1//===-- SIInstrInfo.td - SI Instruction Infos -------------*- tablegen -*--===//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9def isCI : Predicate<"Subtarget->getGeneration() "
10                      ">= SISubtarget::SEA_ISLANDS">;
11def isCIOnly : Predicate<"Subtarget->getGeneration() =="
12                         "SISubtarget::SEA_ISLANDS">,
13  AssemblerPredicate <"FeatureSeaIslands">;
14
15def DisableInst : Predicate <"false">, AssemblerPredicate<"FeatureDisable">;
16
17class vop {
18  field bits<9> SI3;
19  field bits<10> VI3;
20}
21
22class vopc <bits<8> si, bits<8> vi = !add(0x40, si)> : vop {
23  field bits<8> SI = si;
24  field bits<8> VI = vi;
25
26  field bits<9>  SI3 = {0, si{7-0}};
27  field bits<10> VI3 = {0, 0, vi{7-0}};
28}
29
30class vop1 <bits<8> si, bits<8> vi = si> : vop {
31  field bits<8> SI = si;
32  field bits<8> VI = vi;
33
34  field bits<9>  SI3 = {1, 1, si{6-0}};
35  field bits<10> VI3 = !add(0x140, vi);
36}
37
38class vop2 <bits<6> si, bits<6> vi = si> : vop {
39  field bits<6> SI = si;
40  field bits<6> VI = vi;
41
42  field bits<9>  SI3 = {1, 0, 0, si{5-0}};
43  field bits<10> VI3 = {0, 1, 0, 0, vi{5-0}};
44}
45
46// Specify a VOP2 opcode for SI and VOP3 opcode for VI
47// that doesn't have VOP2 encoding on VI
48class vop23 <bits<6> si, bits<10> vi> : vop2 <si> {
49  let VI3 = vi;
50}
51
52class vop3 <bits<9> si, bits<10> vi = {0, si}> : vop {
53  let SI3 = si;
54  let VI3 = vi;
55}
56
57class sop1 <bits<8> si, bits<8> vi = si> {
58  field bits<8> SI = si;
59  field bits<8> VI = vi;
60}
61
62class sop2 <bits<7> si, bits<7> vi = si> {
63  field bits<7> SI = si;
64  field bits<7> VI = vi;
65}
66
67class sopk <bits<5> si, bits<5> vi = si> {
68  field bits<5> SI = si;
69  field bits<5> VI = vi;
70}
71
72// Specify an SMRD opcode for SI and SMEM opcode for VI
73
74// FIXME: This should really be bits<5> si, Tablegen crashes if
75// parameter default value is other parameter with different bit size
76class smrd<bits<8> si, bits<8> vi = si> {
77  field bits<5> SI = si{4-0};
78  field bits<8> VI = vi;
79}
80
81// Execpt for the NONE field, this must be kept in sync with the
82// SIEncodingFamily enum in AMDGPUInstrInfo.cpp
83def SIEncodingFamily {
84  int NONE = -1;
85  int SI = 0;
86  int VI = 1;
87}
88
89//===----------------------------------------------------------------------===//
90// SI DAG Nodes
91//===----------------------------------------------------------------------===//
92
93def SIload_constant : SDNode<"AMDGPUISD::LOAD_CONSTANT",
94  SDTypeProfile<1, 2, [SDTCisVT<0, f32>, SDTCisVT<1, v4i32>, SDTCisVT<2, i32>]>,
95                      [SDNPMayLoad, SDNPMemOperand]
96>;
97
98def SIatomic_inc : SDNode<"AMDGPUISD::ATOMIC_INC", SDTAtomic2,
99  [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain]
100>;
101
102def SIatomic_dec : SDNode<"AMDGPUISD::ATOMIC_DEC", SDTAtomic2,
103  [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain]
104>;
105
106def SItbuffer_store : SDNode<"AMDGPUISD::TBUFFER_STORE_FORMAT",
107  SDTypeProfile<0, 13,
108    [SDTCisVT<0, v4i32>,   // rsrc(SGPR)
109     SDTCisVT<1, iAny>,   // vdata(VGPR)
110     SDTCisVT<2, i32>,    // num_channels(imm)
111     SDTCisVT<3, i32>,    // vaddr(VGPR)
112     SDTCisVT<4, i32>,    // soffset(SGPR)
113     SDTCisVT<5, i32>,    // inst_offset(imm)
114     SDTCisVT<6, i32>,    // dfmt(imm)
115     SDTCisVT<7, i32>,    // nfmt(imm)
116     SDTCisVT<8, i32>,    // offen(imm)
117     SDTCisVT<9, i32>,    // idxen(imm)
118     SDTCisVT<10, i32>,   // glc(imm)
119     SDTCisVT<11, i32>,   // slc(imm)
120     SDTCisVT<12, i32>    // tfe(imm)
121    ]>,
122  [SDNPMayStore, SDNPMemOperand, SDNPHasChain]
123>;
124
125def SIload_input : SDNode<"AMDGPUISD::LOAD_INPUT",
126  SDTypeProfile<1, 3, [SDTCisVT<0, v4f32>, SDTCisVT<1, v4i32>, SDTCisVT<2, i16>,
127                       SDTCisVT<3, i32>]>
128>;
129
130class SDSample<string opcode> : SDNode <opcode,
131  SDTypeProfile<1, 4, [SDTCisVT<0, v4f32>, SDTCisVT<2, v8i32>,
132                       SDTCisVT<3, v4i32>, SDTCisVT<4, i32>]>
133>;
134
135def SIsample : SDSample<"AMDGPUISD::SAMPLE">;
136def SIsampleb : SDSample<"AMDGPUISD::SAMPLEB">;
137def SIsampled : SDSample<"AMDGPUISD::SAMPLED">;
138def SIsamplel : SDSample<"AMDGPUISD::SAMPLEL">;
139
140def SIpc_add_rel_offset : SDNode<"AMDGPUISD::PC_ADD_REL_OFFSET",
141  SDTypeProfile<1, 1, [SDTCisVT<0, iPTR>, SDTCisSameAs<0,1>]>
142>;
143
144//===----------------------------------------------------------------------===//
145// PatFrags for FLAT instructions
146//===----------------------------------------------------------------------===//
147
148class flat_ld <SDPatternOperator ld> : PatFrag<(ops node:$ptr),
149                                               (ld node:$ptr), [{
150  return isFlatLoad(dyn_cast<MemSDNode>(N)) ||
151         isGlobalLoad(dyn_cast<MemSDNode>(N)) ||
152         isConstantLoad(cast<MemSDNode>(N), -1);
153}]>;
154
155def flat_load : flat_ld <load>;
156def atomic_flat_load : flat_ld<atomic_load>;
157def flat_az_extloadi8 : flat_ld <az_extloadi8>;
158def flat_sextloadi8 : flat_ld <sextloadi8>;
159def flat_az_extloadi16 : flat_ld <az_extloadi16>;
160def flat_sextloadi16 : flat_ld <sextloadi16>;
161
162class flat_st <SDPatternOperator st> : PatFrag<(ops node:$val, node:$ptr),
163                                               (st node:$val, node:$ptr), [{
164  return isFlatStore(dyn_cast<MemSDNode>(N)) ||
165         isGlobalStore(dyn_cast<MemSDNode>(N));
166}]>;
167
168def flat_store: flat_st <store>;
169def atomic_flat_store: flat_st <atomic_store>;
170def flat_truncstorei8 : flat_st <truncstorei8>;
171def flat_truncstorei16 : flat_st <truncstorei16>;
172
173
174def mubuf_load : PatFrag <(ops node:$ptr), (load node:$ptr), [{
175	return isGlobalLoad(cast<LoadSDNode>(N)) ||
176         isConstantLoad(cast<LoadSDNode>(N), -1);
177}]>;
178
179def mubuf_load_atomic : PatFrag <(ops node:$ptr), (atomic_load node:$ptr), [{
180	return isGlobalLoad(cast<MemSDNode>(N)) ||
181         isConstantLoad(cast<MemSDNode>(N), -1);
182}]>;
183
184
185def smrd_load : PatFrag <(ops node:$ptr), (load node:$ptr), [{
186  return isConstantLoad(cast<LoadSDNode>(N), -1) &&
187  static_cast<const SITargetLowering *>(getTargetLowering())->isMemOpUniform(N);
188}]>;
189
190//===----------------------------------------------------------------------===//
191// PatFrags for global memory operations
192//===----------------------------------------------------------------------===//
193
194def atomic_inc_global : global_binary_atomic_op<SIatomic_inc>;
195def atomic_dec_global : global_binary_atomic_op<SIatomic_dec>;
196
197def atomic_inc_flat : flat_binary_atomic_op<SIatomic_inc>;
198def atomic_dec_flat : flat_binary_atomic_op<SIatomic_dec>;
199
200//===----------------------------------------------------------------------===//
201// SDNodes and PatFrag for local loads and stores to enable s_mov_b32 m0, -1
202// to be glued to the memory instructions.
203//===----------------------------------------------------------------------===//
204
205def SIld_local : SDNode <"ISD::LOAD", SDTLoad,
206  [SDNPHasChain, SDNPMayLoad, SDNPMemOperand, SDNPInGlue]
207>;
208
209def si_ld_local : PatFrag <(ops node:$ptr), (SIld_local node:$ptr), [{
210  return isLocalLoad(cast<LoadSDNode>(N));
211}]>;
212
213def si_load_local : PatFrag <(ops node:$ptr), (si_ld_local node:$ptr), [{
214  return cast<LoadSDNode>(N)->getAddressingMode() == ISD::UNINDEXED &&
215         cast<LoadSDNode>(N)->getExtensionType() == ISD::NON_EXTLOAD;
216}]>;
217
218def si_load_local_align8 : Aligned8Bytes <
219  (ops node:$ptr), (si_load_local node:$ptr)
220>;
221
222def si_sextload_local : PatFrag <(ops node:$ptr), (si_ld_local node:$ptr), [{
223  return cast<LoadSDNode>(N)->getExtensionType() == ISD::SEXTLOAD;
224}]>;
225def si_az_extload_local : AZExtLoadBase <si_ld_local>;
226
227multiclass SIExtLoadLocal <PatFrag ld_node> {
228
229  def _i8 : PatFrag <(ops node:$ptr), (ld_node node:$ptr),
230                     [{return cast<LoadSDNode>(N)->getMemoryVT() == MVT::i8;}]
231  >;
232
233  def _i16 : PatFrag <(ops node:$ptr), (ld_node node:$ptr),
234                     [{return cast<LoadSDNode>(N)->getMemoryVT() == MVT::i16;}]
235  >;
236}
237
238defm si_sextload_local : SIExtLoadLocal <si_sextload_local>;
239defm si_az_extload_local : SIExtLoadLocal <si_az_extload_local>;
240
241def SIst_local : SDNode <"ISD::STORE", SDTStore,
242  [SDNPHasChain, SDNPMayStore, SDNPMemOperand, SDNPInGlue]
243>;
244
245def si_st_local : PatFrag <
246  (ops node:$val, node:$ptr), (SIst_local node:$val, node:$ptr), [{
247  return isLocalStore(cast<StoreSDNode>(N));
248}]>;
249
250def si_store_local : PatFrag <
251  (ops node:$val, node:$ptr), (si_st_local node:$val, node:$ptr), [{
252  return cast<StoreSDNode>(N)->getAddressingMode() == ISD::UNINDEXED &&
253         !cast<StoreSDNode>(N)->isTruncatingStore();
254}]>;
255
256def si_store_local_align8 : Aligned8Bytes <
257  (ops node:$val, node:$ptr), (si_store_local node:$val, node:$ptr)
258>;
259
260def si_truncstore_local : PatFrag <
261  (ops node:$val, node:$ptr), (si_st_local node:$val, node:$ptr), [{
262  return cast<StoreSDNode>(N)->isTruncatingStore();
263}]>;
264
265def si_truncstore_local_i8 : PatFrag <
266  (ops node:$val, node:$ptr), (si_truncstore_local node:$val, node:$ptr), [{
267  return cast<StoreSDNode>(N)->getMemoryVT() == MVT::i8;
268}]>;
269
270def si_truncstore_local_i16 : PatFrag <
271  (ops node:$val, node:$ptr), (si_truncstore_local node:$val, node:$ptr), [{
272  return cast<StoreSDNode>(N)->getMemoryVT() == MVT::i16;
273}]>;
274
275def si_setcc_uniform : PatFrag <
276  (ops node:$lhs, node:$rhs, node:$cond),
277  (setcc node:$lhs, node:$rhs, node:$cond), [{
278  for (SDNode *Use : N->uses()) {
279    if (Use->isMachineOpcode() || Use->getOpcode() != ISD::CopyToReg)
280      return false;
281
282    unsigned Reg = cast<RegisterSDNode>(Use->getOperand(1))->getReg();
283    if (Reg != AMDGPU::SCC)
284      return false;
285  }
286  return true;
287}]>;
288
289def si_uniform_br : PatFrag <
290  (ops node:$cond, node:$bb), (brcond node:$cond, node:$bb), [{
291  return isUniformBr(N);
292}]>;
293
294def si_uniform_br_scc : PatFrag <
295  (ops node:$cond, node:$bb), (si_uniform_br node:$cond, node:$bb), [{
296  return isCBranchSCC(N);
297}]>;
298
299multiclass SIAtomicM0Glue2 <string op_name, bit is_amdgpu = 0> {
300
301  def _glue : SDNode <
302    !if(is_amdgpu, "AMDGPUISD", "ISD")#"::ATOMIC_"#op_name, SDTAtomic2,
303    [SDNPHasChain, SDNPMayStore, SDNPMayLoad, SDNPMemOperand, SDNPInGlue]
304  >;
305
306  def _local : local_binary_atomic_op <!cast<SDNode>(NAME#"_glue")>;
307}
308
309defm si_atomic_load_add : SIAtomicM0Glue2 <"LOAD_ADD">;
310defm si_atomic_load_sub : SIAtomicM0Glue2 <"LOAD_SUB">;
311defm si_atomic_inc : SIAtomicM0Glue2 <"INC", 1>;
312defm si_atomic_dec : SIAtomicM0Glue2 <"DEC", 1>;
313defm si_atomic_load_and : SIAtomicM0Glue2 <"LOAD_AND">;
314defm si_atomic_load_min : SIAtomicM0Glue2 <"LOAD_MIN">;
315defm si_atomic_load_max : SIAtomicM0Glue2 <"LOAD_MAX">;
316defm si_atomic_load_or : SIAtomicM0Glue2 <"LOAD_OR">;
317defm si_atomic_load_xor : SIAtomicM0Glue2 <"LOAD_XOR">;
318defm si_atomic_load_umin : SIAtomicM0Glue2 <"LOAD_UMIN">;
319defm si_atomic_load_umax : SIAtomicM0Glue2 <"LOAD_UMAX">;
320defm si_atomic_swap : SIAtomicM0Glue2 <"SWAP">;
321
322def si_atomic_cmp_swap_glue : SDNode <"ISD::ATOMIC_CMP_SWAP", SDTAtomic3,
323  [SDNPHasChain, SDNPMayStore, SDNPMayLoad, SDNPMemOperand, SDNPInGlue]
324>;
325
326defm si_atomic_cmp_swap : AtomicCmpSwapLocal <si_atomic_cmp_swap_glue>;
327
328// Transformation function, extract the lower 32bit of a 64bit immediate
329def LO32 : SDNodeXForm<imm, [{
330  return CurDAG->getTargetConstant(N->getZExtValue() & 0xffffffff, SDLoc(N),
331                                   MVT::i32);
332}]>;
333
334def LO32f : SDNodeXForm<fpimm, [{
335  APInt V = N->getValueAPF().bitcastToAPInt().trunc(32);
336  return CurDAG->getTargetConstantFP(APFloat(APFloat::IEEEsingle, V), MVT::f32);
337}]>;
338
339// Transformation function, extract the upper 32bit of a 64bit immediate
340def HI32 : SDNodeXForm<imm, [{
341  return CurDAG->getTargetConstant(N->getZExtValue() >> 32, SDLoc(N), MVT::i32);
342}]>;
343
344def HI32f : SDNodeXForm<fpimm, [{
345  APInt V = N->getValueAPF().bitcastToAPInt().lshr(32).trunc(32);
346  return CurDAG->getTargetConstantFP(APFloat(APFloat::IEEEsingle, V), SDLoc(N),
347                                     MVT::f32);
348}]>;
349
350def IMM8bitDWORD : PatLeaf <(imm),
351  [{return (N->getZExtValue() & ~0x3FC) == 0;}]
352>;
353
354def as_dword_i32imm : SDNodeXForm<imm, [{
355  return CurDAG->getTargetConstant(N->getZExtValue() >> 2, SDLoc(N), MVT::i32);
356}]>;
357
358def as_i1imm : SDNodeXForm<imm, [{
359  return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i1);
360}]>;
361
362def as_i8imm : SDNodeXForm<imm, [{
363  return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i8);
364}]>;
365
366def as_i16imm : SDNodeXForm<imm, [{
367  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16);
368}]>;
369
370def as_i32imm: SDNodeXForm<imm, [{
371  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i32);
372}]>;
373
374def as_i64imm: SDNodeXForm<imm, [{
375  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i64);
376}]>;
377
378// Copied from the AArch64 backend:
379def bitcast_fpimm_to_i32 : SDNodeXForm<fpimm, [{
380return CurDAG->getTargetConstant(
381  N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i32);
382}]>;
383
384// Copied from the AArch64 backend:
385def bitcast_fpimm_to_i64 : SDNodeXForm<fpimm, [{
386return CurDAG->getTargetConstant(
387  N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i64);
388}]>;
389
390def IMM8bit : PatLeaf <(imm),
391  [{return isUInt<8>(N->getZExtValue());}]
392>;
393
394def IMM12bit : PatLeaf <(imm),
395  [{return isUInt<12>(N->getZExtValue());}]
396>;
397
398def IMM16bit : PatLeaf <(imm),
399  [{return isUInt<16>(N->getZExtValue());}]
400>;
401
402def SIMM16bit : PatLeaf <(imm),
403  [{return isInt<16>(N->getSExtValue());}]
404>;
405
406def IMM20bit : PatLeaf <(imm),
407  [{return isUInt<20>(N->getZExtValue());}]
408>;
409
410def IMM32bit : PatLeaf <(imm),
411  [{return isUInt<32>(N->getZExtValue());}]
412>;
413
414def mubuf_vaddr_offset : PatFrag<
415  (ops node:$ptr, node:$offset, node:$imm_offset),
416  (add (add node:$ptr, node:$offset), node:$imm_offset)
417>;
418
419class InlineImm <ValueType vt> : PatLeaf <(vt imm), [{
420  return isInlineImmediate(N);
421}]>;
422
423class InlineFPImm <ValueType vt> : PatLeaf <(vt fpimm), [{
424  return isInlineImmediate(N);
425}]>;
426
427class SGPRImm <dag frag> : PatLeaf<frag, [{
428  if (Subtarget->getGeneration() < SISubtarget::SOUTHERN_ISLANDS) {
429    return false;
430  }
431  const SIRegisterInfo *SIRI =
432      static_cast<const SIRegisterInfo *>(Subtarget->getRegisterInfo());
433  for (SDNode::use_iterator U = N->use_begin(), E = SDNode::use_end();
434                                                U != E; ++U) {
435    const TargetRegisterClass *RC = getOperandRegClass(*U, U.getOperandNo());
436    if (RC && SIRI->isSGPRClass(RC))
437      return true;
438  }
439  return false;
440}]>;
441
442//===----------------------------------------------------------------------===//
443// Custom Operands
444//===----------------------------------------------------------------------===//
445
446def FRAMEri32 : Operand<iPTR> {
447  let MIOperandInfo = (ops i32:$ptr, i32imm:$index);
448}
449
450def SoppBrTarget : AsmOperandClass {
451  let Name = "SoppBrTarget";
452  let ParserMethod = "parseSOppBrTarget";
453}
454
455def sopp_brtarget : Operand<OtherVT> {
456  let EncoderMethod = "getSOPPBrEncoding";
457  let OperandType = "OPERAND_PCREL";
458  let ParserMatchClass = SoppBrTarget;
459}
460
461def si_ga : Operand<iPTR>;
462
463def InterpSlot : Operand<i32> {
464  let PrintMethod = "printInterpSlot";
465}
466
467def SendMsgMatchClass : AsmOperandClass {
468  let Name = "SendMsg";
469  let PredicateMethod = "isSendMsg";
470  let ParserMethod = "parseSendMsgOp";
471  let RenderMethod = "addImmOperands";
472}
473
474def SendMsgImm : Operand<i32> {
475  let PrintMethod = "printSendMsg";
476  let ParserMatchClass = SendMsgMatchClass;
477}
478
479def SWaitMatchClass : AsmOperandClass {
480  let Name = "SWaitCnt";
481  let RenderMethod = "addImmOperands";
482  let ParserMethod = "parseSWaitCntOps";
483}
484
485def WAIT_FLAG : Operand <i32> {
486  let ParserMatchClass = SWaitMatchClass;
487  let PrintMethod = "printWaitFlag";
488}
489
490include "SIInstrFormats.td"
491include "VIInstrFormats.td"
492
493class NamedMatchClass<string CName, bit Optional = 1> : AsmOperandClass {
494  let Name = "Imm"#CName;
495  let PredicateMethod = "is"#CName;
496  let ParserMethod = !if(Optional, "parseOptionalOperand", "parse"#CName);
497  let RenderMethod = "addImmOperands";
498  let IsOptional = Optional;
499  let DefaultMethod = !if(Optional, "default"#CName, ?);
500}
501
502class NamedOperandBit<string Name, AsmOperandClass MatchClass> : Operand<i1> {
503  let PrintMethod = "print"#Name;
504  let ParserMatchClass = MatchClass;
505}
506
507class NamedOperandU8<string Name, AsmOperandClass MatchClass> : Operand<i8> {
508  let PrintMethod = "print"#Name;
509  let ParserMatchClass = MatchClass;
510}
511
512class NamedOperandU16<string Name, AsmOperandClass MatchClass> : Operand<i16> {
513  let PrintMethod = "print"#Name;
514  let ParserMatchClass = MatchClass;
515}
516
517class NamedOperandU32<string Name, AsmOperandClass MatchClass> : Operand<i32> {
518  let PrintMethod = "print"#Name;
519  let ParserMatchClass = MatchClass;
520}
521
522let OperandType = "OPERAND_IMMEDIATE" in {
523
524def offen : NamedOperandBit<"Offen", NamedMatchClass<"Offen">>;
525def idxen : NamedOperandBit<"Idxen", NamedMatchClass<"Idxen">>;
526def addr64 : NamedOperandBit<"Addr64", NamedMatchClass<"Addr64">>;
527
528def offset : NamedOperandU16<"Offset", NamedMatchClass<"Offset">>;
529def offset0 : NamedOperandU8<"Offset0", NamedMatchClass<"Offset0">>;
530def offset1 : NamedOperandU8<"Offset1", NamedMatchClass<"Offset1">>;
531
532def gds : NamedOperandBit<"GDS", NamedMatchClass<"GDS">>;
533
