1//===-- SOPInstructions.td - SOP Instruction Defintions -------------------===// 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//===----------------------------------------------------------------------===// 9 10def GPRIdxModeMatchClass : AsmOperandClass { 11 let Name = "GPRIdxMode"; 12 let PredicateMethod = "isGPRIdxMode"; 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 22//===----------------------------------------------------------------------===// 23// SOP1 Instructions 24//===----------------------------------------------------------------------===// 25 26class SOP1_Pseudo <string opName, dag outs, dag ins, 27 string asmOps, list<dag> pattern=[]> : 28 InstSI <outs, ins, "", pattern>, 29 SIMCInstr<opName, SIEncodingFamily.NONE> { 30 let isPseudo = 1; 31 let isCodeGenOnly = 1; 32 let SubtargetPredicate = isGCN; 33 34 let mayLoad = 0; 35 let mayStore = 0; 36 let hasSideEffects = 0; 37 let SALU = 1; 38 let SOP1 = 1; 39 let SchedRW = [WriteSALU]; 40 let Size = 4; 41 let UseNamedOperandTable = 1; 42 43 string Mnemonic = opName; 44 string AsmOperands = asmOps; 45 46 bits<1> has_src0 = 1; 47 bits<1> has_sdst = 1; 48} 49 50class SOP1_Real<bits<8> op, SOP1_Pseudo ps> : 51 InstSI <ps.OutOperandList, ps.InOperandList, 52 ps.Mnemonic # " " # ps.AsmOperands, []>, 53 Enc32 { 54 55 let isPseudo = 0; 56 let isCodeGenOnly = 0; 57 let Size = 4; 58 59 // copy relevant pseudo op flags 60 let SubtargetPredicate = ps.SubtargetPredicate; 61 let AsmMatchConverter = ps.AsmMatchConverter; 62 63 // encoding 64 bits<7> sdst; 65 bits<8> src0; 66 67 let Inst{7-0} = !if(ps.has_src0, src0, ?); 68 let Inst{15-8} = op; 69 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 70 let Inst{31-23} = 0x17d; //encoding; 71} 72 73class SOP1_32 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 74 opName, (outs SReg_32:$sdst), (ins SSrc_b32:$src0), 75 "$sdst, $src0", pattern 76>; 77 78// 32-bit input, no output. 79class SOP1_0_32 <string opName, list<dag> pattern = []> : SOP1_Pseudo < 80 opName, (outs), (ins SSrc_b32:$src0), 81 "$src0", pattern> { 82 let has_sdst = 0; 83} 84 85class SOP1_0_32R <string opName, list<dag> pattern = []> : SOP1_Pseudo < 86 opName, (outs), (ins SReg_32:$src0), 87 "$src0", pattern> { 88 let has_sdst = 0; 89} 90 91class SOP1_64 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 92 opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0), 93 "$sdst, $src0", pattern 94>; 95 96// 64-bit input, 32-bit output. 97class SOP1_32_64 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 98 opName, (outs SReg_32:$sdst), (ins SSrc_b64:$src0), 99 "$sdst, $src0", pattern 100>; 101 102// 32-bit input, 64-bit output. 103class SOP1_64_32 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 104 opName, (outs SReg_64:$sdst), (ins SSrc_b32:$src0), 105 "$sdst, $src0", pattern 106>; 107 108// no input, 64-bit output. 109class SOP1_64_0 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 110 opName, (outs SReg_64:$sdst), (ins), "$sdst", pattern> { 111 let has_src0 = 0; 112} 113 114// 64-bit input, no output 115class SOP1_1 <string opName, list<dag> pattern=[]> : SOP1_Pseudo < 116 opName, (outs), (ins SReg_64:$src0), "$src0", pattern> { 117 let has_sdst = 0; 118} 119 120 121let isMoveImm = 1 in { 122 let isReMaterializable = 1, isAsCheapAsAMove = 1 in { 123 def S_MOV_B32 : SOP1_32 <"s_mov_b32">; 124 def S_MOV_B64 : SOP1_64 <"s_mov_b64">; 125 } // End isRematerializeable = 1 126 127 let Uses = [SCC] in { 128 def S_CMOV_B32 : SOP1_32 <"s_cmov_b32">; 129 def S_CMOV_B64 : SOP1_64 <"s_cmov_b64">; 130 } // End Uses = [SCC] 131} // End isMoveImm = 1 132 133let Defs = [SCC] in { 134 def S_NOT_B32 : SOP1_32 <"s_not_b32", 135 [(set i32:$sdst, (not i32:$src0))] 136 >; 137 138 def S_NOT_B64 : SOP1_64 <"s_not_b64", 139 [(set i64:$sdst, (not i64:$src0))] 140 >; 141 def S_WQM_B32 : SOP1_32 <"s_wqm_b32">; 142 def S_WQM_B64 : SOP1_64 <"s_wqm_b64">; 143} // End Defs = [SCC] 144 145 146def S_BREV_B32 : SOP1_32 <"s_brev_b32", 147 [(set i32:$sdst, (bitreverse i32:$src0))] 148>; 149def S_BREV_B64 : SOP1_64 <"s_brev_b64">; 150 151let Defs = [SCC] in { 152def S_BCNT0_I32_B32 : SOP1_32 <"s_bcnt0_i32_b32">; 153def S_BCNT0_I32_B64 : SOP1_32_64 <"s_bcnt0_i32_b64">; 154def S_BCNT1_I32_B32 : SOP1_32 <"s_bcnt1_i32_b32", 155 [(set i32:$sdst, (ctpop i32:$src0))] 156>; 157def S_BCNT1_I32_B64 : SOP1_32_64 <"s_bcnt1_i32_b64">; 158} // End Defs = [SCC] 159 160def S_FF0_I32_B32 : SOP1_32 <"s_ff0_i32_b32">; 161def S_FF0_I32_B64 : SOP1_32_64 <"s_ff0_i32_b64">; 162def S_FF1_I32_B64 : SOP1_32_64 <"s_ff1_i32_b64">; 163 164def S_FF1_I32_B32 : SOP1_32 <"s_ff1_i32_b32", 165 [(set i32:$sdst, (AMDGPUffbl_b32 i32:$src0))] 166>; 167 168def S_FLBIT_I32_B32 : SOP1_32 <"s_flbit_i32_b32", 169 [(set i32:$sdst, (AMDGPUffbh_u32 i32:$src0))] 170>; 171 172def S_FLBIT_I32_B64 : SOP1_32_64 <"s_flbit_i32_b64">; 173def S_FLBIT_I32 : SOP1_32 <"s_flbit_i32", 174 [(set i32:$sdst, (AMDGPUffbh_i32 i32:$src0))] 175>; 176def S_FLBIT_I32_I64 : SOP1_32_64 <"s_flbit_i32_i64">; 177def S_SEXT_I32_I8 : SOP1_32 <"s_sext_i32_i8", 178 [(set i32:$sdst, (sext_inreg i32:$src0, i8))] 179>; 180def S_SEXT_I32_I16 : SOP1_32 <"s_sext_i32_i16", 181 [(set i32:$sdst, (sext_inreg i32:$src0, i16))] 182>; 183 184def S_BITSET0_B32 : SOP1_32 <"s_bitset0_b32">; 185def S_BITSET0_B64 : SOP1_64_32 <"s_bitset0_b64">; 186def S_BITSET1_B32 : SOP1_32 <"s_bitset1_b32">; 187def S_BITSET1_B64 : SOP1_64_32 <"s_bitset1_b64">; 188def S_GETPC_B64 : SOP1_64_0 <"s_getpc_b64", 189 [(set i64:$sdst, (int_amdgcn_s_getpc))] 190>; 191 192let isTerminator = 1, isBarrier = 1, SchedRW = [WriteBranch] in { 193 194let isBranch = 1, isIndirectBranch = 1 in { 195def S_SETPC_B64 : SOP1_1 <"s_setpc_b64">; 196} // End isBranch = 1, isIndirectBranch = 1 197 198let isReturn = 1 in { 199// Define variant marked as return rather than branch. 