1//===-- SOPInstructions.td - SOP Instruction Definitions ------------------===// 2// 3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4// See https://llvm.org/LICENSE.txt for license information. 5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6// 7//===----------------------------------------------------------------------===// 8 9def GPRIdxModeMatchClass : AsmOperandClass { 10 let Name = "GPRIdxMode"; 11 let PredicateMethod = "isGPRIdxMode"; 12 let ParserMethod = "parseGPRIdxMode"; 13 let RenderMethod = "addImmOperands"; 14} 15 16def GPRIdxMode : Operand<i32> { 17 let PrintMethod = "printVGPRIndexMode"; 18 let ParserMatchClass = GPRIdxModeMatchClass; 19 let OperandType = "OPERAND_IMMEDIATE"; 20} 21 22class SOP_Pseudo<string opName, dag outs, dag ins, string asmOps, 23 list<dag> pattern=[]> : 24 InstSI<outs, ins, "", pattern>, 25 SIMCInstr<opName, SIEncodingFamily.NONE> { 26 27 let isPseudo = 1; 28 let isCodeGenOnly = 1; 29 30 string Mnemonic = opName; 31 string AsmOperands = asmOps; 32 33 bits<1> has_sdst = 0; 34} 35 36//===----------------------------------------------------------------------===// 37// SOP1 Instructions 38//===----------------------------------------------------------------------===// 39 40class SOP1_Pseudo <string opName, dag outs, dag ins, 41 string asmOps, list<dag> pattern=[]> : 42 SOP_Pseudo<opName, outs, ins, asmOps, pattern> { 43 44 let mayLoad = 0; 45 let mayStore = 0; 46 let hasSideEffects = 0; 47 let SALU = 1; 48 let SOP1 = 1; 49 let SchedRW = [WriteSALU]; 50 let Size = 4; 51 let UseNamedOperandTable = 1; 52 53 bits<1> has_src0 = 1; 54 bits<1> has_sdst = 1; 55} 56 57class SOP1_Real<bits<8> op, SOP1_Pseudo ps, string real_name = ps.Mnemonic> : 58 InstSI <ps.OutOperandList, ps.InOperandList, 59 real_name # " " # ps.AsmOperands, []>, 60 Enc32 { 61 62 let SALU = 1; 63 let SOP1 = 1; 64 let isPseudo = 0; 65 let isCodeGenOnly = 0; 66 let Size = 4; 67 68 // copy relevant pseudo op flags 69 let SubtargetPredicate = ps.SubtargetPredicate; 70 let AsmMatchConverter = ps.AsmMatchConverter; 71 let SchedRW = ps.SchedRW; 72 let mayLoad = ps.mayLoad; 73 let mayStore = ps.mayStore; 74 75 // encoding 76 bits<7> sdst; 77 bits<8> src0; 78 79 let Inst{7-0} = !if(ps.has_src0, src0, ?); 80 let Inst{15-8} = op; 81 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 82 let Inst{31-23} = 0x17d; //encoding; 83} 84 85class SOP1_32 <string opName, list<dag> pattern=[], bit tied_in = 0> : SOP1_Pseudo < 86 opName, (outs SReg_32:$sdst), 87 !if(tied_in, (ins SSrc_b32:$src0, SReg_32:$sdst_in), 88 (ins SSrc_b32:$src0)), 89 "$sdst, $src0", pattern> { 90 let Constraints = !if(tied_in, "$sdst = $sdst_in", ""); 91} 92 93// Only register input allowed. 94class SOP1_32R <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 95 opName, (outs SReg_32:$sdst), (ins SReg_32:$src0), 96 "$sdst, $src0", pattern>; 97 98// 32-bit input, no output. 99class SOP1_0_32 <string opName, list<dag> pattern = []> : SOP1_Pseudo < 100 opName, (outs), (ins SSrc_b32:$src0), 101 "$src0", pattern> { 102 let has_sdst = 0; 103} 104 105// Special case for movreld where sdst is treated as a use operand. 106class SOP1_32_movreld <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 107 opName, (outs), (ins SReg_32:$sdst, SSrc_b32:$src0), 108 "$sdst, $src0", pattern>; 109 110// Special case for movreld where sdst is treated as a use operand. 111class SOP1_64_movreld <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 112 opName, (outs), (ins SReg_64:$sdst, SSrc_b64:$src0), 113 "$sdst, $src0", pattern 114>; 115 116class SOP1_0_32R <string opName, list<dag> pattern = []> : SOP1_Pseudo < 117 opName, (outs), (ins SReg_32:$src0), 118 "$src0", pattern> { 119 let has_sdst = 0; 120} 121 122class SOP1_64 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 123 opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0), 124 "$sdst, $src0", pattern 125>; 126 127// Only register input allowed. 128class SOP1_64R <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 129 opName, (outs SReg_64:$sdst), (ins SReg_64:$src0), 130 "$sdst, $src0", pattern 131>; 132 133// 64-bit input, 32-bit output. 134class SOP1_32_64 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 135 opName, (outs SReg_32:$sdst), (ins SSrc_b64:$src0), 136 "$sdst, $src0", pattern 137>; 138 139// 32-bit input, 64-bit output. 140class SOP1_64_32 <string opName, list<dag> pattern=[], bit tied_in = 0> : SOP1_Pseudo < 141 opName, (outs SReg_64:$sdst), 142 !if(tied_in, (ins SSrc_b32:$src0, SReg_64:$sdst_in), 143 (ins SSrc_b32:$src0)), 144 "$sdst, $src0", pattern> { 145 let Constraints = !if(tied_in, "$sdst = $sdst_in", ""); 146} 147 148// no input, 64-bit output. 149class SOP1_64_0 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 150 opName, (outs SReg_64:$sdst), (ins), "$sdst", pattern> { 151 let has_src0 = 0; 152} 153 154// 64-bit input, no output 155class SOP1_1 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 156 opName, (outs), (ins SReg_64:$src0), "$src0", pattern> { 157 let has_sdst = 0; 158} 159 160class UniformUnaryFrag<SDPatternOperator Op> : PatFrag < 161 (ops node:$src0), 162 (Op $src0), 163 [{ return !N->isDivergent(); }]> { 164 // This check is unnecessary as it's captured by the result register 165 // bank constraint. 166 // 167 // FIXME: Should add a way for the emitter to recognize this is a 168 // trivially true predicate to eliminate the check. 169 let GISelPredicateCode = [{return true;}]; 170} 171 172class UniformBinFrag<SDPatternOperator Op> : PatFrag < 173 (ops node:$src0, node:$src1), 174 (Op $src0, $src1), 175 [{ return !N->isDivergent(); }]> { 176 // This check is unnecessary as it's captured by the result register 177 // bank constraint. 178 // 179 // FIXME: Should add a way for the emitter to recognize this is a 180 // trivially true predicate to eliminate the check. 181 let GISelPredicateCode = [{return true;}]; 182} 183 184class DivergentBinFrag<SDPatternOperator Op> : PatFrag < 185 (ops node:$src0, node:$src1), 186 (Op $src0, $src1), 187 [{ return N->isDivergent(); }]> { 188 // This check is unnecessary as it's captured by the result register 189 // bank constraint. 190 // 191 // FIXME: Should add a way for the emitter to recognize this is a 192 // trivially true predicate to eliminate the check. 193 let GISelPredicateCode = [{return true;}]; 194} 195 196 197let isMoveImm = 1 in { 198 let isReMaterializable = 1, isAsCheapAsAMove = 1 in { 199 def S_MOV_B32 : SOP1_32 <"s_mov_b32">; 200 def S_MOV_B64 : SOP1_64 <"s_mov_b64">; 201 } // End isReMaterializable = 1 202 203 let Uses = [SCC] in { 204 def S_CMOV_B32 : SOP1_32 <"s_cmov_b32">; 205 def S_CMOV_B64 : SOP1_64 <"s_cmov_b64">; 206 } // End Uses = [SCC] 207} // End isMoveImm = 1 208 209let Defs = [SCC] in { 210 def S_NOT_B32 : SOP1_32 <"s_not_b32", 211 [(set i32:$sdst, (UniformUnaryFrag<not> i32:$src0))] 212 >; 213 214 def S_NOT_B64 : SOP1_64 <"s_not_b64", 215 [(set i64:$sdst, (UniformUnaryFrag<not> i64:$src0))] 216 >; 217 def S_WQM_B32 : SOP1_32 <"s_wqm_b32">; 218 def S_WQM_B64 : SOP1_64 <"s_wqm_b64">; 219} // End Defs = [SCC] 220 221 222let WaveSizePredicate = isWave32 in { 223def : GCNPat < 224 (int_amdgcn_wqm_vote i1:$src0), 225 (S_WQM_B32 SSrc_b32:$src0) 226>; 227} 228 229let WaveSizePredicate = isWave64 in { 230def : GCNPat < 231 (int_amdgcn_wqm_vote i1:$src0), 232 (S_WQM_B64 SSrc_b64:$src0) 233>; 234} 235 236let isReMaterializable = 1, isAsCheapAsAMove = 1 in { 237def S_BREV_B32 : SOP1_32 <"s_brev_b32", 238 [(set i32:$sdst, (UniformUnaryFrag<bitreverse> i32:$src0))] 239>; 240def S_BREV_B64 : SOP1_64 <"s_brev_b64", 241 [(set i64:$sdst, (UniformUnaryFrag<bitreverse> i64:$src0))] 242>; 243} // End isReMaterializable = 1, isAsCheapAsAMove = 1 244 245let Defs = [SCC] in { 246def S_BCNT0_I32_B32 : SOP1_32 <"s_bcnt0_i32_b32">; 247def S_BCNT0_I32_B64 : SOP1_32_64 <"s_bcnt0_i32_b64">; 248def S_BCNT1_I32_B32 : SOP1_32 <"s_bcnt1_i32_b32", 249 [(set i32:$sdst, (UniformUnaryFrag<ctpop> i32:$src0))] 250>; 251def S_BCNT1_I32_B64 : SOP1_32_64 <"s_bcnt1_i32_b64", 252 [(set i32:$sdst, (UniformUnaryFrag<ctpop> i64:$src0))] 253>; 254} // End Defs = [SCC] 255 256let isReMaterializable = 1 in { 257def S_FF0_I32_B32 : SOP1_32 <"s_ff0_i32_b32">; 258def S_FF0_I32_B64 : SOP1_32_64 <"s_ff0_i32_b64">; 259def S_FF1_I32_B64 : SOP1_32_64 <"s_ff1_i32_b64", 260 [(set i32:$sdst, (UniformUnaryFrag<AMDGPUffbl_b32> i64:$src0))] 261>; 262 263def S_FF1_I32_B32 : SOP1_32 <"s_ff1_i32_b32", 264 [(set i32:$sdst, (UniformUnaryFrag<AMDGPUffbl_b32> i32:$src0))] 265>; 266 267def S_FLBIT_I32_B32 : SOP1_32 <"s_flbit_i32_b32", 268 [(set i32:$sdst, (UniformUnaryFrag<AMDGPUffbh_u32> i32:$src0))] 269>; 270 271def S_FLBIT_I32_B64 : SOP1_32_64 <"s_flbit_i32_b64", 272 [(set i32:$sdst, (UniformUnaryFrag<AMDGPUffbh_u32> i64:$src0))] 273>; 274def S_FLBIT_I32 : SOP1_32 <"s_flbit_i32", 275 [(set i32:$sdst, (UniformUnaryFrag<AMDGPUffbh_i32> i32:$src0))] 276>; 277def S_FLBIT_I32_I64 : SOP1_32_64 <"s_flbit_i32_i64">; 278def S_SEXT_I32_I8 : SOP1_32 <"s_sext_i32_i8", 279 [(set i32:$sdst, (UniformSextInreg<i8> i32:$src0))] 280>; 281def S_SEXT_I32_I16 : SOP1_32 <"s_sext_i32_i16", 282 [(set i32:$sdst, (UniformSextInreg<i16> i32:$src0))] 283>; 284} // End isReMaterializable = 1 285 286def S_BITSET0_B32 : SOP1_32 <"s_bitset0_b32", [], 1>; 287def S_BITSET0_B64 : SOP1_64_32 <"s_bitset0_b64", [], 1>; 288def S_BITSET1_B32 : SOP1_32 <"s_bitset1_b32", [], 1>; 289def S_BITSET1_B64 : SOP1_64_32 <"s_bitset1_b64", [], 1>; 290 291def S_GETPC_B64 : SOP1_64_0 <"s_getpc_b64", 292 [(set i64:$sdst, (int_amdgcn_s_getpc))] 293>; 294 295let isTerminator = 1, isBarrier = 1, SchedRW = [WriteBranch] in { 296 297let isBranch = 1, isIndirectBranch = 1 in { 298def S_SETPC_B64 : SOP1_1 <"s_setpc_b64">; 299} // End isBranch = 1, isIndirectBranch = 1 300 301let isReturn = 1 in { 302// Define variant marked as return rather than branch. 