1//===-- SIInstrInfo.td - SI Instruction Infos -------------*- tablegen -*--===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8
9def isWave32 : Predicate<"Subtarget->getWavefrontSize() == 32">,
10  AssemblerPredicate <(all_of FeatureWavefrontSize32)>;
11def isWave64 : Predicate<"Subtarget->getWavefrontSize() == 64">,
12  AssemblerPredicate <(all_of FeatureWavefrontSize64)>;
13
14class GCNPredicateControl : PredicateControl {
15  Predicate SIAssemblerPredicate = isGFX6GFX7;
16  Predicate VIAssemblerPredicate = isGFX8GFX9;
17}
18
19// Execpt for the NONE field, this must be kept in sync with the
20// SIEncodingFamily enum in AMDGPUInstrInfo.cpp
21def SIEncodingFamily {
22  int NONE = -1;
23  int SI = 0;
24  int VI = 1;
25  int SDWA = 2;
26  int SDWA9 = 3;
27  int GFX80 = 4;
28  int GFX9 = 5;
29  int GFX10 = 6;
30  int SDWA10 = 7;
31  int GFX90A = 8;
32}
33
34//===----------------------------------------------------------------------===//
35// SI DAG Nodes
36//===----------------------------------------------------------------------===//
37
38def AMDGPUclamp : SDNode<"AMDGPUISD::CLAMP", SDTFPUnaryOp>;
39
40def SIsbuffer_load : SDNode<"AMDGPUISD::SBUFFER_LOAD",
41  SDTypeProfile<1, 3, [SDTCisVT<1, v4i32>, SDTCisVT<2, i32>, SDTCisVT<3, i32>]>,
42  [SDNPMayLoad, SDNPMemOperand]
43>;
44
45def SIds_ordered_count : SDNode<"AMDGPUISD::DS_ORDERED_COUNT",
46  SDTypeProfile<1, 2, [SDTCisVT<0, i32>, SDTCisVT<1, i32>, SDTCisVT<2, i16>]>,
47  [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain, SDNPInGlue]
48>;
49
50def SIatomic_inc : SDNode<"AMDGPUISD::ATOMIC_INC", SDTAtomic2,
51  [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain]
52>;
53
54def SIatomic_dec : SDNode<"AMDGPUISD::ATOMIC_DEC", SDTAtomic2,
55  [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain]
56>;
57
58def SDTAtomic2_f32 : SDTypeProfile<1, 2, [
59  SDTCisSameAs<0,2>, SDTCisFP<0>, SDTCisPtrTy<1>
60]>;
61
62def SIatomic_fmin : SDNode<"AMDGPUISD::ATOMIC_LOAD_FMIN", SDTAtomic2_f32,
63  [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain]
64>;
65
66def SIatomic_fmax : SDNode<"AMDGPUISD::ATOMIC_LOAD_FMAX", SDTAtomic2_f32,
67  [SDNPMayLoad, SDNPMayStore, SDNPMemOperand, SDNPHasChain]
68>;
69
70// load_d16_{lo|hi} ptr, tied_input
71def SIload_d16 : SDTypeProfile<1, 2, [
72  SDTCisPtrTy<1>,
73  SDTCisSameAs<0, 2>
74]>;
75
76
77def SDTtbuffer_load : SDTypeProfile<1, 8,
78  [                     // vdata
79   SDTCisVT<1, v4i32>,  // rsrc
80   SDTCisVT<2, i32>,    // vindex(VGPR)
81   SDTCisVT<3, i32>,    // voffset(VGPR)
82   SDTCisVT<4, i32>,    // soffset(SGPR)
83   SDTCisVT<5, i32>,    // offset(imm)
84   SDTCisVT<6, i32>,    // format(imm)
85   SDTCisVT<7, i32>,    // cachepolicy, swizzled buffer(imm)
86   SDTCisVT<8, i1>      // idxen(imm)
87  ]>;
88
89def SItbuffer_load :   SDNode<"AMDGPUISD::TBUFFER_LOAD_FORMAT", SDTtbuffer_load,
90                              [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]>;
91def SItbuffer_load_d16 : SDNode<"AMDGPUISD::TBUFFER_LOAD_FORMAT_D16",
92                                SDTtbuffer_load,
93                                [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]>;
94
95def SDTtbuffer_store : SDTypeProfile<0, 9,
96    [                     // vdata
97     SDTCisVT<1, v4i32>,  // rsrc
98     SDTCisVT<2, i32>,    // vindex(VGPR)
99     SDTCisVT<3, i32>,    // voffset(VGPR)
100     SDTCisVT<4, i32>,    // soffset(SGPR)
101     SDTCisVT<5, i32>,    // offset(imm)
102     SDTCisVT<6, i32>,    // format(imm)
103     SDTCisVT<7, i32>,    // cachepolicy, swizzled buffer(imm)
104     SDTCisVT<8, i1>      // idxen(imm)
105    ]>;
106
107def SItbuffer_store : SDNode<"AMDGPUISD::TBUFFER_STORE_FORMAT", SDTtbuffer_store,
108                             [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>;
109def SItbuffer_store_d16 : SDNode<"AMDGPUISD::TBUFFER_STORE_FORMAT_D16",
110                                SDTtbuffer_store,
111                                [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>;
112
113def SDTBufferLoad : SDTypeProfile<1, 7,
114    [                    // vdata
115     SDTCisVT<1, v4i32>, // rsrc
116     SDTCisVT<2, i32>,   // vindex(VGPR)
117     SDTCisVT<3, i32>,   // voffset(VGPR)
118     SDTCisVT<4, i32>,   // soffset(SGPR)
119     SDTCisVT<5, i32>,   // offset(imm)
120     SDTCisVT<6, i32>,   // cachepolicy, swizzled buffer(imm)
121     SDTCisVT<7, i1>]>;  // idxen(imm)
122
123def SIbuffer_load : SDNode <"AMDGPUISD::BUFFER_LOAD", SDTBufferLoad,
124                            [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>;
125def SIbuffer_load_ubyte : SDNode <"AMDGPUISD::BUFFER_LOAD_UBYTE", SDTBufferLoad,
126                            [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>;
127def SIbuffer_load_ushort : SDNode <"AMDGPUISD::BUFFER_LOAD_USHORT", SDTBufferLoad,
128                            [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>;
129def SIbuffer_load_byte : SDNode <"AMDGPUISD::BUFFER_LOAD_BYTE", SDTBufferLoad,
130                            [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>;
131def SIbuffer_load_short: SDNode <"AMDGPUISD::BUFFER_LOAD_SHORT", SDTBufferLoad,
132                            [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>;
133def SIbuffer_load_format : SDNode <"AMDGPUISD::BUFFER_LOAD_FORMAT", SDTBufferLoad,
134                            [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>;
135def SIbuffer_load_format_d16 : SDNode <"AMDGPUISD::BUFFER_LOAD_FORMAT_D16",
136                                SDTBufferLoad,
137                                [SDNPMemOperand, SDNPHasChain, SDNPMayLoad]>;
138
139def SDTBufferStore : SDTypeProfile<0, 8,
140    [                    // vdata
141     SDTCisVT<1, v4i32>, // rsrc
142     SDTCisVT<2, i32>,   // vindex(VGPR)
143     SDTCisVT<3, i32>,   // voffset(VGPR)
144     SDTCisVT<4, i32>,   // soffset(SGPR)
145     SDTCisVT<5, i32>,   // offset(imm)
146     SDTCisVT<6, i32>,   // cachepolicy, swizzled buffer(imm)
147     SDTCisVT<7, i1>]>;  // idxen(imm)
148
149def SIbuffer_store : SDNode <"AMDGPUISD::BUFFER_STORE", SDTBufferStore,
150                             [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>;
151def SIbuffer_store_byte: SDNode <"AMDGPUISD::BUFFER_STORE_BYTE",
152                         SDTBufferStore,
153                         [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>;
154def SIbuffer_store_short : SDNode <"AMDGPUISD::BUFFER_STORE_SHORT",
155                           SDTBufferStore,
156                           [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>;
157def SIbuffer_store_format : SDNode <"AMDGPUISD::BUFFER_STORE_FORMAT",
158                            SDTBufferStore,
159                            [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>;
160def SIbuffer_store_format_d16 : SDNode <"AMDGPUISD::BUFFER_STORE_FORMAT_D16",
161                            SDTBufferStore,
162                            [SDNPMayStore, SDNPMemOperand, SDNPHasChain]>;
163
164class SDBufferAtomic<string opcode> : SDNode <opcode,
165  SDTypeProfile<1, 8,
166       [SDTCisVT<2, v4i32>, // rsrc
167       SDTCisVT<3, i32>,   // vindex(VGPR)
168       SDTCisVT<4, i32>,   // voffset(VGPR)
169       SDTCisVT<5, i32>,   // soffset(SGPR)
170       SDTCisVT<6, i32>,   // offset(imm)
171       SDTCisVT<7, i32>,   // cachepolicy(imm)
172       SDTCisVT<8, i1>]>,  // idxen(imm)
173  [SDNPMemOperand, SDNPHasChain, SDNPMayLoad, SDNPMayStore]
174>;
175
176def SIbuffer_atomic_swap : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SWAP">;
177def SIbuffer_atomic_add : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_ADD">;
178def SIbuffer_atomic_sub : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SUB">;
179def SIbuffer_atomic_smin : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SMIN">;