534def omod : NamedOperandU32<"OModSI", NamedMatchClass<"OModSI">>;
535def clampmod : NamedOperandBit<"ClampSI", NamedMatchClass<"ClampSI">>;
536
537def smrd_offset : NamedOperandU32<"SMRDOffset", NamedMatchClass<"SMRDOffset">>;
538def smrd_literal_offset : NamedOperandU32<"SMRDLiteralOffset", NamedMatchClass<"SMRDLiteralOffset">>;
539
540def glc : NamedOperandBit<"GLC", NamedMatchClass<"GLC">>;
541def slc : NamedOperandBit<"SLC", NamedMatchClass<"SLC">>;
542def tfe : NamedOperandBit<"TFE", NamedMatchClass<"TFE">>;
543def unorm : NamedOperandBit<"UNorm", NamedMatchClass<"UNorm">>;
544def da : NamedOperandBit<"DA", NamedMatchClass<"DA">>;
545def r128 : NamedOperandBit<"R128", NamedMatchClass<"R128">>;
546def lwe : NamedOperandBit<"LWE", NamedMatchClass<"LWE">>;
547
548def dmask : NamedOperandU16<"DMask", NamedMatchClass<"DMask">>;
549
550def dpp_ctrl : NamedOperandU32<"DPPCtrl", NamedMatchClass<"DPPCtrl", 0>>;
551def row_mask : NamedOperandU32<"RowMask", NamedMatchClass<"RowMask">>;
552def bank_mask : NamedOperandU32<"BankMask", NamedMatchClass<"BankMask">>;
553def bound_ctrl : NamedOperandBit<"BoundCtrl", NamedMatchClass<"BoundCtrl">>;
554
555def dst_sel : NamedOperandU32<"SDWADstSel", NamedMatchClass<"SDWADstSel">>;
556def src0_sel : NamedOperandU32<"SDWASrc0Sel", NamedMatchClass<"SDWASrc0Sel">>;
557def src1_sel : NamedOperandU32<"SDWASrc1Sel", NamedMatchClass<"SDWASrc1Sel">>;
558def dst_unused : NamedOperandU32<"SDWADstUnused", NamedMatchClass<"SDWADstUnused">>;
559
560def hwreg : NamedOperandU16<"Hwreg", NamedMatchClass<"Hwreg", 0>>;
561
562} // End OperandType = "OPERAND_IMMEDIATE"
563
564
565def VOPDstS64 : VOPDstOperand <SReg_64>;
566
567def FPInputModsMatchClass : AsmOperandClass {
568  let Name = "RegOrImmWithFPInputMods";
569  let ParserMethod = "parseRegOrImmWithFPInputMods";
570  let PredicateMethod = "isRegOrImmWithInputMods";
571}
572
573def FPInputMods : Operand <i32> {
574  let PrintMethod = "printOperandAndFPInputMods";
575  let ParserMatchClass = FPInputModsMatchClass;
576}
577
578def IntInputModsMatchClass : AsmOperandClass {
579  let Name = "RegOrImmWithIntInputMods";
580  let ParserMethod = "parseRegOrImmWithIntInputMods";
581  let PredicateMethod = "isRegOrImmWithInputMods";
582}
583
584def IntInputMods: Operand <i32> {
585  let PrintMethod = "printOperandAndIntInputMods";
586  let ParserMatchClass = IntInputModsMatchClass;
587}
588
589//===----------------------------------------------------------------------===//
590// Complex patterns
591//===----------------------------------------------------------------------===//
592
593def DS1Addr1Offset : ComplexPattern<i32, 2, "SelectDS1Addr1Offset">;
594def DS64Bit4ByteAligned : ComplexPattern<i32, 3, "SelectDS64Bit4ByteAligned">;
595
596def MUBUFAddr32 : ComplexPattern<i64, 9, "SelectMUBUFAddr32">;
597def MUBUFAddr64 : ComplexPattern<i64, 7, "SelectMUBUFAddr64">;
598def MUBUFAddr64Atomic : ComplexPattern<i64, 5, "SelectMUBUFAddr64">;
599def FLATAtomic : ComplexPattern<i64, 3, "SelectFlat">;
600def MUBUFScratch : ComplexPattern<i64, 4, "SelectMUBUFScratch">;
601def MUBUFOffset : ComplexPattern<i64, 6, "SelectMUBUFOffset">;
602def MUBUFOffsetNoGLC : ComplexPattern<i64, 3, "SelectMUBUFOffset">;
603def MUBUFOffsetAtomic : ComplexPattern<i64, 4, "SelectMUBUFOffset">;
604def MUBUFIntrinsicOffset : ComplexPattern<i32, 2, "SelectMUBUFIntrinsicOffset">;
605def MUBUFIntrinsicVOffset : ComplexPattern<i32, 3, "SelectMUBUFIntrinsicVOffset">;
606
607def SMRDImm   : ComplexPattern<i64, 2, "SelectSMRDImm">;
608def SMRDImm32 : ComplexPattern<i64, 2, "SelectSMRDImm32">;
609def SMRDSgpr  : ComplexPattern<i64, 2, "SelectSMRDSgpr">;
610def SMRDBufferImm   : ComplexPattern<i32, 1, "SelectSMRDBufferImm">;
611def SMRDBufferImm32 : ComplexPattern<i32, 1, "SelectSMRDBufferImm32">;
612def SMRDBufferSgpr  : ComplexPattern<i32, 1, "SelectSMRDBufferSgpr">;
613
614def VOP3Mods0 : ComplexPattern<untyped, 4, "SelectVOP3Mods0">;
615def VOP3NoMods0 : ComplexPattern<untyped, 4, "SelectVOP3NoMods0">;
616def VOP3Mods0Clamp : ComplexPattern<untyped, 3, "SelectVOP3Mods0Clamp">;
617def VOP3Mods0Clamp0OMod : ComplexPattern<untyped, 4, "SelectVOP3Mods0Clamp0OMod">;
618def VOP3Mods  : ComplexPattern<untyped, 2, "SelectVOP3Mods">;
619def VOP3NoMods : ComplexPattern<untyped, 2, "SelectVOP3NoMods">;
620
621//===----------------------------------------------------------------------===//
622// SI assembler operands
623//===----------------------------------------------------------------------===//
624
625def SIOperand {
626  int ZERO = 0x80;
627  int VCC = 0x6A;
628  int FLAT_SCR = 0x68;
629}
630
631def SRCMODS {
632  int NONE = 0;
633  int NEG = 1;
634}
635
636def DSTCLAMP {
637  int NONE = 0;
638}
639
640def DSTOMOD {
641  int NONE = 0;
642}
643
644//===----------------------------------------------------------------------===//
645//
646// SI Instruction multiclass helpers.
647//
648// Instructions with _32 take 32-bit operands.
649// Instructions with _64 take 64-bit operands.
650//
651// VOP_* instructions can use either a 32-bit or 64-bit encoding.  The 32-bit
652// encoding is the standard encoding, but instruction that make use of
653// any of the instruction modifiers must use the 64-bit encoding.
654//
655// Instructions with _e32 use the 32-bit encoding.
656// Instructions with _e64 use the 64-bit encoding.
657//
658//===----------------------------------------------------------------------===//
659
660class SIMCInstr <string pseudo, int subtarget> {
661  string PseudoInstr = pseudo;
662  int Subtarget = subtarget;
663}
664
665//===----------------------------------------------------------------------===//
666// EXP classes
667//===----------------------------------------------------------------------===//
668
669class EXPCommon : InstSI<
670  (outs),
671  (ins i32imm:$en, i32imm:$tgt, i32imm:$compr, i32imm:$done, i32imm:$vm,
672       VGPR_32:$src0, VGPR_32:$src1, VGPR_32:$src2, VGPR_32:$src3),
673  "exp $en, $tgt, $compr, $done, $vm, $src0, $src1, $src2, $src3",
674  [] > {
675
676  let EXP_CNT = 1;
677  let Uses = [EXEC];
678  let SchedRW = [WriteExport];
679}
680
681multiclass EXP_m {
682
683  let isPseudo = 1, isCodeGenOnly = 1 in {
684    def "" : EXPCommon, SIMCInstr <"exp", SIEncodingFamily.NONE> ;
685  }
686
687  def _si : EXPCommon, SIMCInstr <"exp", SIEncodingFamily.SI>, EXPe {
688    let DecoderNamespace="SICI";
689    let DisableDecoder = DisableSIDecoder;
690  }
691
692  def _vi : EXPCommon, SIMCInstr <"exp", SIEncodingFamily.VI>, EXPe_vi {
693    let DecoderNamespace="VI";
694    let DisableDecoder = DisableVIDecoder;
695  }
696}
697
698//===----------------------------------------------------------------------===//
699// Scalar classes
700//===----------------------------------------------------------------------===//
701
702class SOP1_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
703  SOP1 <outs, ins, "", pattern>,
704  SIMCInstr<opName, SIEncodingFamily.NONE> {
705  let isPseudo = 1;
706  let isCodeGenOnly = 1;
707}
708
709class SOP1_Real_si <sop1 op, string opName, dag outs, dag ins, string asm> :
710  SOP1 <outs, ins, asm, []>,
711  SOP1e <op.SI>,
712  SIMCInstr<opName, SIEncodingFamily.SI> {
713  let isCodeGenOnly = 0;
714  let AssemblerPredicates = [isSICI];
715  let DecoderNamespace = "SICI";
716  let DisableDecoder = DisableSIDecoder;
717}
718
719class SOP1_Real_vi <sop1 op, string opName, dag outs, dag ins, string asm> :
720  SOP1 <outs, ins, asm, []>,
721  SOP1e <op.VI>,
722  SIMCInstr<opName, SIEncodingFamily.VI> {
723  let isCodeGenOnly = 0;
724  let AssemblerPredicates = [isVI];
725  let DecoderNamespace = "VI";
726  let DisableDecoder = DisableVIDecoder;
727}
728
729multiclass SOP1_m <sop1 op, string opName, dag outs, dag ins, string asm,
730                   list<dag> pattern> {
731
732  def "" : SOP1_Pseudo <opName, outs, ins, pattern>;
733
734  def _si : SOP1_Real_si <op, opName, outs, ins, asm>;
735
736  def _vi : SOP1_Real_vi <op, opName, outs, ins, asm>;
737
738}
739
740multiclass SOP1_32 <sop1 op, string opName, list<dag> pattern> : SOP1_m <
741    op, opName, (outs SReg_32:$sdst), (ins SSrc_32:$src0),
742    opName#" $sdst, $src0", pattern
743>;
744
745multiclass SOP1_64 <sop1 op, string opName, list<dag> pattern> : SOP1_m <
746    op, opName, (outs SReg_64:$sdst), (ins SSrc_64:$src0),
747    opName#" $sdst, $src0", pattern
748>;
749
750// no input, 64-bit output.
751multiclass SOP1_64_0 <sop1 op, string opName, list<dag> pattern> {
752  def "" : SOP1_Pseudo <opName, (outs SReg_64:$sdst), (ins), pattern>;
753
754  def _si : SOP1_Real_si <op, opName, (outs SReg_64:$sdst), (ins),
755    opName#" $sdst"> {
756    let src0 = 0;
757  }
758
759  def _vi : SOP1_Real_vi <op, opName, (outs SReg_64:$sdst), (ins),
760    opName#" $sdst"> {
761    let src0 = 0;
762  }
763}
764
765// 64-bit input, no output
766multiclass SOP1_1 <sop1 op, string opName, list<dag> pattern> {
767  def "" : SOP1_Pseudo <opName, (outs), (ins SReg_64:$src0), pattern>;
768
769  def _si : SOP1_Real_si <op, opName, (outs), (ins SReg_64:$src0),
770    opName#" $src0"> {
771    let sdst = 0;
772  }
773
774  def _vi : SOP1_Real_vi <op, opName, (outs), (ins SReg_64:$src0),
775    opName#" $src0"> {
776    let sdst = 0;
777  }
778}
779
780// 64-bit input, 32-bit output.
781multiclass SOP1_32_64 <sop1 op, string opName, list<dag> pattern> : SOP1_m <
782    op, opName, (outs SReg_32:$sdst), (ins SSrc_64:$src0),
783    opName#" $sdst, $src0", pattern
784>;
785
786// 32-bit input, 64-bit output.
787multiclass SOP1_64_32 <sop1 op, string opName, list<dag> pattern> : SOP1_m <
788    op, opName, (outs SReg_64:$sdst), (ins SSrc_32:$src0),
789    opName#" $sdst, $src0", pattern
790>;
791
792class SOP2_Pseudo<string opName, dag outs, dag ins, list<dag> pattern> :
793  SOP2<outs, ins, "", pattern>,
794  SIMCInstr<opName, SIEncodingFamily.NONE> {
795  let isPseudo = 1;
796  let isCodeGenOnly = 1;
797  let Size = 4;
798
799  // Pseudo instructions have no encodings, but adding this field here allows
800  // us to do:
801  // let sdst = xxx in {
802  // for multiclasses that include both real and pseudo instructions.
803  field bits<7> sdst = 0;
804}
805
806class SOP2_Real_si<sop2 op, string opName, dag outs, dag ins, string asm> :
807  SOP2<outs, ins, asm, []>,
808  SOP2e<op.SI>,
809  SIMCInstr<opName, SIEncodingFamily.SI> {
810  let AssemblerPredicates = [isSICI];
811  let DecoderNamespace = "SICI";
812  let DisableDecoder = DisableSIDecoder;
813}
814
815class SOP2_Real_vi<sop2 op, string opName, dag outs, dag ins, string asm> :
816  SOP2<outs, ins, asm, []>,
817  SOP2e<op.VI>,
818  SIMCInstr<opName, SIEncodingFamily.VI> {
819  let AssemblerPredicates = [isVI];
820  let DecoderNamespace = "VI";
821  let DisableDecoder = DisableVIDecoder;
822}
823
824multiclass SOP2_m <sop2 op, string opName, dag outs, dag ins, string asm,
825                   list<dag> pattern> {
826
827  def "" : SOP2_Pseudo <opName, outs, ins, pattern>;
828
829  def _si : SOP2_Real_si <op, opName, outs, ins, asm>;
830
831  def _vi : SOP2_Real_vi <op, opName, outs, ins, asm>;
832
833}
834
835multiclass SOP2_32 <sop2 op, string opName, list<dag> pattern> : SOP2_m <
836    op, opName, (outs SReg_32:$sdst), (ins SSrc_32:$src0, SSrc_32:$src1),
837    opName#" $sdst, $src0, $src1", pattern
838>;
839
840multiclass SOP2_64 <sop2 op, string opName, list<dag> pattern> : SOP2_m <
841    op, opName, (outs SReg_64:$sdst), (ins SSrc_64:$src0, SSrc_64:$src1),
842    opName#" $sdst, $src0, $src1", pattern
843>;
844
845multiclass SOP2_64_32 <sop2 op, string opName, list<dag> pattern> : SOP2_m <
846    op, opName, (outs SReg_64:$sdst), (ins SSrc_64:$src0, SSrc_32:$src1),
847    opName#" $sdst, $src0, $src1", pattern
848>;
849
850multiclass SOP2_64_32_32 <sop2 op, string opName, list<dag> pattern> : SOP2_m <
851    op, opName, (outs SReg_64:$sdst), (ins SSrc_32:$src0, SSrc_32:$src1),
852    opName#" $sdst, $src0, $src1", pattern
853>;
854
855class SOPC_Base <bits<7> op, RegisterOperand rc0, RegisterOperand rc1,
856                 string opName, list<dag> pattern = []> : SOPC <
857  op, (outs), (ins rc0:$src0, rc1:$src1),
858  opName#" $src0, $src1", pattern > {
859  let Defs = [SCC];
860}
861class SOPC_Helper <bits<7> op, RegisterOperand rc, ValueType vt,
862                    string opName, PatLeaf cond> : SOPC_Base <
863  op, rc, rc, opName,
864  [(set SCC, (si_setcc_uniform vt:$src0, vt:$src1, cond))] > {
865}
866
867class SOPC_CMP_32<bits<7> op, string opName, PatLeaf cond = COND_NULL>
868  : SOPC_Helper<op, SSrc_32, i32, opName, cond>;
869
870class SOPC_32<bits<7> op, string opName, list<dag> pattern = []>
871  : SOPC_Base<op, SSrc_32, SSrc_32, opName, pattern>;
872
873class SOPC_64_32<bits<7> op, string opName, list<dag> pattern = []>
874  : SOPC_Base<op, SSrc_64, SSrc_32, opName, pattern>;
875
876class SOPK_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
877  SOPK <outs, ins, "", pattern>,
878  SIMCInstr<opName, SIEncodingFamily.NONE> {
879  let isPseudo = 1;
880  let isCodeGenOnly = 1;
881}
882
883class SOPK_Real_si <sopk op, string opName, dag outs, dag ins, string asm> :
884  SOPK <outs, ins, asm, []>,
885  SOPKe <op.SI>,
886  SIMCInstr<opName, SIEncodingFamily.SI> {
887  let AssemblerPredicates = [isSICI];
888  let DecoderNamespace = "SICI";
889  let DisableDecoder = DisableSIDecoder;
890  let isCodeGenOnly = 0;
891}
892
893class SOPK_Real_vi <sopk op, string opName, dag outs, dag ins, string asm> :
894  SOPK <outs, ins, asm, []>,
895  SOPKe <op.VI>,
896  SIMCInstr<opName, SIEncodingFamily.VI> {
897  let AssemblerPredicates = [isVI];
898  let DecoderNamespace = "VI";
899  let DisableDecoder = DisableVIDecoder;
900  let isCodeGenOnly = 0;
901}
902
903multiclass SOPK_m <sopk op, string opName, dag outs, dag ins, string opAsm,
904                   string asm = opName#opAsm> {
905  def "" : SOPK_Pseudo <opName, outs, ins, []>;
906
907  def _si : SOPK_Real_si <op, opName, outs, ins, asm>;
908
909  def _vi : SOPK_Real_vi <op, opName, outs, ins, asm>;
910
911}
912
913multiclass SOPK_32 <sopk op, string opName, list<dag> pattern> {
914  def "" : SOPK_Pseudo <opName, (outs SReg_32:$sdst), (ins u16imm:$simm16),
915    pattern>;
916
917  def _si : SOPK_Real_si <op, opName, (outs SReg_32:$sdst), (ins u16imm:$simm16),
918    opName#" $sdst, $simm16">;
919
920  def _vi : SOPK_Real_vi <op, opName, (outs SReg_32:$sdst), (ins u16imm:$simm16),
921    opName#" $sdst, $simm16">;
922}
923
924multiclass SOPK_SCC <sopk op, string opName, list<dag> pattern> {
925  def "" : SOPK_Pseudo <opName, (outs),
926    (ins SReg_32:$src0, u16imm:$src1), pattern> {
927    let Defs = [SCC];
928  }
929
930
931  def _si : SOPK_Real_si <op, opName, (outs),
932    (ins SReg_32:$sdst, u16imm:$simm16), opName#" $sdst, $simm16"> {
933    let Defs = [SCC];
934  }
935
936  def _vi : SOPK_Real_vi <op, opName, (outs),
937    (ins SReg_32:$sdst, u16imm:$simm16), opName#" $sdst, $simm16"> {
938    let Defs = [SCC];
939  }
940}
941
942multiclass SOPK_32TIE <sopk op, string opName, list<dag> pattern> : SOPK_m <
943  op, opName, (outs SReg_32:$sdst), (ins SReg_32:$src0, u16imm:$simm16),
944  " $sdst, $simm16"
945>;
946
947multiclass SOPK_IMM32 <sopk op, string opName, dag outs, dag ins,
948                       string argAsm, string asm = opName#argAsm> {
949
950  def "" : SOPK_Pseudo <opName, outs, ins, []>;
951
952  def _si : SOPK <outs, ins, asm, []>,
953            SOPK64e <op.SI>,
954            SIMCInstr<opName, SIEncodingFamily.SI> {
955              let AssemblerPredicates = [isSICI];
956              let DecoderNamespace = "SICI";
957              let DisableDecoder = DisableSIDecoder;
958              let isCodeGenOnly = 0;
959            }
960
961  def _vi : SOPK <outs, ins, asm, []>,
962            SOPK64e <op.VI>,
963            SIMCInstr<opName, SIEncodingFamily.VI> {
964              let AssemblerPredicates = [isVI];
965              let DecoderNamespace = "VI";
966              let DisableDecoder = DisableVIDecoder;
967              let isCodeGenOnly = 0;
968            }
969}
970//===----------------------------------------------------------------------===//
971// SMRD classes
972//===----------------------------------------------------------------------===//
973
974class SMRD_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
975  SMRD <outs, ins, "", pattern>,
976  SIMCInstr<opName, SIEncodingFamily.NONE> {
977  let isPseudo = 1;
978  let isCodeGenOnly = 1;
979}
980
981class SMRD_IMM_Real_si <bits<5> op, string opName, dag outs, dag ins,
982                        string asm> :
983  SMRD <outs, ins, asm, []>,
984  SMRD_IMMe <op>,
985  SIMCInstr<opName, SIEncodingFamily.SI> {
986  let AssemblerPredicates = [isSICI];
987  let DecoderNamespace = "SICI";
988  let DisableDecoder = DisableSIDecoder;
989}
990
991class SMRD_SOFF_Real_si <bits<5> op, string opName, dag outs, dag ins,
992                         string asm> :
993  SMRD <outs, ins, asm, []>,
994  SMRD_SOFFe <op>,
995  SIMCInstr<opName, SIEncodingFamily.SI> {
996  let AssemblerPredicates = [isSICI];
997  let DecoderNamespace = "SICI";
998  let DisableDecoder = DisableSIDecoder;
999}
1000
1001
1002class SMRD_IMM_Real_vi <bits<8> op, string opName, dag outs, dag ins,
1003                        string asm, list<dag> pattern = []> :
1004  SMRD <outs, ins, asm, pattern>,
1005  SMEM_IMMe_vi <op>,
1006  SIMCInstr<opName, SIEncodingFamily.VI> {
1007  let AssemblerPredicates = [isVI];
1008  let DecoderNamespace = "VI";
1009  let DisableDecoder = DisableVIDecoder;
1010}
1011
1012class SMRD_SOFF_Real_vi <bits<8> op, string opName, dag outs, dag ins,
1013                         string asm, list<dag> pattern = []> :
1014  SMRD <outs, ins, asm, pattern>,
1015  SMEM_SOFFe_vi <op>,
1016  SIMCInstr<opName, SIEncodingFamily.VI> {
1017  let AssemblerPredicates = [isVI];
1018  let DecoderNamespace = "VI";
1019  let DisableDecoder = DisableVIDecoder;
1020}
1021
1022
1023multiclass SMRD_IMM_m <smrd op, string opName, dag outs, dag ins,
1024                   string asm, list<dag> pattern> {
1025
1026  def "" : SMRD_Pseudo <opName, outs, ins, pattern>;
1027
1028  def _si : SMRD_IMM_Real_si <op.SI, opName, outs, ins, asm>;
1029
1030  // glc is only applicable to scalar stores, which are not yet
1031  // implemented.