303def S_SETPC_B64_return : SOP1_1<"">; 304} 305} // End isTerminator = 1, isBarrier = 1 306 307let isCall = 1 in { 308def S_SWAPPC_B64 : SOP1_64 <"s_swappc_b64" 309>; 310} 311 312def S_RFE_B64 : SOP1_1 <"s_rfe_b64">; 313 314let hasSideEffects = 1, Uses = [EXEC], Defs = [EXEC, SCC] in { 315 316def S_AND_SAVEEXEC_B64 : SOP1_64 <"s_and_saveexec_b64">; 317def S_OR_SAVEEXEC_B64 : SOP1_64 <"s_or_saveexec_b64">; 318def S_XOR_SAVEEXEC_B64 : SOP1_64 <"s_xor_saveexec_b64">; 319def S_ANDN2_SAVEEXEC_B64 : SOP1_64 <"s_andn2_saveexec_b64">; 320def S_ORN2_SAVEEXEC_B64 : SOP1_64 <"s_orn2_saveexec_b64">; 321def S_NAND_SAVEEXEC_B64 : SOP1_64 <"s_nand_saveexec_b64">; 322def S_NOR_SAVEEXEC_B64 : SOP1_64 <"s_nor_saveexec_b64">; 323def S_XNOR_SAVEEXEC_B64 : SOP1_64 <"s_xnor_saveexec_b64">; 324 325} // End hasSideEffects = 1, Uses = [EXEC], Defs = [EXEC, SCC] 326 327def S_QUADMASK_B32 : SOP1_32 <"s_quadmask_b32">; 328def S_QUADMASK_B64 : SOP1_64 <"s_quadmask_b64">; 329 330let Uses = [M0] in { 331def S_MOVRELS_B32 : SOP1_32R <"s_movrels_b32">; 332def S_MOVRELS_B64 : SOP1_64R <"s_movrels_b64">; 333def S_MOVRELD_B32 : SOP1_32_movreld <"s_movreld_b32">; 334def S_MOVRELD_B64 : SOP1_64_movreld <"s_movreld_b64">; 335} // End Uses = [M0] 336 337let SubtargetPredicate = isGFX6GFX7GFX8GFX9 in { 338def S_CBRANCH_JOIN : SOP1_0_32R <"s_cbranch_join">; 339} // End SubtargetPredicate = isGFX6GFX7GFX8GFX9 340 341let Defs = [SCC] in { 342def S_ABS_I32 : SOP1_32 <"s_abs_i32", 343 [(set i32:$sdst, (UniformUnaryFrag<abs> i32:$src0))] 344 >; 345} // End Defs = [SCC] 346 347let SubtargetPredicate = HasVGPRIndexMode in { 348def S_SET_GPR_IDX_IDX : SOP1_0_32<"s_set_gpr_idx_idx"> { 349 let Uses = [M0, MODE]; 350 let Defs = [M0, MODE]; 351} 352} 353 354let SubtargetPredicate = isGFX9Plus in { 355 let hasSideEffects = 1, Defs = [EXEC, SCC], Uses = [EXEC] in { 356 def S_ANDN1_SAVEEXEC_B64 : SOP1_64<"s_andn1_saveexec_b64">; 357 def S_ORN1_SAVEEXEC_B64 : SOP1_64<"s_orn1_saveexec_b64">; 358 def S_ANDN1_WREXEC_B64 : SOP1_64<"s_andn1_wrexec_b64">; 359 def S_ANDN2_WREXEC_B64 : SOP1_64<"s_andn2_wrexec_b64">; 360 } // End hasSideEffects = 1, Defs = [EXEC, SCC], Uses = [EXEC] 361 362 let isReMaterializable = 1 in 363 def S_BITREPLICATE_B64_B32 : SOP1_64_32<"s_bitreplicate_b64_b32">; 364} // End SubtargetPredicate = isGFX9Plus 365 366let SubtargetPredicate = isGFX10Plus in { 367 let hasSideEffects = 1, Defs = [EXEC, SCC], Uses = [EXEC] in { 368 def S_AND_SAVEEXEC_B32 : SOP1_32<"s_and_saveexec_b32">; 369 def S_OR_SAVEEXEC_B32 : SOP1_32<"s_or_saveexec_b32">; 370 def S_XOR_SAVEEXEC_B32 : SOP1_32<"s_xor_saveexec_b32">; 371 def S_ANDN2_SAVEEXEC_B32 : SOP1_32<"s_andn2_saveexec_b32">; 372 def S_ORN2_SAVEEXEC_B32 : SOP1_32<"s_orn2_saveexec_b32">; 373 def S_NAND_SAVEEXEC_B32 : SOP1_32<"s_nand_saveexec_b32">; 374 def S_NOR_SAVEEXEC_B32 : SOP1_32<"s_nor_saveexec_b32">; 375 def S_XNOR_SAVEEXEC_B32 : SOP1_32<"s_xnor_saveexec_b32">; 376 def S_ANDN1_SAVEEXEC_B32 : SOP1_32<"s_andn1_saveexec_b32">; 377 def S_ORN1_SAVEEXEC_B32 : SOP1_32<"s_orn1_saveexec_b32">; 378 def S_ANDN1_WREXEC_B32 : SOP1_32<"s_andn1_wrexec_b32">; 379 def S_ANDN2_WREXEC_B32 : SOP1_32<"s_andn2_wrexec_b32">; 380 } // End hasSideEffects = 1, Defs = [EXEC, SCC], Uses = [EXEC] 381 382 let Uses = [M0] in { 383 def S_MOVRELSD_2_B32 : SOP1_32<"s_movrelsd_2_b32">; 384 } // End Uses = [M0] 385} // End SubtargetPredicate = isGFX10Plus 386 387//===----------------------------------------------------------------------===// 388// SOP2 Instructions 389//===----------------------------------------------------------------------===// 390 391class SOP2_Pseudo<string opName, dag outs, dag ins, 392 string asmOps, list<dag> pattern=[]> : 393 SOP_Pseudo<opName, outs, ins, asmOps, pattern> { 394 395 let mayLoad = 0; 396 let mayStore = 0; 397 let hasSideEffects = 0; 398 let SALU = 1; 399 let SOP2 = 1; 400 let SchedRW = [WriteSALU]; 401 let UseNamedOperandTable = 1; 402 403 let has_sdst = 1; 404 405 // Pseudo instructions have no encodings, but adding this field here allows 406 // us to do: 407 // let sdst = xxx in { 408 // for multiclasses that include both real and pseudo instructions. 409 // field bits<7> sdst = 0; 410 // let Size = 4; // Do we need size here? 411} 412 413class SOP2_Real<bits<7> op, SOP_Pseudo ps, string real_name = ps.Mnemonic> : 414 InstSI <ps.OutOperandList, ps.InOperandList, 415 real_name # " " # ps.AsmOperands, []>, 416 Enc32 { 417 let SALU = 1; 418 let SOP2 = 1; 419 let isPseudo = 0; 420 let isCodeGenOnly = 0; 421 422 // copy relevant pseudo op flags 423 let SubtargetPredicate = ps.SubtargetPredicate; 424 let AsmMatchConverter = ps.AsmMatchConverter; 425 let UseNamedOperandTable = ps.UseNamedOperandTable; 426 let TSFlags = ps.TSFlags; 427 let SchedRW = ps.SchedRW; 428 let mayLoad = ps.mayLoad; 429 let mayStore = ps.mayStore; 430 431 // encoding 432 bits<7> sdst; 433 bits<8> src0; 434 bits<8> src1; 435 436 let Inst{7-0} = src0; 437 let Inst{15-8} = src1; 438 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 439 let Inst{29-23} = op; 440 let Inst{31-30} = 0x2; // encoding 441} 442 443 444class SOP2_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 445 opName, (outs SReg_32:$sdst), (ins SSrc_b32:$src0, SSrc_b32:$src1), 446 "$sdst, $src0, $src1", pattern 447>; 448 449class SOP2_64 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 450 opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0, SSrc_b64:$src1), 451 "$sdst, $src0, $src1", pattern 452>; 453 454class SOP2_64_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 455 opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0, SSrc_b32:$src1), 456 "$sdst, $src0, $src1", pattern 457>; 458 459class SOP2_64_32_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 460 opName, (outs SReg_64:$sdst), (ins SSrc_b32:$src0, SSrc_b32:$src1), 461 "$sdst, $src0, $src1", pattern 462>; 463 464 465let Defs = [SCC] in { // Carry out goes to SCC 466let isCommutable = 1 in { 467def S_ADD_U32 : SOP2_32 <"s_add_u32">; 468def S_ADD_I32 : SOP2_32 <"s_add_i32", 469 [(set i32:$sdst, (UniformBinFrag<add> SSrc_b32:$src0, SSrc_b32:$src1))] 470>; 471} // End isCommutable = 1 472 473def S_SUB_U32 : SOP2_32 <"s_sub_u32">; 474def S_SUB_I32 : SOP2_32 <"s_sub_i32", 475 [(set i32:$sdst, (UniformBinFrag<sub> SSrc_b32:$src0, SSrc_b32:$src1))] 476>; 477 478let Uses = [SCC] in { // Carry in comes from SCC 479let isCommutable = 1 in { 480def S_ADDC_U32 : SOP2_32 <"s_addc_u32", 481 [(set i32:$sdst, (UniformBinFrag<adde> (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))]>; 482} // End isCommutable = 1 483 484def S_SUBB_U32 : SOP2_32 <"s_subb_u32", 485 [(set i32:$sdst, (UniformBinFrag<sube> (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))]>; 486} // End Uses = [SCC] 487 488let isCommutable = 1 in { 489def S_MIN_I32 : SOP2_32 <"s_min_i32", 490 [(set i32:$sdst, (UniformBinFrag<smin> i32:$src0, i32:$src1))] 491>; 492def S_MIN_U32 : SOP2_32 <"s_min_u32", 493 [(set i32:$sdst, (UniformBinFrag<umin> i32:$src0, i32:$src1))] 494>; 495def S_MAX_I32 : SOP2_32 <"s_max_i32", 496 [(set i32:$sdst, (UniformBinFrag<smax> i32:$src0, i32:$src1))] 497>; 498def S_MAX_U32 : SOP2_32 <"s_max_u32", 499 [(set i32:$sdst, (UniformBinFrag<umax> i32:$src0, i32:$src1))] 500>; 501} // End isCommutable = 1 502} // End Defs = [SCC] 503 504// This pattern is restricted to certain subtargets (practically GFX8Plus) 505// because isel sometimes produces an sreg_64 copy to SCC as a by-product 506// of this pattern, and only for subtargets with hasScalarCompareEq64 507// is it possible to map such copy to a single instruction (S_CMP_LG_U64). 508class SelectPat<SDPatternOperator select> : PatFrag < 509 (ops node:$src1, node:$src2), 510 (select SCC, $src1, $src2), 511 [{ return Subtarget->hasScalarCompareEq64() && 512 N->getOperand(0)->hasOneUse() && !N->isDivergent(); }] 513>; 514 515let Uses = [SCC] in { 516 let AddedComplexity = 20 in { 517 def S_CSELECT_B32 : SOP2_32 <"s_cselect_b32", 518 [(set i32:$sdst, (SelectPat<select> i32:$src0, i32:$src1))] 519 >; 520 } 521 522 def S_CSELECT_B64 : SOP2_64 <"s_cselect_b64">; 523} // End Uses = [SCC] 524 525let Defs = [SCC] in { 526let isCommutable = 1 in { 527def S_AND_B32 : SOP2_32 <"s_and_b32", 528 [(set i32:$sdst, (UniformBinFrag<and> i32:$src0, i32:$src1))] 529>; 530 531def S_AND_B64 : SOP2_64 <"s_and_b64", 532 [(set i64:$sdst, (UniformBinFrag<and> i64:$src0, i64:$src1))] 533>; 534 535def S_OR_B32 : SOP2_32 <"s_or_b32", 536 [(set i32:$sdst, (UniformBinFrag<or> i32:$src0, i32:$src1))] 537>; 538 539def S_OR_B64 : SOP2_64 <"s_or_b64", 540 [(set i64:$sdst, (UniformBinFrag<or> i64:$src0, i64:$src1))] 541>; 542 543def S_XOR_B32 : SOP2_32 <"s_xor_b32", 544 [(set i32:$sdst, (UniformBinFrag<xor> i32:$src0, i32:$src1))] 545>; 546 547def S_XOR_B64 : SOP2_64 <"s_xor_b64", 548 [(set i64:$sdst, (UniformBinFrag<xor> i64:$src0, i64:$src1))] 549>; 550 551def S_XNOR_B32 : SOP2_32 <"s_xnor_b32", 552 [(set i32:$sdst, (UniformUnaryFrag<not> (xor_oneuse i32:$src0, i32:$src1)))] 553>; 554 555def S_XNOR_B64 : SOP2_64 <"s_xnor_b64", 556 [(set i64:$sdst, (UniformUnaryFrag<not> (xor_oneuse i64:$src0, i64:$src1)))] 557>; 558 559def S_NAND_B32 : SOP2_32 <"s_nand_b32", 560 [(set i32:$sdst, (UniformUnaryFrag<not> (and_oneuse i32:$src0, i32:$src1)))] 561>; 562 563def S_NAND_B64 : SOP2_64 <"s_nand_b64", 564 [(set i64:$sdst, (UniformUnaryFrag<not> (and_oneuse i64:$src0, i64:$src1)))] 565>; 566 567def S_NOR_B32 : SOP2_32 <"s_nor_b32", 568 [(set i32:$sdst, (UniformUnaryFrag<not> (or_oneuse i32:$src0, i32:$src1)))] 569>; 570 571def S_NOR_B64 : SOP2_64 <"s_nor_b64", 572 [(set i64:$sdst, (UniformUnaryFrag<not> (or_oneuse i64:$src0, i64:$src1)))] 573>; 574} // End isCommutable = 1 575 576// There are also separate patterns for types other than i32 577def S_ANDN2_B32 : SOP2_32 <"s_andn2_b32", 578 [(set i32:$sdst, (UniformBinFrag<and> i32:$src0, (UniformUnaryFrag<not> i32:$src1)))] 579>; 580 581def S_ANDN2_B64 : SOP2_64 <"s_andn2_b64", 582 [(set i64:$sdst, (UniformBinFrag<and> i64:$src0, (UniformUnaryFrag<not> i64:$src1)))] 583>; 584 585def S_ORN2_B32 : SOP2_32 <"s_orn2_b32", 586 [(set i32:$sdst, (UniformBinFrag<or> i32:$src0, (UniformUnaryFrag<not> i32:$src1)))] 587>; 588 589def S_ORN2_B64 : SOP2_64 <"s_orn2_b64", 590 [(set i64:$sdst, (UniformBinFrag<or> i64:$src0, (UniformUnaryFrag<not> i64:$src1)))] 591>; 592} // End Defs = [SCC] 593 594// Use added complexity so these patterns are preferred to the VALU patterns. 