1//===-- DSInstructions.td - DS 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 9class DS_Pseudo <string opName, dag outs, dag ins, string asmOps, list<dag> pattern=[]> : 10 InstSI <outs, ins, "", pattern>, 11 SIMCInstr <opName, SIEncodingFamily.NONE> { 12 13 let LGKM_CNT = 1; 14 let DS = 1; 15 let Size = 8; 16 let UseNamedOperandTable = 1; 17 18 // Most instruction load and store data, so set this as the default. 19 let mayLoad = 1; 20 let mayStore = 1; 21 let maybeAtomic = 1; 22 23 let hasSideEffects = 0; 24 let SchedRW = [WriteLDS]; 25 26 let isPseudo = 1; 27 let isCodeGenOnly = 1; 28 29 let AsmMatchConverter = "cvtDS"; 30 31 string Mnemonic = opName; 32 string AsmOperands = asmOps; 33 34 // Well these bits a kind of hack because it would be more natural 35 // to test "outs" and "ins" dags for the presence of particular operands 36 bits<1> has_vdst = 1; 37 bits<1> has_addr = 1; 38 bits<1> has_data0 = 1; 39 bits<1> has_data1 = 1; 40 41 bits<1> has_gws_data0 = 0; // data0 is encoded as addr 42 43 bits<1> has_offset = 1; // has "offset" that should be split to offset0,1 44 bits<1> has_offset0 = 1; 45 bits<1> has_offset1 = 1; 46 47 bits<1> has_gds = 1; 48 bits<1> gdsValue = 0; // if has_gds == 0 set gds to this value 49 50 bits<1> has_m0_read = 1; 51 52 let Uses = !if(has_m0_read, [M0, EXEC], [EXEC]); 53} 54 55class DS_Real <DS_Pseudo ps> : 56 InstSI <ps.OutOperandList, ps.InOperandList, ps.Mnemonic # ps.AsmOperands, []>, 57 Enc64 { 58 59 let isPseudo = 0; 60 let isCodeGenOnly = 0; 61 let LGKM_CNT = 1; 62 let DS = 1; 63 let UseNamedOperandTable = 1; 64 65 // copy relevant pseudo op flags 66 let SubtargetPredicate = ps.SubtargetPredicate; 67 let OtherPredicates = ps.OtherPredicates; 68 let AsmMatchConverter = ps.AsmMatchConverter; 69 let SchedRW = ps.SchedRW; 70 let mayLoad = ps.mayLoad; 71 let mayStore = ps.mayStore; 72 let IsAtomicRet = ps.IsAtomicRet; 73 let IsAtomicNoRet = ps.IsAtomicNoRet; 74 75 // encoding fields 76 bits<10> vdst; 77 bits<1> gds; 78 bits<8> addr; 79 bits<10> data0; 80 bits<10> data1; 81 bits<8> offset0; 82 bits<8> offset1; 83 84 bits<16> offset; 85 let offset0 = !if(ps.has_offset, offset{7-0}, ?); 86 let offset1 = !if(ps.has_offset, offset{15-8}, ?); 87 88 bits<1> acc = !if(ps.has_vdst, vdst{9}, 89 !if(!or(ps.has_data0, ps.has_gws_data0), data0{9}, 0)); 90} 91 92// DS Pseudo instructions 93 94class DS_0A1D_NORET<string opName, RegisterClass rc = VGPR_32> 95: DS_Pseudo<opName, 96 (outs), 97 (ins getLdStRegisterOperand<rc>.ret:$data0, offset:$offset, gds:$gds), 98 " $data0$offset$gds"> { 99 100 let has_addr = 0; 101 let has_data1 = 0; 102 let has_vdst = 0; 103} 104 105class DS_1A1D_NORET<string opName, RegisterClass rc = VGPR_32> 106: DS_Pseudo<opName, 107 (outs), 108 (ins VGPR_32:$addr, getLdStRegisterOperand<rc>.ret:$data0, offset:$offset, gds:$gds), 109 " $addr, $data0$offset$gds"> { 110 111 let has_data1 = 0; 112 let has_vdst = 0; 113 let IsAtomicNoRet = 1; 114} 115 116multiclass DS_1A1D_NORET_mc<string opName, RegisterClass rc = VGPR_32> { 117 def "" : DS_1A1D_NORET<opName, rc>, 118 AtomicNoRet<opName, 0>; 119 120 let has_m0_read = 0 in { 121 def _gfx9 : DS_1A1D_NORET<opName, rc>, 122 AtomicNoRet<opName#"_gfx9", 0>; 123 } 124} 125 126multiclass DS_1A1D_NORET_mc_gfx9<string opName, RegisterClass rc = VGPR_32> { 127 let has_m0_read = 0 in { 128 def "" : DS_1A1D_NORET<opName, rc>, 129 AtomicNoRet<opName, 0>; 130 } 131} 132 133class DS_1A2D_NORET<string opName, RegisterClass rc = VGPR_32, 134 RegisterOperand data_op = getLdStRegisterOperand<rc>.ret> 135: DS_Pseudo<opName, 136 (outs), 137 (ins VGPR_32:$addr, data_op:$data0, data_op:$data1, offset:$offset, gds:$gds), 138 " $addr, $data0, $data1$offset$gds"> { 139 140 let has_vdst = 0; 141 let IsAtomicNoRet = 1; 142} 143 144multiclass DS_1A2D_NORET_mc<string opName, RegisterClass rc = VGPR_32> { 145 def "" : DS_1A2D_NORET<opName, rc>, 146 AtomicNoRet<opName, 0>; 147 148 let has_m0_read = 0 in { 149 def _gfx9 : DS_1A2D_NORET<opName, rc>, 150 AtomicNoRet<opName#"_gfx9", 0>; 151 } 152} 153 154class DS_1A2D_Off8_NORET <string opName, RegisterClass rc = VGPR_32, 155 RegisterOperand data_op = getLdStRegisterOperand<rc>.ret> 156: DS_Pseudo<opName, 157 (outs), 158 (ins VGPR_32:$addr, data_op:$data0, data_op:$data1, 159 offset0:$offset0, offset1:$offset1, gds:$gds), 160 " $addr, $data0, $data1$offset0$offset1$gds"> { 161 162 let has_vdst = 0; 163 let has_offset = 0; 164 let AsmMatchConverter = "cvtDSOffset01"; 165} 166 167multiclass DS_1A2D_Off8_NORET_mc <string opName, RegisterClass rc = VGPR_32> { 168 def "" : DS_1A2D_Off8_NORET<opName, rc>; 169 170 let has_m0_read = 0 in { 171 def _gfx9 : DS_1A2D_Off8_NORET<opName, rc>; 172 } 173} 174 175class DS_1A1D_RET <string opName, RegisterClass rc = VGPR_32, 176 RegisterOperand data_op = getLdStRegisterOperand<rc>.ret> 177: DS_Pseudo<opName, 178 (outs data_op:$vdst), 179 (ins VGPR_32:$addr, data_op:$data0, offset:$offset, gds:$gds), 180 " $vdst, $addr, $data0$offset$gds"> { 181 182 let hasPostISelHook = 1; 183 let has_data1 = 0; 184 let IsAtomicRet = 1; 185} 186 187multiclass DS_1A1D_RET_mc <string opName, RegisterClass rc = VGPR_32, 188 string NoRetOp = ""> { 189 def "" : DS_1A1D_RET<opName, rc>, 190 AtomicNoRet<NoRetOp, !ne(NoRetOp, "")>; 191 192 let has_m0_read = 0 in { 193 def _gfx9 : DS_1A1D_RET<opName, rc>, 194 AtomicNoRet<!if(!eq(NoRetOp, ""), "", NoRetOp#"_gfx9"), 195 !ne(NoRetOp, "")>; 196 } 197} 198 199multiclass DS_1A1D_RET_mc_gfx9 <string opName, RegisterClass rc = VGPR_32, 200 string NoRetOp = ""> { 201 let has_m0_read = 0 in { 202 def "" : DS_1A1D_RET<opName, rc>, 203 AtomicNoRet<!if(!eq(NoRetOp, ""), "", NoRetOp), 204 !if(!eq(NoRetOp, ""), 0, 1)>; 205 } 206} 207 208class DS_1A2D_RET<string opName, 209 RegisterClass rc = VGPR_32, 210 RegisterClass src = rc, 211 RegisterOperand dst_op = getLdStRegisterOperand<rc>.ret, 212 RegisterOperand src_op = getLdStRegisterOperand<src>.ret> 213: DS_Pseudo<opName, 214 (outs dst_op:$vdst), 215 (ins VGPR_32:$addr, src_op:$data0, src_op:$data1, offset:$offset, gds:$gds), 216 " $vdst, $addr, $data0, $data1$offset$gds"> { 217 218 let hasPostISelHook = 1; 219 let IsAtomicRet = 1; 220} 221 222multiclass DS_1A2D_RET_mc<string opName, 223 RegisterClass rc = VGPR_32, 224 string NoRetOp = "", 225 RegisterClass src = rc> { 226 def "" : DS_1A2D_RET<opName, rc, src>, 227 AtomicNoRet<NoRetOp, !ne(NoRetOp, "")>; 228 229 let has_m0_read = 0 in { 230 def _gfx9 : DS_1A2D_RET<opName, rc, src>, 231 AtomicNoRet<NoRetOp#"_gfx9", !ne(NoRetOp, "")>; 232 } 233} 234 235class DS_1A2D_Off8_RET<string opName, 236 RegisterClass rc = VGPR_32, 237 RegisterClass src = rc, 238 RegisterOperand dst_op = getLdStRegisterOperand<rc>.ret, 239 RegisterOperand src_op = getLdStRegisterOperand<src>.ret> 240: DS_Pseudo<opName, 241 (outs dst_op:$vdst), 242 (ins VGPR_32:$addr, src_op:$data0, src_op:$data1, offset0:$offset0, offset1:$offset1, gds:$gds), 243 " $vdst, $addr, $data0, $data1$offset0$offset1$gds"> { 244 245 let has_offset = 0; 246 let AsmMatchConverter = "cvtDSOffset01"; 247 248 let hasPostISelHook = 1; 249} 250 251multiclass DS_1A2D_Off8_RET_mc<string opName, 252 RegisterClass rc = VGPR_32, 253 RegisterClass src = rc> { 254 def "" : DS_1A2D_Off8_RET<opName, rc, src>; 255 256 let has_m0_read = 0 in { 257 def _gfx9 : DS_1A2D_Off8_RET<opName, rc, src>; 258 } 259} 260 261 262class DS_1A_RET<string opName, RegisterClass rc = VGPR_32, bit HasTiedOutput = 0, Operand ofs = offset, 263 RegisterOperand data_op = getLdStRegisterOperand<rc>.ret> 264: DS_Pseudo<opName, 265 (outs data_op:$vdst), 266 !if(HasTiedOutput, 267 (ins VGPR_32:$addr, ofs:$offset, gds:$gds, data_op:$vdst_in), 268 (ins VGPR_32:$addr, ofs:$offset, gds:$gds)), 269 " $vdst, $addr$offset$gds"> { 270 let Constraints = !if(HasTiedOutput, "$vdst = $vdst_in", ""); 271 