1//===-- SIInstrInfo.td - SI Instruction Infos -------------*- tablegen -*--===// 2// 3// The LLVM Compiler Infrastructure 4// 5// This file is distributed under the University of Illinois Open Source 6// License. See LICENSE.TXT for details. 7// 8//===----------------------------------------------------------------------===// 9def isCI : Predicate<"Subtarget->getGeneration() " 10 ">= SISubtarget::SEA_ISLANDS">; 11def isCIOnly : Predicate<"Subtarget->getGeneration() ==" 12 "SISubtarget::SEA_ISLANDS">, 13 AssemblerPredicate <"FeatureSeaIslands">; 14 15def DisableInst : Predicate <"false">, AssemblerPredicate<"FeatureDisable">; 16 17class vop { 18 field bits<9> SI3; 19 field bits<10> VI3; 20} 21 22class vopc <bits<8> si, bits<8> vi = !add(0x40, si)> : vop { 23 field bits<8> SI = si; 24 field bits<8> VI = vi; 25 26 field bits<9> SI3 = {0, si{7-0}}; 27 field bits<10> VI3 = {0, 0, vi{7-0}}; 28} 29 30class vop1 <bits<8> si, bits<8> vi = si> : vop { 31 field bits<8> SI = si; 32 field bits<8> VI = vi; 33 34 field bits<9> SI3 = {1, 1, si{6-0}}; 35 field bits<10> VI3 = !add(0x140, vi); 36} 37 38class vop2 <bits<6> si, bits<6> vi = si> : vop { 39 field bits<6> SI = si; 40 field bits<6> VI = vi; 41 42 field bits<9> SI3 = {1, 0, 0, si{5-0}}; 43 field bits<10> VI3 = {0, 1, 0, 0, vi{5-0}}; 44} 45 46// Specify a VOP2 opcode for SI and VOP3 opcode for VI 47// that doesn't have VOP2 encoding on VI 48class vop23 <bits<6> si, bits<10> vi> : vop2 <si> { 49 let VI3 = vi; 50} 51 52class vop3 <bits<9> si, bits<10> vi = {0, si}> : vop { 53 let SI3 = si; 54 let VI3 = vi; 55} 56 57class sop1 <bits<8> si, bits<8> vi = si> { 58 field bits<8> SI = si; 59 field bits<8> VI = vi; 60} 61 62class sop2 <bits<7> si, bits<7> vi = si> { 63 field bits<7> SI = si; 64 field bits<7> VI = vi; 65} 66 67class sopk <bits<5> si, bits<5> vi = si> { 68 field bits<5> SI = si; 69 field bits<5> VI = vi; 70} 71 72// Specify an SMRD opcode for SI and SMEM opcode for VI 73 74// FIXME: This should really be bits<5> si, Tablegen crashes if 75// parameter default value is other parameter with different bit size 76class smrd<bits<8> si, bits<8> vi = si> { 77 field bits<5> SI = si{4-0}; 78 field bits<8> VI = vi; 79} 80 81// Execpt for the NONE field, this must be kept in sync with the 82// SIEncodingFamily enum in AMDGPUInstrInfo.cpp 83def SIEncodingFamily { 84 int NONE = -1; 85 int SI = 0; 86 int VI = 1; 87} 88 89//===----------------------------------------------------------------------===// 90// SI DAG Nodes 91//===----------------------------------------------------------------------===// 92 93def SIload_constant : SDNode<"AMDGPUISD::LOAD_CONSTANT", 94 SDTypeProfile<1, 2, [SDTCisVT<0, f32>, SDTCisVT<1, v4i32>, SDTCisVT<2, i32>]>, 95 [SDNPMayLoad, SDNPMemOperand] 96>; 97 98def SIatomic_inc : SDNode<"AMDGPUISD::ATOMIC_INC", SDTAtomic2, 99 [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain] 100>; 101 102def SIatomic_dec : SDNode<"AMDGPUISD::ATOMIC_DEC", SDTAtomic2, 103 [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain] 104>; 105 106def SItbuffer_store : SDNode<"AMDGPUISD::TBUFFER_STORE_FORMAT", 107 SDTypeProfile<0, 13, 108 [SDTCisVT<0, v4i32>, // rsrc(SGPR) 109 SDTCisVT<1, iAny>, // vdata(VGPR) 110 SDTCisVT<2, i32>, // num_channels(imm) 111 SDTCisVT<3, i32>, // vaddr(VGPR) 112 SDTCisVT<4, i32>, // soffset(SGPR) 113 SDTCisVT<5, i32>, // inst_offset(imm) 114 SDTCisVT<6, i32>, // dfmt(imm) 115 SDTCisVT<7, i32>, // nfmt(imm) 116 SDTCisVT<8, i32>, // offen(imm) 117 SDTCisVT<9, i32>, // idxen(imm) 118 SDTCisVT<10, i32>, // glc(imm) 119 SDTCisVT<11, i32>, // slc(imm) 120 SDTCisVT<12, i32> // tfe(imm) 121 ]>, 122 [SDNPMayStore, SDNPMemOperand, SDNPHasChain] 123>; 124 125def SIload_input : SDNode<"AMDGPUISD::LOAD_INPUT", 126 SDTypeProfile<1, 3, [SDTCisVT<0, v4f32>, SDTCisVT<1, v4i32>, SDTCisVT<2, i16>, 127 SDTCisVT<3, i32>]> 128>; 129 130class SDSample<string opcode> : SDNode <opcode, 131 SDTypeProfile<1, 4, [SDTCisVT<0, v4f32>, SDTCisVT<2, v8i32>, 132 SDTCisVT<3, v4i32>, SDTCisVT<4, i32>]> 133>; 134 135def SIsample : SDSample<"AMDGPUISD::SAMPLE">; 136def SIsampleb : SDSample<"AMDGPUISD::SAMPLEB">; 137def SIsampled : SDSample<"AMDGPUISD::SAMPLED">; 138def SIsamplel : SDSample<"AMDGPUISD::SAMPLEL">; 139 140def SIpc_add_rel_offset : SDNode<"AMDGPUISD::PC_ADD_REL_OFFSET", 141 SDTypeProfile<1, 1, [SDTCisVT<0, iPTR>, SDTCisSameAs<0,1>]> 142>; 143 144//===----------------------------------------------------------------------===// 145// PatFrags for FLAT instructions 146//===----------------------------------------------------------------------===// 147 148class flat_ld <SDPatternOperator ld> : PatFrag<(ops node:$ptr), 149 (ld node:$ptr), [{ 150 return isFlatLoad(dyn_cast<MemSDNode>(N)) || 151 isGlobalLoad(dyn_cast<MemSDNode>(N)) || 152 isConstantLoad(cast<MemSDNode>(N), -1); 153}]>; 154 155def flat_load : flat_ld <load>; 156def atomic_flat_load : flat_ld<atomic_load>; 157def flat_az_extloadi8 : flat_ld <az_extloadi8>; 158def flat_sextloadi8 : flat_ld <sextloadi8>; 159def flat_az_extloadi16 : flat_ld <az_extloadi16>; 160def flat_sextloadi16 : flat_ld <sextloadi16>; 161 162class flat_st <SDPatternOperator st> : PatFrag<(ops node:$val, node:$ptr), 163 (st node:$val, node:$ptr), [{ 164 return isFlatStore(dyn_cast<MemSDNode>(N)) || 165 isGlobalStore(dyn_cast<MemSDNode>(N)); 166}]>; 167 168def flat_store: flat_st <store>; 169def atomic_flat_store: flat_st <atomic_store>; 170def flat_truncstorei8 : flat_st <truncstorei8>; 171def flat_truncstorei16 : flat_st <truncstorei16>; 172 173 174def mubuf_load : PatFrag <(ops node:$ptr), (load node:$ptr), [{ 175 return isGlobalLoad(cast<LoadSDNode>(N)) || 176 isConstantLoad(cast<LoadSDNode>(N), -1); 177}]>; 178 179def mubuf_load_atomic : PatFrag <(ops node:$ptr), (atomic_load node:$ptr), [{ 180 return isGlobalLoad(cast<MemSDNode>(N)) || 181 isConstantLoad(cast<MemSDNode>(N), -1); 182}]>; 183 184 185def smrd_load : PatFrag <(ops node:$ptr), (load node:$ptr), [{ 186 return isConstantLoad(cast<LoadSDNode>(N), -1) && 187 static_cast<const SITargetLowering *>(getTargetLowering())->isMemOpUniform(N); 188}]>; 189 190//===----------------------------------------------------------------------===// 191// PatFrags for global memory operations 192//===----------------------------------------------------------------------===// 193 194def atomic_inc_global : global_binary_atomic_op<SIatomic_inc>; 195def atomic_dec_global : global_binary_atomic_op<SIatomic_dec>; 196 197def atomic_inc_flat : flat_binary_atomic_op<SIatomic_inc>; 198def atomic_dec_flat : flat_binary_atomic_op<SIatomic_dec>; 199 200//===----------------------------------------------------------------------===// 201// SDNodes and PatFrag for local loads and stores to enable s_mov_b32 m0, -1 202// to be glued to the memory instructions. 203//===----------------------------------------------------------------------===// 204 205def SIld_local : SDNode <"ISD::LOAD", SDTLoad, 206 [SDNPHasChain, SDNPMayLoad, SDNPMemOperand, SDNPInGlue] 207>; 208 209def si_ld_local : PatFrag <(ops node:$ptr), (SIld_local node:$ptr), [{ 210 return isLocalLoad(cast<LoadSDNode>(N)); 211}]>; 212 213def si_load_local : PatFrag <(ops node:$ptr), (si_ld_local node:$ptr), [{ 214 return cast<LoadSDNode>(N)->getAddressingMode() == ISD::UNINDEXED && 215 cast<LoadSDNode>(N)->getExtensionType() == ISD::NON_EXTLOAD; 216}]>; 217 218def si_load_local_align8 : Aligned8Bytes < 219 (ops node:$ptr), (si_load_local node:$ptr) 220>; 221 222def si_sextload_local : PatFrag <(ops node:$ptr), (si_ld_local node:$ptr), [{ 223 return cast<LoadSDNode>(N)->getExtensionType() == ISD::SEXTLOAD; 224}]>; 225def si_az_extload_local : AZExtLoadBase <si_ld_local>; 226 227multiclass SIExtLoadLocal <PatFrag ld_node> { 228 229 def _i8 : PatFrag <(ops node:$ptr), (ld_node node:$ptr), 230 [{return cast<LoadSDNode>(N)->getMemoryVT() == MVT::i8;}] 231 >; 232 233 def _i16 : PatFrag <(ops node:$ptr), (ld_node node:$ptr), 234 [{return cast<LoadSDNode>(N)->getMemoryVT() == MVT::i16;}] 235 >; 236} 237 238defm si_sextload_local : SIExtLoadLocal <si_sextload_local>; 239defm si_az_extload_local : SIExtLoadLocal <si_az_extload_local>; 240 241def SIst_local : SDNode <"ISD::STORE", SDTStore, 242 [SDNPHasChain, SDNPMayStore, SDNPMemOperand, SDNPInGlue] 243>; 244 245def si_st_local : PatFrag < 246 (ops node:$val, node:$ptr), (SIst_local node:$val, node:$ptr), [{ 247 return isLocalStore(cast<StoreSDNode>(N)); 248}]>; 249 250def si_store_local : PatFrag < 251 (ops node:$val, node:$ptr), (si_st_local node:$val, node:$ptr), [{ 252 return cast<StoreSDNode>(N)->getAddressingMode() == ISD::UNINDEXED && 253 !cast<StoreSDNode>(N)->isTruncatingStore(); 254}]>; 255 256def si_store_local_align8 : Aligned8Bytes < 257 (ops node:$val, node:$ptr), (si_store_local node:$val, node:$ptr) 258>; 259 260def si_truncstore_local : PatFrag < 261 (ops node:$val, node:$ptr), (si_st_local node:$val, node:$ptr), [{ 262 return cast<StoreSDNode>(N)->isTruncatingStore(); 263}]>; 264 265def si_truncstore_local_i8 : PatFrag < 266 (ops node:$val, node:$ptr), (si_truncstore_local node:$val, node:$ptr), [{ 267 return cast<StoreSDNode>(N)->getMemoryVT() == MVT::i8; 268}]>; 269 270def si_truncstore_local_i16 : PatFrag < 271 (ops node:$val, node:$ptr), (si_truncstore_local node:$val, node:$ptr), [{ 272 return cast<StoreSDNode>(N)->getMemoryVT() == MVT::i16; 273}]>; 274 275def si_setcc_uniform : PatFrag < 276 (ops node:$lhs, node:$rhs, node:$cond), 277 (setcc node:$lhs, node:$rhs, node:$cond), [{ 278 for (SDNode *Use : N->uses()) { 279 if (Use->isMachineOpcode() || Use->getOpcode() != ISD::CopyToReg) 280 return false; 281 282 unsigned Reg = cast<RegisterSDNode>(Use->getOperand(1))->getReg(); 283 if (Reg != AMDGPU::SCC) 284 return false; 285 } 286 return true; 287}]>; 288 289def si_uniform_br : PatFrag < 290 (ops node:$cond, node:$bb), (brcond node:$cond, node:$bb), [{ 291 return isUniformBr(N); 292}]>; 293 294def si_uniform_br_scc : PatFrag < 295 (ops node:$cond, node:$bb), (si_uniform_br node:$cond, node:$bb), [{ 296 return isCBranchSCC(N); 297}]>; 298 299multiclass SIAtomicM0Glue2 <string op_name, bit is_amdgpu = 0> { 300 301 def _glue : SDNode < 302 !if(is_amdgpu, "AMDGPUISD", "ISD")#"::ATOMIC_"#op_name, SDTAtomic2, 303 [SDNPHasChain, SDNPMayStore, SDNPMayLoad, SDNPMemOperand, SDNPInGlue] 304 >; 305 306 def _local : local_binary_atomic_op <!cast<SDNode>(NAME#"_glue")>; 307} 308 309defm si_atomic_load_add : SIAtomicM0Glue2 <"LOAD_ADD">; 310defm si_atomic_load_sub : SIAtomicM0Glue2 <"LOAD_SUB">; 311defm si_atomic_inc : SIAtomicM0Glue2 <"INC", 1>; 312defm si_atomic_dec : SIAtomicM0Glue2 <"DEC", 1>; 313defm si_atomic_load_and : SIAtomicM0Glue2 <"LOAD_AND">; 314defm si_atomic_load_min : SIAtomicM0Glue2 <"LOAD_MIN">; 315defm si_atomic_load_max : SIAtomicM0Glue2 <"LOAD_MAX">; 316defm si_atomic_load_or : SIAtomicM0Glue2 <"LOAD_OR">; 317defm si_atomic_load_xor : SIAtomicM0Glue2 <"LOAD_XOR">; 318defm si_atomic_load_umin : SIAtomicM0Glue2 <"LOAD_UMIN">; 319defm si_atomic_load_umax : SIAtomicM0Glue2 <"LOAD_UMAX">; 320defm si_atomic_swap : SIAtomicM0Glue2 <"SWAP">; 321 322def si_atomic_cmp_swap_glue : SDNode <"ISD::ATOMIC_CMP_SWAP", SDTAtomic3, 323 [SDNPHasChain, SDNPMayStore, SDNPMayLoad, SDNPMemOperand, SDNPInGlue] 324>; 325 326defm si_atomic_cmp_swap : AtomicCmpSwapLocal <si_atomic_cmp_swap_glue>; 327 328// Transformation function, extract the lower 32bit of a 64bit immediate 329def LO32 : SDNodeXForm<imm, [{ 330 return CurDAG->getTargetConstant(N->getZExtValue() & 0xffffffff, SDLoc(N), 331 MVT::i32); 332}]>; 333 334def LO32f : SDNodeXForm<fpimm, [{ 335 APInt V = N->getValueAPF().bitcastToAPInt().trunc(32); 336 return CurDAG->getTargetConstantFP(APFloat(APFloat::IEEEsingle, V), MVT::f32); 337}]>; 338 339// Transformation function, extract the upper 32bit of a 64bit immediate 340def HI32 : SDNodeXForm<imm, [{ 341 return CurDAG->getTargetConstant(N->getZExtValue() >> 32, SDLoc(N), MVT::i32); 342}]>; 343 344def HI32f : SDNodeXForm<fpimm, [{ 345 APInt V = N->getValueAPF().bitcastToAPInt().lshr(32).trunc(32); 346 return CurDAG->getTargetConstantFP(APFloat(APFloat::IEEEsingle, V), SDLoc(N), 347 MVT::f32); 348}]>; 349 350def IMM8bitDWORD : PatLeaf <(imm), 351 [{return (N->getZExtValue() & ~0x3FC) == 0;}] 352>; 353 354def as_dword_i32imm : SDNodeXForm<imm, [{ 355 return CurDAG->getTargetConstant(N->getZExtValue() >> 2, SDLoc(N), MVT::i32); 356}]>; 357 358def as_i1imm : SDNodeXForm<imm, [{ 359 return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i1); 360}]>; 361 362def as_i8imm : SDNodeXForm<imm, [{ 363 return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i8); 364}]>; 365 366def as_i16imm : SDNodeXForm<imm, [{ 367 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16); 368}]>; 369 370def as_i32imm: SDNodeXForm<imm, [{ 371 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i32); 372}]>; 373 374def as_i64imm: SDNodeXForm<imm, [{ 375 return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i64); 376}]>; 377 378// Copied from the AArch64 backend: 379def bitcast_fpimm_to_i32 : SDNodeXForm<fpimm, [{ 380return CurDAG->getTargetConstant( 381 N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i32); 382}]>; 383 384// Copied from the AArch64 backend: 385def bitcast_fpimm_to_i64 : SDNodeXForm<fpimm, [{ 386return CurDAG->getTargetConstant( 387 N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i64); 388}]>; 389 390def IMM8bit : PatLeaf <(imm), 391 [{return isUInt<8>(N->getZExtValue());}] 392>; 393 394def IMM12bit : PatLeaf <(imm), 395 [{return isUInt<12>(N->getZExtValue());}] 396>; 397 398def IMM16bit : PatLeaf <(imm), 399 [{return isUInt<16>(N->getZExtValue());}] 400>; 401 402def SIMM16bit : PatLeaf <(imm), 403 [{return isInt<16>(N->getSExtValue());}] 404>; 405 406def IMM20bit : PatLeaf <(imm), 407 [{return isUInt<20>(N->getZExtValue());}] 408>; 409 410def IMM32bit : PatLeaf <(imm), 411 [{return isUInt<32>(N->getZExtValue());}] 412>; 413 414def mubuf_vaddr_offset : PatFrag< 415 (ops node:$ptr, node:$offset, node:$imm_offset), 416 (add (add node:$ptr, node:$offset), node:$imm_offset) 417>; 418 419class InlineImm <ValueType vt> : PatLeaf <(vt imm), [{ 420 return isInlineImmediate(N); 421}]>; 422 423class InlineFPImm <ValueType vt> : PatLeaf <(vt fpimm), [{ 424 return isInlineImmediate(N); 425}]>; 426 427class SGPRImm <dag frag> : PatLeaf<frag, [{ 428 if (Subtarget->getGeneration() < SISubtarget::SOUTHERN_ISLANDS) { 429 return false; 430 } 431 const SIRegisterInfo *SIRI = 432 static_cast<const SIRegisterInfo *>(Subtarget->getRegisterInfo()); 433 for (SDNode::use_iterator U = N->use_begin(), E = SDNode::use_end(); 434 U != E; ++U) { 435 const TargetRegisterClass *RC = getOperandRegClass(*U, U.getOperandNo()); 436 if (RC && SIRI->isSGPRClass(RC)) 437 return true; 438 } 439 return false; 440}]>; 441 442//===----------------------------------------------------------------------===// 443// Custom Operands 444//===----------------------------------------------------------------------===// 445 446def FRAMEri32 : Operand<iPTR> { 447 let MIOperandInfo = (ops i32:$ptr, i32imm:$index); 448} 449 450def SoppBrTarget : AsmOperandClass { 451 let Name = "SoppBrTarget"; 452 let ParserMethod = "parseSOppBrTarget"; 453} 454 455def sopp_brtarget : Operand<OtherVT> { 456 let EncoderMethod = "getSOPPBrEncoding"; 457 let OperandType = "OPERAND_PCREL"; 458 let ParserMatchClass = SoppBrTarget; 459} 460 461def si_ga : Operand<iPTR>; 462 463def InterpSlot : Operand<i32> { 464 let PrintMethod = "printInterpSlot"; 465} 466 467def SendMsgMatchClass : AsmOperandClass { 468 let Name = "SendMsg"; 469 let PredicateMethod = "isSendMsg"; 470 let ParserMethod = "parseSendMsgOp"; 471 let RenderMethod = "addImmOperands"; 472} 473 474def SendMsgImm : Operand<i32> { 475 let PrintMethod = "printSendMsg"; 476 let ParserMatchClass = SendMsgMatchClass; 477} 478 479def SWaitMatchClass : AsmOperandClass { 480 let Name = "SWaitCnt"; 481 let RenderMethod = "addImmOperands"; 482 let ParserMethod = "parseSWaitCntOps"; 483} 484 485def WAIT_FLAG : Operand <i32> { 486 let ParserMatchClass = SWaitMatchClass; 487 let PrintMethod = "printWaitFlag"; 488} 489 490include "SIInstrFormats.td" 491include "VIInstrFormats.td" 492 493class