595let AddedComplexity = 1 in { 596 597let Defs = [SCC] in { 598// TODO: b64 versions require VOP3 change since v_lshlrev_b64 is VOP3 599def S_LSHL_B32 : SOP2_32 <"s_lshl_b32", 600 [(set SReg_32:$sdst, (UniformBinFrag<cshl_32> (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))] 601>; 602def S_LSHL_B64 : SOP2_64_32 <"s_lshl_b64", 603 [(set SReg_64:$sdst, (UniformBinFrag<cshl_64> (i64 SSrc_b64:$src0), (i32 SSrc_b32:$src1)))] 604>; 605def S_LSHR_B32 : SOP2_32 <"s_lshr_b32", 606 [(set SReg_32:$sdst, (UniformBinFrag<csrl_32> (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))] 607>; 608def S_LSHR_B64 : SOP2_64_32 <"s_lshr_b64", 609 [(set SReg_64:$sdst, (UniformBinFrag<csrl_64> (i64 SSrc_b64:$src0), (i32 SSrc_b32:$src1)))] 610>; 611def S_ASHR_I32 : SOP2_32 <"s_ashr_i32", 612 [(set SReg_32:$sdst, (UniformBinFrag<csra_32> (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))] 613>; 614def S_ASHR_I64 : SOP2_64_32 <"s_ashr_i64", 615 [(set SReg_64:$sdst, (UniformBinFrag<csra_64> (i64 SSrc_b64:$src0), (i32 SSrc_b32:$src1)))] 616>; 617} // End Defs = [SCC] 618 619let isReMaterializable = 1 in { 620def S_BFM_B32 : SOP2_32 <"s_bfm_b32", 621 [(set i32:$sdst, (UniformBinFrag<AMDGPUbfm> i32:$src0, i32:$src1))]>; 622def S_BFM_B64 : SOP2_64_32_32 <"s_bfm_b64">; 623 624def S_MUL_I32 : SOP2_32 <"s_mul_i32", 625 [(set i32:$sdst, (UniformBinFrag<mul> i32:$src0, i32:$src1))]> { 626 let isCommutable = 1; 627} 628} // End isReMaterializable = 1 629} // End AddedComplexity = 1 630 631let Defs = [SCC] in { 632def S_BFE_U32 : SOP2_32 <"s_bfe_u32">; 633def S_BFE_I32 : SOP2_32 <"s_bfe_i32">; 634def S_BFE_U64 : SOP2_64_32 <"s_bfe_u64">; 635def S_BFE_I64 : SOP2_64_32 <"s_bfe_i64">; 636} // End Defs = [SCC] 637 638def S_CBRANCH_G_FORK : SOP2_Pseudo < 639 "s_cbranch_g_fork", (outs), 640 (ins SCSrc_b64:$src0, SCSrc_b64:$src1), 641 "$src0, $src1" 642> { 643 let has_sdst = 0; 644 let SubtargetPredicate = isGFX6GFX7GFX8GFX9; 645} 646 647let Defs = [SCC] in { 648def S_ABSDIFF_I32 : SOP2_32 <"s_absdiff_i32">; 649} // End Defs = [SCC] 650 651let SubtargetPredicate = isGFX8GFX9 in { 652 def S_RFE_RESTORE_B64 : SOP2_Pseudo < 653 "s_rfe_restore_b64", (outs), 654 (ins SSrc_b64:$src0, SSrc_b32:$src1), 655 "$src0, $src1" 656 > { 657 let hasSideEffects = 1; 658 let has_sdst = 0; 659 } 660} 661 662let SubtargetPredicate = isGFX9Plus in { 663 let isReMaterializable = 1 in { 664 def S_PACK_LL_B32_B16 : SOP2_32<"s_pack_ll_b32_b16">; 665 def S_PACK_LH_B32_B16 : SOP2_32<"s_pack_lh_b32_b16">; 666 def S_PACK_HH_B32_B16 : SOP2_32<"s_pack_hh_b32_b16">; 667 } // End isReMaterializable = 1 668 669 let Defs = [SCC] in { 670 def S_LSHL1_ADD_U32 : SOP2_32<"s_lshl1_add_u32", 671 [(set i32:$sdst, (shl1_add SSrc_b32:$src0, SSrc_b32:$src1))] 672 >; 673 def S_LSHL2_ADD_U32 : SOP2_32<"s_lshl2_add_u32", 674 [(set i32:$sdst, (shl2_add SSrc_b32:$src0, SSrc_b32:$src1))] 675 >; 676 def S_LSHL3_ADD_U32 : SOP2_32<"s_lshl3_add_u32", 677 [(set i32:$sdst, (shl3_add SSrc_b32:$src0, SSrc_b32:$src1))] 678 >; 679 def S_LSHL4_ADD_U32 : SOP2_32<"s_lshl4_add_u32", 680 [(set i32:$sdst, (shl4_add SSrc_b32:$src0, SSrc_b32:$src1))] 681 >; 682 } // End Defs = [SCC] 683 684 let isCommutable = 1, isReMaterializable = 1 in { 685 def S_MUL_HI_U32 : SOP2_32<"s_mul_hi_u32", 686 [(set i32:$sdst, (UniformBinFrag<mulhu> SSrc_b32:$src0, SSrc_b32:$src1))]>; 687 def S_MUL_HI_I32 : SOP2_32<"s_mul_hi_i32", 688 [(set i32:$sdst, (UniformBinFrag<mulhs> SSrc_b32:$src0, SSrc_b32:$src1))]>; 689 } // End isCommutable = 1, isReMaterializable = 1 690} // End SubtargetPredicate = isGFX9Plus 691 692//===----------------------------------------------------------------------===// 693// SOPK Instructions 694//===----------------------------------------------------------------------===// 695 696class SOPK_Pseudo <string opName, dag outs, dag ins, 697 string asmOps, list<dag> pattern=[]> : 698 InstSI <outs, ins, "", pattern>, 699 SIMCInstr<opName, SIEncodingFamily.NONE> { 700 let isPseudo = 1; 701 let isCodeGenOnly = 1; 702 let mayLoad = 0; 703 let mayStore = 0; 704 let hasSideEffects = 0; 705 let SALU = 1; 706 let SOPK = 1; 707 let SchedRW = [WriteSALU]; 708 let UseNamedOperandTable = 1; 709 string Mnemonic = opName; 710 string AsmOperands = asmOps; 711 712 bits<1> has_sdst = 1; 713} 714 715class SOPK_Real<SOPK_Pseudo ps> : 716 InstSI <ps.OutOperandList, ps.InOperandList, 717 ps.Mnemonic # " " # ps.AsmOperands, []> { 718 let SALU = 1; 719 let SOPK = 1; 720 let isPseudo = 0; 721 let isCodeGenOnly = 0; 722 723 // copy relevant pseudo op flags 724 let SubtargetPredicate = ps.SubtargetPredicate; 725 let AsmMatchConverter = ps.AsmMatchConverter; 726 let DisableEncoding = ps.DisableEncoding; 727 let Constraints = ps.Constraints; 728 let SchedRW = ps.SchedRW; 729 let mayLoad = ps.mayLoad; 730 let mayStore = ps.mayStore; 731 let isBranch = ps.isBranch; 732 let isCall = ps.isCall; 733 734 // encoding 735 bits<7> sdst; 736 bits<16> simm16; 737 bits<32> imm; 738} 739 740class SOPK_Real32<bits<5> op, SOPK_Pseudo ps> : 741 SOPK_Real <ps>, 742 Enc32 { 743 let Inst{15-0} = simm16; 744 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 745 let Inst{27-23} = op; 746 let Inst{31-28} = 0xb; //encoding 747} 748 749class SOPK_Real64<bits<5> op, SOPK_Pseudo ps> : 750 SOPK_Real<ps>, 751 Enc64 { 752 let Inst{15-0} = simm16; 753 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 754 let Inst{27-23} = op; 755 let Inst{31-28} = 0xb; //encoding 756 let Inst{63-32} = imm; 757} 758 759class SOPKInstTable <bit is_sopk, string cmpOp = ""> { 760 bit IsSOPK = is_sopk; 761 string BaseCmpOp = cmpOp; 762} 763 764class SOPK_32 <string opName, list<dag> pattern=[]> : SOPK_Pseudo < 765 opName, 766 (outs SReg_32:$sdst), 767 (ins s16imm:$simm16), 768 "$sdst, $simm16", 769 pattern>; 770 771class SOPK_32_BR <string opName, list<dag> pattern=[]> : SOPK_Pseudo < 772 opName, 773 (outs), 774 (ins sopp_brtarget:$simm16, SReg_32:$sdst), 775 "$sdst, $simm16", 776 pattern> { 777 let Defs = [EXEC]; 778 let Uses = [EXEC]; 779 let isBranch = 1; 780 let isTerminator = 1; 781 let SchedRW = [WriteBranch]; 782} 783 784class SOPK_SCC <string opName, string base_op, bit isSignExt> : SOPK_Pseudo < 785 opName, 786 (outs), 787 !if(isSignExt, 788 (ins SReg_32:$sdst, s16imm:$simm16), 789 (ins SReg_32:$sdst, u16imm:$simm16)), 790 "$sdst, $simm16", []>, 791 SOPKInstTable<1, base_op>{ 792 let Defs = [SCC]; 793} 794 795class SOPK_32TIE <string opName, list<dag> pattern=[]> : SOPK_Pseudo < 796 opName, 797 (outs SReg_32:$sdst), 798 (ins SReg_32:$src0, s16imm:$simm16), 799 "$sdst, $simm16", 800 pattern 801>; 802 803let isReMaterializable = 1, isMoveImm = 1 in { 804def S_MOVK_I32 : SOPK_32 <"s_movk_i32">; 805} // End isReMaterializable = 1 806let Uses = [SCC] in { 807def S_CMOVK_I32 : SOPK_32 <"s_cmovk_i32">; 808} 809 810let isCompare = 1 in { 811 812// This instruction is disabled for now until we can figure out how to teach 813// the instruction selector to correctly use the S_CMP* vs V_CMP* 814// instructions. 815// 816// When this instruction is enabled the code generator sometimes produces this 817// invalid sequence: 818// 819// SCC = S_CMPK_EQ_I32 SGPR0, imm 820// VCC = COPY SCC 821// VGPR0 = V_CNDMASK VCC, VGPR0, VGPR1 822// 823// def S_CMPK_EQ_I32 : SOPK_SCC <"s_cmpk_eq_i32", 824// [(set i1:$dst, (setcc i32:$src0, imm:$src1, SETEQ))] 825// >; 826 827def S_CMPK_EQ_I32 : SOPK_SCC <"s_cmpk_eq_i32", "s_cmp_eq_i32", 1>; 828def S_CMPK_LG_I32 : SOPK_SCC <"s_cmpk_lg_i32", "s_cmp_lg_i32", 1>; 829def S_CMPK_GT_I32 : SOPK_SCC <"s_cmpk_gt_i32", "s_cmp_gt_i32", 1>; 830def S_CMPK_GE_I32 : SOPK_SCC <"s_cmpk_ge_i32", "s_cmp_ge_i32", 1>; 831def S_CMPK_LT_I32 : SOPK_SCC <"s_cmpk_lt_i32", "s_cmp_lt_i32", 1>; 832def S_CMPK_LE_I32 : SOPK_SCC <"s_cmpk_le_i32", "s_cmp_le_i32", 1>; 833 834let SOPKZext = 1 in { 835def S_CMPK_EQ_U32 : SOPK_SCC <"s_cmpk_eq_u32", "s_cmp_eq_u32", 0>; 836def S_CMPK_LG_U32 : SOPK_SCC <"s_cmpk_lg_u32", "s_cmp_lg_u32", 0>; 837def S_CMPK_GT_U32 : SOPK_SCC <"s_cmpk_gt_u32", "s_cmp_gt_u32", 0>; 838def S_CMPK_GE_U32 : SOPK_SCC <"s_cmpk_ge_u32", "s_cmp_ge_u32", 0>; 839def S_CMPK_LT_U32 : SOPK_SCC <"s_cmpk_lt_u32", "s_cmp_lt_u32", 0>; 840def S_CMPK_LE_U32 : SOPK_SCC <"s_cmpk_le_u32", "s_cmp_le_u32", 0>; 841} // End SOPKZext = 1 842} // End isCompare = 1 843 844let Defs = [SCC], isCommutable = 1, DisableEncoding = "$src0", 845 Constraints = "$sdst = $src0" in { 846 def S_ADDK_I32 : SOPK_32TIE <"s_addk_i32">; 847 def S_MULK_I32 : SOPK_32TIE <"s_mulk_i32">; 848} 849 850let SubtargetPredicate = isGFX6GFX7GFX8GFX9 in 851def S_CBRANCH_I_FORK : SOPK_Pseudo < 852 "s_cbranch_i_fork", 853 (outs), (ins SReg_64:$sdst, sopp_brtarget:$simm16), 854 "$sdst, $simm16" 855>; 856 857let mayLoad = 1 in { 858// s_getreg_b32 should use hasSideEffects = 1 for tablegen to allow 859// its use in the readcyclecounter selection. 860// FIXME: Need to truncate immediate to 16-bits. 861def S_GETREG_B32 : SOPK_Pseudo < 862 "s_getreg_b32", 863 (outs SReg_32:$sdst), (ins hwreg:$simm16), 864 "$sdst, $simm16", 865 [(set i32:$sdst, (int_amdgcn_s_getreg (i32 timm:$simm16)))]> { 866 let SOPKZext = 1; 867 let hasSideEffects = 1; 868} 869} // End mayLoad = 1 870 871let Defs = [MODE], Uses = [MODE] in { 872 873// FIXME: Need to truncate immediate to 16-bits. 874class S_SETREG_B32_Pseudo <list<dag> pattern=[]> : SOPK_Pseudo < 875 "s_setreg_b32", 876 (outs), (ins SReg_32:$sdst, hwreg:$simm16), 877 "$simm16, $sdst", 878 pattern>; 879 880def S_SETREG_B32 : S_SETREG_B32_Pseudo < 881 [(int_amdgcn_s_setreg (i32 timm:$simm16), i32:$sdst)]> { 882 // Use custom inserter to optimize some cases to 883 // S_DENORM_MODE/S_ROUND_MODE/S_SETREG_B32_mode. 884 let usesCustomInserter = 1; 885 let hasSideEffects = 1; 886} 887 888// Variant of SETREG that is guaranteed to only touch FP bits in the MODE 889// register, so doesn't have unmodeled side effects. 