let DisableEncoding = !if(HasTiedOutput, "$vdst_in", ""); 272 let has_data0 = 0; 273 let has_data1 = 0; 274} 275 276multiclass DS_1A_RET_mc<string opName, RegisterClass rc = VGPR_32, bit HasTiedOutput = 0, Operand ofs = offset> { 277 def "" : DS_1A_RET<opName, rc, HasTiedOutput, ofs>; 278 279 let has_m0_read = 0 in { 280 def _gfx9 : DS_1A_RET<opName, rc, HasTiedOutput, ofs>; 281 } 282} 283 284class DS_1A_RET_Tied<string opName, RegisterClass rc = VGPR_32> : 285 DS_1A_RET<opName, rc, 1>; 286 287class DS_1A_Off8_RET <string opName, RegisterClass rc = VGPR_32> 288: DS_Pseudo<opName, 289 (outs getLdStRegisterOperand<rc>.ret:$vdst), 290 (ins VGPR_32:$addr, offset0:$offset0, offset1:$offset1, gds:$gds), 291 " $vdst, $addr$offset0$offset1$gds"> { 292 293 let has_offset = 0; 294 let has_data0 = 0; 295 let has_data1 = 0; 296 let AsmMatchConverter = "cvtDSOffset01"; 297} 298 299multiclass DS_1A_Off8_RET_mc <string opName, RegisterClass rc = VGPR_32> { 300 def "" : DS_1A_Off8_RET<opName, rc>; 301 302 let has_m0_read = 0 in { 303 def _gfx9 : DS_1A_Off8_RET<opName, rc>; 304 } 305} 306 307class DS_1A_RET_GDS <string opName> : DS_Pseudo<opName, 308 (outs getLdStRegisterOperand<VGPR_32>.ret:$vdst), 309 (ins VGPR_32:$addr, offset:$offset), 310 " $vdst, $addr$offset gds"> { 311 312 let has_data0 = 0; 313 let has_data1 = 0; 314 let has_gds = 0; 315 let gdsValue = 1; 316 let AsmMatchConverter = "cvtDSGds"; 317} 318 319class DS_0A_RET <string opName> : DS_Pseudo<opName, 320 (outs getLdStRegisterOperand<VGPR_32>.ret:$vdst), 321 (ins offset:$offset, gds:$gds), 322 " $vdst$offset$gds"> { 323 324 let mayLoad = 1; 325 let mayStore = 1; 326 327 let has_addr = 0; 328 let has_data0 = 0; 329 let has_data1 = 0; 330} 331 332class DS_1A <string opName> : DS_Pseudo<opName, 333 (outs), 334 (ins VGPR_32:$addr, offset:$offset, gds:$gds), 335 " $addr$offset$gds"> { 336 337 let mayLoad = 1; 338 let mayStore = 1; 339 340 let has_vdst = 0; 341 let has_data0 = 0; 342 let has_data1 = 0; 343} 344 345multiclass DS_1A_mc <string opName> { 346 def "" : DS_1A<opName>; 347 348 let has_m0_read = 0 in { 349 def _gfx9 : DS_1A<opName>; 350 } 351} 352 353 354class DS_GWS <string opName, dag ins, string asmOps> 355: DS_Pseudo<opName, (outs), ins, asmOps> { 356 357 let has_vdst = 0; 358 let has_addr = 0; 359 let has_data0 = 0; 360 let has_data1 = 0; 361 362 let has_gds = 0; 363 let gdsValue = 1; 364 let AsmMatchConverter = "cvtDSGds"; 365} 366 367class DS_GWS_0D <string opName> 368: DS_GWS<opName, 369 (ins offset:$offset), "$offset gds"> { 370 let hasSideEffects = 1; 371} 372 373class DS_GWS_1D <string opName> 374: DS_GWS<opName, 375 (ins getLdStRegisterOperand<VGPR_32>.ret:$data0, offset:$offset), 376 " $data0$offset gds"> { 377 378 let has_gws_data0 = 1; 379 let hasSideEffects = 1; 380} 381 382class DS_VOID <string opName> : DS_Pseudo<opName, 383 (outs), (ins), ""> { 384 let mayLoad = 0; 385 let mayStore = 0; 386 let hasSideEffects = 1; 387 let UseNamedOperandTable = 0; 388 let AsmMatchConverter = ""; 389 390 let has_vdst = 0; 391 let has_addr = 0; 392 let has_data0 = 0; 393 let has_data1 = 0; 394 let has_offset = 0; 395 let has_offset0 = 0; 396 let has_offset1 = 0; 397 let has_gds = 0; 398} 399 400class DS_1A1D_PERMUTE <string opName, SDPatternOperator node = null_frag, 401 RegisterOperand data_op = getLdStRegisterOperand<VGPR_32>.ret> 402: DS_Pseudo<opName, 403 (outs data_op:$vdst), 404 (ins VGPR_32:$addr, data_op:$data0, offset:$offset), 405 " $vdst, $addr, $data0$offset", 406 [(set i32:$vdst, 407 (node (DS1Addr1Offset i32:$addr, i16:$offset), i32:$data0))] > { 408 409 let mayLoad = 0; 410 let mayStore = 0; 411 let isConvergent = 1; 412 413 let has_data1 = 0; 414 let has_gds = 0; 415} 416 417defm DS_ADD_U32 : DS_1A1D_NORET_mc<"ds_add_u32">; 418defm DS_SUB_U32 : DS_1A1D_NORET_mc<"ds_sub_u32">; 419defm DS_RSUB_U32 : DS_1A1D_NORET_mc<"ds_rsub_u32">; 420defm DS_INC_U32 : DS_1A1D_NORET_mc<"ds_inc_u32">; 421defm DS_DEC_U32 : DS_1A1D_NORET_mc<"ds_dec_u32">; 422defm DS_MIN_I32 : DS_1A1D_NORET_mc<"ds_min_i32">; 423defm DS_MAX_I32 : DS_1A1D_NORET_mc<"ds_max_i32">; 424defm DS_MIN_U32 : DS_1A1D_NORET_mc<"ds_min_u32">; 425defm DS_MAX_U32 : DS_1A1D_NORET_mc<"ds_max_u32">; 426defm DS_AND_B32 : DS_1A1D_NORET_mc<"ds_and_b32">; 427defm DS_OR_B32 : DS_1A1D_NORET_mc<"ds_or_b32">; 428defm DS_XOR_B32 : DS_1A1D_NORET_mc<"ds_xor_b32">; 429 430let SubtargetPredicate = HasLDSFPAtomicAdd in { 431defm DS_ADD_F32 : DS_1A1D_NORET_mc<"ds_add_f32">; 432} 433 434defm DS_MIN_F32 : DS_1A1D_NORET_mc<"ds_min_f32">; 435defm DS_MAX_F32 : DS_1A1D_NORET_mc<"ds_max_f32">; 436 437let mayLoad = 0 in { 438defm DS_WRITE_B8 : DS_1A1D_NORET_mc<"ds_write_b8">; 439defm DS_WRITE_B16 : DS_1A1D_NORET_mc<"ds_write_b16">; 440defm DS_WRITE_B32 : DS_1A1D_NORET_mc<"ds_write_b32">; 441defm DS_WRITE2_B32 : DS_1A2D_Off8_NORET_mc<"ds_write2_b32">; 442defm DS_WRITE2ST64_B32: DS_1A2D_Off8_NORET_mc<"ds_write2st64_b32">; 443 444 445let has_m0_read = 0 in { 446 447let SubtargetPredicate = HasD16LoadStore in { 448def DS_WRITE_B8_D16_HI : DS_1A1D_NORET<"ds_write_b8_d16_hi">; 449def DS_WRITE_B16_D16_HI : DS_1A1D_NORET<"ds_write_b16_d16_hi">; 450} 451 452} // End has_m0_read = 0 453 454let SubtargetPredicate = HasDSAddTid in { 455def DS_WRITE_ADDTID_B32 : DS_0A1D_NORET<"ds_write_addtid_b32">; 456} 457 458} // End mayLoad = 0 459 460let SubtargetPredicate = isGFX90APlus in { 461 defm DS_ADD_F64 : DS_1A1D_NORET_mc_gfx9<"ds_add_f64", VReg_64>; 462 defm DS_ADD_RTN_F64 : DS_1A1D_RET_mc_gfx9<"ds_add_rtn_f64", VReg_64, "ds_add_f64">; 463} // End SubtargetPredicate = isGFX90APlus 464 465let SubtargetPredicate = isGFX940Plus in { 466 defm DS_PK_ADD_F16 : DS_1A1D_NORET_mc_gfx9<"ds_pk_add_f16">; 467 defm DS_PK_ADD_RTN_F16 : DS_1A1D_RET_mc_gfx9<"ds_pk_add_rtn_f16", VGPR_32, "ds_pk_add_f16">; 468 defm DS_PK_ADD_BF16 : DS_1A1D_NORET_mc_gfx9<"ds_pk_add_bf16">; 469 defm DS_PK_ADD_RTN_BF16 : DS_1A1D_RET_mc_gfx9<"ds_pk_add_rtn_bf16", VGPR_32, "ds_pk_add_bf16">; 470} // End SubtargetPredicate = isGFX940Plus 471 472defm DS_MSKOR_B32 : DS_1A2D_NORET_mc<"ds_mskor_b32">; 473defm DS_CMPST_B32 : DS_1A2D_NORET_mc<"ds_cmpst_b32">; 474defm DS_CMPST_F32 : DS_1A2D_NORET_mc<"ds_cmpst_f32">; 475 476defm DS_ADD_U64 : DS_1A1D_NORET_mc<"ds_add_u64", VReg_64>; 477defm DS_SUB_U64 : DS_1A1D_NORET_mc<"ds_sub_u64", VReg_64>; 478defm DS_RSUB_U64 : DS_1A1D_NORET_mc<"ds_rsub_u64", VReg_64>; 479defm DS_INC_U64 : DS_1A1D_NORET_mc<"ds_inc_u64", VReg_64>; 480defm DS_DEC_U64 : DS_1A1D_NORET_mc<"ds_dec_u64", VReg_64>; 481defm DS_MIN_I64 : DS_1A1D_NORET_mc<"ds_min_i64", VReg_64>; 482defm DS_MAX_I64 : DS_1A1D_NORET_mc<"ds_max_i64", VReg_64>; 483defm DS_MIN_U64 : DS_1A1D_NORET_mc<"ds_min_u64", VReg_64>; 484defm DS_MAX_U64 : DS_1A1D_NORET_mc<"ds_max_u64", VReg_64>; 485defm DS_AND_B64 : DS_1A1D_NORET_mc<"ds_and_b64", VReg_64>; 486defm DS_OR_B64 : DS_1A1D_NORET_mc<"ds_or_b64", VReg_64>; 487defm DS_XOR_B64 : DS_1A1D_NORET_mc<"ds_xor_b64", VReg_64>; 488defm DS_MSKOR_B64 : DS_1A2D_NORET_mc<"ds_mskor_b64", VReg_64>; 489let mayLoad = 0 in { 490defm DS_WRITE_B64 : DS_1A1D_NORET_mc<"ds_write_b64", VReg_64>; 491defm DS_WRITE2_B64 : DS_1A2D_Off8_NORET_mc<"ds_write2_b64", VReg_64>; 492defm DS_WRITE2ST64_B64: DS_1A2D_Off8_NORET_mc<"ds_write2st64_b64", VReg_64>; 493} 494defm DS_CMPST_B64 : DS_1A2D_NORET_mc<"ds_cmpst_b64", VReg_64>; 495defm DS_CMPST_F64 : DS_1A2D_NORET_mc<"ds_cmpst_f64", VReg_64>; 496defm DS_MIN_F64 : DS_1A1D_NORET_mc<"ds_min_f64", VReg_64>; 497defm DS_MAX_F64 : DS_1A1D_NORET_mc<"ds_max_f64", VReg_64>; 498 499defm DS_ADD_RTN_U32 : DS_1A1D_RET_mc<"ds_add_rtn_u32", VGPR_32, "ds_add_u32">; 500 501let SubtargetPredicate = HasLDSFPAtomicAdd in { 502defm DS_ADD_RTN_F32 : DS_1A1D_RET_mc<"ds_add_rtn_f32", VGPR_32, "ds_add_f32">; 503} 504defm DS_SUB_RTN_U32 : DS_1A1D_RET_mc<"ds_sub_rtn_u32", VGPR_32, "ds_sub_u32">; 