200def S_SETPC_B64_return : SOP1_1<"", [(AMDGPUret_flag i64:$src0)]>; 201} 202} // End isTerminator = 1, isBarrier = 1 203 204let isCall = 1 in { 205def S_SWAPPC_B64 : SOP1_64 <"s_swappc_b64" 206>; 207} 208 209def S_RFE_B64 : SOP1_1 <"s_rfe_b64">; 210 211let hasSideEffects = 1, Uses = [EXEC], Defs = [EXEC, SCC] in { 212 213def S_AND_SAVEEXEC_B64 : SOP1_64 <"s_and_saveexec_b64">; 214def S_OR_SAVEEXEC_B64 : SOP1_64 <"s_or_saveexec_b64">; 215def S_XOR_SAVEEXEC_B64 : SOP1_64 <"s_xor_saveexec_b64">; 216def S_ANDN2_SAVEEXEC_B64 : SOP1_64 <"s_andn2_saveexec_b64">; 217def S_ORN2_SAVEEXEC_B64 : SOP1_64 <"s_orn2_saveexec_b64">; 218def S_NAND_SAVEEXEC_B64 : SOP1_64 <"s_nand_saveexec_b64">; 219def S_NOR_SAVEEXEC_B64 : SOP1_64 <"s_nor_saveexec_b64">; 220def S_XNOR_SAVEEXEC_B64 : SOP1_64 <"s_xnor_saveexec_b64">; 221 222} // End hasSideEffects = 1, Uses = [EXEC], Defs = [EXEC, SCC] 223 224def S_QUADMASK_B32 : SOP1_32 <"s_quadmask_b32">; 225def S_QUADMASK_B64 : SOP1_64 <"s_quadmask_b64">; 226 227let Uses = [M0] in { 228def S_MOVRELS_B32 : SOP1_32 <"s_movrels_b32">; 229def S_MOVRELS_B64 : SOP1_64 <"s_movrels_b64">; 230def S_MOVRELD_B32 : SOP1_32 <"s_movreld_b32">; 231def S_MOVRELD_B64 : SOP1_64 <"s_movreld_b64">; 232} // End Uses = [M0] 233 234def S_CBRANCH_JOIN : SOP1_0_32R <"s_cbranch_join">; 235def S_MOV_REGRD_B32 : SOP1_32 <"s_mov_regrd_b32">; 236let Defs = [SCC] in { 237def S_ABS_I32 : SOP1_32 <"s_abs_i32">; 238} // End Defs = [SCC] 239def S_MOV_FED_B32 : SOP1_32 <"s_mov_fed_b32">; 240 241let SubtargetPredicate = HasVGPRIndexMode in { 242def S_SET_GPR_IDX_IDX : SOP1_0_32<"s_set_gpr_idx_idx"> { 243 let Uses = [M0]; 244 let Defs = [M0]; 245} 246} 247 248//===----------------------------------------------------------------------===// 249// SOP2 Instructions 250//===----------------------------------------------------------------------===// 251 252class SOP2_Pseudo<string opName, dag outs, dag ins, 253 string asmOps, list<dag> pattern=[]> : 254 InstSI<outs, ins, "", pattern>, 255 SIMCInstr<opName, SIEncodingFamily.NONE> { 256 let isPseudo = 1; 257 let isCodeGenOnly = 1; 258 let SubtargetPredicate = isGCN; 259 let mayLoad = 0; 260 let mayStore = 0; 261 let hasSideEffects = 0; 262 let SALU = 1; 263 let SOP2 = 1; 264 let SchedRW = [WriteSALU]; 265 let UseNamedOperandTable = 1; 266 267 string Mnemonic = opName; 268 string AsmOperands = asmOps; 269 270 bits<1> has_sdst = 1; 271 272 // Pseudo instructions have no encodings, but adding this field here allows 273 // us to do: 274 // let sdst = xxx in { 275 // for multiclasses that include both real and pseudo instructions. 276 // field bits<7> sdst = 0; 277 // let Size = 4; // Do we need size here? 278} 279 280class SOP2_Real<bits<7> op, SOP2_Pseudo ps> : 281 InstSI <ps.OutOperandList, ps.InOperandList, 282 ps.Mnemonic # " " # ps.AsmOperands, []>, 283 Enc32 { 284 let isPseudo = 0; 285 let isCodeGenOnly = 0; 286 287 // copy relevant pseudo op flags 288 let SubtargetPredicate = ps.SubtargetPredicate; 289 let AsmMatchConverter = ps.AsmMatchConverter; 290 291 // encoding 292 bits<7> sdst; 293 bits<8> src0; 294 bits<8> src1; 295 296 let Inst{7-0} = src0; 297 let Inst{15-8} = src1; 298 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 299 let Inst{29-23} = op; 300 let Inst{31-30} = 0x2; // encoding 301} 302 303 304class SOP2_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 305 opName, (outs SReg_32:$sdst), (ins SSrc_b32:$src0, SSrc_b32:$src1), 306 "$sdst, $src0, $src1", pattern 307>; 308 309class SOP2_64 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 310 opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0, SSrc_b64:$src1), 311 "$sdst, $src0, $src1", pattern 312>; 313 314class SOP2_64_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 315 opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0, SSrc_b32:$src1), 316 "$sdst, $src0, $src1", pattern 317>; 318 319class SOP2_64_32_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo < 320 opName, (outs SReg_64:$sdst), (ins SSrc_b32:$src0, SSrc_b32:$src1), 321 "$sdst, $src0, $src1", pattern 322>; 323 324let Defs = [SCC] in { // Carry out goes to SCC 325let isCommutable = 1 in { 326def S_ADD_U32 : SOP2_32 <"s_add_u32">; 327def S_ADD_I32 : SOP2_32 <"s_add_i32", 328 [(set i32:$sdst, (add SSrc_b32:$src0, SSrc_b32:$src1))] 329>; 330} // End isCommutable = 1 331 332def S_SUB_U32 : SOP2_32 <"s_sub_u32">; 333def S_SUB_I32 : SOP2_32 <"s_sub_i32", 334 [(set i32:$sdst, (sub SSrc_b32:$src0, SSrc_b32:$src1))] 335>; 336 337let Uses = [SCC] in { // Carry in comes from SCC 338let isCommutable = 1 in { 339def S_ADDC_U32 : SOP2_32 <"s_addc_u32", 340 [(set i32:$sdst, (adde (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))]>; 341} // End isCommutable = 1 342 343def S_SUBB_U32 : SOP2_32 <"s_subb_u32", 344 [(set i32:$sdst, (sube (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))]>; 345} // End Uses = [SCC] 346 347 348let isCommutable = 1 in { 349def S_MIN_I32 : SOP2_32 <"s_min_i32", 350 [(set i32:$sdst, (smin i32:$src0, i32:$src1))] 351>; 352def S_MIN_U32 : SOP2_32 <"s_min_u32", 353 [(set i32:$sdst, (umin i32:$src0, i32:$src1))] 354>; 355def S_MAX_I32 : SOP2_32 <"s_max_i32", 356 [(set i32:$sdst, (smax i32:$src0, i32:$src1))] 357>; 358def S_MAX_U32 : SOP2_32 <"s_max_u32", 359 [(set i32:$sdst, (umax i32:$src0, i32:$src1))] 360>; 361} // End isCommutable = 1 362} // End Defs = [SCC] 363 364 365let Uses = [SCC] in { 366 def S_CSELECT_B32 : SOP2_32 <"s_cselect_b32">; 367 def S_CSELECT_B64 : SOP2_64 <"s_cselect_b64">; 368} // End Uses = [SCC] 369 370let Defs = [SCC] in { 371let isCommutable = 1 in { 372def S_AND_B32 : SOP2_32 <"s_and_b32", 373 [(set i32:$sdst, (and i32:$src0, i32:$src1))] 374>; 375 376def S_AND_B64 : SOP2_64 <"s_and_b64", 377 [(set i64:$sdst, (and i64:$src0, i64:$src1))] 378>; 379 380def S_OR_B32 : SOP2_32 <"s_or_b32", 381 [(set i32:$sdst, (or i32:$src0, i32:$src1))] 382>; 383 384def S_OR_B64 : SOP2_64 <"s_or_b64", 385 [(set i64:$sdst, (or i64:$src0, i64:$src1))] 386>; 387 388def S_XOR_B32 : SOP2_32 <"s_xor_b32", 389 [(set i32:$sdst, (xor i32:$src0, i32:$src1))] 390>; 391 392def S_XOR_B64 : SOP2_64 <"s_xor_b64", 393 [(set i64:$sdst, (xor i64:$src0, i64:$src1))] 394>; 395 396def S_XNOR_B32 : SOP2_32 <"s_xnor_b32", 397 [(set i32:$sdst, (not (xor_oneuse i32:$src0, i32:$src1)))] 398>; 399 400def S_XNOR_B64 : SOP2_64 <"s_xnor_b64", 401 [(set i64:$sdst, (not (xor_oneuse i64:$src0, i64:$src1)))] 402>; 403} // End isCommutable = 1 404 405def S_ANDN2_B32 : SOP2_32 <"s_andn2_b32">; 406def S_ANDN2_B64 : SOP2_64 <"s_andn2_b64">; 407def S_ORN2_B32 : SOP2_32 <"s_orn2_b32">; 408def S_ORN2_B64 : SOP2_64 <"s_orn2_b64">; 409def S_NAND_B32 : SOP2_32 <"s_nand_b32">; 410def S_NAND_B64 : SOP2_64 <"s_nand_b64">; 411def S_NOR_B32 : SOP2_32 <"s_nor_b32">; 412def S_NOR_B64 : SOP2_64 <"s_nor_b64">; 413} // End Defs = [SCC] 414 415// Use added complexity so these patterns are preferred to the VALU patterns. 