1//===-- VOP1Instructions.td - Vector 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 9//===----------------------------------------------------------------------===// 10// VOP1 Classes 11//===----------------------------------------------------------------------===// 12 13class VOP1e <bits<8> op, VOPProfile P> : Enc32 { 14 bits<8> vdst; 15 bits<9> src0; 16 17 let Inst{8-0} = !if(P.HasSrc0, src0{8-0}, ?); 18 let Inst{16-9} = op; 19 let Inst{24-17} = !if(P.EmitDst, vdst{7-0}, 0); 20 let Inst{31-25} = 0x3f; //encoding 21} 22 23class VOP1_SDWAe <bits<8> op, VOPProfile P> : VOP_SDWAe <P> { 24 bits<8> vdst; 25 26 let Inst{8-0} = 0xf9; // sdwa 27 let Inst{16-9} = op; 28 let Inst{24-17} = !if(P.EmitDst, vdst{7-0}, 0); 29 let Inst{31-25} = 0x3f; // encoding 30} 31 32class VOP1_SDWA9Ae <bits<8> op, VOPProfile P> : VOP_SDWA9Ae <P> { 33 bits<8> vdst; 34 35 let Inst{8-0} = 0xf9; // sdwa 36 let Inst{16-9} = op; 37 let Inst{24-17} = !if(P.EmitDst, vdst{7-0}, 0); 38 let Inst{31-25} = 0x3f; // encoding 39} 40 41class VOP1_Pseudo <string opName, VOPProfile P, list<dag> pattern=[], bit VOP1Only = 0> : 42 VOP_Pseudo <opName, !if(VOP1Only, "", "_e32"), P, P.Outs32, P.Ins32, "", pattern> { 43 44 let AsmOperands = P.Asm32; 45 46 let Size = 4; 47 let mayLoad = 0; 48 let mayStore = 0; 49 let hasSideEffects = 0; 50 51 let ReadsModeReg = !or(isFloatType<P.DstVT>.ret, isFloatType<P.Src0VT>.ret); 52 53 let mayRaiseFPException = ReadsModeReg; 54 55 let VOP1 = 1; 56 let VALU = 1; 57 let Uses = !if(ReadsModeReg, [MODE, EXEC], [EXEC]); 58 59 let AsmVariantName = AMDGPUAsmVariants.Default; 60} 61 62class VOP1_Real <VOP1_Pseudo ps, int EncodingFamily> : 63 VOP_Real <ps>, 64 InstSI <ps.OutOperandList, ps.InOperandList, ps.Mnemonic # ps.AsmOperands, []>, 65 SIMCInstr <ps.PseudoInstr, EncodingFamily> { 66 67 let isPseudo = 0; 68 let isCodeGenOnly = 0; 69 70 let Constraints = ps.Constraints; 71 let DisableEncoding = ps.DisableEncoding; 72 73 // copy relevant pseudo op flags 74 let SubtargetPredicate = ps.SubtargetPredicate; 75 let AsmMatchConverter = ps.AsmMatchConverter; 76 let AsmVariantName = ps.AsmVariantName; 77 let Constraints = ps.Constraints; 78 let DisableEncoding = ps.DisableEncoding; 79 let TSFlags = ps.TSFlags; 80 let UseNamedOperandTable = ps.UseNamedOperandTable; 81 let Uses = ps.Uses; 82 let Defs = ps.Defs; 83 let SchedRW = ps.SchedRW; 84} 85 86class VOP1_SDWA_Pseudo <string OpName, VOPProfile P, list<dag> pattern=[]> : 87 VOP_SDWA_Pseudo <OpName, P, pattern> { 88 let AsmMatchConverter = "cvtSdwaVOP1"; 89} 90 91class VOP1_DPP_Pseudo <string OpName, VOPProfile P, list<dag> pattern=[]> : 92 VOP_DPP_Pseudo <OpName, P, pattern> { 93} 94 95class getVOP1Pat64 <SDPatternOperator node, VOPProfile P> : LetDummies { 96 list<dag> ret = 97 !if(P.HasModifiers, 98 [(set P.DstVT:$vdst, (node (P.Src0VT (VOP3Mods P.Src0VT:$src0, i32:$src0_modifiers))))], 99 !if(P.HasOMod, 100 [(set P.DstVT:$vdst, (node (P.Src0VT (VOP3OMods P.Src0VT:$src0, 101 i1:$clamp, i32:$omod))))], 102 [(set P.DstVT:$vdst, (node P.Src0VT:$src0))] 103 ) 104 ); 105} 106 107multiclass VOP1Inst <string opName, VOPProfile P, 108 SDPatternOperator node = null_frag> { 109 // We only want to set this on the basic, non-SDWA or DPP forms. 110 defvar should_mov_imm = !eq(opName, "v_mov_b32"); 111 112 let isMoveImm = should_mov_imm in { 113 def _e32 : VOP1_Pseudo <opName, P>; 114 def _e64 : VOP3_Pseudo <opName, P, getVOP1Pat64<node, P>.ret>; 115 } 116 117 foreach _ = BoolToList<P.HasExtSDWA>.ret in 118 def _sdwa : VOP1_SDWA_Pseudo <opName, P>; 119 120 foreach _ = BoolToList<P.HasExtDPP>.ret in 121 def _dpp : VOP1_DPP_Pseudo <opName, P>; 122 123 def : MnemonicAlias<opName#"_e32", opName>, LetDummies; 124 def : MnemonicAlias<opName#"_e64", opName>, LetDummies; 125 126 foreach _ = BoolToList<P.HasExtSDWA>.ret in 127 def : MnemonicAlias<opName#"_sdwa", opName>, LetDummies; 128 129 foreach _ = BoolToList<P.HasExtDPP>.ret in 130 def : MnemonicAlias<opName#"_dpp", opName>, LetDummies; 131} 132 133// Special profile for instructions which have clamp 134// and output modifiers (but have no input modifiers) 135class VOPProfileI2F<ValueType dstVt, ValueType srcVt> : 136 VOPProfile<[dstVt, srcVt, untyped, untyped]> { 137 138 let Ins64 = (ins Src0RC64:$src0, clampmod:$clamp, omod:$omod); 139 let Asm64 = "$vdst, $src0$clamp$omod"; 140 141 let HasModifiers = 0; 142 let HasClamp = 1; 143} 144 145def VOP1_F64_I32 : VOPProfileI2F <f64, i32>; 146def VOP1_F32_I32 : VOPProfileI2F <f32, i32>; 147def VOP1_F16_I16 : VOPProfileI2F <f16, i16>; 148 149class VOP_SPECIAL_OMOD_PROF<ValueType dstVt, ValueType srcVt> : 150 VOPProfile<[dstVt, srcVt, untyped, untyped]> { 151 152 let HasOMod = 1; 153} 154def VOP_I32_F32_SPECIAL_OMOD : VOP_SPECIAL_OMOD_PROF<i32, f32>; 155def VOP_I32_F64_SPECIAL_OMOD : VOP_SPECIAL_OMOD_PROF<i32, f64>; 156def VOP_I16_F16_SPECIAL_OMOD : VOP_SPECIAL_OMOD_PROF<i16, f16>; 157 158//===----------------------------------------------------------------------===// 159// VOP1 Instructions 160//===----------------------------------------------------------------------===// 161 162let VOPAsmPrefer32Bit = 1 in { 163defm V_NOP : VOP1Inst <"v_nop", VOP_NONE>; 164} 165 166let isReMaterializable = 1, isAsCheapAsAMove = 1 in { 167defm V_MOV_B32 : VOP1Inst <"v_mov_b32", VOP_I32_I32>; 168} // End isMoveImm = 1 169 170// FIXME: Specify SchedRW for READFIRSTLANE_B32 171// TODO: Make profile for this, there is VOP3 encoding also 172def V_READFIRSTLANE_B32 : 173 InstSI <(outs SReg_32:$vdst), 174 (ins VRegOrLds_32:$src0), 175 "v_readfirstlane_b32 $vdst, $src0", 176 [(set i32:$vdst, (int_amdgcn_readfirstlane (i32 VRegOrLds_32:$src0)))]>, 177 Enc32 { 178 179 let isCodeGenOnly = 0; 180 let UseNamedOperandTable = 1; 181 182 let Size = 4; 183 let mayLoad = 0; 184 let mayStore = 0; 185 let hasSideEffects = 0; 186 187 let VOP1 = 1; 188 let VALU = 1; 189 let Uses = [EXEC]; 190 let isConvergent = 1; 191 192 bits<8> vdst; 193 bits<9> src0; 194 195 let Inst{8-0} = src0; 196 let Inst{16-9} = 0x2; 197 let Inst{24-17} = vdst; 198 let Inst{31-25} = 0x3f; //encoding 199} 200 201let SchedRW = [WriteDoubleCvt] in { 202// OMod clears exceptions when set in this instruction 203defm V_CVT_I32_F64 : VOP1Inst <"v_cvt_i32_f64", VOP_I32_F64_SPECIAL_OMOD, fp_to_sint>; 204 205let mayRaiseFPException = 0 in { 206defm V_CVT_F64_I32 : VOP1Inst <"v_cvt_f64_i32", VOP1_F64_I32, sint_to_fp>; 207} 208 209defm V_CVT_F32_F64 : VOP1Inst <"v_cvt_f32_f64", VOP_F32_F64, fpround>; 210defm V_CVT_F64_F32 : VOP1Inst <"v_cvt_f64_f32", VOP_F64_F32, fpextend>; 211// OMod clears exceptions when set in this instruction 212defm V_CVT_U32_F64 : VOP1Inst <"v_cvt_u32_f64", VOP_I32_F64_SPECIAL_OMOD, fp_to_uint>; 213 214let mayRaiseFPException = 0 in { 215defm V_CVT_F64_U32 : VOP1Inst <"v_cvt_f64_u32", VOP1_F64_I32, uint_to_fp>; 216} 217 218} // End SchedRW = [WriteDoubleCvt] 219 220let SchedRW = [WriteFloatCvt] in { 221 222// XXX: Does this really not raise exceptions? The manual claims the 223// 16-bit ones can. 224let mayRaiseFPException = 0 in { 225defm V_CVT_F32_I32 : VOP1Inst <"v_cvt_f32_i32", VOP1_F32_I32, sint_to_fp>; 226defm V_CVT_F32_U32 : VOP1Inst <"v_cvt_f32_u32", VOP1_F32_I32, uint_to_fp>; 227} 228 229// OMod clears exceptions when set in these 2 instructions 230defm V_CVT_U32_F32 : VOP1Inst <"v_cvt_u32_f32", VOP_I32_F32_SPECIAL_OMOD, fp_to_uint>; 231defm V_CVT_I32_F32 : VOP1Inst <"v_cvt_i32_f32", VOP_I32_F32_SPECIAL_OMOD, fp_to_sint>; 232let FPDPRounding = 1 in { 233defm V_CVT_F16_F32 : VOP1Inst <"v_cvt_f16_f32", VOP_F16_F32, fpround>; 234} // End FPDPRounding = 1 235 236defm V_CVT_F32_F16 : VOP1Inst <"v_cvt_f32_f16", VOP_F32_F16, fpextend>; 237 238let ReadsModeReg = 0, mayRaiseFPException = 0 in { 239defm V_CVT_RPI_I32_F32 : VOP1Inst <"v_cvt_rpi_i32_f32", VOP_I32_F32, cvt_rpi_i32_f32>; 240defm V_CVT_FLR_I32_F32 : VOP1Inst <"v_cvt_flr_i32_f32", VOP_I32_F32, cvt_flr_i32_f32>; 241defm V_CVT_OFF_F32_I4 : VOP1Inst <"v_cvt_off_f32_i4", VOP1_F32_I32>; 242} // End ReadsModeReg = 0, mayRaiseFPException = 0 243} // End SchedRW = [WriteFloatCvt] 244 245let ReadsModeReg = 0, mayRaiseFPException = 0 in { 246defm V_CVT_F32_UBYTE0 : VOP1Inst <"v_cvt_f32_ubyte0", VOP1_F32_I32, AMDGPUcvt_f32_ubyte0>; 247defm V_CVT_F32_UBYTE1 : VOP1Inst <"v_cvt_f32_ubyte1", VOP1_F32_I32, AMDGPUcvt_f32_ubyte1>; 248defm V_CVT_F32_UBYTE2 : VOP1Inst <"v_cvt_f32_ubyte2", VOP1_F32_I32, AMDGPUcvt_f32_ubyte2>; 249defm V_CVT_F32_UBYTE3 : VOP1Inst <"v_cvt_f32_ubyte3", VOP1_F32_I32, AMDGPUcvt_f32_ubyte3>; 250} // ReadsModeReg = 0, mayRaiseFPException = 0 251 252defm V_FRACT_F32 : VOP1Inst <"v_fract_f32", VOP_F32_F32, AMDGPUfract>; 253defm V_TRUNC_F32 : VOP1Inst <"v_trunc_f32", VOP_F32_F32, ftrunc>; 254defm V_CEIL_F32 : VOP1Inst <"v_ceil_f32", VOP_F32_F32, fceil>; 255defm V_RNDNE_F32 : VOP1Inst <"v_rndne_f32", VOP_F32_F32, frint>; 256defm V_FLOOR_F32 : VOP1Inst <"v_floor_f32", VOP_F32_F32, ffloor>; 257 258let TRANS = 1, SchedRW = [WriteTrans32] in { 259defm V_EXP_F32 : VOP1Inst <"v_exp_f32", VOP_F32_F32, fexp2>; 260defm V_LOG_F32 : VOP1Inst <"v_log_f32", VOP_F32_F32, flog2>; 261defm V_RCP_F32 : VOP1Inst <"v_rcp_f32", VOP_F32_F32, AMDGPUrcp>; 262defm V_RCP_IFLAG_F32 : VOP1Inst <"v_rcp_iflag_f32", VOP_F32_F32, AMDGPUrcp_iflag>; 263defm V_RSQ_F32 : VOP1Inst <"v_rsq_f32", VOP_F32_F32, AMDGPUrsq>; 264defm V_SQRT_F32 : VOP1Inst <"v_sqrt_f32", VOP_F32_F32, any_amdgcn_sqrt>; 265} // End TRANS = 1, SchedRW = [WriteTrans32] 266 267let TRANS = 1, SchedRW = [WriteTrans64] in { 268defm V_RCP_F64 : VOP1Inst <"v_rcp_f64", VOP_F64_F64, AMDGPUrcp>; 269defm V_RSQ_F64 : VOP1Inst <"v_rsq_f64", VOP_F64_F64, AMDGPUrsq>; 