890def S_SETREG_B32_mode : S_SETREG_B32_Pseudo { 891 let hasSideEffects = 0; 892} 893 894// FIXME: Not on SI? 895//def S_GETREG_REGRD_B32 : SOPK_32 <sopk<0x14, 0x13>, "s_getreg_regrd_b32">; 896 897class S_SETREG_IMM32_B32_Pseudo : SOPK_Pseudo < 898 "s_setreg_imm32_b32", 899 (outs), (ins i32imm:$imm, hwreg:$simm16), 900 "$simm16, $imm"> { 901 let Size = 8; // Unlike every other SOPK instruction. 902 let has_sdst = 0; 903} 904 905def S_SETREG_IMM32_B32 : S_SETREG_IMM32_B32_Pseudo { 906 let hasSideEffects = 1; 907} 908 909// Variant of SETREG_IMM32 that is guaranteed to only touch FP bits in the MODE 910// register, so doesn't have unmodeled side effects. 911def S_SETREG_IMM32_B32_mode : S_SETREG_IMM32_B32_Pseudo { 912 let hasSideEffects = 0; 913} 914 915} // End Defs = [MODE], Uses = [MODE] 916 917class SOPK_WAITCNT<string opName, list<dag> pat=[]> : 918 SOPK_Pseudo< 919 opName, 920 (outs), 921 (ins SReg_32:$sdst, s16imm:$simm16), 922 "$sdst, $simm16", 923 pat> { 924 let hasSideEffects = 1; 925 let mayLoad = 1; 926 let mayStore = 1; 927 let has_sdst = 1; // First source takes place of sdst in encoding 928} 929 930let SubtargetPredicate = isGFX9Plus in { 931 def S_CALL_B64 : SOPK_Pseudo< 932 "s_call_b64", 933 (outs SReg_64:$sdst), 934 (ins sopp_brtarget:$simm16), 935 "$sdst, $simm16"> { 936 let isCall = 1; 937 } 938} // End SubtargetPredicate = isGFX9Plus 939 940let SubtargetPredicate = isGFX10Plus in { 941 def S_VERSION : SOPK_Pseudo< 942 "s_version", 943 (outs), 944 (ins s16imm:$simm16), 945 "$simm16"> { 946 let has_sdst = 0; 947 } 948 949 def S_SUBVECTOR_LOOP_BEGIN : SOPK_32_BR<"s_subvector_loop_begin">; 950 def S_SUBVECTOR_LOOP_END : SOPK_32_BR<"s_subvector_loop_end">; 951 952 def S_WAITCNT_VSCNT : SOPK_WAITCNT<"s_waitcnt_vscnt">; 953 def S_WAITCNT_VMCNT : SOPK_WAITCNT<"s_waitcnt_vmcnt">; 954 def S_WAITCNT_EXPCNT : SOPK_WAITCNT<"s_waitcnt_expcnt">; 955 def S_WAITCNT_LGKMCNT : SOPK_WAITCNT<"s_waitcnt_lgkmcnt">; 956} // End SubtargetPredicate = isGFX10Plus 957 958//===----------------------------------------------------------------------===// 959// SOPC Instructions 960//===----------------------------------------------------------------------===// 961 962class SOPC_Pseudo<string opName, dag outs, dag ins, 963 string asmOps, list<dag> pattern=[]> : 964 SOP_Pseudo<opName, outs, ins, asmOps, pattern> { 965 let mayLoad = 0; 966 let mayStore = 0; 967 let hasSideEffects = 0; 968 let SALU = 1; 969 let SOPC = 1; 970 let Defs = [SCC]; 971 let SchedRW = [WriteSALU]; 972 let UseNamedOperandTable = 1; 973} 974 975class SOPC_Real<bits<7> op, SOPC_Pseudo ps, string real_name = ps.Mnemonic> : 976 InstSI <ps.OutOperandList, ps.InOperandList, 977 real_name # " " # ps.AsmOperands, []>, 978 Enc32 { 979 let SALU = 1; 980 let SOPC = 1; 981 let isPseudo = 0; 982 let isCodeGenOnly = 0; 983 984 // copy relevant pseudo op flags 985 let SubtargetPredicate = ps.SubtargetPredicate; 986 let OtherPredicates = ps.OtherPredicates; 987 let AsmMatchConverter = ps.AsmMatchConverter; 988 let UseNamedOperandTable = ps.UseNamedOperandTable; 989 let TSFlags = ps.TSFlags; 990 let SchedRW = ps.SchedRW; 991 let mayLoad = ps.mayLoad; 992 let mayStore = ps.mayStore; 993 994 // encoding 995 bits<8> src0; 996 bits<8> src1; 997 998 let Inst{7-0} = src0; 999 let Inst{15-8} = src1; 1000 let Inst{22-16} = op; 1001 let Inst{31-23} = 0x17e; 1002} 1003 1004class SOPC_Base <RegisterOperand rc0, RegisterOperand rc1, 1005 string opName, list<dag> pattern = []> : SOPC_Pseudo < 1006 opName, (outs), (ins rc0:$src0, rc1:$src1), 1007 "$src0, $src1", pattern > { 1008} 1009 1010class SOPC_Helper <RegisterOperand rc, ValueType vt, 1011 string opName, SDPatternOperator cond> : SOPC_Base < 1012 rc, rc, opName, 1013 [(set SCC, (si_setcc_uniform vt:$src0, vt:$src1, cond))] > { 1014} 1015 1016class SOPC_CMP_32<string opName, 1017 SDPatternOperator cond = COND_NULL, string revOp = opName> 1018 : SOPC_Helper<SSrc_b32, i32, opName, cond>, 1019 Commutable_REV<revOp, !eq(revOp, opName)>, 1020 SOPKInstTable<0, opName> { 1021 let isCompare = 1; 1022 let isCommutable = 1; 1023} 1024 1025class SOPC_CMP_64<string opName, 1026 SDPatternOperator cond = COND_NULL, string revOp = opName> 1027 : SOPC_Helper<SSrc_b64, i64, opName, cond>, 1028 Commutable_REV<revOp, !eq(revOp, opName)> { 1029 let isCompare = 1; 1030 let isCommutable = 1; 1031} 1032 1033class SOPC_32<string opName, list<dag> pattern = []> 1034 : SOPC_Base<SSrc_b32, SSrc_b32, opName, pattern>; 1035 1036class SOPC_64_32<string opName, list<dag> pattern = []> 1037 : SOPC_Base<SSrc_b64, SSrc_b32, opName, pattern>; 1038 1039def S_CMP_EQ_I32 : SOPC_CMP_32 <"s_cmp_eq_i32">; 1040def S_CMP_LG_I32 : SOPC_CMP_32 <"s_cmp_lg_i32">; 1041def S_CMP_GT_I32 : SOPC_CMP_32 <"s_cmp_gt_i32", COND_SGT>; 1042def S_CMP_GE_I32 : SOPC_CMP_32 <"s_cmp_ge_i32", COND_SGE>; 1043def S_CMP_LT_I32 : SOPC_CMP_32 <"s_cmp_lt_i32", COND_SLT, "s_cmp_gt_i32">; 1044def S_CMP_LE_I32 : SOPC_CMP_32 <"s_cmp_le_i32", COND_SLE, "s_cmp_ge_i32">; 1045def S_CMP_EQ_U32 : SOPC_CMP_32 <"s_cmp_eq_u32", COND_EQ>; 1046def S_CMP_LG_U32 : SOPC_CMP_32 <"s_cmp_lg_u32", COND_NE>; 1047def S_CMP_GT_U32 : SOPC_CMP_32 <"s_cmp_gt_u32", COND_UGT>; 1048def S_CMP_GE_U32 : SOPC_CMP_32 <"s_cmp_ge_u32", COND_UGE>; 1049def S_CMP_LT_U32 : SOPC_CMP_32 <"s_cmp_lt_u32", COND_ULT, "s_cmp_gt_u32">; 1050def S_CMP_LE_U32 : SOPC_CMP_32 <"s_cmp_le_u32", COND_ULE, "s_cmp_ge_u32">; 1051 1052def S_BITCMP0_B32 : SOPC_32 <"s_bitcmp0_b32">; 1053def S_BITCMP1_B32 : SOPC_32 <"s_bitcmp1_b32">; 1054def S_BITCMP0_B64 : SOPC_64_32 <"s_bitcmp0_b64">; 1055def S_BITCMP1_B64 : SOPC_64_32 <"s_bitcmp1_b64">; 1056let SubtargetPredicate = isGFX6GFX7GFX8GFX9 in 1057def S_SETVSKIP : SOPC_32 <"s_setvskip">; 1058 1059let SubtargetPredicate = isGFX8Plus in { 1060def S_CMP_EQ_U64 : SOPC_CMP_64 <"s_cmp_eq_u64", COND_EQ>; 1061def S_CMP_LG_U64 : SOPC_CMP_64 <"s_cmp_lg_u64", COND_NE>; 1062} // End SubtargetPredicate = isGFX8Plus 1063 1064let SubtargetPredicate = HasVGPRIndexMode in { 1065// Setting the GPR index mode is really writing the fields in the mode 1066// register. We don't want to add mode register uses to every 1067// instruction, and it's too complicated to deal with anyway. This is 1068// modeled just as a side effect. 1069def S_SET_GPR_IDX_ON : SOPC_Pseudo < 1070 "s_set_gpr_idx_on" , 1071 (outs), 1072 (ins SSrc_b32:$src0, GPRIdxMode:$src1), 1073 "$src0, $src1"> { 1074 let Defs = [M0, MODE]; // No scc def 1075 let Uses = [M0, MODE]; // Other bits of mode, m0 unmodified. 1076 let hasSideEffects = 1; // Sets mode.gpr_idx_en 1077 let FixedSize = 1; 1078} 1079} 1080 1081//===----------------------------------------------------------------------===// 1082// SOPP Instructions 1083//===----------------------------------------------------------------------===// 1084 1085class SOPP_Pseudo<string opName, dag ins, 1086 string asmOps = "", list<dag> pattern=[], string keyName = opName> : 1087 SOP_Pseudo<opName, (outs), ins, asmOps, pattern> { 1088 let isPseudo = 1; 1089 let isCodeGenOnly = 1; 1090 let mayLoad = 0; 1091 let mayStore = 0; 1092 let hasSideEffects = 0; 1093 let SALU = 1; 1094 let SOPP = 1; 1095 let FixedSize = 1; 1096 let SchedRW = [WriteSALU]; 1097 let UseNamedOperandTable = 1; 1098 bits <16> simm16; 1099 bits <1> fixed_imm = 0; 1100 string KeyName = keyName; 1101} 1102 1103class SOPPRelaxTable <bit isRelaxed, string keyName, string gfxip> { 1104 bit IsRelaxed = isRelaxed; 1105 string KeyName = keyName # gfxip; 1106} 1107 1108//spaces inserted in realname on instantiation of this record to allow s_endpgm to omit whitespace 1109class SOPP_Real<SOPP_Pseudo ps, string real_name = ps.Mnemonic> : 1110 InstSI <ps.OutOperandList, ps.InOperandList, 1111 real_name # ps.AsmOperands, []> { 1112 let SALU = 1; 1113 let SOPP = 1; 1114 let isPseudo = 0; 1115 let isCodeGenOnly = 0; 1116 1117 // copy relevant pseudo op flags 1118 let SubtargetPredicate = ps.SubtargetPredicate; 1119 let OtherPredicates = ps.OtherPredicates; 1120 let AsmMatchConverter = ps.AsmMatchConverter; 1121 let UseNamedOperandTable = ps.UseNamedOperandTable; 1122 let TSFlags = ps.TSFlags; 1123 let SchedRW = ps.SchedRW; 1124 let mayLoad = ps.mayLoad; 1125 let mayStore = ps.mayStore; 1126 bits <16> simm16; 1127} 1128 1129class SOPP_Real_32 <bits<7> op, SOPP_Pseudo ps, string real_name = ps.Mnemonic> : SOPP_Real<ps, real_name>, 1130Enc32 { 1131 let Inst{15-0} = !if(ps.fixed_imm, ps.simm16, simm16); 1132 let Inst{22-16} = op; 1133 let Inst{31-23} = 0x17f; 1134} 1135 1136class SOPP_Real_64 <bits<7> op, SOPP_Pseudo ps, string real_name = ps.Mnemonic> : SOPP_Real<ps, real_name>, 1137Enc64 { 1138 // encoding 1139 let Inst{15-0} = !if(ps.fixed_imm, ps.simm16, simm16); 1140 let Inst{22-16} = op; 1141 let Inst{31-23} = 0x17f; 1142 //effectively a nop 1143 let Inst{47-32} = 0x0; 1144 let Inst{54-48} = 0x0; 1145 let Inst{63-55} = 0x17f; 1146} 1147 1148multiclass SOPP_With_Relaxation <string opName, dag ins, 1149 string asmOps, list<dag> pattern=[]> { 1150 def "" : SOPP_Pseudo <opName, ins, asmOps, pattern>; 1151 def _pad_s_nop : SOPP_Pseudo <opName # "_pad_s_nop", ins, asmOps, pattern, opName>; 1152} 1153 1154def S_NOP : SOPP_Pseudo<"s_nop" , (ins i16imm:$simm16), "$simm16">; 1155 1156let isTerminator = 1 in { 1157def S_ENDPGM : SOPP_Pseudo<"s_endpgm", (ins EndpgmImm:$simm16), "$simm16"> { 1158 let isBarrier = 1; 1159 let isReturn = 1; 1160 let hasSideEffects = 1; 1161} 1162 1163def S_ENDPGM_SAVED : SOPP_Pseudo<"s_endpgm_saved", (ins)> { 1164 let SubtargetPredicate = isGFX8Plus; 1165 let simm16 = 0; 1166 let fixed_imm = 1; 1167 let isBarrier = 1; 1168 let isReturn = 1; 1169} 1170 1171let SubtargetPredicate = isGFX9Plus in { 1172 let isBarrier = 1, isReturn = 1, simm16 = 0, fixed_imm = 1 in { 1173 def S_ENDPGM_ORDERED_PS_DONE : 1174 SOPP_Pseudo<"s_endpgm_ordered_ps_done", (ins)>; 1175 } // End isBarrier = 1, isReturn = 1, simm16 = 0, fixed_imm = 1 1176} // End SubtargetPredicate = isGFX9Plus 1177 1178let SubtargetPredicate = isGFX10Plus in { 1179 let isBarrier = 1, isReturn = 1, simm16 = 0, fixed_imm = 1 in { 1180 def S_CODE_END : 1181 SOPP_Pseudo<"s_code_end", (ins)>; 1182 } // End isBarrier = 1, isReturn = 1, simm16 = 0, fixed_imm = 1 1183} // End SubtargetPredicate = isGFX10Plus 