416let AddedComplexity = 1 in { 417 418let Defs = [SCC] in { 419def S_LSHL_B32 : SOP2_32 <"s_lshl_b32", 420 [(set i32:$sdst, (shl i32:$src0, i32:$src1))] 421>; 422def S_LSHL_B64 : SOP2_64_32 <"s_lshl_b64", 423 [(set i64:$sdst, (shl i64:$src0, i32:$src1))] 424>; 425def S_LSHR_B32 : SOP2_32 <"s_lshr_b32", 426 [(set i32:$sdst, (srl i32:$src0, i32:$src1))] 427>; 428def S_LSHR_B64 : SOP2_64_32 <"s_lshr_b64", 429 [(set i64:$sdst, (srl i64:$src0, i32:$src1))] 430>; 431def S_ASHR_I32 : SOP2_32 <"s_ashr_i32", 432 [(set i32:$sdst, (sra i32:$src0, i32:$src1))] 433>; 434def S_ASHR_I64 : SOP2_64_32 <"s_ashr_i64", 435 [(set i64:$sdst, (sra i64:$src0, i32:$src1))] 436>; 437} // End Defs = [SCC] 438 439def S_BFM_B32 : SOP2_32 <"s_bfm_b32", 440 [(set i32:$sdst, (AMDGPUbfm i32:$src0, i32:$src1))]>; 441def S_BFM_B64 : SOP2_64_32_32 <"s_bfm_b64">; 442def S_MUL_I32 : SOP2_32 <"s_mul_i32", 443 [(set i32:$sdst, (mul i32:$src0, i32:$src1))]> { 444 let isCommutable = 1; 445} 446 447} // End AddedComplexity = 1 448 449let Defs = [SCC] in { 450def S_BFE_U32 : SOP2_32 <"s_bfe_u32">; 451def S_BFE_I32 : SOP2_32 <"s_bfe_i32">; 452def S_BFE_U64 : SOP2_64_32 <"s_bfe_u64">; 453def S_BFE_I64 : SOP2_64_32 <"s_bfe_i64">; 454} // End Defs = [SCC] 455 456def S_CBRANCH_G_FORK : SOP2_Pseudo < 457 "s_cbranch_g_fork", (outs), 458 (ins SCSrc_b64:$src0, SCSrc_b64:$src1), 459 "$src0, $src1" 460> { 461 let has_sdst = 0; 462} 463 464let Defs = [SCC] in { 465def S_ABSDIFF_I32 : SOP2_32 <"s_absdiff_i32">; 466} // End Defs = [SCC] 467 468let SubtargetPredicate = isVI in { 469 def S_RFE_RESTORE_B64 : SOP2_Pseudo < 470 "s_rfe_restore_b64", (outs), 471 (ins SSrc_b64:$src0, SSrc_b32:$src1), 472 "$src0, $src1" 473 > { 474 let hasSideEffects = 1; 475 let has_sdst = 0; 476 } 477} 478 479let SubtargetPredicate = isGFX9 in { 480 def S_PACK_LL_B32_B16 : SOP2_32<"s_pack_ll_b32_b16">; 481 def S_PACK_LH_B32_B16 : SOP2_32<"s_pack_lh_b32_b16">; 482 def S_PACK_HH_B32_B16 : SOP2_32<"s_pack_hh_b32_b16">; 483} 484 485//===----------------------------------------------------------------------===// 486// SOPK Instructions 487//===----------------------------------------------------------------------===// 488 489class SOPK_Pseudo <string opName, dag outs, dag ins, 490 string asmOps, list<dag> pattern=[]> : 491 InstSI <outs, ins, "", pattern>, 492 SIMCInstr<opName, SIEncodingFamily.NONE> { 493 let isPseudo = 1; 494 let isCodeGenOnly = 1; 495 let SubtargetPredicate = isGCN; 496 let mayLoad = 0; 497 let mayStore = 0; 498 let hasSideEffects = 0; 499 let SALU = 1; 500 let SOPK = 1; 501 let SchedRW = [WriteSALU]; 502 let UseNamedOperandTable = 1; 503 string Mnemonic = opName; 504 string AsmOperands = asmOps; 505 506 bits<1> has_sdst = 1; 507} 508 509class SOPK_Real<bits<5> op, SOPK_Pseudo ps> : 510 InstSI <ps.OutOperandList, ps.InOperandList, 511 ps.Mnemonic # " " # ps.AsmOperands, []> { 512 let isPseudo = 0; 513 let isCodeGenOnly = 0; 514 515 // copy relevant pseudo op flags 516 let SubtargetPredicate = ps.SubtargetPredicate; 517 let AsmMatchConverter = ps.AsmMatchConverter; 518 let DisableEncoding = ps.DisableEncoding; 519 let Constraints = ps.Constraints; 520 521 // encoding 522 bits<7> sdst; 523 bits<16> simm16; 524 bits<32> imm; 525} 526 527class SOPK_Real32<bits<5> op, SOPK_Pseudo ps> : 528 SOPK_Real <op, ps>, 529 Enc32 { 530 let Inst{15-0} = simm16; 531 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 532 let Inst{27-23} = op; 533 let Inst{31-28} = 0xb; //encoding 534} 535 536class SOPK_Real64<bits<5> op, SOPK_Pseudo ps> : 537 SOPK_Real<op, ps>, 538 Enc64 { 539 let Inst{15-0} = simm16; 540 let Inst{22-16} = !if(ps.has_sdst, sdst, ?); 541 let Inst{27-23} = op; 542 let Inst{31-28} = 0xb; //encoding 543 let Inst{63-32} = imm; 544} 545 546class SOPKInstTable <bit is_sopk, string cmpOp = ""> { 547 bit IsSOPK = is_sopk; 548 string BaseCmpOp = cmpOp; 549} 550 551class SOPK_32 <string opName, list<dag> pattern=[]> : SOPK_Pseudo < 552 opName, 553 (outs SReg_32:$sdst), 554 (ins s16imm:$simm16), 555 "$sdst, $simm16", 556 pattern>; 557 558class SOPK_SCC <string opName, string base_op, bit isSignExt> : SOPK_Pseudo < 559 opName, 560 (outs), 561 !if(isSignExt, 562 (ins SReg_32:$sdst, s16imm:$simm16), 563 (ins SReg_32:$sdst, u16imm:$simm16)), 564 "$sdst, $simm16", []>, 565 SOPKInstTable<1, base_op>{ 566 let Defs = [SCC]; 567} 568 569class SOPK_32TIE <string opName, list<dag> pattern=[]> : SOPK_Pseudo < 570 opName, 571 (outs SReg_32:$sdst), 572 (ins SReg_32:$src0, s16imm:$simm16), 573 "$sdst, $simm16", 574 pattern 575>; 576 577let isReMaterializable = 1, isMoveImm = 1 in { 578def S_MOVK_I32 : SOPK_32 <"s_movk_i32">; 579} // End isReMaterializable = 1 580let Uses = [SCC] in { 581def S_CMOVK_I32 : SOPK_32 <"s_cmovk_i32">; 582} 583 584let isCompare = 1 in { 585 586// This instruction is disabled for now until we can figure out how to teach 587// the instruction selector to correctly use the S_CMP* vs V_CMP* 588// instructions. 