180def SIbuffer_atomic_umin : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_UMIN">;
181def SIbuffer_atomic_smax : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_SMAX">;
182def SIbuffer_atomic_umax : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_UMAX">;
183def SIbuffer_atomic_and : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_AND">;
184def SIbuffer_atomic_or : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_OR">;
185def SIbuffer_atomic_xor : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_XOR">;
186def SIbuffer_atomic_inc : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_INC">;
187def SIbuffer_atomic_dec : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_DEC">;
188def SIbuffer_atomic_csub : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_CSUB">;
189def SIbuffer_atomic_fadd : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_FADD">;
190def SIbuffer_atomic_fmin : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_FMIN">;
191def SIbuffer_atomic_fmax : SDBufferAtomic <"AMDGPUISD::BUFFER_ATOMIC_FMAX">;
192
193def SIbuffer_atomic_cmpswap : SDNode <"AMDGPUISD::BUFFER_ATOMIC_CMPSWAP",
194  SDTypeProfile<1, 9,
195    [SDTCisVT<0, i32>,   // dst
196     SDTCisVT<1, i32>,   // src
197     SDTCisVT<2, i32>,   // cmp
198     SDTCisVT<3, v4i32>, // rsrc
199     SDTCisVT<4, i32>,   // vindex(VGPR)
200     SDTCisVT<5, i32>,   // voffset(VGPR)
201     SDTCisVT<6, i32>,   // soffset(SGPR)
202     SDTCisVT<7, i32>,   // offset(imm)
203     SDTCisVT<8, i32>,   // cachepolicy(imm)
204     SDTCisVT<9, i1>]>,  // idxen(imm)
205  [SDNPMemOperand, SDNPHasChain, SDNPMayLoad, SDNPMayStore]
206>;
207
208class SDGlobalAtomicNoRtn<string opcode, ValueType ty> : SDNode <opcode,
209  SDTypeProfile<0, 2,
210      [SDTCisPtrTy<0>,     // vaddr
211       SDTCisVT<1, ty>]>,  // vdata
212  [SDNPMemOperand, SDNPHasChain, SDNPMayLoad, SDNPMayStore]
213>;
214
215def SIpc_add_rel_offset : SDNode<"AMDGPUISD::PC_ADD_REL_OFFSET",
216  SDTypeProfile<1, 2, [SDTCisVT<0, iPTR>, SDTCisSameAs<0,1>, SDTCisSameAs<0,2>]>
217>;
218
219def SIlds : SDNode<"AMDGPUISD::LDS",
220  SDTypeProfile<1, 1, [SDTCisVT<0, iPTR>, SDTCisSameAs<0,1>]>
221>;
222
223def SIload_d16_lo : SDNode<"AMDGPUISD::LOAD_D16_LO",
224  SIload_d16,
225  [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]
226>;
227
228def SIload_d16_lo_u8 : SDNode<"AMDGPUISD::LOAD_D16_LO_U8",
229  SIload_d16,
230  [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]
231>;
232
233def SIload_d16_lo_i8 : SDNode<"AMDGPUISD::LOAD_D16_LO_I8",
234  SIload_d16,
235  [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]
236>;
237
238def SIload_d16_hi : SDNode<"AMDGPUISD::LOAD_D16_HI",
239  SIload_d16,
240  [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]
241>;
242
243def SIload_d16_hi_u8 : SDNode<"AMDGPUISD::LOAD_D16_HI_U8",
244  SIload_d16,
245  [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]
246>;
247
248def SIload_d16_hi_i8 : SDNode<"AMDGPUISD::LOAD_D16_HI_I8",
249  SIload_d16,
250  [SDNPMayLoad, SDNPMemOperand, SDNPHasChain]
251>;
252
253def SIdenorm_mode : SDNode<"AMDGPUISD::DENORM_MODE",
254  SDTypeProfile<0 ,1, [SDTCisInt<0>]>,
255  [SDNPHasChain, SDNPOptInGlue, SDNPOutGlue]
256>;
257
258//===----------------------------------------------------------------------===//
259// ValueType helpers
260//===----------------------------------------------------------------------===//
261
262// Returns 1 if the source arguments have modifiers, 0 if they do not.
263// XXX - do f16 instructions?
264class isFloatType<ValueType SrcVT> {
265  bit ret = !or(!eq(SrcVT.Value, f16.Value),
266                !eq(SrcVT.Value, f32.Value),
267                !eq(SrcVT.Value, f64.Value),
268                !eq(SrcVT.Value, v2f16.Value),
269                !eq(SrcVT.Value, v4f16.Value),
270                !eq(SrcVT.Value, v2f32.Value),
271                !eq(SrcVT.Value, v2f64.Value),
272                !eq(SrcVT.Value, v4f64.Value));
273}
274
275class isIntType<ValueType SrcVT> {
276  bit ret = !or(!eq(SrcVT.Value, i16.Value),
277                !eq(SrcVT.Value, i32.Value),
278                !eq(SrcVT.Value, i64.Value),
279                !eq(SrcVT.Value, v2i32.Value));
280}
281
282class isPackedType<ValueType SrcVT> {
283  bit ret = !or(!eq(SrcVT.Value, v2i16.Value),
284                !eq(SrcVT.Value, v2f16.Value),
285                !eq(SrcVT.Value, v4f16.Value),
286                !eq(SrcVT.Value, v2f32.Value));
287}
288
289
290//===----------------------------------------------------------------------===//
291// PatFrags for global memory operations
292//===----------------------------------------------------------------------===//
293
294foreach as = [ "global", "flat", "constant", "local", "private", "region" ] in {
295let AddressSpaces = !cast<AddressSpaceList>("LoadAddress_"#as).AddrSpaces in {
296
297
298defm atomic_inc_#as : binary_atomic_op<SIatomic_inc>;
299defm atomic_dec_#as : binary_atomic_op<SIatomic_dec>;
300defm atomic_load_fmin_#as : binary_atomic_op<SIatomic_fmin, 0>;
301defm atomic_load_fmax_#as : binary_atomic_op<SIatomic_fmax, 0>;
302
303
304} // End let AddressSpaces = ...
305} // End foreach AddrSpace
306
307
308//===----------------------------------------------------------------------===//
309// SDNodes PatFrags for loads/stores with a glue input.
310// This is for SDNodes and PatFrag for local loads and stores to
311// enable s_mov_b32 m0, -1 to be glued to the memory instructions.
312//
313// These mirror the regular load/store PatFrags and rely on special
314// processing during Select() to add the glued copy.
315//
316//===----------------------------------------------------------------------===//
317
318def AMDGPUld_glue : SDNode <"ISD::LOAD", SDTLoad,
319  [SDNPHasChain, SDNPMayLoad, SDNPMemOperand, SDNPInGlue]
320>;
321
322def AMDGPUatomic_ld_glue : SDNode <"ISD::ATOMIC_LOAD", SDTAtomicLoad,
323  [SDNPHasChain, SDNPMayLoad, SDNPMemOperand, SDNPInGlue]
324>;
325
326def unindexedload_glue : PatFrag <(ops node:$ptr), (AMDGPUld_glue node:$ptr)> {
327  let IsLoad = 1;
328  let IsUnindexed = 1;
329}
330
331def load_glue : PatFrag <(ops node:$ptr), (unindexedload_glue node:$ptr)> {
332  let IsLoad = 1;
333  let IsNonExtLoad = 1;
334}
335
336def atomic_load_32_glue : PatFrag<(ops node:$ptr),
337  (AMDGPUatomic_ld_glue node:$ptr)> {
338  let IsAtomic = 1;
339  let MemoryVT = i32;
340}
341
342def atomic_load_64_glue : PatFrag<(ops node:$ptr),
343  (AMDGPUatomic_ld_glue node:$ptr)> {
344  let IsAtomic = 1;
345  let MemoryVT = i64;
346}
347
348def extload_glue : PatFrag<(ops node:$ptr), (unindexedload_glue node:$ptr)> {
349  let IsLoad = 1;
350  let IsAnyExtLoad = 1;
351}
352
353def sextload_glue : PatFrag<(ops node:$ptr), (unindexedload_glue node:$ptr)> {
354  let IsLoad = 1;
355  let IsSignExtLoad = 1;
356}
357
358def zextload_glue : PatFrag<(ops node:$ptr), (unindexedload_glue node:$ptr)> {
359  let IsLoad = 1;
360  let IsZeroExtLoad = 1;
361}
362
363def extloadi8_glue : PatFrag<(ops node:$ptr), (extload_glue node:$ptr)> {
364  let IsLoad = 1;
365  let MemoryVT = i8;
366}
367
368def zextloadi8_glue : PatFrag<(ops node:$ptr), (zextload_glue node:$ptr)> {
369  let IsLoad = 1;
370  let MemoryVT = i8;
371}
372
373def extloadi16_glue : PatFrag<(ops node:$ptr), (extload_glue node:$ptr)> {
374  let IsLoad = 1;
375  let MemoryVT = i16;
376}
377
378def zextloadi16_glue : PatFrag<(ops node:$ptr), (zextload_glue node:$ptr)> {
379  let IsLoad = 1;
380  let MemoryVT = i16;
381}
382
383def sextloadi8_glue : PatFrag<(ops node:$ptr), (sextload_glue node:$ptr)> {
384  let IsLoad = 1;
385  let MemoryVT = i8;
386}
387
388def sextloadi16_glue : PatFrag<(ops node:$ptr), (sextload_glue node:$ptr)> {
389  let IsLoad = 1;
390  let MemoryVT = i16;
391}
392
393
394let IsLoad = 1, AddressSpaces = LoadAddress_local.AddrSpaces in {