1032  let glc = 0 in {
1033    def _vi : SMRD_IMM_Real_vi <op.VI, opName, outs, ins, asm>;
1034  }
1035}
1036
1037multiclass SMRD_SOFF_m <smrd op, string opName, dag outs, dag ins,
1038                        string asm, list<dag> pattern> {
1039
1040  def "" : SMRD_Pseudo <opName, outs, ins, pattern>;
1041
1042  def _si : SMRD_SOFF_Real_si <op.SI, opName, outs, ins, asm>;
1043
1044  // glc is only applicable to scalar stores, which are not yet
1045  // implemented.
1046  let glc = 0 in {
1047    def _vi : SMRD_SOFF_Real_vi <op.VI, opName, outs, ins, asm>;
1048  }
1049}
1050
1051multiclass SMRD_Special <smrd op, string opName, dag outs,
1052                       int sdst_ = ?,
1053                       string opStr = "",
1054                       list<dag> pattern = []> {
1055  let hasSideEffects = 1 in {
1056    def "" : SMRD_Pseudo <opName, outs, (ins), pattern>;
1057
1058    let sbase = 0, soff = 0, sdst = sdst_ in {
1059      def _si : SMRD_SOFF_Real_si <op.SI, opName, outs, (ins), opName#opStr>;
1060
1061      let glc = 0 in {
1062        def _vi : SMRD_SOFF_Real_vi <op.VI, opName, outs, (ins), opName#opStr>;
1063      }
1064    }
1065  }
1066}
1067
1068multiclass SMRD_Inval <smrd op, string opName,
1069                     SDPatternOperator node> {
1070  let mayStore = 1 in {
1071    defm : SMRD_Special<op, opName, (outs), 0, "", [(node)]>;
1072  }
1073}
1074
1075class SMEM_Inval <bits<8> op, string opName, SDPatternOperator node> :
1076  SMRD_SOFF_Real_vi<op, opName, (outs), (ins), opName, [(node)]> {
1077  let hasSideEffects = 1;
1078  let mayStore = 1;
1079  let sbase = 0;
1080  let sdst = 0;
1081  let glc = 0;
1082  let soff = 0;
1083}
1084
1085class SMEM_Ret <bits<8> op, string opName, SDPatternOperator node> :
1086  SMRD_SOFF_Real_vi<op, opName, (outs SReg_64:$sdst), (ins),
1087  opName#" $sdst", [(set i64:$sdst, (node))]> {
1088  let hasSideEffects = 1;
1089  let mayStore = ?;
1090  let mayLoad = ?;
1091  let sbase = 0;
1092  let glc = 0;
1093  let soff = 0;
1094}
1095
1096multiclass SMRD_Helper <smrd op, string opName, RegisterClass baseClass,
1097                        RegisterClass dstClass> {
1098  defm _IMM : SMRD_IMM_m <
1099    op, opName#"_IMM", (outs dstClass:$sdst),
1100    (ins baseClass:$sbase, smrd_offset:$offset),
1101    opName#" $sdst, $sbase, $offset", []
1102  >;
1103
1104  def _IMM_ci : SMRD <
1105    (outs dstClass:$sdst), (ins baseClass:$sbase, smrd_literal_offset:$offset),
1106    opName#" $sdst, $sbase, $offset", []>, SMRD_IMMe_ci <op.SI> {
1107    let AssemblerPredicates = [isCIOnly];
1108    let DecoderNamespace = "CI";
1109  }
1110
1111  defm _SGPR : SMRD_SOFF_m <
1112    op, opName#"_SGPR", (outs dstClass:$sdst),
1113    (ins baseClass:$sbase, SReg_32:$soff),
1114    opName#" $sdst, $sbase, $soff", []
1115  >;
1116}
1117
1118//===----------------------------------------------------------------------===//
1119// Vector ALU classes
1120//===----------------------------------------------------------------------===//
1121
1122class getNumSrcArgs<ValueType Src0, ValueType Src1, ValueType Src2> {
1123  int ret =
1124    !if (!eq(Src0.Value, untyped.Value),      0,
1125      !if (!eq(Src1.Value, untyped.Value),    1,   // VOP1
1126         !if (!eq(Src2.Value, untyped.Value), 2,   // VOP2
1127                                              3))); // VOP3
1128}
1129
1130// Returns the register class to use for the destination of VOP[123C]
1131// instructions for the given VT.
1132class getVALUDstForVT<ValueType VT> {
1133  RegisterOperand ret = !if(!eq(VT.Size, 32), VOPDstOperand<VGPR_32>,
1134                          !if(!eq(VT.Size, 64), VOPDstOperand<VReg_64>,
1135                            !if(!eq(VT.Size, 16), VOPDstOperand<VGPR_32>,
1136                            VOPDstOperand<SReg_64>))); // else VT == i1
1137}
1138
1139// Returns the register class to use for source 0 of VOP[12C]
1140// instructions for the given VT.
1141class getVOPSrc0ForVT<ValueType VT> {
1142  RegisterOperand ret = !if(!eq(VT.Size, 64), VSrc_64, VSrc_32);
1143}
1144
1145// Returns the vreg register class to use for source operand given VT
1146class getVregSrcForVT<ValueType VT> {
1147  RegisterClass ret = !if(!eq(VT.Size, 64), VReg_64, VGPR_32);
1148}
1149
1150
1151// Returns the register class to use for sources of VOP3 instructions for the
1152// given VT.
1153class getVOP3SrcForVT<ValueType VT> {
1154  RegisterOperand ret =
1155  !if(!eq(VT.Size, 64),
1156      VCSrc_64,
1157      !if(!eq(VT.Value, i1.Value),
1158          SCSrc_64,
1159          VCSrc_32
1160       )
1161    );
1162}
1163
1164// Returns 1 if the source arguments have modifiers, 0 if they do not.
1165// XXX - do f16 instructions?
1166class hasModifiers<ValueType SrcVT> {
1167  bit ret =
1168    !if(!eq(SrcVT.Value, f32.Value), 1,
1169    !if(!eq(SrcVT.Value, f64.Value), 1,
1170    0));
1171}
1172
1173// Returns the input arguments for VOP[12C] instructions for the given SrcVT.
1174class getIns32 <RegisterOperand Src0RC, RegisterClass Src1RC, int NumSrcArgs> {
1175  dag ret = !if(!eq(NumSrcArgs, 1), (ins Src0RC:$src0),               // VOP1
1176            !if(!eq(NumSrcArgs, 2), (ins Src0RC:$src0, Src1RC:$src1), // VOP2
1177                                    (ins)));
1178}
1179
1180// Returns the input arguments for VOP3 instructions for the given SrcVT.
1181class getIns64 <RegisterOperand Src0RC, RegisterOperand Src1RC,
1182                RegisterOperand Src2RC, int NumSrcArgs,
1183                bit HasModifiers> {
1184
1185  dag ret =
1186    !if (!eq(NumSrcArgs, 0),
1187      // VOP1 without input operands (V_NOP, V_CLREXCP)
1188      (ins),
1189      /* else */
1190    !if (!eq(NumSrcArgs, 1),
1191      !if (!eq(HasModifiers, 1),
1192        // VOP1 with modifiers
1193        (ins FPInputMods:$src0_modifiers, Src0RC:$src0,
1194             clampmod:$clamp, omod:$omod)
1195      /* else */,
1196        // VOP1 without modifiers
1197        (ins Src0RC:$src0)
1198      /* endif */ ),
1199    !if (!eq(NumSrcArgs, 2),
1200      !if (!eq(HasModifiers, 1),
1201        // VOP 2 with modifiers
1202        (ins FPInputMods:$src0_modifiers, Src0RC:$src0,
1203             FPInputMods:$src1_modifiers, Src1RC:$src1,
1204             clampmod:$clamp, omod:$omod)
1205      /* else */,
1206        // VOP2 without modifiers
1207        (ins Src0RC:$src0, Src1RC:$src1)
1208      /* endif */ )
1209    /* NumSrcArgs == 3 */,
1210      !if (!eq(HasModifiers, 1),
1211        // VOP3 with modifiers
1212        (ins FPInputMods:$src0_modifiers, Src0RC:$src0,
1213             FPInputMods:$src1_modifiers, Src1RC:$src1,
1214             FPInputMods:$src2_modifiers, Src2RC:$src2,
1215             clampmod:$clamp, omod:$omod)
1216      /* else */,
1217        // VOP3 without modifiers
1218        (ins Src0RC:$src0, Src1RC:$src1, Src2RC:$src2)
1219      /* endif */ ))));
1220}
1221
1222class getInsDPP <RegisterClass Src0RC, RegisterClass Src1RC, int NumSrcArgs,
1223                                                             bit HasModifiers> {
1224
1225  dag ret = !if (!eq(NumSrcArgs, 0),
1226                // VOP1 without input operands (V_NOP)
1227                (ins dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
1228                     bank_mask:$bank_mask, bound_ctrl:$bound_ctrl),
1229            !if (!eq(NumSrcArgs, 1),
1230              !if (!eq(HasModifiers, 1),
1231                // VOP1_DPP with modifiers
1232                (ins FPInputMods:$src0_modifiers, Src0RC:$src0,
1233                     dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
1234                     bank_mask:$bank_mask, bound_ctrl:$bound_ctrl)
1235              /* else */,
1236                // VOP1_DPP without modifiers
1237                (ins Src0RC:$src0, dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
1238                bank_mask:$bank_mask, bound_ctrl:$bound_ctrl)
1239              /* endif */)
1240              /* NumSrcArgs == 2 */,
1241              !if (!eq(HasModifiers, 1),
1242                // VOP2_DPP with modifiers
1243                (ins FPInputMods:$src0_modifiers, Src0RC:$src0,
1244                     FPInputMods:$src1_modifiers, Src1RC:$src1,
1245                     dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
1246                     bank_mask:$bank_mask, bound_ctrl:$bound_ctrl)
1247              /* else */,
1248                // VOP2_DPP without modifiers
1249                (ins Src0RC:$src0, Src1RC:$src1, dpp_ctrl:$dpp_ctrl,
1250                row_mask:$row_mask, bank_mask:$bank_mask,
1251                bound_ctrl:$bound_ctrl)
1252             /* endif */)));
1253}
1254
1255class getInsSDWA <RegisterClass Src0RC, RegisterClass Src1RC, int NumSrcArgs,
1256                  bit HasFloatModifiers> {
1257
1258  dag ret = !if (!eq(NumSrcArgs, 0),
1259                // VOP1 without input operands (V_NOP)
1260                (ins),
1261            !if (!eq(NumSrcArgs, 1),
1262              !if (HasFloatModifiers,
1263                // VOP1_SDWA with float modifiers
1264                (ins FPInputMods:$src0_fmodifiers, Src0RC:$src0,
1265                     clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused,
1266                     src0_sel:$src0_sel)
1267              /* else */,
1268                // VOP1_SDWA with sext modifier
1269                (ins IntInputMods:$src0_imodifiers, Src0RC:$src0,
1270                     clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused,
1271                     src0_sel:$src0_sel)
1272              /* endif */)
1273              /* NumSrcArgs == 2 */,
1274              !if (HasFloatModifiers,
1275                // VOP2_SDWA with float modifiers
1276                (ins FPInputMods:$src0_fmodifiers, Src0RC:$src0,
1277                     FPInputMods:$src1_fmodifiers, Src1RC:$src1,
1278                     clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused,
1279                     src0_sel:$src0_sel, src1_sel:$src1_sel)
1280              /* else */,
1281                // VOP2_DPP with sext modifier
1282                (ins IntInputMods:$src0_imodifiers, Src0RC:$src0,
1283                     IntInputMods:$src1_imodifiers, Src1RC:$src1,
1284                     clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused,
1285                     src0_sel:$src0_sel, src1_sel:$src1_sel)
1286             /* endif */)));
1287}
1288
1289// Outs for DPP and SDWA
1290class getOutsExt <bit HasDst, ValueType DstVT, RegisterOperand DstRCDPP> {
1291  dag ret = !if(HasDst,
1292                !if(!eq(DstVT.Size, 1),
1293                    (outs DstRCDPP:$sdst), // sdst for VOPC
1294                    (outs DstRCDPP:$vdst)),
1295                (outs)); // V_NOP
1296}
1297
1298// Returns the assembly string for the inputs and outputs of a VOP[12C]
1299// instruction.  This does not add the _e32 suffix, so it can be reused
1300// by getAsm64.
1301class getAsm32 <bit HasDst, int NumSrcArgs, ValueType DstVT = i32> {
1302  string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC
1303  string src0 = ", $src0";
1304  string src1 = ", $src1";
1305  string src2 = ", $src2";
1306  string ret = !if(HasDst, dst, "") #
1307               !if(!eq(NumSrcArgs, 1), src0, "") #
1308               !if(!eq(NumSrcArgs, 2), src0#src1, "") #
1309               !if(!eq(NumSrcArgs, 3), src0#src1#src2, "");
1310}
1311
1312// Returns the assembly string for the inputs and outputs of a VOP3
1313// instruction.
1314class getAsm64 <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> {
1315  string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC
1316  string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,");
1317  string src1 = !if(!eq(NumSrcArgs, 1), "",
1318                   !if(!eq(NumSrcArgs, 2), " $src1_modifiers",
1319                                           " $src1_modifiers,"));
1320  string src2 = !if(!eq(NumSrcArgs, 3), " $src2_modifiers", "");
1321  string ret =
1322  !if(!eq(HasModifiers, 0),
1323      getAsm32<HasDst, NumSrcArgs, DstVT>.ret,
1324      dst#", "#src0#src1#src2#"$clamp"#"$omod");
1325}
1326
1327class getAsmDPP <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> {
1328  string dst = !if(HasDst,
1329                   !if(!eq(DstVT.Size, 1),
1330                       "$sdst",
1331                       "$vdst"),
1332                    ""); // use $sdst for VOPC
1333  string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,");
1334  string src1 = !if(!eq(NumSrcArgs, 1), "",
1335                   !if(!eq(NumSrcArgs, 2), " $src1_modifiers",
1336                                           " $src1_modifiers,"));
1337  string args = !if(!eq(HasModifiers, 0),
1338                     getAsm32<0, NumSrcArgs, DstVT>.ret,
1339                     ", "#src0#src1);
1340  string ret = dst#args#" $dpp_ctrl$row_mask$bank_mask$bound_ctrl";
1341}
1342
1343class getAsmSDWA <bit HasDst, int NumSrcArgs, bit HasFloatModifiers,
1344                  ValueType DstVT = i32> {
1345  string dst = !if(HasDst,
1346                   !if(!eq(DstVT.Size, 1),
1347                       "$sdst", // use $sdst for VOPC
1348                       "$vdst"),
1349                    "");
1350  string src0 = !if(HasFloatModifiers, "$src0_fmodifiers", "$src0_imodifiers");
1351  string src1 = !if(HasFloatModifiers, "$src1_fmodifiers", "$src1_imodifiers");
1352  string args = !if(!eq(NumSrcArgs, 0),
1353                    "",
1354                    !if(!eq(NumSrcArgs, 1),
1355                        ", "#src0#"$clamp",
1356                        ", "#src0#", "#src1#"$clamp"
1357                     )
1358                );
1359  string sdwa = !if(!eq(NumSrcArgs, 0),
1360                    "",
1361                    !if(!eq(NumSrcArgs, 1),
1362                        " $dst_sel $dst_unused $src0_sel",
1363                        " $dst_sel $dst_unused $src0_sel $src1_sel"
1364                    )
1365                );
1366  string ret = dst#args#sdwa;
1367}
1368
1369// Function that checks if instruction supports DPP and SDWA
1370class getHasExt <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32,
1371                 ValueType Src1VT = i32> {
1372  bit ret = !if(!eq(NumSrcArgs, 3),
1373                0, // NumSrcArgs == 3 - No DPP or SDWA for VOP3
1374                !if(!eq(DstVT.Size, 64),
1375                    0, // 64-bit dst - No DPP or SDWA for 64-bit operands
1376                    !if(!eq(Src0VT.Size, 64),
1377                        0, // 64-bit src0
1378                        !if(!eq(Src0VT.Size, 64),
1379                            0, // 64-bit src2
1380                            1
1381                        )
1382                    )
1383                )
1384            );
1385}
1386
1387class VOPProfile <list<ValueType> _ArgVT> {
1388
1389  field list<ValueType> ArgVT = _ArgVT;
1390
1391  field ValueType DstVT = ArgVT[0];
1392  field ValueType Src0VT = ArgVT[1];
1393  field ValueType Src1VT = ArgVT[2];
1394  field ValueType Src2VT = ArgVT[3];
1395  field RegisterOperand DstRC = getVALUDstForVT<DstVT>.ret;
1396  field RegisterOperand DstRCDPP = getVALUDstForVT<DstVT>.ret;
1397  field RegisterOperand DstRCSDWA = getVALUDstForVT<DstVT>.ret;
1398  field RegisterOperand Src0RC32 = getVOPSrc0ForVT<Src0VT>.ret;
1399  field RegisterClass Src1RC32 = getVregSrcForVT<Src1VT>.ret;
1400  field RegisterOperand Src0RC64 = getVOP3SrcForVT<Src0VT>.ret;
1401  field RegisterOperand Src1RC64 = getVOP3SrcForVT<Src1VT>.ret;
1402  field RegisterOperand Src2RC64 = getVOP3SrcForVT<Src2VT>.ret;
1403  field RegisterClass Src0DPP = getVregSrcForVT<Src0VT>.ret;
1404  field RegisterClass Src1DPP = getVregSrcForVT<Src1VT>.ret;
1405  field RegisterClass Src0SDWA = getVregSrcForVT<Src0VT>.ret;
1406  field RegisterClass Src1SDWA = getVregSrcForVT<Src1VT>.ret;
1407
1408  field bit HasDst = !if(!eq(DstVT.Value, untyped.Value), 0, 1);
1409  field bit HasDst32 = HasDst;
1410  field int NumSrcArgs = getNumSrcArgs<Src0VT, Src1VT, Src2VT>.ret;
1411  field bit HasModifiers = hasModifiers<Src0VT>.ret;
1412
1413  field bit HasExt = getHasExt<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret;
1414
1415  field dag Outs = !if(HasDst,(outs DstRC:$vdst),(outs));
1416
1417  // VOP3b instructions are a special case with a second explicit
1418  // output. This is manually overridden for them.