270defm V_SQRT_F64 : VOP1Inst <"v_sqrt_f64", VOP_F64_F64, any_amdgcn_sqrt>; 271} // End TRANS = 1, SchedRW = [WriteTrans64] 272 273let TRANS = 1, SchedRW = [WriteTrans32] in { 274defm V_SIN_F32 : VOP1Inst <"v_sin_f32", VOP_F32_F32, AMDGPUsin>; 275defm V_COS_F32 : VOP1Inst <"v_cos_f32", VOP_F32_F32, AMDGPUcos>; 276} // End TRANS = 1, SchedRW = [WriteTrans32] 277 278defm V_NOT_B32 : VOP1Inst <"v_not_b32", VOP_I32_I32>; 279defm V_BFREV_B32 : VOP1Inst <"v_bfrev_b32", VOP_I32_I32, bitreverse>; 280defm V_FFBH_U32 : VOP1Inst <"v_ffbh_u32", VOP_I32_I32, AMDGPUffbh_u32>; 281defm V_FFBL_B32 : VOP1Inst <"v_ffbl_b32", VOP_I32_I32, AMDGPUffbl_b32>; 282defm V_FFBH_I32 : VOP1Inst <"v_ffbh_i32", VOP_I32_I32, AMDGPUffbh_i32>; 283 284let SchedRW = [WriteDoubleAdd] in { 285defm V_FREXP_EXP_I32_F64 : VOP1Inst <"v_frexp_exp_i32_f64", VOP_I32_F64_SPECIAL_OMOD, int_amdgcn_frexp_exp>; 286defm V_FREXP_MANT_F64 : VOP1Inst <"v_frexp_mant_f64", VOP_F64_F64, int_amdgcn_frexp_mant>; 287let FPDPRounding = 1 in { 288defm V_FRACT_F64 : VOP1Inst <"v_fract_f64", VOP_F64_F64, AMDGPUfract>; 289} // End FPDPRounding = 1 290} // End SchedRW = [WriteDoubleAdd] 291 292defm V_FREXP_EXP_I32_F32 : VOP1Inst <"v_frexp_exp_i32_f32", VOP_I32_F32, int_amdgcn_frexp_exp>; 293defm V_FREXP_MANT_F32 : VOP1Inst <"v_frexp_mant_f32", VOP_F32_F32, int_amdgcn_frexp_mant>; 294 295let VOPAsmPrefer32Bit = 1 in { 296defm V_CLREXCP : VOP1Inst <"v_clrexcp", VOP_NO_EXT<VOP_NONE>>; 297} 298 299// Restrict src0 to be VGPR 300def VOP_MOVRELS : VOPProfile<[i32, i32, untyped, untyped]> { 301 let Src0RC32 = VRegSrc_32; 302 let Src0RC64 = VRegSrc_32; 303} 304 305// Special case because there are no true output operands. Hack vdst 306// to be a src operand. The custom inserter must add a tied implicit 307// def and use of the super register since there seems to be no way to 308// add an implicit def of a virtual register in tablegen. 309class VOP_MOVREL<RegisterOperand Src1RC> : VOPProfile<[untyped, i32, untyped, untyped]> { 310 let Src0RC32 = VOPDstOperand<VGPR_32>; 311 let Src0RC64 = VOPDstOperand<VGPR_32>; 312 313 let Outs = (outs); 314 let Ins32 = (ins Src0RC32:$vdst, Src1RC:$src0); 315 let Ins64 = (ins Src0RC64:$vdst, Src1RC:$src0); 316 let Asm32 = getAsm32<1, 1>.ret; 317 let Asm64 = getAsm64<1, 1, 0, 0, 1>.ret; 318 319 let OutsSDWA = (outs Src0RC32:$vdst); 320 let InsSDWA = (ins Src0ModSDWA:$src0_modifiers, Src0SDWA:$src0, 321 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused, 322 src0_sel:$src0_sel); 323 let AsmSDWA9 = getAsmSDWA9<1, 0, 1>.ret; 324 325 let OutsDPP = (outs Src0RC32:$vdst); 326 let InsDPP16 = (ins Src0RC32:$old, Src0RC32:$src0, 327 dpp_ctrl:$dpp_ctrl, row_mask:$row_mask, 328 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl, FI:$fi); 329 let AsmDPP16 = getAsmDPP16<1, 1, 0>.ret; 330 331 let OutsDPP8 = (outs Src0RC32:$vdst); 332 let InsDPP8 = (ins Src0RC32:$old, Src0RC32:$src0, dpp8:$dpp8, FI:$fi); 333 let AsmDPP8 = getAsmDPP8<1, 1, 0>.ret; 334 335 let HasDst = 0; 336 let EmitDst = 1; // force vdst emission 337} 338 339def VOP_MOVRELD : VOP_MOVREL<VSrc_b32>; 340def VOP_MOVRELSD : VOP_MOVREL<VRegSrc_32>; 341 342let SubtargetPredicate = HasMovrel, Uses = [M0, EXEC] in { 343 // v_movreld_b32 is a special case because the destination output 344 // register is really a source. It isn't actually read (but may be 345 // written), and is only to provide the base register to start 346 // indexing from. Tablegen seems to not let you define an implicit 347 // virtual register output for the super register being written into, 348 // so this must have an implicit def of the register added to it. 349defm V_MOVRELD_B32 : VOP1Inst <"v_movreld_b32", VOP_MOVRELD>; 350defm V_MOVRELS_B32 : VOP1Inst <"v_movrels_b32", VOP_MOVRELS>; 351defm V_MOVRELSD_B32 : VOP1Inst <"v_movrelsd_b32", VOP_MOVRELSD>; 352} // End Uses = [M0, EXEC] 353 354let SubtargetPredicate = isGFX6GFX7 in { 355 let TRANS = 1, SchedRW = [WriteTrans32] in { 356 defm V_LOG_CLAMP_F32 : 357 VOP1Inst<"v_log_clamp_f32", VOP_F32_F32, int_amdgcn_log_clamp>; 358 defm V_RCP_CLAMP_F32 : 359 VOP1Inst<"v_rcp_clamp_f32", VOP_F32_F32>; 360 defm V_RCP_LEGACY_F32 : 361 VOP1Inst<"v_rcp_legacy_f32", VOP_F32_F32, AMDGPUrcp_legacy>; 362 defm V_RSQ_CLAMP_F32 : 363 VOP1Inst<"v_rsq_clamp_f32", VOP_F32_F32, AMDGPUrsq_clamp>; 364 defm V_RSQ_LEGACY_F32 : 365 VOP1Inst<"v_rsq_legacy_f32", VOP_F32_F32, int_amdgcn_rsq_legacy>; 366 } // End TRANS = 1, SchedRW = [WriteTrans32] 367 368 let SchedRW = [WriteTrans64] in { 369 defm V_RCP_CLAMP_F64 : 370 VOP1Inst<"v_rcp_clamp_f64", VOP_F64_F64>; 371 defm V_RSQ_CLAMP_F64 : 372 VOP1Inst<"v_rsq_clamp_f64", VOP_F64_F64, AMDGPUrsq_clamp>; 373 } // End SchedRW = [WriteTrans64] 374} // End SubtargetPredicate = isGFX6GFX7 375 376let SubtargetPredicate = isGFX7GFX8GFX9 in { 377 