NamedMatchClass<string CName, bit Optional = 1> : AsmOperandClass { 494 let Name = "Imm"#CName; 495 let PredicateMethod = "is"#CName; 496 let ParserMethod = !if(Optional, "parseOptionalOperand", "parse"#CName); 497 let RenderMethod = "addImmOperands"; 498 let IsOptional = Optional; 499 let DefaultMethod = !if(Optional, "default"#CName, ?); 500} 501 502class NamedOperandBit<string Name, AsmOperandClass MatchClass> : Operand<i1> { 503 let PrintMethod = "print"#Name; 504 let ParserMatchClass = MatchClass; 505} 506 507class NamedOperandU8<string Name, AsmOperandClass MatchClass> : Operand<i8> { 508 let PrintMethod = "print"#Name; 509 let ParserMatchClass = MatchClass; 510} 511 512class NamedOperandU16<string Name, AsmOperandClass MatchClass> : Operand<i16> { 513 let PrintMethod = "print"#Name; 514 let ParserMatchClass = MatchClass; 515} 516 517class NamedOperandU32<string Name, AsmOperandClass MatchClass> : Operand<i32> { 518 let PrintMethod = "print"#Name; 519 let ParserMatchClass = MatchClass; 520} 521 522let OperandType = "OPERAND_IMMEDIATE" in { 523 524def offen : NamedOperandBit<"Offen", NamedMatchClass<"Offen">>; 525def idxen : NamedOperandBit<"Idxen", NamedMatchClass<"Idxen">>; 526def addr64 : NamedOperandBit<"Addr64", NamedMatchClass<"Addr64">>; 527 528def offset : NamedOperandU16<"Offset", NamedMatchClass<"Offset">>; 529def offset0 : NamedOperandU8<"Offset0", NamedMatchClass<"Offset0">>; 530def offset1 : NamedOperandU8<"Offset1", NamedMatchClass<"Offset1">>; 531 532def gds : NamedOperandBit<"GDS", NamedMatchClass<"GDS">>; 533 534def omod : NamedOperandU32<"OModSI", NamedMatchClass<"OModSI">>; 535def clampmod : NamedOperandBit<"ClampSI", NamedMatchClass<"ClampSI">>; 536 537def smrd_offset : NamedOperandU32<"SMRDOffset", NamedMatchClass<"SMRDOffset">>; 538def smrd_literal_offset : NamedOperandU32<"SMRDLiteralOffset", NamedMatchClass<"SMRDLiteralOffset">>; 539 540def glc : NamedOperandBit<"GLC", NamedMatchClass<"GLC">>; 541def slc : NamedOperandBit<"SLC", NamedMatchClass<"SLC">>; 542def tfe : NamedOperandBit<"TFE", NamedMatchClass<"TFE">>; 543def unorm : NamedOperandBit<"UNorm", NamedMatchClass<"UNorm">>; 544def da : NamedOperandBit<"DA", NamedMatchClass<"DA">>; 545def r128 : NamedOperandBit<"R128", NamedMatchClass<"R128">>; 546def lwe : NamedOperandBit<"LWE", NamedMatchClass<"LWE">>; 547 548def dmask : NamedOperandU16<"DMask", NamedMatchClass<"DMask">>; 549 550def dpp_ctrl : NamedOperandU32<"DPPCtrl", NamedMatchClass<"DPPCtrl", 0>>; 551def row_mask : NamedOperandU32<"RowMask", NamedMatchClass<"RowMask">>; 552def bank_mask : NamedOperandU32<"BankMask", NamedMatchClass<"BankMask">>; 553def bound_ctrl : NamedOperandBit<"BoundCtrl", NamedMatchClass<"BoundCtrl">>; 554 555def dst_sel : NamedOperandU32<"SDWADstSel", NamedMatchClass<"SDWADstSel">>; 556def src0_sel : NamedOperandU32<"SDWASrc0Sel", NamedMatchClass<"SDWASrc0Sel">>; 557def src1_sel : NamedOperandU32<"SDWASrc1Sel", NamedMatchClass<"SDWASrc1Sel">>; 558def dst_unused : NamedOperandU32<"SDWADstUnused", NamedMatchClass<"SDWADstUnused">>; 559 560def hwreg : NamedOperandU16<"Hwreg", NamedMatchClass<"Hwreg", 0>>; 561 562} // End OperandType = "OPERAND_IMMEDIATE" 563 564 565def VOPDstS64 : VOPDstOperand <SReg_64>; 566 567def FPInputModsMatchClass : AsmOperandClass { 568 let Name = "RegOrImmWithFPInputMods"; 569 let ParserMethod = "parseRegOrImmWithFPInputMods"; 570 let PredicateMethod = "isRegOrImmWithInputMods"; 571} 572 573def FPInputMods : Operand <i32> { 574 let PrintMethod = "printOperandAndFPInputMods"; 575 let ParserMatchClass = FPInputModsMatchClass; 576} 577 578def IntInputModsMatchClass : AsmOperandClass { 579 let Name = "RegOrImmWithIntInputMods"; 580 let ParserMethod = "parseRegOrImmWithIntInputMods"; 581 let PredicateMethod = "isRegOrImmWithInputMods"; 582} 583 584def IntInputMods: Operand <i32> { 585 let PrintMethod = "printOperandAndIntInputMods"; 586 let ParserMatchClass = IntInputModsMatchClass; 587} 588 589//===----------------------------------------------------------------------===// 590// Complex patterns 591//===----------------------------------------------------------------------===// 592 593def DS1Addr1Offset : ComplexPattern<i32, 2, "SelectDS1Addr1Offset">; 594def DS64Bit4ByteAligned : ComplexPattern<i32, 3, "SelectDS64Bit4ByteAligned">; 595 596def MUBUFAddr32 : ComplexPattern<i64, 9, "SelectMUBUFAddr32">; 597def MUBUFAddr64 : ComplexPattern<i64, 7, "SelectMUBUFAddr64">; 598def MUBUFAddr64Atomic : ComplexPattern<i64, 5, "SelectMUBUFAddr64">; 599def FLATAtomic : ComplexPattern<i64, 3, "SelectFlat">; 600def MUBUFScratch : ComplexPattern<i64, 4, "SelectMUBUFScratch">; 601def MUBUFOffset : ComplexPattern<i64, 6, "SelectMUBUFOffset">; 602def MUBUFOffsetNoGLC : ComplexPattern<i64, 3, "SelectMUBUFOffset">; 603def MUBUFOffsetAtomic : ComplexPattern<i64, 4, "SelectMUBUFOffset">; 604def MUBUFIntrinsicOffset : ComplexPattern<i32, 2, "SelectMUBUFIntrinsicOffset">; 605def MUBUFIntrinsicVOffset : ComplexPattern<i32, 3, "SelectMUBUFIntrinsicVOffset">; 606 607def SMRDImm : ComplexPattern<i64, 2, "SelectSMRDImm">; 608def SMRDImm32 : ComplexPattern<i64, 2, "SelectSMRDImm32">; 609def SMRDSgpr : ComplexPattern<i64, 2, "SelectSMRDSgpr">; 610def SMRDBufferImm : ComplexPattern<i32, 1, "SelectSMRDBufferImm">; 611def SMRDBufferImm32 : ComplexPattern<i32, 1, "SelectSMRDBufferImm32">; 612def SMRDBufferSgpr : ComplexPattern<i32, 1, "SelectSMRDBufferSgpr">; 613 614def VOP3Mods0 : ComplexPattern<untyped, 4, "SelectVOP3Mods0">; 615def VOP3NoMods0 : ComplexPattern<untyped, 4, "SelectVOP3NoMods0">; 616def VOP3Mods0Clamp : ComplexPattern<untyped, 3, "SelectVOP3Mods0Clamp">; 617def VOP3Mods0Clamp0OMod : ComplexPattern<untyped, 4, "SelectVOP3Mods0Clamp0OMod">; 618def VOP3Mods : ComplexPattern<untyped, 2, "SelectVOP3Mods">; 619def VOP3NoMods : ComplexPattern<untyped, 2, "SelectVOP3NoMods">; 620 621//===----------------------------------------------------------------------===// 622// SI assembler operands 623//===----------------------------------------------------------------------===// 624 625def SIOperand { 626 int ZERO = 0x80; 627 int VCC = 0x6A; 628 int FLAT_SCR = 0x68; 629} 630 631def SRCMODS { 632 int NONE = 0; 633 int NEG = 1; 634} 635 636def DSTCLAMP { 637 int NONE = 0; 638} 639 640def DSTOMOD { 641 int NONE = 0; 642} 643 644//===----------------------------------------------------------------------===// 645// 646// SI Instruction multiclass helpers. 647// 648// Instructions with _32 take 32-bit operands. 649// Instructions with _64 take 64-bit operands. 650// 651// VOP_* instructions can use either a 32-bit or 64-bit encoding. The 32-bit 652// encoding is the standard encoding, but instruction that make use of 653// any of the instruction modifiers must use the 64-bit encoding. 654// 655// Instructions with _e32 use the 32-bit encoding. 656// Instructions with _e64 use the 64-bit encoding. 657// 658//===----------------------------------------------------------------------===// 659 660class SIMCInstr <string pseudo, int subtarget> { 661 string PseudoInstr = pseudo; 662 int Subtarget = subtarget; 663} 664 665//===----------------------------------------------------------------------===// 666// EXP classes 667//===----------------------------------------------------------------------===// 668 669class EXPCommon : InstSI< 670 (outs), 671 (ins i32imm:$en, i32imm:$tgt, i32imm:$compr, i32imm:$done, i32imm:$vm, 672 VGPR_32:$src0, VGPR_32:$src1, VGPR_32:$src2, VGPR_32:$src3), 673 "exp $en, $tgt, $compr, $done, $vm, $src0, $src1, $src2, $src3", 674 [] > { 675 676 let EXP_CNT = 1; 677 let Uses = [EXEC]; 678 let SchedRW = [WriteExport]; 679} 680 681multiclass EXP_m { 682 683 let isPseudo = 1, isCodeGenOnly = 1 in { 684 def "" : EXPCommon, SIMCInstr <"exp", SIEncodingFamily.NONE> ; 685 } 686 687 def _si : EXPCommon, SIMCInstr <"exp", SIEncodingFamily.SI>, EXPe { 688 let DecoderNamespace="SICI"; 689 let DisableDecoder = DisableSIDecoder; 690 } 691 692 def _vi : EXPCommon, SIMCInstr <"exp", SIEncodingFamily.VI>, EXPe_vi { 693 let DecoderNamespace="VI"; 694 let DisableDecoder = DisableVIDecoder; 695 } 696} 697 698//===----------------------------------------------------------------------===// 699// Scalar classes 700//===----------------------------------------------------------------------===// 701 702class SOP1_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 703 SOP1 <outs, ins, "", pattern>, 704 SIMCInstr<opName, SIEncodingFamily.NONE> { 705 let isPseudo = 1; 706 let isCodeGenOnly = 1; 707} 708 709class SOP1_Real_si <sop1 op, string opName, dag outs, dag ins, string asm> : 710 SOP1 <outs, ins, asm, []>, 711 SOP1e <op.SI>, 712 SIMCInstr<opName, SIEncodingFamily.SI> { 713 let isCodeGenOnly = 0; 714 let AssemblerPredicates = [isSICI]; 715 let DecoderNamespace = "SICI"; 716 let DisableDecoder = DisableSIDecoder; 717} 718 719class SOP1_Real_vi <sop1 op, string opName, dag outs, dag ins, string asm> : 720 SOP1 <outs, ins, asm, []>, 721 SOP1e <op.VI>, 722 SIMCInstr<opName, SIEncodingFamily.VI> { 723 let isCodeGenOnly = 0; 724 let AssemblerPredicates = [isVI]; 725 let DecoderNamespace = "VI"; 726 let DisableDecoder = DisableVIDecoder; 727} 728 729multiclass SOP1_m <sop1 op, string opName, dag outs, dag ins, string asm, 730 list<dag> pattern> { 731 732 def "" : SOP1_Pseudo <opName, outs, ins, pattern>; 733 734 def _si : SOP1_Real_si <op, opName, outs, ins, asm>; 735 736 def _vi : SOP1_Real_vi <op, opName, outs, ins, asm>; 737 738} 739 740multiclass SOP1_32 <sop1 op, string opName, list<dag> pattern> : SOP1_m < 741 op, opName, (outs SReg_32:$sdst), (ins SSrc_32:$src0), 742 opName#" $sdst, $src0", pattern 743>; 744 745multiclass SOP1_64 <sop1 op, string opName, list<dag> pattern> : SOP1_m < 746 op, opName, (outs SReg_64:$sdst), (ins SSrc_64:$src0), 747 opName#" $sdst, $src0", pattern 748>; 749 750// no input, 64-bit output. 751multiclass SOP1_64_0 <sop1 op, string opName, list<dag> pattern> { 752 def "" : SOP1_Pseudo <opName, (outs SReg_64:$sdst), (ins), pattern>; 753 754 def _si : SOP1_Real_si <op, opName, (outs SReg_64:$sdst), (ins), 755 opName#" $sdst"> { 756 let src0 = 0; 757 } 758 759 def _vi : SOP1_Real_vi <op, opName, (outs SReg_64:$sdst), (ins), 760 opName#" $sdst"> { 761 let src0 = 0; 762 } 763} 764 765// 64-bit input, no output 766multiclass SOP1_1 <sop1 op, string opName, list<dag> pattern> { 767 def "" : SOP1_Pseudo <opName, (outs), (ins SReg_64:$src0), pattern>; 768 769 def _si : SOP1_Real_si <op, opName, (outs), (ins SReg_64:$src0), 770 opName#" $src0"> { 771 let sdst = 0; 772 } 773 774 def _vi : SOP1_Real_vi <op, opName, (outs), (ins SReg_64:$src0), 775 opName#" $src0"> { 776 let sdst = 0; 777 } 778} 779 780// 64-bit input, 32-bit output. 781multiclass SOP1_32_64 <sop1 op, string opName, list<dag> pattern> : SOP1_m < 782 op, opName, (outs SReg_32:$sdst), (ins SSrc_64:$src0), 783 opName#" $sdst, $src0", pattern 784>; 785 786// 32-bit input, 64-bit output. 787multiclass SOP1_64_32 <sop1 op, string opName, list<dag> pattern> : SOP1_m < 788 op, opName, (outs SReg_64:$sdst), (ins SSrc_32:$src0), 789 opName#" $sdst, $src0", pattern 790>; 791 792class SOP2_Pseudo<string opName, dag outs, dag ins, list<dag> pattern> : 793 SOP2<outs, ins, "", pattern>, 794 SIMCInstr<opName, SIEncodingFamily.NONE> { 795 let isPseudo = 1; 796 let isCodeGenOnly = 1; 797 let Size = 4; 798 799 // Pseudo instructions have no encodings, but adding this field here allows 800 // us to do: 801 // let sdst = xxx in { 802 // for multiclasses that include both real and pseudo instructions. 803 field bits<7> sdst = 0; 804} 805 806class SOP2_Real_si<sop2 op, string opName, dag outs, dag ins, string asm> : 807 SOP2<outs, ins, asm, []>, 808 SOP2e<op.SI>, 809 SIMCInstr<opName, SIEncodingFamily.SI> { 810 let AssemblerPredicates = [isSICI]; 811 let DecoderNamespace = "SICI"; 812 let DisableDecoder = DisableSIDecoder; 813} 814 815class SOP2_Real_vi<sop2 op, string opName, dag outs, dag ins, string asm> : 816 SOP2<outs, ins, asm, []>, 817 SOP2e<op.VI>, 818 SIMCInstr<opName, SIEncodingFamily.VI> { 819 let AssemblerPredicates = [isVI]; 820 let DecoderNamespace = "VI"; 821 let DisableDecoder = DisableVIDecoder; 822} 823 824multiclass SOP2_m <sop2 op, string opName, dag outs, dag ins, string asm, 825 list<dag> pattern> { 826 827 def "" : SOP2_Pseudo <opName, outs, ins, pattern>; 828 829 def _si : SOP2_Real_si <op, opName, outs, ins, asm>; 830 831 def _vi : SOP2_Real_vi <op, opName, outs, ins, asm>; 832 833} 834 835multiclass SOP2_32 <sop2 op, string opName, list<dag> pattern> : SOP2_m < 836 op, opName, (outs SReg_32:$sdst), (ins SSrc_32:$src0, SSrc_32:$src1), 837 opName#" $sdst, $src0, $src1", pattern 838>; 839 840multiclass SOP2_64 <sop2 op, string opName, list<dag> pattern> : SOP2_m < 841 op, opName, (outs SReg_64:$sdst), (ins SSrc_64:$src0, SSrc_64:$src1), 842 opName#" $sdst, $src0, $src1", pattern 843>; 844 845multiclass SOP2_64_32 <sop2 op, string opName, list<dag> pattern> : SOP2_m < 846 op, opName, (outs SReg_64:$sdst), (ins SSrc_64:$src0, SSrc_32:$src1), 847 opName#" $sdst, $src0, $src1", pattern 848>; 849 850multiclass SOP2_64_32_32 <sop2 op, string opName, list<dag> pattern> : SOP2_m < 851 op, opName, (outs SReg_64:$sdst), (ins SSrc_32:$src0, SSrc_32:$src1), 852 opName#" $sdst, $src0, $src1", pattern 853>; 854 855class SOPC_Base <bits<7> op, RegisterOperand rc0, RegisterOperand rc1, 856 string opName, list<dag> pattern = []> : SOPC < 857 op, (outs), (ins rc0:$src0, rc1:$src1), 858 opName#" $src0, $src1", pattern > { 859 let Defs = [SCC]; 860} 861class SOPC_Helper <bits<7> op, RegisterOperand rc, ValueType vt, 862 string opName, PatLeaf cond> : SOPC_Base < 863 op, rc, rc, opName, 864 [(set SCC, (si_setcc_uniform vt:$src0, vt:$src1, cond))] > { 865} 866 867class SOPC_CMP_32<bits<7> op, string opName, PatLeaf cond = COND_NULL> 868 : SOPC_Helper<op, SSrc_32, i32, opName, cond>; 869 870class SOPC_32<bits<7> op, string opName, list<dag> pattern = []> 871 : SOPC_Base<op, SSrc_32, SSrc_32, opName, pattern>; 872 873class SOPC_64_32<bits<7> op, string opName, list<dag> pattern = []> 874 : SOPC_Base<op, SSrc_64, SSrc_32, opName, pattern>; 875 876class SOPK_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 877 SOPK <outs, ins, "", pattern>, 878 SIMCInstr<opName, SIEncodingFamily.NONE> { 879 let isPseudo = 1; 880 let isCodeGenOnly = 1; 881} 882 883class SOPK_Real_si <sopk op, string opName, dag outs, dag ins, string asm> : 884 SOPK <outs, ins, asm, []>, 885 SOPKe <op.SI>, 886 SIMCInstr<opName, SIEncodingFamily.SI> { 887 let AssemblerPredicates = [isSICI]; 888 let DecoderNamespace = "SICI"; 889 let DisableDecoder = DisableSIDecoder; 890 let isCodeGenOnly = 0; 891} 892 893class SOPK_Real_vi <sopk op, string opName, dag outs, dag ins, string asm> : 894 SOPK <outs, ins, asm, []>, 895 SOPKe <op.VI>, 896 SIMCInstr<opName, SIEncodingFamily.VI> { 897 let AssemblerPredicates = [isVI]; 898 let DecoderNamespace = "VI"; 899 let DisableDecoder = DisableVIDecoder; 900 let isCodeGenOnly = 0; 901} 902 903multiclass SOPK_m <sopk op, string opName, dag outs, dag ins, string opAsm, 904 string asm = opName#opAsm> { 905 def "" : SOPK_Pseudo <opName, outs, ins, []>; 906 907 def _si : SOPK_Real_si <op, opName, outs, ins, asm>; 908 909 def _vi : SOPK_Real_vi <op, opName, outs, ins, asm>; 910 911} 912 913multiclass SOPK_32 <sopk op, string opName, list<dag> pattern> { 914 def "" : SOPK_Pseudo <opName, (outs SReg_32:$sdst), (ins u16imm:$simm16), 915 pattern>; 916 917 def _si : SOPK_Real_si <op, opName, (outs SReg_32:$sdst), (ins u16imm:$simm16), 918 opName#" $sdst, $simm16">; 919 920 def _vi : SOPK_Real_vi <op, opName, (outs SReg_32:$sdst), (ins u16imm:$simm16), 921 opName#" $sdst, $simm16">; 922} 923 924multiclass SOPK_SCC <sopk op, string opName, list<dag> pattern> { 925 def "" : SOPK_Pseudo <opName, (outs), 926 (ins SReg_32:$src0, u16imm:$src1), pattern> { 927 let Defs = [SCC]; 928 } 929 930 931 def _si : SOPK_Real_si <op, opName, (outs), 932 (ins SReg_32:$sdst, u16imm:$simm16), opName#" $sdst, $simm16"> { 933 let Defs = [SCC]; 934 } 935 936 def _vi : SOPK_Real_vi <op, opName, (outs), 937 (ins SReg_32:$sdst, u16imm:$simm16), opName#" $sdst, $simm16"> { 938 let Defs = [SCC]; 939 } 940} 941 