505defm DS_RSUB_RTN_U32 : DS_1A1D_RET_mc<"ds_rsub_rtn_u32", VGPR_32, "ds_rsub_u32">; 506defm DS_INC_RTN_U32 : DS_1A1D_RET_mc<"ds_inc_rtn_u32", VGPR_32, "ds_inc_u32">; 507defm DS_DEC_RTN_U32 : DS_1A1D_RET_mc<"ds_dec_rtn_u32", VGPR_32, "ds_dec_u32">; 508defm DS_MIN_RTN_I32 : DS_1A1D_RET_mc<"ds_min_rtn_i32", VGPR_32, "ds_min_i32">; 509defm DS_MAX_RTN_I32 : DS_1A1D_RET_mc<"ds_max_rtn_i32", VGPR_32, "ds_max_i32">; 510defm DS_MIN_RTN_U32 : DS_1A1D_RET_mc<"ds_min_rtn_u32", VGPR_32, "ds_min_u32">; 511defm DS_MAX_RTN_U32 : DS_1A1D_RET_mc<"ds_max_rtn_u32", VGPR_32, "ds_max_u32">; 512defm DS_AND_RTN_B32 : DS_1A1D_RET_mc<"ds_and_rtn_b32", VGPR_32, "ds_and_b32">; 513defm DS_OR_RTN_B32 : DS_1A1D_RET_mc<"ds_or_rtn_b32", VGPR_32, "ds_or_b32">; 514defm DS_XOR_RTN_B32 : DS_1A1D_RET_mc<"ds_xor_rtn_b32", VGPR_32, "ds_xor_b32">; 515defm DS_MSKOR_RTN_B32 : DS_1A2D_RET_mc<"ds_mskor_rtn_b32", VGPR_32, "ds_mskor_b32">; 516defm DS_CMPST_RTN_B32 : DS_1A2D_RET_mc<"ds_cmpst_rtn_b32", VGPR_32, "ds_cmpst_b32">; 517defm DS_CMPST_RTN_F32 : DS_1A2D_RET_mc<"ds_cmpst_rtn_f32", VGPR_32, "ds_cmpst_f32">; 518defm DS_MIN_RTN_F32 : DS_1A1D_RET_mc<"ds_min_rtn_f32", VGPR_32, "ds_min_f32">; 519defm DS_MAX_RTN_F32 : DS_1A1D_RET_mc<"ds_max_rtn_f32", VGPR_32, "ds_max_f32">; 520 521defm DS_WRXCHG_RTN_B32 : DS_1A1D_RET_mc<"ds_wrxchg_rtn_b32">; 522defm DS_WRXCHG2_RTN_B32 : DS_1A2D_Off8_RET_mc<"ds_wrxchg2_rtn_b32", VReg_64, VGPR_32>; 523defm DS_WRXCHG2ST64_RTN_B32 : DS_1A2D_Off8_RET_mc<"ds_wrxchg2st64_rtn_b32", VReg_64, VGPR_32>; 524 525defm DS_ADD_RTN_U64 : DS_1A1D_RET_mc<"ds_add_rtn_u64", VReg_64, "ds_add_u64">; 526defm DS_SUB_RTN_U64 : DS_1A1D_RET_mc<"ds_sub_rtn_u64", VReg_64, "ds_sub_u64">; 527defm DS_RSUB_RTN_U64 : DS_1A1D_RET_mc<"ds_rsub_rtn_u64", VReg_64, "ds_rsub_u64">; 528defm DS_INC_RTN_U64 : DS_1A1D_RET_mc<"ds_inc_rtn_u64", VReg_64, "ds_inc_u64">; 529defm DS_DEC_RTN_U64 : DS_1A1D_RET_mc<"ds_dec_rtn_u64", VReg_64, "ds_dec_u64">; 530defm DS_MIN_RTN_I64 : DS_1A1D_RET_mc<"ds_min_rtn_i64", VReg_64, "ds_min_i64">; 531defm DS_MAX_RTN_I64 : DS_1A1D_RET_mc<"ds_max_rtn_i64", VReg_64, "ds_max_i64">; 532defm DS_MIN_RTN_U64 : DS_1A1D_RET_mc<"ds_min_rtn_u64", VReg_64, "ds_min_u64">; 533defm DS_MAX_RTN_U64 : DS_1A1D_RET_mc<"ds_max_rtn_u64", VReg_64, "ds_max_u64">; 534defm DS_AND_RTN_B64 : DS_1A1D_RET_mc<"ds_and_rtn_b64", VReg_64, "ds_and_b64">; 535defm DS_OR_RTN_B64 : DS_1A1D_RET_mc<"ds_or_rtn_b64", VReg_64, "ds_or_b64">; 536defm DS_XOR_RTN_B64 : DS_1A1D_RET_mc<"ds_xor_rtn_b64", VReg_64, "ds_xor_b64">; 537defm DS_MSKOR_RTN_B64 : DS_1A2D_RET_mc<"ds_mskor_rtn_b64", VReg_64, "ds_mskor_b64">; 538defm DS_CMPST_RTN_B64 : DS_1A2D_RET_mc<"ds_cmpst_rtn_b64", VReg_64, "ds_cmpst_b64">; 539defm DS_CMPST_RTN_F64 : DS_1A2D_RET_mc<"ds_cmpst_rtn_f64", VReg_64, "ds_cmpst_f64">; 540defm DS_MIN_RTN_F64 : DS_1A1D_RET_mc<"ds_min_rtn_f64", VReg_64, "ds_min_f64">; 541defm DS_MAX_RTN_F64 : DS_1A1D_RET_mc<"ds_max_rtn_f64", VReg_64, "ds_max_f64">; 542 543defm DS_WRXCHG_RTN_B64 : DS_1A1D_RET_mc<"ds_wrxchg_rtn_b64", VReg_64>; 544defm DS_WRXCHG2_RTN_B64 : DS_1A2D_Off8_RET_mc<"ds_wrxchg2_rtn_b64", VReg_128, VReg_64>; 545defm DS_WRXCHG2ST64_RTN_B64 : DS_1A2D_Off8_RET_mc<"ds_wrxchg2st64_rtn_b64", VReg_128, VReg_64>; 546 547let isConvergent = 1, usesCustomInserter = 1 in { 548def DS_GWS_INIT : DS_GWS_1D<"ds_gws_init"> { 549 let mayLoad = 0; 550} 551def DS_GWS_SEMA_V : DS_GWS_0D<"ds_gws_sema_v">; 552def DS_GWS_SEMA_BR : DS_GWS_1D<"ds_gws_sema_br">; 553def DS_GWS_SEMA_P : DS_GWS_0D<"ds_gws_sema_p">; 554def DS_GWS_BARRIER : DS_GWS_1D<"ds_gws_barrier">; 555} 556 557let SubtargetPredicate = HasDsSrc2Insts in { 558def DS_ADD_SRC2_U32 : DS_1A<"ds_add_src2_u32">; 559def DS_SUB_SRC2_U32 : DS_1A<"ds_sub_src2_u32">; 560def DS_RSUB_SRC2_U32 : DS_1A<"ds_rsub_src2_u32">; 561def DS_INC_SRC2_U32 : DS_1A<"ds_inc_src2_u32">; 562def DS_DEC_SRC2_U32 : DS_1A<"ds_dec_src2_u32">; 563def DS_MIN_SRC2_I32 : DS_1A<"ds_min_src2_i32">; 564def DS_MAX_SRC2_I32 : DS_1A<"ds_max_src2_i32">; 565def DS_MIN_SRC2_U32 : DS_1A<"ds_min_src2_u32">; 566def DS_MAX_SRC2_U32 : DS_1A<"ds_max_src2_u32">; 567def DS_AND_SRC2_B32 : DS_1A<"ds_and_src2_b32">; 568def DS_OR_SRC2_B32 : DS_1A<"ds_or_src2_b32">; 569def DS_XOR_SRC2_B32 : DS_1A<"ds_xor_src2_b32">; 570def DS_MIN_SRC2_F32 : DS_1A<"ds_min_src2_f32">; 571def DS_MAX_SRC2_F32 : DS_1A<"ds_max_src2_f32">; 572 573def DS_ADD_SRC2_U64 : DS_1A<"ds_add_src2_u64">; 574def DS_SUB_SRC2_U64 : DS_1A<"ds_sub_src2_u64">; 575def DS_RSUB_SRC2_U64 : DS_1A<"ds_rsub_src2_u64">; 576def DS_INC_SRC2_U64 : DS_1A<"ds_inc_src2_u64">; 577def DS_DEC_SRC2_U64 : DS_1A<"ds_dec_src2_u64">; 578def DS_MIN_SRC2_I64 : DS_1A<"ds_min_src2_i64">; 579def DS_MAX_SRC2_I64 : DS_1A<"ds_max_src2_i64">; 580def DS_MIN_SRC2_U64 : DS_1A<"ds_min_src2_u64">; 581def DS_MAX_SRC2_U64 : DS_1A<"ds_max_src2_u64">; 582def DS_AND_SRC2_B64 : DS_1A<"ds_and_src2_b64">; 583def DS_OR_SRC2_B64 : DS_1A<"ds_or_src2_b64">; 584def DS_XOR_SRC2_B64 : DS_1A<"ds_xor_src2_b64">; 585def DS_MIN_SRC2_F64 : DS_1A<"ds_min_src2_f64">; 586def DS_MAX_SRC2_F64 : DS_1A<"ds_max_src2_f64">; 587 588def DS_WRITE_SRC2_B32 : DS_1A<"ds_write_src2_b32">; 589def DS_WRITE_SRC2_B64 : DS_1A<"ds_write_src2_b64">; 590} // End SubtargetPredicate = HasDsSrc2Insts 591 592let Uses = [EXEC], mayLoad = 0, mayStore = 0, isConvergent = 1 in { 593def DS_SWIZZLE_B32 : DS_1A_RET <"ds_swizzle_b32", VGPR_32, 0, SwizzleImm>; 594} 595 596let mayStore = 0 in { 597defm DS_READ_I8 : DS_1A_RET_mc<"ds_read_i8">; 598defm DS_READ_U8 : DS_1A_RET_mc<"ds_read_u8">; 599defm DS_READ_I16 : DS_1A_RET_mc<"ds_read_i16">; 600defm DS_READ_U16 : DS_1A_RET_mc<"ds_read_u16">; 601defm DS_READ_B32 : DS_1A_RET_mc<"ds_read_b32">; 602defm DS_READ_B64 : DS_1A_RET_mc<"ds_read_b64", VReg_64>; 603 604defm DS_READ2_B32 : DS_1A_Off8_RET_mc<"ds_read2_b32", VReg_64>; 605defm DS_READ2ST64_B32: DS_1A_Off8_RET_mc<"ds_read2st64_b32", VReg_64>; 606 607defm DS_READ2_B64 : DS_1A_Off8_RET_mc<"ds_read2_b64", VReg_128>; 608defm DS_READ2ST64_B64: DS_1A_Off8_RET_mc<"ds_read2st64_b64", VReg_128>; 609 610let has_m0_read = 0 in { 611let SubtargetPredicate = HasD16LoadStore in { 612def DS_READ_U8_D16 : DS_1A_RET_Tied<"ds_read_u8_d16">; 613def DS_READ_U8_D16_HI : DS_1A_RET_Tied<"ds_read_u8_d16_hi">; 614def DS_READ_I8_D16 : DS_1A_RET_Tied<"ds_read_i8_d16">; 615def DS_READ_I8_D16_HI : DS_1A_RET_Tied<"ds_read_i8_d16_hi">; 616def DS_READ_U16_D16 : DS_1A_RET_Tied<"ds_read_u16_d16">; 617def DS_READ_U16_D16_HI : DS_1A_RET_Tied<"ds_read_u16_d16_hi">; 618} 619} // End has_m0_read = 0 620 621let SubtargetPredicate = HasDSAddTid in { 622def DS_READ_ADDTID_B32 : DS_0A_RET<"ds_read_addtid_b32">; 623} 624 625} // End mayStore = 0 626 627def DS_CONSUME : DS_0A_RET<"ds_consume">; 628def DS_APPEND : DS_0A_RET<"ds_append">; 629def DS_ORDERED_COUNT : DS_1A_RET_GDS<"ds_ordered_count">; 630 631//===----------------------------------------------------------------------===// 632// Instruction definitions for CI and newer. 633//===----------------------------------------------------------------------===// 634 635let SubtargetPredicate = isGFX7Plus in { 636 637defm DS_WRAP_RTN_B32 : DS_1A2D_RET_mc<"ds_wrap_rtn_b32", VGPR_32>; 638defm DS_CONDXCHG32_RTN_B64 : DS_1A1D_RET_mc<"ds_condxchg32_rtn_b64", VReg_64>; 639 640let isConvergent = 1, usesCustomInserter = 1 in { 641def DS_GWS_SEMA_RELEASE_ALL : DS_GWS_0D<"ds_gws_sema_release_all">; 642} 643 644let mayStore = 0 in { 645defm DS_READ_B96 : DS_1A_RET_mc<"ds_read_b96", VReg_96>; 646defm DS_READ_B128: DS_1A_RET_mc<"ds_read_b128", VReg_128>; 647} // End mayStore = 0 648 649let mayLoad = 0 in { 650defm DS_WRITE_B96 : DS_1A1D_NORET_mc<"ds_write_b96", VReg_96>; 651defm DS_WRITE_B128 : DS_1A1D_NORET_mc<"ds_write_b128", VReg_128>; 652} // End mayLoad = 0 653 654def DS_NOP : DS_VOID<"ds_nop">; 655 656} // let SubtargetPredicate = isGFX7Plus 657 658//===----------------------------------------------------------------------===// 659// Instruction definitions for VI and newer. 