395def load_local_m0 : PatFrag<(ops node:$ptr), (load_glue node:$ptr)> {
396  let IsNonExtLoad = 1;
397}
398
399let MemoryVT = i8 in {
400def extloadi8_local_m0 : PatFrag<(ops node:$ptr), (extloadi8_glue node:$ptr)>;
401def sextloadi8_local_m0 : PatFrag<(ops node:$ptr), (sextloadi8_glue node:$ptr)>;
402def zextloadi8_local_m0 : PatFrag<(ops node:$ptr), (zextloadi8_glue node:$ptr)>;
403}
404
405let MemoryVT = i16 in {
406def extloadi16_local_m0 : PatFrag<(ops node:$ptr), (extloadi16_glue node:$ptr)>;
407def sextloadi16_local_m0 : PatFrag<(ops node:$ptr), (sextloadi16_glue node:$ptr)>;
408def zextloadi16_local_m0 : PatFrag<(ops node:$ptr), (zextloadi16_glue node:$ptr)>;
409}
410
411def load_align8_local_m0 : PatFrag<(ops node:$ptr),
412                                   (load_local_m0 node:$ptr)>, Aligned<8> {
413  let IsLoad = 1;
414  let IsNonExtLoad = 1;
415}
416
417def load_align16_local_m0 : PatFrag<(ops node:$ptr),
418                                   (load_local_m0 node:$ptr)>, Aligned<16> {
419  let IsLoad = 1;
420  let IsNonExtLoad = 1;
421}
422
423} // End IsLoad = 1
424
425let IsAtomic = 1, AddressSpaces = LoadAddress_local.AddrSpaces in {
426def atomic_load_32_local_m0 : PatFrag<(ops node:$ptr),
427                                      (atomic_load_32_glue node:$ptr)> {
428  let MemoryVT = i32;
429}
430def atomic_load_64_local_m0 : PatFrag<(ops node:$ptr),
431                                       (atomic_load_64_glue node:$ptr)> {
432  let MemoryVT = i64;
433}
434
435} // End let AddressSpaces = LoadAddress_local.AddrSpaces
436
437
438def AMDGPUst_glue : SDNode <"ISD::STORE", SDTStore,
439  [SDNPHasChain, SDNPMayStore, SDNPMemOperand, SDNPInGlue]
440>;
441
442def AMDGPUatomic_st_glue : SDNode <"ISD::ATOMIC_STORE", SDTAtomicStore,
443  [SDNPHasChain, SDNPMayStore, SDNPMemOperand, SDNPInGlue]
444>;
445
446def unindexedstore_glue : PatFrag<(ops node:$val, node:$ptr),
447                                   (AMDGPUst_glue node:$val, node:$ptr)> {
448  let IsStore = 1;
449  let IsUnindexed = 1;
450}
451
452def store_glue : PatFrag<(ops node:$val, node:$ptr),
453                         (unindexedstore_glue node:$val, node:$ptr)> {
454  let IsStore = 1;
455  let IsTruncStore = 0;
456}
457
458def truncstore_glue : PatFrag<(ops node:$val, node:$ptr),
459  (unindexedstore_glue node:$val, node:$ptr)> {
460  let IsStore = 1;
461  let IsTruncStore = 1;
462}
463
464def truncstorei8_glue : PatFrag<(ops node:$val, node:$ptr),
465                           (truncstore_glue node:$val, node:$ptr)> {
466  let IsStore = 1;
467  let MemoryVT = i8;
468}
469
470def truncstorei16_glue : PatFrag<(ops node:$val, node:$ptr),
471                           (truncstore_glue node:$val, node:$ptr)> {
472  let IsStore = 1;
473  let MemoryVT = i16;
474}
475
476let IsStore = 1, AddressSpaces = StoreAddress_local.AddrSpaces in {
477def store_local_m0 : PatFrag<(ops node:$val, node:$ptr),
478                             (store_glue node:$val, node:$ptr)> {
479  let IsStore = 1;
480  let IsTruncStore = 0;
481}
482
483def truncstorei8_local_m0 : PatFrag<(ops node:$val, node:$ptr),
484                                    (unindexedstore_glue node:$val, node:$ptr)> {
485  let IsStore = 1;
486  let MemoryVT = i8;
487}
488
489def truncstorei16_local_m0 : PatFrag<(ops node:$val, node:$ptr),
490                                    (unindexedstore_glue node:$val, node:$ptr)> {
491  let IsStore = 1;
492  let MemoryVT = i16;
493}
494}
495
496def store_align8_local_m0 : PatFrag <(ops node:$value, node:$ptr),
497                                     (store_local_m0 node:$value, node:$ptr)>,
498                            Aligned<8> {
499  let IsStore = 1;
500  let IsTruncStore = 0;
501}
502
503def store_align16_local_m0 : PatFrag <(ops node:$value, node:$ptr),
504                                     (store_local_m0 node:$value, node:$ptr)>,
505                            Aligned<16> {
506  let IsStore = 1;
507  let IsTruncStore = 0;
508}
509
510let AddressSpaces = StoreAddress_local.AddrSpaces in {
511
512def atomic_store_local_32_m0 : PatFrag <
513  (ops node:$value, node:$ptr),
514  (AMDGPUatomic_st_glue node:$value, node:$ptr)> {
515  let IsAtomic = 1;
516  let MemoryVT = i32;
517}
518def atomic_store_local_64_m0 : PatFrag <
519  (ops node:$value, node:$ptr),
520  (AMDGPUatomic_st_glue node:$value, node:$ptr)> {
521  let IsAtomic = 1;
522  let MemoryVT = i64;
523}
524} // End let AddressSpaces = StoreAddress_local.AddrSpaces
525
526
527def si_setcc_uniform : PatFrag <
528  (ops node:$lhs, node:$rhs, node:$cond),
529  (setcc node:$lhs, node:$rhs, node:$cond), [{
530  for (SDNode *Use : N->uses()) {
531    if (Use->isMachineOpcode() || Use->getOpcode() != ISD::CopyToReg)
532      return false;
533
534    unsigned Reg = cast<RegisterSDNode>(Use->getOperand(1))->getReg();
535    if (Reg != AMDGPU::SCC)
536      return false;
537  }
538  return true;
539}]>;
540
541//===----------------------------------------------------------------------===//
542// SDNodes PatFrags for a16 loads and stores with 3 components.
543// v3f16/v3i16 is widened to v4f16/v4i16, so we need to match on the memory
544// load/store size.
545//===----------------------------------------------------------------------===//
546
547class mubuf_intrinsic_load<SDPatternOperator name, ValueType vt> : PatFrag <
548  (ops node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
549            node:$auxiliary, node:$idxen),
550  (name node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
551            node:$auxiliary, node:$idxen)> {
552  let IsLoad = 1;
553  let MemoryVT = vt;
554}
555
556class mubuf_intrinsic_store<SDPatternOperator name, ValueType vt> : PatFrag <
557  (ops node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
558            node:$auxiliary, node:$idxen),
559  (name node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
560            node:$auxiliary, node:$idxen)> {
561  let IsStore = 1;
562  let MemoryVT = vt;
563}
564
565class mtbuf_intrinsic_load<SDPatternOperator name, ValueType vt> : PatFrag <
566  (ops node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
567            node:$format, node:$auxiliary, node:$idxen),
568  (name node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
569            node:$format, node:$auxiliary, node:$idxen)> {
570  let IsLoad = 1;
571  let MemoryVT = vt;
572}
573
574class mtbuf_intrinsic_store<SDPatternOperator name, ValueType vt> : PatFrag <
575  (ops node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
576            node:$format, node:$auxiliary, node:$idxen),
577  (name node:$vdata, node:$rsrc, node:$vindex, node:$voffset, node:$soffset, node:$offset,
578            node:$format, node:$auxiliary, node:$idxen)> {
579  let IsStore = 1;
580  let MemoryVT = vt;
581}
582
583//===----------------------------------------------------------------------===//
584// SDNodes PatFrags for d16 loads
585//===----------------------------------------------------------------------===//
586
587class LoadD16Frag <SDPatternOperator op> : PatFrag<
588  (ops node:$ptr, node:$tied_in),
589  (op node:$ptr, node:$tied_in)> {
590  let IsLoad = 1;
591}
592
593foreach as = [ "global", "flat", "constant", "local", "private", "region" ] in {
594let AddressSpaces = !cast<AddressSpaceList>("LoadAddress_"#as).AddrSpaces in {
595
596def load_d16_hi_#as : LoadD16Frag <SIload_d16_hi>;
597
598def az_extloadi8_d16_hi_#as : LoadD16Frag <SIload_d16_hi_u8> {
599  let MemoryVT = i8;
600}
601
602def sextloadi8_d16_hi_#as : LoadD16Frag <SIload_d16_hi_i8> {
603  let MemoryVT = i8;
604}
605
606def load_d16_lo_#as : LoadD16Frag <SIload_d16_lo>;
607
608def az_extloadi8_d16_lo_#as : LoadD16Frag <SIload_d16_lo_u8> {
609  let MemoryVT = i8;
610}
611
612def sextloadi8_d16_lo_#as : LoadD16Frag <SIload_d16_lo_i8> {
613  let MemoryVT = i8;
614}
615
616} // End let AddressSpaces = ...