let TRANS = 1, SchedRW = [WriteTrans32] in { 378 defm V_LOG_LEGACY_F32 : VOP1Inst<"v_log_legacy_f32", VOP_F32_F32>; 379 defm V_EXP_LEGACY_F32 : VOP1Inst<"v_exp_legacy_f32", VOP_F32_F32>; 380 } // End TRANS = 1, SchedRW = [WriteTrans32] 381} // End SubtargetPredicate = isGFX7GFX8GFX9 382 383let SubtargetPredicate = isGFX7Plus in { 384 let SchedRW = [WriteDoubleAdd] in { 385 defm V_TRUNC_F64 : VOP1Inst<"v_trunc_f64", VOP_F64_F64, ftrunc>; 386 defm V_CEIL_F64 : VOP1Inst<"v_ceil_f64", VOP_F64_F64, fceil>; 387 defm V_RNDNE_F64 : VOP1Inst<"v_rndne_f64", VOP_F64_F64, frint>; 388 defm V_FLOOR_F64 : VOP1Inst<"v_floor_f64", VOP_F64_F64, ffloor>; 389 } // End SchedRW = [WriteDoubleAdd] 390} // End SubtargetPredicate = isGFX7Plus 391 392let SubtargetPredicate = Has16BitInsts in { 393 394let FPDPRounding = 1 in { 395defm V_CVT_F16_U16 : VOP1Inst <"v_cvt_f16_u16", VOP1_F16_I16, uint_to_fp>; 396defm V_CVT_F16_I16 : VOP1Inst <"v_cvt_f16_i16", VOP1_F16_I16, sint_to_fp>; 397} // End FPDPRounding = 1 398// OMod clears exceptions when set in these two instructions 399defm V_CVT_U16_F16 : VOP1Inst <"v_cvt_u16_f16", VOP_I16_F16_SPECIAL_OMOD, fp_to_uint>; 400defm V_CVT_I16_F16 : VOP1Inst <"v_cvt_i16_f16", VOP_I16_F16_SPECIAL_OMOD, fp_to_sint>; 401let TRANS = 1, SchedRW = [WriteTrans32] in { 402defm V_RCP_F16 : VOP1Inst <"v_rcp_f16", VOP_F16_F16, AMDGPUrcp>; 403defm V_SQRT_F16 : VOP1Inst <"v_sqrt_f16", VOP_F16_F16, any_amdgcn_sqrt>; 404defm V_RSQ_F16 : VOP1Inst <"v_rsq_f16", VOP_F16_F16, AMDGPUrsq>; 405defm V_LOG_F16 : VOP1Inst <"v_log_f16", VOP_F16_F16, flog2>; 406defm V_EXP_F16 : VOP1Inst <"v_exp_f16", VOP_F16_F16, fexp2>; 407defm V_SIN_F16 : VOP1Inst <"v_sin_f16", VOP_F16_F16, AMDGPUsin>; 408defm V_COS_F16 : VOP1Inst <"v_cos_f16", VOP_F16_F16, AMDGPUcos>; 409} // End TRANS = 1, SchedRW = [WriteTrans32] 410defm V_FREXP_MANT_F16 : VOP1Inst <"v_frexp_mant_f16", VOP_F16_F16, int_amdgcn_frexp_mant>; 411defm V_FREXP_EXP_I16_F16 : VOP1Inst <"v_frexp_exp_i16_f16", VOP_I16_F16_SPECIAL_OMOD, int_amdgcn_frexp_exp>; 412defm V_FLOOR_F16 : VOP1Inst <"v_floor_f16", VOP_F16_F16, ffloor>; 413defm V_CEIL_F16 : VOP1Inst <"v_ceil_f16", VOP_F16_F16, fceil>; 414defm V_TRUNC_F16 : VOP1Inst <"v_trunc_f16", VOP_F16_F16, ftrunc>; 415defm V_RNDNE_F16 : VOP1Inst <"v_rndne_f16", VOP_F16_F16, frint>; 416let FPDPRounding = 1 in { 417defm V_FRACT_F16 : VOP1Inst <"v_fract_f16", VOP_F16_F16, AMDGPUfract>; 418} // End FPDPRounding = 1 419 420} 421 422let OtherPredicates = [Has16BitInsts] in { 423 424def : GCNPat< 425 (f32 (f16_to_fp i16:$src)), 426 (V_CVT_F32_F16_e32 $src) 427>; 428 429def : GCNPat< 430 (i16 (AMDGPUfp_to_f16 f32:$src)), 431 (V_CVT_F16_F32_e32 $src) 432>; 433 434} 435 436def VOP_SWAP_I32 : VOPProfile<[i32, i32, i32, untyped]> { 437 let Outs32 = (outs VGPR_32:$vdst, VGPR_32:$vdst1); 438 let Ins32 = (ins VGPR_32:$src0, VGPR_32:$src1); 439 let Outs64 = Outs32; 440 let Asm32 = " $vdst, $src0"; 441 let Asm64 = ""; 442 let Ins64 = (ins); 443} 444 445let SubtargetPredicate = isGFX9Plus in { 446 def V_SWAP_B32 : VOP1_Pseudo<"v_swap_b32", VOP_SWAP_I32, [], 1> { 447 let Constraints = "$vdst = $src1, $vdst1 = $src0"; 448 let DisableEncoding = "$vdst1,$src1"; 449 let SchedRW = [Write64Bit, Write64Bit]; 450 } 451 452 defm V_SAT_PK_U8_I16 : VOP1Inst<"v_sat_pk_u8_i16", VOP_I32_I32>; 453 454 let mayRaiseFPException = 0 in { 455 defm V_CVT_NORM_I16_F16 : VOP1Inst<"v_cvt_norm_i16_f16", VOP_I16_F16_SPECIAL_OMOD>; 456 defm V_CVT_NORM_U16_F16 : VOP1Inst<"v_cvt_norm_u16_f16", VOP_I16_F16_SPECIAL_OMOD>; 457 } // End mayRaiseFPException = 0 458} // End SubtargetPredicate = isGFX9Plus 459 460let SubtargetPredicate = isGFX9Only in { 461 defm V_SCREEN_PARTITION_4SE_B32 : VOP1Inst <"v_screen_partition_4se_b32", VOP_I32_I32>; 462} // End SubtargetPredicate = isGFX9Only 463 464let SubtargetPredicate = isGFX10Plus in { 465 defm V_PIPEFLUSH : VOP1Inst<"v_pipeflush", VOP_NONE>; 466 467 let Uses = [M0] in { 468 defm V_MOVRELSD_2_B32 : 469 VOP1Inst<"v_movrelsd_2_b32", VOP_MOVRELSD>; 470 471 def V_SWAPREL_B32 : VOP1_Pseudo<"v_swaprel_b32", VOP_SWAP_I32, [], 1> { 472 let Constraints = "$vdst = $src1, $vdst1 = $src0"; 473 let DisableEncoding = "$vdst1,$src1"; 474 let SchedRW = [Write64Bit, Write64Bit]; 475 } 476 } // End Uses = [M0] 477} // End SubtargetPredicate = isGFX10Plus 478 479def VOPProfileAccMov : VOP_NO_EXT<VOP_I32_I32> { 480 let DstRC = RegisterOperand<AGPR_32>; 481 let Src0RC32 = RegisterOperand<AGPR_32>; 482 let Asm32 = " $vdst, $src0"; 483} 484 485def V_ACCVGPR_MOV_B32 : VOP1_Pseudo<"v_accvgpr_mov_b32", VOPProfileAccMov, [], 1> { 486 let SubtargetPredicate = isGFX90APlus; 487 let isReMaterializable = 1; 488 let isAsCheapAsAMove = 1; 489} 490 491//===----------------------------------------------------------------------===// 492// Target-specific instruction encodings. 