1419  field dag Outs32 = Outs;
1420  field dag Outs64 = Outs;
1421  field dag OutsDPP = getOutsExt<HasDst, DstVT, DstRCDPP>.ret;
1422  field dag OutsSDWA = getOutsExt<HasDst, DstVT, DstRCDPP>.ret;
1423
1424  field dag Ins32 = getIns32<Src0RC32, Src1RC32, NumSrcArgs>.ret;
1425  field dag Ins64 = getIns64<Src0RC64, Src1RC64, Src2RC64, NumSrcArgs,
1426                             HasModifiers>.ret;
1427  field dag InsDPP = getInsDPP<Src0DPP, Src1DPP, NumSrcArgs, HasModifiers>.ret;
1428  field dag InsSDWA = getInsSDWA<Src0SDWA, Src1SDWA, NumSrcArgs, HasModifiers>.ret;
1429
1430  field string Asm32 = getAsm32<HasDst, NumSrcArgs, DstVT>.ret;
1431  field string Asm64 = getAsm64<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret;
1432  field string AsmDPP = getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret;
1433  field string AsmSDWA = getAsmSDWA<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret;
1434}
1435
1436class VOP_NO_EXT <VOPProfile p> : VOPProfile <p.ArgVT> {
1437  let HasExt = 0;
1438}
1439
1440// FIXME: I think these F16/I16 profiles will need to use f16/i16 types in order
1441//        for the instruction patterns to work.
1442def VOP_F16_F16 : VOPProfile <[f16, f16, untyped, untyped]>;
1443def VOP_F16_I16 : VOPProfile <[f16, i32, untyped, untyped]>;
1444def VOP_I16_F16 : VOPProfile <[i32, f16, untyped, untyped]>;
1445
1446def VOP_F16_F16_F16 : VOPProfile <[f16, f16, f16, untyped]>;
1447def VOP_F16_F16_I16 : VOPProfile <[f16, f16, i32, untyped]>;
1448def VOP_I16_I16_I16 : VOPProfile <[i32, i32, i32, untyped]>;
1449
1450def VOP_I16_I16_I16_I16 : VOPProfile <[i32, i32, i32, i32, untyped]>;
1451def VOP_F16_F16_F16_F16 : VOPProfile <[f16, f16, f16, f16, untyped]>;
1452
1453def VOP_NONE : VOPProfile <[untyped, untyped, untyped, untyped]>;
1454
1455def VOP_F32_F32 : VOPProfile <[f32, f32, untyped, untyped]>;
1456def VOP_F32_F64 : VOPProfile <[f32, f64, untyped, untyped]>;
1457def VOP_F32_I32 : VOPProfile <[f32, i32, untyped, untyped]>;
1458def VOP_F64_F32 : VOPProfile <[f64, f32, untyped, untyped]>;
1459def VOP_F64_F64 : VOPProfile <[f64, f64, untyped, untyped]>;
1460def VOP_F64_I32 : VOPProfile <[f64, i32, untyped, untyped]>;
1461def VOP_I32_F32 : VOPProfile <[i32, f32, untyped, untyped]>;
1462def VOP_I32_F64 : VOPProfile <[i32, f64, untyped, untyped]>;
1463def VOP_I32_I32 : VOPProfile <[i32, i32, untyped, untyped]>;
1464
1465def VOP_F32_F32_F32 : VOPProfile <[f32, f32, f32, untyped]>;
1466def VOP_F32_F32_I32 : VOPProfile <[f32, f32, i32, untyped]>;
1467def VOP_F64_F64_F64 : VOPProfile <[f64, f64, f64, untyped]>;
1468def VOP_F64_F64_I32 : VOPProfile <[f64, f64, i32, untyped]>;
1469def VOP_I32_F32_F32 : VOPProfile <[i32, f32, f32, untyped]>;
1470def VOP_I32_F32_I32 : VOPProfile <[i32, f32, i32, untyped]>;
1471def VOP_I32_I32_I32 : VOPProfile <[i32, i32, i32, untyped]>;
1472
1473// Write out to vcc or arbitrary SGPR.
1474def VOP2b_I32_I1_I32_I32 : VOPProfile<[i32, i32, i32, untyped]> {
1475  let Asm32 = "$vdst, vcc, $src0, $src1";
1476  let Asm64 = "$vdst, $sdst, $src0, $src1";
1477  let Outs32 = (outs DstRC:$vdst);
1478  let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst);
1479}
1480
1481// Write out to vcc or arbitrary SGPR and read in from vcc or
1482// arbitrary SGPR.
1483def VOP2b_I32_I1_I32_I32_I1 : VOPProfile<[i32, i32, i32, i1]> {
1484  // We use VCSrc_32 to exclude literal constants, even though the
1485  // encoding normally allows them since the implicit VCC use means
1486  // using one would always violate the constant bus
1487  // restriction. SGPRs are still allowed because it should
1488  // technically be possible to use VCC again as src0.
1489  let Src0RC32 = VCSrc_32;
1490  let Asm32 = "$vdst, vcc, $src0, $src1, vcc";
1491  let Asm64 = "$vdst, $sdst, $src0, $src1, $src2";
1492  let Outs32 = (outs DstRC:$vdst);
1493  let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst);
1494
1495  // Suppress src2 implied by type since the 32-bit encoding uses an
1496  // implicit VCC use.
1497  let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1);
1498}
1499
1500// Read in from vcc or arbitrary SGPR
1501def VOP2e_I32_I32_I32_I1 : VOPProfile<[i32, i32, i32, i1]> {
1502  let Src0RC32 = VCSrc_32; // See comment in def VOP2b_I32_I1_I32_I32_I1 above.
1503  let Asm32 = "$vdst, $src0, $src1, vcc";
1504  let Asm64 = "$vdst, $src0, $src1, $src2";
1505  let Outs32 = (outs DstRC:$vdst);
1506  let Outs64 = (outs DstRC:$vdst);
1507
1508  // Suppress src2 implied by type since the 32-bit encoding uses an
1509  // implicit VCC use.
1510  let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1);
1511}
1512
1513class VOP3b_Profile<ValueType vt> : VOPProfile<[vt, vt, vt, vt]> {
1514  let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst);
1515  let Asm64 = "$vdst, $sdst, $src0_modifiers, $src1_modifiers, $src2_modifiers"#"$clamp"#"$omod";
1516}
1517
1518def VOP3b_F32_I1_F32_F32_F32 : VOP3b_Profile<f32> {
1519  // FIXME: Hack to stop printing _e64
1520  let DstRC = RegisterOperand<VGPR_32>;
1521}
1522
1523def VOP3b_F64_I1_F64_F64_F64 : VOP3b_Profile<f64> {
1524  // FIXME: Hack to stop printing _e64
1525  let DstRC = RegisterOperand<VReg_64>;
1526}
1527
1528// VOPC instructions are a special case because for the 32-bit
1529// encoding, we want to display the implicit vcc write as if it were
1530// an explicit $dst.
1531class VOPC_Profile<ValueType vt0, ValueType vt1 = vt0> : VOPProfile <[i1, vt0, vt1, untyped]> {
1532  let Asm32 = "vcc, $src0, $src1";
1533  // The destination for 32-bit encoding is implicit.
1534  let HasDst32 = 0;
1535  let Outs64 = (outs DstRC:$sdst);
1536}
1537
1538class VOPC_Class_Profile<ValueType vt> : VOPC_Profile<vt, i32> {
1539  let Ins64 = (ins FPInputMods:$src0_modifiers, Src0RC64:$src0, Src1RC64:$src1);
1540  let Asm64 = "$sdst, $src0_modifiers, $src1";
1541}
1542
1543def VOPC_I1_F32_F32 : VOPC_Profile<f32>;
1544def VOPC_I1_F64_F64 : VOPC_Profile<f64>;
1545def VOPC_I1_I32_I32 : VOPC_Profile<i32>;
1546def VOPC_I1_I64_I64 : VOPC_Profile<i64>;
1547
1548def VOPC_I1_F32_I32 : VOPC_Class_Profile<f32>;
1549def VOPC_I1_F64_I32 : VOPC_Class_Profile<f64>;
1550
1551def VOP_I64_I64_I32 : VOPProfile <[i64, i64, i32, untyped]>;
1552def VOP_I64_I32_I64 : VOPProfile <[i64, i32, i64, untyped]>;
1553def VOP_I64_I64_I64 : VOPProfile <[i64, i64, i64, untyped]>;
1554
1555def VOP_F32_F32_F32_F32 : VOPProfile <[f32, f32, f32, f32]>;
1556def VOP_MADAK : VOPProfile <[f32, f32, f32, f32]> {
1557  field dag Ins32 = (ins VCSrc_32:$src0, VGPR_32:$src1, u32imm:$imm);
1558  field string Asm32 = "$vdst, $src0, $src1, $imm";
1559  field bit HasExt = 0;
1560}
1561def VOP_MADMK : VOPProfile <[f32, f32, f32, f32]> {
1562  field dag Ins32 = (ins VCSrc_32:$src0, u32imm:$imm, VGPR_32:$src1);
1563  field string Asm32 = "$vdst, $src0, $imm, $src1";
1564  field bit HasExt = 0;
1565}
1566def VOP_MAC : VOPProfile <[f32, f32, f32, f32]> {
1567  let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1, VGPR_32:$src2);
1568  let Ins64 = getIns64<Src0RC64, Src1RC64, RegisterOperand<VGPR_32>, 3,
1569                             HasModifiers>.ret;
1570  let InsDPP = (ins FPInputMods:$src0_modifiers, Src0RC32:$src0,
1571                    FPInputMods:$src1_modifiers, Src1RC32:$src1,
1572                    VGPR_32:$src2, // stub argument
1573                    dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
1574                    bank_mask:$bank_mask, bound_ctrl:$bound_ctrl);
1575  let InsSDWA = (ins FPInputMods:$src0_fmodifiers, Src0RC32:$src0,
1576                     FPInputMods:$src1_fmodifiers, Src1RC32:$src1,
1577                     VGPR_32:$src2, // stub argument
1578                     clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused,
1579                     src0_sel:$src0_sel, src1_sel:$src1_sel);
1580  let Asm32 = getAsm32<1, 2, f32>.ret;
1581  let Asm64 = getAsm64<1, 2, HasModifiers, f32>.ret;
1582  let AsmDPP = getAsmDPP<1, 2, HasModifiers, f32>.ret;
1583  let AsmSDWA = getAsmSDWA<1, 2, HasModifiers, f32>.ret;
1584}
1585def VOP_F64_F64_F64_F64 : VOPProfile <[f64, f64, f64, f64]>;
1586def VOP_I32_I32_I32_I32 : VOPProfile <[i32, i32, i32, i32]>;
1587def VOP_I64_I32_I32_I64 : VOPProfile <[i64, i32, i32, i64]>;
1588
1589// This class is used only with VOPC instructions. Use $sdst for out operand
1590class SIInstAlias <string asm, Instruction inst, VOPProfile p> :
1591    InstAlias <asm, (inst)>, PredicateControl {
1592
1593  field bit isCompare;
1594  field bit isCommutable;
1595
1596  let ResultInst =
1597    !if (p.HasDst32,
1598      !if (!eq(p.NumSrcArgs, 0),
1599        // 1 dst, 0 src
1600        (inst p.DstRC:$sdst),
1601      !if (!eq(p.NumSrcArgs, 1),
1602        // 1 dst, 1 src
1603        (inst p.DstRC:$sdst, p.Src0RC32:$src0),
1604      !if (!eq(p.NumSrcArgs, 2),
1605        // 1 dst, 2 src
1606        (inst p.DstRC:$sdst, p.Src0RC32:$src0, p.Src1RC32:$src1),
1607      // else - unreachable
1608        (inst)))),
1609    // else
1610      !if (!eq(p.NumSrcArgs, 2),
1611        // 0 dst, 2 src
1612        (inst p.Src0RC32:$src0, p.Src1RC32:$src1),
1613      !if (!eq(p.NumSrcArgs, 1),
1614        // 0 dst, 1 src
1615        (inst p.Src0RC32:$src1),
1616      // else
1617        // 0 dst, 0 src
1618        (inst))));
1619}
1620
1621class SIInstAliasSI <string asm, string op_name, VOPProfile p> :
1622  SIInstAlias <asm, !cast<Instruction>(op_name#"_e32_si"), p> {
1623  let AssemblerPredicate = SIAssemblerPredicate;
1624}
1625
1626class SIInstAliasVI <string asm, string op_name, VOPProfile p> :
1627  SIInstAlias <asm, !cast<Instruction>(op_name#"_e32_vi"), p> {
1628  let AssemblerPredicates = [isVI];
1629}
1630
1631multiclass SIInstAliasBuilder <string asm, VOPProfile p> {
1632
1633  def : SIInstAliasSI <asm, NAME, p>;
1634
1635  def : SIInstAliasVI <asm, NAME, p>;
1636}
1637
1638class VOP <string opName> {
1639  string OpName = opName;
1640}
1641
1642class VOP2_REV <string revOp, bit isOrig> {
1643  string RevOp = revOp;
1644  bit IsOrig = isOrig;
1645}
1646
1647class AtomicNoRet <string noRetOp, bit isRet> {
1648  string NoRetOp = noRetOp;
1649  bit IsRet = isRet;
1650}
1651
1652class VOP1_Pseudo <dag outs, dag ins, list<dag> pattern, string opName> :
1653  VOP1Common <outs, ins, "", pattern>,
1654  VOP <opName>,
1655  SIMCInstr <opName#"_e32", SIEncodingFamily.NONE>,
1656  MnemonicAlias<opName#"_e32", opName> {
1657  let isPseudo = 1;
1658  let isCodeGenOnly = 1;
1659
1660  field bits<8> vdst;
1661  field bits<9> src0;
1662}
1663
1664class VOP1_Real_si <string opName, vop1 op, dag outs, dag ins, string asm> :
1665  VOP1<op.SI, outs, ins, asm, []>,
1666  SIMCInstr <opName#"_e32", SIEncodingFamily.SI> {
1667  let AssemblerPredicate = SIAssemblerPredicate;
1668  let DecoderNamespace = "SICI";
1669  let DisableDecoder = DisableSIDecoder;
1670}
1671
1672class VOP1_Real_vi <string opName, vop1 op, dag outs, dag ins, string asm> :
1673  VOP1<op.VI, outs, ins, asm, []>,
1674  SIMCInstr <opName#"_e32", SIEncodingFamily.VI> {
1675  let AssemblerPredicates = [isVI];
1676  let DecoderNamespace = "VI";
1677  let DisableDecoder = DisableVIDecoder;
1678}
1679
1680multiclass VOP1_m <vop1 op, string opName, VOPProfile p, list<dag> pattern,
1681                   string asm = opName#p.Asm32> {
1682  def "" : VOP1_Pseudo <p.Outs, p.Ins32, pattern, opName>;
1683
1684  def _si : VOP1_Real_si <opName, op, p.Outs, p.Ins32, asm>;
1685
1686  def _vi : VOP1_Real_vi <opName, op, p.Outs, p.Ins32, asm>;
1687
1688}
1689
1690class VOP1_DPP <vop1 op, string opName, VOPProfile p> :
1691  VOP1_DPPe <op.VI>,
1692  VOP_DPP <p.OutsDPP, p.InsDPP, opName#p.AsmDPP, [], p.HasModifiers> {
1693  let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]);
1694  let DecoderNamespace = "DPP";
1695  let DisableDecoder = DisableVIDecoder;
1696  let src0_modifiers = !if(p.HasModifiers, ?, 0);
1697  let src1_modifiers = 0;
1698}
1699
1700class SDWADisableFields <VOPProfile p> {
1701  bits<8> src0 = !if(!eq(p.NumSrcArgs, 0), 0, ?);
1702  bits<3> src0_sel = !if(!eq(p.NumSrcArgs, 0), 6, ?);
1703  bits<2> src0_fmodifiers = !if(!eq(p.NumSrcArgs, 0),
1704                                0,
1705                                !if(p.HasModifiers, ?, 0));
1706  bits<1> src0_imodifiers = !if(!eq(p.NumSrcArgs, 0),
1707                                0,
1708                                !if(p.HasModifiers, 0, ?));
1709  bits<3> src1_sel = !if(!eq(p.NumSrcArgs, 0), 6,
1710                         !if(!eq(p.NumSrcArgs, 1), 6,
1711                             ?));
1712  bits<2> src1_fmodifiers = !if(!eq(p.NumSrcArgs, 0), 0,
1713                                !if(!eq(p.NumSrcArgs, 1), 0,
1714                                    !if(p.HasModifiers, ?, 0)));
1715  bits<1> src1_imodifiers = !if(!eq(p.NumSrcArgs, 0), 0,
1716                                !if(!eq(p.NumSrcArgs, 1), 0,
1717                                    !if(p.HasModifiers, 0, ?)));
1718  bits<3> dst_sel = !if(p.HasDst, ?, 6);
1719  bits<2> dst_unused = !if(p.HasDst, ?, 2);
1720  bits<1> clamp = !if(!eq(p.NumSrcArgs, 0), 0, ?);
1721}
1722
1723class VOP1_SDWA <vop1 op, string opName, VOPProfile p> :
1724  VOP1_SDWAe <op.VI>,
1725  VOP_SDWA <p.OutsSDWA, p.InsSDWA, opName#p.AsmSDWA, [], p.HasModifiers>,
1726  SDWADisableFields <p> {
1727  let AsmMatchConverter = "cvtSdwaVOP1";
1728  let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]);
1729  let DecoderNamespace = "SDWA";
1730  let DisableDecoder = DisableVIDecoder;
1731}
1732
1733multiclass VOP1SI_m <vop1 op, string opName, VOPProfile p, list<dag> pattern,
1734                     string asm = opName#p.Asm32> {
1735
1736  def "" : VOP1_Pseudo <p.Outs, p.Ins32, pattern, opName>;
1737
1738  def _si : VOP1_Real_si <opName, op, p.Outs, p.Ins32, asm>;
1739}
1740
1741class VOP2_Pseudo <dag outs, dag ins, list<dag> pattern, string opName> :
1742  VOP2Common <outs, ins, "", pattern>,
1743  VOP <opName>,
1744  SIMCInstr<opName#"_e32", SIEncodingFamily.NONE>,
1745  MnemonicAlias<opName#"_e32", opName> {
1746  let isPseudo = 1;
1747  let isCodeGenOnly = 1;
1748}
1749
1750class VOP2_Real_si <string opName, vop2 op, dag outs, dag ins, string asm> :
1751  VOP2 <op.SI, outs, ins, opName#asm, []>,
1752  SIMCInstr <opName#"_e32", SIEncodingFamily.SI> {
1753  let AssemblerPredicates = [isSICI];
1754  let DecoderNamespace = "SICI";
1755  let DisableDecoder = DisableSIDecoder;
1756}
1757
1758class VOP2_Real_vi <string opName, vop2 op, dag outs, dag ins, string asm> :
1759  VOP2 <op.VI, outs, ins, opName#asm, []>,
1760  SIMCInstr <opName#"_e32", SIEncodingFamily.VI> {
1761  let AssemblerPredicates = [isVI];
1762  let DecoderNamespace = "VI";
1763  let DisableDecoder = DisableVIDecoder;
1764}
1765
1766multiclass VOP2SI_m <vop2 op, string opName, VOPProfile p, list<dag> pattern,
1767                     string revOp> {
1768
1769  def "" : VOP2_Pseudo <p.Outs32, p.Ins32, pattern, opName>,
1770           VOP2_REV<revOp#"_e32", !eq(revOp, opName)>;
1771
1772  def _si : VOP2_Real_si <opName, op, p.Outs32, p.Ins32, p.Asm32>;
1773}
1774
1775multiclass VOP2_m <vop2 op, string opName, VOPProfile p, list <dag> pattern,
1776                   string revOp> {
1777
1778  def "" : VOP2_Pseudo <p.Outs32, p.Ins32, pattern, opName>,
1779           VOP2_REV<revOp#"_e32", !eq(revOp, opName)>;
1780
1781  def _si : VOP2_Real_si <opName, op, p.Outs32, p.Ins32, p.Asm32>;
1782
1783  def _vi : VOP2_Real_vi <opName, op, p.Outs32, p.Ins32, p.Asm32>;
1784
1785}
1786
1787class VOP2_DPP <vop2 op, string opName, VOPProfile p> :
1788  VOP2_DPPe <op.VI>,
1789  VOP_DPP <p.OutsDPP, p.InsDPP, opName#p.AsmDPP, [], p.HasModifiers> {
1790  let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]);
1791  let DecoderNamespace = "DPP";
1792  let DisableDecoder = DisableVIDecoder;
1793  let src0_modifiers = !if(p.HasModifiers, ?, 0);
1794  let src1_modifiers = !if(p.HasModifiers, ?, 0);
1795}
1796
1797class VOP2_SDWA <vop2 op, string opName, VOPProfile p> :
1798  VOP2_SDWAe <op.VI>,
1799  VOP_SDWA <p.OutsSDWA, p.InsSDWA, opName#p.AsmSDWA, [], p.HasModifiers>,
1800  SDWADisableFields <p> {
1801  let AsmMatchConverter = "cvtSdwaVOP2";
1802  let AssemblerPredicates = !if(p.HasExt, [isVI], [DisableInst]);
1803  let DecoderNamespace = "SDWA";
1804  let DisableDecoder = DisableVIDecoder;
1805}
1806
1807class VOP3DisableFields <bit HasSrc1, bit HasSrc2, bit HasModifiers> {
1808
1809  bits<2> src0_modifiers = !if(HasModifiers, ?, 0);
1810  bits<2> src1_modifiers = !if(HasModifiers, !if(HasSrc1, ?, 0), 0);
1811  bits<2> src2_modifiers = !if(HasModifiers, !if(HasSrc2, ?, 0), 0);
1812  bits<2> omod = !if(HasModifiers, ?, 0);
1813  bits<1> clamp = !if(HasModifiers, ?, 0);
1814  bits<9> src1 = !if(HasSrc1, ?, 0);
1815  bits<9> src2 = !if(HasSrc2, ?, 0);
1816}
1817
1818class VOP3DisableModFields <bit HasSrc0Mods,
1819                            bit HasSrc1Mods = 0,
1820                            bit HasSrc2Mods = 0,
1821                            bit HasOutputMods = 0> {
1822  bits<2> src0_modifiers = !if(HasSrc0Mods, ?, 0);
1823  bits<2> src1_modifiers = !if(HasSrc1Mods, ?, 0);
1824  bits<2> src2_modifiers = !if(HasSrc2Mods, ?, 0);
1825  bits<2> omod = !if(HasOutputMods, ?, 0);
1826  bits<1> clamp = !if(HasOutputMods, ?, 0);
1827}
1828
1829class VOP3_Pseudo <dag outs, dag ins, list<dag> pattern, string opName,
1830                   bit HasMods = 0, bit VOP3Only = 0> :
1831  VOP3Common <outs, ins, "", pattern, HasMods, VOP3Only>,
1832  VOP <opName>,
1833  SIMCInstr<opName#"_e64", SIEncodingFamily.NONE>,
1834  MnemonicAlias<opName#"_e64", opName> {
1835  let isPseudo = 1;
1836  let isCodeGenOnly = 1;
1837
1838  field bit vdst;
1839  field bit src0;
1840}
1841
1842class VOP3_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName,
1843                    bit HasMods = 0, bit VOP3Only = 0> :
1844  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1845  VOP3e <op>,
1846  SIMCInstr<opName#"_e64", SIEncodingFamily.SI> {
1847  let AssemblerPredicates = [isSICI];
1848  let DecoderNamespace = "SICI";
1849  let DisableDecoder = DisableSIDecoder;
1850}
1851
1852class VOP3_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName,
1853                    bit HasMods = 0, bit VOP3Only = 0> :
1854  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1855  VOP3e_vi <op>,
1856  SIMCInstr <opName#"_e64", SIEncodingFamily.VI> {
1857  let AssemblerPredicates = [isVI];
1858  let DecoderNamespace = "VI";
