1 //===-- SIDefines.h - SI Helper Macros ----------------------*- C++ -*-===// 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 /// \file 8 //===----------------------------------------------------------------------===// 9 10 #include "llvm/MC/MCInstrDesc.h" 11 12 #ifndef LLVM_LIB_TARGET_AMDGPU_SIDEFINES_H 13 #define LLVM_LIB_TARGET_AMDGPU_SIDEFINES_H 14 15 namespace llvm { 16 17 namespace SIInstrFlags { 18 // This needs to be kept in sync with the field bits in InstSI. 19 enum : uint64_t { 20 // Low bits - basic encoding information. 21 SALU = 1 << 0, 22 VALU = 1 << 1, 23 24 // SALU instruction formats. 25 SOP1 = 1 << 2, 26 SOP2 = 1 << 3, 27 SOPC = 1 << 4, 28 SOPK = 1 << 5, 29 SOPP = 1 << 6, 30 31 // VALU instruction formats. 32 VOP1 = 1 << 7, 33 VOP2 = 1 << 8, 34 VOPC = 1 << 9, 35 36 // TODO: Should this be spilt into VOP3 a and b? 37 VOP3 = 1 << 10, 38 VOP3P = 1 << 12, 39 40 VINTRP = 1 << 13, 41 SDWA = 1 << 14, 42 DPP = 1 << 15, 43 TRANS = 1 << 16, 44 45 // Memory instruction formats. 46 MUBUF = 1 << 17, 47 MTBUF = 1 << 18, 48 SMRD = 1 << 19, 49 MIMG = 1 << 20, 50 EXP = 1 << 21, 51 FLAT = 1 << 22, 52 DS = 1 << 23, 53 54 // Pseudo instruction formats. 55 VGPRSpill = 1 << 24, 56 SGPRSpill = 1 << 25, 57 58 // High bits - other information. 59 VM_CNT = UINT64_C(1) << 32, 60 EXP_CNT = UINT64_C(1) << 33, 61 LGKM_CNT = UINT64_C(1) << 34, 62 63 WQM = UINT64_C(1) << 35, 64 DisableWQM = UINT64_C(1) << 36, 65 Gather4 = UINT64_C(1) << 37, 66 SOPK_ZEXT = UINT64_C(1) << 38, 67 SCALAR_STORE = UINT64_C(1) << 39, 68 FIXED_SIZE = UINT64_C(1) << 40, 69 VOPAsmPrefer32Bit = UINT64_C(1) << 41, 70 VOP3_OPSEL = UINT64_C(1) << 42, 71 maybeAtomic = UINT64_C(1) << 43, 72 renamedInGFX9 = UINT64_C(1) << 44, 73 74 // Is a clamp on FP type. 75 FPClamp = UINT64_C(1) << 45, 76 77 // Is an integer clamp 78 IntClamp = UINT64_C(1) << 46, 79 80 // Clamps lo component of register. 81 ClampLo = UINT64_C(1) << 47, 82 83 // Clamps hi component of register. 84 // ClampLo and ClampHi set for packed clamp. 85 ClampHi = UINT64_C(1) << 48, 86 87 // Is a packed VOP3P instruction. 88 IsPacked = UINT64_C(1) << 49, 89 90 // Is a D16 buffer instruction. 91 D16Buf = UINT64_C(1) << 50, 92 93 // FLAT instruction accesses FLAT_GLBL segment. 94 IsFlatGlobal = UINT64_C(1) << 51, 95 96 // Uses floating point double precision rounding mode 97 FPDPRounding = UINT64_C(1) << 52, 98 99 // Instruction is FP atomic. 100 FPAtomic = UINT64_C(1) << 53, 101 102 // Is a MFMA instruction. 103 IsMAI = UINT64_C(1) << 54, 104 105 // Is a DOT instruction. 106 IsDOT = UINT64_C(1) << 55, 107 108 // FLAT instruction accesses FLAT_SCRATCH segment. 109 IsFlatScratch = UINT64_C(1) << 56, 110 111 // Atomic without return. 112 IsAtomicNoRet = UINT64_C(1) << 57, 113 114 // Atomic with return. 115 IsAtomicRet = UINT64_C(1) << 58 116 }; 117 118 // v_cmp_class_* etc. use a 10-bit mask for what operation is checked. 