617} // End foreach AddrSpace
618
619def lshr_rev : PatFrag <
620  (ops node:$src1, node:$src0),
621  (srl $src0, $src1)
622>;
623
624def ashr_rev : PatFrag <
625  (ops node:$src1, node:$src0),
626  (sra $src0, $src1)
627>;
628
629def lshl_rev : PatFrag <
630  (ops node:$src1, node:$src0),
631  (shl $src0, $src1)
632>;
633
634def add_ctpop : PatFrag <
635  (ops node:$src0, node:$src1),
636  (add (ctpop $src0), $src1)
637>;
638
639def xnor : PatFrag <
640  (ops node:$src0, node:$src1),
641  (not (xor $src0, $src1))
642>;
643
644foreach I = 1-4 in {
645def shl#I#_add : PatFrag <
646  (ops node:$src0, node:$src1),
647  (add (shl_oneuse $src0, (i32 I)), $src1)> {
648  // FIXME: Poor substitute for disabling pattern in SelectionDAG
649  let PredicateCode = [{return false;}];
650  let GISelPredicateCode = [{return true;}];
651}
652}
653
654multiclass SIAtomicM0Glue2 <string op_name, bit is_amdgpu = 0,
655                            SDTypeProfile tc = SDTAtomic2,
656                            bit IsInt = 1> {
657
658  def _glue : SDNode <
659    !if(is_amdgpu, "AMDGPUISD", "ISD")#"::ATOMIC_"#op_name, tc,
660    [SDNPHasChain, SDNPMayStore, SDNPMayLoad, SDNPMemOperand, SDNPInGlue]
661  >;
662
663  let AddressSpaces = StoreAddress_local.AddrSpaces in {
664    defm _local_m0 : binary_atomic_op <!cast<SDNode>(NAME#"_glue"), IsInt>;
665  }
666
667  let AddressSpaces = StoreAddress_region.AddrSpaces in {
668    defm _region_m0 : binary_atomic_op <!cast<SDNode>(NAME#"_glue"), IsInt>;
669  }
670}
671
672defm atomic_load_add : SIAtomicM0Glue2 <"LOAD_ADD">;
673defm atomic_load_sub : SIAtomicM0Glue2 <"LOAD_SUB">;
674defm atomic_inc : SIAtomicM0Glue2 <"INC", 1>;
675defm atomic_dec : SIAtomicM0Glue2 <"DEC", 1>;
676defm atomic_load_and : SIAtomicM0Glue2 <"LOAD_AND">;
677defm atomic_load_min : SIAtomicM0Glue2 <"LOAD_MIN">;
678defm atomic_load_max : SIAtomicM0Glue2 <"LOAD_MAX">;
679defm atomic_load_or : SIAtomicM0Glue2 <"LOAD_OR">;
680defm atomic_load_xor : SIAtomicM0Glue2 <"LOAD_XOR">;
681defm atomic_load_umin : SIAtomicM0Glue2 <"LOAD_UMIN">;
682defm atomic_load_umax : SIAtomicM0Glue2 <"LOAD_UMAX">;
683defm atomic_swap : SIAtomicM0Glue2 <"SWAP">;
684defm atomic_load_fadd : SIAtomicM0Glue2 <"LOAD_FADD", 0, SDTAtomic2_f32, 0>;
685defm atomic_load_fmin : SIAtomicM0Glue2 <"LOAD_FMIN", 1, SDTAtomic2_f32, 0>;
686defm atomic_load_fmax : SIAtomicM0Glue2 <"LOAD_FMAX", 1, SDTAtomic2_f32, 0>;
687
688def as_i1timm : SDNodeXForm<timm, [{
689  return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i1);
690}]>;
691
692def as_i8imm : SDNodeXForm<imm, [{
693  return CurDAG->getTargetConstant(N->getZExtValue(), SDLoc(N), MVT::i8);
694}]>;
695
696def as_i8timm : SDNodeXForm<timm, [{
697  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16);
698}]>;
699
700def as_i16imm : SDNodeXForm<imm, [{
701  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16);
702}]>;
703
704def as_i16timm : SDNodeXForm<timm, [{
705  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i16);
706}]>;
707
708def as_i32imm: SDNodeXForm<imm, [{
709  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i32);
710}]>;
711
712def as_i32timm: SDNodeXForm<timm, [{
713  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i32);
714}]>;
715
716def as_i64imm: SDNodeXForm<imm, [{
717  return CurDAG->getTargetConstant(N->getSExtValue(), SDLoc(N), MVT::i64);
718}]>;
719
720def cond_as_i32imm: SDNodeXForm<cond, [{
721  return CurDAG->getTargetConstant(N->get(), SDLoc(N), MVT::i32);
722}]>;
723
724// Copied from the AArch64 backend:
725def bitcast_fpimm_to_i32 : SDNodeXForm<fpimm, [{
726return CurDAG->getTargetConstant(
727  N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i32);
728}]>;
729
730def frameindex_to_targetframeindex : SDNodeXForm<frameindex, [{
731  auto FI = cast<FrameIndexSDNode>(N);
732  return CurDAG->getTargetFrameIndex(FI->getIndex(), MVT::i32);
733}]>;
734
735// Copied from the AArch64 backend:
736def bitcast_fpimm_to_i64 : SDNodeXForm<fpimm, [{
737return CurDAG->getTargetConstant(
738  N->getValueAPF().bitcastToAPInt().getZExtValue(), SDLoc(N), MVT::i64);
739}]>;
740
741class bitextract_imm<int bitnum> : SDNodeXForm<imm, [{
742  uint64_t Imm = N->getZExtValue();
743  unsigned Bit = (Imm >> }] # bitnum # [{ ) & 1;
744  return CurDAG->getTargetConstant(Bit, SDLoc(N), MVT::i1);
745}]>;
746
747def SIMM16bit : ImmLeaf <i32,
748  [{return isInt<16>(Imm);}]
749>;
750
751def UIMM16bit : ImmLeaf <i32,
752  [{return isUInt<16>(Imm);}]
753>;
754
755def i64imm_32bit : ImmLeaf<i64, [{
756  return (Imm & 0xffffffffULL) == static_cast<uint64_t>(Imm);
757}]>;
758
759def InlineImm16 : ImmLeaf<i16, [{
760  return isInlineImmediate16(Imm);
761}]>;
762
763def InlineImm32 : ImmLeaf<i32, [{
764  return isInlineImmediate32(Imm);
765}]>;
766
767def InlineImm64 : ImmLeaf<i64, [{
768  return isInlineImmediate64(Imm);
769}]>;
770
771def InlineImmFP32 : FPImmLeaf<f32, [{
772  return isInlineImmediate(Imm);
773}]>;
774
775def InlineImmFP64 : FPImmLeaf<f64, [{
776  return isInlineImmediate(Imm);
777}]>;
778
779
780class VGPRImm <dag frag> : PatLeaf<frag, [{
781  return isVGPRImm(N);
782}]>;
783
784def NegateImm : SDNodeXForm<imm, [{
785  return CurDAG->getConstant(-N->getSExtValue(), SDLoc(N), MVT::i32);
786}]>;
787
788// TODO: When FP inline imm values work?
789def NegSubInlineConst32 : ImmLeaf<i32, [{
790  return Imm < -16 && Imm >= -64;
791}], NegateImm>;
792
793def NegSubInlineIntConst16 : ImmLeaf<i16, [{
794  return Imm < -16 && Imm >= -64;
795}], NegateImm>;
796
797def ShiftAmt32Imm : ImmLeaf <i32, [{
798  return Imm < 32;
799}]>;
800
801def getNegV2I16Imm : SDNodeXForm<build_vector, [{
802  return SDValue(packNegConstantV2I16(N, *CurDAG), 0);
803}]>;
804
805def NegSubInlineConstV216 : PatLeaf<(build_vector), [{
806  assert(N->getNumOperands() == 2);
807  assert(N->getOperand(0).getValueType().getSizeInBits() == 16);
808  SDValue Src0 = N->getOperand(0);
809  SDValue Src1 = N->getOperand(1);
810  if (Src0 == Src1)
811    return isNegInlineImmediate(Src0.getNode());
812
813  return (isNullConstantOrUndef(Src0) && isNegInlineImmediate(Src1.getNode())) ||
814         (isNullConstantOrUndef(Src1) && isNegInlineImmediate(Src0.getNode()));
815}], getNegV2I16Imm>;
816
817//===----------------------------------------------------------------------===//
818// MUBUF/SMEM Patterns
819//===----------------------------------------------------------------------===//
820
821def extract_cpol : SDNodeXForm<timm, [{
822  return CurDAG->getTargetConstant(N->getZExtValue() & AMDGPU::CPol::ALL, SDLoc(N), MVT::i8);
823}]>;
824
825def extract_swz : SDNodeXForm<timm, [{
826  return CurDAG->getTargetConstant((N->getZExtValue() >> 3) & 1, SDLoc(N), MVT::i8);
827}]>;
828
829def set_glc : SDNodeXForm<timm, [{
830  return CurDAG->getTargetConstant(N->getZExtValue() | AMDGPU::CPol::GLC, SDLoc(N), MVT::i8);
831}]>;
832
833//===----------------------------------------------------------------------===//
834// Custom Operands
835//===----------------------------------------------------------------------===//
836
837def SoppBrTarget : AsmOperandClass {
838  let Name = "SoppBrTarget";
839  let ParserMethod = "parseSOppBrTarget";
840}
841
842def sopp_brtarget : Operand<OtherVT> {
843  let EncoderMethod = "getSOPPBrEncoding";
844  let DecoderMethod = "decodeSoppBrTarget";
845  let OperandType = "OPERAND_PCREL";
846  let ParserMatchClass = SoppBrTarget;
847}
848
849def si_ga : Operand<iPTR>;
850
851def InterpSlotMatchClass : AsmOperandClass {
852  let Name = "InterpSlot";
853  let PredicateMethod = "isInterpSlot";
854  let ParserMethod = "parseInterpSlot";
855  let RenderMethod = "addImmOperands";
856}
857
858def InterpSlot : Operand<i32> {
859  let PrintMethod = "printInterpSlot";
860  let ParserMatchClass = InterpSlotMatchClass;
861  let OperandType = "OPERAND_IMMEDIATE";
862}
863
864def AttrMatchClass : AsmOperandClass {
865  let Name = "Attr";
866  let PredicateMethod = "isInterpAttr";
867  let ParserMethod = "parseInterpAttr";
868  let RenderMethod = "addImmOperands";
869}
870
871// It appears to be necessary to create a separate operand for this to
872// be able to parse attr<num> with no space.