942multiclass SOPK_32TIE <sopk op, string opName, list<dag> pattern> : SOPK_m < 943 op, opName, (outs SReg_32:$sdst), (ins SReg_32:$src0, u16imm:$simm16), 944 " $sdst, $simm16" 945>; 946 947multiclass SOPK_IMM32 <sopk op, string opName, dag outs, dag ins, 948 string argAsm, string asm = opName#argAsm> { 949 950 def "" : SOPK_Pseudo <opName, outs, ins, []>; 951 952 def _si : SOPK <outs, ins, asm, []>, 953 SOPK64e <op.SI>, 954 SIMCInstr<opName, SIEncodingFamily.SI> { 955 let AssemblerPredicates = [isSICI]; 956 let DecoderNamespace = "SICI"; 957 let DisableDecoder = DisableSIDecoder; 958 let isCodeGenOnly = 0; 959 } 960 961 def _vi : SOPK <outs, ins, asm, []>, 962 SOPK64e <op.VI>, 963 SIMCInstr<opName, SIEncodingFamily.VI> { 964 let AssemblerPredicates = [isVI]; 965 let DecoderNamespace = "VI"; 966 let DisableDecoder = DisableVIDecoder; 967 let isCodeGenOnly = 0; 968 } 969} 970//===----------------------------------------------------------------------===// 971// SMRD classes 972//===----------------------------------------------------------------------===// 973 974class SMRD_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 975 SMRD <outs, ins, "", pattern>, 976 SIMCInstr<opName, SIEncodingFamily.NONE> { 977 let isPseudo = 1; 978 let isCodeGenOnly = 1; 979} 980 981class SMRD_IMM_Real_si <bits<5> op, string opName, dag outs, dag ins, 982 string asm> : 983 SMRD <outs, ins, asm, []>, 984 SMRD_IMMe <op>, 985 SIMCInstr<opName, SIEncodingFamily.SI> { 986 let AssemblerPredicates = [isSICI]; 987 let DecoderNamespace = "SICI"; 988 let DisableDecoder = DisableSIDecoder; 989} 990 991class SMRD_SOFF_Real_si <bits<5> op, string opName, dag outs, dag ins, 992 string asm> : 993 SMRD <outs, ins, asm, []>, 994 SMRD_SOFFe <op>, 995 SIMCInstr<opName, SIEncodingFamily.SI> { 996 let AssemblerPredicates = [isSICI]; 997 let DecoderNamespace = "SICI"; 998 let DisableDecoder = DisableSIDecoder; 999} 1000 1001 1002class SMRD_IMM_Real_vi <bits<8> op, string opName, dag outs, dag ins, 1003 string asm, list<dag> pattern = []> : 1004 SMRD <outs, ins, asm, pattern>, 1005 SMEM_IMMe_vi <op>, 1006 SIMCInstr<opName, SIEncodingFamily.VI> { 1007 let AssemblerPredicates = [isVI]; 1008 let DecoderNamespace = "VI"; 1009 let DisableDecoder = DisableVIDecoder; 1010} 1011 1012class SMRD_SOFF_Real_vi <bits<8> op, string opName, dag outs, dag ins, 1013 string asm, list<dag> pattern = []> : 1014 SMRD <outs, ins, asm, pattern>, 1015 SMEM_SOFFe_vi <op>, 1016 SIMCInstr<opName, SIEncodingFamily.VI> { 1017 let AssemblerPredicates = [isVI]; 1018 let DecoderNamespace = "VI"; 1019 let DisableDecoder = DisableVIDecoder; 1020} 1021 1022 1023multiclass SMRD_IMM_m <smrd op, string opName, dag outs, dag ins, 1024 string asm, list<dag> pattern> { 1025 1026 def "" : SMRD_Pseudo <opName, outs, ins, pattern>; 1027 1028 def _si : SMRD_IMM_Real_si <op.SI, opName, outs, ins, asm>; 1029 1030 // glc is only applicable to scalar stores, which are not yet 1031 // implemented. 1032 let glc = 0 in { 1033 def _vi : SMRD_IMM_Real_vi <op.VI, opName, outs, ins, asm>; 1034 } 1035} 1036 1037multiclass SMRD_SOFF_m <smrd op, string opName, dag outs, dag ins, 1038 string asm, list<dag> pattern> { 1039 1040 def "" : SMRD_Pseudo <opName, outs, ins, pattern>; 1041 1042 def _si : SMRD_SOFF_Real_si <op.SI, opName, outs, ins, asm>; 1043 1044 // glc is only applicable to scalar stores, which are not yet 1045 // implemented. 1046 let glc = 0 in { 1047 def _vi : SMRD_SOFF_Real_vi <op.VI, opName, outs, ins, asm>; 1048 } 1049} 1050 1051multiclass SMRD_Special <smrd op, string opName, dag outs, 1052 int sdst_ = ?, 1053 string opStr = "", 1054 list<dag> pattern = []> { 1055 let hasSideEffects = 1 in { 1056 def "" : SMRD_Pseudo <opName, outs, (ins), pattern>; 1057 1058 let sbase = 0, soff = 0, sdst = sdst_ in { 1059 def _si : SMRD_SOFF_Real_si <op.SI, opName, outs, (ins), opName#opStr>; 1060 1061 let glc = 0 in { 1062 def _vi : SMRD_SOFF_Real_vi <op.VI, opName, outs, (ins), opName#opStr>; 1063 } 1064 } 1065 } 1066} 1067 1068multiclass SMRD_Inval <smrd op, string opName, 1069 SDPatternOperator node> { 1070 let mayStore = 1 in { 1071 defm : SMRD_Special<op, opName, (outs), 0, "", [(node)]>; 1072 } 1073} 1074 1075class SMEM_Inval <bits<8> op, string opName, SDPatternOperator node> : 1076 SMRD_SOFF_Real_vi<op, opName, (outs), (ins), opName, [(node)]> { 1077 let hasSideEffects = 1; 1078 let mayStore = 1; 1079 let sbase = 0; 1080 let sdst = 0; 1081 let glc = 0; 1082 let soff = 0; 1083} 1084 1085class SMEM_Ret <bits<8> op, string opName, SDPatternOperator node> : 1086 SMRD_SOFF_Real_vi<op, opName, (outs SReg_64:$sdst), (ins), 1087 opName#" $sdst", [(set i64:$sdst, (node))]> { 1088 let hasSideEffects = 1; 1089 let mayStore = ?; 1090 let mayLoad = ?; 1091 let sbase = 0; 1092 let glc = 0; 1093 let soff = 0; 1094} 1095 1096multiclass SMRD_Helper <smrd op, string opName, RegisterClass baseClass, 1097 RegisterClass dstClass> { 1098 defm _IMM : SMRD_IMM_m < 1099 op, opName#"_IMM", (outs dstClass:$sdst), 1100 (ins baseClass:$sbase, smrd_offset:$offset), 1101 opName#" $sdst, $sbase, $offset", [] 1102 >; 1103 1104 def _IMM_ci : SMRD < 1105 (outs dstClass:$sdst), (ins baseClass:$sbase, smrd_literal_offset:$offset), 1106 opName#" $sdst, $sbase, $offset", []>, SMRD_IMMe_ci <op.SI> { 1107 let AssemblerPredicates = [isCIOnly]; 1108 let DecoderNamespace = "CI"; 1109 } 1110 1111 defm _SGPR : SMRD_SOFF_m < 1112 op, opName#"_SGPR", (outs dstClass:$sdst), 1113 (ins baseClass:$sbase, SReg_32:$soff), 1114 opName#" $sdst, $sbase, $soff", [] 1115 >; 1116} 1117 1118//===----------------------------------------------------------------------===// 1119// Vector ALU classes 1120//===----------------------------------------------------------------------===// 1121 1122class getNumSrcArgs<ValueType Src0, ValueType Src1, ValueType Src2> { 1123 int ret = 1124 !if (!eq(Src0.Value, untyped.Value), 0, 1125 !if (!eq(Src1.Value, untyped.Value), 1, // VOP1 1126 !if (!eq(Src2.Value, untyped.Value), 2, // VOP2 1127 3))); // VOP3 1128} 1129 1130// Returns the register class to use for the destination of VOP[123C] 1131// instructions for the given VT. 1132class getVALUDstForVT<ValueType VT> { 1133 RegisterOperand ret = !if(!eq(VT.Size, 32), VOPDstOperand<VGPR_32>, 1134 !if(!eq(VT.Size, 64), VOPDstOperand<VReg_64>, 1135 !if(!eq(VT.Size, 16), VOPDstOperand<VGPR_32>, 1136 VOPDstOperand<SReg_64>))); // else VT == i1 1137} 1138 1139// Returns the register class to use for source 0 of VOP[12C] 1140// instructions for the given VT. 1141class getVOPSrc0ForVT<ValueType VT> { 1142 RegisterOperand ret = !if(!eq(VT.Size, 64), VSrc_64, VSrc_32); 1143} 1144 1145// Returns the vreg register class to use for source operand given VT 1146class getVregSrcForVT<ValueType VT> { 1147 RegisterClass ret = !if(!eq(VT.Size, 64), VReg_64, VGPR_32); 1148} 1149 1150 1151// Returns the register class to use for sources of VOP3 instructions for the 1152// given VT. 1153class getVOP3SrcForVT<ValueType VT> { 1154 RegisterOperand ret = 1155 !if(!eq(VT.Size, 64), 1156 VCSrc_64, 1157 !if(!eq(VT.Value, i1.Value), 1158 SCSrc_64, 1159 VCSrc_32 1160 ) 1161 ); 1162} 1163 1164// Returns 1 if the source arguments have modifiers, 0 if they do not. 1165// XXX - do f16 instructions? 1166class hasModifiers<ValueType SrcVT> { 1167 bit ret = 1168 !if(!eq(SrcVT.Value, f32.Value), 1, 1169 !if(!eq(SrcVT.Value, f64.Value), 1, 1170 0)); 1171} 1172 1173// Returns the input arguments for VOP[12C] instructions for the given SrcVT. 1174class getIns32 <RegisterOperand Src0RC, RegisterClass Src1RC, int NumSrcArgs> { 1175 dag ret = !if(!eq(NumSrcArgs, 1), (ins Src0RC:$src0), // VOP1 1176 !if(!eq(NumSrcArgs, 2), (ins Src0RC:$src0, Src1RC:$src1), // VOP2 1177 (ins))); 1178} 1179 1180// Returns the input arguments for VOP3 instructions for the given SrcVT. 1181class getIns64 <RegisterOperand Src0RC, RegisterOperand Src1RC, 1182 RegisterOperand Src2RC, int NumSrcArgs, 1183 bit HasModifiers> { 1184 1185 dag ret = 1186 !if (!eq(NumSrcArgs, 0), 1187 // VOP1 without input operands (V_NOP, V_CLREXCP) 1188 (ins), 1189 /* else */ 1190 !if (!eq(NumSrcArgs, 1), 1191 !if (!eq(HasModifiers, 1), 1192 // VOP1 with modifiers 1193 (ins FPInputMods:$src0_modifiers, Src0RC:$src0, 1194 clampmod:$clamp, omod:$omod) 1195 /* else */, 1196 // VOP1 without modifiers 1197 (ins Src0RC:$src0) 1198 /* endif */ ), 1199 !if (!eq(NumSrcArgs, 2), 1200 !if (!eq(HasModifiers, 1), 1201 // VOP 2 with modifiers 1202 (ins FPInputMods:$src0_modifiers, Src0RC:$src0, 1203 FPInputMods:$src1_modifiers, Src1RC:$src1, 1204 clampmod:$clamp, omod:$omod) 1205 /* else */, 1206 // VOP2 without modifiers 1207 (ins Src0RC:$src0, Src1RC:$src1) 1208 /* endif */ ) 1209 /* NumSrcArgs == 3 */, 1210 !if (!eq(HasModifiers, 1), 1211 // VOP3 with modifiers 1212 (ins FPInputMods:$src0_modifiers, Src0RC:$src0, 1213 FPInputMods:$src1_modifiers, Src1RC:$src1, 1214 FPInputMods:$src2_modifiers, Src2RC:$src2, 1215 clampmod:$clamp, omod:$omod) 1216 /* else */, 1217 // VOP3 without modifiers 1218 (ins Src0RC:$src0, Src1RC:$src1, Src2RC:$src2) 1219 /* endif */ )))); 1220} 1221 1222class getInsDPP <RegisterClass Src0RC, RegisterClass Src1RC, int NumSrcArgs, 1223 bit HasModifiers> { 1224 1225 dag ret = !if (!eq(NumSrcArgs, 0), 1226 // VOP1 without input operands (V_NOP) 1227 (ins dpp_ctrl:$dpp_ctrl, row_mask:$row_mask, 1228 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl), 1229 !if (!eq(NumSrcArgs, 1), 1230 !if (!eq(HasModifiers, 1), 1231 // VOP1_DPP with modifiers 1232 (ins FPInputMods:$src0_modifiers, Src0RC:$src0, 1233 dpp_ctrl:$dpp_ctrl, row_mask:$row_mask, 1234 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl) 1235 /* else */, 1236 // VOP1_DPP without modifiers 1237 (ins Src0RC:$src0, dpp_ctrl:$dpp_ctrl, row_mask:$row_mask, 1238 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl) 1239 /* endif */) 1240 /* NumSrcArgs == 2 */, 1241 !if (!eq(HasModifiers, 1), 1242 // VOP2_DPP with modifiers 1243 (ins FPInputMods:$src0_modifiers, Src0RC:$src0, 1244 FPInputMods:$src1_modifiers, Src1RC:$src1, 1245 dpp_ctrl:$dpp_ctrl, row_mask:$row_mask, 1246 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl) 1247 /* else */, 1248 // VOP2_DPP without modifiers 1249 (ins Src0RC:$src0, Src1RC:$src1, dpp_ctrl:$dpp_ctrl, 1250 row_mask:$row_mask, bank_mask:$bank_mask, 1251 bound_ctrl:$bound_ctrl) 1252 /* endif */))); 1253} 1254 1255class getInsSDWA <RegisterClass Src0RC, RegisterClass Src1RC, int NumSrcArgs, 1256 bit HasFloatModifiers> { 1257 1258 dag ret = !if (!eq(NumSrcArgs, 0), 1259 // VOP1 without input operands (V_NOP) 1260 (ins), 1261 !if (!eq(NumSrcArgs, 1), 1262 !if (HasFloatModifiers, 1263 // VOP1_SDWA with float modifiers 1264 (ins FPInputMods:$src0_fmodifiers, Src0RC:$src0, 1265 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused, 1266 src0_sel:$src0_sel) 1267 /* else */, 1268 // VOP1_SDWA with sext modifier 1269 (ins IntInputMods:$src0_imodifiers, Src0RC:$src0, 1270 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused, 1271 src0_sel:$src0_sel) 1272 /* endif */) 1273 /* NumSrcArgs == 2 */, 1274 !if (HasFloatModifiers, 1275 // VOP2_SDWA with float modifiers 1276 (ins FPInputMods:$src0_fmodifiers, Src0RC:$src0, 1277 FPInputMods:$src1_fmodifiers, Src1RC:$src1, 1278 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused, 1279 src0_sel:$src0_sel, src1_sel:$src1_sel) 1280 /* else */, 1281 // VOP2_DPP with sext modifier 1282 (ins IntInputMods:$src0_imodifiers, Src0RC:$src0, 1283 IntInputMods:$src1_imodifiers, Src1RC:$src1, 1284 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused, 1285 src0_sel:$src0_sel, src1_sel:$src1_sel) 1286 /* endif */))); 1287} 1288 1289// Outs for DPP and SDWA 1290class getOutsExt <bit HasDst, ValueType DstVT, RegisterOperand DstRCDPP> { 1291 dag ret = !if(HasDst, 1292 !if(!eq(DstVT.Size, 1), 1293 (outs DstRCDPP:$sdst), // sdst for VOPC 1294 (outs DstRCDPP:$vdst)), 1295 (outs)); // V_NOP 1296} 1297 1298// Returns the assembly string for the inputs and outputs of a VOP[12C] 1299// instruction. This does not add the _e32 suffix, so it can be reused 1300// by getAsm64. 1301class getAsm32 <bit HasDst, int NumSrcArgs, ValueType DstVT = i32> { 1302 string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC 1303 string src0 = ", $src0"; 1304 string src1 = ", $src1"; 1305 string src2 = ", $src2"; 1306 string ret = !if(HasDst, dst, "") # 1307 !if(!eq(NumSrcArgs, 1), src0, "") # 1308 !if(!eq(NumSrcArgs, 2), src0#src1, "") # 1309 !if(!eq(NumSrcArgs, 3), src0#src1#src2, ""); 1310} 1311 1312// Returns the assembly string for the inputs and outputs of a VOP3 1313// instruction. 1314class getAsm64 <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> { 1315 string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC 1316 string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,"); 1317 string src1 = !if(!eq(NumSrcArgs, 1), "", 1318 !if(!eq(NumSrcArgs, 2), " $src1_modifiers", 1319 " $src1_modifiers,")); 1320 string src2 = !if(!eq(NumSrcArgs, 3), " $src2_modifiers", ""); 1321 string ret = 1322 !if(!eq(HasModifiers, 0), 1323 getAsm32<HasDst, NumSrcArgs, DstVT>.ret, 1324 dst#", "#src0#src1#src2#"$clamp"#"$omod"); 1325} 1326 1327class getAsmDPP <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> { 1328 string dst = !if(HasDst, 1329 !if(!eq(DstVT.Size, 1), 1330 "$sdst", 1331 "$vdst"), 1332 ""); // use $sdst for VOPC 1333 string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,"); 1334 string src1 = !if(!eq(NumSrcArgs, 1), "", 1335 !if(!eq(NumSrcArgs, 2), " $src1_modifiers", 1336 " $src1_modifiers,")); 1337 string args = !if(!eq(HasModifiers, 0), 1338 getAsm32<0, NumSrcArgs, DstVT>.ret, 1339 ", "#src0#src1); 1340 string ret = dst#args#" $dpp_ctrl$row_mask$bank_mask$bound_ctrl"; 1341} 1342 1343class getAsmSDWA <bit HasDst, int NumSrcArgs, bit HasFloatModifiers, 1344 ValueType DstVT = i32> { 1345 string dst = !if(HasDst, 1346 !if(!eq(DstVT.Size, 1), 1347 "$sdst", // use $sdst for VOPC 1348 "$vdst"), 1349 ""); 1350 string src0 = !if(HasFloatModifiers, "$src0_fmodifiers", "$src0_imodifiers"); 1351 string src1 = !if(HasFloatModifiers, "$src1_fmodifiers", "$src1_imodifiers"); 1352 string args = !if(!eq(NumSrcArgs, 0), 1353 "", 1354 !if(!eq(NumSrcArgs, 1), 1355 ", "#src0#"$clamp", 1356 ", "#src0#", "#src1#"$clamp" 1357 ) 1358 ); 1359 string sdwa = !if(!eq(NumSrcArgs, 0), 1360 "", 1361 !if(!eq(NumSrcArgs, 1), 1362 " $dst_sel $dst_unused $src0_sel", 1363 " $dst_sel $dst_unused $src0_sel $src1_sel" 1364 ) 1365 ); 1366 string ret = dst#args#sdwa; 1367} 1368 1369// Function that checks if instruction supports DPP and SDWA 1370class getHasExt <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32, 1371 ValueType Src1VT = i32> { 1372 bit ret = !if(!eq(NumSrcArgs, 3), 1373 0, // NumSrcArgs == 3 - No DPP or SDWA for VOP3 1374 !if(!eq(DstVT.Size, 64), 1375 0, // 64-bit dst - No DPP or SDWA for 64-bit operands 1376 !if(!eq(Src0VT.Size, 64), 1377 0, // 64-bit src0 1378 !if(!eq(Src0VT.Size, 64), 1379 0, // 64-bit src2 1380 1 1381 ) 1382 ) 1383 ) 1384 ); 1385} 1386 1387class VOPProfile <list<ValueType> _ArgVT> { 1388 1389 field list<ValueType> ArgVT = _ArgVT; 1390 1391 field ValueType DstVT = ArgVT[0]; 1392 field ValueType Src0VT = ArgVT[1]; 1393 field ValueType Src1VT = ArgVT[2]; 1394 field ValueType Src2VT = ArgVT[3]; 1395 field RegisterOperand DstRC = getVALUDstForVT<DstVT>.ret; 1396 field RegisterOperand DstRCDPP = getVALUDstForVT<DstVT>.ret; 1397 field RegisterOperand DstRCSDWA = getVALUDstForVT<DstVT>.ret; 1398 field RegisterOperand Src0RC32 = getVOPSrc0ForVT<Src0VT>.ret; 1399 field RegisterClass Src1RC32 = getVregSrcForVT<Src1VT>.ret; 1400 field RegisterOperand Src0RC64 = getVOP3SrcForVT<Src0VT>.ret; 1401 field RegisterOperand Src1RC64 = getVOP3SrcForVT<Src1VT>.ret; 1402 field RegisterOperand Src2RC64 = getVOP3SrcForVT<Src2VT>.ret; 1403 field RegisterClass Src0DPP = getVregSrcForVT<Src0VT>.ret; 1404 field RegisterClass Src1DPP = getVregSrcForVT<Src1VT>.ret; 1405 field RegisterClass Src0SDWA = getVregSrcForVT<Src0VT>.ret; 1406 field RegisterClass Src1SDWA = getVregSrcForVT<Src1VT>.ret; 1407 1408 field bit HasDst = !if(!eq(DstVT.Value, untyped.Value), 0, 1); 1409 field bit HasDst32 = HasDst; 1410 field int NumSrcArgs = getNumSrcArgs<Src0VT, Src1VT, Src2VT>.ret; 1411 field bit HasModifiers = hasModifiers<Src0VT>.ret; 1412 1413 field bit HasExt = getHasExt<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret; 1414 1415 field dag Outs = !if(HasDst,(outs DstRC:$vdst),(outs)); 1416 1417 // VOP3b instructions are a special case with a second explicit 1418 // output. This is manually overridden for them. 1419 field dag Outs32 = Outs; 1420 field dag Outs64 = Outs; 1421 field dag OutsDPP = getOutsExt<HasDst, DstVT, DstRCDPP>.ret; 1422 field dag OutsSDWA = getOutsExt<HasDst, DstVT, DstRCDPP>.ret; 1423 1424 field dag Ins32 = getIns32<Src0RC32, Src1RC32, NumSrcArgs>.ret; 1425 field dag Ins64 = getIns64<Src0RC64, Src1RC64, Src2RC64, NumSrcArgs, 1426 HasModifiers>.ret; 1427 field dag InsDPP = getInsDPP<Src0DPP, Src1DPP, NumSrcArgs, HasModifiers>.ret; 1428 field dag InsSDWA = getInsSDWA<Src0SDWA, Src1SDWA, NumSrcArgs, HasModifiers>.ret; 1429 1430 field string Asm32 = getAsm32<HasDst, NumSrcArgs, DstVT>.ret; 1431 field string Asm64 = getAsm64<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret; 1432 field string AsmDPP = getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret; 1433 field string AsmSDWA = getAsmSDWA<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret; 1434} 1435 1436class VOP_NO_EXT <VOPProfile p> : VOPProfile <p.ArgVT> { 1437 let HasExt = 0; 1438} 1439 1440// FIXME: I think these F16/I16 profiles will need to use f16/i16 types in order 1441// for the instruction patterns to work. 1442def VOP_F16_F16 : VOPProfile <[f16, f16, untyped, untyped]>; 1443def VOP_F16_I16 : VOPProfile <[f16, i32, untyped, untyped]>; 1444def VOP_I16_F16 : VOPProfile <[i32, f16, untyped, untyped]>; 1445 1446def VOP_F16_F16_F16 : VOPProfile <[f16, f16, f16, untyped]>; 1447def VOP_F16_F16_I16 : VOPProfile <[f16, f16, i32, untyped]>; 1448def VOP_I16_I16_I16 : VOPProfile <[i32, i32, i32, untyped]>; 1449 1450def VOP_I16_I16_I16_I16 : VOPProfile <[i32, i32, i32, i32, untyped]>; 1451def VOP_F16_F16_F16_F16 : VOPProfile <[f16, f16, f16, f16, untyped]>; 1452 1453def VOP_NONE : VOPProfile <[untyped, untyped, untyped, untyped]>; 1454 1455def VOP_F32_F32 : VOPProfile <[f32, f32, untyped, untyped]>; 1456def VOP_F32_F64 : VOPProfile <[f32, f64, untyped, untyped]>; 1457def VOP_F32_I32 : VOPProfile <[f32, i32, untyped, untyped]>; 1458def VOP_F64_F32 : VOPProfile <[f64, f32, untyped, untyped]>; 1459def VOP_F64_F64 : VOPProfile <[f64, f64, untyped, untyped]>; 1460def VOP_F64_I32 : VOPProfile <[f64, i32, untyped, untyped]>; 1461def VOP_I32_F32 : VOPProfile <[i32, f32, untyped, untyped]>; 1462def VOP_I32_F64 : VOPProfile <[i32, f64, untyped, untyped]>; 1463def VOP_I32_I32 : VOPProfile <[i32, i32, untyped, untyped]>; 1464 1465def VOP_F32_F32_F32 : VOPProfile <[f32, f32, f32, untyped]>; 1466def VOP_F32_F32_I32 : VOPProfile <[f32, f32, i32, untyped]>; 1467def VOP_F64_F64_F64 : VOPProfile <[f64, f64, f64, untyped]>; 1468def VOP_F64_F64_I32 : VOPProfile <[f64, f64, i32, untyped]>; 1469def VOP_I32_F32_F32 : VOPProfile <[i32, f32, f32, untyped]>; 1470def VOP_I32_F32_I32 : VOPProfile <[i32, f32, i32, untyped]>; 1471def VOP_I32_I32_I32 : VOPProfile <[i32, i32, i32, untyped]>; 1472 1473// Write out to vcc or arbitrary SGPR. 1474def VOP2b_I32_I1_I32_I32 : VOPProfile<[i32, i32, i32, untyped]> { 1475 let Asm32 = "$vdst, vcc, $src0, $src1"; 1476 let Asm64 = "$vdst, $sdst, $src0, $src1"; 1477 let Outs32 = (outs DstRC:$vdst); 1478 let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst); 1479} 1480 1481// Write out to vcc or arbitrary SGPR and read in from vcc or 1482// arbitrary SGPR. 1483def VOP2b_I32_I1_I32_I32_I1 : VOPProfile<[i32, i32, i32, i1]> { 1484 // We use VCSrc_32 to exclude literal constants, even though the 1485 // encoding normally allows them since the implicit VCC use means 1486 // using one would always violate the constant bus 1487 // restriction. SGPRs are still allowed because it should 1488 // technically be possible to use VCC again as src0. 1489 let Src0RC32 = VCSrc_32; 1490 let Asm32 = "$vdst, vcc, $src0, $src1, vcc"; 1491 let Asm64 = "$vdst, $sdst, $src0, $src1, $src2"; 1492 let Outs32 = (outs DstRC:$vdst); 1493 let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst); 1494 1495 // Suppress src2 implied by type since the 32-bit encoding uses an 1496 // implicit VCC use. 1497 let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1); 1498} 1499 1500// Read in from vcc or arbitrary SGPR 1501def VOP2e_I32_I32_I32_I1 : VOPProfile<[i32, i32, i32, i1]> { 1502 let Src0RC32 = VCSrc_32; // See comment in def VOP2b_I32_I1_I32_I32_I1 above. 1503 let Asm32 = "$vdst, $src0, $src1, vcc"; 1504 let Asm64 = "$vdst, $src0, $src1, $src2"; 1505 let Outs32 = (outs DstRC:$vdst); 1506 let Outs64 = (outs DstRC:$vdst); 1507 1508 // Suppress src2 implied by type since the 32-bit encoding uses an 1509 // implicit VCC use. 1510 let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1); 1511} 1512 1513class VOP3b_Profile<ValueType vt> : VOPProfile<[vt, vt, vt, vt]> { 1514 let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst); 1515 let Asm64 = "$vdst, $sdst, $src0_modifiers, $src1_modifiers, $src2_modifiers"#"$clamp"#"$omod"; 1516} 1517 1518def VOP3b_F32_I1_F32_F32_F32 : VOP3b_Profile<f32> { 1519 // FIXME: Hack to stop printing _e64 1520 let DstRC = RegisterOperand<VGPR_32>; 1521} 1522 1523def VOP3b_F64_I1_F64_F64_F64 : VOP3b_Profile<f64> { 1524 // FIXME: Hack to stop printing _e64 1525 let DstRC = RegisterOperand<VReg_64>; 1526} 1527 1528// VOPC instructions are a special case because for the 32-bit 1529// encoding, we want to display the implicit vcc write as if it were 1530// an explicit $dst. 1531class VOPC_Profile<ValueType vt0, ValueType vt1 = vt0> : VOPProfile <[i1, vt0, vt1, untyped]> { 1532 let Asm32 = "vcc, $src0, $src1"; 1533 // The destination for 32-bit encoding is implicit. 1534 let HasDst32 = 0; 1535 let Outs64 = (outs DstRC:$sdst); 1536} 1537 1538class VOPC_Class_Profile<ValueType vt> : VOPC_Profile<vt, i32> { 1539 let Ins64 = (ins FPInputMods:$src0_modifiers, Src0RC64:$src0, Src1RC64:$src1); 1540 let Asm64 = "$sdst, $src0_modifiers, $src1"; 1541} 1542 1543def VOPC_I1_F32_F32 : VOPC_Profile<f32>; 1544def VOPC_I1_F64_F64 : VOPC_Profile<f64>; 1545def VOPC_I1_I32_I32 : VOPC_Profile<i32>; 1546def VOPC_I1_I64_I64 : VOPC_Profile<i64>; 1547 1548def VOPC_I1_F32_I32 : VOPC_Class_Profile<f32>; 1549def VOPC_I1_F64_I32 : VOPC_Class_Profile<f64>; 1550 1551def VOP_I64_I64_I32 : VOPProfile <[i64, i64, i32, untyped]>; 1552def VOP_I64_I32_I64 : VOPProfile <[i64, i32, i64, untyped]>; 1553def VOP_I64_I64_I64 : VOPProfile <[i64, i64, i64, untyped]>; 1554 1555def VOP_F32_F32_F32_F32 : VOPProfile <[f32, f32, f32, f32]>; 1556def VOP_MADAK : VOPProfile <[f32, f32, f32, f32]> { 1557 field dag Ins32 = (ins VCSrc_32:$src0, VGPR_32:$src1, u32imm:$imm); 1558 field string Asm32 = "$vdst, $src0, $src1, $imm"; 1559 field bit HasExt = 0; 1560} 1561def VOP_MADMK : VOPProfile <[f32, f32, f32, f32]> { 1562 field dag Ins32 = (ins VCSrc_32:$src0, u32imm:$imm, VGPR_32:$src1); 1563 field string Asm32 = "$vdst, $src0, $imm, $src1"; 1564 field bit HasExt = 0; 1565} 1566def VOP_MAC : VOPProfile <[f32, f32, f32, f32]> { 1567 let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1, VGPR_32:$src2); 1568 let Ins64 = getIns64<Src0RC64, Src1RC64, RegisterOperand<VGPR_32>, 3, 1569 HasModifiers>.ret; 1570 let InsDPP = (ins FPInputMods:$src0_modifiers, Src0RC32:$src0, 1571 FPInputMods:$src1_modifiers, Src1RC32:$src1, 1572 VGPR_32:$src2, // stub argument 1573 dpp_ctrl:$dpp_ctrl, row_mask:$row_mask, 1574 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl); 1575 let InsSDWA = (ins FPInputMods:$src0_fmodifiers, Src0RC32:$src0, 1576 FPInputMods:$src1_fmodifiers, Src1RC32:$src1, 1577 VGPR_32:$src2, // stub argument 1578 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused, 1579 src0_sel:$src0_sel, src1_sel:$src1_sel); 1580 let Asm32 = getAsm32<1, 2, f32>.ret; 1581 let Asm64 = getAsm64<1, 2, HasModifiers, f32>.ret; 1582 let AsmDPP = getAsmDPP<1, 2, HasModifiers, f32>.ret; 1583 let AsmSDWA = getAsmSDWA<1, 2, HasModifiers, f32>.ret; 1584} 1585def VOP_F64_F64_F64_F64 : VOPProfile <[f64, f64, f64, f64]>; 1586def VOP_I32_I32_I32_I32 : VOPProfile <[i32, i32, i32, i32]>; 1587def VOP_I64_I32_I32_I64 : VOPProfile <[i64, i32, i32, i64]>; 1588 1589// This class is used only with VOPC instructions. Use $sdst for out operand 1590class SIInstAlias <string asm, Instruction inst, VOPProfile p> : 1591 InstAlias <asm, (inst)>, PredicateControl { 1592 1593 field bit isCompare; 1594 field bit isCommutable; 1595 1596 let ResultInst = 1597 !if (p.HasDst32, 1598 !if (!eq(p.NumSrcArgs, 0), 1599 // 1 dst, 0 src 1600 (inst p.DstRC:$sdst), 1601 !if (!eq(p.NumSrcArgs, 1), 1602 // 1 dst, 1 src 1603 (inst p.DstRC:$sdst, p.Src0RC32:$src0), 1604 !if (!eq(p.NumSrcArgs, 2), 1605 // 1 dst, 2 src 1606 (inst p.DstRC:$sdst, p.Src0RC32:$src0, p.Src1RC32:$src1), 1607 // else - unreachable 1608 (inst)))), 1609 // else 1610 !if (!eq(p.NumSrcArgs, 2), 1611 // 0 dst, 2 src 1612 (inst p.Src0RC32:$src0, p.Src1RC32:$src1), 1613 !if (!eq(p.NumSrcArgs, 1), 1614 // 0 dst, 1 src 1615 (inst p.Src0RC32:$src1), 1616 // else 1617 // 0 dst, 0 src 1618 (inst)))); 1619} 1620 1621class SIInstAliasSI <string asm, string op_name, VOPProfile p> : 1622 SIInstAlias <asm, !cast<Instruction>(op_name#"_e32_si"), p> { 1623 let AssemblerPredicate = SIAssemblerPredicate; 1624} 1625 1626class SIInstAliasVI <string asm, string op_name, VOPProfile p> : 1627 SIInstAlias <asm, !cast<Instruction>(op_name#"_e32_vi"), p> { 1628 let AssemblerPredicates = [isVI]; 1629} 1630 1631multiclass SIInstAliasBuilder <string asm, VOPProfile p> { 1632 1633 def : SIInstAliasSI <asm, NAME, p>; 1634 1635 def : SIInstAliasVI <asm, NAME, p>; 1636} 1637 1638class VOP <string opName> { 1639 string OpName = opName; 1640} 1641 1642class VOP2_REV <string revOp, bit isOrig> { 1643 string RevOp = revOp; 1644 bit IsOrig = isOrig; 1645} 1646 1647class AtomicNoRet <string noRetOp, bit isRet> { 1648 string NoRetOp = noRetOp; 1649 bit IsRet = isRet; 1650} 1651 1652class VOP1_Pseudo <dag outs, dag ins, list<dag> pattern, string opName> : 1653 VOP1Common <outs, ins, "", pattern>, 1654 VOP <opName>, 1655 SIMCInstr <opName#"_e32", SIEncodingFamily.NONE>, 1656 MnemonicAlias<opName#"_e32", opName> { 1657 let isPseudo = 1; 1658 let isCodeGenOnly = 1; 1659 1660 field bits<8> vdst; 1661 field bits<9> src0; 1662} 1663 1664class VOP1_Real_si <string opName, vop1 op, dag outs, dag ins, string asm> : 1665 VOP1<op.SI, outs, ins, asm, []>, 1666 SIMCInstr <opName#"_e32", SIEncodingFamily.SI> { 1667 let AssemblerPredicate = SIAssemblerPredicate; 1668 let DecoderNamespace = "SICI"; 1669 let DisableDecoder = DisableSIDecoder; 1670} 1671 1672class VOP1_Real_vi <string opName, vop1 op, dag outs, dag ins, string asm> : 1673 VOP1<op.VI, outs, ins, asm, []>, 1674 SIMCInstr <opName#"_e32", SIEncodingFamily.VI> { 1675 let AssemblerPredicates = [isVI]; 1676 let DecoderNamespace = "VI"; 1677 let DisableDecoder = DisableVIDecoder; 1678} 1679 1680multiclass VOP1_m <vop1 op, string opName, VOPProfile p, list<dag> pattern, 1681 string asm = opName#p.Asm32> { 1682 def "" : VOP1_Pseudo <p.Outs, p.Ins32, pattern, opName>; 1683 1684 def _si : VOP1_Real_si <opName, op, p.Outs, p.Ins32, asm>; 1685 1686 def _vi : VOP1_Real_vi <opName, op, p.Outs, p.Ins32, asm>; 1687 1688} 1689 1690class VOP1_DPP <vop1 op, string opName, VOPProfile p> : 1691 VOP1_DPPe <op.VI>, 1692 VOP_DPP <p.OutsDPP, p.InsDPP, opName#p.AsmDPP, [], p.HasModifiers> { 1693 let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]); 1694 let DecoderNamespace = "DPP"; 1695 let DisableDecoder = DisableVIDecoder; 1696 let src0_modifiers = !if(p.HasModifiers, ?, 0); 1697 let src1_modifiers = 0; 1698} 1699 1700class SDWADisableFields <VOPProfile p> { 1701 bits<8> src0 = !if(!eq(p.NumSrcArgs, 0), 0, ?); 1702 bits<3> src0_sel = !if(!eq(p.NumSrcArgs, 0), 6, ?); 1703 bits<2> src0_fmodifiers = !if(!eq(p.NumSrcArgs, 0), 1704 0, 1705 !if(p.HasModifiers, ?, 0)); 1706 bits<1> src0_imodifiers = !if(!eq(p.NumSrcArgs, 0), 1707 0, 1708 !if(p.HasModifiers, 0, ?)); 1709 bits<3> src1_sel = !if(!eq(p.NumSrcArgs, 0), 6, 1710 !if(!eq(p.NumSrcArgs, 1), 6, 1711 ?)); 1712 bits<2> src1_fmodifiers = !if(!eq(p.NumSrcArgs, 0), 0, 1713 !if(!eq(p.NumSrcArgs, 1), 0, 1714 !if(p.HasModifiers, ?, 0))); 1715 bits<1> src1_imodifiers = !if(!eq(p.NumSrcArgs, 0), 0, 1716 !if(!eq(p.NumSrcArgs, 1), 0, 1717 !if(p.HasModifiers, 0, ?))); 1718 bits<3> dst_sel = !if(p.HasDst, ?, 6); 1719 bits<2> dst_unused = !if(p.HasDst, ?, 2); 1720 bits<1> clamp = !if(!eq(p.NumSrcArgs, 0), 0, ?); 1721} 1722 1723class VOP1_SDWA <vop1 op, string opName, VOPProfile p> : 1724 VOP1_SDWAe <op.VI>, 1725 VOP_SDWA <p.OutsSDWA, p.InsSDWA, opName#p.AsmSDWA, [], p.HasModifiers>, 1726 SDWADisableFields <p> { 1727 let AsmMatchConverter = "cvtSdwaVOP1"; 1728 let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]); 1729 let DecoderNamespace = "SDWA"; 1730 let DisableDecoder = DisableVIDecoder; 1731} 1732 1733multiclass VOP1SI_m <vop1 op, string opName, VOPProfile p, list<dag> pattern, 1734 string asm = opName#p.Asm32> { 1735 1736 def "" : VOP1_Pseudo <p.Outs, p.Ins32, pattern, opName>; 1737 1738 def _si : VOP1_Real_si <opName, op, p.Outs, p.Ins32, asm>; 1739} 1740 1741class VOP2_Pseudo <dag outs, dag ins, list<dag> pattern, string opName> : 1742 VOP2Common <outs, ins, "", pattern>, 1743 VOP <opName>, 1744 SIMCInstr<opName#"_e32", SIEncodingFamily.NONE>, 1745 MnemonicAlias<opName#"_e32", opName> { 1746 let isPseudo = 1; 1747 let isCodeGenOnly = 1; 1748} 1749 1750class VOP2_Real_si <string opName, vop2 op, dag outs, dag ins, string asm> : 1751 VOP2 <op.SI, outs, ins, opName#asm, []>, 1752 SIMCInstr <opName#"_e32", SIEncodingFamily.SI> { 1753 let AssemblerPredicates = [isSICI]; 1754 let DecoderNamespace = "SICI"; 1755 let DisableDecoder = DisableSIDecoder; 1756} 1757 1758class VOP2_Real_vi <string opName, vop2 op, dag outs, dag ins, string asm> : 1759 VOP2 <op.VI, outs, ins, opName#asm, []>, 1760 SIMCInstr <opName#"_e32", SIEncodingFamily.VI> { 1761 let AssemblerPredicates = [isVI]; 1762 let DecoderNamespace = "VI"; 1763 let DisableDecoder = DisableVIDecoder; 1764} 1765 1766multiclass VOP2SI_m <vop2 op, string opName, VOPProfile p, list<dag> pattern, 1767 string revOp> { 1768 1769 def "" : VOP2_Pseudo <p.Outs32, p.Ins32, pattern, opName>, 1770 VOP2_REV<revOp#"_e32", !eq(revOp, opName)>; 1771 1772 def _si : VOP2_Real_si <opName, op, p.Outs32, p.Ins32, p.Asm32>; 1773} 1774 1775multiclass VOP2_m <vop2 op, string opName, VOPProfile p, list <dag> pattern, 1776 string revOp> { 1777 1778 def "" : VOP2_Pseudo <p.Outs32, p.Ins32, pattern, opName>, 1779 VOP2_REV<revOp#"_e32", !eq(revOp, opName)>; 1780 1781 def _si : VOP2_Real_si <opName, op, p.Outs32, p.Ins32, p.Asm32>; 1782 1783 def _vi : VOP2_Real_vi <opName, op, p.Outs32, p.Ins32, p.Asm32>; 1784 1785} 1786 1787class VOP2_DPP <vop2 op, string opName, VOPProfile p> : 1788 VOP2_DPPe <op.VI>, 1789 VOP_DPP <p.OutsDPP, p.InsDPP, opName#p.AsmDPP, [], p.HasModifiers> { 1790 let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]); 1791 let DecoderNamespace = "DPP"; 1792 let DisableDecoder = DisableVIDecoder; 1793 let src0_modifiers = !if(p.HasModifiers, ?, 0); 1794 let src1_modifiers = !if(p.HasModifiers, ?, 0); 1795} 1796 1797class VOP2_SDWA <vop2 op, string opName, VOPProfile p> : 1798 VOP2_SDWAe <op.VI>, 1799 VOP_SDWA <p.OutsSDWA, p.InsSDWA, opName#p.AsmSDWA, [], p.HasModifiers>, 1800 SDWADisableFields <p> { 1801 let AsmMatchConverter = "cvtSdwaVOP2"; 1802 let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]); 1803 let DecoderNamespace = "SDWA"; 1804 let DisableDecoder = DisableVIDecoder; 1805} 1806 1807class VOP3DisableFields <bit HasSrc1, bit HasSrc2, bit HasModifiers> { 1808 1809 bits<2> src0_modifiers = !if(HasModifiers, ?, 0); 1810 bits<2> src1_modifiers = !if(HasModifiers, !if(HasSrc1, ?, 0), 0); 1811 bits<2> src2_modifiers = !if(HasModifiers, !if(HasSrc2, ?, 0), 0); 1812 bits<2> omod = !if(HasModifiers, ?, 0); 1813 bits<1> clamp = !if(HasModifiers, ?, 0); 1814 bits<9> src1 = !if(HasSrc1, ?, 0); 1815 bits<9> src2 = !if(HasSrc2, ?, 0); 1816} 1817 1818class