589// 590// When this instruction is enabled the code generator sometimes produces this 591// invalid sequence: 592// 593// SCC = S_CMPK_EQ_I32 SGPR0, imm 594// VCC = COPY SCC 595// VGPR0 = V_CNDMASK VCC, VGPR0, VGPR1 596// 597// def S_CMPK_EQ_I32 : SOPK_SCC <"s_cmpk_eq_i32", 598// [(set i1:$dst, (setcc i32:$src0, imm:$src1, SETEQ))] 599// >; 600 601def S_CMPK_EQ_I32 : SOPK_SCC <"s_cmpk_eq_i32", "s_cmp_eq_i32", 1>; 602def S_CMPK_LG_I32 : SOPK_SCC <"s_cmpk_lg_i32", "s_cmp_lg_i32", 1>; 603def S_CMPK_GT_I32 : SOPK_SCC <"s_cmpk_gt_i32", "s_cmp_gt_i32", 1>; 604def S_CMPK_GE_I32 : SOPK_SCC <"s_cmpk_ge_i32", "s_cmp_ge_i32", 1>; 605def S_CMPK_LT_I32 : SOPK_SCC <"s_cmpk_lt_i32", "s_cmp_lt_i32", 1>; 606def S_CMPK_LE_I32 : SOPK_SCC <"s_cmpk_le_i32", "s_cmp_le_i32", 1>; 607 608let SOPKZext = 1 in { 609def S_CMPK_EQ_U32 : SOPK_SCC <"s_cmpk_eq_u32", "s_cmp_eq_u32", 0>; 610def S_CMPK_LG_U32 : SOPK_SCC <"s_cmpk_lg_u32", "s_cmp_lg_u32", 0>; 611def S_CMPK_GT_U32 : SOPK_SCC <"s_cmpk_gt_u32", "s_cmp_gt_u32", 0>; 612def S_CMPK_GE_U32 : SOPK_SCC <"s_cmpk_ge_u32", "s_cmp_ge_u32", 0>; 613def S_CMPK_LT_U32 : SOPK_SCC <"s_cmpk_lt_u32", "s_cmp_lt_u32", 0>; 614def S_CMPK_LE_U32 : SOPK_SCC <"s_cmpk_le_u32", "s_cmp_le_u32", 0>; 615} // End SOPKZext = 1 616} // End isCompare = 1 617 618let Defs = [SCC], isCommutable = 1, DisableEncoding = "$src0", 619 Constraints = "$sdst = $src0" in { 620 def S_ADDK_I32 : SOPK_32TIE <"s_addk_i32">; 621 def S_MULK_I32 : SOPK_32TIE <"s_mulk_i32">; 622} 623 624def S_CBRANCH_I_FORK : SOPK_Pseudo < 625 "s_cbranch_i_fork", 626 (outs), (ins SReg_64:$sdst, s16imm:$simm16), 627 "$sdst, $simm16" 628>; 629 630let mayLoad = 1 in { 631def S_GETREG_B32 : SOPK_Pseudo < 632 "s_getreg_b32", 633 (outs SReg_32:$sdst), (ins hwreg:$simm16), 634 "$sdst, $simm16" 635>; 636} 637 638let hasSideEffects = 1 in { 639 640def S_SETREG_B32 : SOPK_Pseudo < 641 "s_setreg_b32", 642 (outs), (ins SReg_32:$sdst, hwreg:$simm16), 643 "$simm16, $sdst", 644 [(AMDGPUsetreg i32:$sdst, (i16 timm:$simm16))] 645>; 646 647// FIXME: Not on SI? 648//def S_GETREG_REGRD_B32 : SOPK_32 <sopk<0x14, 0x13>, "s_getreg_regrd_b32">; 649 650def S_SETREG_IMM32_B32 : SOPK_Pseudo < 651 "s_setreg_imm32_b32", 652 (outs), (ins i32imm:$imm, hwreg:$simm16), 653 "$simm16, $imm"> { 654 let Size = 8; // Unlike every other SOPK instruction. 655 let has_sdst = 0; 656} 657 658} // End hasSideEffects = 1 659 660//===----------------------------------------------------------------------===// 661// SOPC Instructions 662//===----------------------------------------------------------------------===// 663 664class SOPCe <bits<7> op> : Enc32 { 665 bits<8> src0; 666 bits<8> src1; 667 668 let Inst{7-0} = src0; 669 let Inst{15-8} = src1; 670 let Inst{22-16} = op; 671 let Inst{31-23} = 0x17e; 672} 673 674class SOPC <bits<7> op, dag outs, dag ins, string asm, 675 list<dag> pattern = []> : 676 InstSI<outs, ins, asm, pattern>, SOPCe <op> { 677 let mayLoad = 0; 678 let mayStore = 0; 679 let hasSideEffects = 0; 680 let SALU = 1; 681 let SOPC = 1; 682 let isCodeGenOnly = 0; 683 let Defs = [SCC]; 684 let SchedRW = [WriteSALU]; 685 let UseNamedOperandTable = 1; 686 let SubtargetPredicate = isGCN; 687} 688 689class SOPC_Base <bits<7> op, RegisterOperand rc0, RegisterOperand rc1, 690 string opName, list<dag> pattern = []> : SOPC < 691 op, (outs), (ins rc0:$src0, rc1:$src1), 692 opName#" $src0, $src1", pattern > { 693 let Defs = [SCC]; 694} 695class SOPC_Helper <bits<7> op, RegisterOperand rc, ValueType vt, 696 string opName, PatLeaf cond> : SOPC_Base < 697 op, rc, rc, opName, 698 [(set SCC, (si_setcc_uniform vt:$src0, vt:$src1, cond))] > { 699} 700 701class SOPC_CMP_32<bits<7> op, string opName, 702 PatLeaf cond = COND_NULL, string revOp = opName> 703 : SOPC_Helper<op, SSrc_b32, i32, opName, cond>, 704 Commutable_REV<revOp, !eq(revOp, opName)>, 705 SOPKInstTable<0, opName> { 706 let isCompare = 1; 707 let isCommutable = 1; 708} 709 710class SOPC_CMP_64<bits<7> op, string opName, 711 PatLeaf cond = COND_NULL, string revOp = opName> 712 : SOPC_Helper<op, SSrc_b64, i64, opName, cond>, 713 Commutable_REV<revOp, !eq(revOp, opName)> { 714 let isCompare = 1; 715 let isCommutable = 1; 716} 717 718class SOPC_32<bits<7> op, string opName, list<dag> pattern = []> 719 : SOPC_Base<op, SSrc_b32, SSrc_b32, opName, pattern>; 720 721class SOPC_64_32<bits<7> op, string opName, list<dag> pattern = []> 722 : SOPC_Base<op, SSrc_b64, SSrc_b32, opName, pattern>; 723 724def S_CMP_EQ_I32 : SOPC_CMP_32 <0x00, "s_cmp_eq_i32">; 725def S_CMP_LG_I32 : SOPC_CMP_32 <0x01, "s_cmp_lg_i32">; 726def S_CMP_GT_I32 : SOPC_CMP_32 <0x02, "s_cmp_gt_i32", COND_SGT>; 727def S_CMP_GE_I32 : SOPC_CMP_32 <0x03, "s_cmp_ge_i32", COND_SGE>; 728def S_CMP_LT_I32 : SOPC_CMP_32 <0x04, "s_cmp_lt_i32", COND_SLT, "s_cmp_gt_i32">; 729def S_CMP_LE_I32 : SOPC_CMP_32 <0x05, "s_cmp_le_i32", COND_SLE, "s_cmp_ge_i32">; 730def S_CMP_EQ_U32 : SOPC_CMP_32 <0x06, "s_cmp_eq_u32", COND_EQ>; 731def S_CMP_LG_U32 : SOPC_CMP_32 <0x07, "s_cmp_lg_u32", COND_NE>; 732def S_CMP_GT_U32 : SOPC_CMP_32 <0x08, "s_cmp_gt_u32", COND_UGT>; 733def S_CMP_GE_U32 : SOPC_CMP_32 <0x09, "s_cmp_ge_u32", COND_UGE>; 734def S_CMP_LT_U32 : SOPC_CMP_32 <0x0a, "s_cmp_lt_u32", COND_ULT, "s_cmp_gt_u32">; 735def S_CMP_LE_U32 : SOPC_CMP_32 <0x0b, "s_cmp_le_u32", COND_ULE, "s_cmp_ge_u32">; 736 737def S_BITCMP0_B32 : SOPC_32 <0x0c, "s_bitcmp0_b32">; 738def S_BITCMP1_B32 : SOPC_32 <0x0d, "s_bitcmp1_b32">; 739def S_BITCMP0_B64 : SOPC_64_32 <0x0e, "s_bitcmp0_b64">; 740def S_BITCMP1_B64 : SOPC_64_32 <0x0f, "s_bitcmp1_b64">; 741def S_SETVSKIP : SOPC_32 <0x10, "s_setvskip">; 742 743let SubtargetPredicate = isVI in { 744def S_CMP_EQ_U64 : SOPC_CMP_64 <0x12, "s_cmp_eq_u64", COND_EQ>; 745def S_CMP_LG_U64 : SOPC_CMP_64 <0x13, "s_cmp_lg_u64", COND_NE>; 746} 747 748let SubtargetPredicate = HasVGPRIndexMode in { 749def S_SET_GPR_IDX_ON : SOPC <0x11, 750 (outs), 751 (ins SSrc_b32:$src0, GPRIdxMode:$src1), 752 "s_set_gpr_idx_on $src0,$src1"> { 753 let Defs = [M0]; // No scc def 754 let Uses = [M0]; // Other bits of m0 unmodified. 