1859  let DisableDecoder = DisableVIDecoder;
1860}
1861
1862class VOP3_C_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName,
1863                     bit HasMods = 0, bit VOP3Only = 0> :
1864  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1865  VOP3ce <op>,
1866  SIMCInstr<opName#"_e64", SIEncodingFamily.SI> {
1867  let AssemblerPredicates = [isSICI];
1868  let DecoderNamespace = "SICI";
1869  let DisableDecoder = DisableSIDecoder;
1870}
1871
1872class VOP3_C_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName,
1873                      bit HasMods = 0, bit VOP3Only = 0> :
1874  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1875  VOP3ce_vi <op>,
1876  SIMCInstr <opName#"_e64", SIEncodingFamily.VI> {
1877  let AssemblerPredicates = [isVI];
1878  let DecoderNamespace = "VI";
1879  let DisableDecoder = DisableVIDecoder;
1880}
1881
1882class VOP3b_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName,
1883                     bit HasMods = 0, bit VOP3Only = 0> :
1884  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1885  VOP3be <op>,
1886  SIMCInstr<opName#"_e64", SIEncodingFamily.SI> {
1887  let AssemblerPredicates = [isSICI];
1888  let DecoderNamespace = "SICI";
1889  let DisableDecoder = DisableSIDecoder;
1890}
1891
1892class VOP3b_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName,
1893                     bit HasMods = 0, bit VOP3Only = 0> :
1894  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1895  VOP3be_vi <op>,
1896  SIMCInstr <opName#"_e64", SIEncodingFamily.VI> {
1897  let AssemblerPredicates = [isVI];
1898  let DecoderNamespace = "VI";
1899  let DisableDecoder = DisableVIDecoder;
1900}
1901
1902class VOP3e_Real_si <bits<9> op, dag outs, dag ins, string asm, string opName,
1903                     bit HasMods = 0, bit VOP3Only = 0> :
1904  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1905  VOP3e <op>,
1906  SIMCInstr<opName#"_e64", SIEncodingFamily.SI> {
1907  let AssemblerPredicates = [isSICI];
1908  let DecoderNamespace = "SICI";
1909  let DisableDecoder = DisableSIDecoder;
1910}
1911
1912class VOP3e_Real_vi <bits<10> op, dag outs, dag ins, string asm, string opName,
1913                     bit HasMods = 0, bit VOP3Only = 0> :
1914  VOP3Common <outs, ins, asm, [], HasMods, VOP3Only>,
1915  VOP3e_vi <op>,
1916  SIMCInstr <opName#"_e64", SIEncodingFamily.VI> {
1917  let AssemblerPredicates = [isVI];
1918  let DecoderNamespace = "VI";
1919  let DisableDecoder = DisableVIDecoder;
1920}
1921
1922multiclass VOP3_m <vop op, dag outs, dag ins, string asm, list<dag> pattern,
1923                   string opName, int NumSrcArgs, bit HasMods = 1, bit VOP3Only = 0> {
1924
1925  def "" : VOP3_Pseudo <outs, ins, pattern, opName>;
1926
1927  def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods, VOP3Only>,
1928            VOP3DisableFields<!if(!eq(NumSrcArgs, 1), 0, 1),
1929                              !if(!eq(NumSrcArgs, 2), 0, 1),
1930                              HasMods>;
1931  def _vi : VOP3_Real_vi <op.VI3, outs, ins, asm, opName, HasMods, VOP3Only>,
1932            VOP3DisableFields<!if(!eq(NumSrcArgs, 1), 0, 1),
1933                              !if(!eq(NumSrcArgs, 2), 0, 1),
1934                              HasMods>;
1935}
1936
1937multiclass VOP3_1_m <vop op, dag outs, dag ins, string asm,
1938                     list<dag> pattern, string opName, bit HasMods = 1> {
1939
1940  def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>;
1941
1942  def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>,
1943            VOP3DisableFields<0, 0, HasMods>;
1944
1945  def _vi : VOP3_Real_vi <op.VI3, outs, ins, asm, opName, HasMods>,
1946            VOP3DisableFields<0, 0, HasMods>;
1947}
1948
1949multiclass VOP3SI_1_m <vop op, dag outs, dag ins, string asm,
1950                     list<dag> pattern, string opName, bit HasMods = 1> {
1951
1952  def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>;
1953
1954  def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>,
1955            VOP3DisableFields<0, 0, HasMods>;
1956  // No VI instruction. This class is for SI only.
1957}
1958
1959multiclass VOP3_2_m <vop op, dag outs, dag ins, string asm,
1960                     list<dag> pattern, string opName, string revOp,
1961                     bit HasMods = 1> {
1962
1963  def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>,
1964           VOP2_REV<revOp#"_e64", !eq(revOp, opName)>;
1965
1966  def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>,
1967            VOP3DisableFields<1, 0, HasMods>;
1968
1969  def _vi : VOP3_Real_vi <op.VI3, outs, ins, asm, opName, HasMods>,
1970            VOP3DisableFields<1, 0, HasMods>;
1971}
1972
1973multiclass VOP3SI_2_m <vop op, dag outs, dag ins, string asm,
1974                     list<dag> pattern, string opName, string revOp,
1975                     bit HasMods = 1> {
1976
1977  def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>,
1978           VOP2_REV<revOp#"_e64", !eq(revOp, opName)>;
1979
1980  def _si : VOP3_Real_si <op.SI3, outs, ins, asm, opName, HasMods>,
1981            VOP3DisableFields<1, 0, HasMods>;
1982
1983  // No VI instruction. This class is for SI only.
1984}
1985
1986// Two operand VOP3b instruction that may have a 3rd SGPR bool operand
1987// instead of an implicit VCC as in the VOP2b format.
1988multiclass VOP3b_2_3_m <vop op, dag outs, dag ins, string asm,
1989                        list<dag> pattern, string opName, string revOp,
1990                        bit HasMods = 1, bit useSrc2Input = 0, bit VOP3Only = 0> {
1991  def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods, VOP3Only>;
1992
1993  def _si : VOP3b_Real_si <op.SI3, outs, ins, asm, opName, HasMods, VOP3Only>,
1994            VOP3DisableFields<1, useSrc2Input, HasMods>;
1995
1996  def _vi : VOP3b_Real_vi <op.VI3, outs, ins, asm, opName, HasMods, VOP3Only>,
1997            VOP3DisableFields<1, useSrc2Input, HasMods>;
1998}
1999
2000// Same as VOP3b_2_3_m but no 2nd destination (sdst), e.g. v_cndmask_b32.
2001multiclass VOP3e_2_3_m <vop op, dag outs, dag ins, string asm,
2002                        list<dag> pattern, string opName, string revOp,
2003                        bit HasMods = 1, bit useSrc2Input = 0, bit VOP3Only = 0> {
2004  def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods, VOP3Only>;
2005
2006  def _si : VOP3e_Real_si <op.SI3, outs, ins, asm, opName, HasMods, VOP3Only>,
2007            VOP3DisableFields<1, useSrc2Input, HasMods>;
2008
2009  def _vi : VOP3e_Real_vi <op.VI3, outs, ins, asm, opName, HasMods, VOP3Only>,
2010            VOP3DisableFields<1, useSrc2Input, HasMods>;
2011}
2012
2013multiclass VOP3_C_m <vop op, dag outs, dag ins, string asm,
2014                     list<dag> pattern, string opName,
2015                     bit HasMods, bit defExec,
2016                     string revOp, list<SchedReadWrite> sched> {
2017
2018  def "" : VOP3_Pseudo <outs, ins, pattern, opName, HasMods>,
2019           VOP2_REV<revOp#"_e64", !eq(revOp, opName)> {
2020    let Defs = !if(defExec, [EXEC], []);
2021    let SchedRW = sched;
2022  }
2023
2024  def _si : VOP3_C_Real_si <op.SI3, outs, ins, asm, opName, HasMods>,
2025            VOP3DisableFields<1, 0, HasMods> {
2026    let Defs = !if(defExec, [EXEC], []);
2027    let SchedRW = sched;
2028  }
2029
2030  def _vi : VOP3_C_Real_vi <op.VI3, outs, ins, asm, opName, HasMods>,
2031            VOP3DisableFields<1, 0, HasMods> {
2032    let Defs = !if(defExec, [EXEC], []);
2033    let SchedRW = sched;
2034  }
2035}
2036
2037// An instruction that is VOP2 on SI and VOP3 on VI, no modifiers.
2038multiclass VOP2SI_3VI_m <vop3 op, string opName, dag outs, dag ins,
2039                         string asm, list<dag> pattern = []> {
2040  let isPseudo = 1, isCodeGenOnly = 1 in {
2041    def "" : VOPAnyCommon <outs, ins, "", pattern>,
2042             SIMCInstr<opName, SIEncodingFamily.NONE>;
2043  }
2044
2045  def _si : VOP2 <op.SI3{5-0}, outs, ins, asm, []>,
2046            SIMCInstr <opName, SIEncodingFamily.SI> {
2047            let AssemblerPredicates = [isSICI];
2048            let DecoderNamespace = "SICI";
2049            let DisableDecoder = DisableSIDecoder;
2050  }
2051
2052  def _vi : VOP3Common <outs, ins, asm, []>,
2053            VOP3e_vi <op.VI3>,
2054            VOP3DisableFields <1, 0, 0>,
2055            SIMCInstr <opName, SIEncodingFamily.VI> {
2056            let AssemblerPredicates = [isVI];
2057            let DecoderNamespace = "VI";
2058            let DisableDecoder = DisableVIDecoder;
2059  }
2060}
2061
2062multiclass VOP1_Helper <vop1 op, string opName, VOPProfile p, list<dag> pat32,
2063                        list<dag> pat64> {
2064
2065  defm _e32 : VOP1_m <op, opName, p, pat32>;
2066
2067  defm _e64 : VOP3_1_m <op, p.Outs, p.Ins64, opName#p.Asm64, pat64, opName,
2068                        p.HasModifiers>;
2069
2070  def _dpp : VOP1_DPP <op, opName, p>;
2071
2072  def _sdwa : VOP1_SDWA <op, opName, p>;
2073}
2074
2075multiclass VOP1Inst <vop1 op, string opName, VOPProfile P,
2076                     SDPatternOperator node = null_frag> : VOP1_Helper <
2077  op, opName, P, [],
2078  !if(P.HasModifiers,
2079      [(set P.DstVT:$vdst, (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0,
2080                                i32:$src0_modifiers, i1:$clamp, i32:$omod))))],
2081      [(set P.DstVT:$vdst, (node P.Src0VT:$src0))])
2082>;
2083
2084multiclass VOP1InstSI <vop1 op, string opName, VOPProfile P,
2085                       SDPatternOperator node = null_frag> {
2086
2087  defm _e32 : VOP1SI_m <op, opName, P, []>;
2088
2089  defm _e64 : VOP3SI_1_m <op, P.Outs, P.Ins64, opName#P.Asm64,
2090    !if(P.HasModifiers,
2091      [(set P.DstVT:$vdst, (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0,
2092                                i32:$src0_modifiers, i1:$clamp, i32:$omod))))],
2093      [(set P.DstVT:$vdst, (node P.Src0VT:$src0))]),
2094    opName, P.HasModifiers>;
2095}
2096
2097multiclass VOP2_Helper <vop2 op, string opName, VOPProfile p, list<dag> pat32,
2098                        list<dag> pat64, string revOp> {
2099
2100  defm _e32 : VOP2_m <op, opName, p, pat32, revOp>;
2101
2102  defm _e64 : VOP3_2_m <op, p.Outs, p.Ins64, opName#p.Asm64, pat64, opName,
2103                        revOp, p.HasModifiers>;
2104
2105  def _dpp : VOP2_DPP <op, opName, p>;
2106
2107  def _sdwa : VOP2_SDWA <op, opName, p>;
2108}
2109
2110multiclass VOP2Inst <vop2 op, string opName, VOPProfile P,
2111                     SDPatternOperator node = null_frag,
2112                     string revOp = opName> : VOP2_Helper <
2113  op, opName, P, [],
2114  !if(P.HasModifiers,
2115      [(set P.DstVT:$vdst,
2116           (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2117                                      i1:$clamp, i32:$omod)),
2118                 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))],
2119      [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]),
2120  revOp
2121>;
2122
2123multiclass VOP2InstSI <vop2 op, string opName, VOPProfile P,
2124                       SDPatternOperator node = null_frag,
2125                       string revOp = opName> {
2126
2127  defm _e32 : VOP2SI_m <op, opName, P, [], revOp>;
2128
2129  defm _e64 : VOP3SI_2_m <op, P.Outs, P.Ins64, opName#P.Asm64,
2130    !if(P.HasModifiers,
2131        [(set P.DstVT:$vdst,
2132             (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2133                                        i1:$clamp, i32:$omod)),
2134                   (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))],
2135        [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]),
2136    opName, revOp, P.HasModifiers>;
2137}
2138
2139multiclass VOP2e_Helper <vop2 op, string opName, VOPProfile p,
2140                         list<dag> pat32, list<dag> pat64,
2141                         string revOp, bit useSGPRInput> {
2142
2143  let SchedRW = [Write32Bit] in {
2144    let Uses = !if(useSGPRInput, [VCC, EXEC], [EXEC]) in {
2145      defm _e32 : VOP2_m <op, opName, p, pat32, revOp>;
2146    }
2147
2148    defm _e64 : VOP3e_2_3_m <op, p.Outs64, p.Ins64, opName#p.Asm64, pat64,
2149                             opName, revOp, p.HasModifiers, useSGPRInput>;
2150  }
2151}
2152
2153multiclass VOP2eInst <vop2 op, string opName, VOPProfile P,
2154                      SDPatternOperator node = null_frag,
2155                      string revOp = opName> : VOP2e_Helper <
2156  op, opName, P, [],
2157  !if(P.HasModifiers,
2158      [(set P.DstVT:$vdst,
2159           (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2160                                      i1:$clamp, i32:$omod)),
2161                 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))],
2162      [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]),
2163  revOp, !eq(P.NumSrcArgs, 3)
2164>;
2165
2166multiclass VOP2b_Helper <vop2 op, string opName, VOPProfile p,
2167                         list<dag> pat32, list<dag> pat64,
2168                         string revOp, bit useSGPRInput> {
2169
2170  let SchedRW = [Write32Bit, WriteSALU] in {
2171    let Uses = !if(useSGPRInput, [VCC, EXEC], [EXEC]), Defs = [VCC] in {
2172      defm _e32 : VOP2_m <op, opName, p, pat32, revOp>;
2173    }
2174
2175    defm _e64 : VOP3b_2_3_m <op, p.Outs64, p.Ins64, opName#p.Asm64, pat64,
2176                             opName, revOp, p.HasModifiers, useSGPRInput>;
2177  }
2178}
2179
2180multiclass VOP2bInst <vop2 op, string opName, VOPProfile P,
2181                      SDPatternOperator node = null_frag,
2182                      string revOp = opName> : VOP2b_Helper <
2183  op, opName, P, [],
2184  !if(P.HasModifiers,
2185      [(set P.DstVT:$vdst,
2186           (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2187                                      i1:$clamp, i32:$omod)),
2188                 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))],
2189      [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]),
2190  revOp, !eq(P.NumSrcArgs, 3)
2191>;
2192
2193// A VOP2 instruction that is VOP3-only on VI.
2194multiclass VOP2_VI3_Helper <vop23 op, string opName, VOPProfile p,
2195                            list<dag> pat32, list<dag> pat64, string revOp> {
2196
2197  defm _e32 : VOP2SI_m <op, opName, p, pat32, revOp>;
2198
2199  defm _e64 : VOP3_2_m <op, p.Outs, p.Ins64, opName#p.Asm64, pat64, opName,
2200                        revOp, p.HasModifiers>;
2201}
2202
2203multiclass VOP2_VI3_Inst <vop23 op, string opName, VOPProfile P,
2204                          SDPatternOperator node = null_frag,
2205                          string revOp = opName>
2206                          : VOP2_VI3_Helper <
2207  op, opName, P, [],
2208  !if(P.HasModifiers,
2209      [(set P.DstVT:$vdst,
2210           (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2211                                      i1:$clamp, i32:$omod)),
2212                 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))],
2213      [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]),
2214  revOp
2215>;
2216
2217multiclass VOP2MADK <vop2 op, string opName, VOPProfile P, list<dag> pattern = []> {
2218
2219  def "" : VOP2_Pseudo <P.Outs, P.Ins32, pattern, opName>;
2220
2221let isCodeGenOnly = 0 in {
2222  def _si : VOP2Common <P.Outs, P.Ins32,
2223                        !strconcat(opName, P.Asm32), []>,
2224            SIMCInstr <opName#"_e32", SIEncodingFamily.SI>,
2225            VOP2_MADKe <op.SI> {
2226            let AssemblerPredicates = [isSICI];
2227            let DecoderNamespace = "SICI";
2228            let DisableDecoder = DisableSIDecoder;
2229            }
2230
2231  def _vi : VOP2Common <P.Outs, P.Ins32,
2232                        !strconcat(opName, P.Asm32), []>,
2233            SIMCInstr <opName#"_e32", SIEncodingFamily.VI>,
2234            VOP2_MADKe <op.VI> {
2235            let AssemblerPredicates = [isVI];
2236            let DecoderNamespace = "VI";
2237            let DisableDecoder = DisableVIDecoder;
2238            }
2239} // End isCodeGenOnly = 0
2240}
2241
2242class VOPC_Pseudo <dag ins, list<dag> pattern, string opName> :
2243  VOPCCommon <ins, "", pattern>,
2244  VOP <opName>,
2245  SIMCInstr<opName#"_e32", SIEncodingFamily.NONE> {
2246  let isPseudo = 1;
2247  let isCodeGenOnly = 1;
2248}
2249
2250multiclass VOPC_m <vopc op, dag ins, string op_asm, list<dag> pattern,
2251                   string opName, bit DefExec, VOPProfile p,
2252                   list<SchedReadWrite> sched,
2253                   string revOpName = "", string asm = opName#"_e32 "#op_asm,
2254                   string alias_asm = opName#" "#op_asm> {
2255  def "" : VOPC_Pseudo <ins, pattern, opName>,
2256           VOP2_REV<revOpName#"_e32", !eq(revOpName, opName)> {
2257    let Defs = !if(DefExec, [VCC, EXEC], [VCC]);
2258    let SchedRW = sched;
2259  }
2260
2261  let AssemblerPredicates = [isSICI] in {
2262    def _si : VOPC<op.SI, ins, asm, []>,
2263              SIMCInstr <opName#"_e32", SIEncodingFamily.SI> {
2264      let Defs = !if(DefExec, [VCC, EXEC], [VCC]);
2265      let hasSideEffects = DefExec;
2266      let SchedRW = sched;
2267      let DecoderNamespace = "SICI";
2268      let DisableDecoder = DisableSIDecoder;
2269    }
2270
2271  } // End AssemblerPredicates = [isSICI]
2272
2273  let AssemblerPredicates = [isVI] in {
2274    def _vi : VOPC<op.VI, ins, asm, []>,
2275              SIMCInstr <opName#"_e32", SIEncodingFamily.VI> {
2276      let Defs = !if(DefExec, [VCC, EXEC], [VCC]);
2277      let hasSideEffects = DefExec;
2278      let SchedRW = sched;
2279      let DecoderNamespace = "VI";
2280      let DisableDecoder = DisableVIDecoder;
2281    }
2282
2283  } // End AssemblerPredicates = [isVI]
2284
2285  defm : SIInstAliasBuilder<alias_asm, p>;
2286}
2287
2288multiclass VOPC_Helper <vopc op, string opName, list<dag> pat32,
2289                        list<dag> pat64, bit DefExec, string revOp,
2290                        VOPProfile p, list<SchedReadWrite> sched> {
2291  defm _e32 : VOPC_m <op, p.Ins32, p.Asm32, pat32, opName, DefExec, p, sched,
2292                      revOp>;
2293
2294  defm _e64 : VOP3_C_m <op, (outs VOPDstS64:$sdst), p.Ins64, opName#p.Asm64, pat64,
2295                        opName, p.HasModifiers, DefExec, revOp, sched>;
2296}
2297
2298// Special case for class instructions which only have modifiers on
2299// the 1st source operand.