660//===----------------------------------------------------------------------===// 661 662let SubtargetPredicate = isGFX8Plus in { 663 664let Uses = [EXEC] in { 665def DS_PERMUTE_B32 : DS_1A1D_PERMUTE <"ds_permute_b32", 666 int_amdgcn_ds_permute>; 667def DS_BPERMUTE_B32 : DS_1A1D_PERMUTE <"ds_bpermute_b32", 668 int_amdgcn_ds_bpermute>; 669} 670 671} // let SubtargetPredicate = isGFX8Plus 672 673let SubtargetPredicate = HasLDSFPAtomicAdd, OtherPredicates = [HasDsSrc2Insts] in { 674def DS_ADD_SRC2_F32 : DS_1A<"ds_add_src2_f32">; 675} 676 677//===----------------------------------------------------------------------===// 678// DS Patterns 679//===----------------------------------------------------------------------===// 680 681def : GCNPat < 682 (int_amdgcn_ds_swizzle i32:$src, timm:$offset16), 683 (DS_SWIZZLE_B32 VGPR_32:$src, (as_i16timm $offset16), (i1 0)) 684>; 685 686class DSReadPat <DS_Pseudo inst, ValueType vt, PatFrag frag, int gds=0> : GCNPat < 687 (vt (frag (DS1Addr1Offset i32:$ptr, i16:$offset))), 688 (inst $ptr, offset:$offset, (i1 gds)) 689>; 690 691multiclass DSReadPat_mc<DS_Pseudo inst, ValueType vt, string frag> { 692 693 let OtherPredicates = [LDSRequiresM0Init] in { 694 def : DSReadPat<inst, vt, !cast<PatFrag>(frag#"_m0")>; 695 } 696 697 let OtherPredicates = [NotLDSRequiresM0Init] in { 698 def : DSReadPat<!cast<DS_Pseudo>(!cast<string>(inst)#"_gfx9"), vt, !cast<PatFrag>(frag)>; 699 } 700} 701 702class DSReadPat_D16 <DS_Pseudo inst, PatFrag frag, ValueType vt> : GCNPat < 703 (frag (DS1Addr1Offset i32:$ptr, i16:$offset), vt:$in), 704 (inst $ptr, offset:$offset, (i1 0), $in) 705>; 706 707defm : DSReadPat_mc <DS_READ_I8, i32, "sextloadi8_local">; 708defm : DSReadPat_mc <DS_READ_I8, i16, "sextloadi8_local">; 709defm : DSReadPat_mc <DS_READ_U8, i32, "extloadi8_local">; 710defm : DSReadPat_mc <DS_READ_U8, i32, "zextloadi8_local">; 711defm : DSReadPat_mc <DS_READ_U8, i16, "extloadi8_local">; 712defm : DSReadPat_mc <DS_READ_U8, i16, "zextloadi8_local">; 713defm : DSReadPat_mc <DS_READ_I16, i32, "sextloadi16_local">; 714defm : DSReadPat_mc <DS_READ_I16, i32, "sextloadi16_local">; 715defm : DSReadPat_mc <DS_READ_U16, i32, "extloadi16_local">; 716defm : DSReadPat_mc <DS_READ_U16, i32, "zextloadi16_local">; 717defm : DSReadPat_mc <DS_READ_U16, i16, "load_local">; 718 719foreach vt = Reg32Types.types in { 720defm : DSReadPat_mc <DS_READ_B32, vt, "load_local">; 721} 722 723defm : DSReadPat_mc <DS_READ_U8, i16, "atomic_load_8_local">; 724defm : DSReadPat_mc <DS_READ_U8, i32, "atomic_load_8_local">; 725defm : DSReadPat_mc <DS_READ_U16, i16, "atomic_load_16_local">; 726defm : DSReadPat_mc <DS_READ_U16, i32, "atomic_load_16_local">; 727defm : DSReadPat_mc <DS_READ_B32, i32, "atomic_load_32_local">; 728defm : DSReadPat_mc <DS_READ_B64, i64, "atomic_load_64_local">; 729 730let OtherPredicates = [D16PreservesUnusedBits] in { 731def : DSReadPat_D16<DS_READ_U16_D16_HI, load_d16_hi_local, v2i16>; 732def : DSReadPat_D16<DS_READ_U16_D16_HI, load_d16_hi_local, v2f16>; 733def : DSReadPat_D16<DS_READ_U8_D16_HI, az_extloadi8_d16_hi_local, v2i16>; 734def : DSReadPat_D16<DS_READ_U8_D16_HI, az_extloadi8_d16_hi_local, v2f16>; 735def : DSReadPat_D16<DS_READ_I8_D16_HI, sextloadi8_d16_hi_local, v2i16>; 736def : DSReadPat_D16<DS_READ_I8_D16_HI, sextloadi8_d16_hi_local, v2f16>; 737 738def : DSReadPat_D16<DS_READ_U16_D16, load_d16_lo_local, v2i16>; 739def : DSReadPat_D16<DS_READ_U16_D16, load_d16_lo_local, v2f16>; 740def : DSReadPat_D16<DS_READ_U8_D16, az_extloadi8_d16_lo_local, v2i16>; 741def : DSReadPat_D16<DS_READ_U8_D16, az_extloadi8_d16_lo_local, v2f16>; 742def : DSReadPat_D16<DS_READ_I8_D16, sextloadi8_d16_lo_local, v2i16>; 743def : DSReadPat_D16<DS_READ_I8_D16, sextloadi8_d16_lo_local, v2f16>; 744} 745 746class DSWritePat <DS_Pseudo inst, ValueType vt, PatFrag frag, int gds=0> : GCNPat < 747 (frag vt:$value, (DS1Addr1Offset i32:$ptr, i16:$offset)), 748 (inst $ptr, getVregSrcForVT<vt>.ret:$value, offset:$offset, (i1 gds)) 749>; 750 751multiclass DSWritePat_mc <DS_Pseudo inst, ValueType vt, string frag> { 752 let OtherPredicates = [LDSRequiresM0Init] in { 753 def : DSWritePat<inst, vt, !cast<PatFrag>(frag#"_m0")>; 754 } 755 756 let OtherPredicates = [NotLDSRequiresM0Init] in { 757 def : DSWritePat<!cast<DS_Pseudo>(!cast<string>(inst)#"_gfx9"), vt, !cast<PatFrag>(frag)>; 758 } 759} 760 761// Irritatingly, atomic_store reverses the order of operands from a 762// normal store. 763class DSAtomicWritePat <DS_Pseudo inst, ValueType vt, PatFrag frag> : GCNPat < 764 (frag (DS1Addr1Offset i32:$ptr, i16:$offset), vt:$value), 765 (inst $ptr, getVregSrcForVT<vt>.ret:$value, offset:$offset, (i1 0)) 766>; 767 768multiclass DSAtomicWritePat_mc <DS_Pseudo inst, ValueType vt, string frag> { 769 let OtherPredicates = [LDSRequiresM0Init] in { 770 def : DSAtomicWritePat<inst, vt, !cast<PatFrag>(frag#"_m0")>; 771 } 772 773 let OtherPredicates = [NotLDSRequiresM0Init] in { 774 def : DSAtomicWritePat<!cast<DS_Pseudo>(!cast<string>(inst)#"_gfx9"), vt, !cast<PatFrag>(frag)>; 775 } 776} 777 778defm : DSWritePat_mc <DS_WRITE_B8, i32, "truncstorei8_local">; 779defm : DSWritePat_mc <DS_WRITE_B16, i32, "truncstorei16_local">; 780defm : DSWritePat_mc <DS_WRITE_B8, i16, "truncstorei8_local">; 781defm : DSWritePat_mc <DS_WRITE_B16, i16, "store_local">; 782 783foreach vt = Reg32Types.types in { 784defm : DSWritePat_mc <DS_WRITE_B32, vt, "store_local">; 785} 786 787defm : DSAtomicWritePat_mc <DS_WRITE_B8, i16, "atomic_store_local_8">; 788defm : DSAtomicWritePat_mc <DS_WRITE_B8, i32, "atomic_store_local_8">; 789defm : DSAtomicWritePat_mc <DS_WRITE_B16, i16, "atomic_store_local_16">; 790defm : DSAtomicWritePat_mc <DS_WRITE_B16, i32, "atomic_store_local_16">; 791defm : DSAtomicWritePat_mc <DS_WRITE_B32, i32, "atomic_store_local_32">; 792defm : DSAtomicWritePat_mc <DS_WRITE_B64, i64, "atomic_store_local_64">; 793 794let OtherPredicates = [D16PreservesUnusedBits] in { 795def : DSWritePat <DS_WRITE_B16_D16_HI, i32, store_hi16_local>; 796def : DSWritePat <DS_WRITE_B8_D16_HI, i32, truncstorei8_hi16_local>; 797} 798 799class DS64Bit4ByteAlignedReadPat<DS_Pseudo inst, ValueType vt, PatFrag frag> : GCNPat < 800 (vt:$value (frag (DS64Bit4ByteAligned i32:$ptr, i8:$offset0, i8:$offset1))), 801 (inst $ptr, $offset0, $offset1, (i1 0)) 802>; 803 804class DS64Bit4ByteAlignedWritePat<DS_Pseudo inst, ValueType vt, PatFrag frag> : GCNPat< 805 (frag vt:$value, (DS64Bit4ByteAligned i32:$ptr, i8:$offset0, i8:$offset1)), 806 (inst $ptr, (i32 (EXTRACT_SUBREG VReg_64:$value, sub0)), 807 (i32 (EXTRACT_SUBREG VReg_64:$value, sub1)), $offset0, $offset1, 808 (i1 0)) 809>; 810 811class DS128Bit8ByteAlignedReadPat<DS_Pseudo inst, ValueType vt, PatFrag frag> : GCNPat < 812 (vt:$value (frag (DS128Bit8ByteAligned i32:$ptr, i8:$offset0, i8:$offset1))), 813 (inst $ptr, $offset0, $offset1, (i1 0)) 814>; 815 816class DS128Bit8ByteAlignedWritePat<DS_Pseudo inst, ValueType vt, PatFrag frag> : GCNPat< 817 (frag vt:$value, (DS128Bit8ByteAligned i32:$ptr, i8:$offset0, i8:$offset1)), 818 (inst $ptr, (i64 (EXTRACT_SUBREG VReg_128:$value, sub0_sub1)), 819 (i64 (EXTRACT_SUBREG VReg_128:$value, sub2_sub3)), $offset0, $offset1, 820 (i1 0)) 821>; 822 823multiclass DS64Bit4ByteAlignedPat_mc<ValueType vt> { 824 let OtherPredicates = [LDSRequiresM0Init, isGFX7Plus] in { 825 def : DS64Bit4ByteAlignedReadPat<DS_READ2_B32, vt, load_local_m0>; 826 def : DS64Bit4ByteAlignedWritePat<DS_WRITE2_B32, vt, store_local_m0>; 827 } 828 829 let OtherPredicates = [NotLDSRequiresM0Init] in { 830 def : DS64Bit4ByteAlignedReadPat<DS_READ2_B32_gfx9, vt, load_local>; 831 def : DS64Bit4ByteAlignedWritePat<DS_WRITE2_B32_gfx9, vt, store_local>; 832 } 833} 834 835multiclass DS128Bit8ByteAlignedPat_mc<ValueType vt> { 836 let OtherPredicates = [LDSRequiresM0Init, isGFX7Plus] in { 837 def : DS128Bit8ByteAlignedReadPat<DS_READ2_B64, vt, load_local_m0>; 838 def : DS128Bit8ByteAlignedWritePat<DS_WRITE2_B64, vt, store_local_m0>; 839 } 840 841 let OtherPredicates = [NotLDSRequiresM0Init] in { 842 def : DS128Bit8ByteAlignedReadPat<DS_READ2_B64_gfx9, vt, load_local>; 843 def : DS128Bit8ByteAlignedWritePat<DS_WRITE2_B64_gfx9, vt, store_local>; 844 } 845} 846 847// v2i32 loads are split into i32 loads on SI during lowering, due to a bug 848// related to bounds checking. 