VOP3DisableModFields <bit HasSrc0Mods, 1819 bit HasSrc1Mods = 0, 1820 bit HasSrc2Mods = 0, 1821 bit HasOutputMods = 0> { 1822 bits<2> src0_modifiers = !if(HasSrc0Mods, ?, 0); 1823 bits<2> src1_modifiers = !if(HasSrc1Mods, ?, 0); 1824 bits<2> src2_modifiers = !if(HasSrc2Mods, ?, 0); 1825 bits<2> omod = !if(HasOutputMods, ?, 0); 1826 bits<1> clamp = !if(HasOutputMods, ?, 0); 1827} 1828 1829class VOP3_Pseudo <dag outs, dag ins, list<dag> pattern, string opName, 1830 bit HasMods = 0, bit VOP3Only = 0> : 1831 VOP3Common <outs, ins, "", pattern, HasMods, VOP3Only>, 1832 VOP <opName>, 1833 SIMCInstr<opName#"_e64", SIEncodingFamily.NONE>, 1834 MnemonicAlias<opName#"_e64", opName> { 1835 let isPseudo = 1; 1836 let isCodeGenOnly = 1; 1837 1838 field bit vdst; 1839 field bit src0; 1840} 1841 1842class VOP3_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName, 1843 bit HasMods = 0, bit VOP3Only = 0> : 1844 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1845 VOP3e <op>, 1846 SIMCInstr<opName#"_e64", SIEncodingFamily.SI> { 1847 let AssemblerPredicates = [isSICI]; 1848 let DecoderNamespace = "SICI"; 1849 let DisableDecoder = DisableSIDecoder; 1850} 1851 1852class VOP3_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName, 1853 bit HasMods = 0, bit VOP3Only = 0> : 1854 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1855 VOP3e_vi <op>, 1856 SIMCInstr <opName#"_e64", SIEncodingFamily.VI> { 1857 let AssemblerPredicates = [isVI]; 1858 let DecoderNamespace = "VI"; 1859 let DisableDecoder = DisableVIDecoder; 1860} 1861 1862class VOP3_C_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName, 1863 bit HasMods = 0, bit VOP3Only = 0> : 1864 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1865 VOP3ce <op>, 1866 SIMCInstr<opName#"_e64", SIEncodingFamily.SI> { 1867 let AssemblerPredicates = [isSICI]; 1868 let DecoderNamespace = "SICI"; 1869 let DisableDecoder = DisableSIDecoder; 1870} 1871 1872class VOP3_C_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName, 1873 bit HasMods = 0, bit VOP3Only = 0> : 1874 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1875 VOP3ce_vi <op>, 1876 SIMCInstr <opName#"_e64", SIEncodingFamily.VI> { 1877 let AssemblerPredicates = [isVI]; 1878 let DecoderNamespace = "VI"; 1879 let DisableDecoder = DisableVIDecoder; 1880} 1881 1882class VOP3b_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName, 1883 bit HasMods = 0, bit VOP3Only = 0> : 1884 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1885 VOP3be <op>, 1886 SIMCInstr<opName#"_e64", SIEncodingFamily.SI> { 1887 let AssemblerPredicates = [isSICI]; 1888 let DecoderNamespace = "SICI"; 1889 let DisableDecoder = DisableSIDecoder; 1890} 1891 1892class VOP3b_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName, 1893 bit HasMods = 0, bit VOP3Only = 0> : 1894 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1895 VOP3be_vi <op>, 1896 SIMCInstr <opName#"_e64", SIEncodingFamily.VI> { 1897 let AssemblerPredicates = [isVI]; 1898 let DecoderNamespace = "VI"; 1899 let DisableDecoder = DisableVIDecoder; 1900} 1901 1902class VOP3e_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName, 1903 bit HasMods = 0, bit VOP3Only = 0> : 1904 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1905 VOP3e <op>, 1906 SIMCInstr<opName#"_e64", SIEncodingFamily.SI> { 1907 let AssemblerPredicates = [isSICI]; 1908 let DecoderNamespace = "SICI"; 1909 let DisableDecoder = DisableSIDecoder; 1910} 1911 1912class VOP3e_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName, 1913 bit HasMods = 0, bit VOP3Only = 0> : 1914 VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>, 1915 VOP3e_vi <op>, 1916 SIMCInstr <opName#"_e64", SIEncodingFamily.VI> { 1917 let AssemblerPredicates = [isVI]; 1918 let DecoderNamespace = "VI"; 1919 let DisableDecoder = DisableVIDecoder; 1920} 1921 1922multiclass VOP3_m <vop op, dag outs, dag ins, string asm, list<dag> pattern, 1923 string opName, int NumSrcArgs, bit HasMods = 1, bit VOP3Only = 0> { 1924 1925 def "" : VOP3_Pseudo <outs, ins, pattern, opName>; 1926 1927 def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods, VOP3Only>, 1928 VOP3DisableFields<!if(!eq(NumSrcArgs, 1), 0, 1), 1929 !if(!eq(NumSrcArgs, 2), 0, 1), 1930 HasMods>; 1931 def _vi : VOP3_Real_vi <op.VI3, outs, ins, asm, opName, HasMods, VOP3Only>, 1932 VOP3DisableFields<!if(!eq(NumSrcArgs, 1), 0, 1), 1933 !if(!eq(NumSrcArgs, 2), 0, 1), 1934 HasMods>; 1935} 1936 1937multiclass VOP3_1_m <vop op, dag outs, dag ins, string asm, 1938 list<dag> pattern, string opName, bit HasMods = 1> { 1939 1940 def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>; 1941 1942 def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>, 1943 VOP3DisableFields<0, 0, HasMods>; 1944 1945 def _vi : VOP3_Real_vi <op.VI3, outs, ins, asm, opName, HasMods>, 1946 VOP3DisableFields<0, 0, HasMods>; 1947} 1948 1949multiclass VOP3SI_1_m <vop op, dag outs, dag ins, string asm, 1950 list<dag> pattern, string opName, bit HasMods = 1> { 1951 1952 def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>; 1953 1954 def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>, 1955 VOP3DisableFields<0, 0, HasMods>; 1956 // No VI instruction. This class is for SI only. 1957} 1958 1959multiclass VOP3_2_m <vop op, dag outs, dag ins, string asm, 1960 list<dag> pattern, string opName, string revOp, 1961 bit HasMods = 1> { 1962 1963 def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>, 1964 VOP2_REV<revOp#"_e64", !eq(revOp, opName)>; 1965 1966 def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>, 1967 VOP3DisableFields<1, 0, HasMods>; 1968 1969 def _vi : VOP3_Real_vi <op.VI3, outs, ins, asm, opName, HasMods>, 1970 VOP3DisableFields<1, 0, HasMods>; 1971} 1972 1973multiclass VOP3SI_2_m <vop op, dag outs, dag ins, string asm, 1974 list<dag> pattern, string opName, string revOp, 1975 bit HasMods = 1> { 1976 1977 def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>, 1978 VOP2_REV<revOp#"_e64", !eq(revOp, opName)>; 1979 1980 def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>, 1981 VOP3DisableFields<1, 0, HasMods>; 1982 1983 // No VI instruction. This class is for SI only. 1984} 1985 1986// Two operand VOP3b instruction that may have a 3rd SGPR bool operand 1987// instead of an implicit VCC as in the VOP2b format. 1988multiclass VOP3b_2_3_m <vop op, dag outs, dag ins, string asm, 1989 list<dag> pattern, string opName, string revOp, 1990 bit HasMods = 1, bit useSrc2Input = 0, bit VOP3Only = 0> { 1991 def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods, VOP3Only>; 1992 1993 def _si : VOP3b_Real_si <op.SI3, outs, ins, asm, opName, HasMods, VOP3Only>, 1994 VOP3DisableFields<1, useSrc2Input, HasMods>; 1995 1996 def _vi : VOP3b_Real_vi <op.VI3, outs, ins, asm, opName, HasMods, VOP3Only>, 1997 VOP3DisableFields<1, useSrc2Input, HasMods>; 1998} 1999 2000// Same as VOP3b_2_3_m but no 2nd destination (sdst), e.g. v_cndmask_b32. 2001multiclass VOP3e_2_3_m <vop op, dag outs, dag ins, string asm, 2002 list<dag> pattern, string opName, string revOp, 2003 bit HasMods = 1, bit useSrc2Input = 0, bit VOP3Only = 0> { 2004 def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods, VOP3Only>; 2005 2006 def _si : VOP3e_Real_si <op.SI3, outs, ins, asm, opName, HasMods, VOP3Only>, 2007 VOP3DisableFields<1, useSrc2Input, HasMods>; 2008 2009 def _vi : VOP3e_Real_vi <op.VI3, outs, ins, asm, opName, HasMods, VOP3Only>, 2010 VOP3DisableFields<1, useSrc2Input, HasMods>; 2011} 2012 2013multiclass VOP3_C_m <vop op, dag outs, dag ins, string asm, 2014 list<dag> pattern, string opName, 2015 bit HasMods, bit defExec, 2016 string revOp, list<SchedReadWrite> sched> { 2017 2018 def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>, 2019 VOP2_REV<revOp#"_e64", !eq(revOp, opName)> { 2020 let Defs = !if(defExec, [EXEC], []); 2021 let SchedRW = sched; 2022 } 2023 2024 def _si : VOP3_C_Real_si <op.SI3, outs, ins, asm, opName, HasMods>, 2025 VOP3DisableFields<1, 0, HasMods> { 2026 let Defs = !if(defExec, [EXEC], []); 2027 let SchedRW = sched; 2028 } 2029 2030 def _vi : VOP3_C_Real_vi <op.VI3, outs, ins, asm, opName, HasMods>, 2031 VOP3DisableFields<1, 0, HasMods> { 2032 let Defs = !if(defExec, [EXEC], []); 2033 let SchedRW = sched; 2034 } 2035} 2036 2037// An instruction that is VOP2 on SI and VOP3 on VI, no modifiers. 2038multiclass VOP2SI_3VI_m <vop3 op, string opName, dag outs, dag ins, 2039 string asm, list<dag> pattern = []> { 2040 let isPseudo = 1, isCodeGenOnly = 1 in { 2041 def "" : VOPAnyCommon <outs, ins, "", pattern>, 2042 SIMCInstr<opName, SIEncodingFamily.NONE>; 2043 } 2044 2045 def _si : VOP2 <op.SI3{5-0}, outs, ins, asm, []>, 2046 SIMCInstr <opName, SIEncodingFamily.SI> { 2047 let AssemblerPredicates = [isSICI]; 2048 let DecoderNamespace = "SICI"; 2049 let DisableDecoder = DisableSIDecoder; 2050 } 2051 2052 def _vi : VOP3Common <outs, ins, asm, []>, 2053 VOP3e_vi <op.VI3>, 2054 VOP3DisableFields <1, 0, 0>, 2055 SIMCInstr <opName, SIEncodingFamily.VI> { 2056 let AssemblerPredicates = [isVI]; 2057 let DecoderNamespace = "VI"; 2058 let DisableDecoder = DisableVIDecoder; 2059 } 2060} 2061 2062multiclass VOP1_Helper <vop1 op, string opName, VOPProfile p, list<dag> pat32, 2063 list<dag> pat64> { 2064 2065 defm _e32 : VOP1_m <op, opName, p, pat32>; 2066 2067 defm _e64 : VOP3_1_m <op, p.Outs, p.Ins64, opName#p.Asm64, pat64, opName, 2068 p.HasModifiers>; 2069 2070 def _dpp : VOP1_DPP <op, opName, p>; 2071 2072 def _sdwa : VOP1_SDWA <op, opName, p>; 2073} 2074 2075multiclass VOP1Inst <vop1 op, string opName, VOPProfile P, 2076 SDPatternOperator node = null_frag> : VOP1_Helper < 2077 op, opName, P, [], 2078 !if(P.HasModifiers, 2079 [(set P.DstVT:$vdst, (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, 2080 i32:$src0_modifiers, i1:$clamp, i32:$omod))))], 2081 [(set P.DstVT:$vdst, (node P.Src0VT:$src0))]) 2082>; 2083 2084multiclass VOP1InstSI <vop1 op, string opName, VOPProfile P, 2085 SDPatternOperator node = null_frag> { 2086 2087 defm _e32 : VOP1SI_m <op, opName, P, []>; 2088 2089 defm _e64 : VOP3SI_1_m <op, P.Outs, P.Ins64, opName#P.Asm64, 2090 !if(P.HasModifiers, 2091 [(set P.DstVT:$vdst, (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, 2092 i32:$src0_modifiers, i1:$clamp, i32:$omod))))], 2093 [(set P.DstVT:$vdst, (node P.Src0VT:$src0))]), 2094 opName, P.HasModifiers>; 2095} 2096 2097multiclass VOP2_Helper <vop2 op, string opName, VOPProfile p, list<dag> pat32, 2098 list<dag> pat64, string revOp> { 2099 2100 defm _e32 : VOP2_m <op, opName, p, pat32, revOp>; 2101 2102 defm _e64 : VOP3_2_m <op, p.Outs, p.Ins64, opName#p.Asm64, pat64, opName, 2103 revOp, p.HasModifiers>; 2104 2105 def _dpp : VOP2_DPP <op, opName, p>; 2106 2107 def _sdwa : VOP2_SDWA <op, opName, p>; 2108} 2109 2110multiclass VOP2Inst <vop2 op, string opName, VOPProfile P, 2111 SDPatternOperator node = null_frag, 2112 string revOp = opName> : VOP2_Helper < 2113 op, opName, P, [], 2114 !if(P.HasModifiers, 2115 [(set P.DstVT:$vdst, 2116 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2117 i1:$clamp, i32:$omod)), 2118 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))], 2119 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]), 2120 revOp 2121>; 2122 2123multiclass VOP2InstSI <vop2 op, string opName, VOPProfile P, 2124 SDPatternOperator node = null_frag, 2125 string revOp = opName> { 2126 2127 defm _e32 : VOP2SI_m <op, opName, P, [], revOp>; 2128 2129 defm _e64 : VOP3SI_2_m <op, P.Outs, P.Ins64, opName#P.Asm64, 2130 !if(P.HasModifiers, 2131 [(set P.DstVT:$vdst, 2132 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2133 i1:$clamp, i32:$omod)), 2134 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))], 2135 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]), 2136 opName, revOp, P.HasModifiers>; 2137} 2138 2139multiclass VOP2e_Helper <vop2 op, string opName, VOPProfile p, 2140 list<dag> pat32, list<dag> pat64, 2141 string revOp, bit useSGPRInput> { 2142 2143 let SchedRW = [Write32Bit] in { 2144 let Uses = !if(useSGPRInput, [VCC, EXEC], [EXEC]) in { 2145 defm _e32 : VOP2_m <op, opName, p, pat32, revOp>; 2146 } 2147 2148 defm _e64 : VOP3e_2_3_m <op, p.Outs64, p.Ins64, opName#p.Asm64, pat64, 2149 opName, revOp, p.HasModifiers, useSGPRInput>; 2150 } 2151} 2152 2153multiclass VOP2eInst <vop2 op, string opName, VOPProfile P, 2154 SDPatternOperator node = null_frag, 2155 string revOp = opName> : VOP2e_Helper < 2156 op, opName, P, [], 2157 !if(P.HasModifiers, 2158 [(set P.DstVT:$vdst, 2159 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2160 i1:$clamp, i32:$omod)), 2161 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))], 2162 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]), 2163 revOp, !eq(P.NumSrcArgs, 3) 2164>; 2165 2166multiclass VOP2b_Helper <vop2 op, string opName, VOPProfile p, 2167 list<dag> pat32, list<dag> pat64, 2168 string revOp, bit useSGPRInput> { 2169 2170 let SchedRW = [Write32Bit, WriteSALU] in { 2171 let Uses = !if(useSGPRInput, [VCC, EXEC], [EXEC]), Defs = [VCC] in { 2172 defm _e32 : VOP2_m <op, opName, p, pat32, revOp>; 2173 } 2174 2175 defm _e64 : VOP3b_2_3_m <op, p.Outs64, p.Ins64, opName#p.Asm64, pat64, 2176 opName, revOp, p.HasModifiers, useSGPRInput>; 2177 } 2178} 2179 2180multiclass VOP2bInst <vop2 op, string opName, VOPProfile P, 2181 SDPatternOperator node = null_frag, 2182 string revOp = opName> : VOP2b_Helper < 2183 op, opName, P, [], 2184 !if(P.HasModifiers, 2185 [(set P.DstVT:$vdst, 2186 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2187 i1:$clamp, i32:$omod)), 2188 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))], 2189 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]), 2190 revOp, !eq(P.NumSrcArgs, 3) 2191>; 2192 2193// A VOP2 instruction that is VOP3-only on VI. 2194multiclass VOP2_VI3_Helper <vop23 op, string opName, VOPProfile p, 2195 list<dag> pat32, list<dag> pat64, string revOp> { 2196 2197 defm _e32 : VOP2SI_m <op, opName, p, pat32, revOp>; 2198 2199 defm _e64 : VOP3_2_m <op, p.Outs, p.Ins64, opName#p.Asm64, pat64, opName, 2200 revOp, p.HasModifiers>; 2201} 2202 2203multiclass VOP2_VI3_Inst <vop23 op, string opName, VOPProfile P, 2204 SDPatternOperator node = null_frag, 2205 string revOp = opName> 2206 : VOP2_VI3_Helper < 2207 op, opName, P, [], 2208 !if(P.HasModifiers, 2209 [(set P.DstVT:$vdst, 2210 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2211 i1:$clamp, i32:$omod)), 2212 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))], 2213 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]), 2214 revOp 2215>; 2216 2217multiclass VOP2MADK <vop2 op, string opName, VOPProfile P, list<dag> pattern = []> { 2218 2219 def "" : VOP2_Pseudo <P.Outs, P.Ins32, pattern, opName>; 2220 2221let isCodeGenOnly = 0 in { 2222 def _si : VOP2Common <P.Outs, P.Ins32, 2223 !strconcat(opName, P.Asm32), []>, 2224 SIMCInstr <opName#"_e32", SIEncodingFamily.SI>, 2225 VOP2_MADKe <op.SI> { 2226 let AssemblerPredicates = [isSICI]; 2227 let DecoderNamespace = "SICI"; 2228 let DisableDecoder = DisableSIDecoder; 2229 } 2230 2231 def _vi : VOP2Common <P.Outs, P.Ins32, 2232 !strconcat(opName, P.Asm32), []>, 2233 SIMCInstr <opName#"_e32", SIEncodingFamily.VI>, 2234 VOP2_MADKe <op.VI> { 2235 let AssemblerPredicates = [isVI]; 2236 let DecoderNamespace = "VI"; 2237 let DisableDecoder = DisableVIDecoder; 2238 } 2239} // End isCodeGenOnly = 0 2240} 2241 2242class VOPC_Pseudo <dag ins, list<dag> pattern, string opName> : 2243 VOPCCommon <ins, "", pattern>, 2244 VOP <opName>, 2245 SIMCInstr<opName#"_e32", SIEncodingFamily.NONE> { 2246 let isPseudo = 1; 2247 let isCodeGenOnly = 1; 2248} 2249 2250multiclass VOPC_m <vopc op, dag ins, string op_asm, list<dag> pattern, 2251 string opName, bit DefExec, VOPProfile p, 2252 list<SchedReadWrite> sched, 2253 string revOpName = "", string asm = opName#"_e32 "#op_asm, 2254 string alias_asm = opName#" "#op_asm> { 2255 def "" : VOPC_Pseudo <ins, pattern, opName>, 2256 VOP2_REV<revOpName#"_e32", !eq(revOpName, opName)> { 2257 let Defs = !if(DefExec, [VCC, EXEC], [VCC]); 2258 let SchedRW = sched; 2259 } 2260 2261 let AssemblerPredicates = [isSICI] in { 2262 def _si : VOPC<op.SI, ins, asm, []>, 2263 SIMCInstr <opName#"_e32", SIEncodingFamily.SI> { 2264 let Defs = !if(DefExec, [VCC, EXEC], [VCC]); 2265 let hasSideEffects = DefExec; 2266 let SchedRW = sched; 2267 let DecoderNamespace = "SICI"; 2268 let DisableDecoder = DisableSIDecoder; 2269 } 2270 2271 } // End AssemblerPredicates = [isSICI] 2272 2273 let AssemblerPredicates = [isVI] in { 2274 def _vi : VOPC<op.VI, ins, asm, []>, 2275 SIMCInstr <opName#"_e32", SIEncodingFamily.VI> { 2276 let Defs = !if(DefExec, [VCC, EXEC], [VCC]); 2277 let hasSideEffects = DefExec; 2278 let SchedRW = sched; 2279 let DecoderNamespace = "VI"; 2280 let DisableDecoder = DisableVIDecoder; 2281 } 2282 2283 } // End AssemblerPredicates = [isVI] 2284 2285 defm : SIInstAliasBuilder<alias_asm, p>; 2286} 2287 2288multiclass VOPC_Helper <vopc op, string opName, list<dag> pat32, 2289 list<dag> pat64, bit DefExec, string revOp, 2290 VOPProfile p, list<SchedReadWrite> sched> { 2291 defm _e32 : VOPC_m <op, p.Ins32, p.Asm32, pat32, opName, DefExec, p, sched, 2292 revOp>; 2293 2294 defm _e64 : VOP3_C_m <op, (outs VOPDstS64:$sdst), p.Ins64, opName#p.Asm64, pat64, 2295 opName, p.HasModifiers, DefExec, revOp, sched>; 2296} 2297 2298// Special case for class instructions which only have modifiers on 2299// the 1st source operand. 