2300multiclass VOPC_Class_Helper <vopc op, string opName, list<dag> pat32,
2301                              list<dag> pat64, bit DefExec, string revOp,
2302                              VOPProfile p, list<SchedReadWrite> sched> {
2303  defm _e32 : VOPC_m <op, p.Ins32, p.Asm32, pat32, opName, DefExec, p, sched>;
2304
2305  defm _e64 : VOP3_C_m <op, (outs VOPDstS64:$sdst), p.Ins64, opName#p.Asm64, pat64,
2306                        opName, p.HasModifiers, DefExec, revOp, sched>,
2307                        VOP3DisableModFields<1, 0, 0>;
2308}
2309
2310multiclass VOPCInst <vopc op, string opName,
2311                     VOPProfile P, PatLeaf cond = COND_NULL,
2312                     string revOp = opName,
2313                     bit DefExec = 0,
2314                     list<SchedReadWrite> sched = [Write32Bit]> :
2315                     VOPC_Helper <
2316  op, opName, [],
2317  !if(P.HasModifiers,
2318      [(set i1:$sdst,
2319          (setcc (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2320                                      i1:$clamp, i32:$omod)),
2321                 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)),
2322                 cond))],
2323      [(set i1:$sdst, (setcc P.Src0VT:$src0, P.Src1VT:$src1, cond))]),
2324  DefExec, revOp, P, sched
2325>;
2326
2327multiclass VOPCClassInst <vopc op, string opName, VOPProfile P,
2328                     bit DefExec = 0,
2329                     list<SchedReadWrite> sched> : VOPC_Class_Helper <
2330  op, opName, [],
2331  !if(P.HasModifiers,
2332      [(set i1:$sdst,
2333          (AMDGPUfp_class (P.Src0VT (VOP3Mods0Clamp0OMod P.Src0VT:$src0, i32:$src0_modifiers)), P.Src1VT:$src1))],
2334      [(set i1:$sdst, (AMDGPUfp_class P.Src0VT:$src0, P.Src1VT:$src1))]),
2335  DefExec, opName, P, sched
2336>;
2337
2338
2339multiclass VOPC_F32 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> :
2340  VOPCInst <op, opName, VOPC_I1_F32_F32, cond, revOp>;
2341
2342multiclass VOPC_F64 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> :
2343  VOPCInst <op, opName, VOPC_I1_F64_F64, cond, revOp, 0, [WriteDoubleAdd]>;
2344
2345multiclass VOPC_I32 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> :
2346  VOPCInst <op, opName, VOPC_I1_I32_I32, cond, revOp>;
2347
2348multiclass VOPC_I64 <vopc op, string opName, PatLeaf cond = COND_NULL, string revOp = opName> :
2349  VOPCInst <op, opName, VOPC_I1_I64_I64, cond, revOp, 0, [Write64Bit]>;
2350
2351
2352multiclass VOPCX <vopc op, string opName, VOPProfile P,
2353                  PatLeaf cond = COND_NULL,
2354                  list<SchedReadWrite> sched,
2355                  string revOp = "">
2356  : VOPCInst <op, opName, P, cond, revOp, 1, sched>;
2357
2358multiclass VOPCX_F32 <vopc op, string opName, string revOp = opName> :
2359  VOPCX <op, opName, VOPC_I1_F32_F32, COND_NULL, [Write32Bit], revOp>;
2360
2361multiclass VOPCX_F64 <vopc op, string opName, string revOp = opName> :
2362  VOPCX <op, opName, VOPC_I1_F64_F64, COND_NULL, [WriteDoubleAdd], revOp>;
2363
2364multiclass VOPCX_I32 <vopc op, string opName, string revOp = opName> :
2365  VOPCX <op, opName, VOPC_I1_I32_I32, COND_NULL, [Write32Bit], revOp>;
2366
2367multiclass VOPCX_I64 <vopc op, string opName, string revOp = opName> :
2368  VOPCX <op, opName, VOPC_I1_I64_I64, COND_NULL, [Write64Bit], revOp>;
2369
2370multiclass VOP3_Helper <vop3 op, string opName, dag outs, dag ins, string asm,
2371                        list<dag> pat, int NumSrcArgs, bit HasMods,
2372                        bit VOP3Only = 0> : VOP3_m <
2373    op, outs, ins, opName#" "#asm, pat, opName, NumSrcArgs, HasMods, VOP3Only
2374>;
2375
2376multiclass VOPC_CLASS_F32 <vopc op, string opName> :
2377  VOPCClassInst <op, opName, VOPC_I1_F32_I32, 0, [Write32Bit]>;
2378
2379multiclass VOPCX_CLASS_F32 <vopc op, string opName> :
2380  VOPCClassInst <op, opName, VOPC_I1_F32_I32, 1, [Write32Bit]>;
2381
2382multiclass VOPC_CLASS_F64 <vopc op, string opName> :
2383  VOPCClassInst <op, opName, VOPC_I1_F64_I32, 0, [WriteDoubleAdd]>;
2384
2385multiclass VOPCX_CLASS_F64 <vopc op, string opName> :
2386  VOPCClassInst <op, opName, VOPC_I1_F64_I32, 1, [WriteDoubleAdd]>;
2387
2388multiclass VOP3Inst <vop3 op, string opName, VOPProfile P,
2389                     SDPatternOperator node = null_frag, bit VOP3Only = 0> :
2390  VOP3_Helper <
2391  op, opName, (outs P.DstRC.RegClass:$vdst), P.Ins64, P.Asm64,
2392  !if(!eq(P.NumSrcArgs, 3),
2393    !if(P.HasModifiers,
2394        [(set P.DstVT:$vdst,
2395            (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2396                                       i1:$clamp, i32:$omod)),
2397                  (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)),
2398                  (P.Src2VT (VOP3Mods P.Src2VT:$src2, i32:$src2_modifiers))))],
2399        [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1,
2400                                  P.Src2VT:$src2))]),
2401  !if(!eq(P.NumSrcArgs, 2),
2402    !if(P.HasModifiers,
2403        [(set P.DstVT:$vdst,
2404            (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2405                                       i1:$clamp, i32:$omod)),
2406                  (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))],
2407        [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))])
2408  /* P.NumSrcArgs == 1 */,
2409    !if(P.HasModifiers,
2410        [(set P.DstVT:$vdst,
2411            (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2412                                       i1:$clamp, i32:$omod))))],
2413        [(set P.DstVT:$vdst, (node P.Src0VT:$src0))]))),
2414  P.NumSrcArgs, P.HasModifiers, VOP3Only
2415>;
2416
2417// Special case for v_div_fmas_{f32|f64}, since it seems to be the
2418// only VOP instruction that implicitly reads VCC.
2419multiclass VOP3_VCC_Inst <vop3 op, string opName,
2420                          VOPProfile P,
2421                          SDPatternOperator node = null_frag> : VOP3_Helper <
2422  op, opName,
2423  (outs P.DstRC.RegClass:$vdst),
2424  (ins FPInputMods:$src0_modifiers, P.Src0RC64:$src0,
2425       FPInputMods:$src1_modifiers, P.Src1RC64:$src1,
2426       FPInputMods:$src2_modifiers, P.Src2RC64:$src2,
2427       clampmod:$clamp,
2428       omod:$omod),
2429  "$vdst, $src0_modifiers, $src1_modifiers, $src2_modifiers"#"$clamp"#"$omod",
2430  [(set P.DstVT:$vdst,
2431            (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers,
2432                                       i1:$clamp, i32:$omod)),
2433                  (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)),
2434                  (P.Src2VT (VOP3Mods P.Src2VT:$src2, i32:$src2_modifiers)),
2435                  (i1 VCC)))],
2436  3, 1
2437>;
2438
2439multiclass VOP3bInst <vop op, string opName, VOPProfile P, list<dag> pattern = [], bit VOP3Only = 0> :
2440  VOP3b_2_3_m <
2441  op, P.Outs64, P.Ins64,
2442  opName#" "#P.Asm64, pattern,
2443  opName, "", 1, 1, VOP3Only
2444>;
2445
2446class Vop3ModPat<Instruction Inst, VOPProfile P, SDPatternOperator node> : Pat<
2447  (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, i1:$clamp, i32:$omod)),
2448        (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers)),
2449        (P.Src2VT (VOP3Mods P.Src2VT:$src2, i32:$src2_modifiers))),
2450  (Inst i32:$src0_modifiers, P.Src0VT:$src0,
2451        i32:$src1_modifiers, P.Src1VT:$src1,
2452        i32:$src2_modifiers, P.Src2VT:$src2,
2453        i1:$clamp,
2454        i32:$omod)>;
2455
2456//===----------------------------------------------------------------------===//
2457// Interpolation opcodes
2458//===----------------------------------------------------------------------===//
2459
2460class VINTRP_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
2461  VINTRPCommon <outs, ins, "", pattern>,
2462  SIMCInstr<opName, SIEncodingFamily.NONE> {
2463  let isPseudo = 1;
2464  let isCodeGenOnly = 1;
2465}
2466
2467class VINTRP_Real_si <bits <2> op, string opName, dag outs, dag ins,
2468                      string asm> :
2469  VINTRPCommon <outs, ins, asm, []>,
2470  VINTRPe <op>,
2471  SIMCInstr<opName, SIEncodingFamily.SI> {
2472  let AssemblerPredicate = SIAssemblerPredicate;
2473  let DecoderNamespace = "SICI";
2474  let DisableDecoder = DisableSIDecoder;
2475}
2476
2477class VINTRP_Real_vi <bits <2> op, string opName, dag outs, dag ins,
2478                      string asm> :
2479  VINTRPCommon <outs, ins, asm, []>,
2480  VINTRPe_vi <op>,
2481  SIMCInstr<opName, SIEncodingFamily.VI> {
2482  let AssemblerPredicate = VIAssemblerPredicate;
2483  let DecoderNamespace = "VI";
2484  let DisableDecoder = DisableVIDecoder;
2485}
2486
2487multiclass VINTRP_m <bits <2> op, dag outs, dag ins, string asm,
2488                     list<dag> pattern = []> {
2489  def "" : VINTRP_Pseudo <NAME, outs, ins, pattern>;
2490
2491  def _si : VINTRP_Real_si <op, NAME, outs, ins, asm>;
2492
2493  def _vi : VINTRP_Real_vi <op, NAME, outs, ins, asm>;
2494}
2495
2496//===----------------------------------------------------------------------===//
2497// Vector I/O classes
2498//===----------------------------------------------------------------------===//
2499
2500class DS_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
2501  DS <outs, ins, "", pattern>,
2502  SIMCInstr <opName, SIEncodingFamily.NONE> {
2503  let isPseudo = 1;
2504  let isCodeGenOnly = 1;
2505}
2506
2507class DS_Real_si <bits<8> op, string opName, dag outs, dag ins, string asm> :
2508  DS <outs, ins, asm, []>,
2509  DSe <op>,
2510  SIMCInstr <opName, SIEncodingFamily.SI> {
2511  let isCodeGenOnly = 0;
2512  let AssemblerPredicates = [isSICI];
2513  let DecoderNamespace="SICI";
2514  let DisableDecoder = DisableSIDecoder;
2515}
2516
2517class DS_Real_vi <bits<8> op, string opName, dag outs, dag ins, string asm> :
2518  DS <outs, ins, asm, []>,
2519  DSe_vi <op>,
2520  SIMCInstr <opName, SIEncodingFamily.VI> {
2521  let isCodeGenOnly = 0;
2522  let AssemblerPredicates = [isVI];
2523  let DecoderNamespace="VI";
2524  let DisableDecoder = DisableVIDecoder;
2525}
2526
2527class DS_Off16_Real_si <bits<8> op, string opName, dag outs, dag ins, string asm> :
2528  DS_Real_si <op,opName, outs, ins, asm> {
2529
2530  // Single load interpret the 2 i8imm operands as a single i16 offset.
2531  bits<16> offset;
2532  let offset0 = offset{7-0};
2533  let offset1 = offset{15-8};
2534}
2535
2536class DS_Off16_Real_vi <bits<8> op, string opName, dag outs, dag ins, string asm> :
2537  DS_Real_vi <op, opName, outs, ins, asm> {
2538
2539  // Single load interpret the 2 i8imm operands as a single i16 offset.
2540  bits<16> offset;
2541  let offset0 = offset{7-0};
2542  let offset1 = offset{15-8};
2543}
2544
2545multiclass DS_1A_RET <bits<8> op, string opName, RegisterClass rc,
2546  dag outs = (outs rc:$vdst),
2547  dag ins = (ins VGPR_32:$addr, offset:$offset, gds:$gds),
2548  string asm = opName#" $vdst, $addr"#"$offset$gds"> {
2549
2550  def "" : DS_Pseudo <opName, outs, ins, []>;
2551
2552  let data0 = 0, data1 = 0 in {
2553    def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2554    def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2555  }
2556}
2557
2558multiclass DS_1A_Off8_RET <bits<8> op, string opName, RegisterClass rc,
2559  dag outs = (outs rc:$vdst),
2560  dag ins = (ins VGPR_32:$addr, offset0:$offset0, offset1:$offset1,
2561                 gds:$gds),
2562  string asm = opName#" $vdst, $addr"#"$offset0"#"$offset1$gds"> {
2563
2564  def "" : DS_Pseudo <opName, outs, ins, []>;
2565
2566  let data0 = 0, data1 = 0, AsmMatchConverter = "cvtDSOffset01" in {
2567    def _si : DS_Real_si <op, opName, outs, ins, asm>;
2568    def _vi : DS_Real_vi <op, opName, outs, ins, asm>;
2569  }
2570}
2571
2572multiclass DS_1A1D_NORET <bits<8> op, string opName, RegisterClass rc,
2573  dag outs = (outs),
2574  dag ins = (ins VGPR_32:$addr, rc:$data0, offset:$offset, gds:$gds),
2575  string asm = opName#" $addr, $data0"#"$offset$gds"> {
2576
2577  def "" : DS_Pseudo <opName, outs, ins, []>,
2578           AtomicNoRet<opName, 0>;
2579
2580  let data1 = 0, vdst = 0 in {
2581    def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2582    def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2583  }
2584}
2585
2586multiclass DS_1A1D_Off8_NORET <bits<8> op, string opName, RegisterClass rc,
2587  dag outs = (outs),
2588  dag ins = (ins VGPR_32:$addr, rc:$data0, rc:$data1,
2589              offset0:$offset0, offset1:$offset1, gds:$gds),
2590  string asm = opName#" $addr, $data0, $data1$offset0$offset1$gds"> {
2591
2592  def "" : DS_Pseudo <opName, outs, ins, []>;
2593
2594  let vdst = 0, AsmMatchConverter = "cvtDSOffset01" in {
2595    def _si : DS_Real_si <op, opName, outs, ins, asm>;
2596    def _vi : DS_Real_vi <op, opName, outs, ins, asm>;
2597  }
2598}
2599
2600multiclass DS_1A1D_RET <bits<8> op, string opName, RegisterClass rc,
2601                        string noRetOp = "",
2602  dag outs = (outs rc:$vdst),
2603  dag ins = (ins VGPR_32:$addr, rc:$data0, offset:$offset, gds:$gds),
2604  string asm = opName#" $vdst, $addr, $data0"#"$offset$gds"> {
2605
2606  let hasPostISelHook = 1 in {
2607    def "" : DS_Pseudo <opName, outs, ins, []>,
2608             AtomicNoRet<noRetOp, 1>;
2609
2610    let data1 = 0 in {
2611      def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2612      def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2613    }
2614  }
2615}
2616
2617multiclass DS_1A1D_PERMUTE <bits<8> op, string opName, RegisterClass rc,
2618                            SDPatternOperator node = null_frag,
2619  dag outs = (outs rc:$vdst),
2620  dag ins = (ins VGPR_32:$addr, rc:$data0, offset:$offset),
2621  string asm = opName#" $vdst, $addr, $data0"#"$offset"> {
2622
2623  let mayLoad = 0, mayStore = 0, isConvergent = 1 in {
2624    def "" : DS_Pseudo <opName, outs, ins,
2625     [(set i32:$vdst,
2626         (node (DS1Addr1Offset i32:$addr, i16:$offset), i32:$data0))]>;
2627
2628    let data1 = 0, gds = 0  in {
2629      def "_vi" : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2630    }
2631  }
2632}
2633
2634multiclass DS_1A2D_RET_m <bits<8> op, string opName, RegisterClass rc,
2635                          string noRetOp = "", dag ins,
2636  dag outs = (outs rc:$vdst),
2637  string asm = opName#" $vdst, $addr, $data0, $data1"#"$offset"#"$gds"> {
2638
2639  let hasPostISelHook = 1 in {
2640    def "" : DS_Pseudo <opName, outs, ins, []>,
2641             AtomicNoRet<noRetOp, 1>;
2642
2643    def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2644    def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2645  }
2646}
2647
2648multiclass DS_1A2D_RET <bits<8> op, string asm, RegisterClass rc,
2649                        string noRetOp = "", RegisterClass src = rc> :
2650  DS_1A2D_RET_m <op, asm, rc, noRetOp,
2651                 (ins VGPR_32:$addr, src:$data0, src:$data1,
2652                      offset:$offset, gds:$gds)
2653>;
2654
2655multiclass DS_1A2D_NORET <bits<8> op, string opName, RegisterClass rc,
2656                          string noRetOp = opName,
2657  dag outs = (outs),
2658  dag ins = (ins VGPR_32:$addr, rc:$data0, rc:$data1,
2659                 offset:$offset, gds:$gds),
2660  string asm = opName#" $addr, $data0, $data1"#"$offset"#"$gds"> {
2661
2662  def "" : DS_Pseudo <opName, outs, ins, []>,
2663           AtomicNoRet<noRetOp, 0>;
2664
2665  let vdst = 0 in {
2666    def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2667    def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2668  }
2669}
2670
2671multiclass DS_0A_RET <bits<8> op, string opName,
2672  dag outs = (outs VGPR_32:$vdst),
2673  dag ins = (ins offset:$offset, gds:$gds),
2674  string asm = opName#" $vdst"#"$offset"#"$gds"> {
2675
2676  let mayLoad = 1, mayStore = 1 in {
2677    def "" : DS_Pseudo <opName, outs, ins, []>;
2678
2679    let addr = 0, data0 = 0, data1 = 0 in {
2680      def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2681      def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2682    } // end addr = 0, data0 = 0, data1 = 0
2683  } // end mayLoad = 1, mayStore = 1
2684}
2685
2686multiclass DS_1A_RET_GDS <bits<8> op, string opName,
2687  dag outs = (outs VGPR_32:$vdst),
2688  dag ins = (ins VGPR_32:$addr, offset:$offset),
2689  string asm = opName#" $vdst, $addr"#"$offset gds"> {
2690
2691  def "" : DS_Pseudo <opName, outs, ins, []>;
2692
2693  let data0 = 0, data1 = 0, gds = 1 in {
2694    def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2695    def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2696  } // end data0 = 0, data1 = 0, gds = 1
2697}
2698
2699multiclass DS_1A_GDS <bits<8> op, string opName,
2700  dag outs = (outs),
2701  dag ins = (ins VGPR_32:$addr),
2702  string asm = opName#" $addr gds"> {
2703
2704  def "" : DS_Pseudo <opName, outs, ins, []>;
2705
2706  let vdst = 0, data0 = 0, data1 = 0, offset0 = 0, offset1 = 0, gds = 1 in {
2707    def _si : DS_Real_si <op, opName, outs, ins, asm>;
2708    def _vi : DS_Real_vi <op, opName, outs, ins, asm>;
2709  } // end vdst = 0, data = 0, data1 = 0, gds = 1
2710}
2711
2712multiclass DS_1A <bits<8> op, string opName,
2713  dag outs = (outs),
2714  dag ins = (ins VGPR_32:$addr, offset:$offset, gds:$gds),
2715  string asm = opName#" $addr"#"$offset"#"$gds"> {
2716
2717  let mayLoad = 1, mayStore = 1 in {
2718    def "" : DS_Pseudo <opName, outs, ins, []>;
2719
2720    let vdst = 0, data0 = 0, data1 = 0 in {
2721      def _si : DS_Off16_Real_si <op, opName, outs, ins, asm>;
2722      def _vi : DS_Off16_Real_vi <op, opName, outs, ins, asm>;
2723    } // let vdst = 0, data0 = 0, data1 = 0
2724  } // end mayLoad = 1, mayStore = 1
2725}
2726
2727//===----------------------------------------------------------------------===//
2728// MTBUF classes
2729//===----------------------------------------------------------------------===//
2730
2731class MTBUF_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
2732  MTBUF <outs, ins, "", pattern>,