119 // The result is true if any of these tests are true. 120 enum ClassFlags : unsigned { 121 S_NAN = 1 << 0, // Signaling NaN 122 Q_NAN = 1 << 1, // Quiet NaN 123 N_INFINITY = 1 << 2, // Negative infinity 124 N_NORMAL = 1 << 3, // Negative normal 125 N_SUBNORMAL = 1 << 4, // Negative subnormal 126 N_ZERO = 1 << 5, // Negative zero 127 P_ZERO = 1 << 6, // Positive zero 128 P_SUBNORMAL = 1 << 7, // Positive subnormal 129 P_NORMAL = 1 << 8, // Positive normal 130 P_INFINITY = 1 << 9 // Positive infinity 131 }; 132 } 133 134 namespace AMDGPU { 135 enum OperandType : unsigned { 136 /// Operands with register or 32-bit immediate 137 OPERAND_REG_IMM_INT32 = MCOI::OPERAND_FIRST_TARGET, 138 OPERAND_REG_IMM_INT64, 139 OPERAND_REG_IMM_INT16, 140 OPERAND_REG_IMM_FP32, 141 OPERAND_REG_IMM_FP64, 142 OPERAND_REG_IMM_FP16, 143 OPERAND_REG_IMM_V2FP16, 144 OPERAND_REG_IMM_V2INT16, 145 OPERAND_REG_IMM_V2INT32, 146 OPERAND_REG_IMM_V2FP32, 147 148 /// Operands with register or inline constant 149 OPERAND_REG_INLINE_C_INT16, 150 OPERAND_REG_INLINE_C_INT32, 151 OPERAND_REG_INLINE_C_INT64, 152 OPERAND_REG_INLINE_C_FP16, 153 OPERAND_REG_INLINE_C_FP32, 154 OPERAND_REG_INLINE_C_FP64, 155 OPERAND_REG_INLINE_C_V2INT16, 156 OPERAND_REG_INLINE_C_V2FP16, 157 OPERAND_REG_INLINE_C_V2INT32, 158 OPERAND_REG_INLINE_C_V2FP32, 159 160 /// Operands with an AccVGPR register or inline constant 161 OPERAND_REG_INLINE_AC_INT16, 162 OPERAND_REG_INLINE_AC_INT32, 163 OPERAND_REG_INLINE_AC_FP16, 164 OPERAND_REG_INLINE_AC_FP32, 165 OPERAND_REG_INLINE_AC_FP64, 166 OPERAND_REG_INLINE_AC_V2INT16, 167 OPERAND_REG_INLINE_AC_V2FP16, 168 OPERAND_REG_INLINE_AC_V2INT32, 169 OPERAND_REG_INLINE_AC_V2FP32, 170 171 OPERAND_REG_IMM_FIRST = OPERAND_REG_IMM_INT32, 172 OPERAND_REG_IMM_LAST = OPERAND_REG_IMM_V2FP32, 173 174 OPERAND_REG_INLINE_C_FIRST = OPERAND_REG_INLINE_C_INT16, 175 OPERAND_REG_INLINE_C_LAST = OPERAND_REG_INLINE_AC_V2FP32, 176 177 OPERAND_REG_INLINE_AC_FIRST = OPERAND_REG_INLINE_AC_INT16, 178 OPERAND_REG_INLINE_AC_LAST = OPERAND_REG_INLINE_AC_V2FP32, 179 180 OPERAND_SRC_FIRST = OPERAND_REG_IMM_INT32, 181 OPERAND_SRC_LAST = OPERAND_REG_INLINE_C_LAST, 182 183 // Operand for source modifiers for VOP instructions 184 OPERAND_INPUT_MODS, 185 186 // Operand for SDWA instructions 187 OPERAND_SDWA_VOPC_DST, 188 189 /// Operand with 32-bit immediate that uses the constant bus. 190 OPERAND_KIMM32, 191 OPERAND_KIMM16 192 }; 193 } 194 195 // Input operand modifiers bit-masks 196 // NEG and SEXT share same bit-mask because they can't be set simultaneously. 197 namespace SISrcMods { 198 enum : unsigned { 199 NEG = 1 << 0, // Floating-point negate modifier 200 ABS = 1 << 1, // Floating-point absolute modifier 201 SEXT = 1 << 0, // Integer sign-extend modifier 202 NEG_HI = ABS, // Floating-point negate high packed component modifier. 203 OP_SEL_0 = 1 << 2, 204 OP_SEL_1 = 1 << 3, 205 DST_OP_SEL = 1 << 3 // VOP3 dst op_sel (share mask with OP_SEL_1) 206 }; 207 } 208 209 namespace SIOutMods { 210 enum : unsigned { 211 NONE = 0, 212 MUL2 = 1, 213 MUL4 = 2, 214 DIV2 = 3 215 }; 216 } 217 218 namespace AMDGPU { 219 namespace VGPRIndexMode { 220 221 enum Id : unsigned { // id of symbolic names 222 ID_SRC0 = 0, 223 ID_SRC1, 224 ID_SRC2, 225 ID_DST, 226 227 ID_MIN = ID_SRC0, 228 ID_MAX = ID_DST 229 }; 230 231 enum EncBits : unsigned { 232 OFF = 