873def Attr : Operand<i32> {
874  let PrintMethod = "printInterpAttr";
875  let ParserMatchClass = AttrMatchClass;
876  let OperandType = "OPERAND_IMMEDIATE";
877}
878
879def AttrChanMatchClass : AsmOperandClass {
880  let Name = "AttrChan";
881  let PredicateMethod = "isAttrChan";
882  let RenderMethod = "addImmOperands";
883}
884
885def AttrChan : Operand<i32> {
886  let PrintMethod = "printInterpAttrChan";
887  let ParserMatchClass = AttrChanMatchClass;
888  let OperandType = "OPERAND_IMMEDIATE";
889}
890
891def SendMsgMatchClass : AsmOperandClass {
892  let Name = "SendMsg";
893  let PredicateMethod = "isSendMsg";
894  let ParserMethod = "parseSendMsgOp";
895  let RenderMethod = "addImmOperands";
896}
897
898def SwizzleMatchClass : AsmOperandClass {
899  let Name = "Swizzle";
900  let PredicateMethod = "isSwizzle";
901  let ParserMethod = "parseSwizzleOp";
902  let RenderMethod = "addImmOperands";
903  let IsOptional = 1;
904}
905
906def EndpgmMatchClass : AsmOperandClass {
907  let Name = "EndpgmImm";
908  let PredicateMethod = "isEndpgm";
909  let ParserMethod = "parseEndpgmOp";
910  let RenderMethod = "addImmOperands";
911  let IsOptional = 1;
912}
913
914def ExpTgtMatchClass : AsmOperandClass {
915  let Name = "ExpTgt";
916  let PredicateMethod = "isExpTgt";
917  let ParserMethod = "parseExpTgt";
918  let RenderMethod = "printExpTgt";
919}
920
921def SWaitMatchClass : AsmOperandClass {
922  let Name = "SWaitCnt";
923  let RenderMethod = "addImmOperands";
924  let ParserMethod = "parseSWaitCntOps";
925}
926
927def VReg32OrOffClass : AsmOperandClass {
928  let Name = "VReg32OrOff";
929  let ParserMethod = "parseVReg32OrOff";
930}
931
932let OperandType = "OPERAND_IMMEDIATE" in {
933def SendMsgImm : Operand<i32> {
934  let PrintMethod = "printSendMsg";
935  let ParserMatchClass = SendMsgMatchClass;
936}
937
938def SwizzleImm : Operand<i16> {
939  let PrintMethod = "printSwizzle";
940  let ParserMatchClass = SwizzleMatchClass;
941}
942
943def EndpgmImm : Operand<i16> {
944  let PrintMethod = "printEndpgm";
945  let ParserMatchClass = EndpgmMatchClass;
946}
947
948def WAIT_FLAG : Operand <i32> {
949  let ParserMatchClass = SWaitMatchClass;
950  let PrintMethod = "printWaitFlag";
951}
952} // End OperandType = "OPERAND_IMMEDIATE"
953
954include "SIInstrFormats.td"
955include "VIInstrFormats.td"
956
957def BoolReg : AsmOperandClass {
958  let Name = "BoolReg";
959  let ParserMethod = "parseBoolReg";
960  let RenderMethod = "addRegOperands";
961}
962
963class BoolRC : RegisterOperand<SReg_1> {
964  let ParserMatchClass = BoolReg;
965  let DecoderMethod = "decodeBoolReg";
966}
967
968def SSrc_i1 : RegisterOperand<SReg_1_XEXEC> {
969  let ParserMatchClass = BoolReg;
970  let DecoderMethod = "decodeBoolReg";
971}
972
973def VOPDstS64orS32 : BoolRC {
974  let PrintMethod = "printVOPDst";
975}
976
977// SCSrc_i1 is the operand for pseudo instructions only.
978// Boolean immediates shall not be exposed to codegen instructions.
979def SCSrc_i1 : RegisterOperand<SReg_1_XEXEC> {
980  let OperandNamespace = "AMDGPU";
981  let OperandType = "OPERAND_REG_IMM_INT32";
982  let ParserMatchClass = BoolReg;
983  let DecoderMethod = "decodeBoolReg";
984}
985
986// ===----------------------------------------------------------------------===//
987// ExpSrc* Special cases for exp src operands which are printed as
988// "off" depending on en operand.
989// ===----------------------------------------------------------------------===//
990
991def ExpSrc0 : RegisterOperand<VGPR_32> {
992  let PrintMethod = "printExpSrc0";
993  let ParserMatchClass = VReg32OrOffClass;
994}
995
996def ExpSrc1 : RegisterOperand<VGPR_32> {
997  let PrintMethod = "printExpSrc1";
998  let ParserMatchClass = VReg32OrOffClass;
999}
1000
1001def ExpSrc2 : RegisterOperand<VGPR_32> {
1002  let PrintMethod = "printExpSrc2";
1003  let ParserMatchClass = VReg32OrOffClass;
1004}
1005
1006def ExpSrc3 : RegisterOperand<VGPR_32> {
1007  let PrintMethod = "printExpSrc3";
1008  let ParserMatchClass = VReg32OrOffClass;
1009}
1010
1011class SDWASrc<ValueType vt> : RegisterOperand<VS_32> {
1012  let OperandNamespace = "AMDGPU";
1013  string Type = !if(isFloatType<vt>.ret, "FP", "INT");
1014  let OperandType = "OPERAND_REG_INLINE_C_"#Type#vt.Size;
1015  let DecoderMethod = "decodeSDWASrc"#vt.Size;
1016  let EncoderMethod = "getSDWASrcEncoding";
1017}
1018
1019def SDWASrc_i32 : SDWASrc<i32>;
1020def SDWASrc_i16 : SDWASrc<i16>;
1021def SDWASrc_f32 : SDWASrc<f32>;
1022def SDWASrc_f16 : SDWASrc<f16>;
1023
1024def SDWAVopcDst : BoolRC {
1025  let OperandNamespace = "AMDGPU";
1026  let OperandType = "OPERAND_SDWA_VOPC_DST";
1027  let EncoderMethod = "getSDWAVopcDstEncoding";
1028  let DecoderMethod = "decodeSDWAVopcDst";
1029  let PrintMethod = "printVOPDst";
1030}
1031
1032class NamedMatchClass<string CName, bit Optional = 1> : AsmOperandClass {
1033  let Name = "Imm"#CName;
1034  let PredicateMethod = "is"#CName;
1035  let ParserMethod = !if(Optional, "parseOptionalOperand", "parse"#CName);
1036  let RenderMethod = "addImmOperands";
1037  let IsOptional = Optional;
1038  let DefaultMethod = !if(Optional, "default"#CName, ?);
1039}
1040
1041class NamedOperandBit<string Name, AsmOperandClass MatchClass> : Operand<i1> {
1042  let PrintMethod = "print"#Name;
1043  let ParserMatchClass = MatchClass;
1044}
1045
1046class NamedOperandBit_0<string Name, AsmOperandClass MatchClass> :
1047  OperandWithDefaultOps<i1, (ops (i1 0))> {
1048  let PrintMethod = "print"#Name;
1049  let ParserMatchClass = MatchClass;
1050}
1051
1052class NamedOperandBit_1<string Name, AsmOperandClass MatchClass> :
1053  OperandWithDefaultOps<i1, (ops (i1 1))> {
1054  let PrintMethod = "print"#Name;
1055  let ParserMatchClass = MatchClass;
1056}
1057
1058class NamedOperandU8<string Name, AsmOperandClass MatchClass> : Operand<i8> {
1059  let PrintMethod = "print"#Name;
1060  let ParserMatchClass = MatchClass;
1061}
1062
1063class NamedOperandU16<string Name, AsmOperandClass MatchClass> : Operand<i16> {
1064  let PrintMethod = "print"#Name;
1065  let ParserMatchClass = MatchClass;
1066}
1067
1068class NamedOperandU32<string Name, AsmOperandClass MatchClass> : Operand<i32> {
1069  let PrintMethod = "print"#Name;
1070  let ParserMatchClass = MatchClass;
1071}
1072
1073class NamedOperandU32_0<string Name, AsmOperandClass MatchClass> :
1074  OperandWithDefaultOps<i32, (ops (i32 0))> {
1075  let PrintMethod = "print"#Name;
1076  let ParserMatchClass = MatchClass;
1077}
1078
1079class NamedOperandU32Default0<string Name, AsmOperandClass MatchClass> :
1080  OperandWithDefaultOps<i32, (ops (i32 0))> {
1081  let PrintMethod = "print"#Name;
1082  let ParserMatchClass = MatchClass;
1083}
1084
1085class NamedOperandU32Default1<string Name, AsmOperandClass MatchClass> :
1086  OperandWithDefaultOps<i32, (ops (i32 1))> {
1087  let PrintMethod = "print"#Name;
1088  let ParserMatchClass = MatchClass;
1089}
1090
1091let OperandType = "OPERAND_IMMEDIATE" in {
1092
1093def offen : NamedOperandBit<"Offen", NamedMatchClass<"Offen">>;
1094def idxen : NamedOperandBit<"Idxen", NamedMatchClass<"Idxen">>;
1095def addr64 : NamedOperandBit<"Addr64", NamedMatchClass<"Addr64">>;
1096
1097def flat_offset : NamedOperandU16<"FlatOffset", NamedMatchClass<"FlatOffset">>;
1098def offset : NamedOperandU16<"Offset", NamedMatchClass<"Offset">>;
1099def offset0 : NamedOperandU8<"Offset0", NamedMatchClass<"Offset0">>;
1100def offset1 : NamedOperandU8<"Offset1", NamedMatchClass<"Offset1">>;
1101
1102def gds : NamedOperandBit<"GDS", NamedMatchClass<"GDS">>;
1103
1104def omod : NamedOperandU32<"OModSI", NamedMatchClass<"OModSI">>;
1105def omod0 : NamedOperandU32_0<"OModSI", NamedMatchClass<"OModSI">>;
1106
1107// We need to make the cases with a default of 0 distinct from no
1108// default to help deal with some cases where the operand appears
1109// before a mandatory operand.