849foreach vt = VReg_64.RegTypes in { 850defm : DS64Bit4ByteAlignedPat_mc<vt>; 851} 852 853foreach vt = VReg_128.RegTypes in { 854defm : DS128Bit8ByteAlignedPat_mc<vt>; 855} 856 857// Prefer ds_read over ds_read2 and ds_write over ds_write2, all other things 858// being equal, because it has a larger immediate offset range. 859let AddedComplexity = 100 in { 860 861foreach vt = VReg_64.RegTypes in { 862defm : DSReadPat_mc <DS_READ_B64, vt, "load_align8_local">; 863defm : DSWritePat_mc <DS_WRITE_B64, vt, "store_align8_local">; 864} 865 866let SubtargetPredicate = isGFX7Plus in { 867 868foreach vt = VReg_96.RegTypes in { 869defm : DSReadPat_mc <DS_READ_B96, vt, "load_align16_local">; 870defm : DSWritePat_mc <DS_WRITE_B96, vt, "store_align16_local">; 871} 872 873foreach vt = VReg_128.RegTypes in { 874defm : DSReadPat_mc <DS_READ_B128, vt, "load_align16_local">; 875defm : DSWritePat_mc <DS_WRITE_B128, vt, "store_align16_local">; 876} 877 878let SubtargetPredicate = HasUnalignedAccessMode in { 879 880// FIXME: From performance point of view, is ds_read_b96/ds_write_b96 better choice 881// for unaligned accesses? 882foreach vt = VReg_96.RegTypes in { 883defm : DSReadPat_mc <DS_READ_B96, vt, "load_local">; 884defm : DSWritePat_mc <DS_WRITE_B96, vt, "store_local">; 885} 886 887// For performance reasons, *do not* select ds_read_b128/ds_write_b128 for unaligned 888// accesses. 889 890} // End SubtargetPredicate = HasUnalignedAccessMode 891 892} // End SubtargetPredicate = isGFX7Plus 893 894} // End AddedComplexity = 100 895 896class DSAtomicRetPat<DS_Pseudo inst, ValueType vt, PatFrag frag, bit gds=0> : GCNPat < 897 (frag (DS1Addr1Offset i32:$ptr, i16:$offset), vt:$value), 898 (inst $ptr, getVregSrcForVT<vt>.ret:$value, offset:$offset, (i1 gds)) 899>; 900 901multiclass DSAtomicRetPat_mc<DS_Pseudo inst, ValueType vt, string frag> { 902 let OtherPredicates = [LDSRequiresM0Init] in { 903 def : DSAtomicRetPat<inst, vt, !cast<PatFrag>(frag#"_local_m0_"#vt.Size)>; 904 } 905 906 let OtherPredicates = [NotLDSRequiresM0Init] in { 907 def : DSAtomicRetPat<!cast<DS_Pseudo>(!cast<string>(inst)#"_gfx9"), vt, 908 !cast<PatFrag>(frag#"_local_"#vt.Size)>; 909 } 910 911 def : DSAtomicRetPat<inst, vt, !cast<PatFrag>(frag#"_region_m0_"#vt.Size), 1>; 912} 913 914multiclass DSAtomicRetNoRetPat_mc<DS_Pseudo inst, DS_Pseudo noRetInst, 915 ValueType vt, string frag> { 916 let OtherPredicates = [LDSRequiresM0Init] in { 917 def : DSAtomicRetPat<inst, vt, 918 !cast<PatFrag>(frag#"_local_m0_ret_"#vt.Size)>; 919 def : DSAtomicRetPat<noRetInst, vt, 920 !cast<PatFrag>(frag#"_local_m0_noret_"#vt.Size)>; 921 } 922 923 let OtherPredicates = [NotLDSRequiresM0Init] in { 924 def : DSAtomicRetPat<!cast<DS_Pseudo>(!cast<string>(inst)#"_gfx9"), vt, 925 !cast<PatFrag>(frag#"_local_ret_"#vt.Size)>; 926 def : DSAtomicRetPat<!cast<DS_Pseudo>(!cast<string>(noRetInst)#"_gfx9"), vt, 927 !cast<PatFrag>(frag#"_local_noret_"#vt.Size)>; 928 } 929 930 def : DSAtomicRetPat<inst, vt, 931 !cast<PatFrag>(frag#"_region_m0_ret_"#vt.Size), 1>; 932 def : DSAtomicRetPat<noRetInst, vt, 933 !cast<PatFrag>(frag#"_region_m0_noret_"#vt.Size), 1>; 934} 935 936 937 938// Caution, the order of src and cmp is the *opposite* of the BUFFER_ATOMIC_CMPSWAP opcode. 939class DSAtomicCmpXChgSwapped<DS_Pseudo inst, ValueType vt, PatFrag frag, bit gds=0> : GCNPat < 940 (frag (DS1Addr1Offset i32:$ptr, i16:$offset), vt:$cmp, vt:$swap), 941 (inst $ptr, getVregSrcForVT<vt>.ret:$cmp, getVregSrcForVT<vt>.ret:$swap, offset:$offset, (i1 gds)) 942>; 943 944multiclass DSAtomicCmpXChgSwapped_mc<DS_Pseudo inst, DS_Pseudo noRetInst, ValueType vt, 945 string frag> { 946 let OtherPredicates = [LDSRequiresM0Init] in { 947 def : DSAtomicCmpXChgSwapped<inst, vt, !cast<PatFrag>(frag#"_local_m0_ret_"#vt.Size)>; 948 def : DSAtomicCmpXChgSwapped<noRetInst, vt, !cast<PatFrag>(frag#"_local_m0_noret_"#vt.Size)>; 949 } 950 951 let OtherPredicates = [NotLDSRequiresM0Init] in { 952 def : DSAtomicCmpXChgSwapped<!cast<DS_Pseudo>(!cast<string>(inst)#"_gfx9"), vt, 953 !cast<PatFrag>(frag#"_local_ret_"#vt.Size)>; 954 def : DSAtomicCmpXChgSwapped<!cast<DS_Pseudo>(!cast<string>(noRetInst)#"_gfx9"), vt, 955 !cast<PatFrag>(frag#"_local_noret_"#vt.Size)>; 956 } 957 958 def : DSAtomicCmpXChgSwapped<inst, vt, !cast<PatFrag>(frag#"_region_m0_ret_"#vt.Size), 1>; 959 def : DSAtomicCmpXChgSwapped<noRetInst, vt, !cast<PatFrag>(frag#"_region_m0_noret_"#vt.Size), 1>; 960} 961 962 963 964// 32-bit atomics. 965defm : DSAtomicRetPat_mc<DS_WRXCHG_RTN_B32, i32, "atomic_swap">; 966defm : DSAtomicRetNoRetPat_mc<DS_ADD_RTN_U32, DS_ADD_U32, i32, "atomic_load_add">; 967defm : DSAtomicRetNoRetPat_mc<DS_SUB_RTN_U32, DS_SUB_U32, i32, "atomic_load_sub">; 968defm : DSAtomicRetNoRetPat_mc<DS_INC_RTN_U32, DS_INC_U32, i32, "atomic_inc">; 969defm : DSAtomicRetNoRetPat_mc<DS_DEC_RTN_U32, DS_DEC_U32, i32, "atomic_dec">; 970defm : DSAtomicRetNoRetPat_mc<DS_AND_RTN_B32, DS_AND_B32, i32, "atomic_load_and">; 971defm : DSAtomicRetNoRetPat_mc<DS_OR_RTN_B32, DS_OR_B32, i32, "atomic_load_or">; 972defm : DSAtomicRetNoRetPat_mc<DS_XOR_RTN_B32, DS_XOR_B32, i32, "atomic_load_xor">; 973defm : DSAtomicRetNoRetPat_mc<DS_MIN_RTN_I32, DS_MIN_I32, i32, "atomic_load_min">; 974defm : DSAtomicRetNoRetPat_mc<DS_MAX_RTN_I32, DS_MAX_I32, i32, "atomic_load_max">; 975defm : DSAtomicRetNoRetPat_mc<DS_MIN_RTN_U32, DS_MIN_U32, i32, "atomic_load_umin">; 976defm : DSAtomicRetNoRetPat_mc<DS_MAX_RTN_U32, DS_MAX_U32, i32, "atomic_load_umax">; 977defm : DSAtomicRetNoRetPat_mc<DS_MIN_RTN_F32, DS_MIN_F32, f32, "atomic_load_fmin">; 978defm : DSAtomicRetNoRetPat_mc<DS_MAX_RTN_F32, DS_MAX_F32, f32, "atomic_load_fmax">; 979defm : DSAtomicCmpXChgSwapped_mc<DS_CMPST_RTN_B32, DS_CMPST_B32, i32, "atomic_cmp_swap">; 980 981let SubtargetPredicate = HasLDSFPAtomicAdd in { 982defm : DSAtomicRetNoRetPat_mc<DS_ADD_RTN_F32, DS_ADD_F32, f32, "atomic_load_fadd">; 983} 984 985// 64-bit atomics. 986defm : DSAtomicRetPat_mc<DS_WRXCHG_RTN_B64, i64, "atomic_swap">; 987defm : DSAtomicRetNoRetPat_mc<DS_ADD_RTN_U64, DS_ADD_U64, i64, "atomic_load_add">; 988defm : DSAtomicRetNoRetPat_mc<DS_SUB_RTN_U64, DS_SUB_U64, i64, "atomic_load_sub">; 989defm : DSAtomicRetNoRetPat_mc<DS_INC_RTN_U64, DS_INC_U64, i64, "atomic_inc">; 990defm : DSAtomicRetNoRetPat_mc<DS_DEC_RTN_U64, DS_DEC_U64, i64, "atomic_dec">; 991defm : DSAtomicRetNoRetPat_mc<DS_AND_RTN_B64, DS_AND_B64, i64, "atomic_load_and">; 992defm : DSAtomicRetNoRetPat_mc<DS_OR_RTN_B64, DS_OR_B64, i64, "atomic_load_or">; 993defm : DSAtomicRetNoRetPat_mc<DS_XOR_RTN_B64, DS_XOR_B64, i64, "atomic_load_xor">; 994defm : DSAtomicRetNoRetPat_mc<DS_MIN_RTN_I64, DS_MIN_I64, i64, "atomic_load_min">; 995defm : DSAtomicRetNoRetPat_mc<DS_MAX_RTN_I64, DS_MAX_I64, i64, "atomic_load_max">; 996defm : DSAtomicRetNoRetPat_mc<DS_MIN_RTN_U64, DS_MIN_U64, i64, "atomic_load_umin">; 997defm : DSAtomicRetNoRetPat_mc<DS_MAX_RTN_U64, DS_MAX_U64, i64, "atomic_load_umax">; 998defm : DSAtomicRetNoRetPat_mc<DS_MIN_RTN_F64, DS_MIN_F64, f64, "atomic_load_fmin">; 999defm : DSAtomicRetNoRetPat_mc<DS_MAX_RTN_F64, DS_MAX_F64, f64, "atomic_load_fmax">; 1000 1001defm : DSAtomicCmpXChgSwapped_mc<DS_CMPST_RTN_B64, DS_CMPST_B64, i64, "atomic_cmp_swap">; 1002 1003let SubtargetPredicate = isGFX90APlus in { 1004def : DSAtomicRetPat<DS_ADD_RTN_F64, f64, atomic_load_fadd_local_ret_64>; 1005def : DSAtomicRetPat<DS_ADD_F64, f64, atomic_load_fadd_local_noret_64>; 1006} 1007 1008let SubtargetPredicate = isGFX940Plus in { 1009def : DSAtomicRetPat<DS_PK_ADD_RTN_F16, v2f16, atomic_load_fadd_v2f16_local_32>; 1010def : GCNPat < 1011 (v2i16 (int_amdgcn_ds_fadd_v2bf16 i32:$ptr, v2i16:$src)), 1012 (DS_PK_ADD_RTN_BF16 VGPR_32:$ptr, VGPR_32:$src, 0, 0) 1013>; 1014} 1015 1016def : Pat < 1017 (SIds_ordered_count i32:$value, i16:$offset), 1018 (DS_ORDERED_COUNT $value, (as_i16imm $offset)) 1019>; 1020 1021//===----------------------------------------------------------------------===// 1022// Target-specific instruction encodings. 