2300multiclass VOPC_Class_Helper <vopc op, string opName, list<dag> pat32, 2301 list<dag> pat64, bit DefExec, string revOp, 2302 VOPProfile p, list<SchedReadWrite> sched> { 2303 defm _e32 : VOPC_m <op, p.Ins32, p.Asm32, pat32, opName, DefExec, p, sched>; 2304 2305 defm _e64 : VOP3_C_m <op, (outs VOPDstS64:$sdst), p.Ins64, opName#p.Asm64, pat64, 2306 opName, p.HasModifiers, DefExec, revOp, sched>, 2307 VOP3DisableModFields<1, 0, 0>; 2308} 2309 2310multiclass VOPCInst <vopc op, string opName, 2311 VOPProfile P, PatLeaf cond = COND_NULL, 2312 string revOp = opName, 2313 bit DefExec = 0, 2314 list<SchedReadWrite> sched = [Write32Bit]> : 2315 VOPC_Helper < 2316 op, opName, [], 2317 !if(P.HasModifiers, 2318 [(set i1:$sdst, 2319 (setcc (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2320 i1:$clamp, i32:$omod)), 2321 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)), 2322 cond))], 2323 [(set i1:$sdst, (setcc P.Src0VT:$src0, P.Src1VT:$src1, cond))]), 2324 DefExec, revOp, P, sched 2325>; 2326 2327multiclass VOPCClassInst <vopc op, string opName, VOPProfile P, 2328 bit DefExec = 0, 2329 list<SchedReadWrite> sched> : VOPC_Class_Helper < 2330 op, opName, [], 2331 !if(P.HasModifiers, 2332 [(set i1:$sdst, 2333 (AMDGPUfp_class (P.Src0VT (VOP3Mods0Clamp0OMod P.Src0VT:$src0, i32:$src0_modifiers)), P.Src1VT:$src1))], 2334 [(set i1:$sdst, (AMDGPUfp_class P.Src0VT:$src0, P.Src1VT:$src1))]), 2335 DefExec, opName, P, sched 2336>; 2337 2338 2339multiclass VOPC_F32 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> : 2340 VOPCInst <op, opName, VOPC_I1_F32_F32, cond, revOp>; 2341 2342multiclass VOPC_F64 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> : 2343 VOPCInst <op, opName, VOPC_I1_F64_F64, cond, revOp, 0, [WriteDoubleAdd]>; 2344 2345multiclass VOPC_I32 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> : 2346 VOPCInst <op, opName, VOPC_I1_I32_I32, cond, revOp>; 2347 2348multiclass VOPC_I64 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> : 2349 VOPCInst <op, opName, VOPC_I1_I64_I64, cond, revOp, 0, [Write64Bit]>; 2350 2351 2352multiclass VOPCX <vopc op, string opName, VOPProfile P, 2353 PatLeaf cond = COND_NULL, 2354 list<SchedReadWrite> sched, 2355 string revOp = ""> 2356 : VOPCInst <op, opName, P, cond, revOp, 1, sched>; 2357 2358multiclass VOPCX_F32 <vopc op, string opName, string revOp = opName> : 2359 VOPCX <op, opName, VOPC_I1_F32_F32, COND_NULL, [Write32Bit], revOp>; 2360 2361multiclass VOPCX_F64 <vopc op, string opName, string revOp = opName> : 2362 VOPCX <op, opName, VOPC_I1_F64_F64, COND_NULL, [WriteDoubleAdd], revOp>; 2363 2364multiclass VOPCX_I32 <vopc op, string opName, string revOp = opName> : 2365 VOPCX <op, opName, VOPC_I1_I32_I32, COND_NULL, [Write32Bit], revOp>; 2366 2367multiclass VOPCX_I64 <vopc op, string opName, string revOp = opName> : 2368 VOPCX <op, opName, VOPC_I1_I64_I64, COND_NULL, [Write64Bit], revOp>; 2369 2370multiclass VOP3_Helper <vop3 op, string opName, dag outs, dag ins, string asm, 2371 list<dag> pat, int NumSrcArgs, bit HasMods, 2372 bit VOP3Only = 0> : VOP3_m < 2373 op, outs, ins, opName#" "#asm, pat, opName, NumSrcArgs, HasMods, VOP3Only 2374>; 2375 2376multiclass VOPC_CLASS_F32 <vopc op, string opName> : 2377 VOPCClassInst <op, opName, VOPC_I1_F32_I32, 0, [Write32Bit]>; 2378 2379multiclass VOPCX_CLASS_F32 <vopc op, string opName> : 2380 VOPCClassInst <op, opName, VOPC_I1_F32_I32, 1, [Write32Bit]>; 2381 2382multiclass VOPC_CLASS_F64 <vopc op, string opName> : 2383 VOPCClassInst <op, opName, VOPC_I1_F64_I32, 0, [WriteDoubleAdd]>; 2384 2385multiclass VOPCX_CLASS_F64 <vopc op, string opName> : 2386 VOPCClassInst <op, opName, VOPC_I1_F64_I32, 1, [WriteDoubleAdd]>; 2387 2388multiclass VOP3Inst <vop3 op, string opName, VOPProfile P, 2389 SDPatternOperator node = null_frag, bit VOP3Only = 0> : 2390 VOP3_Helper < 2391 op, opName, (outs P.DstRC.RegClass:$vdst), P.Ins64, P.Asm64, 2392 !if(!eq(P.NumSrcArgs, 3), 2393 !if(P.HasModifiers, 2394 [(set P.DstVT:$vdst, 2395 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2396 i1:$clamp, i32:$omod)), 2397 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)), 2398 (P.Src2VT (VOP3Mods P.Src2VT:$src2, i32:$src2_modifiers))))], 2399 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1, 2400 P.Src2VT:$src2))]), 2401 !if(!eq(P.NumSrcArgs, 2), 2402 !if(P.HasModifiers, 2403 [(set P.DstVT:$vdst, 2404 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2405 i1:$clamp, i32:$omod)), 2406 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))], 2407 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]) 2408 /* P.NumSrcArgs == 1 */, 2409 !if(P.HasModifiers, 2410 [(set P.DstVT:$vdst, 2411 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2412 i1:$clamp, i32:$omod))))], 2413 [(set P.DstVT:$vdst, (node P.Src0VT:$src0))]))), 2414 P.NumSrcArgs, P.HasModifiers, VOP3Only 2415>; 2416 2417// Special case for v_div_fmas_{f32|f64}, since it seems to be the 2418// only VOP instruction that implicitly reads VCC. 2419multiclass VOP3_VCC_Inst <vop3 op, string opName, 2420 VOPProfile P, 2421 SDPatternOperator node = null_frag> : VOP3_Helper < 2422 op, opName, 2423 (outs P.DstRC.RegClass:$vdst), 2424 (ins FPInputMods:$src0_modifiers, P.Src0RC64:$src0, 2425 FPInputMods:$src1_modifiers, P.Src1RC64:$src1, 2426 FPInputMods:$src2_modifiers, P.Src2RC64:$src2, 2427 clampmod:$clamp, 2428 omod:$omod), 2429 "$vdst, $src0_modifiers, $src1_modifiers, $src2_modifiers"#"$clamp"#"$omod", 2430 [(set P.DstVT:$vdst, 2431 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, 2432 i1:$clamp, i32:$omod)), 2433 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)), 2434 (P.Src2VT (VOP3Mods P.Src2VT:$src2, i32:$src2_modifiers)), 2435 (i1 VCC)))], 2436 3, 1 2437>; 2438 2439multiclass VOP3bInst <vop op, string opName, VOPProfile P, list<dag> pattern = [], bit VOP3Only = 0> : 2440 VOP3b_2_3_m < 2441 op, P.Outs64, P.Ins64, 2442 opName#" "#P.Asm64, pattern, 2443 opName, "", 1, 1, VOP3Only 2444>; 2445 2446class Vop3ModPat<Instruction Inst, VOPProfile P, SDPatternOperator node> : Pat< 2447 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, i1:$clamp, i32:$omod)), 2448 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)), 2449 (P.Src2VT (VOP3Mods P.Src2VT:$src2, i32:$src2_modifiers))), 2450 (Inst i32:$src0_modifiers, P.Src0VT:$src0, 2451 i32:$src1_modifiers, P.Src1VT:$src1, 2452 i32:$src2_modifiers, P.Src2VT:$src2, 2453 i1:$clamp, 2454 i32:$omod)>; 2455 2456//===----------------------------------------------------------------------===// 2457// Interpolation opcodes 2458//===----------------------------------------------------------------------===// 2459 2460class VINTRP_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 2461 VINTRPCommon <outs, ins, "", pattern>, 2462 SIMCInstr<opName, SIEncodingFamily.NONE> { 2463 let isPseudo = 1; 2464 let isCodeGenOnly = 1; 2465} 2466 2467class VINTRP_Real_si <bits <2> op, string opName, dag outs, dag ins, 2468 string asm> : 2469 VINTRPCommon <outs, ins, asm, []>, 2470 VINTRPe <op>, 2471 SIMCInstr<opName, SIEncodingFamily.SI> { 2472 let AssemblerPredicate = SIAssemblerPredicate; 2473 let DecoderNamespace = "SICI"; 2474 let DisableDecoder = DisableSIDecoder; 2475} 2476 2477class VINTRP_Real_vi <bits <2> op, string opName, dag outs, dag ins, 2478 string asm> : 2479 VINTRPCommon <outs, ins, asm, []>, 2480 VINTRPe_vi <op>, 2481 SIMCInstr<opName, SIEncodingFamily.VI> { 2482 let AssemblerPredicate = VIAssemblerPredicate; 2483 let DecoderNamespace = "VI"; 2484 let DisableDecoder = DisableVIDecoder; 2485} 2486 2487multiclass VINTRP_m <bits <2> op, dag outs, dag ins, string asm, 2488 list<dag> pattern = []> { 2489 def "" : VINTRP_Pseudo <NAME, outs, ins, pattern>; 2490 2491 def _si : VINTRP_Real_si <op, NAME, outs, ins, asm>; 2492 2493 def _vi : VINTRP_Real_vi <op, NAME, outs, ins, asm>; 2494} 2495 2496//===----------------------------------------------------------------------===// 2497// Vector I/O classes 2498//===----------------------------------------------------------------------===// 2499 2500class DS_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 2501 DS <outs, ins, "", pattern>, 2502 SIMCInstr <opName, SIEncodingFamily.NONE> { 2503 let isPseudo = 1; 2504 let isCodeGenOnly = 1; 2505} 2506 2507class DS_Real_si <bits<8> op, string opName, dag outs, dag ins, string asm> : 2508 DS <outs, ins, asm, []>, 2509 DSe <op>, 2510 SIMCInstr <opName, SIEncodingFamily.SI> { 2511 let isCodeGenOnly = 0; 2512 let AssemblerPredicates = [isSICI]; 2513 let DecoderNamespace="SICI"; 2514 let DisableDecoder = DisableSIDecoder; 2515} 2516 2517class DS_Real_vi <bits<8> op, string opName, dag outs, dag ins, string asm> : 2518 DS <outs, ins, asm, []>, 2519 DSe_vi <op>, 2520 SIMCInstr <opName, SIEncodingFamily.VI> { 2521 let isCodeGenOnly = 0; 2522 let AssemblerPredicates = [isVI]; 2523 let DecoderNamespace="VI"; 2524 let DisableDecoder = DisableVIDecoder; 2525} 2526 2527class DS_Off16_Real_si <bits<8> op, string opName, dag outs, dag ins, string asm> : 2528 DS_Real_si <op,opName, outs, ins, asm> { 2529 2530 // Single load interpret the 2 i8imm operands as a single i16 offset. 2531 bits<16> offset; 2532 let offset0 = offset{7-0}; 2533 let offset1 = offset{15-8}; 2534} 2535 2536class DS_Off16_Real_vi <bits<8> op, string opName, dag outs, dag ins, string asm> : 2537 DS_Real_vi <op, opName, outs, ins, asm> { 2538 2539 // Single load interpret the 2 i8imm operands as a single i16 offset. 2540 bits<16> offset; 2541 let offset0 = offset{7-0}; 2542 let offset1 = offset{15-8}; 2543} 2544 2545multiclass DS_1A_RET <bits<8> op, string opName, RegisterClass rc, 2546 dag outs = (outs rc:$vdst), 2547 dag ins = (ins VGPR_32:$addr, offset:$offset, gds:$gds), 2548 string asm = opName#" $vdst, $addr"#"$offset$gds"> { 2549 2550 def "" : DS_Pseudo <opName, outs, ins, []>; 2551 2552 let data0 = 0, data1 = 0 in { 2553 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2554 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2555 } 2556} 2557 2558multiclass DS_1A_Off8_RET <bits<8> op, string opName, RegisterClass rc, 2559 dag outs = (outs rc:$vdst), 2560 dag ins = (ins VGPR_32:$addr, offset0:$offset0, offset1:$offset1, 2561 gds:$gds), 2562 string asm = opName#" $vdst, $addr"#"$offset0"#"$offset1$gds"> { 2563 2564 def "" : DS_Pseudo <opName, outs, ins, []>; 2565 2566 let data0 = 0, data1 = 0, AsmMatchConverter = "cvtDSOffset01" in { 2567 def _si : DS_Real_si <op, opName, outs, ins, asm>; 2568 def _vi : DS_Real_vi <op, opName, outs, ins, asm>; 2569 } 2570} 2571 2572multiclass DS_1A1D_NORET <bits<8> op, string opName, RegisterClass rc, 2573 dag outs = (outs), 2574 dag ins = (ins VGPR_32:$addr, rc:$data0, offset:$offset, gds:$gds), 2575 string asm = opName#" $addr, $data0"#"$offset$gds"> { 2576 2577 def "" : DS_Pseudo <opName, outs, ins, []>, 2578 AtomicNoRet<opName, 0>; 2579 2580 let data1 = 0, vdst = 0 in { 2581 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2582 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2583 } 2584} 2585 2586multiclass DS_1A1D_Off8_NORET <bits<8> op, string opName, RegisterClass rc, 2587 dag outs = (outs), 2588 dag ins = (ins VGPR_32:$addr, rc:$data0, rc:$data1, 2589 offset0:$offset0, offset1:$offset1, gds:$gds), 2590 string asm = opName#" $addr, $data0, $data1$offset0$offset1$gds"> { 2591 2592 def "" : DS_Pseudo <opName, outs, ins, []>; 2593 2594 let vdst = 0, AsmMatchConverter = "cvtDSOffset01" in { 2595 def _si : DS_Real_si <op, opName, outs, ins, asm>; 2596 def _vi : DS_Real_vi <op, opName, outs, ins, asm>; 2597 } 2598} 2599 2600multiclass DS_1A1D_RET <bits<8> op, string opName, RegisterClass rc, 2601 string noRetOp = "", 2602 dag outs = (outs rc:$vdst), 2603 dag ins = (ins VGPR_32:$addr, rc:$data0, offset:$offset, gds:$gds), 2604 string asm = opName#" $vdst, $addr, $data0"#"$offset$gds"> { 2605 2606 let hasPostISelHook = 1 in { 2607 def "" : DS_Pseudo <opName, outs, ins, []>, 2608 AtomicNoRet<noRetOp, 1>; 2609 2610 let data1 = 0 in { 2611 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2612 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2613 } 2614 } 2615} 2616 2617multiclass DS_1A1D_PERMUTE <bits<8> op, string opName, RegisterClass rc, 2618 SDPatternOperator node = null_frag, 2619 dag outs = (outs rc:$vdst), 2620 dag ins = (ins VGPR_32:$addr, rc:$data0, offset:$offset), 2621 string asm = opName#" $vdst, $addr, $data0"#"$offset"> { 2622 2623 let mayLoad = 0, mayStore = 0, isConvergent = 1 in { 2624 def "" : DS_Pseudo <opName, outs, ins, 2625 [(set i32:$vdst, 2626 (node (DS1Addr1Offset i32:$addr, i16:$offset), i32:$data0))]>; 2627 2628 let data1 = 0, gds = 0 in { 2629 def "_vi" : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2630 } 2631 } 2632} 2633 2634multiclass DS_1A2D_RET_m <bits<8> op, string opName, RegisterClass rc, 2635 string noRetOp = "", dag ins, 2636 dag outs = (outs rc:$vdst), 2637 string asm = opName#" $vdst, $addr, $data0, $data1"#"$offset"#"$gds"> { 2638 2639 let hasPostISelHook = 1 in { 2640 def "" : DS_Pseudo <opName, outs, ins, []>, 2641 AtomicNoRet<noRetOp, 1>; 2642 2643 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2644 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2645 } 2646} 2647 2648multiclass DS_1A2D_RET <bits<8> op, string asm, RegisterClass rc, 2649 string noRetOp = "", RegisterClass src = rc> : 2650 DS_1A2D_RET_m <op, asm, rc, noRetOp, 2651 (ins VGPR_32:$addr, src:$data0, src:$data1, 2652 offset:$offset, gds:$gds) 2653>; 2654 2655multiclass DS_1A2D_NORET <bits<8> op, string opName, RegisterClass rc, 2656 string noRetOp = opName, 2657 dag outs = (outs), 2658 dag ins = (ins VGPR_32:$addr, rc:$data0, rc:$data1, 2659 offset:$offset, gds:$gds), 2660 string asm = opName#" $addr, $data0, $data1"#"$offset"#"$gds"> { 2661 2662 def "" : DS_Pseudo <opName, outs, ins, []>, 2663 AtomicNoRet<noRetOp, 0>; 2664 2665 let vdst = 0 in { 2666 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2667 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2668 } 2669} 2670 2671multiclass DS_0A_RET <bits<8> op, string opName, 2672 dag outs = (outs VGPR_32:$vdst), 2673 dag ins = (ins offset:$offset, gds:$gds), 2674 string asm = opName#" $vdst"#"$offset"#"$gds"> { 2675 2676 let mayLoad = 1, mayStore = 1 in { 2677 def "" : DS_Pseudo <opName, outs, ins, []>; 2678 2679 let addr = 0, data0 = 0, data1 = 0 in { 2680 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2681 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2682 } // end addr = 0, data0 = 0, data1 = 0 2683 } // end mayLoad = 1, mayStore = 1 2684} 2685 2686multiclass DS_1A_RET_GDS <bits<8> op, string opName, 2687 dag outs = (outs VGPR_32:$vdst), 2688 dag ins = (ins VGPR_32:$addr, offset:$offset), 2689 string asm = opName#" $vdst, $addr"#"$offset gds"> { 2690 2691 def "" : DS_Pseudo <opName, outs, ins, []>; 2692 2693 let data0 = 0, data1 = 0, gds = 1 in { 2694 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2695 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2696 } // end data0 = 0, data1 = 0, gds = 1 2697} 2698 2699multiclass