1110def clampmod : NamedOperandBit<"ClampSI", NamedMatchClass<"ClampSI">>;
1111def clampmod0 : NamedOperandBit_0<"ClampSI", NamedMatchClass<"ClampSI">>;
1112def highmod : NamedOperandBit<"High", NamedMatchClass<"High">>;
1113
1114def CPol : NamedOperandU32<"CPol", NamedMatchClass<"CPol">>;
1115def CPol_0 : NamedOperandU32Default0<"CPol", NamedMatchClass<"CPol">>;
1116def CPol_GLC1 : NamedOperandU32Default1<"CPol", NamedMatchClass<"CPol">>;
1117
1118def TFE : NamedOperandBit<"TFE", NamedMatchClass<"TFE">>;
1119def TFE_0 : NamedOperandBit_0<"TFE", NamedMatchClass<"TFE">>;
1120def SWZ : NamedOperandBit<"SWZ", NamedMatchClass<"SWZ">>;
1121def SWZ_0 : NamedOperandBit_0<"SWZ", NamedMatchClass<"SWZ">>;
1122def UNorm : NamedOperandBit<"UNorm", NamedMatchClass<"UNorm">>;
1123def DA : NamedOperandBit<"DA", NamedMatchClass<"DA">>;
1124def R128A16 : NamedOperandBit<"R128A16", NamedMatchClass<"R128A16">>;
1125def GFX10A16 : NamedOperandBit<"GFX10A16", NamedMatchClass<"GFX10A16">>;
1126def D16 : NamedOperandBit<"D16", NamedMatchClass<"D16">>;
1127def LWE : NamedOperandBit<"LWE", NamedMatchClass<"LWE">>;
1128def exp_compr : NamedOperandBit<"ExpCompr", NamedMatchClass<"ExpCompr">>;
1129def exp_vm : NamedOperandBit<"ExpVM", NamedMatchClass<"ExpVM">>;
1130
1131def FORMAT : NamedOperandU8<"FORMAT", NamedMatchClass<"FORMAT", 0>>;
1132
1133def DMask : NamedOperandU16<"DMask", NamedMatchClass<"DMask">>;
1134def Dim : NamedOperandU8<"Dim", NamedMatchClass<"Dim", 0>>;
1135
1136def dpp8 : NamedOperandU32<"DPP8", NamedMatchClass<"DPP8", 0>>;
1137
1138def dpp_ctrl : NamedOperandU32<"DPPCtrl", NamedMatchClass<"DPPCtrl", 0>>;
1139def row_mask : NamedOperandU32<"RowMask", NamedMatchClass<"RowMask">>;
1140def bank_mask : NamedOperandU32<"BankMask", NamedMatchClass<"BankMask">>;
1141def bound_ctrl : NamedOperandBit<"BoundCtrl", NamedMatchClass<"BoundCtrl">>;
1142def FI : NamedOperandU32<"FI", NamedMatchClass<"FI">>;
1143
1144def dst_sel : NamedOperandU32<"SDWADstSel", NamedMatchClass<"SDWADstSel">>;
1145def src0_sel : NamedOperandU32<"SDWASrc0Sel", NamedMatchClass<"SDWASrc0Sel">>;
1146def src1_sel : NamedOperandU32<"SDWASrc1Sel", NamedMatchClass<"SDWASrc1Sel">>;
1147def dst_unused : NamedOperandU32<"SDWADstUnused", NamedMatchClass<"SDWADstUnused">>;
1148
1149def op_sel0 : NamedOperandU32Default0<"OpSel", NamedMatchClass<"OpSel">>;
1150def op_sel_hi0 : NamedOperandU32Default0<"OpSelHi", NamedMatchClass<"OpSelHi">>;
1151def neg_lo0 : NamedOperandU32Default0<"NegLo", NamedMatchClass<"NegLo">>;
1152def neg_hi0 : NamedOperandU32Default0<"NegHi", NamedMatchClass<"NegHi">>;
1153
1154def blgp : NamedOperandU32<"BLGP", NamedMatchClass<"BLGP">>;
1155def cbsz : NamedOperandU32<"CBSZ", NamedMatchClass<"CBSZ">>;
1156def abid : NamedOperandU32<"ABID", NamedMatchClass<"ABID">>;
1157
1158def hwreg : NamedOperandU32<"Hwreg", NamedMatchClass<"Hwreg", 0>>;
1159
1160def exp_tgt : NamedOperandU32<"ExpTgt", NamedMatchClass<"ExpTgt", 0>> {
1161
1162}
1163
1164} // End OperandType = "OPERAND_IMMEDIATE"
1165
1166class KImmMatchClass<int size> : AsmOperandClass {
1167  let Name = "KImmFP"#size;
1168  let PredicateMethod = "isKImmFP"#size;
1169  let ParserMethod = "parseImm";
1170  let RenderMethod = "addKImmFP"#size#"Operands";
1171}
1172
1173class kimmOperand<ValueType vt> : Operand<vt> {
1174  let OperandNamespace = "AMDGPU";
1175  let OperandType = "OPERAND_KIMM"#vt.Size;
1176  let PrintMethod = "printU"#vt.Size#"ImmOperand";
1177  let ParserMatchClass = !cast<AsmOperandClass>("KImmFP"#vt.Size#"MatchClass");
1178}
1179
1180// 32-bit VALU immediate operand that uses the constant bus.
1181def KImmFP32MatchClass : KImmMatchClass<32>;
1182def f32kimm : kimmOperand<i32>;
1183
1184// 32-bit VALU immediate operand with a 16-bit value that uses the
1185// constant bus.
1186def KImmFP16MatchClass : KImmMatchClass<16>;
1187def f16kimm : kimmOperand<i16>;
1188
1189class FPInputModsMatchClass <int opSize> : AsmOperandClass {
1190  let Name = "RegOrImmWithFP"#opSize#"InputMods";
1191  let ParserMethod = "parseRegOrImmWithFPInputMods";
1192  let PredicateMethod = "isRegOrImmWithFP"#opSize#"InputMods";
1193}
1194
1195def FP16InputModsMatchClass : FPInputModsMatchClass<16>;
1196def FP32InputModsMatchClass : FPInputModsMatchClass<32>;
1197def FP64InputModsMatchClass : FPInputModsMatchClass<64>;
1198
1199class InputMods <AsmOperandClass matchClass> : Operand <i32> {
1200  let OperandNamespace = "AMDGPU";
1201  let OperandType = "OPERAND_INPUT_MODS";
1202  let ParserMatchClass = matchClass;
1203}
1204
1205class FPInputMods <FPInputModsMatchClass matchClass> : InputMods <matchClass> {
1206  let PrintMethod = "printOperandAndFPInputMods";
1207}
1208
1209def FP16InputMods : FPInputMods<FP16InputModsMatchClass>;
1210def FP32InputMods : FPInputMods<FP32InputModsMatchClass>;
1211def FP64InputMods : FPInputMods<FP64InputModsMatchClass>;
1212
1213class IntInputModsMatchClass <int opSize> : AsmOperandClass {
1214  let Name = "RegOrImmWithInt"#opSize#"InputMods";
1215  let ParserMethod = "parseRegOrImmWithIntInputMods";
1216  let PredicateMethod = "isRegOrImmWithInt"#opSize#"InputMods";
1217}
1218def Int32InputModsMatchClass : IntInputModsMatchClass<32>;
1219def Int64InputModsMatchClass : IntInputModsMatchClass<64>;
1220
1221class IntInputMods <IntInputModsMatchClass matchClass> : InputMods <matchClass> {
1222  let PrintMethod = "printOperandAndIntInputMods";
1223}
1224def Int32InputMods : IntInputMods<Int32InputModsMatchClass>;
1225def Int64InputMods : IntInputMods<Int64InputModsMatchClass>;
1226
1227class OpSelModsMatchClass : AsmOperandClass {
1228  let Name = "OpSelMods";
1229  let ParserMethod = "parseRegOrImm";
1230  let PredicateMethod = "isRegOrImm";
1231}
1232
1233def IntOpSelModsMatchClass : OpSelModsMatchClass;
1234def IntOpSelMods : InputMods<IntOpSelModsMatchClass>;
1235
1236class FPSDWAInputModsMatchClass <int opSize> : AsmOperandClass {
1237  let Name = "SDWAWithFP"#opSize#"InputMods";
1238  let ParserMethod = "parseRegOrImmWithFPInputMods";
1239  let PredicateMethod = "isSDWAFP"#opSize#"Operand";
1240}
1241
1242def FP16SDWAInputModsMatchClass : FPSDWAInputModsMatchClass<16>;
1243def FP32SDWAInputModsMatchClass : FPSDWAInputModsMatchClass<32>;
1244
1245class FPSDWAInputMods <FPSDWAInputModsMatchClass matchClass> :
1246  InputMods <matchClass> {
1247  let PrintMethod = "printOperandAndFPInputMods";
1248}
1249
1250def FP16SDWAInputMods : FPSDWAInputMods<FP16SDWAInputModsMatchClass>;
1251def FP32SDWAInputMods : FPSDWAInputMods<FP32SDWAInputModsMatchClass>;
1252
1253def FPVRegInputModsMatchClass : AsmOperandClass {
1254  let Name = "VRegWithFPInputMods";