1184 1185let isBranch = 1, SchedRW = [WriteBranch] in { 1186let isBarrier = 1 in { 1187defm S_BRANCH : SOPP_With_Relaxation< 1188 "s_branch" , (ins sopp_brtarget:$simm16), "$simm16", 1189 [(br bb:$simm16)]>; 1190} 1191 1192let Uses = [SCC] in { 1193defm S_CBRANCH_SCC0 : SOPP_With_Relaxation< 1194 "s_cbranch_scc0" , (ins sopp_brtarget:$simm16), 1195 "$simm16" 1196>; 1197defm S_CBRANCH_SCC1 : SOPP_With_Relaxation < 1198 "s_cbranch_scc1" , (ins sopp_brtarget:$simm16), 1199 "$simm16" 1200>; 1201} // End Uses = [SCC] 1202 1203let Uses = [VCC] in { 1204defm S_CBRANCH_VCCZ : SOPP_With_Relaxation < 1205 "s_cbranch_vccz" , (ins sopp_brtarget:$simm16), 1206 "$simm16" 1207>; 1208defm S_CBRANCH_VCCNZ : SOPP_With_Relaxation < 1209 "s_cbranch_vccnz" , (ins sopp_brtarget:$simm16), 1210 "$simm16" 1211>; 1212} // End Uses = [VCC] 1213 1214let Uses = [EXEC] in { 1215defm S_CBRANCH_EXECZ : SOPP_With_Relaxation < 1216 "s_cbranch_execz" , (ins sopp_brtarget:$simm16), 1217 "$simm16" 1218>; 1219defm S_CBRANCH_EXECNZ : SOPP_With_Relaxation < 1220 "s_cbranch_execnz" , (ins sopp_brtarget:$simm16), 1221 "$simm16" 1222>; 1223} // End Uses = [EXEC] 1224 1225defm S_CBRANCH_CDBGSYS : SOPP_With_Relaxation < 1226 "s_cbranch_cdbgsys" , (ins sopp_brtarget:$simm16), 1227 "$simm16" 1228>; 1229 1230defm S_CBRANCH_CDBGSYS_AND_USER : SOPP_With_Relaxation < 1231 "s_cbranch_cdbgsys_and_user" , (ins sopp_brtarget:$simm16), 1232 "$simm16" 1233>; 1234 1235defm S_CBRANCH_CDBGSYS_OR_USER : SOPP_With_Relaxation < 1236 "s_cbranch_cdbgsys_or_user" , (ins sopp_brtarget:$simm16), 1237 "$simm16" 1238>; 1239 1240defm S_CBRANCH_CDBGUSER : SOPP_With_Relaxation < 1241 "s_cbranch_cdbguser" , (ins sopp_brtarget:$simm16), 1242 "$simm16" 1243>; 1244 1245} // End isBranch = 1 1246} // End isTerminator = 1 1247 1248let hasSideEffects = 1 in { 1249def S_BARRIER : SOPP_Pseudo <"s_barrier", (ins), "", 1250 [(int_amdgcn_s_barrier)]> { 1251 let SchedRW = [WriteBarrier]; 1252 let simm16 = 0; 1253 let fixed_imm = 1; 1254 let isConvergent = 1; 1255} 1256 1257def S_WAKEUP : SOPP_Pseudo <"s_wakeup", (ins) > { 1258 let SubtargetPredicate = isGFX8Plus; 1259 let simm16 = 0; 1260 let fixed_imm = 1; 1261 let mayLoad = 1; 1262 let mayStore = 1; 1263} 1264 1265let hasSideEffects = 1 in 1266def S_WAITCNT : SOPP_Pseudo <"s_waitcnt" , (ins WAIT_FLAG:$simm16), "$simm16", 1267 [(int_amdgcn_s_waitcnt timm:$simm16)]>; 1268def S_SETHALT : SOPP_Pseudo <"s_sethalt" , (ins i32imm:$simm16), "$simm16", 1269 [(int_amdgcn_s_sethalt timm:$simm16)]>; 1270def S_SETKILL : SOPP_Pseudo <"s_setkill" , (ins i16imm:$simm16), "$simm16">; 1271 1272// On SI the documentation says sleep for approximately 64 * low 2 1273// bits, consistent with the reported maximum of 448. On VI the 1274// maximum reported is 960 cycles, so 960 / 64 = 15 max, so is the 1275// maximum really 15 on VI? 1276def S_SLEEP : SOPP_Pseudo <"s_sleep", (ins i32imm:$simm16), 1277 "$simm16", [(int_amdgcn_s_sleep timm:$simm16)]> { 1278 let hasSideEffects = 1; 1279} 1280 1281def S_SETPRIO : SOPP_Pseudo <"s_setprio", (ins i16imm:$simm16), "$simm16", 1282 [(int_amdgcn_s_setprio timm:$simm16)]> { 1283 let hasSideEffects = 1; 1284} 1285 1286let Uses = [EXEC, M0] in { 1287def S_SENDMSG : SOPP_Pseudo <"s_sendmsg" , (ins SendMsgImm:$simm16), "$simm16", 1288 [(int_amdgcn_s_sendmsg (i32 timm:$simm16), M0)]> { 1289 let hasSideEffects = 1; 1290} 1291 1292def S_SENDMSGHALT : SOPP_Pseudo <"s_sendmsghalt" , (ins SendMsgImm:$simm16), "$simm16", 1293 [(int_amdgcn_s_sendmsghalt (i32 timm:$simm16), M0)]> { 1294 let hasSideEffects = 1; 1295} 1296 1297} // End Uses = [EXEC, M0] 1298 1299def S_TRAP : SOPP_Pseudo <"s_trap" , (ins i16imm:$simm16), "$simm16"> { 1300 let isTrap = 1; 1301} 1302 1303def S_ICACHE_INV : SOPP_Pseudo <"s_icache_inv", (ins)> { 1304 let simm16 = 0; 1305 let fixed_imm = 1; 1306} 1307def S_INCPERFLEVEL : SOPP_Pseudo <"s_incperflevel", (ins i32imm:$simm16), "$simm16", 1308 [(int_amdgcn_s_incperflevel timm:$simm16)]> { 1309 let hasSideEffects = 1; 1310} 1311def S_DECPERFLEVEL : SOPP_Pseudo <"s_decperflevel", (ins i32imm:$simm16), "$simm16", 1312 [(int_amdgcn_s_decperflevel timm:$simm16)]> { 1313 let hasSideEffects = 1; 1314} 1315def S_TTRACEDATA : SOPP_Pseudo <"s_ttracedata", (ins)> { 1316 let simm16 = 0; 1317 let fixed_imm = 1; 1318} 1319 1320let SubtargetPredicate = HasVGPRIndexMode in { 1321def S_SET_GPR_IDX_OFF : SOPP_Pseudo<"s_set_gpr_idx_off", (ins) > { 1322 let simm16 = 0; 1323 let fixed_imm = 1; 1324 let Defs = [MODE]; 1325 let Uses = [MODE]; 1326} 1327} 1328} // End hasSideEffects 1329 1330let SubtargetPredicate = HasVGPRIndexMode in { 1331def S_SET_GPR_IDX_MODE : SOPP_Pseudo<"s_set_gpr_idx_mode", (ins GPRIdxMode:$simm16), 1332 "$simm16"> { 1333 let Defs = [M0, MODE]; 1334 let Uses = [MODE]; 1335} 1336} 1337 1338let SubtargetPredicate = isGFX10Plus in { 1339 def S_INST_PREFETCH : 1340 SOPP_Pseudo<"s_inst_prefetch", (ins s16imm:$simm16), "$simm16">; 1341 def S_CLAUSE : 1342 SOPP_Pseudo<"s_clause", (ins s16imm:$simm16), "$simm16">; 1343 def S_WAIT_IDLE : 1344 SOPP_Pseudo <"s_wait_idle", (ins), ""> { 1345 let simm16 = 0; 1346 let fixed_imm = 1; 1347 } 1348 def S_WAITCNT_DEPCTR : 1349 SOPP_Pseudo <"s_waitcnt_depctr" , (ins DepCtrImm:$simm16), "$simm16">; 1350 1351 let hasSideEffects = 0, Uses = [MODE], Defs = [MODE] in { 1352 def S_ROUND_MODE : 1353 SOPP_Pseudo<"s_round_mode", (ins s16imm:$simm16), "$simm16">; 1354 def S_DENORM_MODE : 1355 SOPP_Pseudo<"s_denorm_mode", (ins i32imm:$simm16), "$simm16", 1356 [(SIdenorm_mode (i32 timm:$simm16))]>; 1357 } 1358 1359 def S_TTRACEDATA_IMM : 1360 SOPP_Pseudo<"s_ttracedata_imm", (ins s16imm:$simm16), "$simm16">; 1361} // End SubtargetPredicate = isGFX10Plus 1362 1363//===----------------------------------------------------------------------===// 1364// SOP1 Patterns 1365//===----------------------------------------------------------------------===// 1366 1367def : GCNPat < 1368 (AMDGPUendpgm), 1369 (S_ENDPGM (i16 0)) 1370>; 1371 1372def : GCNPat < 1373 (int_amdgcn_endpgm), 1374 (S_ENDPGM (i16 0)) 1375>; 1376 1377def : GCNPat < 1378 (i64 (UniformUnaryFrag<ctpop> i64:$src)), 1379 (i64 (REG_SEQUENCE SReg_64, 1380 (i32 (COPY_TO_REGCLASS (S_BCNT1_I32_B64 $src), SReg_32)), sub0, 1381 (S_MOV_B32 (i32 0)), sub1)) 1382>; 1383 1384def : GCNPat < 1385 (i32 (UniformBinFrag<smax> i32:$x, (i32 (ineg i32:$x)))), 1386 (S_ABS_I32 SReg_32:$x) 1387>; 1388 1389def : GCNPat < 1390 (i16 imm:$imm), 1391 (S_MOV_B32 imm:$imm) 1392>; 1393 1394// Same as a 32-bit inreg 1395def : GCNPat< 1396 (i32 (UniformUnaryFrag<sext> i16:$src)), 1397 (S_SEXT_I32_I16 $src) 1398>; 1399 1400 1401//===----------------------------------------------------------------------===// 1402// SOP2 Patterns 1403//===----------------------------------------------------------------------===// 1404 1405// V_ADD_I32_e32/S_ADD_U32 produces carry in VCC/SCC. For the vector 1406// case, the sgpr-copies pass will fix this to use the vector version. 1407def : GCNPat < 1408 (i32 (addc i32:$src0, i32:$src1)), 1409 (S_ADD_U32 $src0, $src1) 1410>; 1411 1412// FIXME: We need to use COPY_TO_REGCLASS to work-around the fact that 1413// REG_SEQUENCE patterns don't support instructions with multiple 1414// outputs. 1415def : GCNPat< 1416 (i64 (UniformUnaryFrag<zext> i16:$src)), 1417 (REG_SEQUENCE SReg_64, 1418 (i32 (COPY_TO_REGCLASS (S_AND_B32 $src, (S_MOV_B32 (i32 0xffff))), SGPR_32)), sub0, 1419 (S_MOV_B32 (i32 0)), sub1) 1420>; 1421 1422def : GCNPat < 1423 (i64 (UniformUnaryFrag<sext> i16:$src)), 1424 (REG_SEQUENCE SReg_64, (i32 (S_SEXT_I32_I16 $src)), sub0, 1425 (i32 (COPY_TO_REGCLASS (S_ASHR_I32 (i32 (S_SEXT_I32_I16 $src)), (S_MOV_B32 (i32 31))), SGPR_32)), sub1) 1426>; 1427 1428def : GCNPat< 1429 (i32 (UniformUnaryFrag<zext> i16:$src)), 1430 (S_AND_B32 (S_MOV_B32 (i32 0xffff)), $src) 1431>; 1432 1433// FIXME: ValueType should have isVector field 1434class ScalarNot2Pat<Instruction inst, SDPatternOperator op, ValueType vt, 1435 bit isVector = 1> : GCNPat< 1436 (UniformBinFrag<op> vt:$src0, (UniformUnaryFrag<!if(isVector, vnot, not)> vt:$src1)), 1437 (inst getSOPSrcForVT<vt>.ret:$src0, getSOPSrcForVT<vt>.ret:$src1) 1438>; 1439 1440// Match these for some more types 1441// TODO: i1 1442def : ScalarNot2Pat<S_ANDN2_B32, and, i16, 0>; 1443def : ScalarNot2Pat<S_ANDN2_B32, and, v2i16>; 1444def : ScalarNot2Pat<S_ANDN2_B64, and, v4i16>; 1445def : ScalarNot2Pat<S_ANDN2_B64, and, v2i32>; 1446 1447def : ScalarNot2Pat<S_ORN2_B32, or, i16, 0>; 1448def : ScalarNot2Pat<S_ORN2_B32, or, v2i16>; 1449def : ScalarNot2Pat<S_ORN2_B64, or, v4i16>; 1450def : ScalarNot2Pat<S_ORN2_B64, or, v2i32>; 1451 1452//===----------------------------------------------------------------------===// 1453// Target-specific instruction encodings. 1454//===----------------------------------------------------------------------===// 1455 1456class Select_gfx10<string opName> : SIMCInstr<opName, SIEncodingFamily.GFX10> { 1457 Predicate AssemblerPredicate = isGFX10Plus; 1458 string DecoderNamespace = "GFX10"; 1459} 1460 1461class Select_vi<string opName> : SIMCInstr<opName, SIEncodingFamily.VI> { 1462 Predicate AssemblerPredicate = isGFX8GFX9; 1463 string DecoderNamespace = "GFX8"; 1464} 1465 1466class Select_gfx6_gfx7<string opName> : SIMCInstr<opName, SIEncodingFamily.SI> { 1467 Predicate AssemblerPredicate = isGFX6GFX7; 1468 string DecoderNamespace = "GFX6GFX7"; 1469} 1470 1471//===----------------------------------------------------------------------===// 1472// SOP1 - GFX10. 