0, 233 SRC0_ENABLE = 1 << ID_SRC0, 234 SRC1_ENABLE = 1 << ID_SRC1, 235 SRC2_ENABLE = 1 << ID_SRC2, 236 DST_ENABLE = 1 << ID_DST, 237 ENABLE_MASK = SRC0_ENABLE | SRC1_ENABLE | SRC2_ENABLE | DST_ENABLE, 238 UNDEF = 0xFFFF 239 }; 240 241 } // namespace VGPRIndexMode 242 } // namespace AMDGPU 243 244 namespace AMDGPUAsmVariants { 245 enum : unsigned { 246 DEFAULT = 0, 247 VOP3 = 1, 248 SDWA = 2, 249 SDWA9 = 3, 250 DPP = 4 251 }; 252 } 253 254 namespace AMDGPU { 255 namespace EncValues { // Encoding values of enum9/8/7 operands 256 257 enum : unsigned { 258 SGPR_MIN = 0, 259 SGPR_MAX_SI = 101, 260 SGPR_MAX_GFX10 = 105, 261 TTMP_VI_MIN = 112, 262 TTMP_VI_MAX = 123, 263 TTMP_GFX9PLUS_MIN = 108, 264 TTMP_GFX9PLUS_MAX = 123, 265 INLINE_INTEGER_C_MIN = 128, 266 INLINE_INTEGER_C_POSITIVE_MAX = 192, // 64 267 INLINE_INTEGER_C_MAX = 208, 268 INLINE_FLOATING_C_MIN = 240, 269 INLINE_FLOATING_C_MAX = 248, 270 LITERAL_CONST = 255, 271 VGPR_MIN = 256, 272 VGPR_MAX = 511 273 }; 274 275 } // namespace EncValues 276 } // namespace AMDGPU 277 278 namespace AMDGPU { 279 namespace CPol { 280 281 enum CPol { 282 GLC = 1, 283 SLC = 2, 284 DLC = 4, 285 SCC = 16, 286 ALL = GLC | SLC | DLC | SCC 287 }; 288 289 } // namespace CPol 290 291 namespace SendMsg { // Encoding of SIMM16 used in s_sendmsg* insns. 292 293 enum Id { // Message ID, width(4) [3:0]. 294 ID_UNKNOWN_ = -1, 295 ID_INTERRUPT = 1, 296 ID_GS = 2, 297 ID_GS_DONE = 3, 298 ID_SAVEWAVE = 4, // added in GFX8 299 ID_STALL_WAVE_GEN = 5, // added in GFX9 300 ID_HALT_WAVES = 6, // added in GFX9 301 ID_ORDERED_PS_DONE = 7, // added in GFX9 302 ID_EARLY_PRIM_DEALLOC = 8, // added in GFX9, removed in GFX10 303 ID_GS_ALLOC_REQ = 9, // added in GFX9 304 ID_GET_DOORBELL = 10, // added in GFX9 305 ID_GET_DDID = 11, // added in GFX10 306 ID_SYSMSG = 15, 307 ID_GAPS_LAST_, // Indicate that sequence has gaps. 308 ID_GAPS_FIRST_ = ID_INTERRUPT, 309 ID_SHIFT_ = 0, 310 ID_WIDTH_ = 4, 311 ID_MASK_ = (((1 << ID_WIDTH_) - 1) << ID_SHIFT_) 312 }; 313 314 enum Op { // Both GS and SYS operation IDs. 315 OP_UNKNOWN_ = -1, 316 OP_SHIFT_ = 4, 317 OP_NONE_ = 0, 318 // Bits used for operation encoding 319 OP_WIDTH_ = 3, 320 OP_MASK_ = (((1 << OP_WIDTH_) - 1) << OP_SHIFT_), 321 // GS operations are encoded in bits 5:4 322 OP_GS_NOP = 0, 323 OP_GS_CUT = 1, 324 OP_GS_EMIT = 2, 325 OP_GS_EMIT_CUT = 3, 326 OP_GS_LAST_, 327 OP_GS_FIRST_ = OP_GS_NOP, 328 // SYS operations are encoded in bits 6:4 329 OP_SYS_ECC_ERR_INTERRUPT = 1, 330 OP_SYS_REG_RD = 2, 331 OP_SYS_HOST_TRAP_ACK = 3, 332 OP_SYS_TTRACE_PC = 4, 333 OP_SYS_LAST_, 334 OP_SYS_FIRST_ = OP_SYS_ECC_ERR_INTERRUPT, 335 }; 336 337 enum StreamId : unsigned { // Stream ID, (2) [9:8]. 338 STREAM_ID_NONE_ = 0, 339 STREAM_ID_DEFAULT_ = 0, 340 STREAM_ID_LAST_ = 4, 341 STREAM_ID_FIRST_ = STREAM_ID_DEFAULT_, 342 STREAM_ID_SHIFT_ = 8, 343 STREAM_ID_WIDTH_= 2, 344 STREAM_ID_MASK_ = (((1 << STREAM_ID_WIDTH_) - 1) << STREAM_ID_SHIFT_) 345 }; 346 347 } // namespace SendMsg 348 349 namespace Hwreg { // Encoding of SIMM16 used in s_setreg/getreg* insns. 