493//===----------------------------------------------------------------------===// 494 495class VOP1_DPP<bits<8> op, VOP1_DPP_Pseudo ps, VOPProfile p = ps.Pfl, bit isDPP16 = 0> : 496 VOP_DPP<ps.OpName, p, isDPP16> { 497 let hasSideEffects = ps.hasSideEffects; 498 let Defs = ps.Defs; 499 let SchedRW = ps.SchedRW; 500 let Uses = ps.Uses; 501 502 bits<8> vdst; 503 let Inst{8-0} = 0xfa; 504 let Inst{16-9} = op; 505 let Inst{24-17} = !if(p.EmitDst, vdst{7-0}, 0); 506 let Inst{31-25} = 0x3f; 507} 508 509class VOP1_DPP16<bits<8> op, VOP1_DPP_Pseudo ps, VOPProfile p = ps.Pfl> : 510 VOP1_DPP<op, ps, p, 1>, 511 SIMCInstr <ps.PseudoInstr, SIEncodingFamily.GFX10> { 512 let AssemblerPredicate = HasDPP16; 513 let SubtargetPredicate = HasDPP16; 514} 515 516class VOP1_DPP8<bits<8> op, VOP1_Pseudo ps, VOPProfile p = ps.Pfl> : 517 VOP_DPP8<ps.OpName, p> { 518 let hasSideEffects = ps.hasSideEffects; 519 let Defs = ps.Defs; 520 let SchedRW = ps.SchedRW; 521 let Uses = ps.Uses; 522 523 bits<8> vdst; 524 let Inst{8-0} = fi; 525 let Inst{16-9} = op; 526 let Inst{24-17} = !if(p.EmitDst, vdst{7-0}, 0); 527 let Inst{31-25} = 0x3f; 528} 529 530//===----------------------------------------------------------------------===// 531// GFX10. 532//===----------------------------------------------------------------------===// 533 534let AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10" in { 535 multiclass VOP1Only_Real_gfx10<bits<9> op> { 536 def _gfx10 : 537 VOP1_Real<!cast<VOP1_Pseudo>(NAME), SIEncodingFamily.GFX10>, 538 VOP1e<op{7-0}, !cast<VOP1_Pseudo>(NAME).Pfl>; 539 } 540 multiclass VOP1_Real_e32_gfx10<bits<9> op> { 541 def _e32_gfx10 : 542 VOP1_Real<!cast<VOP1_Pseudo>(NAME#"_e32"), SIEncodingFamily.GFX10>, 543 VOP1e<op{7-0}, !cast<VOP1_Pseudo>(NAME#"_e32").Pfl>; 544 } 545 multiclass VOP1_Real_e64_gfx10<bits<9> op> { 546 def _e64_gfx10 : 547 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.GFX10>, 548 VOP3e_gfx10<{0, 1, 1, op{6-0}}, !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>; 549 } 550 multiclass VOP1_Real_sdwa_gfx10<bits<9> op> { 551 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtSDWA9>.ret in 552 def _sdwa_gfx10 : 553 VOP_SDWA10_Real<!cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa")>, 554 VOP1_SDWA9Ae<op{7-0}, !cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa").Pfl> { 555 let DecoderNamespace = "SDWA10"; 556 } 557 } 558 multiclass VOP1_Real_dpp_gfx10<bits<9> op> { 559 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtDPP>.ret in 560 def _dpp_gfx10 : VOP1_DPP16<op{7-0}, !cast<VOP1_DPP_Pseudo>(NAME#"_dpp")> { 561 let DecoderNamespace = "SDWA10"; 562 } 563 } 564 multiclass VOP1_Real_dpp8_gfx10<bits<9> op> { 565 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtDPP>.ret in 566 def _dpp8_gfx10 : VOP1_DPP8<op{7-0}, !cast<VOP1_Pseudo>(NAME#"_e32")> { 567 let DecoderNamespace = "DPP8"; 568 } 569 } 570} // End AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10" 571 572multiclass VOP1_Real_gfx10<bits<9> op> : 573 VOP1_Real_e32_gfx10<op>, VOP1_Real_e64_gfx10<op>, 574 VOP1_Real_sdwa_gfx10<op>, VOP1_Real_dpp_gfx10<op>, 575 VOP1_Real_dpp8_gfx10<op>; 576 577defm V_PIPEFLUSH : VOP1_Real_gfx10<0x01b>; 578defm V_MOVRELSD_2_B32 : VOP1_Real_gfx10<0x048>; 579defm V_CVT_F16_U16 : VOP1_Real_gfx10<0x050>; 580defm V_CVT_F16_I16 : VOP1_Real_gfx10<0x051>; 581defm V_CVT_U16_F16 : VOP1_Real_gfx10<0x052>; 582defm V_CVT_I16_F16 : VOP1_Real_gfx10<0x053>; 583defm V_RCP_F16 : VOP1_Real_gfx10<0x054>; 584defm V_SQRT_F16 : VOP1_Real_gfx10<0x055>; 585defm V_RSQ_F16 : VOP1_Real_gfx10<0x056>; 586defm V_LOG_F16 : VOP1_Real_gfx10<0x057>; 587defm V_EXP_F16 : VOP1_Real_gfx10<0x058>; 588defm V_FREXP_MANT_F16 : VOP1_Real_gfx10<0x059>; 589defm V_FREXP_EXP_I16_F16 : VOP1_Real_gfx10<0x05a>; 590defm V_FLOOR_F16 : VOP1_Real_gfx10<0x05b>; 591defm V_CEIL_F16 : VOP1_Real_gfx10<0x05c>; 592defm V_TRUNC_F16 : VOP1_Real_gfx10<0x05d>; 593defm V_RNDNE_F16 : VOP1_Real_gfx10<0x05e>; 594defm V_FRACT_F16 : VOP1_Real_gfx10<0x05f>; 595defm V_SIN_F16 : VOP1_Real_gfx10<0x060>; 596defm V_COS_F16 : VOP1_Real_gfx10<0x061>; 597defm V_SAT_PK_U8_I16 : VOP1_Real_gfx10<0x062>; 598defm V_CVT_NORM_I16_F16 : VOP1_Real_gfx10<0x063>; 599defm V_CVT_NORM_U16_F16 : VOP1_Real_gfx10<0x064>; 600 601defm V_SWAP_B32 : VOP1Only_Real_gfx10<0x065>; 602defm V_SWAPREL_B32 : VOP1Only_Real_gfx10<0x068>; 603 604//===----------------------------------------------------------------------===// 605// GFX7, GFX10. 606//===----------------------------------------------------------------------===// 607 608let AssemblerPredicate = isGFX7Only, DecoderNamespace = "GFX7" in { 609 multiclass VOP1_Real_e32_gfx7<bits<9> op> { 610 def _e32_gfx7 : 611 VOP1_Real<!cast<VOP1_Pseudo>(NAME#"_e32"), SIEncodingFamily.SI>, 612 VOP1e<op{7-0}, !cast<VOP1_Pseudo>(NAME#"_e32").Pfl>; 613 } 614 multiclass VOP1_Real_e64_gfx7<bits<9> op> { 615 def _e64_gfx7 : 616 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.SI>, 617 VOP3e_gfx6_gfx7<{1, 1, op{6-0}}, !