1473//===----------------------------------------------------------------------===// 1474 1475multiclass SOP1_Real_gfx10<bits<8> op> { 1476 defvar ps = !cast<SOP1_Pseudo>(NAME); 1477 def _gfx10 : SOP1_Real<op, ps>, 1478 Select_gfx10<ps.Mnemonic>; 1479} 1480 1481defm S_ANDN1_SAVEEXEC_B64 : SOP1_Real_gfx10<0x037>; 1482defm S_ORN1_SAVEEXEC_B64 : SOP1_Real_gfx10<0x038>; 1483defm S_ANDN1_WREXEC_B64 : SOP1_Real_gfx10<0x039>; 1484defm S_ANDN2_WREXEC_B64 : SOP1_Real_gfx10<0x03a>; 1485defm S_BITREPLICATE_B64_B32 : SOP1_Real_gfx10<0x03b>; 1486defm S_AND_SAVEEXEC_B32 : SOP1_Real_gfx10<0x03c>; 1487defm S_OR_SAVEEXEC_B32 : SOP1_Real_gfx10<0x03d>; 1488defm S_XOR_SAVEEXEC_B32 : SOP1_Real_gfx10<0x03e>; 1489defm S_ANDN2_SAVEEXEC_B32 : SOP1_Real_gfx10<0x03f>; 1490defm S_ORN2_SAVEEXEC_B32 : SOP1_Real_gfx10<0x040>; 1491defm S_NAND_SAVEEXEC_B32 : SOP1_Real_gfx10<0x041>; 1492defm S_NOR_SAVEEXEC_B32 : SOP1_Real_gfx10<0x042>; 1493defm S_XNOR_SAVEEXEC_B32 : SOP1_Real_gfx10<0x043>; 1494defm S_ANDN1_SAVEEXEC_B32 : SOP1_Real_gfx10<0x044>; 1495defm S_ORN1_SAVEEXEC_B32 : SOP1_Real_gfx10<0x045>; 1496defm S_ANDN1_WREXEC_B32 : SOP1_Real_gfx10<0x046>; 1497defm S_ANDN2_WREXEC_B32 : SOP1_Real_gfx10<0x047>; 1498defm S_MOVRELSD_2_B32 : SOP1_Real_gfx10<0x049>; 1499 1500//===----------------------------------------------------------------------===// 1501// SOP1 - GFX6, GFX7. 1502//===----------------------------------------------------------------------===// 1503 1504 1505multiclass SOP1_Real_gfx6_gfx7<bits<8> op> { 1506 defvar ps = !cast<SOP1_Pseudo>(NAME); 1507 def _gfx6_gfx7 : SOP1_Real<op, ps>, 1508 Select_gfx6_gfx7<ps.Mnemonic>; 1509} 1510 1511multiclass SOP1_Real_gfx6_gfx7_gfx10<bits<8> op> : 1512 SOP1_Real_gfx6_gfx7<op>, SOP1_Real_gfx10<op>; 1513 1514defm S_CBRANCH_JOIN : SOP1_Real_gfx6_gfx7<0x032>; 1515 1516defm S_MOV_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x003>; 1517defm S_MOV_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x004>; 1518defm S_CMOV_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x005>; 1519defm S_CMOV_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x006>; 1520defm S_NOT_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x007>; 1521defm S_NOT_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x008>; 1522defm S_WQM_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x009>; 1523defm S_WQM_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x00a>; 1524defm S_BREV_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x00b>; 1525defm S_BREV_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x00c>; 1526defm S_BCNT0_I32_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x00d>; 1527defm S_BCNT0_I32_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x00e>; 1528defm S_BCNT1_I32_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x00f>; 1529defm S_BCNT1_I32_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x010>; 1530defm S_FF0_I32_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x011>; 1531defm S_FF0_I32_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x012>; 1532defm S_FF1_I32_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x013>; 1533defm S_FF1_I32_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x014>; 1534defm S_FLBIT_I32_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x015>; 1535defm S_FLBIT_I32_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x016>; 1536defm S_FLBIT_I32 : SOP1_Real_gfx6_gfx7_gfx10<0x017>; 1537defm S_FLBIT_I32_I64 : SOP1_Real_gfx6_gfx7_gfx10<0x018>; 1538defm S_SEXT_I32_I8 : SOP1_Real_gfx6_gfx7_gfx10<0x019>; 1539defm S_SEXT_I32_I16 : SOP1_Real_gfx6_gfx7_gfx10<0x01a>; 1540defm S_BITSET0_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x01b>; 1541defm S_BITSET0_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x01c>; 1542defm S_BITSET1_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x01d>; 1543defm S_BITSET1_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x01e>; 1544defm S_GETPC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x01f>; 1545defm S_SETPC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x020>; 1546defm S_SWAPPC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x021>; 1547defm S_RFE_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x022>; 1548defm S_AND_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x024>; 1549defm S_OR_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x025>; 1550defm S_XOR_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x026>; 1551defm S_ANDN2_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x027>; 1552defm S_ORN2_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x028>; 1553defm S_NAND_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x029>; 1554defm S_NOR_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x02a>; 1555defm S_XNOR_SAVEEXEC_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x02b>; 1556defm S_QUADMASK_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x02c>; 1557defm S_QUADMASK_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x02d>; 1558defm S_MOVRELS_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x02e>; 1559defm S_MOVRELS_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x02f>; 1560defm S_MOVRELD_B32 : SOP1_Real_gfx6_gfx7_gfx10<0x030>; 1561defm S_MOVRELD_B64 : SOP1_Real_gfx6_gfx7_gfx10<0x031>; 1562defm S_ABS_I32 : SOP1_Real_gfx6_gfx7_gfx10<0x034>; 1563 1564//===----------------------------------------------------------------------===// 1565// SOP2 - GFX10. 1566//===----------------------------------------------------------------------===// 1567 1568multiclass SOP2_Real_gfx10<bits<7> op> { 1569 defvar ps = !cast<SOP2_Pseudo>(NAME); 1570 def _gfx10 : SOP2_Real<op, ps>, 1571 Select_gfx10<ps.Mnemonic>; 1572} 1573 1574defm S_LSHL1_ADD_U32 : SOP2_Real_gfx10<0x02e>; 1575defm S_LSHL2_ADD_U32 : SOP2_Real_gfx10<0x02f>; 1576defm S_LSHL3_ADD_U32 : SOP2_Real_gfx10<0x030>; 1577defm S_LSHL4_ADD_U32 : SOP2_Real_gfx10<0x031>; 1578defm S_PACK_LL_B32_B16 : SOP2_Real_gfx10<0x032>; 1579defm S_PACK_LH_B32_B16 : SOP2_Real_gfx10<0x033>; 1580defm S_PACK_HH_B32_B16 : SOP2_Real_gfx10<0x034>; 1581defm S_MUL_HI_U32 : SOP2_Real_gfx10<0x035>; 1582defm S_MUL_HI_I32 : SOP2_Real_gfx10<0x036>; 1583 1584//===----------------------------------------------------------------------===// 1585// SOP2 - GFX6, GFX7. 1586//===----------------------------------------------------------------------===// 1587 1588multiclass SOP2_Real_gfx6_gfx7<bits<7> op> { 1589 defvar ps = !cast<SOP_Pseudo>(NAME); 1590 def _gfx6_gfx7 : SOP2_Real<op, ps>, 1591 Select_gfx6_gfx7<ps.Mnemonic>; 1592} 1593 1594multiclass SOP2_Real_gfx6_gfx7_gfx10<bits<7> op> : 1595 SOP2_Real_gfx6_gfx7<op>, SOP2_Real_gfx10<op>; 1596 1597defm S_CBRANCH_G_FORK : SOP2_Real_gfx6_gfx7<0x02b>; 1598 1599defm S_ADD_U32 : SOP2_Real_gfx6_gfx7_gfx10<0x000>; 1600defm S_SUB_U32 : SOP2_Real_gfx6_gfx7_gfx10<0x001>; 1601defm S_ADD_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x002>; 1602defm S_SUB_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x003>; 1603defm S_ADDC_U32 : SOP2_Real_gfx6_gfx7_gfx10<0x004>; 1604defm S_SUBB_U32 : SOP2_Real_gfx6_gfx7_gfx10<0x005>; 1605defm S_MIN_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x006>; 1606defm S_MIN_U32 : SOP2_Real_gfx6_gfx7_gfx10<0x007>; 1607defm S_MAX_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x008>; 1608defm S_MAX_U32 : SOP2_Real_gfx6_gfx7_gfx10<0x009>; 1609defm S_CSELECT_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x00a>; 1610defm S_CSELECT_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x00b>; 1611defm S_AND_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x00e>; 1612defm S_AND_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x00f>; 1613defm S_OR_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x010>; 1614defm S_OR_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x011>; 1615defm S_XOR_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x012>; 1616defm S_XOR_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x013>; 1617defm S_ANDN2_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x014>; 1618defm S_ANDN2_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x015>; 1619defm S_ORN2_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x016>; 1620defm S_ORN2_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x017>; 1621defm S_NAND_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x018>; 1622defm S_NAND_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x019>; 1623defm S_NOR_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x01a>; 1624defm S_NOR_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x01b>; 1625defm S_XNOR_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x01c>; 1626defm S_XNOR_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x01d>; 1627defm S_LSHL_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x01e>; 1628defm S_LSHL_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x01f>; 1629defm S_LSHR_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x020>; 1630defm S_LSHR_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x021>; 1631defm S_ASHR_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x022>; 1632defm S_ASHR_I64 : SOP2_Real_gfx6_gfx7_gfx10<0x023>; 1633defm S_BFM_B32 : SOP2_Real_gfx6_gfx7_gfx10<0x024>; 1634defm S_BFM_B64 : SOP2_Real_gfx6_gfx7_gfx10<0x025>; 1635defm S_MUL_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x026>; 1636defm S_BFE_U32 : SOP2_Real_gfx6_gfx7_gfx10<0x027>; 1637defm S_BFE_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x028>; 1638defm S_BFE_U64 : SOP2_Real_gfx6_gfx7_gfx10<0x029>; 1639defm S_BFE_I64 : SOP2_Real_gfx6_gfx7_gfx10<0x02a>; 1640defm S_ABSDIFF_I32 : SOP2_Real_gfx6_gfx7_gfx10<0x02c>; 1641 1642//===----------------------------------------------------------------------===// 1643// SOPK - GFX10. 1644//===----------------------------------------------------------------------===// 1645 1646multiclass SOPK_Real32_gfx10<bits<5> op> { 1647 defvar ps = !cast<SOPK_Pseudo>(NAME); 1648 def _gfx10 : SOPK_Real32<op, ps>, 1649 Select_gfx10<ps.Mnemonic>; 1650} 1651 1652multiclass SOPK_Real64_gfx10<bits<5> op> { 1653 defvar ps = !cast<SOPK_Pseudo>(NAME); 1654 def _gfx10 : SOPK_Real64<op, ps>, 1655 Select_gfx10<ps.Mnemonic>; 1656} 1657 1658defm S_VERSION : SOPK_Real32_gfx10<0x001>; 1659defm S_CALL_B64 : SOPK_Real32_gfx10<0x016>; 1660defm S_WAITCNT_VSCNT : SOPK_Real32_gfx10<0x017>; 1661defm S_WAITCNT_VMCNT : SOPK_Real32_gfx10<0x018>; 1662defm S_WAITCNT_EXPCNT : SOPK_Real32_gfx10<0x019>; 1663defm S_WAITCNT_LGKMCNT : SOPK_Real32_gfx10<0x01a>; 1664defm S_SUBVECTOR_LOOP_BEGIN : SOPK_Real32_gfx10<0x01b>; 1665defm S_SUBVECTOR_LOOP_END : SOPK_Real32_gfx10<0x01c>; 1666 1667//===----------------------------------------------------------------------===// 1668// SOPK - GFX6, GFX7. 