1023//===----------------------------------------------------------------------===// 1024 1025//===----------------------------------------------------------------------===// 1026// Base ENC_DS for GFX6, GFX7, GFX10. 1027//===----------------------------------------------------------------------===// 1028 1029class Base_DS_Real_gfx6_gfx7_gfx10<bits<8> op, DS_Pseudo ps, int ef> : 1030 DS_Real<ps>, SIMCInstr <ps.Mnemonic, ef> { 1031 1032 let Inst{7-0} = !if(ps.has_offset0, offset0, 0); 1033 let Inst{15-8} = !if(ps.has_offset1, offset1, 0); 1034 let Inst{17} = !if(ps.has_gds, gds, ps.gdsValue); 1035 let Inst{25-18} = op; 1036 let Inst{31-26} = 0x36; 1037 let Inst{39-32} = !if(ps.has_addr, addr, !if(ps.has_gws_data0, data0{7-0}, 0)); 1038 let Inst{47-40} = !if(ps.has_data0, data0{7-0}, 0); 1039 let Inst{55-48} = !if(ps.has_data1, data1{7-0}, 0); 1040 let Inst{63-56} = !if(ps.has_vdst, vdst{7-0}, 0); 1041} 1042 1043//===----------------------------------------------------------------------===// 1044// GFX10. 1045//===----------------------------------------------------------------------===// 1046 1047let AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10" in { 1048 multiclass DS_Real_gfx10<bits<8> op> { 1049 def _gfx10 : Base_DS_Real_gfx6_gfx7_gfx10<op, !cast<DS_Pseudo>(NAME), 1050 SIEncodingFamily.GFX10>; 1051 } 1052} // End AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10" 1053 1054defm DS_ADD_F32 : DS_Real_gfx10<0x015>; 1055defm DS_ADD_RTN_F32 : DS_Real_gfx10<0x055>; 1056defm DS_ADD_SRC2_F32 : DS_Real_gfx10<0x095>; 1057defm DS_WRITE_B8_D16_HI : DS_Real_gfx10<0x0a0>; 1058defm DS_WRITE_B16_D16_HI : DS_Real_gfx10<0x0a1>; 1059defm DS_READ_U8_D16 : DS_Real_gfx10<0x0a2>; 1060defm DS_READ_U8_D16_HI : DS_Real_gfx10<0x0a3>; 1061defm DS_READ_I8_D16 : DS_Real_gfx10<0x0a4>; 1062defm DS_READ_I8_D16_HI : DS_Real_gfx10<0x0a5>; 1063defm DS_READ_U16_D16 : DS_Real_gfx10<0x0a6>; 1064defm DS_READ_U16_D16_HI : DS_Real_gfx10<0x0a7>; 1065defm DS_WRITE_ADDTID_B32 : DS_Real_gfx10<0x0b0>; 1066defm DS_READ_ADDTID_B32 : DS_Real_gfx10<0x0b1>; 1067defm DS_PERMUTE_B32 : DS_Real_gfx10<0x0b2>; 1068defm DS_BPERMUTE_B32 : DS_Real_gfx10<0x0b3>; 1069 1070//===----------------------------------------------------------------------===// 1071// GFX7, GFX10. 1072//===----------------------------------------------------------------------===// 1073 1074let AssemblerPredicate = isGFX7Only, DecoderNamespace = "GFX7" in { 1075 multiclass DS_Real_gfx7<bits<8> op> { 1076 def _gfx7 : Base_DS_Real_gfx6_gfx7_gfx10<op, !cast<DS_Pseudo>(NAME), 1077 SIEncodingFamily.SI>; 1078 } 1079} // End AssemblerPredicate = isGFX7Only, DecoderNamespace = "GFX7" 1080 1081multiclass DS_Real_gfx7_gfx10<bits<8> op> : 1082 DS_Real_gfx7<op>, DS_Real_gfx10<op>; 1083 1084// FIXME-GFX7: Add tests when upstreaming this part. 1085defm DS_GWS_SEMA_RELEASE_ALL : DS_Real_gfx7_gfx10<0x018>; 1086defm DS_WRAP_RTN_B32 : DS_Real_gfx7_gfx10<0x034>; 1087defm DS_CONDXCHG32_RTN_B64 : DS_Real_gfx7_gfx10<0x07e>; 1088defm DS_WRITE_B96 : DS_Real_gfx7_gfx10<0x0de>; 1089defm DS_WRITE_B128 : DS_Real_gfx7_gfx10<0x0df>; 1090defm DS_READ_B96 : DS_Real_gfx7_gfx10<0x0fe>; 1091defm DS_READ_B128 : DS_Real_gfx7_gfx10<0x0ff>; 1092 1093//===----------------------------------------------------------------------===// 1094// GFX6, GFX7, GFX10. 1095//===----------------------------------------------------------------------===// 1096 1097let AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7" in { 1098 multiclass DS_Real_gfx6_gfx7<bits<8> op> { 1099 def _gfx6_gfx7 : Base_DS_Real_gfx6_gfx7_gfx10<op, !cast<DS_Pseudo>(NAME), 1100 SIEncodingFamily.SI>; 1101 } 1102} // End AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7" 1103 1104multiclass DS_Real_gfx6_gfx7_gfx10<bits<8> op> : 1105 DS_Real_gfx6_gfx7<op>, DS_Real_gfx10<op>; 1106 1107defm DS_ADD_U32 : DS_Real_gfx6_gfx7_gfx10<0x000>; 1108defm DS_SUB_U32 : DS_Real_gfx6_gfx7_gfx10<0x001>; 1109defm DS_RSUB_U32 : DS_Real_gfx6_gfx7_gfx10<0x002>; 1110defm DS_INC_U32 : DS_Real_gfx6_gfx7_gfx10<0x003>; 1111defm DS_DEC_U32 : DS_Real_gfx6_gfx7_gfx10<0x004>; 1112defm DS_MIN_I32 : DS_Real_gfx6_gfx7_gfx10<0x005>; 1113defm DS_MAX_I32 : DS_Real_gfx6_gfx7_gfx10<0x006>; 1114defm DS_MIN_U32 : DS_Real_gfx6_gfx7_gfx10<0x007>; 1115defm DS_MAX_U32 : DS_Real_gfx6_gfx7_gfx10<0x008>; 1116defm DS_AND_B32 : DS_Real_gfx6_gfx7_gfx10<0x009>; 1117defm DS_OR_B32 : DS_Real_gfx6_gfx7_gfx10<0x00a>; 1118defm DS_XOR_B32 : DS_Real_gfx6_gfx7_gfx10<0x00b>; 1119defm DS_MSKOR_B32 : DS_Real_gfx6_gfx7_gfx10<0x00c>; 1120defm DS_WRITE_B32 : DS_Real_gfx6_gfx7_gfx10<0x00d>; 1121defm DS_WRITE2_B32 : DS_Real_gfx6_gfx7_gfx10<0x00e>; 1122defm DS_WRITE2ST64_B32 : DS_Real_gfx6_gfx7_gfx10<0x00f>; 1123defm DS_CMPST_B32 : DS_Real_gfx6_gfx7_gfx10<0x010>; 1124defm DS_CMPST_F32 : DS_Real_gfx6_gfx7_gfx10<0x011>; 1125defm DS_MIN_F32 : DS_Real_gfx6_gfx7_gfx10<0x012>; 1126defm DS_MAX_F32 : DS_Real_gfx6_gfx7_gfx10<0x013>; 1127defm DS_NOP : DS_Real_gfx6_gfx7_gfx10<0x014>; 1128defm DS_GWS_INIT : DS_Real_gfx6_gfx7_gfx10<0x019>; 1129defm DS_GWS_SEMA_V : DS_Real_gfx6_gfx7_gfx10<0x01a>; 1130defm DS_GWS_SEMA_BR : DS_Real_gfx6_gfx7_gfx10<0x01b>; 1131defm DS_GWS_SEMA_P : DS_Real_gfx6_gfx7_gfx10<0x01c>; 1132defm DS_GWS_BARRIER : DS_Real_gfx6_gfx7_gfx10<0x01d>; 1133defm DS_WRITE_B8 : DS_Real_gfx6_gfx7_gfx10<0x01e>; 1134defm DS_WRITE_B16 : DS_Real_gfx6_gfx7_gfx10<0x01f>; 1135defm DS_ADD_RTN_U32 : DS_Real_gfx6_gfx7_gfx10<0x020>; 1136defm DS_SUB_RTN_U32 : DS_Real_gfx6_gfx7_gfx10<0x021>; 1137defm DS_RSUB_RTN_U32 : DS_Real_gfx6_gfx7_gfx10<0x022>; 1138defm DS_INC_RTN_U32 : DS_Real_gfx6_gfx7_gfx10<0x023>; 1139defm DS_DEC_RTN_U32 : DS_Real_gfx6_gfx7_gfx10<0x024>; 1140defm DS_MIN_RTN_I32 : DS_Real_gfx6_gfx7_gfx10<0x025>; 1141defm DS_MAX_RTN_I32 : DS_Real_gfx6_gfx7_gfx10<0x026>; 1142defm DS_MIN_RTN_U32 : DS_Real_gfx6_gfx7_gfx10<0x027>; 1143defm DS_MAX_RTN_U32 : DS_Real_gfx6_gfx7_gfx10<0x028>; 1144defm DS_AND_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x029>; 1145defm DS_OR_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x02a>; 1146defm DS_XOR_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x02b>; 1147defm DS_MSKOR_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x02c>; 1148defm DS_WRXCHG_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x02d>; 1149defm DS_WRXCHG2_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x02e>; 1150defm DS_WRXCHG2ST64_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x02f>; 1151defm DS_CMPST_RTN_B32 : DS_Real_gfx6_gfx7_gfx10<0x030>; 1152defm DS_CMPST_RTN_F32 : DS_Real_gfx6_gfx7_gfx10<0x031>; 1153defm DS_MIN_RTN_F32 : DS_Real_gfx6_gfx7_gfx10<0x032>; 1154defm DS_MAX_RTN_F32 : DS_Real_gfx6_gfx7_gfx10<0x033>; 1155defm DS_SWIZZLE_B32 : DS_Real_gfx6_gfx7_gfx10<0x035>; 1156defm DS_READ_B32 : DS_Real_gfx6_gfx7_gfx10<0x036>; 1157defm DS_READ2_B32 : DS_Real_gfx6_gfx7_gfx10<0x037>; 1158defm DS_READ2ST64_B32 : DS_Real_gfx6_gfx7_gfx10<0x038>; 1159defm DS_READ_I8 : DS_Real_gfx6_gfx7_gfx10<0x039>; 1160defm DS_READ_U8 : DS_Real_gfx6_gfx7_gfx10<0x03a>; 1161defm DS_READ_I16 : DS_Real_gfx6_gfx7_gfx10<0x03b>; 1162defm DS_READ_U16 : DS_Real_gfx6_gfx7_gfx10<0x03c>; 1163defm DS_CONSUME : DS_Real_gfx6_gfx7_gfx10<0x03d>; 1164defm DS_APPEND : DS_Real_gfx6_gfx7_gfx10<0x03e>; 1165defm DS_ORDERED_COUNT : DS_Real_gfx6_gfx7_gfx10<0x03f>; 1166defm DS_ADD_U64 : DS_Real_gfx6_gfx7_gfx10<0x040>; 1167defm DS_SUB_U64 : DS_Real_gfx6_gfx7_gfx10<0x041>; 1168defm DS_RSUB_U64 : DS_Real_gfx6_gfx7_gfx10<0x042>; 1169defm DS_INC_U64 : DS_Real_gfx6_gfx7_gfx10<0x043>; 1170defm DS_DEC_U64 : DS_Real_gfx6_gfx7_gfx10<0x044>; 1171defm DS_MIN_I64 : DS_Real_gfx6_gfx7_gfx10<0x045>; 1172defm DS_MAX_I64 : DS_Real_gfx6_gfx7_gfx10<0x046>; 1173defm DS_MIN_U64 : DS_Real_gfx6_gfx7_gfx10<0x047>; 1174defm DS_MAX_U64 : DS_Real_gfx6_gfx7_gfx10<0x048>; 1175defm DS_AND_B64 : DS_Real_gfx6_gfx7_gfx10<0x049>; 1176defm DS_OR_B64 : DS_Real_gfx6_gfx7_gfx10<0x04a>; 1177defm DS_XOR_B64 : DS_Real_gfx6_gfx7_gfx10<0x04b>; 1178defm DS_MSKOR_B64 : DS_Real_gfx6_gfx7_gfx10<0x04c>; 1179defm DS_WRITE_B64 : DS_Real_gfx6_gfx7_gfx10<0x04d>; 1180defm DS_WRITE2_B64 : DS_Real_gfx6_gfx7_gfx10<0x04e>; 1181defm DS_WRITE2ST64_B64 : DS_Real_gfx6_gfx7_gfx10<0x04f>; 1182defm DS_CMPST_B64 : DS_Real_gfx6_gfx7_gfx10<0x050>; 1183defm DS_CMPST_F64 : DS_Real_gfx6_gfx7_gfx10<0x051>; 1184defm DS_MIN_F64 : DS_Real_gfx6_gfx7_gfx10<0x052>; 1185defm DS_MAX_F64 : DS_Real_gfx6_gfx7_gfx10<0x053>; 1186defm DS_ADD_RTN_U64 : DS_Real_gfx6_gfx7_gfx10<0x060>; 1187defm DS_SUB_RTN_U64 : DS_Real_gfx6_gfx7_gfx10<0x061>; 1188defm DS_RSUB_RTN_U64 : DS_Real_gfx6_gfx7_gfx10<0x062>; 1189defm DS_INC_RTN_U64 : DS_Real_gfx6_gfx7_gfx10<0x063>; 1190defm DS_DEC_RTN_U64 : DS_Real_gfx6_gfx7_gfx10<0x064>; 1191defm DS_MIN_RTN_I64 : DS_Real_gfx6_gfx7_gfx10<0x065>; 1192defm DS_MAX_RTN_I64 : DS_Real_gfx6_gfx7_gfx10<0x066>; 1193defm DS_MIN_RTN_U64 : DS_Real_gfx6_gfx7_gfx10<0x067>; 1194defm DS_MAX_RTN_U64 : DS_Real_gfx6_gfx7_gfx10<0x068>; 1195defm DS_AND_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x069>; 1196defm DS_OR_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x06a>; 1197defm DS_XOR_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x06b>; 1198defm DS_MSKOR_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x06c>; 1199defm DS_WRXCHG_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x06d>; 1200defm DS_WRXCHG2_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x06e>; 1201defm DS_WRXCHG2ST64_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x06f>; 1202defm DS_CMPST_RTN_B64 : DS_Real_gfx6_gfx7_gfx10<0x070>; 1203defm DS_CMPST_RTN_F64 : DS_Real_gfx6_gfx7_gfx10<0x071>; 1204defm DS_MIN_RTN_F64 : DS_Real_gfx6_gfx7_gfx10<0x072>; 1205defm DS_MAX_RTN_F64 : DS_Real_gfx6_gfx7_gfx10<0x073>; 1206defm DS_READ_B64 : DS_Real_gfx6_gfx7_gfx10<0x076>; 1207defm DS_READ2_B64 : DS_Real_gfx6_gfx7_gfx10<0x077>; 1208defm DS_READ2ST64_B64 : DS_Real_gfx6_gfx7_gfx10<0x078>; 1209defm DS_ADD_SRC2_U32 : DS_Real_gfx6_gfx7_gfx10<0x080>; 1210defm DS_SUB_SRC2_U32 : DS_Real_gfx6_gfx7_gfx10<0x081>; 1211defm DS_RSUB_SRC2_U32 : DS_Real_gfx6_gfx7_gfx10<0x082>; 1212defm DS_INC_SRC2_U32 : DS_Real_gfx6_gfx7_gfx10<0x083>; 1213defm DS_DEC_SRC2_U32 : DS_Real_gfx6_gfx7_gfx10<0x084>; 1214defm DS_MIN_SRC2_I32 : DS_Real_gfx6_gfx7_gfx10<0x085>; 1215defm DS_MAX_SRC2_I32 : DS_Real_gfx6_gfx7_gfx10<0x086>; 1216defm DS_MIN_SRC2_U32 : DS_Real_gfx6_gfx7_gfx10<0x087>; 1217defm DS_MAX_SRC2_U32 : DS_Real_gfx6_gfx7_gfx10<0x088>; 1218defm DS_AND_SRC2_B32 : DS_Real_gfx6_gfx7_gfx10<0x089>; 1219defm DS_OR_SRC2_B32 : DS_Real_gfx6_gfx7_gfx10<0x08a>; 1220defm DS_XOR_SRC2_B32 : DS_Real_gfx6_gfx7_gfx10<0x08b>; 1221defm DS_WRITE_SRC2_B32 : DS_Real_gfx6_gfx7_gfx10<0x08d>; 1222defm DS_MIN_SRC2_F32 : DS_Real_gfx6_gfx7_gfx10<0x092>; 1223defm DS_MAX_SRC2_F32 : DS_Real_gfx6_gfx7_gfx10<0x093>; 1224defm DS_ADD_SRC2_U64 : DS_Real_gfx6_gfx7_gfx10<0x0c0>; 1225defm DS_SUB_SRC2_U64 : DS_Real_gfx6_gfx7_gfx10<0x0c1>; 1226defm DS_RSUB_SRC2_U64 : DS_Real_gfx6_gfx7_gfx10<0x0c2>; 1227defm DS_INC_SRC2_U64 : DS_Real_gfx6_gfx7_gfx10<0x0c3>; 1228defm DS_DEC_SRC2_U64 : DS_Real_gfx6_gfx7_gfx10<0x0c4>; 1229defm DS_MIN_SRC2_I64 : DS_Real_gfx6_gfx7_gfx10<0x0c5>; 1230defm DS_MAX_SRC2_I64 : DS_Real_gfx6_gfx7_gfx10<0x0c6>; 1231defm DS_MIN_SRC2_U64 : DS_Real_gfx6_gfx7_gfx10<0x0c7>; 1232defm DS_MAX_SRC2_U64 : DS_Real_gfx6_gfx7_gfx10<0x0c8>; 1233defm DS_AND_SRC2_B64 : DS_Real_gfx6_gfx7_gfx10<0x0c9>; 1234defm DS_OR_SRC2_B64 : DS_Real_gfx6_gfx7_gfx10<0x0ca>; 1235defm DS_XOR_SRC2_B64 : DS_Real_gfx6_gfx7_gfx10<0x0cb>; 1236defm DS_WRITE_SRC2_B64 : DS_Real_gfx6_gfx7_gfx10<0x0cd>; 1237defm DS_MIN_SRC2_F64 : DS_Real_gfx6_gfx7_gfx10<0x0d2>; 1238defm DS_MAX_SRC2_F64 : DS_Real_gfx6_gfx7_gfx10<0x0d3>; 1239 1240//===----------------------------------------------------------------------===// 1241// GFX8, GFX9 (VI). 1242//===----------------------------------------------------------------------===// 1243 1244class DS_Real_vi <bits<8> op, DS_Pseudo ps> : 1245 DS_Real <ps>, 1246 SIMCInstr <ps.Mnemonic, SIEncodingFamily.VI> { 1247 let AssemblerPredicate = isGFX8GFX9; 1248 let DecoderNamespace = "GFX8"; 1249 1250 // encoding 1251 let Inst{7-0} = !if(ps.has_offset0, offset0, 0); 1252 let Inst{15-8} = !if(ps.has_offset1, offset1, 0); 1253 let Inst{16} = !if(ps.has_gds, gds, ps.gdsValue); 1254 let Inst{24-17} = op; 1255 let Inst{25} = acc; 1256 let Inst{31-26} = 0x36; // ds prefix 1257 let Inst{39-32} = !if(ps.has_addr, addr, !if(ps.has_gws_data0, data0{7-0}, 0)); 1258 let Inst{47-40} = !if(ps.has_data0, data0{7-0}, 0); 1259 let Inst{55-48} = !if(ps.has_data1, data1{7-0}, 0); 1260 let Inst{63-56} = !if(ps.has_vdst, vdst{7-0}, 0); 1261} 1262 1263def DS_ADD_U32_vi : DS_Real_vi<0x0, DS_ADD_U32>; 1264def DS_SUB_U32_vi : DS_Real_vi<0x1, DS_SUB_U32>; 1265def DS_RSUB_U32_vi : DS_Real_vi<0x2, DS_RSUB_U32>; 1266def DS_INC_U32_vi : DS_Real_vi<0x3, DS_INC_U32>; 1267def DS_DEC_U32_vi : DS_Real_vi<0x4, DS_DEC_U32>; 1268def DS_MIN_I32_vi : DS_Real_vi<0x5, DS_MIN_I32>; 1269def DS_MAX_I32_vi : DS_Real_vi<0x6, DS_MAX_I32>; 1270def DS_MIN_U32_vi : DS_Real_vi<0x7, DS_MIN_U32>; 1271def DS_MAX_U32_vi : DS_Real_vi<0x8, DS_MAX_U32>; 1272def DS_AND_B32_vi : DS_Real_vi<0x9, DS_AND_B32>; 1273def DS_OR_B32_vi : DS_Real_vi<0xa, DS_OR_B32>; 1274def DS_XOR_B32_vi : DS_Real_vi<0xb, DS_XOR_B32>; 1275def DS_MSKOR_B32_vi : DS_Real_vi<0xc, DS_MSKOR_B32>; 1276def DS_WRITE_B32_vi : DS_Real_vi<0xd, DS_WRITE_B32>; 1277def DS_WRITE2_B32_vi : DS_Real_vi<0xe, DS_WRITE2_B32>; 1278def DS_WRITE2ST64_B32_vi : DS_Real_vi<0xf, DS_WRITE2ST64_B32>; 1279def DS_CMPST_B32_vi : DS_Real_vi<0x10, DS_CMPST_B32>; 1280def DS_CMPST_F32_vi : DS_Real_vi<0x11, DS_CMPST_F32>; 1281def DS_MIN_F32_vi : DS_Real_vi<0x12, DS_MIN_F32>; 1282def DS_MAX_F32_vi : DS_Real_vi<0x13, DS_MAX_F32>; 1283def DS_NOP_vi : DS_Real_vi<0x14, DS_NOP>; 1284def DS_ADD_F32_vi : DS_Real_vi<0x15, DS_ADD_F32>; 1285def DS_GWS_INIT_vi : DS_Real_vi<0x99, DS_GWS_INIT>; 1286def DS_GWS_SEMA_V_vi : DS_Real_vi<0x9a, DS_GWS_SEMA_V>; 1287def DS_GWS_SEMA_BR_vi : DS_Real_vi<0x9b, DS_GWS_SEMA_BR>; 1288def DS_GWS_SEMA_P_vi : DS_Real_vi<0x9c, DS_GWS_SEMA_P>; 1289def DS_GWS_BARRIER_vi : DS_Real_vi<0x9d, DS_GWS_BARRIER>; 1290def DS_WRITE_ADDTID_B32_vi : DS_Real_vi<0x1d, DS_WRITE_ADDTID_B32>; 1291def DS_WRITE_B8_vi : DS_Real_vi<0x1e, DS_WRITE_B8>; 1292def DS_WRITE_B16_vi : DS_Real_vi<0x1f, DS_WRITE_B16>; 1293def DS_ADD_RTN_U32_vi : DS_Real_vi<0x20, DS_ADD_RTN_U32>; 1294def DS_SUB_RTN_U32_vi : DS_Real_vi<0x21, DS_SUB_RTN_U32>; 1295def DS_RSUB_RTN_U32_vi : DS_Real_vi<0x22, DS_RSUB_RTN_U32>; 1296def DS_INC_RTN_U32_vi : DS_Real_vi<0x23, DS_INC_RTN_U32>; 1297def DS_DEC_RTN_U32_vi : DS_Real_vi<0x24, DS_DEC_RTN_U32>; 1298def DS_MIN_RTN_I32_vi : DS_Real_vi<0x25, DS_MIN_RTN_I32>; 1299def DS_MAX_RTN_I32_vi : DS_Real_vi<0x26, DS_MAX_RTN_I32>; 1300def DS_MIN_RTN_U32_vi : DS_Real_vi<0x27, DS_MIN_RTN_U32>; 1301def DS_MAX_RTN_U32_vi : DS_Real_vi<0x28, DS_MAX_RTN_U32>; 