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>; 618 } 619} // End AssemblerPredicate = isGFX7Only, DecoderNamespace = "GFX7" 620 621multiclass VOP1_Real_gfx7<bits<9> op> : 622 VOP1_Real_e32_gfx7<op>, VOP1_Real_e64_gfx7<op>; 623 624multiclass VOP1_Real_gfx7_gfx10<bits<9> op> : 625 VOP1_Real_gfx7<op>, VOP1_Real_gfx10<op>; 626 627defm V_LOG_LEGACY_F32 : VOP1_Real_gfx7<0x045>; 628defm V_EXP_LEGACY_F32 : VOP1_Real_gfx7<0x046>; 629 630defm V_TRUNC_F64 : VOP1_Real_gfx7_gfx10<0x017>; 631defm V_CEIL_F64 : VOP1_Real_gfx7_gfx10<0x018>; 632defm V_RNDNE_F64 : VOP1_Real_gfx7_gfx10<0x019>; 633defm V_FLOOR_F64 : VOP1_Real_gfx7_gfx10<0x01a>; 634 635//===----------------------------------------------------------------------===// 636// GFX6, GFX7, GFX10. 637//===----------------------------------------------------------------------===// 638 639let AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7" in { 640 multiclass VOP1_Real_e32_gfx6_gfx7<bits<9> op> { 641 def _e32_gfx6_gfx7 : 642 VOP1_Real<!cast<VOP1_Pseudo>(NAME#"_e32"), SIEncodingFamily.SI>, 643 VOP1e<op{7-0}, !cast<VOP1_Pseudo>(NAME#"_e32").Pfl>; 644 } 645 multiclass VOP1_Real_e64_gfx6_gfx7<bits<9> op> { 646 def _e64_gfx6_gfx7 : 647 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.SI>, 648 VOP3e_gfx6_gfx7<{1, 1, op{6-0}}, !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>; 649 } 650} // End AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7" 651 652multiclass VOP1_Real_gfx6_gfx7<bits<9> op> : 653 VOP1_Real_e32_gfx6_gfx7<op>, VOP1_Real_e64_gfx6_gfx7<op>; 654 655multiclass VOP1_Real_gfx6_gfx7_gfx10<bits<9> op> : 656 VOP1_Real_gfx6_gfx7<op>, VOP1_Real_gfx10<op>; 657 658defm V_LOG_CLAMP_F32 : VOP1_Real_gfx6_gfx7<0x026>; 659defm V_RCP_CLAMP_F32 : VOP1_Real_gfx6_gfx7<0x028>; 660defm V_RCP_LEGACY_F32 : VOP1_Real_gfx6_gfx7<0x029>; 661defm V_RSQ_CLAMP_F32 : VOP1_Real_gfx6_gfx7<0x02c>; 662defm V_RSQ_LEGACY_F32 : VOP1_Real_gfx6_gfx7<0x02d>; 663defm V_RCP_CLAMP_F64 : VOP1_Real_gfx6_gfx7<0x030>; 664defm V_RSQ_CLAMP_F64 : VOP1_Real_gfx6_gfx7<0x032>; 665 666defm V_NOP : VOP1_Real_gfx6_gfx7_gfx10<0x000>; 667defm V_MOV_B32 : VOP1_Real_gfx6_gfx7_gfx10<0x001>; 668defm V_CVT_I32_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x003>; 669defm V_CVT_F64_I32 : VOP1_Real_gfx6_gfx7_gfx10<0x004>; 670defm V_CVT_F32_I32 : VOP1_Real_gfx6_gfx7_gfx10<0x005>; 671defm V_CVT_F32_U32 : VOP1_Real_gfx6_gfx7_gfx10<0x006>; 672defm V_CVT_U32_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x007>; 673defm V_CVT_I32_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x008>; 674defm V_CVT_F16_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x00a>; 675defm V_CVT_F32_F16 : VOP1_Real_gfx6_gfx7_gfx10<0x00b>; 676defm V_CVT_RPI_I32_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x00c>; 677defm V_CVT_FLR_I32_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x00d>; 678defm V_CVT_OFF_F32_I4 : VOP1_Real_gfx6_gfx7_gfx10<0x00e>; 679defm V_CVT_F32_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x00f>; 680defm V_CVT_F64_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x010>; 681defm V_CVT_F32_UBYTE0 : VOP1_Real_gfx6_gfx7_gfx10<0x011>; 682defm V_CVT_F32_UBYTE1 : VOP1_Real_gfx6_gfx7_gfx10<0x012>; 683defm V_CVT_F32_UBYTE2 : VOP1_Real_gfx6_gfx7_gfx10<0x013>; 684defm V_CVT_F32_UBYTE3 : VOP1_Real_gfx6_gfx7_gfx10<0x014>; 685defm V_CVT_U32_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x015>; 686defm V_CVT_F64_U32 : VOP1_Real_gfx6_gfx7_gfx10<0x016>; 687defm V_FRACT_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x020>; 688defm V_TRUNC_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x021>; 689defm V_CEIL_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x022>; 690defm V_RNDNE_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x023>; 691defm V_FLOOR_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x024>; 692defm V_EXP_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x025>; 693defm V_LOG_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x027>; 694defm V_RCP_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x02a>; 695defm V_RCP_IFLAG_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x02b>; 696defm V_RSQ_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x02e>; 697defm V_RCP_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x02f>; 698defm V_RSQ_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x031>; 699defm V_SQRT_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x033>; 700defm V_SQRT_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x034>; 701defm V_SIN_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x035>; 702defm