755 let hasSideEffects = 1; // Sets mode.gpr_idx_en 756 let FixedSize = 1; 757} 758} 759 760//===----------------------------------------------------------------------===// 761// SOPP Instructions 762//===----------------------------------------------------------------------===// 763 764class SOPPe <bits<7> op> : Enc32 { 765 bits <16> simm16; 766 767 let Inst{15-0} = simm16; 768 let Inst{22-16} = op; 769 let Inst{31-23} = 0x17f; // encoding 770} 771 772class SOPP <bits<7> op, dag ins, string asm, list<dag> pattern = []> : 773 InstSI <(outs), ins, asm, pattern >, SOPPe <op> { 774 775 let mayLoad = 0; 776 let mayStore = 0; 777 let hasSideEffects = 0; 778 let SALU = 1; 779 let SOPP = 1; 780 let Size = 4; 781 let SchedRW = [WriteSALU]; 782 783 let UseNamedOperandTable = 1; 784 let SubtargetPredicate = isGCN; 785} 786 787 788def S_NOP : SOPP <0x00000000, (ins i16imm:$simm16), "s_nop $simm16">; 789 790let isTerminator = 1 in { 791 792def S_ENDPGM : SOPP <0x00000001, (ins), "s_endpgm", 793 [(AMDGPUendpgm)]> { 794 let simm16 = 0; 795 let isBarrier = 1; 796 let isReturn = 1; 797} 798 799let SubtargetPredicate = isVI in { 800def S_ENDPGM_SAVED : SOPP <0x0000001B, (ins), "s_endpgm_saved"> { 801 let simm16 = 0; 802 let isBarrier = 1; 803 let isReturn = 1; 804} 805} 806 807let isBranch = 1, SchedRW = [WriteBranch] in { 808def S_BRANCH : SOPP < 809 0x00000002, (ins sopp_brtarget:$simm16), "s_branch $simm16", 810 [(br bb:$simm16)]> { 811 let isBarrier = 1; 812} 813 814let Uses = [SCC] in { 815def S_CBRANCH_SCC0 : SOPP < 816 0x00000004, (ins sopp_brtarget:$simm16), 817 "s_cbranch_scc0 $simm16" 818>; 819def S_CBRANCH_SCC1 : SOPP < 820 0x00000005, (ins sopp_brtarget:$simm16), 821 "s_cbranch_scc1 $simm16" 822>; 823} // End Uses = [SCC] 824 825let Uses = [VCC] in { 826def S_CBRANCH_VCCZ : SOPP < 827 0x00000006, (ins sopp_brtarget:$simm16), 828 "s_cbranch_vccz $simm16" 829>; 830def S_CBRANCH_VCCNZ : SOPP < 831 0x00000007, (ins sopp_brtarget:$simm16), 832 "s_cbranch_vccnz $simm16" 833>; 834} // End Uses = [VCC] 835 836let Uses = [EXEC] in { 837def S_CBRANCH_EXECZ : SOPP < 838 0x00000008, (ins sopp_brtarget:$simm16), 839 "s_cbranch_execz $simm16" 840>; 841def S_CBRANCH_EXECNZ : SOPP < 842 0x00000009, (ins sopp_brtarget:$simm16), 843 "s_cbranch_execnz $simm16" 844>; 845} // End Uses = [EXEC] 846 847def S_CBRANCH_CDBGSYS : SOPP < 848 0x00000017, (ins sopp_brtarget:$simm16), 849 "s_cbranch_cdbgsys $simm16" 850>; 851 852def S_CBRANCH_CDBGSYS_AND_USER : SOPP < 853 0x0000001A, (ins sopp_brtarget:$simm16), 854 "s_cbranch_cdbgsys_and_user $simm16" 855>; 856 857def S_CBRANCH_CDBGSYS_OR_USER : SOPP < 858 0x00000019, (ins sopp_brtarget:$simm16), 859 "s_cbranch_cdbgsys_or_user $simm16" 860>; 861 862def S_CBRANCH_CDBGUSER : SOPP < 863 0x00000018, (ins sopp_brtarget:$simm16), 864 "s_cbranch_cdbguser $simm16" 865>; 866 867} // End isBranch = 1 868} // End isTerminator = 1 869 870let hasSideEffects = 1 in { 871def S_BARRIER : SOPP <0x0000000a, (ins), "s_barrier", 872 [(int_amdgcn_s_barrier)]> { 873 let SchedRW = [WriteBarrier]; 874 let simm16 = 0; 875 let mayLoad = 1; 876 let mayStore = 1; 877 let isConvergent = 1; 878} 879 880let SubtargetPredicate = isVI in { 881def S_WAKEUP : SOPP <0x00000003, (ins), "s_wakeup"> { 882 let simm16 = 0; 883 let mayLoad = 1; 884 let mayStore = 1; 885} 886} 887 888let mayLoad = 1, mayStore = 1, hasSideEffects = 1 in 889def S_WAITCNT : SOPP <0x0000000c, (ins WAIT_FLAG:$simm16), "s_waitcnt $simm16">; 890def S_SETHALT : SOPP <0x0000000d, (ins i16imm:$simm16), "s_sethalt $simm16">; 891def S_SETKILL : SOPP <0x0000000b, (ins i16imm:$simm16), "s_setkill $simm16">; 892 893// On SI the documentation says sleep for approximately 64 * low 2 894// bits, consistent with the reported maximum of 448. On VI the 895// maximum reported is 960 cycles, so 960 / 64 = 15 max, so is the 896// maximum really 15 on VI? 897def S_SLEEP : SOPP <0x0000000e, (ins i32imm:$simm16), 898 "s_sleep $simm16", [(int_amdgcn_s_sleep SIMM16bit:$simm16)]> { 899 let hasSideEffects = 1; 900 let mayLoad = 1; 901 let mayStore = 1; 902} 903 904def S_SETPRIO : SOPP <0x0000000f, (ins i16imm:$simm16), "s_setprio $simm16">; 905 906let Uses = [EXEC, M0] in { 907// FIXME: Should this be mayLoad+mayStore? 908def S_SENDMSG : SOPP <0x00000010, (ins SendMsgImm:$simm16), "s_sendmsg $simm16", 909 [(AMDGPUsendmsg (i32 imm:$simm16))] 910>; 911 912def S_SENDMSGHALT : SOPP <0x00000011, (ins SendMsgImm:$simm16), "s_sendmsghalt $simm16", 913 [(AMDGPUsendmsghalt (i32 imm:$simm16))] 914>; 915} // End Uses = [EXEC, M0] 916 917def S_TRAP : SOPP <0x00000012, (ins i16imm:$simm16), "s_trap $simm16">; 918def S_ICACHE_INV : SOPP <0x00000013, (ins), "s_icache_inv"> { 919 let simm16 = 0; 920} 921def S_INCPERFLEVEL : SOPP <0x00000014, (ins i32imm:$simm16), "s_incperflevel $simm16", 922 [(int_amdgcn_s_incperflevel SIMM16bit:$simm16)]> { 923 let hasSideEffects = 1; 924 let mayLoad = 1; 925 let mayStore = 1; 926} 927def S_DECPERFLEVEL : SOPP <0x00000015, (ins i32imm:$simm16), "s_decperflevel $simm16", 928 [(int_amdgcn_s_decperflevel SIMM16bit:$simm16)]> { 929 let hasSideEffects = 1; 930 let mayLoad = 1; 931 let mayStore = 1; 932} 933def S_TTRACEDATA : SOPP <0x00000016, (ins), "s_ttracedata"> { 934 let simm16 = 0; 935} 936 937let SubtargetPredicate = HasVGPRIndexMode in { 938def S_SET_GPR_IDX_OFF : SOPP<0x1c, (ins), "s_set_gpr_idx_off"> { 939 let simm16 = 0; 940} 941} 942} // End hasSideEffects 943 944let SubtargetPredicate = HasVGPRIndexMode in { 945def S_SET_GPR_IDX_MODE : SOPP<0x1d, (ins GPRIdxMode:$simm16), 946 "s_set_gpr_idx_mode$simm16"> { 947 let Defs = [M0]; 948} 949} 950 951//===----------------------------------------------------------------------===// 952// S_GETREG_B32 Intrinsic Pattern. 