DS_1A_GDS <bits<8> op, string opName, 2700 dag outs = (outs), 2701 dag ins = (ins VGPR_32:$addr), 2702 string asm = opName#" $addr gds"> { 2703 2704 def "" : DS_Pseudo <opName, outs, ins, []>; 2705 2706 let vdst = 0, data0 = 0, data1 = 0, offset0 = 0, offset1 = 0, gds = 1 in { 2707 def _si : DS_Real_si <op, opName, outs, ins, asm>; 2708 def _vi : DS_Real_vi <op, opName, outs, ins, asm>; 2709 } // end vdst = 0, data = 0, data1 = 0, gds = 1 2710} 2711 2712multiclass DS_1A <bits<8> op, string opName, 2713 dag outs = (outs), 2714 dag ins = (ins VGPR_32:$addr, offset:$offset, gds:$gds), 2715 string asm = opName#" $addr"#"$offset"#"$gds"> { 2716 2717 let mayLoad = 1, mayStore = 1 in { 2718 def "" : DS_Pseudo <opName, outs, ins, []>; 2719 2720 let vdst = 0, data0 = 0, data1 = 0 in { 2721 def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>; 2722 def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>; 2723 } // let vdst = 0, data0 = 0, data1 = 0 2724 } // end mayLoad = 1, mayStore = 1 2725} 2726 2727//===----------------------------------------------------------------------===// 2728// MTBUF classes 2729//===----------------------------------------------------------------------===// 2730 2731class MTBUF_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 2732 MTBUF <outs, ins, "", pattern>, 2733 SIMCInstr<opName, SIEncodingFamily.NONE> { 2734 let isPseudo = 1; 2735 let isCodeGenOnly = 1; 2736} 2737 2738class MTBUF_Real_si <bits<3> op, string opName, dag outs, dag ins, 2739 string asm> : 2740 MTBUF <outs, ins, asm, []>, 2741 MTBUFe <op>, 2742 SIMCInstr<opName, SIEncodingFamily.SI> { 2743 let DecoderNamespace="SICI"; 2744 let DisableDecoder = DisableSIDecoder; 2745} 2746 2747class MTBUF_Real_vi <bits<4> op, string opName, dag outs, dag ins, string asm> : 2748 MTBUF <outs, ins, asm, []>, 2749 MTBUFe_vi <op>, 2750 SIMCInstr <opName, SIEncodingFamily.VI> { 2751 let DecoderNamespace="VI"; 2752 let DisableDecoder = DisableVIDecoder; 2753} 2754 2755multiclass MTBUF_m <bits<3> op, string opName, dag outs, dag ins, string asm, 2756 list<dag> pattern> { 2757 2758 def "" : MTBUF_Pseudo <opName, outs, ins, pattern>; 2759 2760 def _si : MTBUF_Real_si <op, opName, outs, ins, asm>; 2761 2762 def _vi : MTBUF_Real_vi <{0, op{2}, op{1}, op{0}}, opName, outs, ins, asm>; 2763 2764} 2765 2766let mayStore = 1, mayLoad = 0 in { 2767 2768multiclass MTBUF_Store_Helper <bits<3> op, string opName, 2769 RegisterClass regClass> : MTBUF_m < 2770 op, opName, (outs), 2771 (ins regClass:$vdata, u16imm:$offset, i1imm:$offen, i1imm:$idxen, i1imm:$glc, 2772 i1imm:$addr64, i8imm:$dfmt, i8imm:$nfmt, VGPR_32:$vaddr, 2773 SReg_128:$srsrc, i1imm:$slc, i1imm:$tfe, SCSrc_32:$soffset), 2774 opName#" $vdata, $offset, $offen, $idxen, $glc, $addr64, $dfmt," 2775 #" $nfmt, $vaddr, $srsrc, $slc, $tfe, $soffset", [] 2776>; 2777 2778} // mayStore = 1, mayLoad = 0 2779 2780let mayLoad = 1, mayStore = 0 in { 2781 2782multiclass MTBUF_Load_Helper <bits<3> op, string opName, 2783 RegisterClass regClass> : MTBUF_m < 2784 op, opName, (outs regClass:$dst), 2785 (ins u16imm:$offset, i1imm:$offen, i1imm:$idxen, i1imm:$glc, i1imm:$addr64, 2786 i8imm:$dfmt, i8imm:$nfmt, VGPR_32:$vaddr, SReg_128:$srsrc, 2787 i1imm:$slc, i1imm:$tfe, SCSrc_32:$soffset), 2788 opName#" $dst, $offset, $offen, $idxen, $glc, $addr64, $dfmt," 2789 #" $nfmt, $vaddr, $srsrc, $slc, $tfe, $soffset", [] 2790>; 2791 2792} // mayLoad = 1, mayStore = 0 2793 2794//===----------------------------------------------------------------------===// 2795// MUBUF classes 2796//===----------------------------------------------------------------------===// 2797 2798class mubuf <bits<7> si, bits<7> vi = si> { 2799 field bits<7> SI = si; 2800 field bits<7> VI = vi; 2801} 2802 2803let isCodeGenOnly = 0 in { 2804 2805class MUBUF_si <bits<7> op, dag outs, dag ins, string asm, list<dag> pattern> : 2806 MUBUF <outs, ins, asm, pattern>, MUBUFe <op> { 2807 let lds = 0; 2808} 2809 2810} // End let isCodeGenOnly = 0 2811 2812class MUBUF_vi <bits<7> op, dag outs, dag ins, string asm, list<dag> pattern> : 2813 MUBUF <outs, ins, asm, pattern>, MUBUFe_vi <op> { 2814 let lds = 0; 2815} 2816 2817class MUBUFAddr64Table <bit is_addr64, string suffix = ""> { 2818 bit IsAddr64 = is_addr64; 2819 string OpName = NAME # suffix; 2820} 2821 2822class MUBUF_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 2823 MUBUF <outs, ins, "", pattern>, 2824 SIMCInstr<opName, SIEncodingFamily.NONE> { 2825 let isPseudo = 1; 2826 let isCodeGenOnly = 1; 2827 2828 // dummy fields, so that we can use let statements around multiclasses 2829 bits<1> offen; 2830 bits<1> idxen; 2831 bits<8> vaddr; 2832 bits<1> glc; 2833 bits<1> slc; 2834 bits<1> tfe; 2835 bits<8> soffset; 2836} 2837 2838class MUBUF_Real_si <mubuf op, string opName, dag outs, dag ins, 2839 string asm> : 2840 MUBUF <outs, ins, asm, []>, 2841 MUBUFe <op.SI>, 2842 SIMCInstr<opName, SIEncodingFamily.SI> { 2843 let lds = 0; 2844 let AssemblerPredicate = SIAssemblerPredicate; 2845 let DecoderNamespace="SICI"; 2846 let DisableDecoder = DisableSIDecoder; 2847} 2848 2849class MUBUF_Real_vi <mubuf op, string opName, dag outs, dag ins, 2850 string asm> : 2851 MUBUF <outs, ins, asm, []>, 2852 MUBUFe_vi <op.VI>, 2853 SIMCInstr<opName, SIEncodingFamily.VI> { 2854 let lds = 0; 2855 let AssemblerPredicate = VIAssemblerPredicate; 2856 let DecoderNamespace="VI"; 2857 let DisableDecoder = DisableVIDecoder; 2858} 2859 2860multiclass MUBUF_m <mubuf op, string opName, dag outs, dag ins, string asm, 2861 list<dag> pattern> { 2862 2863 def "" : MUBUF_Pseudo <opName, outs, ins, pattern>, 2864 MUBUFAddr64Table <0>; 2865 2866 let addr64 = 0, isCodeGenOnly = 0 in { 2867 def _si : MUBUF_Real_si <op, opName, outs, ins, asm>; 2868 } 2869 2870 def _vi : MUBUF_Real_vi <op, opName, outs, ins, asm>; 2871} 2872 2873multiclass MUBUFAddr64_m <mubuf op, string opName, dag outs, 2874 dag ins, string asm, list<dag> pattern> { 2875 2876 def "" : MUBUF_Pseudo <opName, outs, ins, pattern>, 2877 MUBUFAddr64Table <1>; 2878 2879 let addr64 = 1, isCodeGenOnly = 0 in { 2880 def _si : MUBUF_Real_si <op, opName, outs, ins, asm>; 2881 } 2882 2883 // There is no VI version. If the pseudo is selected, it should be lowered 2884 // for VI appropriately. 2885} 2886 2887multiclass MUBUFAtomicOffset_m <mubuf op, string opName, dag outs, dag ins, 2888 string asm, list<dag> pattern, bit is_return> { 2889 2890 def "" : MUBUF_Pseudo <opName, outs, ins, pattern>, 2891 MUBUFAddr64Table <0, !if(is_return, "_RTN", "")>, 2892 AtomicNoRet<NAME#"_OFFSET", is_return>; 2893 2894 let offen = 0, idxen = 0, tfe = 0, vaddr = 0 in { 2895 let addr64 = 0 in { 2896 def _si : MUBUF_Real_si <op, opName, outs, ins, asm>; 2897 } 2898 2899 def _vi : MUBUF_Real_vi <op, opName, outs, ins, asm>; 2900 } 2901} 2902 2903multiclass MUBUFAtomicAddr64_m <mubuf op, string opName, dag outs, dag ins, 2904 string asm, list<dag> pattern, bit is_return> { 2905 2906 def "" : MUBUF_Pseudo <opName, outs, ins, pattern>, 2907 MUBUFAddr64Table <1, !if(is_return, "_RTN", "")>, 2908 AtomicNoRet<NAME#"_ADDR64", is_return>; 2909 2910 let offen = 0, idxen = 0, addr64 = 1, tfe = 0 in { 2911 def _si : MUBUF_Real_si <op, opName, outs, ins, asm>; 2912 } 2913 2914 // There is no VI version. If the pseudo is selected, it should be lowered 2915 // for VI appropriately. 2916} 2917 2918multiclass MUBUFAtomicOther_m <mubuf op, string opName, dag outs, dag ins, 2919 string asm, list<dag> pattern, bit is_return> { 2920 2921 def "" : MUBUF_Pseudo <opName, outs, ins, pattern>, 2922 AtomicNoRet<opName, is_return>; 2923 2924 let tfe = 0 in { 2925 let addr64 = 0 in { 2926 def _si : MUBUF_Real_si <op, opName, outs, ins, asm>; 2927 } 2928 2929 def _vi : MUBUF_Real_vi <op, opName, outs, ins, asm>; 2930 } 2931} 2932 2933multiclass MUBUF_Atomic <mubuf op, string name, RegisterClass rc, 2934 ValueType vt, SDPatternOperator atomic> { 2935 2936 let mayStore = 1, mayLoad = 1, hasPostISelHook = 1, hasSideEffects = 1 in { 2937 2938 // No return variants 2939 let glc = 0, AsmMatchConverter = "cvtMubufAtomic" in { 2940 2941 defm _ADDR64 : MUBUFAtomicAddr64_m < 2942 op, name#"_addr64", (outs), 2943 (ins rc:$vdata, VReg_64:$vaddr, SReg_128:$srsrc, 2944 SCSrc_32:$soffset, offset:$offset, slc:$slc), 2945 name#" $vdata, $vaddr, $srsrc, $soffset addr64$offset$slc", [], 0 2946 >; 2947 2948 defm _OFFSET : MUBUFAtomicOffset_m < 2949 op, name#"_offset", (outs), 2950 (ins rc:$vdata, SReg_128:$srsrc, SCSrc_32:$soffset, offset:$offset, 2951 slc:$slc), 2952 name#" $vdata, off, $srsrc, $soffset$offset$slc", [], 0 2953 >; 2954 2955 let offen = 1, idxen = 0 in { 2956 defm _OFFEN : MUBUFAtomicOther_m < 2957 op, name#"_offen", (outs), 2958 (ins rc:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 2959 offset:$offset, slc:$slc), 2960 name#" $vdata, $vaddr, $srsrc, $soffset offen$offset$slc", [], 0 2961 >; 2962 } 2963 2964 let offen = 0, idxen = 1 in { 2965 defm _IDXEN : MUBUFAtomicOther_m < 2966 op, name#"_idxen", (outs), 2967 (ins rc:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 2968 offset:$offset, slc:$slc), 2969 name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset$slc", [], 0 2970 >; 2971 } 2972 2973 let offen = 1, idxen = 1 in { 2974 defm _BOTHEN : MUBUFAtomicOther_m < 2975 op, name#"_bothen", (outs), 2976 (ins rc:$vdata, VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 2977 offset:$offset, slc:$slc), 2978 name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset$slc", 2979 [], 0 2980 >; 2981 } 2982 } // glc = 0 2983 2984 // Variant that return values 2985 let glc = 1, Constraints = "$vdata = $vdata_in", 2986 AsmMatchConverter = "cvtMubufAtomicReturn", 2987 DisableEncoding = "$vdata_in" in { 2988 2989 defm _RTN_ADDR64 : MUBUFAtomicAddr64_m < 2990 op, name#"_rtn_addr64", (outs rc:$vdata), 2991 (ins rc:$vdata_in, VReg_64:$vaddr, SReg_128:$srsrc, 2992 SCSrc_32:$soffset, offset:$offset, slc:$slc), 2993 name#" $vdata, $vaddr, $srsrc, $soffset addr64$offset glc$slc", 2994 [(set vt:$vdata, 2995 (atomic (MUBUFAddr64Atomic v4i32:$srsrc, i64:$vaddr, i32:$soffset, 2996 i16:$offset, i1:$slc), vt:$vdata_in))], 1 2997 >; 2998 2999 defm _RTN_OFFSET : MUBUFAtomicOffset_m < 3000 op, name#"_rtn_offset", (outs rc:$vdata), 3001 (ins rc:$vdata_in, SReg_128:$srsrc, SCSrc_32:$soffset, 3002 offset:$offset, slc:$slc), 3003 name#" $vdata, off, $srsrc, $soffset$offset glc$slc", 3004 [(set vt:$vdata, 3005 (atomic (MUBUFOffsetAtomic v4i32:$srsrc, i32:$soffset, i16:$offset, 3006 i1:$slc), vt:$vdata_in))], 1 3007 >; 3008 3009 let offen = 1, idxen = 0 in { 3010 defm _RTN_OFFEN : MUBUFAtomicOther_m < 3011 op, name#"_rtn_offen", (outs rc:$vdata), 3012 (ins rc:$vdata_in, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 3013 offset:$offset, slc:$slc), 3014 name#" $vdata, $vaddr, $srsrc, $soffset offen$offset glc$slc", 3015 [], 1 3016 >; 3017 } 3018 3019 let offen = 0, idxen = 1 in { 3020 defm _RTN_IDXEN : MUBUFAtomicOther_m < 3021 op, name#"_rtn_idxen", (outs rc:$vdata), 3022 (ins rc:$vdata_in, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 3023 offset:$offset, slc:$slc), 3024 name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset glc$slc", 3025 [], 1 3026 >; 3027 } 3028 3029 let offen = 1, idxen = 1 in { 3030 defm _RTN_BOTHEN : MUBUFAtomicOther_m < 3031 op, name#"_rtn_bothen", (outs rc:$vdata), 3032 (ins rc:$vdata_in, VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 3033 offset:$offset, slc:$slc), 3034 name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset glc$slc", 3035 [], 1 3036 >; 3037 } 3038 } // glc = 1 3039 3040 } // mayStore = 1, mayLoad = 1, hasPostISelHook = 1 3041} 3042 3043// FIXME: tfe can't be an operand because it requires a separate 3044// opcode because it needs an N+1 register class dest register. 3045multiclass MUBUF_Load_Helper <mubuf op, string name, RegisterClass regClass, 3046 ValueType load_vt = i32, 3047 SDPatternOperator ld = null_frag> { 3048 3049 let mayLoad = 1, mayStore = 0 in { 3050 let offen = 0, idxen = 0, vaddr = 0 in { 3051 defm _OFFSET : MUBUF_m <op, name#"_offset", (outs regClass:$vdata), 3052 (ins SReg_128:$srsrc, SCSrc_32:$soffset, 3053 offset:$offset, glc:$glc, slc:$slc, tfe:$tfe), 3054 name#" $vdata, off, $srsrc, $soffset$offset$glc$slc$tfe", 3055 [(set load_vt:$vdata, (ld (MUBUFOffset v4i32:$srsrc, 3056 i32:$soffset, i16:$offset, 3057 i1:$glc, i1:$slc, i1:$tfe)))]>; 3058 } 3059 3060 let offen = 1, idxen = 0 in { 3061 defm _OFFEN : MUBUF_m <op, name#"_offen", (outs regClass:$vdata), 3062 (ins VGPR_32:$vaddr, SReg_128:$srsrc, 3063 SCSrc_32:$soffset, offset:$offset, glc:$glc, slc:$slc, 3064 tfe:$tfe), 3065 name#" $vdata, $vaddr, $srsrc, $soffset offen$offset$glc$slc$tfe", []>; 3066 } 3067 3068 let offen = 0, idxen = 1 in { 3069 defm _IDXEN : MUBUF_m <op, name#"_idxen", (outs regClass:$vdata), 3070 (ins VGPR_32:$vaddr, SReg_128:$srsrc, 3071 SCSrc_32:$soffset, offset:$offset, glc:$glc, 3072 slc:$slc, tfe:$tfe), 3073 name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset$glc$slc$tfe", []>; 3074 } 3075 3076 let offen = 1, idxen = 1 in { 3077 defm _BOTHEN : MUBUF_m <op, name#"_bothen", (outs regClass:$vdata), 3078 (ins VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 3079 offset:$offset, glc:$glc, slc:$slc, tfe:$tfe), 3080 name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset$glc$slc$tfe", []>; 3081 } 3082 3083 let offen = 0, idxen = 0 in { 3084 defm _ADDR64 : MUBUFAddr64_m <op, name#"_addr64", (outs regClass:$vdata), 3085 (ins VReg_64:$vaddr, SReg_128:$srsrc, 3086 SCSrc_32:$soffset, offset:$offset, 3087 glc:$glc, slc:$slc, tfe:$tfe), 3088 name#" $vdata, $vaddr, $srsrc, $soffset addr64$offset$glc$slc$tfe", 3089 [(set load_vt:$vdata, (ld (MUBUFAddr64 v4i32:$srsrc, 3090 i64:$vaddr, i32:$soffset, 3091 i16:$offset, i1:$glc, i1:$slc, 3092 i1:$tfe)))]>; 3093 } 3094 } 3095} 3096 3097multiclass MUBUF_Store_Helper <mubuf op, string name, RegisterClass vdataClass, 3098 ValueType store_vt = i32, SDPatternOperator st = null_frag> { 3099 let mayLoad = 0, mayStore = 1 in { 3100 let offen = 0, idxen = 0, vaddr = 0 in { 3101 defm _OFFSET : MUBUF_m <op, name#"_offset",(outs), 3102 (ins vdataClass:$vdata, SReg_128:$srsrc, SCSrc_32:$soffset, 3103 offset:$offset, glc:$glc, slc:$slc, tfe:$tfe), 3104 name#" $vdata, off, $srsrc, $soffset$offset$glc$slc$tfe", 3105 [(st store_vt:$vdata, (MUBUFOffset v4i32:$srsrc, i32:$soffset, 3106 i16:$offset, i1:$glc, i1:$slc, i1:$tfe))]>; 3107 } // offen = 0, idxen = 0, vaddr = 0 3108 3109 let offen = 1, idxen = 0 in { 3110 defm _OFFEN : MUBUF_m <op, name#"_offen", (outs), 3111 (ins vdataClass:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc, 3112 SCSrc_32:$soffset, offset:$offset, glc:$glc, 3113 slc:$slc, tfe:$tfe), 3114 name#" $vdata, $vaddr, $srsrc, $soffset offen"# 3115 "$offset$glc$slc$tfe", []>; 3116 } // end offen = 1, idxen = 0 3117 3118 let offen = 0, idxen = 1 in { 3119 defm _IDXEN : MUBUF_m <op, name#"_idxen", (outs), 3120 (ins vdataClass:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc, 3121 SCSrc_32:$soffset, offset:$offset, glc:$glc, 3122 slc:$slc, tfe:$tfe), 3123 name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset$glc$slc$tfe", []>; 3124 } 3125 3126 let offen = 1, idxen = 1 in { 3127 defm _BOTHEN : MUBUF_m <op, name#"_bothen", (outs), 3128 (ins vdataClass:$vdata, VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset, 3129 offset:$offset, glc:$glc, slc:$slc, tfe:$tfe), 3130 name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset$glc$slc$tfe", []>; 3131 } 3132 3133 let offen = 0, idxen = 0 in { 3134 defm _ADDR64 : MUBUFAddr64_m <op, name#"_addr64", (outs), 3135 (ins vdataClass:$vdata, VReg_64:$vaddr, SReg_128:$srsrc, 3136 SCSrc_32:$soffset, 3137 offset:$offset, glc:$glc, slc:$slc, 3138 tfe:$tfe), 3139 name#" $vdata, $vaddr, $srsrc, $soffset addr64"# 3140 "$offset$glc$slc$tfe", 3141 [(st store_vt:$vdata, 3142 (MUBUFAddr64 v4i32:$srsrc, i64:$vaddr, 3143 i32:$soffset, i16:$offset, 3144 i1:$glc, i1:$slc, i1:$tfe))]>; 3145 } 3146 } // End mayLoad = 0, mayStore = 1 3147} 3148 3149// For cache invalidation instructions. 3150multiclass MUBUF_Invalidate <mubuf op, string opName, SDPatternOperator node> { 3151 let hasSideEffects = 1, mayStore = 1, AsmMatchConverter = "" in { 3152 def "" : MUBUF_Pseudo <opName, (outs), (ins), [(node)]>; 3153 3154 // Set everything to 0. 