1255  let ParserMethod = "parseRegWithFPInputMods";
1256  let PredicateMethod = "isVRegWithInputMods";
1257}
1258
1259def FPVRegInputMods : InputMods <FPVRegInputModsMatchClass> {
1260  let PrintMethod = "printOperandAndFPInputMods";
1261}
1262
1263class IntSDWAInputModsMatchClass <int opSize> : AsmOperandClass {
1264  let Name = "SDWAWithInt"#opSize#"InputMods";
1265  let ParserMethod = "parseRegOrImmWithIntInputMods";
1266  let PredicateMethod = "isSDWAInt"#opSize#"Operand";
1267}
1268
1269def Int16SDWAInputModsMatchClass : IntSDWAInputModsMatchClass<16>;
1270def Int32SDWAInputModsMatchClass : IntSDWAInputModsMatchClass<32>;
1271
1272class IntSDWAInputMods <IntSDWAInputModsMatchClass matchClass> :
1273  InputMods <matchClass> {
1274  let PrintMethod = "printOperandAndIntInputMods";
1275}
1276
1277def Int16SDWAInputMods : IntSDWAInputMods<Int16SDWAInputModsMatchClass>;
1278def Int32SDWAInputMods : IntSDWAInputMods<Int32SDWAInputModsMatchClass>;
1279
1280def IntVRegInputModsMatchClass : AsmOperandClass {
1281  let Name = "VRegWithIntInputMods";
1282  let ParserMethod = "parseRegWithIntInputMods";
1283  let PredicateMethod = "isVRegWithInputMods";
1284}
1285
1286def IntVRegInputMods : InputMods <IntVRegInputModsMatchClass> {
1287  let PrintMethod = "printOperandAndIntInputMods";
1288}
1289
1290class PackedFPInputModsMatchClass <int opSize> : AsmOperandClass {
1291  let Name = "PackedFP"#opSize#"InputMods";
1292  let ParserMethod = "parseRegOrImm";
1293  let PredicateMethod = "isRegOrImm";
1294//  let PredicateMethod = "isPackedFP"#opSize#"InputMods";
1295}
1296
1297class PackedIntInputModsMatchClass <int opSize> : AsmOperandClass {
1298  let Name = "PackedInt"#opSize#"InputMods";
1299  let ParserMethod = "parseRegOrImm";
1300  let PredicateMethod = "isRegOrImm";
1301//  let PredicateMethod = "isPackedInt"#opSize#"InputMods";
1302}
1303
1304def PackedF16InputModsMatchClass : PackedFPInputModsMatchClass<16>;
1305def PackedI16InputModsMatchClass : PackedIntInputModsMatchClass<16>;
1306
1307class PackedFPInputMods <PackedFPInputModsMatchClass matchClass> : InputMods <matchClass> {
1308//  let PrintMethod = "printPackedFPInputMods";
1309}
1310
1311class PackedIntInputMods <PackedIntInputModsMatchClass matchClass> : InputMods <matchClass> {
1312  //let PrintMethod = "printPackedIntInputMods";
1313}
1314
1315def PackedF16InputMods : PackedFPInputMods<PackedF16InputModsMatchClass>;
1316def PackedI16InputMods : PackedIntInputMods<PackedI16InputModsMatchClass>;
1317
1318//===----------------------------------------------------------------------===//
1319// Complex patterns
1320//===----------------------------------------------------------------------===//
1321
1322def DS1Addr1Offset : ComplexPattern<i32, 2, "SelectDS1Addr1Offset">;
1323def DS64Bit4ByteAligned : ComplexPattern<i32, 3, "SelectDS64Bit4ByteAligned">;
1324def DS128Bit8ByteAligned : ComplexPattern<i64, 3, "SelectDS128Bit8ByteAligned">;
1325
1326def MOVRELOffset : ComplexPattern<i32, 2, "SelectMOVRELOffset">;
1327
1328def VOP3Mods0 : ComplexPattern<untyped, 4, "SelectVOP3Mods0">;
1329def VOP3Mods  : ComplexPattern<untyped, 2, "SelectVOP3Mods">;
1330def VOP3NoMods : ComplexPattern<untyped, 1, "SelectVOP3NoMods">;
1331// VOP3Mods, but the input source is known to never be NaN.
1332def VOP3Mods_nnan : ComplexPattern<fAny, 2, "SelectVOP3Mods_NNaN">;
1333
1334def VOP3OMods : ComplexPattern<untyped, 3, "SelectVOP3OMods">;
1335
1336def VOP3PMods  : ComplexPattern<untyped, 2, "SelectVOP3PMods">;
1337
1338def VOP3OpSel  : ComplexPattern<untyped, 2, "SelectVOP3OpSel">;
1339
1340def VOP3OpSelMods  : ComplexPattern<untyped, 2, "SelectVOP3OpSelMods">;
1341
1342def VOP3PMadMixMods  : ComplexPattern<untyped, 2, "SelectVOP3PMadMixMods">;
1343
1344//===----------------------------------------------------------------------===//
1345// SI assembler operands
1346//===----------------------------------------------------------------------===//
1347
1348def SIOperand {
1349  int ZERO = 0x80;
1350  int VCC = 0x6A;
1351  int FLAT_SCR = 0x68;
1352}
1353
1354// This should be kept in sync with SISrcMods enum
1355def SRCMODS {
1356  int NONE = 0;
1357  int NEG = 1;
1358  int ABS = 2;
1359  int NEG_ABS = 3;
1360
1361  int NEG_HI = ABS;
1362  int OP_SEL_0 = 4;
1363  int OP_SEL_1 = 8;
1364  int DST_OP_SEL = 8;
1365}
1366
1367def DSTCLAMP {
1368  int NONE = 0;
1369  int ENABLE = 1;
1370}
1371
1372def DSTOMOD {
1373  int NONE = 0;
1374}
1375
1376def TRAPID{
1377  int LLVM_TRAP = 2;
1378  int LLVM_DEBUG_TRAP = 3;
1379}
1380
1381def HWREG {
1382  int MODE = 1;
1383  int STATUS = 2;
1384  int TRAPSTS = 3;
1385  int HW_ID = 4;
1386  int GPR_ALLOC = 5;
1387  int LDS_ALLOC = 6;
1388  int IB_STS = 7;
1389  int MEM_BASES = 15;
1390  int TBA_LO = 16;
1391  int TBA_HI = 17;
1392  int TMA_LO = 18;
1393  int TMA_HI = 19;
1394  int FLAT_SCR_LO = 20;
1395  int FLAT_SCR_HI = 21;
1396  int XNACK_MASK = 22;
1397  int POPS_PACKER = 25;
1398  int SHADER_CYCLES = 29;
1399}
1400
1401class getHwRegImm<int Reg, int Offset = 0, int Size = 32> {
1402  int ret = !and(!or(Reg,
1403                     !shl(Offset, 6),
1404                     !shl(!add(Size, -1), 11)), 65535);
1405}
1406
1407//===----------------------------------------------------------------------===//
1408//
1409// SI Instruction multiclass helpers.
1410//
1411// Instructions with _32 take 32-bit operands.
1412// Instructions with _64 take 64-bit operands.
1413//
1414// VOP_* instructions can use either a 32-bit or 64-bit encoding.  The 32-bit
1415// encoding is the standard encoding, but instruction that make use of
1416// any of the instruction modifiers must use the 64-bit encoding.
1417//
1418// Instructions with _e32 use the 32-bit encoding.
1419// Instructions with _e64 use the 64-bit encoding.
1420//
1421//===----------------------------------------------------------------------===//
1422
1423class SIMCInstr <string pseudo, int subtarget> {
1424  string PseudoInstr = pseudo;
1425  int Subtarget = subtarget;
1426}
1427
1428//===----------------------------------------------------------------------===//
1429// Vector ALU classes
1430//===----------------------------------------------------------------------===//
1431
1432class getNumSrcArgs<ValueType Src0, ValueType Src1, ValueType Src2> {
1433  int ret =
1434    !if (!eq(Src0.Value, untyped.Value),      0,
1435      !if (!eq(Src1.Value, untyped.Value),    1,   // VOP1
1436         !if (!eq(Src2.Value, untyped.Value), 2,   // VOP2
1437                                              3))); // VOP3
1438}
1439
1440// Returns the register class to use for the destination of VOP[123C]
1441// instructions for the given VT.