350 351 enum Id { // HwRegCode, (6) [5:0] 352 ID_UNKNOWN_ = -1, 353 ID_SYMBOLIC_FIRST_ = 1, // There are corresponding symbolic names defined. 354 ID_MODE = 1, 355 ID_STATUS = 2, 356 ID_TRAPSTS = 3, 357 ID_HW_ID = 4, 358 ID_GPR_ALLOC = 5, 359 ID_LDS_ALLOC = 6, 360 ID_IB_STS = 7, 361 ID_MEM_BASES = 15, 362 ID_SYMBOLIC_FIRST_GFX9_ = ID_MEM_BASES, 363 ID_TBA_LO = 16, 364 ID_SYMBOLIC_FIRST_GFX10_ = ID_TBA_LO, 365 ID_TBA_HI = 17, 366 ID_TMA_LO = 18, 367 ID_TMA_HI = 19, 368 ID_FLAT_SCR_LO = 20, 369 ID_FLAT_SCR_HI = 21, 370 ID_XNACK_MASK = 22, 371 ID_POPS_PACKER = 25, 372 ID_SHADER_CYCLES = 29, 373 ID_SYMBOLIC_FIRST_GFX1030_ = ID_SHADER_CYCLES, 374 ID_SYMBOLIC_LAST_ = 30, 375 ID_SHIFT_ = 0, 376 ID_WIDTH_ = 6, 377 ID_MASK_ = (((1 << ID_WIDTH_) - 1) << ID_SHIFT_) 378 }; 379 380 enum Offset : unsigned { // Offset, (5) [10:6] 381 OFFSET_DEFAULT_ = 0, 382 OFFSET_SHIFT_ = 6, 383 OFFSET_WIDTH_ = 5, 384 OFFSET_MASK_ = (((1 << OFFSET_WIDTH_) - 1) << OFFSET_SHIFT_), 385 386 OFFSET_MEM_VIOL = 8, 387 388 OFFSET_SRC_SHARED_BASE = 16, 389 OFFSET_SRC_PRIVATE_BASE = 0 390 }; 391 392 enum WidthMinusOne : unsigned { // WidthMinusOne, (5) [15:11] 393 WIDTH_M1_DEFAULT_ = 31, 394 WIDTH_M1_SHIFT_ = 11, 395 WIDTH_M1_WIDTH_ = 5, 396 WIDTH_M1_MASK_ = (((1 << WIDTH_M1_WIDTH_) - 1) << WIDTH_M1_SHIFT_), 397 398 WIDTH_M1_SRC_SHARED_BASE = 15, 399 WIDTH_M1_SRC_PRIVATE_BASE = 15 400 }; 401 402 // Some values from WidthMinusOne mapped into Width domain. 403 enum Width : unsigned { 404 WIDTH_DEFAULT_ = WIDTH_M1_DEFAULT_ + 1, 405 }; 406 407 enum ModeRegisterMasks : uint32_t { 408 FP_ROUND_MASK = 0xf << 0, // Bits 0..3 409 FP_DENORM_MASK = 0xf << 4, // Bits 4..7 410 DX10_CLAMP_MASK = 1 << 8, 411 IEEE_MODE_MASK = 1 << 9, 412 LOD_CLAMP_MASK = 1 << 10, 413 DEBUG_MASK = 1 << 11, 414 415 // EXCP_EN fields. 416 EXCP_EN_INVALID_MASK = 1 << 12, 417 EXCP_EN_INPUT_DENORMAL_MASK = 1 << 13, 418 EXCP_EN_FLOAT_DIV0_MASK = 1 << 14, 419 EXCP_EN_OVERFLOW_MASK = 1 << 15, 420 EXCP_EN_UNDERFLOW_MASK = 1 << 16, 421 EXCP_EN_INEXACT_MASK = 1 << 17, 422 EXCP_EN_INT_DIV0_MASK = 1 << 18, 423 424 GPR_IDX_EN_MASK = 1 << 27, 425 VSKIP_MASK = 1 << 28, 426 CSP_MASK = 0x7u << 29 // Bits 29..31 427 }; 428 429 } // namespace Hwreg 430 431 namespace MTBUFFormat { 432 433 enum DataFormat : int64_t { 434 DFMT_INVALID = 0, 435 DFMT_8, 436 DFMT_16, 437 DFMT_8_8, 438 DFMT_32, 439 DFMT_16_16, 440 DFMT_10_11_11, 441 DFMT_11_11_10, 442 DFMT_10_10_10_2, 443 DFMT_2_10_10_10, 444 DFMT_8_8_8_8, 445 DFMT_32_32, 446 DFMT_16_16_16_16, 447 DFMT_32_32_32, 448 DFMT_32_32_32_32, 449 DFMT_RESERVED_15, 450 451 DFMT_MIN = DFMT_INVALID, 452 DFMT_MAX = DFMT_RESERVED_15, 453 454 DFMT_UNDEF = -1, 455 DFMT_DEFAULT = DFMT_8, 456 457 DFMT_SHIFT = 0, 458 DFMT_MASK = 0xF 459 }; 460 461 enum NumFormat : int64_t { 462 NFMT_UNORM = 0, 463 NFMT_SNORM, 464 NFMT_USCALED, 465 NFMT_SSCALED, 466 NFMT_UINT, 467 NFMT_SINT, 468 NFMT_RESERVED_6, // VI and GFX9 469 NFMT_SNORM_OGL = NFMT_RESERVED_6, // SI and CI only 470 NFMT_FLOAT, 471 472 NFMT_MIN = NFMT_UNORM, 473 NFMT_MAX = NFMT_FLOAT, 474 475 NFMT_UNDEF = -1, 476 NFMT_DEFAULT = NFMT_UNORM, 477 478 NFMT_SHIFT = 4, 479 NFMT_MASK = 7 480 }; 481 482 enum MergedFormat : int64_t { 483 DFMT_NFMT_UNDEF = -1, 484 DFMT_NFMT_DEFAULT = ((DFMT_DEFAULT & DFMT_MASK) << DFMT_SHIFT) | 485 ((NFMT_DEFAULT & NFMT_MASK) << NFMT_SHIFT), 486 487 488 DFMT_NFMT_MASK = (DFMT_MASK << DFMT_SHIFT) | (NFMT_MASK << NFMT_SHIFT), 489 490 DFMT_NFMT_MAX = DFMT_NFMT_MASK 491 }; 492 493 enum UnifiedFormat : int64_t { 494 UFMT_INVALID = 0, 495 496 UFMT_8_UNORM, 497 UFMT_8_SNORM, 498 UFMT_8_USCALED, 499 UFMT_8_SSCALED, 500 UFMT_8_UINT, 501 UFMT_8_SINT, 502 503 UFMT_16_UNORM, 504 UFMT_16_SNORM, 505 UFMT_16_USCALED, 506 UFMT_16_SSCALED, 507 UFMT_16_UINT, 508 UFMT_16_SINT, 509 UFMT_16_FLOAT, 510 511 UFMT_8_8_UNORM, 512 UFMT_8_8_SNORM, 513 UFMT_8_8_USCALED, 514 UFMT_8_8_SSCALED, 515 UFMT_8_8_UINT, 516 UFMT_8_8_SINT, 517 518 UFMT_32_UINT, 519 UFMT_32_SINT, 520 UFMT_32_FLOAT, 521 522 UFMT_16_16_UNORM, 523 UFMT_16_16_SNORM, 524 UFMT_16_16_USCALED, 525 UFMT_16_16_SSCALED, 526 UFMT_16_16_UINT, 527 UFMT_16_16_SINT, 528 UFMT_16_16_FLOAT, 529 530 UFMT_10_11_11_UNORM, 531 UFMT_10_11_11_SNORM, 532 UFMT_10_11_11_USCALED, 533 UFMT_10_11_11_SSCALED, 534 UFMT_10_11_11_UINT, 535 UFMT_10_11_11_SINT, 536 UFMT_10_11_11_FLOAT, 537 538 UFMT_11_11_10_UNORM, 539 UFMT_11_11_10_SNORM, 540 UFMT_11_11_10_USCALED, 541 UFMT_11_11_10_SSCALED, 542 UFMT_11_11_10_UINT, 543 UFMT_11_11_10_SINT, 544 UFMT_11_11_10_FLOAT, 545 546 UFMT_10_10_10_2_UNORM, 547 UFMT_10_10_10_2_SNORM, 548 UFMT_10_10_10_2_USCALED, 549 UFMT_10_10_10_2_SSCALED, 550 UFMT_10_10_10_2_UINT, 551 UFMT_10_10_10_2_SINT, 552 553 UFMT_2_10_10_10_UNORM, 554 UFMT_2_10_10_10_SNORM, 555 UFMT_2_10_10_10_USCALED, 556 UFMT_2_10_10_10_SSCALED, 557 UFMT_2_10_10_10_UINT, 558 UFMT_2_10_10_10_SINT, 559 560 UFMT_8_8_8_8_UNORM, 561 UFMT_8_8_8_8_SNORM, 562 UFMT_8_8_8_8_USCALED, 563 UFMT_8_8_8_8_SSCALED, 564 UFMT_8_8_8_8_UINT, 565 UFMT_8_8_8_8_SINT, 566 567 UFMT_32_32_UINT, 568 UFMT_32_32_SINT, 569 UFMT_32_32_FLOAT, 570 571 UFMT_16_16_16_16_UNORM, 572 UFMT_16_16_16_16_SNORM, 573 UFMT_16_16_16_16_USCALED, 574 UFMT_16_16_16_16_SSCALED, 575 UFMT_16_16_16_16_UINT, 576 UFMT_16_16_16_16_SINT, 577 UFMT_16_16_16_16_FLOAT, 578 579 UFMT_32_32_32_UINT, 580 UFMT_32_32_32_SINT, 581 UFMT_32_32_32_FLOAT, 582 UFMT_32_32_32_32_UINT, 583 UFMT_32_32_32_32_SINT, 584 UFMT_32_32_32_32_FLOAT, 585 586 UFMT_FIRST = UFMT_INVALID, 587 UFMT_LAST = UFMT_32_32_32_32_FLOAT, 588 589 UFMT_MAX = 127, 590 591 UFMT_UNDEF = -1, 592 UFMT_DEFAULT = UFMT_8_UNORM 593 }; 594 595 } // namespace MTBUFFormat 596 597 namespace Swizzle { // Encoding of swizzle macro used in ds_swizzle_b32. 598 599 enum Id : unsigned { // id of symbolic names 600 ID_QUAD_PERM = 0, 601 ID_BITMASK_PERM, 602 ID_SWAP, 603 ID_REVERSE, 604 ID_BROADCAST 605 }; 606 607 enum EncBits : unsigned { 608 609 // swizzle mode encodings 610 611 QUAD_PERM_ENC = 0x8000, 612 QUAD_PERM_ENC_MASK = 0xFF00, 613 614 BITMASK_PERM_ENC = 0x0000, 615 BITMASK_PERM_ENC_MASK = 0x8000, 616 617 // QUAD_PERM encodings 618 619 LANE_MASK = 0x3, 620 LANE_MAX = LANE_MASK, 621 LANE_SHIFT = 2, 622 LANE_NUM = 4, 623 624 // BITMASK_PERM encodings 625 626 BITMASK_MASK = 0x1F, 627 BITMASK_MAX = BITMASK_MASK, 628 BITMASK_WIDTH = 5, 629 630 BITMASK_AND_SHIFT = 0, 631 BITMASK_OR_SHIFT = 5, 632 BITMASK_XOR_SHIFT = 10 633 }; 634 635 } // namespace Swizzle 636 637 namespace SDWA { 638 639 enum SdwaSel : unsigned { 640 BYTE_0 = 0, 641 BYTE_1 = 1, 642 BYTE_2 = 2, 643 BYTE_3 = 3, 644 WORD_0 = 4, 645 WORD_1 = 5, 646 DWORD = 6, 647 }; 648 649 enum DstUnused : unsigned { 650 UNUSED_PAD = 0, 651 UNUSED_SEXT = 1, 652 UNUSED_PRESERVE = 2, 653 }; 654 655 enum SDWA9EncValues : unsigned { 656 SRC_SGPR_MASK = 0x100, 657 SRC_VGPR_MASK = 0xFF, 658 VOPC_DST_VCC_MASK = 0x80, 659 VOPC_DST_SGPR_MASK = 0x7F, 660 661 SRC_VGPR_MIN = 0, 662 SRC_VGPR_MAX = 255, 663 SRC_SGPR_MIN = 256, 664 SRC_SGPR_MAX_SI = 357, 665 SRC_SGPR_MAX_GFX10 = 361, 666 SRC_TTMP_MIN = 364, 667 SRC_TTMP_MAX = 379, 668 }; 669 670 } // namespace SDWA 671 672 namespace DPP { 673 674 enum DppCtrl : unsigned { 675 QUAD_PERM_FIRST = 0, 676 QUAD_PERM_ID = 0xE4, // identity permutation 677 QUAD_PERM_LAST = 0xFF, 678 DPP_UNUSED1 = 0x100, 679 ROW_SHL0 = 0x100, 680 ROW_SHL_FIRST = 0x101, 681 ROW_SHL_LAST = 0x10F, 682 DPP_UNUSED2 = 0x110, 683 ROW_SHR0 = 0x110, 684 ROW_SHR_FIRST = 0x111, 685 ROW_SHR_LAST = 0x11F, 686 DPP_UNUSED3 = 0x120, 687 ROW_ROR0 = 0x120, 688 ROW_ROR_FIRST = 0x121, 689 ROW_ROR_LAST = 0x12F, 690 WAVE_SHL1 = 0x130, 691 DPP_UNUSED4_FIRST = 0x131, 692 DPP_UNUSED4_LAST = 0x133, 693 WAVE_ROL1 = 0x134, 694 DPP_UNUSED5_FIRST = 0x135, 695 DPP_UNUSED5_LAST = 0x137, 696 WAVE_SHR1 = 0x138, 697 DPP_UNUSED6_FIRST = 0x139, 698 DPP_UNUSED6_LAST = 0x13B, 699 WAVE_ROR1 = 0x13C, 700 DPP_UNUSED7_FIRST = 0x13D, 701 DPP_UNUSED7_LAST = 0x13F, 702 ROW_MIRROR = 0x140, 703 ROW_HALF_MIRROR = 0x141, 704 BCAST15 = 0x142, 705 BCAST31 = 0x143, 706 DPP_UNUSED8_FIRST = 0x144, 707 DPP_UNUSED8_LAST = 0x14F, 708 ROW_NEWBCAST_FIRST= 0x150, 709 ROW_NEWBCAST_LAST = 0x15F, 710 ROW_SHARE_FIRST = 0x150, 711 ROW_SHARE_LAST = 0x15F, 712 ROW_XMASK_FIRST = 0x160, 713 ROW_XMASK_LAST = 0x16F, 714 DPP_LAST = ROW_XMASK_LAST 715 }; 716 717 enum DppFiMode { 718 DPP_FI_0 = 0, 719 DPP_FI_1 = 1, 720 DPP8_FI_0 = 0xE9, 721 DPP8_FI_1 = 0xEA, 722 }; 723 724 } // namespace DPP 725 726 namespace Exp { 727 728 enum Target : unsigned { 729 ET_MRT0 = 0, 730 ET_MRT7 = 7, 731 ET_MRTZ = 8, 732 ET_NULL = 9, 733 ET_POS0 = 12, 734 ET_POS3 = 15, 735 ET_POS4 = 16, // GFX10+ 736 ET_POS_LAST = ET_POS4, // Highest pos used on any subtarget 737 ET_PRIM = 20, // GFX10+ 738 ET_PARAM0 = 32, 739 ET_PARAM31 = 63, 740 741 ET_NULL_MAX_IDX = 0, 742 ET_MRTZ_MAX_IDX = 0, 743 ET_PRIM_MAX_IDX = 0, 744 ET_MRT_MAX_IDX = 7, 745 ET_POS_MAX_IDX = 4, 746 ET_PARAM_MAX_IDX = 31, 747 748 ET_INVALID = 255, 749 }; 750 751 } // namespace Exp 752 753 namespace VOP3PEncoding { 754 755 enum OpSel : uint64_t { 756 OP_SEL_HI_0 = UINT64_C(1) << 59, 757 OP_SEL_HI_1 = UINT64_C(1) << 60, 758 OP_SEL_HI_2 = UINT64_C(1) << 14, 759 }; 760 761 } // namespace VOP3PEncoding 762 763 } // namespace AMDGPU 764 765 #define R_00B028_SPI_SHADER_PGM_RSRC1_PS 0x00B028 766 #define S_00B028_VGPRS(x) (((x) & 0x3F) << 0) 767 #define S_00B028_SGPRS(x) (((x) & 0x0F) << 6) 768 #define S_00B028_MEM_ORDERED(x) (((x) & 0x1) << 25) 769 #define G_00B028_MEM_ORDERED(x) (((x) >> 25) & 0x1) 770 #define C_00B028_MEM_ORDERED 