953//===----------------------------------------------------------------------===// 954def : GCNPat < 955 (int_amdgcn_s_getreg imm:$simm16), 956 (S_GETREG_B32 (as_i16imm $simm16)) 957>; 958 959//===----------------------------------------------------------------------===// 960// SOP1 Patterns 961//===----------------------------------------------------------------------===// 962 963def : GCNPat < 964 (i64 (ctpop i64:$src)), 965 (i64 (REG_SEQUENCE SReg_64, 966 (i32 (COPY_TO_REGCLASS (S_BCNT1_I32_B64 $src), SReg_32)), sub0, 967 (S_MOV_B32 (i32 0)), sub1)) 968>; 969 970def : GCNPat < 971 (i32 (smax i32:$x, (i32 (ineg i32:$x)))), 972 (S_ABS_I32 $x) 973>; 974 975def : GCNPat < 976 (i16 imm:$imm), 977 (S_MOV_B32 imm:$imm) 978>; 979 980// Same as a 32-bit inreg 981def : GCNPat< 982 (i32 (sext i16:$src)), 983 (S_SEXT_I32_I16 $src) 984>; 985 986 987//===----------------------------------------------------------------------===// 988// SOP2 Patterns 989//===----------------------------------------------------------------------===// 990 991// V_ADD_I32_e32/S_ADD_U32 produces carry in VCC/SCC. For the vector 992// case, the sgpr-copies pass will fix this to use the vector version. 993def : GCNPat < 994 (i32 (addc i32:$src0, i32:$src1)), 995 (S_ADD_U32 $src0, $src1) 996>; 997 998// FIXME: We need to use COPY_TO_REGCLASS to work-around the fact that 999// REG_SEQUENCE patterns don't support instructions with multiple 1000// outputs. 1001def : GCNPat< 1002 (i64 (zext i16:$src)), 1003 (REG_SEQUENCE SReg_64, 1004 (i32 (COPY_TO_REGCLASS (S_AND_B32 $src, (S_MOV_B32 (i32 0xffff))), SGPR_32)), sub0, 1005 (S_MOV_B32 (i32 0)), sub1) 1006>; 1007 1008def : GCNPat < 1009 (i64 (sext i16:$src)), 1010 (REG_SEQUENCE SReg_64, (i32 (S_SEXT_I32_I16 $src)), sub0, 1011 (i32 (COPY_TO_REGCLASS (S_ASHR_I32 (i32 (S_SEXT_I32_I16 $src)), (S_MOV_B32 (i32 31))), SGPR_32)), sub1) 1012>; 1013 1014def : GCNPat< 1015 (i32 (zext i16:$src)), 1016 (S_AND_B32 (S_MOV_B32 (i32 0xffff)), $src) 1017>; 1018 1019 1020 1021//===----------------------------------------------------------------------===// 1022// SOPP Patterns 1023//===----------------------------------------------------------------------===// 1024 1025def : GCNPat < 1026 (int_amdgcn_s_waitcnt i32:$simm16), 1027 (S_WAITCNT (as_i16imm $simm16)) 1028>; 1029 1030 1031//===----------------------------------------------------------------------===// 1032// Real target instructions, move this to the appropriate subtarget TD file 1033//===----------------------------------------------------------------------===// 1034 1035class Select_si<string opName> : 1036 SIMCInstr<opName, SIEncodingFamily.SI> { 1037 list<Predicate> AssemblerPredicates = [isSICI]; 1038 string DecoderNamespace = "SICI"; 1039} 1040 1041class SOP1_Real_si<bits<8> op, SOP1_Pseudo ps> : 1042 SOP1_Real<op, ps>, 1043 Select_si<ps.Mnemonic>; 1044 1045class SOP2_Real_si<bits<7> op, SOP2_Pseudo ps> : 1046 SOP2_Real<op, ps>, 1047 Select_si<ps.Mnemonic>; 1048 1049class SOPK_Real_si<bits<5> op, SOPK_Pseudo ps> : 1050 SOPK_Real32<op, ps>, 1051 Select_si<ps.Mnemonic>; 1052 1053def S_MOV_B32_si : SOP1_Real_si <0x03, S_MOV_B32>; 1054def S_MOV_B64_si : SOP1_Real_si <0x04, S_MOV_B64>; 1055def S_CMOV_B32_si : SOP1_Real_si <0x05, S_CMOV_B32>; 1056def S_CMOV_B64_si : SOP1_Real_si <0x06, S_CMOV_B64>; 1057def S_NOT_B32_si : SOP1_Real_si <0x07, S_NOT_B32>; 1058def S_NOT_B64_si : SOP1_Real_si <0x08, S_NOT_B64>; 1059def S_WQM_B32_si : SOP1_Real_si <0x09, S_WQM_B32>; 1060def S_WQM_B64_si : SOP1_Real_si <0x0a, S_WQM_B64>; 1061def S_BREV_B32_si : SOP1_Real_si <0x0b, S_BREV_B32>; 1062def S_BREV_B64_si : SOP1_Real_si <0x0c, S_BREV_B64>; 1063def S_BCNT0_I32_B32_si : SOP1_Real_si <0x0d, S_BCNT0_I32_B32>; 1064def S_BCNT0_I32_B64_si : SOP1_Real_si <0x0e, S_BCNT0_I32_B64>; 1065def S_BCNT1_I32_B32_si : SOP1_Real_si <0x0f, S_BCNT1_I32_B32>; 1066def S_BCNT1_I32_B64_si : SOP1_Real_si <0x10, S_BCNT1_I32_B64>; 1067def S_FF0_I32_B32_si : SOP1_Real_si <0x11, S_FF0_I32_B32>; 1068def S_FF0_I32_B64_si : SOP1_Real_si <0x12, S_FF0_I32_B64>; 1069def S_FF1_I32_B32_si : SOP1_Real_si <0x13, S_FF1_I32_B32>; 1070def S_FF1_I32_B64_si : SOP1_Real_si <0x14, S_FF1_I32_B64>; 1071def S_FLBIT_I32_B32_si : SOP1_Real_si <0x15, S_FLBIT_I32_B32>; 1072def S_FLBIT_I32_B64_si : SOP1_Real_si <0x16, S_FLBIT_I32_B64>; 1073def S_FLBIT_I32_si : SOP1_Real_si <0x17, S_FLBIT_I32>; 1074def S_FLBIT_I32_I64_si : SOP1_Real_si <0x18, S_FLBIT_I32_I64>; 1075def S_SEXT_I32_I8_si : SOP1_Real_si <0x19, S_SEXT_I32_I8>; 1076def S_SEXT_I32_I16_si : SOP1_Real_si <0x1a, S_SEXT_I32_I16>; 1077def S_BITSET0_B32_si : SOP1_Real_si <0x1b, S_BITSET0_B32>; 1078def S_BITSET0_B64_si : SOP1_Real_si <0x1c, S_BITSET0_B64>; 1079def S_BITSET1_B32_si : SOP1_Real_si <0x1d, S_BITSET1_B32>; 1080def S_BITSET1_B64_si : SOP1_Real_si <0x1e, S_BITSET1_B64>; 1081def S_GETPC_B64_si : SOP1_Real_si <0x1f, S_GETPC_B64>; 1082def S_SETPC_B64_si : SOP1_Real_si <0x20, S_SETPC_B64>; 1083def S_SWAPPC_B64_si : SOP1_Real_si <0x21, S_SWAPPC_B64>; 1084def S_RFE_B64_si : SOP1_Real_si <0x22, S_RFE_B64>; 1085def S_AND_SAVEEXEC_B64_si : SOP1_Real_si <0x24, S_AND_SAVEEXEC_B64>; 1086def S_OR_SAVEEXEC_B64_si : SOP1_Real_si <0x25, S_OR_SAVEEXEC_B64>; 1087def S_XOR_SAVEEXEC_B64_si : SOP1_Real_si <0x26, S_XOR_SAVEEXEC_B64>; 1088def S_ANDN2_SAVEEXEC_B64_si: SOP1_Real_si <0x27, S_ANDN2_SAVEEXEC_B64>; 1089def S_ORN2_SAVEEXEC_B64_si : SOP1_Real_si <0x28, S_ORN2_SAVEEXEC_B64>; 1090def S_NAND_SAVEEXEC_B64_si : SOP1_Real_si <0x29, S_NAND_SAVEEXEC_B64>; 1091def S_NOR_SAVEEXEC_B64_si : SOP1_Real_si <0x2a, S_NOR_SAVEEXEC_B64>; 1092def S_XNOR_SAVEEXEC_B64_si : SOP1_Real_si <0x2b, S_XNOR_SAVEEXEC_B64>; 1093def S_QUADMASK_B32_si : SOP1_Real_si <0x2c, S_QUADMASK_B32>; 1094def S_QUADMASK_B64_si : SOP1_Real_si <0x2d, S_QUADMASK_B64>; 1095def S_MOVRELS_B32_si : SOP1_Real_si <0x2e, S_MOVRELS_B32>; 1096def S_MOVRELS_B64_si : SOP1_Real_si <0x2f, S_MOVRELS_B64>; 1097def S_MOVRELD_B32_si : SOP1_Real_si <0x30, S_MOVRELD_B32>; 1098def S_MOVRELD_B64_si : SOP1_Real_si <0x31, S_MOVRELD_B64>; 1099def S_CBRANCH_JOIN_si : SOP1_Real_si <0x32, S_CBRANCH_JOIN>; 1100def S_MOV_REGRD_B32_si : SOP1_Real_si <0x33, S_MOV_REGRD_B32>; 1101def S_ABS_I32_si : SOP1_Real_si <0x34, S_ABS_I32>; 1102def