V_COS_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x036>; 703defm V_NOT_B32 : VOP1_Real_gfx6_gfx7_gfx10<0x037>; 704defm V_BFREV_B32 : VOP1_Real_gfx6_gfx7_gfx10<0x038>; 705defm V_FFBH_U32 : VOP1_Real_gfx6_gfx7_gfx10<0x039>; 706defm V_FFBL_B32 : VOP1_Real_gfx6_gfx7_gfx10<0x03a>; 707defm V_FFBH_I32 : VOP1_Real_gfx6_gfx7_gfx10<0x03b>; 708defm V_FREXP_EXP_I32_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x03c>; 709defm V_FREXP_MANT_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x03d>; 710defm V_FRACT_F64 : VOP1_Real_gfx6_gfx7_gfx10<0x03e>; 711defm V_FREXP_EXP_I32_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x03f>; 712defm V_FREXP_MANT_F32 : VOP1_Real_gfx6_gfx7_gfx10<0x040>; 713defm V_CLREXCP : VOP1_Real_gfx6_gfx7_gfx10<0x041>; 714defm V_MOVRELD_B32 : VOP1_Real_gfx6_gfx7_gfx10<0x042>; 715defm V_MOVRELS_B32 : VOP1_Real_gfx6_gfx7_gfx10<0x043>; 716defm V_MOVRELSD_B32 : VOP1_Real_gfx6_gfx7_gfx10<0x044>; 717 718//===----------------------------------------------------------------------===// 719// GFX8, GFX9 (VI). 720//===----------------------------------------------------------------------===// 721 722class VOP1_DPPe <bits<8> op, VOP1_DPP_Pseudo ps, VOPProfile P = ps.Pfl> : 723 VOP_DPPe <P> { 724 bits<8> vdst; 725 let Inst{8-0} = 0xfa; // dpp 726 let Inst{16-9} = op; 727 let Inst{24-17} = !if(P.EmitDst, vdst{7-0}, 0); 728 let Inst{31-25} = 0x3f; //encoding 729} 730 731multiclass VOP1Only_Real_vi <bits<10> op> { 732 let AssemblerPredicate = isGFX8GFX9, DecoderNamespace = "GFX8" in { 733 def _vi : 734 VOP1_Real<!cast<VOP1_Pseudo>(NAME), SIEncodingFamily.VI>, 735 VOP1e<op{7-0}, !cast<VOP1_Pseudo>(NAME).Pfl>; 736 } 737} 738 739multiclass VOP1_Real_e32e64_vi <bits<10> op> { 740 let AssemblerPredicate = isGFX8GFX9, DecoderNamespace = "GFX8" in { 741 def _e32_vi : 742 VOP1_Real<!cast<VOP1_Pseudo>(NAME#"_e32"), SIEncodingFamily.VI>, 743 VOP1e<op{7-0}, !cast<VOP1_Pseudo>(NAME#"_e32").Pfl>; 744 def _e64_vi : 745 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.VI>, 746 VOP3e_vi <!add(0x140, op), !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>; 747 } 748} 749 750multiclass VOP1_Real_vi <bits<10> op> { 751 defm NAME : VOP1_Real_e32e64_vi <op>; 752 753 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtSDWA>.ret in 754 def _sdwa_vi : 755 VOP_SDWA_Real <!cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa")>, 756 VOP1_SDWAe <op{7-0}, !cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa").Pfl>; 757 758 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtSDWA9>.ret in 759 def _sdwa_gfx9 : 760 VOP_SDWA9_Real <!cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa")>, 761 VOP1_SDWA9Ae <op{7-0}, !cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa").Pfl>; 762 763 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtDPP>.ret in 764 def _dpp_vi : 765 VOP_DPP_Real<!cast<VOP1_DPP_Pseudo>(NAME#"_dpp"), SIEncodingFamily.VI>, 766 VOP1_DPPe<op{7-0}, !cast<VOP1_DPP_Pseudo>(NAME#"_dpp")>; 767} 768 769defm V_NOP : VOP1_Real_vi <0x0>; 770defm V_MOV_B32 : VOP1_Real_vi <0x1>; 771defm V_CVT_I32_F64 : VOP1_Real_vi <0x3>; 772defm V_CVT_F64_I32 : VOP1_Real_vi <0x4>; 773defm V_CVT_F32_I32 : VOP1_Real_vi <0x5>; 774defm V_CVT_F32_U32 : VOP1_Real_vi <0x6>; 775defm V_CVT_U32_F32 : VOP1_Real_vi <0x7>; 776defm V_CVT_I32_F32 : VOP1_Real_vi <0x8>; 777defm V_CVT_F16_F32 : VOP1_Real_vi <0xa>; 778defm V_CVT_F32_F16 : VOP1_Real_vi <0xb>; 779defm V_CVT_RPI_I32_F32 : VOP1_Real_vi <0xc>; 780defm V_CVT_FLR_I32_F32 : VOP1_Real_vi <0xd>; 781defm V_CVT_OFF_F32_I4 : VOP1_Real_vi <0xe>; 782defm V_CVT_F32_F64 : VOP1_Real_vi <0xf>; 783defm V_CVT_F64_F32 : VOP1_Real_vi <0x10>; 784defm V_CVT_F32_UBYTE0 : VOP1_Real_vi <0x11>; 785defm V_CVT_F32_UBYTE1 : VOP1_Real_vi <0x12>; 786defm V_CVT_F32_UBYTE2 : VOP1_Real_vi <0x13>; 787defm V_CVT_F32_UBYTE3 : VOP1_Real_vi <0x14>; 788defm V_CVT_U32_F64 : VOP1_Real_vi <0x15>; 789defm V_CVT_F64_U32 : VOP1_Real_vi <0x16>; 790defm V_FRACT_F32 : VOP1_Real_vi <0x1b>; 791defm V_TRUNC_F32 : VOP1_Real_vi <0x1c>; 792defm V_CEIL_F32 : VOP1_Real_vi <0x1d>; 793defm V_RNDNE_F32 : VOP1_Real_vi <0x1e>; 794defm V_FLOOR_F32 : VOP1_Real_vi <0x1f>; 795defm V_EXP_F32 : VOP1_Real_vi <0x20>; 796defm V_LOG_F32 : VOP1_Real_vi <0x21>; 797defm V_RCP_F32 : VOP1_Real_vi <0x22>; 798defm V_RCP_IFLAG_F32 : VOP1_Real_vi <0x23>; 799defm V_RSQ_F32 : VOP1_Real_vi <0x24>; 800defm V_RCP_F64 : VOP1_Real_vi <0x25>; 801defm V_RSQ_F64 : VOP1_Real_vi <0x26>; 802defm V_SQRT_F32 : VOP1_Real_vi <0x27>; 803defm V_SQRT_F64 : VOP1_Real_vi <0x28>; 804defm V_SIN_F32 : VOP1_Real_vi <0x29>; 805defm V_COS_F32 : VOP1_Real_vi <0x2a>; 806defm V_NOT_B32 : VOP1_Real_vi <0x2b>; 807defm V_BFREV_B32 : VOP1_Real_vi <0x2c>; 808defm V_FFBH_U32 : VOP1_Real_vi <0x2d>; 809defm V_FFBL_B32 : VOP1_Real_vi <0x2e>; 810defm V_FFBH_I32 : VOP1_Real_vi <0x2f>; 811defm