2733  SIMCInstr<opName, SIEncodingFamily.NONE> {
2734  let isPseudo = 1;
2735  let isCodeGenOnly = 1;
2736}
2737
2738class MTBUF_Real_si <bits<3> op, string opName, dag outs, dag ins,
2739                    string asm> :
2740  MTBUF <outs, ins, asm, []>,
2741  MTBUFe <op>,
2742  SIMCInstr<opName, SIEncodingFamily.SI> {
2743  let DecoderNamespace="SICI";
2744  let DisableDecoder = DisableSIDecoder;
2745}
2746
2747class MTBUF_Real_vi <bits<4> op, string opName, dag outs, dag ins, string asm> :
2748  MTBUF <outs, ins, asm, []>,
2749  MTBUFe_vi <op>,
2750  SIMCInstr <opName, SIEncodingFamily.VI> {
2751  let DecoderNamespace="VI";
2752  let DisableDecoder = DisableVIDecoder;
2753}
2754
2755multiclass MTBUF_m <bits<3> op, string opName, dag outs, dag ins, string asm,
2756                    list<dag> pattern> {
2757
2758  def "" : MTBUF_Pseudo <opName, outs, ins, pattern>;
2759
2760  def _si : MTBUF_Real_si <op, opName, outs, ins, asm>;
2761
2762  def _vi : MTBUF_Real_vi <{0, op{2}, op{1}, op{0}}, opName, outs, ins, asm>;
2763
2764}
2765
2766let mayStore = 1, mayLoad = 0 in {
2767
2768multiclass MTBUF_Store_Helper <bits<3> op, string opName,
2769                               RegisterClass regClass> : MTBUF_m <
2770  op, opName, (outs),
2771  (ins regClass:$vdata, u16imm:$offset, i1imm:$offen, i1imm:$idxen, i1imm:$glc,
2772   i1imm:$addr64, i8imm:$dfmt, i8imm:$nfmt, VGPR_32:$vaddr,
2773   SReg_128:$srsrc, i1imm:$slc, i1imm:$tfe, SCSrc_32:$soffset),
2774  opName#" $vdata, $offset, $offen, $idxen, $glc, $addr64, $dfmt,"
2775        #" $nfmt, $vaddr, $srsrc, $slc, $tfe, $soffset", []
2776>;
2777
2778} // mayStore = 1, mayLoad = 0
2779
2780let mayLoad = 1, mayStore = 0 in {
2781
2782multiclass MTBUF_Load_Helper <bits<3> op, string opName,
2783                              RegisterClass regClass> : MTBUF_m <
2784  op, opName, (outs regClass:$dst),
2785  (ins u16imm:$offset, i1imm:$offen, i1imm:$idxen, i1imm:$glc, i1imm:$addr64,
2786       i8imm:$dfmt, i8imm:$nfmt, VGPR_32:$vaddr, SReg_128:$srsrc,
2787       i1imm:$slc, i1imm:$tfe, SCSrc_32:$soffset),
2788  opName#" $dst, $offset, $offen, $idxen, $glc, $addr64, $dfmt,"
2789        #" $nfmt, $vaddr, $srsrc, $slc, $tfe, $soffset", []
2790>;
2791
2792} // mayLoad = 1, mayStore = 0
2793
2794//===----------------------------------------------------------------------===//
2795// MUBUF classes
2796//===----------------------------------------------------------------------===//
2797
2798class mubuf <bits<7> si, bits<7> vi = si> {
2799  field bits<7> SI = si;
2800  field bits<7> VI = vi;
2801}
2802
2803let isCodeGenOnly = 0 in {
2804
2805class MUBUF_si <bits<7> op, dag outs, dag ins, string asm, list<dag> pattern> :
2806  MUBUF <outs, ins, asm, pattern>, MUBUFe <op> {
2807  let lds  = 0;
2808}
2809
2810} // End let isCodeGenOnly = 0
2811
2812class MUBUF_vi <bits<7> op, dag outs, dag ins, string asm, list<dag> pattern> :
2813  MUBUF <outs, ins, asm, pattern>, MUBUFe_vi <op> {
2814  let lds = 0;
2815}
2816
2817class MUBUFAddr64Table <bit is_addr64, string suffix = ""> {
2818  bit IsAddr64 = is_addr64;
2819  string OpName = NAME # suffix;
2820}
2821
2822class MUBUF_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
2823  MUBUF <outs, ins, "", pattern>,
2824  SIMCInstr<opName, SIEncodingFamily.NONE> {
2825  let isPseudo = 1;
2826  let isCodeGenOnly = 1;
2827
2828  // dummy fields, so that we can use let statements around multiclasses
2829  bits<1> offen;
2830  bits<1> idxen;
2831  bits<8> vaddr;
2832  bits<1> glc;
2833  bits<1> slc;
2834  bits<1> tfe;
2835  bits<8> soffset;
2836}
2837
2838class MUBUF_Real_si <mubuf op, string opName, dag outs, dag ins,
2839                     string asm> :
2840  MUBUF <outs, ins, asm, []>,
2841  MUBUFe <op.SI>,
2842  SIMCInstr<opName, SIEncodingFamily.SI> {
2843  let lds = 0;
2844  let AssemblerPredicate = SIAssemblerPredicate;
2845  let DecoderNamespace="SICI";
2846  let DisableDecoder = DisableSIDecoder;
2847}
2848
2849class MUBUF_Real_vi <mubuf op, string opName, dag outs, dag ins,
2850                     string asm> :
2851  MUBUF <outs, ins, asm, []>,
2852  MUBUFe_vi <op.VI>,
2853  SIMCInstr<opName, SIEncodingFamily.VI> {
2854  let lds = 0;
2855  let AssemblerPredicate = VIAssemblerPredicate;
2856  let DecoderNamespace="VI";
2857  let DisableDecoder = DisableVIDecoder;
2858}
2859
2860multiclass MUBUF_m <mubuf op, string opName, dag outs, dag ins, string asm,
2861                    list<dag> pattern> {
2862
2863  def "" : MUBUF_Pseudo <opName, outs, ins, pattern>,
2864           MUBUFAddr64Table <0>;
2865
2866  let addr64 = 0, isCodeGenOnly = 0 in {
2867    def _si : MUBUF_Real_si <op, opName, outs, ins, asm>;
2868  }
2869
2870  def _vi : MUBUF_Real_vi <op, opName, outs, ins, asm>;
2871}
2872
2873multiclass MUBUFAddr64_m <mubuf op, string opName, dag outs,
2874                          dag ins, string asm, list<dag> pattern> {
2875
2876  def "" : MUBUF_Pseudo <opName, outs, ins, pattern>,
2877           MUBUFAddr64Table <1>;
2878
2879  let addr64 = 1, isCodeGenOnly = 0 in {
2880    def _si : MUBUF_Real_si <op, opName, outs, ins, asm>;
2881  }
2882
2883  // There is no VI version. If the pseudo is selected, it should be lowered
2884  // for VI appropriately.
2885}
2886
2887multiclass MUBUFAtomicOffset_m <mubuf op, string opName, dag outs, dag ins,
2888                                string asm, list<dag> pattern, bit is_return> {
2889
2890  def "" : MUBUF_Pseudo <opName, outs, ins, pattern>,
2891           MUBUFAddr64Table <0, !if(is_return, "_RTN", "")>,
2892           AtomicNoRet<NAME#"_OFFSET", is_return>;
2893
2894  let offen = 0, idxen = 0, tfe = 0, vaddr = 0 in {
2895    let addr64 = 0 in {
2896      def _si : MUBUF_Real_si <op, opName, outs, ins, asm>;
2897    }
2898
2899    def _vi : MUBUF_Real_vi <op, opName, outs, ins, asm>;
2900  }
2901}
2902
2903multiclass MUBUFAtomicAddr64_m <mubuf op, string opName, dag outs, dag ins,
2904                                string asm, list<dag> pattern, bit is_return> {
2905
2906  def "" : MUBUF_Pseudo <opName, outs, ins, pattern>,
2907           MUBUFAddr64Table <1, !if(is_return, "_RTN", "")>,
2908           AtomicNoRet<NAME#"_ADDR64", is_return>;
2909
2910  let offen = 0, idxen = 0, addr64 = 1, tfe = 0 in {
2911    def _si : MUBUF_Real_si <op, opName, outs, ins, asm>;
2912  }
2913
2914  // There is no VI version. If the pseudo is selected, it should be lowered
2915  // for VI appropriately.
2916}
2917
2918multiclass MUBUFAtomicOther_m <mubuf op, string opName, dag outs, dag ins,
2919                               string asm, list<dag> pattern, bit is_return> {
2920
2921  def "" : MUBUF_Pseudo <opName, outs, ins, pattern>,
2922           AtomicNoRet<opName, is_return>;
2923
2924  let tfe = 0 in {
2925    let addr64 = 0 in {
2926      def _si : MUBUF_Real_si <op, opName, outs, ins, asm>;
2927    }
2928
2929    def _vi : MUBUF_Real_vi <op, opName, outs, ins, asm>;
2930  }
2931}
2932
2933multiclass MUBUF_Atomic <mubuf op, string name, RegisterClass rc,
2934                         ValueType vt, SDPatternOperator atomic> {
2935
2936  let mayStore = 1, mayLoad = 1, hasPostISelHook = 1, hasSideEffects = 1 in {
2937
2938    // No return variants
2939    let glc = 0, AsmMatchConverter = "cvtMubufAtomic" in {
2940
2941      defm _ADDR64 : MUBUFAtomicAddr64_m <
2942        op, name#"_addr64", (outs),
2943        (ins rc:$vdata, VReg_64:$vaddr, SReg_128:$srsrc,
2944             SCSrc_32:$soffset, offset:$offset, slc:$slc),
2945        name#" $vdata, $vaddr, $srsrc, $soffset addr64$offset$slc", [], 0
2946      >;
2947
2948      defm _OFFSET : MUBUFAtomicOffset_m <
2949        op, name#"_offset", (outs),
2950        (ins rc:$vdata, SReg_128:$srsrc, SCSrc_32:$soffset, offset:$offset,
2951             slc:$slc),
2952        name#" $vdata, off, $srsrc, $soffset$offset$slc", [], 0
2953      >;
2954
2955      let offen = 1, idxen = 0 in {
2956        defm _OFFEN : MUBUFAtomicOther_m <
2957          op, name#"_offen", (outs),
2958          (ins rc:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
2959                offset:$offset, slc:$slc),
2960          name#" $vdata, $vaddr, $srsrc, $soffset offen$offset$slc", [], 0
2961        >;
2962      }
2963
2964      let offen = 0, idxen = 1 in {
2965        defm _IDXEN : MUBUFAtomicOther_m <
2966          op, name#"_idxen", (outs),
2967          (ins rc:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
2968                offset:$offset, slc:$slc),
2969          name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset$slc", [], 0
2970        >;
2971      }
2972
2973      let offen = 1, idxen = 1 in {
2974        defm _BOTHEN : MUBUFAtomicOther_m <
2975          op, name#"_bothen", (outs),
2976          (ins rc:$vdata, VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
2977                offset:$offset, slc:$slc),
2978          name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset$slc",
2979          [], 0
2980        >;
2981      }
2982    } // glc = 0
2983
2984    // Variant that return values
2985    let glc = 1, Constraints = "$vdata = $vdata_in",
2986        AsmMatchConverter = "cvtMubufAtomicReturn",
2987        DisableEncoding = "$vdata_in"  in {
2988
2989      defm _RTN_ADDR64 : MUBUFAtomicAddr64_m <
2990        op, name#"_rtn_addr64", (outs rc:$vdata),
2991        (ins rc:$vdata_in, VReg_64:$vaddr, SReg_128:$srsrc,
2992             SCSrc_32:$soffset, offset:$offset, slc:$slc),
2993        name#" $vdata, $vaddr, $srsrc, $soffset addr64$offset glc$slc",
2994        [(set vt:$vdata,
2995         (atomic (MUBUFAddr64Atomic v4i32:$srsrc, i64:$vaddr, i32:$soffset,
2996	                            i16:$offset, i1:$slc), vt:$vdata_in))], 1
2997      >;
2998
2999      defm _RTN_OFFSET : MUBUFAtomicOffset_m <
3000        op, name#"_rtn_offset", (outs rc:$vdata),
3001        (ins rc:$vdata_in, SReg_128:$srsrc, SCSrc_32:$soffset,
3002             offset:$offset, slc:$slc),
3003        name#" $vdata, off, $srsrc, $soffset$offset glc$slc",
3004        [(set vt:$vdata,
3005         (atomic (MUBUFOffsetAtomic v4i32:$srsrc, i32:$soffset, i16:$offset,
3006                                    i1:$slc), vt:$vdata_in))], 1
3007      >;
3008
3009      let offen = 1, idxen = 0 in {
3010        defm _RTN_OFFEN : MUBUFAtomicOther_m <
3011          op, name#"_rtn_offen", (outs rc:$vdata),
3012          (ins rc:$vdata_in, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
3013                offset:$offset, slc:$slc),
3014          name#" $vdata, $vaddr, $srsrc, $soffset offen$offset glc$slc",
3015          [], 1
3016        >;
3017      }
3018
3019      let offen = 0, idxen = 1 in {
3020        defm _RTN_IDXEN : MUBUFAtomicOther_m <
3021          op, name#"_rtn_idxen", (outs rc:$vdata),
3022          (ins rc:$vdata_in, VGPR_32:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
3023                offset:$offset, slc:$slc),
3024          name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset glc$slc",
3025          [], 1
3026        >;
3027      }
3028
3029      let offen = 1, idxen = 1 in {
3030        defm _RTN_BOTHEN : MUBUFAtomicOther_m <
3031          op, name#"_rtn_bothen", (outs rc:$vdata),
3032          (ins rc:$vdata_in, VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
3033                offset:$offset, slc:$slc),
3034          name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset glc$slc",
3035          [], 1
3036        >;
3037      }
3038    } // glc = 1
3039
3040  } // mayStore = 1, mayLoad = 1, hasPostISelHook = 1
3041}
3042
3043// FIXME: tfe can't be an operand because it requires a separate
3044// opcode because it needs an N+1 register class dest register.
3045multiclass MUBUF_Load_Helper <mubuf op, string name, RegisterClass regClass,
3046                              ValueType load_vt = i32,
3047                              SDPatternOperator ld = null_frag> {
3048
3049  let mayLoad = 1, mayStore = 0 in {
3050    let offen = 0, idxen = 0, vaddr = 0 in {
3051      defm _OFFSET : MUBUF_m <op, name#"_offset", (outs regClass:$vdata),
3052                           (ins SReg_128:$srsrc, SCSrc_32:$soffset,
3053                           offset:$offset, glc:$glc, slc:$slc, tfe:$tfe),
3054                           name#" $vdata, off, $srsrc, $soffset$offset$glc$slc$tfe",
3055                           [(set load_vt:$vdata, (ld (MUBUFOffset v4i32:$srsrc,
3056                                                     i32:$soffset, i16:$offset,
3057                                                     i1:$glc, i1:$slc, i1:$tfe)))]>;
3058    }
3059
3060    let offen = 1, idxen = 0  in {
3061      defm _OFFEN  : MUBUF_m <op, name#"_offen", (outs regClass:$vdata),
3062                           (ins VGPR_32:$vaddr, SReg_128:$srsrc,
3063                           SCSrc_32:$soffset, offset:$offset, glc:$glc, slc:$slc,
3064                           tfe:$tfe),
3065                           name#" $vdata, $vaddr, $srsrc, $soffset offen$offset$glc$slc$tfe", []>;
3066    }
3067
3068    let offen = 0, idxen = 1 in {
3069      defm _IDXEN  : MUBUF_m <op, name#"_idxen", (outs regClass:$vdata),
3070                           (ins VGPR_32:$vaddr, SReg_128:$srsrc,
3071                           SCSrc_32:$soffset, offset:$offset, glc:$glc,
3072                           slc:$slc, tfe:$tfe),
3073                           name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset$glc$slc$tfe", []>;
3074    }
3075
3076    let offen = 1, idxen = 1 in {
3077      defm _BOTHEN : MUBUF_m <op, name#"_bothen", (outs regClass:$vdata),
3078                           (ins VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
3079                           offset:$offset, glc:$glc, slc:$slc, tfe:$tfe),
3080                           name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset$glc$slc$tfe", []>;
3081    }
3082
3083    let offen = 0, idxen = 0 in {
3084      defm _ADDR64 : MUBUFAddr64_m <op, name#"_addr64", (outs regClass:$vdata),
3085                           (ins VReg_64:$vaddr, SReg_128:$srsrc,
3086                                SCSrc_32:$soffset, offset:$offset,
3087				glc:$glc, slc:$slc, tfe:$tfe),
3088                           name#" $vdata, $vaddr, $srsrc, $soffset addr64$offset$glc$slc$tfe",
3089                           [(set load_vt:$vdata, (ld (MUBUFAddr64 v4i32:$srsrc,
3090                                                  i64:$vaddr, i32:$soffset,
3091                                                  i16:$offset, i1:$glc, i1:$slc,
3092						  i1:$tfe)))]>;
3093    }
3094  }
3095}
3096
3097multiclass MUBUF_Store_Helper <mubuf op, string name, RegisterClass vdataClass,
3098                          ValueType store_vt = i32, SDPatternOperator st = null_frag> {
3099  let mayLoad = 0, mayStore = 1 in {
3100    let offen = 0, idxen = 0, vaddr = 0 in {
3101      defm _OFFSET : MUBUF_m <op, name#"_offset",(outs),
3102                              (ins vdataClass:$vdata, SReg_128:$srsrc, SCSrc_32:$soffset,
3103                              offset:$offset, glc:$glc, slc:$slc, tfe:$tfe),
3104                              name#" $vdata, off, $srsrc, $soffset$offset$glc$slc$tfe",
3105                              [(st store_vt:$vdata, (MUBUFOffset v4i32:$srsrc, i32:$soffset,
3106                                   i16:$offset, i1:$glc, i1:$slc, i1:$tfe))]>;
3107    } // offen = 0, idxen = 0, vaddr = 0
3108
3109    let offen = 1, idxen = 0  in {
3110      defm _OFFEN : MUBUF_m <op, name#"_offen", (outs),
3111                             (ins vdataClass:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc,
3112                              SCSrc_32:$soffset, offset:$offset, glc:$glc,
3113                              slc:$slc, tfe:$tfe),
3114                             name#" $vdata, $vaddr, $srsrc, $soffset offen"#
3115                             "$offset$glc$slc$tfe", []>;
3116    } // end offen = 1, idxen = 0
3117
3118    let offen = 0, idxen = 1 in {
3119      defm _IDXEN  : MUBUF_m <op, name#"_idxen", (outs),
3120                           (ins vdataClass:$vdata, VGPR_32:$vaddr, SReg_128:$srsrc,
3121                           SCSrc_32:$soffset, offset:$offset, glc:$glc,
3122                           slc:$slc, tfe:$tfe),
3123                           name#" $vdata, $vaddr, $srsrc, $soffset idxen$offset$glc$slc$tfe", []>;
3124    }
3125
3126    let offen = 1, idxen = 1 in {
3127      defm _BOTHEN : MUBUF_m <op, name#"_bothen", (outs),
3128                           (ins vdataClass:$vdata, VReg_64:$vaddr, SReg_128:$srsrc, SCSrc_32:$soffset,
3129                           offset:$offset, glc:$glc, slc:$slc, tfe:$tfe),
3130                           name#" $vdata, $vaddr, $srsrc, $soffset idxen offen$offset$glc$slc$tfe", []>;
3131    }
3132
3133    let offen = 0, idxen = 0 in {
3134      defm _ADDR64 : MUBUFAddr64_m <op, name#"_addr64", (outs),
3135                                    (ins vdataClass:$vdata, VReg_64:$vaddr, SReg_128:$srsrc,
3136                                         SCSrc_32:$soffset,
3137                                         offset:$offset, glc:$glc, slc:$slc,
3138                                         tfe:$tfe),
3139                                    name#" $vdata, $vaddr, $srsrc, $soffset addr64"#
3140                                         "$offset$glc$slc$tfe",
3141                                    [(st store_vt:$vdata,
3142                                      (MUBUFAddr64 v4i32:$srsrc, i64:$vaddr,
3143                                                   i32:$soffset, i16:$offset,
3144                                                   i1:$glc, i1:$slc, i1:$tfe))]>;
3145    }
3146  } // End mayLoad = 0, mayStore = 1
3147}
3148
3149// For cache invalidation instructions.
3150multiclass MUBUF_Invalidate <mubuf op, string opName, SDPatternOperator node> {
3151  let hasSideEffects = 1, mayStore = 1, AsmMatchConverter = "" in {
3152    def "" : MUBUF_Pseudo <opName, (outs), (ins), [(node)]>;
3153
3154    // Set everything to 0.