1302def DS_AND_RTN_B32_vi : DS_Real_vi<0x29, DS_AND_RTN_B32>; 1303def DS_OR_RTN_B32_vi : DS_Real_vi<0x2a, DS_OR_RTN_B32>; 1304def DS_XOR_RTN_B32_vi : DS_Real_vi<0x2b, DS_XOR_RTN_B32>; 1305def DS_MSKOR_RTN_B32_vi : DS_Real_vi<0x2c, DS_MSKOR_RTN_B32>; 1306def DS_WRXCHG_RTN_B32_vi : DS_Real_vi<0x2d, DS_WRXCHG_RTN_B32>; 1307def DS_WRXCHG2_RTN_B32_vi : DS_Real_vi<0x2e, DS_WRXCHG2_RTN_B32>; 1308def DS_WRXCHG2ST64_RTN_B32_vi : DS_Real_vi<0x2f, DS_WRXCHG2ST64_RTN_B32>; 1309def DS_CMPST_RTN_B32_vi : DS_Real_vi<0x30, DS_CMPST_RTN_B32>; 1310def DS_CMPST_RTN_F32_vi : DS_Real_vi<0x31, DS_CMPST_RTN_F32>; 1311def DS_MIN_RTN_F32_vi : DS_Real_vi<0x32, DS_MIN_RTN_F32>; 1312def DS_MAX_RTN_F32_vi : DS_Real_vi<0x33, DS_MAX_RTN_F32>; 1313def DS_WRAP_RTN_B32_vi : DS_Real_vi<0x34, DS_WRAP_RTN_B32>; 1314def DS_ADD_RTN_F32_vi : DS_Real_vi<0x35, DS_ADD_RTN_F32>; 1315def DS_READ_B32_vi : DS_Real_vi<0x36, DS_READ_B32>; 1316def DS_READ2_B32_vi : DS_Real_vi<0x37, DS_READ2_B32>; 1317def DS_READ2ST64_B32_vi : DS_Real_vi<0x38, DS_READ2ST64_B32>; 1318def DS_READ_I8_vi : DS_Real_vi<0x39, DS_READ_I8>; 1319def DS_READ_U8_vi : DS_Real_vi<0x3a, DS_READ_U8>; 1320def DS_READ_I16_vi : DS_Real_vi<0x3b, DS_READ_I16>; 1321def DS_READ_U16_vi : DS_Real_vi<0x3c, DS_READ_U16>; 1322def DS_READ_ADDTID_B32_vi : DS_Real_vi<0xb6, DS_READ_ADDTID_B32>; 1323def DS_CONSUME_vi : DS_Real_vi<0xbd, DS_CONSUME>; 1324def DS_APPEND_vi : DS_Real_vi<0xbe, DS_APPEND>; 1325def DS_ORDERED_COUNT_vi : DS_Real_vi<0xbf, DS_ORDERED_COUNT>; 1326def DS_SWIZZLE_B32_vi : DS_Real_vi<0x3d, DS_SWIZZLE_B32>; 1327def DS_PERMUTE_B32_vi : DS_Real_vi<0x3e, DS_PERMUTE_B32>; 1328def DS_BPERMUTE_B32_vi : DS_Real_vi<0x3f, DS_BPERMUTE_B32>; 1329 1330def DS_ADD_U64_vi : DS_Real_vi<0x40, DS_ADD_U64>; 1331def DS_SUB_U64_vi : DS_Real_vi<0x41, DS_SUB_U64>; 1332def DS_RSUB_U64_vi : DS_Real_vi<0x42, DS_RSUB_U64>; 1333def DS_INC_U64_vi : DS_Real_vi<0x43, DS_INC_U64>; 1334def DS_DEC_U64_vi : DS_Real_vi<0x44, DS_DEC_U64>; 1335def DS_MIN_I64_vi : DS_Real_vi<0x45, DS_MIN_I64>; 1336def DS_MAX_I64_vi : DS_Real_vi<0x46, DS_MAX_I64>; 1337def DS_MIN_U64_vi : DS_Real_vi<0x47, DS_MIN_U64>; 1338def DS_MAX_U64_vi : DS_Real_vi<0x48, DS_MAX_U64>; 1339def DS_AND_B64_vi : DS_Real_vi<0x49, DS_AND_B64>; 1340def DS_OR_B64_vi : DS_Real_vi<0x4a, DS_OR_B64>; 1341def DS_XOR_B64_vi : DS_Real_vi<0x4b, DS_XOR_B64>; 1342def DS_MSKOR_B64_vi : DS_Real_vi<0x4c, DS_MSKOR_B64>; 1343def DS_WRITE_B64_vi : DS_Real_vi<0x4d, DS_WRITE_B64>; 1344def DS_WRITE2_B64_vi : DS_Real_vi<0x4E, DS_WRITE2_B64>; 1345def DS_WRITE2ST64_B64_vi : DS_Real_vi<0x4f, DS_WRITE2ST64_B64>; 1346def DS_CMPST_B64_vi : DS_Real_vi<0x50, DS_CMPST_B64>; 1347def DS_CMPST_F64_vi : DS_Real_vi<0x51, DS_CMPST_F64>; 1348def DS_MIN_F64_vi : DS_Real_vi<0x52, DS_MIN_F64>; 1349def DS_MAX_F64_vi : DS_Real_vi<0x53, DS_MAX_F64>; 1350 1351def DS_WRITE_B8_D16_HI_vi : DS_Real_vi<0x54, DS_WRITE_B8_D16_HI>; 1352def DS_WRITE_B16_D16_HI_vi : DS_Real_vi<0x55, DS_WRITE_B16_D16_HI>; 1353 1354def DS_READ_U8_D16_vi : DS_Real_vi<0x56, DS_READ_U8_D16>; 1355def DS_READ_U8_D16_HI_vi : DS_Real_vi<0x57, DS_READ_U8_D16_HI>; 1356def DS_READ_I8_D16_vi : DS_Real_vi<0x58, DS_READ_I8_D16>; 1357def DS_READ_I8_D16_HI_vi : DS_Real_vi<0x59, DS_READ_I8_D16_HI>; 1358def DS_READ_U16_D16_vi : DS_Real_vi<0x5a, DS_READ_U16_D16>; 1359def DS_READ_U16_D16_HI_vi : DS_Real_vi<0x5b, DS_READ_U16_D16_HI>; 1360 1361def DS_ADD_RTN_U64_vi : DS_Real_vi<0x60, DS_ADD_RTN_U64>; 1362def DS_SUB_RTN_U64_vi : DS_Real_vi<0x61, DS_SUB_RTN_U64>; 1363def DS_RSUB_RTN_U64_vi : DS_Real_vi<0x62, DS_RSUB_RTN_U64>; 1364def DS_INC_RTN_U64_vi : DS_Real_vi<0x63, DS_INC_RTN_U64>; 1365def DS_DEC_RTN_U64_vi : DS_Real_vi<0x64, DS_DEC_RTN_U64>; 1366def DS_MIN_RTN_I64_vi : DS_Real_vi<0x65, DS_MIN_RTN_I64>; 1367def DS_MAX_RTN_I64_vi : DS_Real_vi<0x66, DS_MAX_RTN_I64>; 1368def DS_MIN_RTN_U64_vi : DS_Real_vi<0x67, DS_MIN_RTN_U64>; 1369def DS_MAX_RTN_U64_vi : DS_Real_vi<0x68, DS_MAX_RTN_U64>; 1370def DS_AND_RTN_B64_vi : DS_Real_vi<0x69, DS_AND_RTN_B64>; 1371def DS_OR_RTN_B64_vi : DS_Real_vi<0x6a, DS_OR_RTN_B64>; 1372def DS_XOR_RTN_B64_vi : DS_Real_vi<0x6b, DS_XOR_RTN_B64>; 1373def DS_MSKOR_RTN_B64_vi : DS_Real_vi<0x6c, DS_MSKOR_RTN_B64>; 1374def DS_WRXCHG_RTN_B64_vi : DS_Real_vi<0x6d, DS_WRXCHG_RTN_B64>; 1375def DS_WRXCHG2_RTN_B64_vi : DS_Real_vi<0x6e, DS_WRXCHG2_RTN_B64>; 1376def DS_WRXCHG2ST64_RTN_B64_vi : DS_Real_vi<0x6f, DS_WRXCHG2ST64_RTN_B64>; 1377def DS_CONDXCHG32_RTN_B64_vi : DS_Real_vi<0x7e, DS_CONDXCHG32_RTN_B64>; 1378def DS_GWS_SEMA_RELEASE_ALL_vi : DS_Real_vi<0x98, DS_GWS_SEMA_RELEASE_ALL>; 1379def DS_CMPST_RTN_B64_vi : DS_Real_vi<0x70, DS_CMPST_RTN_B64>; 1380def DS_CMPST_RTN_F64_vi : DS_Real_vi<0x71, DS_CMPST_RTN_F64>; 1381def DS_MIN_RTN_F64_vi : DS_Real_vi<0x72, DS_MIN_RTN_F64>; 1382def DS_MAX_RTN_F64_vi : DS_Real_vi<0x73, DS_MAX_RTN_F64>; 1383 1384def DS_READ_B64_vi : DS_Real_vi<0x76, DS_READ_B64>; 1385def DS_READ2_B64_vi : DS_Real_vi<0x77, DS_READ2_B64>; 1386def DS_READ2ST64_B64_vi : DS_Real_vi<0x78, DS_READ2ST64_B64>; 1387 1388def DS_ADD_SRC2_U32_vi : DS_Real_vi<0x80, DS_ADD_SRC2_U32>; 1389def DS_SUB_SRC2_U32_vi : DS_Real_vi<0x81, DS_SUB_SRC2_U32>; 1390def DS_RSUB_SRC2_U32_vi : DS_Real_vi<0x82, DS_RSUB_SRC2_U32>; 1391def DS_INC_SRC2_U32_vi : DS_Real_vi<0x83, DS_INC_SRC2_U32>; 1392def DS_DEC_SRC2_U32_vi : DS_Real_vi<0x84, DS_DEC_SRC2_U32>; 1393def DS_MIN_SRC2_I32_vi : DS_Real_vi<0x85, DS_MIN_SRC2_I32>; 1394def DS_MAX_SRC2_I32_vi : DS_Real_vi<0x86, DS_MAX_SRC2_I32>; 1395def DS_MIN_SRC2_U32_vi : DS_Real_vi<0x87, DS_MIN_SRC2_U32>; 1396def DS_MAX_SRC2_U32_vi : DS_Real_vi<0x88, DS_MAX_SRC2_U32>; 1397def DS_AND_SRC2_B32_vi : DS_Real_vi<0x89, DS_AND_SRC2_B32>; 1398def DS_OR_SRC2_B32_vi : DS_Real_vi<0x8a, DS_OR_SRC2_B32>; 1399def DS_XOR_SRC2_B32_vi : DS_Real_vi<0x8b, DS_XOR_SRC2_B32>; 1400def DS_WRITE_SRC2_B32_vi : DS_Real_vi<0x8d, DS_WRITE_SRC2_B32>; 1401def DS_MIN_SRC2_F32_vi : DS_Real_vi<0x92, DS_MIN_SRC2_F32>; 1402def DS_MAX_SRC2_F32_vi : DS_Real_vi<0x93, DS_MAX_SRC2_F32>; 1403def DS_ADD_SRC2_F32_vi : DS_Real_vi<0x95, DS_ADD_SRC2_F32>; 1404def DS_ADD_SRC2_U64_vi : DS_Real_vi<0xc0, DS_ADD_SRC2_U64>; 1405def DS_SUB_SRC2_U64_vi : DS_Real_vi<0xc1, DS_SUB_SRC2_U64>; 1406def DS_RSUB_SRC2_U64_vi : DS_Real_vi<0xc2, DS_RSUB_SRC2_U64>; 1407def DS_INC_SRC2_U64_vi : DS_Real_vi<0xc3, DS_INC_SRC2_U64>; 1408def DS_DEC_SRC2_U64_vi : DS_Real_vi<0xc4, DS_DEC_SRC2_U64>; 1409def DS_MIN_SRC2_I64_vi : DS_Real_vi<0xc5, DS_MIN_SRC2_I64>; 1410def DS_MAX_SRC2_I64_vi : DS_Real_vi<0xc6, DS_MAX_SRC2_I64>; 1411def DS_MIN_SRC2_U64_vi : DS_Real_vi<0xc7, DS_MIN_SRC2_U64>; 1412def DS_MAX_SRC2_U64_vi : DS_Real_vi<0xc8, DS_MAX_SRC2_U64>; 1413def DS_AND_SRC2_B64_vi : DS_Real_vi<0xc9, DS_AND_SRC2_B64>; 1414def DS_OR_SRC2_B64_vi : DS_Real_vi<0xca, DS_OR_SRC2_B64>; 1415def DS_XOR_SRC2_B64_vi : DS_Real_vi<0xcb, DS_XOR_SRC2_B64>; 1416def DS_WRITE_SRC2_B64_vi : DS_Real_vi<0xcd, DS_WRITE_SRC2_B64>; 1417def DS_MIN_SRC2_F64_vi : DS_Real_vi<0xd2, DS_MIN_SRC2_F64>; 1418def DS_MAX_SRC2_F64_vi : DS_Real_vi<0xd3, DS_MAX_SRC2_F64>; 1419def DS_WRITE_B96_vi : DS_Real_vi<0xde, DS_WRITE_B96>; 1420def DS_WRITE_B128_vi : DS_Real_vi<0xdf, DS_WRITE_B128>; 1421def DS_READ_B96_vi : DS_Real_vi<0xfe, DS_READ_B96>; 1422def DS_READ_B128_vi : DS_Real_vi<0xff, DS_READ_B128>; 1423 1424let SubtargetPredicate = isGFX90APlus in { 1425 def DS_ADD_F64_vi : DS_Real_vi<0x5c, DS_ADD_F64>; 1426 def DS_ADD_RTN_F64_vi : DS_Real_vi<0x7c, DS_ADD_RTN_F64>; 1427} // End SubtargetPredicate = isGFX90APlus 1428 1429let SubtargetPredicate = isGFX940Plus in { 1430 def DS_PK_ADD_F16_vi : DS_Real_vi<0x17, DS_PK_ADD_F16>; 1431 def DS_PK_ADD_RTN_F16_vi : DS_Real_vi<0xb7, DS_PK_ADD_RTN_F16>; 1432 def DS_PK_ADD_BF16_vi : DS_Real_vi<0x18, DS_PK_ADD_BF16>; 1433 def DS_PK_ADD_RTN_BF16_vi : DS_Real_vi<0xb8, DS_PK_ADD_RTN_BF16>; 1434} // End SubtargetPredicate = isGFX940Plus 1435