1669//===----------------------------------------------------------------------===// 1670 1671multiclass SOPK_Real32_gfx6_gfx7<bits<5> op> { 1672 defvar ps = !cast<SOPK_Pseudo>(NAME); 1673 def _gfx6_gfx7 : SOPK_Real32<op, ps>, 1674 Select_gfx6_gfx7<ps.Mnemonic>; 1675} 1676 1677multiclass SOPK_Real64_gfx6_gfx7<bits<5> op> { 1678 defvar ps = !cast<SOPK_Pseudo>(NAME); 1679 def _gfx6_gfx7 : SOPK_Real64<op, ps>, 1680 Select_gfx6_gfx7<ps.Mnemonic>; 1681} 1682 1683multiclass SOPK_Real32_gfx6_gfx7_gfx10<bits<5> op> : 1684 SOPK_Real32_gfx6_gfx7<op>, SOPK_Real32_gfx10<op>; 1685 1686multiclass SOPK_Real64_gfx6_gfx7_gfx10<bits<5> op> : 1687 SOPK_Real64_gfx6_gfx7<op>, SOPK_Real64_gfx10<op>; 1688 1689defm S_CBRANCH_I_FORK : SOPK_Real32_gfx6_gfx7<0x011>; 1690 1691defm S_MOVK_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x000>; 1692defm S_CMOVK_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x002>; 1693defm S_CMPK_EQ_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x003>; 1694defm S_CMPK_LG_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x004>; 1695defm S_CMPK_GT_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x005>; 1696defm S_CMPK_GE_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x006>; 1697defm S_CMPK_LT_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x007>; 1698defm S_CMPK_LE_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x008>; 1699defm S_CMPK_EQ_U32 : SOPK_Real32_gfx6_gfx7_gfx10<0x009>; 1700defm S_CMPK_LG_U32 : SOPK_Real32_gfx6_gfx7_gfx10<0x00a>; 1701defm S_CMPK_GT_U32 : SOPK_Real32_gfx6_gfx7_gfx10<0x00b>; 1702defm S_CMPK_GE_U32 : SOPK_Real32_gfx6_gfx7_gfx10<0x00c>; 1703defm S_CMPK_LT_U32 : SOPK_Real32_gfx6_gfx7_gfx10<0x00d>; 1704defm S_CMPK_LE_U32 : SOPK_Real32_gfx6_gfx7_gfx10<0x00e>; 1705defm S_ADDK_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x00f>; 1706defm S_MULK_I32 : SOPK_Real32_gfx6_gfx7_gfx10<0x010>; 1707defm S_GETREG_B32 : SOPK_Real32_gfx6_gfx7_gfx10<0x012>; 1708defm S_SETREG_B32 : SOPK_Real32_gfx6_gfx7_gfx10<0x013>; 1709defm S_SETREG_IMM32_B32 : SOPK_Real64_gfx6_gfx7_gfx10<0x015>; 1710 1711//===----------------------------------------------------------------------===// 1712// SOPP - GFX6, GFX7, GFX8, GFX9, GFX10 1713//===----------------------------------------------------------------------===// 1714 1715multiclass SOPP_Real_32_gfx6_gfx7<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic> { 1716 defvar ps = !cast<SOPP_Pseudo>(NAME); 1717 def _gfx6_gfx7 : SOPP_Real_32<op, ps, real_name>, 1718 Select_gfx6_gfx7<ps.Mnemonic>, 1719 SOPPRelaxTable<0, ps.KeyName, "_gfx6_gfx7">; 1720} 1721 1722multiclass SOPP_Real_32_gfx8_gfx9<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> { 1723 defvar ps = !cast<SOPP_Pseudo>(NAME); 1724 def _vi : SOPP_Real_32<op, ps, real_name>, 1725 Select_vi<ps.Mnemonic>, 1726 SOPPRelaxTable<0, ps.KeyName, "_vi">; 1727} 1728 1729multiclass SOPP_Real_32_gfx10<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> { 1730 defvar ps = !cast<SOPP_Pseudo>(NAME); 1731 def _gfx10 : SOPP_Real_32<op, ps, real_name>, 1732 Select_gfx10<ps.Mnemonic>, 1733 SOPPRelaxTable<0, ps.KeyName, "_gfx10">; 1734} 1735 1736multiclass SOPP_Real_32_gfx8_gfx9_gfx10<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> : 1737 SOPP_Real_32_gfx8_gfx9<op, real_name>, SOPP_Real_32_gfx10<op, real_name>; 1738 1739multiclass SOPP_Real_32_gfx6_gfx7_gfx8_gfx9<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> : 1740 SOPP_Real_32_gfx6_gfx7<op, real_name>, SOPP_Real_32_gfx8_gfx9<op, real_name>; 1741 1742multiclass SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> : 1743 SOPP_Real_32_gfx6_gfx7_gfx8_gfx9<op, real_name>, SOPP_Real_32_gfx10<op, real_name>; 1744 1745//64 bit encodings, for Relaxation 1746multiclass SOPP_Real_64_gfx6_gfx7<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> { 1747 defvar ps = !cast<SOPP_Pseudo>(NAME); 1748 def _gfx6_gfx7 : SOPP_Real_64<op, ps, real_name>, 1749 Select_gfx6_gfx7<ps.Mnemonic>, 1750 SOPPRelaxTable<1, ps.KeyName, "_gfx6_gfx7">; 1751} 1752 1753multiclass SOPP_Real_64_gfx8_gfx9<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> { 1754 defvar ps = !cast<SOPP_Pseudo>(NAME); 1755 def _vi : SOPP_Real_64<op, ps, real_name>, 1756 Select_vi<ps.Mnemonic>, 1757 SOPPRelaxTable<1, ps.KeyName, "_vi">; 1758} 1759 1760multiclass SOPP_Real_64_gfx10<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> { 1761 defvar ps = !cast<SOPP_Pseudo>(NAME); 1762 def _gfx10 : SOPP_Real_64<op, ps, real_name>, 1763 Select_gfx10<ps.Mnemonic>, 1764 SOPPRelaxTable<1, ps.KeyName, "_gfx10">; 1765} 1766 1767multiclass SOPP_Real_64_gfx8_gfx9_gfx10<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> : 1768 SOPP_Real_64_gfx8_gfx9<op, real_name>, SOPP_Real_64_gfx10<op, real_name>; 1769 1770multiclass SOPP_Real_64_gfx6_gfx7_gfx8_gfx9<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> : 1771 SOPP_Real_64_gfx6_gfx7<op, real_name>, SOPP_Real_64_gfx8_gfx9<op, real_name>; 1772 1773multiclass SOPP_Real_64_gfx6_gfx7_gfx8_gfx9_gfx10<bits<7> op, string real_name = !cast<SOPP_Pseudo>(NAME).Mnemonic # " "> : 1774 SOPP_Real_64_gfx6_gfx7_gfx8_gfx9<op, real_name>, SOPP_Real_64_gfx10<op, real_name>; 1775 1776//relaxation for insts with no operands not implemented 1777multiclass SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<bits<7> op> { 1778 defm "" : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<op>; 1779 defm _pad_s_nop : SOPP_Real_64_gfx6_gfx7_gfx8_gfx9_gfx10<op>; 1780} 1781 1782defm S_NOP : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x000>; 1783defm S_ENDPGM : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x001, "s_endpgm">; 1784defm S_WAKEUP : SOPP_Real_32_gfx8_gfx9_gfx10<0x003>; 1785defm S_BARRIER : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x00a>; 1786defm S_WAITCNT : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x00c>; 1787defm S_SETHALT : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x00d>; 1788defm S_SETKILL : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x00b>; 1789defm S_SLEEP : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x00e>; 1790defm S_SETPRIO : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x00f>; 1791defm S_SENDMSG : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x010>; 1792defm S_SENDMSGHALT : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x011>; 1793defm S_TRAP : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x012>; 1794defm S_ICACHE_INV : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x013>; 1795defm S_INCPERFLEVEL : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x014>; 1796defm S_DECPERFLEVEL : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x015>; 1797defm S_TTRACEDATA : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x016>; 1798defm S_ENDPGM_SAVED : SOPP_Real_32_gfx6_gfx7_gfx8_gfx9_gfx10<0x01B>; 1799defm S_SET_GPR_IDX_OFF : SOPP_Real_32_gfx8_gfx9<0x01c>; 1800defm S_SET_GPR_IDX_MODE : SOPP_Real_32_gfx8_gfx9<0x01d>; 1801defm S_ENDPGM_ORDERED_PS_DONE : SOPP_Real_32_gfx8_gfx9_gfx10<0x01e>; 1802defm S_CODE_END : SOPP_Real_32_gfx10<0x01f>; 1803defm S_INST_PREFETCH : SOPP_Real_32_gfx10<0x020>; 1804defm S_CLAUSE : SOPP_Real_32_gfx10<0x021>; 1805defm S_WAIT_IDLE : SOPP_Real_32_gfx10<0x022>; 1806defm S_WAITCNT_DEPCTR : SOPP_Real_32_gfx10<0x023>; 1807defm S_ROUND_MODE : SOPP_Real_32_gfx10<0x024>; 1808defm S_DENORM_MODE : SOPP_Real_32_gfx10<0x025>; 1809defm S_TTRACEDATA_IMM : SOPP_Real_32_gfx10<0x028>; 1810 1811let isBranch = 1 in { 1812defm S_BRANCH : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x002>; 1813defm S_CBRANCH_SCC0 : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x004>; 1814defm S_CBRANCH_SCC1 : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x005>; 1815defm S_CBRANCH_VCCZ : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x006>; 1816defm S_CBRANCH_VCCNZ : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x007>; 1817defm S_CBRANCH_EXECZ : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x008>; 1818defm S_CBRANCH_EXECNZ : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x009>; 1819defm S_CBRANCH_CDBGSYS : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x017>; 1820defm S_CBRANCH_CDBGUSER : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x018>; 1821defm S_CBRANCH_CDBGSYS_OR_USER : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x019>; 1822defm S_CBRANCH_CDBGSYS_AND_USER : SOPP_Real_With_Relaxation_gfx6_gfx7_gfx8_gfx9_gfx10<0x01A>; 1823} 1824 1825//===----------------------------------------------------------------------===// 1826// SOPC - GFX6, GFX7, GFX8, GFX9, GFX10 1827//===----------------------------------------------------------------------===// 1828 1829multiclass SOPC_Real_gfx6_gfx7<bits<7> op> { 1830 defvar ps = !cast<SOPC_Pseudo>(NAME); 1831 def _gfx6_gfx7 : SOPC_Real<op, ps>, 1832 Select_gfx6_gfx7<ps.Mnemonic>; 1833} 1834 1835multiclass SOPC_Real_gfx8_gfx9<bits<7> op> { 1836 defvar ps = !cast<SOPC_Pseudo>(NAME); 1837 def _vi : SOPC_Real<op, ps>, 1838 Select_vi<ps.Mnemonic>; 1839} 1840 1841multiclass SOPC_Real_gfx10<bits<7> op> { 1842 defvar ps = !cast<SOPC_Pseudo>(NAME); 1843 def _gfx10 : SOPC_Real<op, ps>, 1844 Select_gfx10<ps.Mnemonic>; 1845} 1846 1847multiclass SOPC_Real_gfx8_gfx9_gfx10<bits<7> op> : 1848 SOPC_Real_gfx8_gfx9<op>, SOPC_Real_gfx10<op>; 1849 1850multiclass SOPC_Real_gfx6_gfx7_gfx8_gfx9<bits<7> op> : 1851 SOPC_Real_gfx6_gfx7<op>, SOPC_Real_gfx8_gfx9<op>; 1852 1853multiclass SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<bits<7> op> : 1854 SOPC_Real_gfx6_gfx7_gfx8_gfx9<op>, SOPC_Real_gfx10<op>; 1855 1856defm S_CMP_EQ_I32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x00>; 1857defm S_CMP_LG_I32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x01>; 1858defm S_CMP_GT_I32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x02>; 1859defm S_CMP_GE_I32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x03>; 1860defm S_CMP_LT_I32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x04>; 1861defm S_CMP_LE_I32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x05>; 1862defm S_CMP_EQ_U32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x06>; 1863defm S_CMP_LG_U32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x07>; 1864defm S_CMP_GT_U32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x08>; 1865defm S_CMP_GE_U32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x09>; 1866defm S_CMP_LT_U32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x0a>; 1867defm S_CMP_LE_U32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x0b>; 1868defm S_BITCMP0_B32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x0c>; 1869defm S_BITCMP1_B32 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x0d>; 1870defm S_BITCMP0_B64 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x0e>; 1871defm S_BITCMP1_B64 : SOPC_Real_gfx6_gfx7_gfx8_gfx9_gfx10<0x0f>; 1872defm S_SETVSKIP : SOPC_Real_gfx6_gfx7_gfx8_gfx9<0x10>; 1873defm S_SET_GPR_IDX_ON : SOPC_Real_gfx8_gfx9<0x11>; 1874defm S_CMP_EQ_U64 : SOPC_Real_gfx8_gfx9_gfx10<0x12>; 1875defm S_CMP_LG_U64 : SOPC_Real_gfx8_gfx9_gfx10<0x13>; 1876 1877//===----------------------------------------------------------------------===// 1878// GFX8 (VI), GFX9. 