V_FREXP_EXP_I32_F64 : VOP1_Real_vi <0x30>; 812defm V_FREXP_MANT_F64 : VOP1_Real_vi <0x31>; 813defm V_FRACT_F64 : VOP1_Real_vi <0x32>; 814defm V_FREXP_EXP_I32_F32 : VOP1_Real_vi <0x33>; 815defm V_FREXP_MANT_F32 : VOP1_Real_vi <0x34>; 816defm V_CLREXCP : VOP1_Real_vi <0x35>; 817defm V_MOVRELD_B32 : VOP1_Real_e32e64_vi <0x36>; 818defm V_MOVRELS_B32 : VOP1_Real_e32e64_vi <0x37>; 819defm V_MOVRELSD_B32 : VOP1_Real_e32e64_vi <0x38>; 820defm V_TRUNC_F64 : VOP1_Real_vi <0x17>; 821defm V_CEIL_F64 : VOP1_Real_vi <0x18>; 822defm V_FLOOR_F64 : VOP1_Real_vi <0x1A>; 823defm V_RNDNE_F64 : VOP1_Real_vi <0x19>; 824defm V_LOG_LEGACY_F32 : VOP1_Real_vi <0x4c>; 825defm V_EXP_LEGACY_F32 : VOP1_Real_vi <0x4b>; 826defm V_CVT_F16_U16 : VOP1_Real_vi <0x39>; 827defm V_CVT_F16_I16 : VOP1_Real_vi <0x3a>; 828defm V_CVT_U16_F16 : VOP1_Real_vi <0x3b>; 829defm V_CVT_I16_F16 : VOP1_Real_vi <0x3c>; 830defm V_RCP_F16 : VOP1_Real_vi <0x3d>; 831defm V_SQRT_F16 : VOP1_Real_vi <0x3e>; 832defm V_RSQ_F16 : VOP1_Real_vi <0x3f>; 833defm V_LOG_F16 : VOP1_Real_vi <0x40>; 834defm V_EXP_F16 : VOP1_Real_vi <0x41>; 835defm V_FREXP_MANT_F16 : VOP1_Real_vi <0x42>; 836defm V_FREXP_EXP_I16_F16 : VOP1_Real_vi <0x43>; 837defm V_FLOOR_F16 : VOP1_Real_vi <0x44>; 838defm V_CEIL_F16 : VOP1_Real_vi <0x45>; 839defm V_TRUNC_F16 : VOP1_Real_vi <0x46>; 840defm V_RNDNE_F16 : VOP1_Real_vi <0x47>; 841defm V_FRACT_F16 : VOP1_Real_vi <0x48>; 842defm V_SIN_F16 : VOP1_Real_vi <0x49>; 843defm V_COS_F16 : VOP1_Real_vi <0x4a>; 844defm V_SWAP_B32 : VOP1Only_Real_vi <0x51>; 845 846defm V_SAT_PK_U8_I16 : VOP1_Real_vi<0x4f>; 847defm V_CVT_NORM_I16_F16 : VOP1_Real_vi<0x4d>; 848defm V_CVT_NORM_U16_F16 : VOP1_Real_vi<0x4e>; 849 850defm V_ACCVGPR_MOV_B32 : VOP1Only_Real_vi<0x52>; 851 852// Copy of v_mov_b32 with $vdst as a use operand for use with VGPR 853// indexing mode. vdst can't be treated as a def for codegen purposes, 854// and an implicit use and def of the super register should be added. 855def V_MOV_B32_indirect : VPseudoInstSI<(outs), 856 (ins getVALUDstForVT<i32>.ret:$vdst, getVOPSrc0ForVT<i32>.ret:$src0)>, 857 PseudoInstExpansion<(V_MOV_B32_e32_vi getVALUDstForVT<i32>.ret:$vdst, 858 getVOPSrc0ForVT<i32>.ret:$src0)> { 859 let VOP1 = 1; 860 let SubtargetPredicate = isGFX8GFX9; 861} 862 863let OtherPredicates = [isGFX8Plus] in { 864 865def : GCNPat < 866 (i32 (int_amdgcn_mov_dpp i32:$src, timm:$dpp_ctrl, timm:$row_mask, 867 timm:$bank_mask, timm:$bound_ctrl)), 868 (V_MOV_B32_dpp VGPR_32:$src, VGPR_32:$src, (as_i32timm $dpp_ctrl), 869 (as_i32timm $row_mask), (as_i32timm $bank_mask), 870 (as_i1timm $bound_ctrl)) 871>; 872 873def : GCNPat < 874 (i32 (int_amdgcn_update_dpp i32:$old, i32:$src, timm:$dpp_ctrl, 875 timm:$row_mask, timm:$bank_mask, 876 timm:$bound_ctrl)), 877 (V_MOV_B32_dpp VGPR_32:$old, VGPR_32:$src, (as_i32timm $dpp_ctrl), 878 (as_i32timm $row_mask), (as_i32timm $bank_mask), 879 (as_i1timm $bound_ctrl)) 880>; 881 882} // End OtherPredicates = [isGFX8Plus] 883 884let OtherPredicates = [isGFX8Plus] in { 885def : GCNPat< 886 (i32 (anyext i16:$src)), 887 (COPY $src) 888>; 889 890def : GCNPat< 891 (i64 (anyext i16:$src)), 892 (REG_SEQUENCE VReg_64, 893 (i32 (COPY $src)), sub0, 894 (V_MOV_B32_e32 (i32 0)), sub1) 895>; 896 897def : GCNPat< 898 (i16 (trunc i32:$src)), 899 (COPY $src) 900>; 901 902def : GCNPat < 903 (i16 (trunc i64:$src)), 904 (EXTRACT_SUBREG $src, sub0) 905>; 906 907} // End OtherPredicates = [isGFX8Plus] 908 909//===----------------------------------------------------------------------===// 910// GFX9 911//===----------------------------------------------------------------------===// 912 913multiclass VOP1_Real_gfx9 <bits<10> op> { 914 let AssemblerPredicate = isGFX9Only, DecoderNamespace = "GFX9" in { 915 defm NAME : VOP1_Real_e32e64_vi <op>; 916 } 917 918 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtSDWA9>.ret in 919 def _sdwa_gfx9 : 920 VOP_SDWA9_Real <!cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa")>, 921 VOP1_SDWA9Ae <op{7-0}, !cast<VOP1_SDWA_Pseudo>(NAME#"_sdwa").Pfl>; 922 923 foreach _ = BoolToList<!cast<VOP1_Pseudo>(NAME#"_e32").Pfl.HasExtDPP>.ret in 924 def _dpp_gfx9 : 925 VOP_DPP_Real<!cast<VOP1_DPP_Pseudo>(NAME#"_dpp"), SIEncodingFamily.GFX9>, 926 VOP1_DPPe<op{7-0}, !cast<VOP1_DPP_Pseudo>(NAME#"_dpp")>; 927 928} 929 930defm V_SCREEN_PARTITION_4SE_B32 : VOP1_Real_gfx9 <0x37>; 931 932//===----------------------------------------------------------------------===// 933// GFX10 934//===----------------------------------------------------------------------===// 935 936let OtherPredicates = [isGFX10Plus] in { 937def : GCNPat < 938 (i32 (int_amdgcn_mov_dpp8 i32:$src, timm:$dpp8)), 939 (V_MOV_B32_dpp8_gfx10 VGPR_32:$src, VGPR_32:$src, 940 (as_i32timm $dpp8), (i32 DPP8Mode.FI_0)) 941>; 942} // End OtherPredicates = [isGFX10Plus] 943