3155 let offset = 0, offen = 0, idxen = 0, glc = 0, vaddr = 0, 3156 vdata = 0, srsrc = 0, slc = 0, tfe = 0, soffset = 0 in { 3157 let addr64 = 0 in { 3158 def _si : MUBUF_Real_si <op, opName, (outs), (ins), opName>; 3159 } 3160 3161 def _vi : MUBUF_Real_vi <op, opName, (outs), (ins), opName>; 3162 } 3163 } // End hasSideEffects = 1, mayStore = 1, AsmMatchConverter = "" 3164} 3165 3166//===----------------------------------------------------------------------===// 3167// FLAT classes 3168//===----------------------------------------------------------------------===// 3169 3170class flat <bits<7> ci, bits<7> vi = ci> { 3171 field bits<7> CI = ci; 3172 field bits<7> VI = vi; 3173} 3174 3175class FLAT_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> : 3176 FLAT <0, outs, ins, "", pattern>, 3177 SIMCInstr<opName, SIEncodingFamily.NONE> { 3178 let isPseudo = 1; 3179 let isCodeGenOnly = 1; 3180} 3181 3182class FLAT_Real_ci <bits<7> op, string opName, dag outs, dag ins, string asm> : 3183 FLAT <op, outs, ins, asm, []>, 3184 SIMCInstr<opName, SIEncodingFamily.SI> { 3185 let AssemblerPredicate = isCIOnly; 3186 let DecoderNamespace="CI"; 3187} 3188 3189class FLAT_Real_vi <bits<7> op, string opName, dag outs, dag ins, string asm> : 3190 FLAT <op, outs, ins, asm, []>, 3191 SIMCInstr<opName, SIEncodingFamily.VI> { 3192 let AssemblerPredicate = VIAssemblerPredicate; 3193 let DecoderNamespace="VI"; 3194 let DisableDecoder = DisableVIDecoder; 3195} 3196 3197multiclass FLAT_AtomicRet_m <flat op, dag outs, dag ins, string asm, 3198 list<dag> pattern> { 3199 def "" : FLAT_Pseudo <NAME#"_RTN", outs, ins, pattern>, 3200 AtomicNoRet <NAME, 1>; 3201 3202 def _ci : FLAT_Real_ci <op.CI, NAME#"_RTN", outs, ins, asm>; 3203 3204 def _vi : FLAT_Real_vi <op.VI, NAME#"_RTN", outs, ins, asm>; 3205} 3206 3207multiclass FLAT_Load_Helper <flat op, string asm_name, 3208 RegisterClass regClass, 3209 dag outs = (outs regClass:$vdst), 3210 dag ins = (ins VReg_64:$addr, glc:$glc, slc:$slc, tfe:$tfe), 3211 string asm = asm_name#" $vdst, $addr$glc$slc$tfe"> { 3212 3213 let data = 0, mayLoad = 1 in { 3214 3215 def "" : FLAT_Pseudo <NAME, outs, ins, []>; 3216 3217 def _ci : FLAT_Real_ci <op.CI, NAME, outs, ins, asm>; 3218 3219 def _vi : FLAT_Real_vi <op.VI, NAME, outs, ins, asm>; 3220 } 3221} 3222 3223multiclass FLAT_Store_Helper <flat op, string asm_name, 3224 RegisterClass vdataClass, 3225 dag outs = (outs), 3226 dag ins = (ins VReg_64:$addr, vdataClass:$data, glc:$glc, 3227 slc:$slc, tfe:$tfe), 3228 string asm = asm_name#" $addr, $data$glc$slc$tfe"> { 3229 3230 let mayLoad = 0, mayStore = 1, vdst = 0 in { 3231 3232 def "" : FLAT_Pseudo <NAME, outs, ins, []>; 3233 3234 def _ci : FLAT_Real_ci <op.CI, NAME, outs, ins, asm>; 3235 3236 def _vi : FLAT_Real_vi <op.VI, NAME, outs, ins, asm>; 3237 } 3238} 3239 3240multiclass FLAT_ATOMIC <flat op, string asm_name, RegisterClass vdst_rc, 3241 ValueType vt, SDPatternOperator atomic = null_frag, 3242 ValueType data_vt = vt, 3243 RegisterClass data_rc = vdst_rc, 3244 string asm_noret = asm_name#" $addr, $data"#"$slc"#"$tfe"> { 3245 3246 let mayLoad = 1, mayStore = 1, glc = 0, vdst = 0 in { 3247 def "" : FLAT_Pseudo <NAME, (outs), 3248 (ins VReg_64:$addr, data_rc:$data, 3249 slc:$slc, tfe:$tfe), []>, 3250 AtomicNoRet <NAME, 0>; 3251 3252 def _ci : FLAT_Real_ci <op.CI, NAME, (outs), 3253 (ins VReg_64:$addr, data_rc:$data, 3254 slc:$slc, tfe:$tfe), 3255 asm_noret>; 3256 3257 def _vi : FLAT_Real_vi <op.VI, NAME, (outs), 3258 (ins VReg_64:$addr, data_rc:$data, 3259 slc:$slc, tfe:$tfe), 3260 asm_noret>; 3261 } 3262 3263 let glc = 1, hasPostISelHook = 1 in { 3264 defm _RTN : FLAT_AtomicRet_m < 3265 op, (outs vdst_rc:$vdst), 3266 (ins VReg_64:$addr, data_rc:$data, slc:$slc, tfe:$tfe), 3267 asm_name#" $vdst, $addr, $data glc$slc$tfe", 3268 [(set vt:$vdst, 3269 (atomic (FLATAtomic i64:$addr, i1:$slc, i1:$tfe), data_vt:$data))] 3270 >; 3271 } 3272} 3273 3274class MIMG_Mask <string op, int channels> { 3275 string Op = op; 3276 int Channels = channels; 3277} 3278 3279class mimg <bits<7> si, bits<7> vi = si> { 3280 field bits<7> SI = si; 3281 field bits<7> VI = vi; 3282} 3283 3284class MIMG_Helper <dag outs, dag ins, string asm, 3285 string dns=""> : MIMG<outs, ins, asm,[]> { 3286 let mayLoad = 1; 3287 let mayStore = 0; 3288 let hasPostISelHook = 1; 3289 let DecoderNamespace = dns; 3290 let isAsmParserOnly = !if(!eq(dns,""), 1, 0); 3291 let AsmMatchConverter = "cvtMIMG"; 3292} 3293 3294class MIMG_NoSampler_Helper <bits<7> op, string asm, 3295 RegisterClass dst_rc, 3296 RegisterClass addr_rc, 3297 string dns=""> : MIMG_Helper < 3298 (outs dst_rc:$vdata), 3299 (ins addr_rc:$vaddr, SReg_256:$srsrc, 3300 dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc, 3301 r128:$r128, tfe:$tfe, lwe:$lwe, da:$da), 3302 asm#" $vdata, $vaddr, $srsrc$dmask$unorm$glc$slc$r128$tfe$lwe$da", 3303 dns>, MIMGe<op> { 3304 let ssamp = 0; 3305} 3306 3307multiclass MIMG_NoSampler_Src_Helper <bits<7> op, string asm, 3308 RegisterClass dst_rc, 3309 int channels> { 3310 def _V1 : MIMG_NoSampler_Helper <op, asm, dst_rc, VGPR_32, 3311 !if(!eq(channels, 1), "AMDGPU", "")>, 3312 MIMG_Mask<asm#"_V1", channels>; 3313 def _V2 : MIMG_NoSampler_Helper <op, asm, dst_rc, VReg_64>, 3314 MIMG_Mask<asm#"_V2", channels>; 3315 def _V4 : MIMG_NoSampler_Helper <op, asm, dst_rc, VReg_128>, 3316 MIMG_Mask<asm#"_V4", channels>; 3317} 3318 3319multiclass MIMG_NoSampler <bits<7> op, string asm> { 3320 defm _V1 : MIMG_NoSampler_Src_Helper <op, asm, VGPR_32, 1>; 3321 defm _V2 : MIMG_NoSampler_Src_Helper <op, asm, VReg_64, 2>; 3322 defm _V3 : MIMG_NoSampler_Src_Helper <op, asm, VReg_96, 3>; 3323 defm _V4 : MIMG_NoSampler_Src_Helper <op, asm, VReg_128, 4>; 3324} 3325 3326class MIMG_Store_Helper <bits<7> op, string asm, 3327 RegisterClass data_rc, 3328 RegisterClass addr_rc> : MIMG_Helper < 3329 (outs), 3330 (ins data_rc:$vdata, addr_rc:$vaddr, SReg_256:$srsrc, 3331 dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc, 3332 r128:$r128, tfe:$tfe, lwe:$lwe, da:$da), 3333 asm#" $vdata, $vaddr, $srsrc$dmask$unorm$glc$slc$r128$tfe$lwe$da" 3334 >, MIMGe<op> { 3335 let ssamp = 0; 3336 let mayLoad = 1; // TableGen requires this for matching with the intrinsics 3337 let mayStore = 1; 3338 let hasSideEffects = 1; 3339 let hasPostISelHook = 0; 3340} 3341 3342multiclass MIMG_Store_Addr_Helper <bits<7> op, string asm, 3343 RegisterClass data_rc, 3344 int channels> { 3345 def _V1 : MIMG_Store_Helper <op, asm, data_rc, VGPR_32>, 3346 MIMG_Mask<asm#"_V1", channels>; 3347 def _V2 : MIMG_Store_Helper <op, asm, data_rc, VReg_64>, 3348 MIMG_Mask<asm#"_V2", channels>; 3349 def _V4 : MIMG_Store_Helper <op, asm, data_rc, VReg_128>, 3350 MIMG_Mask<asm#"_V4", channels>; 3351} 3352 3353multiclass MIMG_Store <bits<7> op, string asm> { 3354 defm _V1 : MIMG_Store_Addr_Helper <op, asm, VGPR_32, 1>; 3355 defm _V2 : MIMG_Store_Addr_Helper <op, asm, VReg_64, 2>; 3356 defm _V3 : MIMG_Store_Addr_Helper <op, asm, VReg_96, 3>; 3357 defm _V4 : MIMG_Store_Addr_Helper <op, asm, VReg_128, 4>; 3358} 3359 3360class MIMG_Atomic_Helper <string asm, RegisterClass data_rc, 3361 RegisterClass addr_rc> : MIMG_Helper < 3362 (outs data_rc:$vdst), 3363 (ins data_rc:$vdata, addr_rc:$vaddr, SReg_256:$srsrc, 3364 dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc, 3365 r128:$r128, tfe:$tfe, lwe:$lwe, da:$da), 3366 asm#" $vdst, $vaddr, $srsrc$dmask$unorm$glc$slc$r128$tfe$lwe$da" 3367 > { 3368 let mayStore = 1; 3369 let hasSideEffects = 1; 3370 let hasPostISelHook = 0; 3371 let Constraints = "$vdst = $vdata"; 3372 let AsmMatchConverter = "cvtMIMGAtomic"; 3373} 3374 3375class MIMG_Atomic_Real_si<mimg op, string name, string asm, 3376 RegisterClass data_rc, RegisterClass addr_rc> : 3377 MIMG_Atomic_Helper<asm, data_rc, addr_rc>, 3378 SIMCInstr<name, SIEncodingFamily.SI>, 3379 MIMGe<op.SI> { 3380 let isCodeGenOnly = 0; 3381 let AssemblerPredicates = [isSICI]; 3382 let DecoderNamespace = "SICI"; 3383 let DisableDecoder = DisableSIDecoder; 3384} 3385 3386class MIMG_Atomic_Real_vi<mimg op, string name, string asm, 3387 RegisterClass data_rc, RegisterClass addr_rc> : 3388 MIMG_Atomic_Helper<asm, data_rc, addr_rc>, 3389 SIMCInstr<name, SIEncodingFamily.VI>, 3390 MIMGe<op.VI> { 3391 let isCodeGenOnly = 0; 3392 let AssemblerPredicates = [isVI]; 3393 let DecoderNamespace = "VI"; 3394 let DisableDecoder = DisableVIDecoder; 3395} 3396 3397multiclass MIMG_Atomic_Helper_m <mimg op, string name, string asm, 3398 RegisterClass data_rc, RegisterClass addr_rc> { 3399 let isPseudo = 1, isCodeGenOnly = 1 in { 3400 def "" : MIMG_Atomic_Helper<asm, data_rc, addr_rc>, 3401 SIMCInstr<name, SIEncodingFamily.NONE>; 3402 } 3403 3404 let ssamp = 0 in { 3405 def _si : MIMG_Atomic_Real_si<op, name, asm, data_rc, addr_rc>; 3406 3407 def _vi : MIMG_Atomic_Real_vi<op, name, asm, data_rc, addr_rc>; 3408 } 3409} 3410 3411multiclass MIMG_Atomic <mimg op, string asm, RegisterClass data_rc = VGPR_32> { 3412 defm _V1 : MIMG_Atomic_Helper_m <op, asm # "_V1", asm, data_rc, VGPR_32>; 3413 defm _V2 : MIMG_Atomic_Helper_m <op, asm # "_V2", asm, data_rc, VReg_64>; 3414 defm _V4 : MIMG_Atomic_Helper_m <op, asm # "_V3", asm, data_rc, VReg_128>; 3415} 3416 3417class MIMG_Sampler_Helper <bits<7> op, string asm, 3418 RegisterClass dst_rc, 3419 RegisterClass src_rc, 3420 int wqm, 3421 string dns=""> : MIMG_Helper < 3422 (outs dst_rc:$vdata), 3423 (ins src_rc:$vaddr, SReg_256:$srsrc, SReg_128:$ssamp, 3424 dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc, 3425 r128:$r128, tfe:$tfe, lwe:$lwe, da:$da), 3426 asm#" $vdata, $vaddr, $srsrc, $ssamp$dmask$unorm$glc$slc$r128$tfe$lwe$da", 3427 dns>, MIMGe<op> { 3428 let WQM = wqm; 3429} 3430 3431multiclass MIMG_Sampler_Src_Helper <bits<7> op, string asm, 3432 RegisterClass dst_rc, 3433 int channels, int wqm> { 3434 def _V1 : MIMG_Sampler_Helper <op, asm, dst_rc, VGPR_32, wqm, 3435 !if(!eq(channels, 1), "AMDGPU", "")>, 3436 MIMG_Mask<asm#"_V1", channels>; 3437 def _V2 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_64, wqm>, 3438 MIMG_Mask<asm#"_V2", channels>; 3439 def _V4 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_128, wqm>, 3440 MIMG_Mask<asm#"_V4", channels>; 3441 def _V8 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_256, wqm>, 3442 MIMG_Mask<asm#"_V8", channels>; 3443 def _V16 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_512, wqm>, 3444 MIMG_Mask<asm#"_V16", channels>; 3445} 3446 3447multiclass MIMG_Sampler <bits<7> op, string asm, int wqm=0> { 3448 defm _V1 : MIMG_Sampler_Src_Helper<op, asm, VGPR_32, 1, wqm>; 3449 defm _V2 : MIMG_Sampler_Src_Helper<op, asm, VReg_64, 2, wqm>; 3450 defm _V3 : MIMG_Sampler_Src_Helper<op, asm, VReg_96, 3, wqm>; 3451 defm _V4 : MIMG_Sampler_Src_Helper<op, asm, VReg_128, 4, wqm>; 3452} 3453 3454multiclass MIMG_Sampler_WQM <bits<7> op, string asm> : MIMG_Sampler<op, asm, 1>; 3455 3456class MIMG_Gather_Helper <bits<7> op, string asm, 3457 RegisterClass dst_rc, 3458 RegisterClass src_rc, int wqm> : MIMG < 3459 (outs dst_rc:$vdata), 3460 (ins src_rc:$vaddr, SReg_256:$srsrc, SReg_128:$ssamp, 3461 dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc, 3462 r128:$r128, tfe:$tfe, lwe:$lwe, da:$da), 3463 asm#" $vdata, $vaddr, $srsrc, $ssamp$dmask$unorm$glc$slc$r128$tfe$lwe$da", 3464 []>, MIMGe<op> { 3465 let mayLoad = 1; 3466 let mayStore = 0; 3467 3468 // DMASK was repurposed for GATHER4. 4 components are always 3469 // returned and DMASK works like a swizzle - it selects 3470 // the component to fetch. The only useful DMASK values are 3471 // 1=red, 2=green, 4=blue, 8=alpha. (e.g. 1 returns 3472 // (red,red,red,red) etc.) The ISA document doesn't mention 3473 // this. 3474 // Therefore, disable all code which updates DMASK by setting these two: 3475 let MIMG = 0; 3476 let hasPostISelHook = 0; 3477 let WQM = wqm; 3478 3479 let isAsmParserOnly = 1; // TBD: fix it later 3480} 3481 3482multiclass MIMG_Gather_Src_Helper <bits<7> op, string asm, 3483 RegisterClass dst_rc, 3484 int channels, int wqm> { 3485 def _V1 : MIMG_Gather_Helper <op, asm, dst_rc, VGPR_32, wqm>, 3486 MIMG_Mask<asm#"_V1", channels>; 3487 def _V2 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_64, wqm>, 3488 MIMG_Mask<asm#"_V2", channels>; 3489 def _V4 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_128, wqm>, 3490 MIMG_Mask<asm#"_V4", channels>; 3491 def _V8 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_256, wqm>, 3492 MIMG_Mask<asm#"_V8", channels>; 3493 def _V16 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_512, wqm>, 3494 MIMG_Mask<asm#"_V16", channels>; 3495} 3496 3497multiclass MIMG_Gather <bits<7> op, string asm, int wqm=0> { 3498 defm _V1 : MIMG_Gather_Src_Helper<op, asm, VGPR_32, 1, wqm>; 3499 defm _V2 : MIMG_Gather_Src_Helper<op, asm, VReg_64, 2, wqm>; 3500 defm _V3 : MIMG_Gather_Src_Helper<op, asm, VReg_96, 3, wqm>; 3501 defm _V4 : MIMG_Gather_Src_Helper<op, asm, VReg_128, 4, wqm>; 3502} 3503 3504multiclass MIMG_Gather_WQM <bits<7> op, string asm> : MIMG_Gather<op, asm, 1>; 3505 3506//===----------------------------------------------------------------------===// 3507// Vector instruction mappings 3508//===----------------------------------------------------------------------===// 3509 3510// Maps an opcode in e32 form to its e64 equivalent 3511def getVOPe64 : InstrMapping { 3512 let FilterClass = "VOP"; 3513 let RowFields = ["OpName"]; 3514 let ColFields = ["Size"]; 3515 let KeyCol = ["4"]; 3516 let ValueCols = [["8"]]; 3517} 3518 3519// Maps an opcode in e64 form to its e32 equivalent 3520def getVOPe32 : InstrMapping { 3521 let FilterClass = "VOP"; 3522 let RowFields = ["OpName"]; 3523 let ColFields = ["Size"]; 3524 let KeyCol = ["8"]; 3525 let ValueCols = [["4"]]; 3526} 3527 3528def getMaskedMIMGOp : InstrMapping { 3529 let FilterClass = "MIMG_Mask"; 3530 let RowFields = ["Op"]; 3531 let ColFields = ["Channels"]; 3532 let KeyCol = ["4"]; 3533 let ValueCols = [["1"], ["2"], ["3"] ]; 3534} 3535 3536// Maps an commuted opcode to its original version 3537def getCommuteOrig : InstrMapping { 3538 let FilterClass = "VOP2_REV"; 3539 let RowFields = ["RevOp"]; 3540 let ColFields = ["IsOrig"]; 3541 let KeyCol = ["0"]; 3542 let ValueCols = [["1"]]; 3543} 3544 3545// Maps an original opcode to its commuted version 3546def getCommuteRev : InstrMapping { 3547 let FilterClass = "VOP2_REV"; 3548 let RowFields = ["RevOp"]; 3549 let ColFields = ["IsOrig"]; 3550 let KeyCol = ["1"]; 3551 let ValueCols = [["0"]]; 3552} 3553 3554def getCommuteCmpOrig : InstrMapping { 3555 let FilterClass = "VOP2_REV"; 3556 let RowFields = ["RevOp"]; 3557 let ColFields = ["IsOrig"]; 3558 let KeyCol = ["0"]; 3559 let ValueCols = [["1"]]; 3560} 3561 3562// Maps an original opcode to its commuted version 3563def getCommuteCmpRev : InstrMapping { 3564 let FilterClass = "VOP2_REV"; 3565 let RowFields = ["RevOp"]; 3566 let ColFields = ["IsOrig"]; 3567 let KeyCol = ["1"]; 3568 let ValueCols = [["0"]]; 3569} 3570 3571 3572def getMCOpcodeGen : InstrMapping { 3573 let FilterClass = "SIMCInstr"; 3574 let RowFields = ["PseudoInstr"]; 3575 let ColFields = ["Subtarget"]; 3576 let KeyCol = [!cast<string>(SIEncodingFamily.NONE)]; 3577 let ValueCols = [[!cast<string>(SIEncodingFamily.SI)], 3578 [!cast<string>(SIEncodingFamily.VI)]]; 3579} 3580 3581def getAddr64Inst : InstrMapping { 3582 let FilterClass = "MUBUFAddr64Table"; 3583 let RowFields = ["OpName"]; 3584 let ColFields = ["IsAddr64"]; 3585 let KeyCol = ["0"]; 3586 let ValueCols = [["1"]]; 3587} 3588 3589// Maps an atomic opcode to its version with a return value. 3590def getAtomicRetOp : InstrMapping { 3591 let FilterClass = "AtomicNoRet"; 3592 let RowFields = ["NoRetOp"]; 3593 let ColFields = ["IsRet"]; 3594 let KeyCol = ["0"]; 3595 let ValueCols = [["1"]]; 3596} 3597 3598// Maps an atomic opcode to its returnless version. 3599def getAtomicNoRetOp : InstrMapping { 3600 let FilterClass = "AtomicNoRet"; 3601 let RowFields = ["NoRetOp"]; 3602 let ColFields = ["IsRet"]; 3603 let KeyCol = ["1"]; 3604 let ValueCols = [["0"]]; 3605} 3606 3607include "SIInstructions.td" 3608include "CIInstructions.td" 3609include "VIInstructions.td" 3610