3155    let offset = 0, offen = 0, idxen = 0, glc = 0, vaddr = 0,
3156        vdata = 0, srsrc = 0, slc = 0, tfe = 0, soffset = 0 in {
3157      let addr64 = 0 in {
3158        def _si : MUBUF_Real_si <op, opName, (outs), (ins), opName>;
3159      }
3160
3161      def _vi : MUBUF_Real_vi <op, opName, (outs), (ins), opName>;
3162    }
3163  } // End hasSideEffects = 1, mayStore = 1, AsmMatchConverter = ""
3164}
3165
3166//===----------------------------------------------------------------------===//
3167// FLAT classes
3168//===----------------------------------------------------------------------===//
3169
3170class flat <bits<7> ci, bits<7> vi = ci> {
3171  field bits<7> CI = ci;
3172  field bits<7> VI = vi;
3173}
3174
3175class FLAT_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
3176     FLAT <0, outs, ins, "", pattern>,
3177      SIMCInstr<opName, SIEncodingFamily.NONE> {
3178  let isPseudo = 1;
3179  let isCodeGenOnly = 1;
3180}
3181
3182class FLAT_Real_ci <bits<7> op, string opName, dag outs, dag ins, string asm> :
3183    FLAT <op, outs, ins, asm, []>,
3184    SIMCInstr<opName, SIEncodingFamily.SI> {
3185  let AssemblerPredicate = isCIOnly;
3186  let DecoderNamespace="CI";
3187}
3188
3189class FLAT_Real_vi <bits<7> op, string opName, dag outs, dag ins, string asm> :
3190    FLAT <op, outs, ins, asm, []>,
3191    SIMCInstr<opName, SIEncodingFamily.VI> {
3192  let AssemblerPredicate = VIAssemblerPredicate;
3193  let DecoderNamespace="VI";
3194  let DisableDecoder = DisableVIDecoder;
3195}
3196
3197multiclass FLAT_AtomicRet_m <flat op, dag outs, dag ins, string asm,
3198                   list<dag> pattern> {
3199  def "" : FLAT_Pseudo <NAME#"_RTN", outs, ins, pattern>,
3200               AtomicNoRet <NAME, 1>;
3201
3202  def _ci : FLAT_Real_ci <op.CI, NAME#"_RTN", outs, ins, asm>;
3203
3204  def _vi : FLAT_Real_vi <op.VI, NAME#"_RTN", outs, ins, asm>;
3205}
3206
3207multiclass FLAT_Load_Helper <flat op, string asm_name,
3208    RegisterClass regClass,
3209    dag outs = (outs regClass:$vdst),
3210    dag ins = (ins VReg_64:$addr, glc:$glc, slc:$slc, tfe:$tfe),
3211    string asm = asm_name#" $vdst, $addr$glc$slc$tfe"> {
3212
3213  let data = 0, mayLoad = 1 in {
3214
3215    def "" : FLAT_Pseudo <NAME, outs, ins, []>;
3216
3217    def _ci : FLAT_Real_ci <op.CI, NAME, outs, ins, asm>;
3218
3219    def _vi : FLAT_Real_vi <op.VI, NAME, outs, ins, asm>;
3220  }
3221}
3222
3223multiclass FLAT_Store_Helper <flat op, string asm_name,
3224    RegisterClass vdataClass,
3225    dag outs = (outs),
3226    dag ins = (ins VReg_64:$addr, vdataClass:$data, glc:$glc,
3227                   slc:$slc, tfe:$tfe),
3228    string asm = asm_name#" $addr, $data$glc$slc$tfe"> {
3229
3230  let mayLoad = 0, mayStore = 1, vdst = 0 in {
3231
3232    def "" : FLAT_Pseudo <NAME, outs, ins, []>;
3233
3234    def _ci : FLAT_Real_ci <op.CI, NAME, outs, ins, asm>;
3235
3236    def _vi : FLAT_Real_vi <op.VI, NAME, outs, ins, asm>;
3237  }
3238}
3239
3240multiclass FLAT_ATOMIC <flat op, string asm_name, RegisterClass vdst_rc,
3241    ValueType vt, SDPatternOperator atomic = null_frag,
3242    ValueType data_vt = vt,
3243    RegisterClass data_rc = vdst_rc,
3244    string asm_noret = asm_name#" $addr, $data"#"$slc"#"$tfe"> {
3245
3246  let mayLoad = 1, mayStore = 1, glc = 0, vdst = 0 in {
3247    def "" : FLAT_Pseudo <NAME, (outs),
3248                          (ins VReg_64:$addr, data_rc:$data,
3249                               slc:$slc, tfe:$tfe), []>,
3250             AtomicNoRet <NAME, 0>;
3251
3252    def _ci : FLAT_Real_ci <op.CI, NAME, (outs),
3253                            (ins VReg_64:$addr, data_rc:$data,
3254                                 slc:$slc, tfe:$tfe),
3255                            asm_noret>;
3256
3257    def _vi : FLAT_Real_vi <op.VI, NAME, (outs),
3258                            (ins VReg_64:$addr, data_rc:$data,
3259                                 slc:$slc, tfe:$tfe),
3260                            asm_noret>;
3261  }
3262
3263  let glc = 1, hasPostISelHook = 1 in {
3264    defm _RTN : FLAT_AtomicRet_m <
3265      op, (outs vdst_rc:$vdst),
3266      (ins VReg_64:$addr, data_rc:$data, slc:$slc, tfe:$tfe),
3267      asm_name#" $vdst, $addr, $data glc$slc$tfe",
3268      [(set vt:$vdst,
3269         (atomic (FLATAtomic i64:$addr, i1:$slc, i1:$tfe), data_vt:$data))]
3270    >;
3271  }
3272}
3273
3274class MIMG_Mask <string op, int channels> {
3275  string Op = op;
3276  int Channels = channels;
3277}
3278
3279class mimg <bits<7> si, bits<7> vi = si> {
3280  field bits<7> SI = si;
3281  field bits<7> VI = vi;
3282}
3283
3284class MIMG_Helper <dag outs, dag ins, string asm,
3285                   string dns=""> : MIMG<outs, ins, asm,[]> {
3286  let mayLoad = 1;
3287  let mayStore = 0;
3288  let hasPostISelHook = 1;
3289  let DecoderNamespace = dns;
3290  let isAsmParserOnly = !if(!eq(dns,""), 1, 0);
3291  let AsmMatchConverter = "cvtMIMG";
3292}
3293
3294class MIMG_NoSampler_Helper <bits<7> op, string asm,
3295                             RegisterClass dst_rc,
3296                             RegisterClass addr_rc,
3297                             string dns=""> : MIMG_Helper <
3298  (outs dst_rc:$vdata),
3299  (ins addr_rc:$vaddr, SReg_256:$srsrc,
3300       dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc,
3301       r128:$r128, tfe:$tfe, lwe:$lwe, da:$da),
3302  asm#" $vdata, $vaddr, $srsrc$dmask$unorm$glc$slc$r128$tfe$lwe$da",
3303  dns>, MIMGe<op> {
3304  let ssamp = 0;
3305}
3306
3307multiclass MIMG_NoSampler_Src_Helper <bits<7> op, string asm,
3308                                      RegisterClass dst_rc,
3309                                      int channels> {
3310  def _V1 : MIMG_NoSampler_Helper <op, asm, dst_rc, VGPR_32,
3311                                   !if(!eq(channels, 1), "AMDGPU", "")>,
3312            MIMG_Mask<asm#"_V1", channels>;
3313  def _V2 : MIMG_NoSampler_Helper <op, asm, dst_rc, VReg_64>,
3314            MIMG_Mask<asm#"_V2", channels>;
3315  def _V4 : MIMG_NoSampler_Helper <op, asm, dst_rc, VReg_128>,
3316            MIMG_Mask<asm#"_V4", channels>;
3317}
3318
3319multiclass MIMG_NoSampler <bits<7> op, string asm> {
3320  defm _V1 : MIMG_NoSampler_Src_Helper <op, asm, VGPR_32, 1>;
3321  defm _V2 : MIMG_NoSampler_Src_Helper <op, asm, VReg_64, 2>;
3322  defm _V3 : MIMG_NoSampler_Src_Helper <op, asm, VReg_96, 3>;
3323  defm _V4 : MIMG_NoSampler_Src_Helper <op, asm, VReg_128, 4>;
3324}
3325
3326class MIMG_Store_Helper <bits<7> op, string asm,
3327                         RegisterClass data_rc,
3328                         RegisterClass addr_rc> : MIMG_Helper <
3329  (outs),
3330  (ins data_rc:$vdata, addr_rc:$vaddr, SReg_256:$srsrc,
3331       dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc,
3332       r128:$r128, tfe:$tfe, lwe:$lwe, da:$da),
3333  asm#" $vdata, $vaddr, $srsrc$dmask$unorm$glc$slc$r128$tfe$lwe$da"
3334     >, MIMGe<op> {
3335  let ssamp = 0;
3336  let mayLoad = 1; // TableGen requires this for matching with the intrinsics
3337  let mayStore = 1;
3338  let hasSideEffects = 1;
3339  let hasPostISelHook = 0;
3340}
3341
3342multiclass MIMG_Store_Addr_Helper <bits<7> op, string asm,
3343                                  RegisterClass data_rc,
3344                                  int channels> {
3345  def _V1 : MIMG_Store_Helper <op, asm, data_rc, VGPR_32>,
3346            MIMG_Mask<asm#"_V1", channels>;
3347  def _V2 : MIMG_Store_Helper <op, asm, data_rc, VReg_64>,
3348            MIMG_Mask<asm#"_V2", channels>;
3349  def _V4 : MIMG_Store_Helper <op, asm, data_rc, VReg_128>,
3350            MIMG_Mask<asm#"_V4", channels>;
3351}
3352
3353multiclass MIMG_Store <bits<7> op, string asm> {
3354  defm _V1 : MIMG_Store_Addr_Helper <op, asm, VGPR_32, 1>;
3355  defm _V2 : MIMG_Store_Addr_Helper <op, asm, VReg_64, 2>;
3356  defm _V3 : MIMG_Store_Addr_Helper <op, asm, VReg_96, 3>;
3357  defm _V4 : MIMG_Store_Addr_Helper <op, asm, VReg_128, 4>;
3358}
3359
3360class MIMG_Atomic_Helper <string asm, RegisterClass data_rc,
3361                          RegisterClass addr_rc> : MIMG_Helper <
3362    (outs data_rc:$vdst),
3363    (ins data_rc:$vdata, addr_rc:$vaddr, SReg_256:$srsrc,
3364         dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc,
3365         r128:$r128, tfe:$tfe, lwe:$lwe, da:$da),
3366    asm#" $vdst, $vaddr, $srsrc$dmask$unorm$glc$slc$r128$tfe$lwe$da"
3367  > {
3368  let mayStore = 1;
3369  let hasSideEffects = 1;
3370  let hasPostISelHook = 0;
3371  let Constraints = "$vdst = $vdata";
3372  let AsmMatchConverter = "cvtMIMGAtomic";
3373}
3374
3375class MIMG_Atomic_Real_si<mimg op, string name, string asm,
3376  RegisterClass data_rc, RegisterClass addr_rc> :
3377  MIMG_Atomic_Helper<asm, data_rc, addr_rc>,
3378  SIMCInstr<name, SIEncodingFamily.SI>,
3379  MIMGe<op.SI> {
3380  let isCodeGenOnly = 0;
3381  let AssemblerPredicates = [isSICI];
3382  let DecoderNamespace = "SICI";
3383  let DisableDecoder = DisableSIDecoder;
3384}
3385
3386class MIMG_Atomic_Real_vi<mimg op, string name, string asm,
3387  RegisterClass data_rc, RegisterClass addr_rc> :
3388  MIMG_Atomic_Helper<asm, data_rc, addr_rc>,
3389  SIMCInstr<name, SIEncodingFamily.VI>,
3390  MIMGe<op.VI> {
3391  let isCodeGenOnly = 0;
3392  let AssemblerPredicates = [isVI];
3393  let DecoderNamespace = "VI";
3394  let DisableDecoder = DisableVIDecoder;
3395}
3396
3397multiclass MIMG_Atomic_Helper_m <mimg op, string name, string asm,
3398                                 RegisterClass data_rc, RegisterClass addr_rc> {
3399  let isPseudo = 1, isCodeGenOnly = 1 in {
3400    def "" : MIMG_Atomic_Helper<asm, data_rc, addr_rc>,
3401             SIMCInstr<name, SIEncodingFamily.NONE>;
3402  }
3403
3404  let ssamp = 0 in {
3405    def _si : MIMG_Atomic_Real_si<op, name, asm, data_rc, addr_rc>;
3406
3407    def _vi : MIMG_Atomic_Real_vi<op, name, asm, data_rc, addr_rc>;
3408  }
3409}
3410
3411multiclass MIMG_Atomic <mimg op, string asm, RegisterClass data_rc = VGPR_32> {
3412  defm _V1 : MIMG_Atomic_Helper_m <op, asm # "_V1", asm, data_rc, VGPR_32>;
3413  defm _V2 : MIMG_Atomic_Helper_m <op, asm # "_V2", asm, data_rc, VReg_64>;
3414  defm _V4 : MIMG_Atomic_Helper_m <op, asm # "_V3", asm, data_rc, VReg_128>;
3415}
3416
3417class MIMG_Sampler_Helper <bits<7> op, string asm,
3418                           RegisterClass dst_rc,
3419                           RegisterClass src_rc,
3420                           int wqm,
3421                           string dns=""> : MIMG_Helper <
3422  (outs dst_rc:$vdata),
3423  (ins src_rc:$vaddr, SReg_256:$srsrc, SReg_128:$ssamp,
3424       dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc,
3425       r128:$r128, tfe:$tfe, lwe:$lwe, da:$da),
3426  asm#" $vdata, $vaddr, $srsrc, $ssamp$dmask$unorm$glc$slc$r128$tfe$lwe$da",
3427  dns>, MIMGe<op> {
3428  let WQM = wqm;
3429}
3430
3431multiclass MIMG_Sampler_Src_Helper <bits<7> op, string asm,
3432                                    RegisterClass dst_rc,
3433                                    int channels, int wqm> {
3434  def _V1 : MIMG_Sampler_Helper <op, asm, dst_rc, VGPR_32, wqm,
3435                                 !if(!eq(channels, 1), "AMDGPU", "")>,
3436            MIMG_Mask<asm#"_V1", channels>;
3437  def _V2 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_64, wqm>,
3438            MIMG_Mask<asm#"_V2", channels>;
3439  def _V4 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_128, wqm>,
3440            MIMG_Mask<asm#"_V4", channels>;
3441  def _V8 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_256, wqm>,
3442            MIMG_Mask<asm#"_V8", channels>;
3443  def _V16 : MIMG_Sampler_Helper <op, asm, dst_rc, VReg_512, wqm>,
3444            MIMG_Mask<asm#"_V16", channels>;
3445}
3446
3447multiclass MIMG_Sampler <bits<7> op, string asm, int wqm=0> {
3448  defm _V1 : MIMG_Sampler_Src_Helper<op, asm, VGPR_32, 1, wqm>;
3449  defm _V2 : MIMG_Sampler_Src_Helper<op, asm, VReg_64, 2, wqm>;
3450  defm _V3 : MIMG_Sampler_Src_Helper<op, asm, VReg_96, 3, wqm>;
3451  defm _V4 : MIMG_Sampler_Src_Helper<op, asm, VReg_128, 4, wqm>;
3452}
3453
3454multiclass MIMG_Sampler_WQM <bits<7> op, string asm> : MIMG_Sampler<op, asm, 1>;
3455
3456class MIMG_Gather_Helper <bits<7> op, string asm,
3457                          RegisterClass dst_rc,
3458                          RegisterClass src_rc, int wqm> : MIMG <
3459  (outs dst_rc:$vdata),
3460  (ins src_rc:$vaddr, SReg_256:$srsrc, SReg_128:$ssamp,
3461       dmask:$dmask, unorm:$unorm, glc:$glc, slc:$slc,
3462       r128:$r128, tfe:$tfe, lwe:$lwe, da:$da),
3463  asm#" $vdata, $vaddr, $srsrc, $ssamp$dmask$unorm$glc$slc$r128$tfe$lwe$da",
3464  []>, MIMGe<op> {
3465  let mayLoad = 1;
3466  let mayStore = 0;
3467
3468  // DMASK was repurposed for GATHER4. 4 components are always
3469  // returned and DMASK works like a swizzle - it selects
3470  // the component to fetch. The only useful DMASK values are
3471  // 1=red, 2=green, 4=blue, 8=alpha. (e.g. 1 returns
3472  // (red,red,red,red) etc.) The ISA document doesn't mention
3473  // this.
3474  // Therefore, disable all code which updates DMASK by setting these two:
3475  let MIMG = 0;
3476  let hasPostISelHook = 0;
3477  let WQM = wqm;
3478
3479  let isAsmParserOnly = 1; // TBD: fix it later
3480}
3481
3482multiclass MIMG_Gather_Src_Helper <bits<7> op, string asm,
3483                                    RegisterClass dst_rc,
3484                                    int channels, int wqm> {
3485  def _V1 : MIMG_Gather_Helper <op, asm, dst_rc, VGPR_32, wqm>,
3486            MIMG_Mask<asm#"_V1", channels>;
3487  def _V2 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_64, wqm>,
3488            MIMG_Mask<asm#"_V2", channels>;
3489  def _V4 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_128, wqm>,
3490            MIMG_Mask<asm#"_V4", channels>;
3491  def _V8 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_256, wqm>,
3492            MIMG_Mask<asm#"_V8", channels>;
3493  def _V16 : MIMG_Gather_Helper <op, asm, dst_rc, VReg_512, wqm>,
3494            MIMG_Mask<asm#"_V16", channels>;
3495}
3496
3497multiclass MIMG_Gather <bits<7> op, string asm, int wqm=0> {
3498  defm _V1 : MIMG_Gather_Src_Helper<op, asm, VGPR_32, 1, wqm>;
3499  defm _V2 : MIMG_Gather_Src_Helper<op, asm, VReg_64, 2, wqm>;
3500  defm _V3 : MIMG_Gather_Src_Helper<op, asm, VReg_96, 3, wqm>;
3501  defm _V4 : MIMG_Gather_Src_Helper<op, asm, VReg_128, 4, wqm>;
3502}
3503
3504multiclass MIMG_Gather_WQM <bits<7> op, string asm> : MIMG_Gather<op, asm, 1>;
3505
3506//===----------------------------------------------------------------------===//
3507// Vector instruction mappings
3508//===----------------------------------------------------------------------===//
3509
3510// Maps an opcode in e32 form to its e64 equivalent
3511def getVOPe64 : InstrMapping {
3512  let FilterClass = "VOP";
3513  let RowFields = ["OpName"];
3514  let ColFields = ["Size"];
3515  let KeyCol = ["4"];
3516  let ValueCols = [["8"]];
3517}
3518
3519// Maps an opcode in e64 form to its e32 equivalent
3520def getVOPe32 : InstrMapping {
3521  let FilterClass = "VOP";
3522  let RowFields = ["OpName"];
3523  let ColFields = ["Size"];
3524  let KeyCol = ["8"];
3525  let ValueCols = [["4"]];
3526}
3527
3528def getMaskedMIMGOp : InstrMapping {
3529  let FilterClass = "MIMG_Mask";
3530  let RowFields = ["Op"];
3531  let ColFields = ["Channels"];
3532  let KeyCol = ["4"];
3533  let ValueCols = [["1"], ["2"], ["3"] ];
3534}
3535
3536// Maps an commuted opcode to its original version
3537def getCommuteOrig : InstrMapping {
3538  let FilterClass = "VOP2_REV";
3539  let RowFields = ["RevOp"];
3540  let ColFields = ["IsOrig"];
3541  let KeyCol = ["0"];
3542  let ValueCols = [["1"]];
3543}
3544
3545// Maps an original opcode to its commuted version
3546def getCommuteRev : InstrMapping {
3547  let FilterClass = "VOP2_REV";
3548  let RowFields = ["RevOp"];
3549  let ColFields = ["IsOrig"];
3550  let KeyCol = ["1"];
3551  let ValueCols = [["0"]];
3552}
3553
3554def getCommuteCmpOrig : InstrMapping {
3555  let FilterClass = "VOP2_REV";
3556  let RowFields = ["RevOp"];
3557  let ColFields = ["IsOrig"];
3558  let KeyCol = ["0"];
3559  let ValueCols = [["1"]];
3560}
3561
3562// Maps an original opcode to its commuted version
3563def getCommuteCmpRev : InstrMapping {
3564  let FilterClass = "VOP2_REV";
3565  let RowFields = ["RevOp"];
3566  let ColFields = ["IsOrig"];
3567  let KeyCol = ["1"];
3568  let ValueCols = [["0"]];
3569}
3570
3571
3572def getMCOpcodeGen : InstrMapping {
3573  let FilterClass = "SIMCInstr";
3574  let RowFields = ["PseudoInstr"];
3575  let ColFields = ["Subtarget"];
3576  let KeyCol = [!cast<string>(SIEncodingFamily.NONE)];
3577  let ValueCols = [[!cast<string>(SIEncodingFamily.SI)],
3578                   [!cast<string>(SIEncodingFamily.VI)]];
3579}
3580
3581def getAddr64Inst : InstrMapping {
3582  let FilterClass = "MUBUFAddr64Table";
3583  let RowFields = ["OpName"];
3584  let ColFields = ["IsAddr64"];
3585  let KeyCol = ["0"];
3586  let ValueCols = [["1"]];
3587}
3588
3589// Maps an atomic opcode to its version with a return value.
3590def getAtomicRetOp : InstrMapping {
3591  let FilterClass = "AtomicNoRet";
3592  let RowFields = ["NoRetOp"];
3593  let ColFields = ["IsRet"];
3594  let KeyCol = ["0"];
3595  let ValueCols = [["1"]];
3596}
3597
3598// Maps an atomic opcode to its returnless version.
3599def getAtomicNoRetOp : InstrMapping {
3600  let FilterClass = "AtomicNoRet";
3601  let RowFields = ["NoRetOp"];
3602  let ColFields = ["IsRet"];
3603  let KeyCol = ["1"];
3604  let ValueCols = [["0"]];
3605}
3606
3607include "SIInstructions.td"
3608include "CIInstructions.td"
3609include "VIInstructions.td"
3610