0xFDFFFFFF 771 772 #define R_00B02C_SPI_SHADER_PGM_RSRC2_PS 0x00B02C 773 #define S_00B02C_EXTRA_LDS_SIZE(x) (((x) & 0xFF) << 8) 774 #define R_00B128_SPI_SHADER_PGM_RSRC1_VS 0x00B128 775 #define S_00B128_MEM_ORDERED(x) (((x) & 0x1) << 27) 776 #define G_00B128_MEM_ORDERED(x) (((x) >> 27) & 0x1) 777 #define C_00B128_MEM_ORDERED 0xF7FFFFFF 778 779 #define R_00B228_SPI_SHADER_PGM_RSRC1_GS 0x00B228 780 #define S_00B228_WGP_MODE(x) (((x) & 0x1) << 27) 781 #define G_00B228_WGP_MODE(x) (((x) >> 27) & 0x1) 782 #define C_00B228_WGP_MODE 0xF7FFFFFF 783 #define S_00B228_MEM_ORDERED(x) (((x) & 0x1) << 25) 784 #define G_00B228_MEM_ORDERED(x) (((x) >> 25) & 0x1) 785 #define C_00B228_MEM_ORDERED 0xFDFFFFFF 786 787 #define R_00B328_SPI_SHADER_PGM_RSRC1_ES 0x00B328 788 #define R_00B428_SPI_SHADER_PGM_RSRC1_HS 0x00B428 789 #define S_00B428_WGP_MODE(x) (((x) & 0x1) << 26) 790 #define G_00B428_WGP_MODE(x) (((x) >> 26) & 0x1) 791 #define C_00B428_WGP_MODE 0xFBFFFFFF 792 #define S_00B428_MEM_ORDERED(x) (((x) & 0x1) << 24) 793 #define G_00B428_MEM_ORDERED(x) (((x) >> 24) & 0x1) 794 #define C_00B428_MEM_ORDERED 0xFEFFFFFF 795 796 #define R_00B528_SPI_SHADER_PGM_RSRC1_LS 0x00B528 797 798 #define R_00B84C_COMPUTE_PGM_RSRC2 0x00B84C 799 #define S_00B84C_SCRATCH_EN(x) (((x) & 0x1) << 0) 800 #define G_00B84C_SCRATCH_EN(x) (((x) >> 0) & 0x1) 801 #define C_00B84C_SCRATCH_EN 0xFFFFFFFE 802 #define S_00B84C_USER_SGPR(x) (((x) & 0x1F) << 1) 803 #define G_00B84C_USER_SGPR(x) (((x) >> 1) & 0x1F) 804 #define C_00B84C_USER_SGPR 0xFFFFFFC1 805 #define S_00B84C_TRAP_HANDLER(x) (((x) & 0x1) << 6) 806 #define G_00B84C_TRAP_HANDLER(x) (((x) >> 6) & 0x1) 807 #define C_00B84C_TRAP_HANDLER 0xFFFFFFBF 808 #define S_00B84C_TGID_X_EN(x) (((x) & 0x1) << 7) 809 #define G_00B84C_TGID_X_EN(x) (((x) >> 7) & 0x1) 810 #define C_00B84C_TGID_X_EN 0xFFFFFF7F 811 #define S_00B84C_TGID_Y_EN(x) (((x) & 0x1) << 8) 812 #define G_00B84C_TGID_Y_EN(x) (((x) >> 8) & 0x1) 813 #define C_00B84C_TGID_Y_EN 0xFFFFFEFF 814 #define S_00B84C_TGID_Z_EN(x) (((x) & 0x1) << 9) 815 #define G_00B84C_TGID_Z_EN(x) (((x) >> 9) & 0x1) 816 #define C_00B84C_TGID_Z_EN 0xFFFFFDFF 817 #define S_00B84C_TG_SIZE_EN(x) (((x) & 0x1) << 10) 818 #define G_00B84C_TG_SIZE_EN(x) (((x) >> 10) & 0x1) 819 #define C_00B84C_TG_SIZE_EN 0xFFFFFBFF 820 #define S_00B84C_TIDIG_COMP_CNT(x) (((x) & 0x03) << 11) 821 #define G_00B84C_TIDIG_COMP_CNT(x) (((x) >> 11) & 0x03) 822 #define C_00B84C_TIDIG_COMP_CNT 0xFFFFE7FF 823 /* CIK */ 824 #define S_00B84C_EXCP_EN_MSB(x) (((x) & 0x03) << 13) 825 #define G_00B84C_EXCP_EN_MSB(x) (((x) >> 13) & 0x03) 826 #define C_00B84C_EXCP_EN_MSB 0xFFFF9FFF 827 /* */ 828 #define S_00B84C_LDS_SIZE(x) (((x) & 0x1FF) << 15) 829 #define G_00B84C_LDS_SIZE(x) (((x) >> 15) & 0x1FF) 830 #define C_00B84C_LDS_SIZE 0xFF007FFF 831 #define S_00B84C_EXCP_EN(x) (((x) & 0x7F) << 24) 832 #define G_00B84C_EXCP_EN(x) (((x) >> 24) & 0x7F) 833 #define C_00B84C_EXCP_EN 834 835 #define R_0286CC_SPI_PS_INPUT_ENA 0x0286CC 836 #define R_0286D0_SPI_PS_INPUT_ADDR 0x0286D0 837 838 #define R_00B848_COMPUTE_PGM_RSRC1 0x00B848 839 #define S_00B848_VGPRS(x) (((x) & 