1879//===----------------------------------------------------------------------===// 1880 1881class SOP1_Real_vi<bits<8> op, SOP1_Pseudo ps> : 1882 SOP1_Real<op, ps>, 1883 Select_vi<ps.Mnemonic>; 1884 1885 1886class SOP2_Real_vi<bits<7> op, SOP2_Pseudo ps> : 1887 SOP2_Real<op, ps>, 1888 Select_vi<ps.Mnemonic>; 1889 1890class SOPK_Real_vi<bits<5> op, SOPK_Pseudo ps> : 1891 SOPK_Real32<op, ps>, 1892 Select_vi<ps.Mnemonic>; 1893 1894def S_MOV_B32_vi : SOP1_Real_vi <0x00, S_MOV_B32>; 1895def S_MOV_B64_vi : SOP1_Real_vi <0x01, S_MOV_B64>; 1896def S_CMOV_B32_vi : SOP1_Real_vi <0x02, S_CMOV_B32>; 1897def S_CMOV_B64_vi : SOP1_Real_vi <0x03, S_CMOV_B64>; 1898def S_NOT_B32_vi : SOP1_Real_vi <0x04, S_NOT_B32>; 1899def S_NOT_B64_vi : SOP1_Real_vi <0x05, S_NOT_B64>; 1900def S_WQM_B32_vi : SOP1_Real_vi <0x06, S_WQM_B32>; 1901def S_WQM_B64_vi : SOP1_Real_vi <0x07, S_WQM_B64>; 1902def S_BREV_B32_vi : SOP1_Real_vi <0x08, S_BREV_B32>; 1903def S_BREV_B64_vi : SOP1_Real_vi <0x09, S_BREV_B64>; 1904def S_BCNT0_I32_B32_vi : SOP1_Real_vi <0x0a, S_BCNT0_I32_B32>; 1905def S_BCNT0_I32_B64_vi : SOP1_Real_vi <0x0b, S_BCNT0_I32_B64>; 1906def S_BCNT1_I32_B32_vi : SOP1_Real_vi <0x0c, S_BCNT1_I32_B32>; 1907def S_BCNT1_I32_B64_vi : SOP1_Real_vi <0x0d, S_BCNT1_I32_B64>; 1908def S_FF0_I32_B32_vi : SOP1_Real_vi <0x0e, S_FF0_I32_B32>; 1909def S_FF0_I32_B64_vi : SOP1_Real_vi <0x0f, S_FF0_I32_B64>; 1910def S_FF1_I32_B32_vi : SOP1_Real_vi <0x10, S_FF1_I32_B32>; 1911def S_FF1_I32_B64_vi : SOP1_Real_vi <0x11, S_FF1_I32_B64>; 1912def S_FLBIT_I32_B32_vi : SOP1_Real_vi <0x12, S_FLBIT_I32_B32>; 1913def S_FLBIT_I32_B64_vi : SOP1_Real_vi <0x13, S_FLBIT_I32_B64>; 1914def S_FLBIT_I32_vi : SOP1_Real_vi <0x14, S_FLBIT_I32>; 1915def S_FLBIT_I32_I64_vi : SOP1_Real_vi <0x15, S_FLBIT_I32_I64>; 1916def S_SEXT_I32_I8_vi : SOP1_Real_vi <0x16, S_SEXT_I32_I8>; 1917def S_SEXT_I32_I16_vi : SOP1_Real_vi <0x17, S_SEXT_I32_I16>; 1918def S_BITSET0_B32_vi : SOP1_Real_vi <0x18, S_BITSET0_B32>; 1919def S_BITSET0_B64_vi : SOP1_Real_vi <0x19, S_BITSET0_B64>; 1920def S_BITSET1_B32_vi : SOP1_Real_vi <0x1a, S_BITSET1_B32>; 1921def S_BITSET1_B64_vi : SOP1_Real_vi <0x1b, S_BITSET1_B64>; 1922def S_GETPC_B64_vi : SOP1_Real_vi <0x1c, S_GETPC_B64>; 1923def S_SETPC_B64_vi : SOP1_Real_vi <0x1d, S_SETPC_B64>; 1924def S_SWAPPC_B64_vi : SOP1_Real_vi <0x1e, S_SWAPPC_B64>; 1925def S_RFE_B64_vi : SOP1_Real_vi <0x1f, S_RFE_B64>; 1926def S_AND_SAVEEXEC_B64_vi : SOP1_Real_vi <0x20, S_AND_SAVEEXEC_B64>; 1927def S_OR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x21, S_OR_SAVEEXEC_B64>; 1928def S_XOR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x22, S_XOR_SAVEEXEC_B64>; 1929def S_ANDN2_SAVEEXEC_B64_vi: SOP1_Real_vi <0x23, S_ANDN2_SAVEEXEC_B64>; 1930def S_ORN2_SAVEEXEC_B64_vi : SOP1_Real_vi <0x24, S_ORN2_SAVEEXEC_B64>; 1931def S_NAND_SAVEEXEC_B64_vi : SOP1_Real_vi <0x25, S_NAND_SAVEEXEC_B64>; 1932def S_NOR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x26, S_NOR_SAVEEXEC_B64>; 1933def S_XNOR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x27, S_XNOR_SAVEEXEC_B64>; 1934def S_QUADMASK_B32_vi : SOP1_Real_vi <0x28, S_QUADMASK_B32>; 1935def S_QUADMASK_B64_vi : SOP1_Real_vi <0x29, S_QUADMASK_B64>; 1936def S_MOVRELS_B32_vi : SOP1_Real_vi <0x2a, S_MOVRELS_B32>; 1937def S_MOVRELS_B64_vi : SOP1_Real_vi <0x2b, S_MOVRELS_B64>; 1938def S_MOVRELD_B32_vi : SOP1_Real_vi <0x2c, S_MOVRELD_B32>; 1939def S_MOVRELD_B64_vi : SOP1_Real_vi <0x2d, S_MOVRELD_B64>; 1940def S_CBRANCH_JOIN_vi : SOP1_Real_vi <0x2e, S_CBRANCH_JOIN>; 1941def S_ABS_I32_vi : SOP1_Real_vi <0x30, S_ABS_I32>; 1942def S_SET_GPR_IDX_IDX_vi : SOP1_Real_vi <0x32, S_SET_GPR_IDX_IDX>; 1943 1944def S_ADD_U32_vi : SOP2_Real_vi <0x00, S_ADD_U32>; 1945def S_ADD_I32_vi : SOP2_Real_vi <0x02, S_ADD_I32>; 1946def S_SUB_U32_vi : SOP2_Real_vi <0x01, S_SUB_U32>; 1947def S_SUB_I32_vi : SOP2_Real_vi <0x03, S_SUB_I32>; 1948def S_ADDC_U32_vi : SOP2_Real_vi <0x04, S_ADDC_U32>; 1949def S_SUBB_U32_vi : SOP2_Real_vi <0x05, S_SUBB_U32>; 1950def S_MIN_I32_vi : SOP2_Real_vi <0x06, S_MIN_I32>; 1951def S_MIN_U32_vi : SOP2_Real_vi <0x07, S_MIN_U32>; 1952def S_MAX_I32_vi : SOP2_Real_vi <0x08, S_MAX_I32>; 1953def S_MAX_U32_vi : SOP2_Real_vi <0x09, S_MAX_U32>; 1954def S_CSELECT_B32_vi : SOP2_Real_vi <0x0a, S_CSELECT_B32>; 1955def S_CSELECT_B64_vi : SOP2_Real_vi <0x0b, S_CSELECT_B64>; 1956def S_AND_B32_vi : SOP2_Real_vi <0x0c, S_AND_B32>; 1957def S_AND_B64_vi : SOP2_Real_vi <0x0d, S_AND_B64>; 1958def S_OR_B32_vi : SOP2_Real_vi <0x0e, S_OR_B32>; 1959def S_OR_B64_vi : SOP2_Real_vi <0x0f, S_OR_B64>; 1960def S_XOR_B32_vi : SOP2_Real_vi <0x10, S_XOR_B32>; 1961def S_XOR_B64_vi : SOP2_Real_vi <0x11, S_XOR_B64>; 1962def S_ANDN2_B32_vi : SOP2_Real_vi <0x12, S_ANDN2_B32>; 1963def S_ANDN2_B64_vi : SOP2_Real_vi <0x13, S_ANDN2_B64>; 1964def S_ORN2_B32_vi : SOP2_Real_vi <0x14, S_ORN2_B32>; 1965def S_ORN2_B64_vi : SOP2_Real_vi <0x15, S_ORN2_B64>; 1966def S_NAND_B32_vi : SOP2_Real_vi <0x16, S_NAND_B32>; 1967def S_NAND_B64_vi : SOP2_Real_vi <0x17, S_NAND_B64>; 1968def S_NOR_B32_vi : SOP2_Real_vi <0x18, S_NOR_B32>; 1969def S_NOR_B64_vi : SOP2_Real_vi <0x19, S_NOR_B64>; 1970def S_XNOR_B32_vi : SOP2_Real_vi <0x1a, S_XNOR_B32>; 1971def S_XNOR_B64_vi : SOP2_Real_vi <0x1b, S_XNOR_B64>; 1972def S_LSHL_B32_vi : SOP2_Real_vi <0x1c, S_LSHL_B32>; 1973def S_LSHL_B64_vi : SOP2_Real_vi <0x1d, S_LSHL_B64>; 1974def S_LSHR_B32_vi : SOP2_Real_vi <0x1e, S_LSHR_B32>; 1975def S_LSHR_B64_vi : SOP2_Real_vi <0x1f, S_LSHR_B64>; 1976def S_ASHR_I32_vi : SOP2_Real_vi <0x20, S_ASHR_I32>; 1977def S_ASHR_I64_vi : SOP2_Real_vi <0x21, S_ASHR_I64>; 1978def S_BFM_B32_vi : SOP2_Real_vi <0x22, S_BFM_B32>; 1979def S_BFM_B64_vi : SOP2_Real_vi <0x23, S_BFM_B64>; 1980def S_MUL_I32_vi : SOP2_Real_vi <0x24, S_MUL_I32>; 1981def S_BFE_U32_vi : SOP2_Real_vi <0x25, S_BFE_U32>; 1982def S_BFE_I32_vi : SOP2_Real_vi <0x26, S_BFE_I32>; 1983def S_BFE_U64_vi : SOP2_Real_vi <0x27, S_BFE_U64>; 1984def S_BFE_I64_vi : SOP2_Real_vi <0x28, S_BFE_I64>; 1985def S_CBRANCH_G_FORK_vi : SOP2_Real_vi <0x29, S_CBRANCH_G_FORK>; 1986def S_ABSDIFF_I32_vi : SOP2_Real_vi <0x2a, S_ABSDIFF_I32>; 1987def S_PACK_LL_B32_B16_vi : SOP2_Real_vi <0x32, S_PACK_LL_B32_B16>; 1988def S_PACK_LH_B32_B16_vi : SOP2_Real_vi <0x33, S_PACK_LH_B32_B16>; 1989def S_PACK_HH_B32_B16_vi : SOP2_Real_vi <0x34, S_PACK_HH_B32_B16>; 1990def S_RFE_RESTORE_B64_vi : SOP2_Real_vi <0x2b, S_RFE_RESTORE_B64>; 1991 1992def S_MOVK_I32_vi : SOPK_Real_vi <0x00, S_MOVK_I32>; 1993def S_CMOVK_I32_vi : SOPK_Real_vi <0x01, S_CMOVK_I32>; 1994def S_CMPK_EQ_I32_vi : SOPK_Real_vi <0x02, S_CMPK_EQ_I32>; 1995def S_CMPK_LG_I32_vi : SOPK_Real_vi <0x03, S_CMPK_LG_I32>; 1996def S_CMPK_GT_I32_vi : SOPK_Real_vi <0x04, S_CMPK_GT_I32>; 1997def S_CMPK_GE_I32_vi : SOPK_Real_vi <0x05, S_CMPK_GE_I32>; 1998def S_CMPK_LT_I32_vi : SOPK_Real_vi <0x06, S_CMPK_LT_I32>; 1999def S_CMPK_LE_I32_vi : SOPK_Real_vi <0x07, S_CMPK_LE_I32>; 2000def S_CMPK_EQ_U32_vi : SOPK_Real_vi <0x08, S_CMPK_EQ_U32>; 2001def S_CMPK_LG_U32_vi : SOPK_Real_vi <0x09, S_CMPK_LG_U32>; 2002def S_CMPK_GT_U32_vi : SOPK_Real_vi <0x0A, S_CMPK_GT_U32>; 2003def S_CMPK_GE_U32_vi : SOPK_Real_vi <0x0B, S_CMPK_GE_U32>; 2004def S_CMPK_LT_U32_vi : SOPK_Real_vi <0x0C, S_CMPK_LT_U32>; 2005def S_CMPK_LE_U32_vi : SOPK_Real_vi <0x0D, S_CMPK_LE_U32>; 2006def S_ADDK_I32_vi : SOPK_Real_vi <0x0E, S_ADDK_I32>; 2007def S_MULK_I32_vi : SOPK_Real_vi <0x0F, S_MULK_I32>; 2008def S_CBRANCH_I_FORK_vi : SOPK_Real_vi <0x10, S_CBRANCH_I_FORK>; 2009def S_GETREG_B32_vi : SOPK_Real_vi <0x11, S_GETREG_B32>; 2010def S_SETREG_B32_vi : SOPK_Real_vi <0x12, S_SETREG_B32>; 2011//def S_GETREG_REGRD_B32_vi : SOPK_Real_vi <0x13, S_GETREG_REGRD_B32>; // see pseudo for comments 2012def S_SETREG_IMM32_B32_vi : SOPK_Real64<0x14, S_SETREG_IMM32_B32>, 2013 Select_vi<S_SETREG_IMM32_B32.Mnemonic>; 2014 2015def S_CALL_B64_vi : SOPK_Real_vi <0x15, S_CALL_B64>; 2016 2017//===----------------------------------------------------------------------===// 2018// SOP1 - GFX9. 2019//===----------------------------------------------------------------------===// 2020 2021def S_ANDN1_SAVEEXEC_B64_vi : SOP1_Real_vi<0x33, S_ANDN1_SAVEEXEC_B64>; 2022def S_ORN1_SAVEEXEC_B64_vi : SOP1_Real_vi<0x34, S_ORN1_SAVEEXEC_B64>; 2023def S_ANDN1_WREXEC_B64_vi : SOP1_Real_vi<0x35, S_ANDN1_WREXEC_B64>; 2024def S_ANDN2_WREXEC_B64_vi : SOP1_Real_vi<0x36, S_ANDN2_WREXEC_B64>; 2025def S_BITREPLICATE_B64_B32_vi : SOP1_Real_vi<0x37, S_BITREPLICATE_B64_B32>; 2026 2027//===----------------------------------------------------------------------===// 2028// SOP2 - GFX9. 2029//===----------------------------------------------------------------------===// 2030 2031def S_LSHL1_ADD_U32_vi : SOP2_Real_vi<0x2e, S_LSHL1_ADD_U32>; 2032def S_LSHL2_ADD_U32_vi : SOP2_Real_vi<0x2f, S_LSHL2_ADD_U32>; 2033def S_LSHL3_ADD_U32_vi : SOP2_Real_vi<0x30, S_LSHL3_ADD_U32>; 2034def S_LSHL4_ADD_U32_vi : SOP2_Real_vi<0x31, S_LSHL4_ADD_U32>; 2035def S_MUL_HI_U32_vi : SOP2_Real_vi<0x2c, S_MUL_HI_U32>; 2036def S_MUL_HI_I32_vi : SOP2_Real_vi<0x2d, S_MUL_HI_I32>; 2037