S_MOV_FED_B32_si : SOP1_Real_si <0x35, S_MOV_FED_B32>; 1103 1104def S_ADD_U32_si : SOP2_Real_si <0x00, S_ADD_U32>; 1105def S_ADD_I32_si : SOP2_Real_si <0x02, S_ADD_I32>; 1106def S_SUB_U32_si : SOP2_Real_si <0x01, S_SUB_U32>; 1107def S_SUB_I32_si : SOP2_Real_si <0x03, S_SUB_I32>; 1108def S_ADDC_U32_si : SOP2_Real_si <0x04, S_ADDC_U32>; 1109def S_SUBB_U32_si : SOP2_Real_si <0x05, S_SUBB_U32>; 1110def S_MIN_I32_si : SOP2_Real_si <0x06, S_MIN_I32>; 1111def S_MIN_U32_si : SOP2_Real_si <0x07, S_MIN_U32>; 1112def S_MAX_I32_si : SOP2_Real_si <0x08, S_MAX_I32>; 1113def S_MAX_U32_si : SOP2_Real_si <0x09, S_MAX_U32>; 1114def S_CSELECT_B32_si : SOP2_Real_si <0x0a, S_CSELECT_B32>; 1115def S_CSELECT_B64_si : SOP2_Real_si <0x0b, S_CSELECT_B64>; 1116def S_AND_B32_si : SOP2_Real_si <0x0e, S_AND_B32>; 1117def S_AND_B64_si : SOP2_Real_si <0x0f, S_AND_B64>; 1118def S_OR_B32_si : SOP2_Real_si <0x10, S_OR_B32>; 1119def S_OR_B64_si : SOP2_Real_si <0x11, S_OR_B64>; 1120def S_XOR_B32_si : SOP2_Real_si <0x12, S_XOR_B32>; 1121def S_XOR_B64_si : SOP2_Real_si <0x13, S_XOR_B64>; 1122def S_ANDN2_B32_si : SOP2_Real_si <0x14, S_ANDN2_B32>; 1123def S_ANDN2_B64_si : SOP2_Real_si <0x15, S_ANDN2_B64>; 1124def S_ORN2_B32_si : SOP2_Real_si <0x16, S_ORN2_B32>; 1125def S_ORN2_B64_si : SOP2_Real_si <0x17, S_ORN2_B64>; 1126def S_NAND_B32_si : SOP2_Real_si <0x18, S_NAND_B32>; 1127def S_NAND_B64_si : SOP2_Real_si <0x19, S_NAND_B64>; 1128def S_NOR_B32_si : SOP2_Real_si <0x1a, S_NOR_B32>; 1129def S_NOR_B64_si : SOP2_Real_si <0x1b, S_NOR_B64>; 1130def S_XNOR_B32_si : SOP2_Real_si <0x1c, S_XNOR_B32>; 1131def S_XNOR_B64_si : SOP2_Real_si <0x1d, S_XNOR_B64>; 1132def S_LSHL_B32_si : SOP2_Real_si <0x1e, S_LSHL_B32>; 1133def S_LSHL_B64_si : SOP2_Real_si <0x1f, S_LSHL_B64>; 1134def S_LSHR_B32_si : SOP2_Real_si <0x20, S_LSHR_B32>; 1135def S_LSHR_B64_si : SOP2_Real_si <0x21, S_LSHR_B64>; 1136def S_ASHR_I32_si : SOP2_Real_si <0x22, S_ASHR_I32>; 1137def S_ASHR_I64_si : SOP2_Real_si <0x23, S_ASHR_I64>; 1138def S_BFM_B32_si : SOP2_Real_si <0x24, S_BFM_B32>; 1139def S_BFM_B64_si : SOP2_Real_si <0x25, S_BFM_B64>; 1140def S_MUL_I32_si : SOP2_Real_si <0x26, S_MUL_I32>; 1141def S_BFE_U32_si : SOP2_Real_si <0x27, S_BFE_U32>; 1142def S_BFE_I32_si : SOP2_Real_si <0x28, S_BFE_I32>; 1143def S_BFE_U64_si : SOP2_Real_si <0x29, S_BFE_U64>; 1144def S_BFE_I64_si : SOP2_Real_si <0x2a, S_BFE_I64>; 1145def S_CBRANCH_G_FORK_si : SOP2_Real_si <0x2b, S_CBRANCH_G_FORK>; 1146def S_ABSDIFF_I32_si : SOP2_Real_si <0x2c, S_ABSDIFF_I32>; 1147 1148def S_MOVK_I32_si : SOPK_Real_si <0x00, S_MOVK_I32>; 1149def S_CMOVK_I32_si : SOPK_Real_si <0x02, S_CMOVK_I32>; 1150def S_CMPK_EQ_I32_si : SOPK_Real_si <0x03, S_CMPK_EQ_I32>; 1151def S_CMPK_LG_I32_si : SOPK_Real_si <0x04, S_CMPK_LG_I32>; 1152def S_CMPK_GT_I32_si : SOPK_Real_si <0x05, S_CMPK_GT_I32>; 1153def S_CMPK_GE_I32_si : SOPK_Real_si <0x06, S_CMPK_GE_I32>; 1154def S_CMPK_LT_I32_si : SOPK_Real_si <0x07, S_CMPK_LT_I32>; 1155def S_CMPK_LE_I32_si : SOPK_Real_si <0x08, S_CMPK_LE_I32>; 1156def S_CMPK_EQ_U32_si : SOPK_Real_si <0x09, S_CMPK_EQ_U32>; 1157def S_CMPK_LG_U32_si : SOPK_Real_si <0x0a, S_CMPK_LG_U32>; 1158def S_CMPK_GT_U32_si : SOPK_Real_si <0x0b, S_CMPK_GT_U32>; 1159def S_CMPK_GE_U32_si : SOPK_Real_si <0x0c, S_CMPK_GE_U32>; 1160def S_CMPK_LT_U32_si : SOPK_Real_si <0x0d, S_CMPK_LT_U32>; 1161def S_CMPK_LE_U32_si : SOPK_Real_si <0x0e, S_CMPK_LE_U32>; 1162def S_ADDK_I32_si : SOPK_Real_si <0x0f, S_ADDK_I32>; 1163def S_MULK_I32_si : SOPK_Real_si <0x10, S_MULK_I32>; 1164def S_CBRANCH_I_FORK_si : SOPK_Real_si <0x11, S_CBRANCH_I_FORK>; 1165def S_GETREG_B32_si : SOPK_Real_si <0x12, S_GETREG_B32>; 1166def S_SETREG_B32_si : SOPK_Real_si <0x13, S_SETREG_B32>; 1167//def S_GETREG_REGRD_B32_si : SOPK_Real_si <0x14, S_GETREG_REGRD_B32>; // see pseudo for comments 1168def S_SETREG_IMM32_B32_si : SOPK_Real64<0x15, S_SETREG_IMM32_B32>, 1169 Select_si<S_SETREG_IMM32_B32.Mnemonic>; 1170 1171 1172class Select_vi<string opName> : 1173 SIMCInstr<opName, SIEncodingFamily.VI> { 1174 list<Predicate> AssemblerPredicates = [isVI]; 1175 string DecoderNamespace = "VI"; 1176} 1177 1178class SOP1_Real_vi<bits<8> op, SOP1_Pseudo ps> : 1179 SOP1_Real<op, ps>, 1180 Select_vi<ps.Mnemonic>; 1181 1182 1183class SOP2_Real_vi<bits<7> op, SOP2_Pseudo ps> : 1184 SOP2_Real<op, ps>, 1185 Select_vi<ps.Mnemonic>; 1186 1187class SOPK_Real_vi<bits<5> op, SOPK_Pseudo ps> : 1188 SOPK_Real32<op, ps>, 1189 Select_vi<ps.Mnemonic>; 1190 1191def S_MOV_B32_vi : SOP1_Real_vi <0x00, S_MOV_B32>; 1192def S_MOV_B64_vi : SOP1_Real_vi <0x01, S_MOV_B64>; 1193def S_CMOV_B32_vi : SOP1_Real_vi <0x02, S_CMOV_B32>; 1194def S_CMOV_B64_vi : SOP1_Real_vi <0x03, S_CMOV_B64>; 1195def S_NOT_B32_vi : SOP1_Real_vi <0x04, S_NOT_B32>; 1196def S_NOT_B64_vi : SOP1_Real_vi <0x05, S_NOT_B64>; 1197def S_WQM_B32_vi : SOP1_Real_vi <0x06, S_WQM_B32>; 1198def S_WQM_B64_vi : SOP1_Real_vi <0x07, S_WQM_B64>; 1199def S_BREV_B32_vi : SOP1_Real_vi <0x08, S_BREV_B32>; 1200def S_BREV_B64_vi : SOP1_Real_vi <0x09, S_BREV_B64>; 1201def S_BCNT0_I32_B32_vi : SOP1_Real_vi <0x0a, S_BCNT0_I32_B32>; 1202def S_BCNT0_I32_B64_vi : SOP1_Real_vi <0x0b, S_BCNT0_I32_B64>; 1203def S_BCNT1_I32_B32_vi : SOP1_Real_vi <0x0c, S_BCNT1_I32_B32>; 1204def S_BCNT1_I32_B64_vi : SOP1_Real_vi <0x0d, S_BCNT1_I32_B64>; 1205def S_FF0_I32_B32_vi : SOP1_Real_vi <0x0e, S_FF0_I32_B32>; 1206def S_FF0_I32_B64_vi : SOP1_Real_vi <0x0f, S_FF0_I32_B64>; 1207def S_FF1_I32_B32_vi : SOP1_Real_vi <0x10, S_FF1_I32_B32>; 1208def S_FF1_I32_B64_vi : SOP1_Real_vi <0x11, S_FF1_I32_B64>; 1209def S_FLBIT_I32_B32_vi : SOP1_Real_vi <0x12, S_FLBIT_I32_B32>; 1210def S_FLBIT_I32_B64_vi : SOP1_Real_vi <0x13, S_FLBIT_I32_B64>; 1211def S_FLBIT_I32_vi : SOP1_Real_vi <0x14, S_FLBIT_I32>; 1212def S_FLBIT_I32_I64_vi : SOP1_Real_vi <0x15, S_FLBIT_I32_I64>; 1213def S_SEXT_I32_I8_vi : SOP1_Real_vi <0x16, S_SEXT_I32_I8>; 1214def S_SEXT_I32_I16_vi : SOP1_Real_vi <0x17, S_SEXT_I32_I16>; 1215def S_BITSET0_B32_vi : SOP1_Real_vi <0x18, S_BITSET0_B32>; 1216def S_BITSET0_B64_vi : SOP1_Real_vi <0x19, S_BITSET0_B64>; 1217def S_BITSET1_B32_vi : SOP1_Real_vi <0x1a, S_BITSET1_B32>; 1218def S_BITSET1_B64_vi : SOP1_Real_vi <0x1b, S_BITSET1_B64>; 1219def S_GETPC_B64_vi : SOP1_Real_vi <0x1c, S_GETPC_B64>; 1220def S_SETPC_B64_vi : SOP1_Real_vi <0x1d, S_SETPC_B64>; 1221def S_SWAPPC_B64_vi : SOP1_Real_vi <0x1e, S_SWAPPC_B64>; 1222def S_RFE_B64_vi : SOP1_Real_vi <0x1f, S_RFE_B64>; 1223def S_AND_SAVEEXEC_B64_vi : SOP1_Real_vi <0x20, S_AND_SAVEEXEC_B64>; 1224def S_OR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x21, S_OR_SAVEEXEC_B64>; 1225def S_XOR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x22, S_XOR_SAVEEXEC_B64>; 1226def S_ANDN2_SAVEEXEC_B64_vi: SOP1_Real_vi <0x23, S_ANDN2_SAVEEXEC_B64>; 1227def S_ORN2_SAVEEXEC_B64_vi : SOP1_Real_vi <0x24, S_ORN2_SAVEEXEC_B64>; 1228def S_NAND_SAVEEXEC_B64_vi : SOP1_Real_vi <0x25, S_NAND_SAVEEXEC_B64>; 1229def S_NOR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x26, S_NOR_SAVEEXEC_B64>; 1230def S_XNOR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x27, S_XNOR_SAVEEXEC_B64>; 1231def S_QUADMASK_B32_vi : SOP1_Real_vi <0x28, S_QUADMASK_B32>; 1232def S_QUADMASK_B64_vi : SOP1_Real_vi <0x29, S_QUADMASK_B64>; 1233def S_MOVRELS_B32_vi : SOP1_Real_vi <0x2a, S_MOVRELS_B32>; 1234def S_MOVRELS_B64_vi : SOP1_Real_vi <0x2b, S_MOVRELS_B64>; 1235def S_MOVRELD_B32_vi : SOP1_Real_vi <0x2c, S_MOVRELD_B32>; 1236def S_MOVRELD_B64_vi : SOP1_Real_vi <0x2d, S_MOVRELD_B64>; 1237def S_CBRANCH_JOIN_vi : SOP1_Real_vi <0x2e, S_CBRANCH_JOIN>; 1238def S_MOV_REGRD_B32_vi : SOP1_Real_vi <0x2f, S_MOV_REGRD_B32>; 1239def S_ABS_I32_vi : SOP1_Real_vi <0x30, S_ABS_I32>; 1240def S_MOV_FED_B32_vi : SOP1_Real_vi <0x31, S_MOV_FED_B32>; 1241def S_SET_GPR_IDX_IDX_vi : SOP1_Real_vi <0x32, S_SET_GPR_IDX_IDX>; 1242 1243def S_ADD_U32_vi : SOP2_Real_vi <0x00, S_ADD_U32>; 1244def S_ADD_I32_vi : SOP2_Real_vi <0x02, S_ADD_I32>; 1245def S_SUB_U32_vi : SOP2_Real_vi <0x01, S_SUB_U32>; 1246def S_SUB_I32_vi : SOP2_Real_vi <0x03, S_SUB_I32>; 1247def S_ADDC_U32_vi : SOP2_Real_vi <0x04, S_ADDC_U32>; 1248def S_SUBB_U32_vi : SOP2_Real_vi <0x05, S_SUBB_U32>; 1249def S_MIN_I32_vi : SOP2_Real_vi <0x06, S_MIN_I32>; 1250def S_MIN_U32_vi : SOP2_Real_vi <0x07, S_MIN_U32>; 1251def S_MAX_I32_vi : SOP2_Real_vi <0x08, S_MAX_I32>; 1252def S_MAX_U32_vi : SOP2_Real_vi <0x09, S_MAX_U32>; 1253def S_CSELECT_B32_vi : SOP2_Real_vi <0x0a, S_CSELECT_B32>; 1254def S_CSELECT_B64_vi : SOP2_Real_vi <0x0b, S_CSELECT_B64>; 1255def S_AND_B32_vi : SOP2_Real_vi <0x0c, S_AND_B32>; 1256def S_AND_B64_vi : SOP2_Real_vi <0x0d, S_AND_B64>; 1257def S_OR_B32_vi : SOP2_Real_vi <0x0e, S_OR_B32>; 1258def S_OR_B64_vi : SOP2_Real_vi <0x0f, S_OR_B64>; 1259def S_XOR_B32_vi : SOP2_Real_vi <0x10, S_XOR_B32>; 1260def S_XOR_B64_vi : SOP2_Real_vi <0x11, S_XOR_B64>; 1261def S_ANDN2_B32_vi : SOP2_Real_vi <0x12, S_ANDN2_B32>; 1262def S_ANDN2_B64_vi : SOP2_Real_vi <0x13, S_ANDN2_B64>; 1263def S_ORN2_B32_vi : SOP2_Real_vi <0x14, S_ORN2_B32>; 1264def S_ORN2_B64_vi : SOP2_Real_vi <0x15, S_ORN2_B64>; 1265def S_NAND_B32_vi : SOP2_Real_vi <0x16, S_NAND_B32>; 1266def S_NAND_B64_vi : SOP2_Real_vi <0x17, S_NAND_B64>; 1267def S_NOR_B32_vi : SOP2_Real_vi <0x18, S_NOR_B32>; 1268def S_NOR_B64_vi : SOP2_Real_vi <0x19, S_NOR_B64>; 1269def S_XNOR_B32_vi : SOP2_Real_vi <0x1a, S_XNOR_B32>; 1270def S_XNOR_B64_vi : SOP2_Real_vi <0x1b, S_XNOR_B64>; 1271def S_LSHL_B32_vi : SOP2_Real_vi <0x1c, S_LSHL_B32>; 1272def S_LSHL_B64_vi : SOP2_Real_vi <0x1d, S_LSHL_B64>; 1273def S_LSHR_B32_vi : SOP2_Real_vi <0x1e, S_LSHR_B32>; 1274def S_LSHR_B64_vi : SOP2_Real_vi <0x1f, S_LSHR_B64>; 1275def S_ASHR_I32_vi : SOP2_Real_vi <0x20, S_ASHR_I32>; 1276def S_ASHR_I64_vi : SOP2_Real_vi <0x21, S_ASHR_I64>; 1277def S_BFM_B32_vi : SOP2_Real_vi <0x22, S_BFM_B32>; 1278def S_BFM_B64_vi : SOP2_Real_vi <0x23, S_BFM_B64>; 1279def S_MUL_I32_vi : SOP2_Real_vi <0x24, S_MUL_I32>; 1280def S_BFE_U32_vi : SOP2_Real_vi <0x25, S_BFE_U32>; 1281def S_BFE_I32_vi : SOP2_Real_vi <0x26, S_BFE_I32>; 1282def S_BFE_U64_vi : SOP2_Real_vi <0x27, S_BFE_U64>; 1283def S_BFE_I64_vi : SOP2_Real_vi <0x28, S_BFE_I64>; 1284def S_CBRANCH_G_FORK_vi : SOP2_Real_vi <0x29, S_CBRANCH_G_FORK>; 1285def S_ABSDIFF_I32_vi : SOP2_Real_vi <0x2a, S_ABSDIFF_I32>; 1286def S_PACK_LL_B32_B16_vi : SOP2_Real_vi <0x32, S_PACK_LL_B32_B16>; 1287def S_PACK_LH_B32_B16_vi : SOP2_Real_vi <0x33, S_PACK_LH_B32_B16>; 1288def S_PACK_HH_B32_B16_vi : SOP2_Real_vi <0x34, S_PACK_HH_B32_B16>; 1289def S_RFE_RESTORE_B64_vi : SOP2_Real_vi <0x2b, S_RFE_RESTORE_B64>; 1290 1291def S_MOVK_I32_vi : SOPK_Real_vi <0x00, S_MOVK_I32>; 1292def S_CMOVK_I32_vi : SOPK_Real_vi <0x01, S_CMOVK_I32>; 1293def S_CMPK_EQ_I32_vi : SOPK_Real_vi <0x02, S_CMPK_EQ_I32>; 1294def S_CMPK_LG_I32_vi : SOPK_Real_vi <0x03, S_CMPK_LG_I32>; 1295def S_CMPK_GT_I32_vi : SOPK_Real_vi <0x04, S_CMPK_GT_I32>; 1296def S_CMPK_GE_I32_vi : SOPK_Real_vi <0x05, S_CMPK_GE_I32>; 1297def S_CMPK_LT_I32_vi : SOPK_Real_vi <0x06, S_CMPK_LT_I32>; 1298def S_CMPK_LE_I32_vi : SOPK_Real_vi <0x07, S_CMPK_LE_I32>; 1299def S_CMPK_EQ_U32_vi : SOPK_Real_vi <0x08, S_CMPK_EQ_U32>; 1300def S_CMPK_LG_U32_vi : SOPK_Real_vi <0x09, S_CMPK_LG_U32>; 1301def S_CMPK_GT_U32_vi : SOPK_Real_vi <0x0A, S_CMPK_GT_U32>; 1302def S_CMPK_GE_U32_vi : SOPK_Real_vi <0x0B, S_CMPK_GE_U32>; 1303def S_CMPK_LT_U32_vi : SOPK_Real_vi <0x0C, S_CMPK_LT_U32>; 1304def S_CMPK_LE_U32_vi : SOPK_Real_vi <0x0D, S_CMPK_LE_U32>; 1305def S_ADDK_I32_vi : SOPK_Real_vi <0x0E, S_ADDK_I32>; 1306def S_MULK_I32_vi : SOPK_Real_vi <0x0F, S_MULK_I32>; 1307def S_CBRANCH_I_FORK_vi : SOPK_Real_vi <0x10, S_CBRANCH_I_FORK>; 1308def S_GETREG_B32_vi : SOPK_Real_vi <0x11, S_GETREG_B32>; 1309def S_SETREG_B32_vi : SOPK_Real_vi <0x12, S_SETREG_B32>; 1310//def S_GETREG_REGRD_B32_vi : SOPK_Real_vi <0x13, S_GETREG_REGRD_B32>; // see pseudo for comments 1311def S_SETREG_IMM32_B32_vi : SOPK_Real64<0x14, S_SETREG_IMM32_B32>, 1312 Select_vi<S_SETREG_IMM32_B32.Mnemonic>; 1313