0x3F) << 0) 840 #define G_00B848_VGPRS(x) (((x) >> 0) & 0x3F) 841 #define C_00B848_VGPRS 0xFFFFFFC0 842 #define S_00B848_SGPRS(x) (((x) & 0x0F) << 6) 843 #define G_00B848_SGPRS(x) (((x) >> 6) & 0x0F) 844 #define C_00B848_SGPRS 0xFFFFFC3F 845 #define S_00B848_PRIORITY(x) (((x) & 0x03) << 10) 846 #define G_00B848_PRIORITY(x) (((x) >> 10) & 0x03) 847 #define C_00B848_PRIORITY 0xFFFFF3FF 848 #define S_00B848_FLOAT_MODE(x) (((x) & 0xFF) << 12) 849 #define G_00B848_FLOAT_MODE(x) (((x) >> 12) & 0xFF) 850 #define C_00B848_FLOAT_MODE 0xFFF00FFF 851 #define S_00B848_PRIV(x) (((x) & 0x1) << 20) 852 #define G_00B848_PRIV(x) (((x) >> 20) & 0x1) 853 #define C_00B848_PRIV 0xFFEFFFFF 854 #define S_00B848_DX10_CLAMP(x) (((x) & 0x1) << 21) 855 #define G_00B848_DX10_CLAMP(x) (((x) >> 21) & 0x1) 856 #define C_00B848_DX10_CLAMP 0xFFDFFFFF 857 #define S_00B848_DEBUG_MODE(x) (((x) & 0x1) << 22) 858 #define G_00B848_DEBUG_MODE(x) (((x) >> 22) & 0x1) 859 #define C_00B848_DEBUG_MODE 0xFFBFFFFF 860 #define S_00B848_IEEE_MODE(x) (((x) & 0x1) << 23) 861 #define G_00B848_IEEE_MODE(x) (((x) >> 23) & 0x1) 862 #define C_00B848_IEEE_MODE 0xFF7FFFFF 863 #define S_00B848_WGP_MODE(x) (((x) & 0x1) << 29) 864 #define G_00B848_WGP_MODE(x) (((x) >> 29) & 0x1) 865 #define C_00B848_WGP_MODE 0xDFFFFFFF 866 #define S_00B848_MEM_ORDERED(x) (((x) & 0x1) << 30) 867 #define G_00B848_MEM_ORDERED(x) (((x) >> 30) & 0x1) 868 #define C_00B848_MEM_ORDERED 0xBFFFFFFF 869 #define S_00B848_FWD_PROGRESS(x) (((x) & 0x1) << 31) 870 #define G_00B848_FWD_PROGRESS(x) (((x) >> 31) & 0x1) 871 #define C_00B848_FWD_PROGRESS 0x7FFFFFFF 872 873 874 // Helpers for setting FLOAT_MODE 875 #define FP_ROUND_ROUND_TO_NEAREST 0 876 #define FP_ROUND_ROUND_TO_INF 1 877 #define FP_ROUND_ROUND_TO_NEGINF 2 878 #define FP_ROUND_ROUND_TO_ZERO 3 879 880 // Bits 3:0 control rounding mode. 1:0 control single precision, 3:2 double 881 // precision. 882 #define FP_ROUND_MODE_SP(x) ((x) & 0x3) 883 #define FP_ROUND_MODE_DP(x) (((x) & 0x3) << 2) 884 885 #define FP_DENORM_FLUSH_IN_FLUSH_OUT 0 886 #define FP_DENORM_FLUSH_OUT 1 887 #define FP_DENORM_FLUSH_IN 2 888 #define FP_DENORM_FLUSH_NONE 3 889 890 891 // Bits 7:4 control denormal handling. 5:4 control single precision, 6:7 double 892 // precision. 893 #define FP_DENORM_MODE_SP(x) (((x) & 0x3) << 4) 894 #define FP_DENORM_MODE_DP(x) (((x) & 0x3) << 6) 895 896 #define R_00B860_COMPUTE_TMPRING_SIZE 0x00B860 897 #define S_00B860_WAVESIZE(x) (((x) & 0x1FFF) << 12) 898 899 #define R_0286E8_SPI_TMPRING_SIZE 0x0286E8 900 #define S_0286E8_WAVESIZE(x) (((x) & 0x1FFF) << 12) 901 902 #define R_028B54_VGT_SHADER_STAGES_EN 0x028B54 903 #define S_028B54_HS_W32_EN(x) (((x) & 0x1) << 21) 904 #define S_028B54_GS_W32_EN(x) (((x) & 0x1) << 22) 905 #define S_028B54_VS_W32_EN(x) (((x) & 0x1) << 23) 906 #define R_0286D8_SPI_PS_IN_CONTROL 0x0286D8 907 #define S_0286D8_PS_W32_EN(x) (((x) & 0x1) << 15) 908 #define R_00B800_COMPUTE_DISPATCH_INITIATOR 0x00B800 909 #define S_00B800_CS_W32_EN(x) (((x) & 0x1) << 15) 910 911 #define R_SPILLED_SGPRS 0x4 912 #define R_SPILLED_VGPRS 0x8 913 } // End namespace llvm 914 915 #endif 916