Mode"]; 2542 let KeyCol = ["SV"]; 2543 let ValueCols = [["SS"]]; 2544} 2545 2546include "SIInstructions.td" 2547 2548include "DSInstructions.td" 2549include "MIMGInstructions.td" 2550