1442class getVALUDstForVT<ValueType VT> {
1443  RegisterOperand ret = !if(!eq(VT.Size, 32), VOPDstOperand<VGPR_32>,
1444                          !if(!eq(VT.Size, 128), VOPDstOperand<VReg_128>,
1445                            !if(!eq(VT.Size, 64), VOPDstOperand<VReg_64>,
1446                              !if(!eq(VT.Size, 16), VOPDstOperand<VGPR_32>,
1447                              VOPDstS64orS32)))); // else VT == i1
1448}
1449
1450// Returns the register class to use for the destination of VOP[12C]
1451// instructions with SDWA extension
1452class getSDWADstForVT<ValueType VT> {
1453  RegisterOperand ret = !if(!eq(VT.Size, 1),
1454                            SDWAVopcDst, // VOPC
1455                            VOPDstOperand<VGPR_32>); // VOP1/2 32-bit dst
1456}
1457
1458// Returns the register class to use for source 0 of VOP[12C]
1459// instructions for the given VT.
1460class getVOPSrc0ForVT<ValueType VT> {
1461  bit isFP = isFloatType<VT>.ret;
1462
1463  RegisterOperand ret =
1464    !if(isFP,
1465      !if(!eq(VT.Size, 64),
1466         VSrc_f64,
1467         !if(!eq(VT.Value, f16.Value),
1468            VSrc_f16,
1469            !if(!eq(VT.Value, v2f16.Value),
1470               VSrc_v2f16,
1471               !if(!eq(VT.Value, v4f16.Value),
1472                 AVSrc_64,
1473                 VSrc_f32
1474               )
1475            )
1476         )
1477       ),
1478       !if(!eq(VT.Size, 64),
1479          VSrc_b64,
1480          !if(!eq(VT.Value, i16.Value),
1481             VSrc_b16,
1482             !if(!eq(VT.Value, v2i16.Value),
1483                VSrc_v2b16,
1484                VSrc_b32
1485             )
1486          )
1487       )
1488    );
1489}
1490
1491class getSOPSrcForVT<ValueType VT> {
1492  RegisterOperand ret = !if(!eq(VT.Size, 64), SSrc_b64, SSrc_b32);
1493}
1494
1495// Returns the vreg register class to use for source operand given VT
1496class getVregSrcForVT<ValueType VT> {
1497  RegisterClass ret = !if(!eq(VT.Size, 128), VReg_128,
1498                        !if(!eq(VT.Size, 96), VReg_96,
1499                          !if(!eq(VT.Size, 64), VReg_64,
1500                            !if(!eq(VT.Size, 48), VReg_64,
1501                              VGPR_32))));
1502}
1503
1504class getSDWASrcForVT <ValueType VT> {
1505  bit isFP = isFloatType<VT>.ret;
1506  RegisterOperand retFlt = !if(!eq(VT.Size, 16), SDWASrc_f16, SDWASrc_f32);
1507  RegisterOperand retInt = !if(!eq(VT.Size, 16), SDWASrc_i16, SDWASrc_i32);
1508  RegisterOperand ret = !if(isFP, retFlt, retInt);
1509}
1510
1511// Returns the register class to use for sources of VOP3 instructions for the
1512// given VT.
1513class getVOP3SrcForVT<ValueType VT> {
1514  bit isFP = isFloatType<VT>.ret;
1515  RegisterOperand ret =
1516  !if(!eq(VT.Size, 128),
1517     VSrc_128,
1518     !if(!eq(VT.Size, 64),
1519        !if(isFP,
1520           !if(!eq(VT.Value, v2f32.Value),
1521               VSrc_v2f32,
1522               VSrc_f64),
1523           !if(!eq(VT.Value, v2i32.Value),
1524               VSrc_v2b32,
1525           VSrc_b64)),
1526        !if(!eq(VT.Value, i1.Value),
1527           SSrc_i1,
1528           !if(isFP,
1529              !if(!eq(VT.Value, f16.Value),
1530                 VSrc_f16,
1531                 !if(!eq(VT.Value, v2f16.Value),
1532                    VSrc_v2f16,
1533                    !if(!eq(VT.Value, v4f16.Value),
1534                      AVSrc_64,
1535                      VSrc_f32
1536                    )
1537                 )
1538              ),
1539              !if(!eq(VT.Value, i16.Value),
1540                 VSrc_b16,
1541                 !if(!eq(VT.Value, v2i16.Value),
1542                    VSrc_v2b16,
1543                    VSrc_b32
1544                 )
1545              )
1546           )
1547        )
1548     )
1549  );
1550}
1551
1552// Float or packed int
1553class isModifierType<ValueType SrcVT> {
1554  bit ret = !or(!eq(SrcVT.Value, f16.Value),
1555                !eq(SrcVT.Value, f32.Value),
1556                !eq(SrcVT.Value, f64.Value),
1557                !eq(SrcVT.Value, v2f16.Value),
1558                !eq(SrcVT.Value, v2i16.Value),
1559                !eq(SrcVT.Value, v2f32.Value),
1560                !eq(SrcVT.Value, v2i32.Value));
1561}
1562
1563// Return type of input modifiers operand for specified input operand
1564class getSrcMod <ValueType VT, bit EnableF32SrcMods> {
1565  bit isFP = isFloatType<VT>.ret;
1566  bit isPacked = isPackedType<VT>.ret;
1567  Operand ret =  !if(!eq(VT.Size, 64),
1568                     !if(isFP, FP64InputMods, Int64InputMods),
1569                       !if(isFP,
1570                         !if(!eq(VT.Value, f16.Value),
1571                            FP16InputMods,
1572                            FP32InputMods
1573                          ),
1574                         !if(EnableF32SrcMods, FP32InputMods, Int32InputMods))
1575                     );
1576}
1577
1578class getOpSelMod <ValueType VT> {
1579  Operand ret = !if(!eq(VT.Value, f16.Value), FP16InputMods, IntOpSelMods);
1580}
1581
1582// Return type of input modifiers operand specified input operand for DPP
1583class getSrcModDPP <ValueType VT> {
1584  bit isFP = isFloatType<VT>.ret;
1585  Operand ret = !if(isFP, FPVRegInputMods, IntVRegInputMods);
1586}
1587
1588// Return type of input modifiers operand specified input operand for SDWA
1589class getSrcModSDWA <ValueType VT> {
1590  Operand ret = !if(!eq(VT.Value, f16.Value), FP16SDWAInputMods,
1591                !if(!eq(VT.Value, f32.Value), FP32SDWAInputMods,
1592                !if(!eq(VT.Value, i16.Value), Int16SDWAInputMods,
1593                Int32SDWAInputMods)));
1594}
1595
1596// Returns the input arguments for VOP[12C] instructions for the given SrcVT.
1597class getIns32 <RegisterOperand Src0RC, RegisterClass Src1RC, int NumSrcArgs> {
1598  dag ret = !if(!eq(NumSrcArgs, 1), (ins Src0RC:$src0),               // VOP1
1599            !if(!eq(NumSrcArgs, 2), (ins Src0RC:$src0, Src1RC:$src1), // VOP2
1600                                    (ins)));
1601}
1602
1603// Returns the input arguments for VOP3 instructions for the given SrcVT.
1604class getIns64 <RegisterOperand Src0RC, RegisterOperand Src1RC,
1605                RegisterOperand Src2RC, int NumSrcArgs,
1606                bit HasClamp, bit HasModifiers, bit HasSrc2Mods, bit HasOMod,
1607                Operand Src0Mod, Operand Src1Mod, Operand Src2Mod> {
1608
1609  dag ret =
1610    !if (!eq(NumSrcArgs, 0),
1611      // VOP1 without input operands (V_NOP, V_CLREXCP)
1612      (ins),
1613      /* else */
1614    !if (!eq(NumSrcArgs, 1),
1615      !if (HasModifiers,
1616        // VOP1 with modifiers
1617        !if(HasOMod,
1618          (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1619               clampmod0:$clamp, omod0:$omod),
1620          (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1621               clampmod0:$clamp))
1622      /* else */,
1623        // VOP1 without modifiers
1624        !if (HasClamp,
1625          (ins Src0RC:$src0, clampmod0:$clamp),
1626          (ins Src0RC:$src0))
1627      /* endif */ ),
1628    !if (!eq(NumSrcArgs, 2),
1629      !if (HasModifiers,
1630        // VOP 2 with modifiers
1631        !if(HasOMod,
1632          (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1633               Src1Mod:$src1_modifiers, Src1RC:$src1,
1634               clampmod0:$clamp, omod0:$omod),
1635           (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1636               Src1Mod:$src1_modifiers, Src1RC:$src1,
1637               clampmod0:$clamp))
1638      /* else */,
1639        // VOP2 without modifiers
1640        !if (HasClamp,
1641          (ins Src0RC:$src0, Src1RC:$src1, clampmod0:$clamp),
1642          (ins Src0RC:$src0, Src1RC:$src1))
1643
1644      /* endif */ )
1645    /* NumSrcArgs == 3 */,
1646      !if (HasModifiers,
1647        !if (HasSrc2Mods,
1648          // VOP3 with modifiers
1649          !if (HasOMod,
1650            (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1651                 Src1Mod:$src1_modifiers, Src1RC:$src1,
1652                 Src2Mod:$src2_modifiers, Src2RC:$src2,
1653                 clampmod0:$clamp, omod0:$omod),
1654            !if (HasClamp,
1655              (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1656                   Src1Mod:$src1_modifiers, Src1RC:$src1,
1657                   Src2Mod:$src2_modifiers, Src2RC:$src2,
1658                   clampmod0:$clamp),
1659              (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1660                   Src1Mod:$src1_modifiers, Src1RC:$src1,
1661                   Src2Mod:$src2_modifiers, Src2RC:$src2))),
1662          // VOP3 with modifiers except src2
1663          !if (HasOMod,
1664            (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1665                 Src1Mod:$src1_modifiers, Src1RC:$src1,
1666                 Src2RC:$src2, clampmod0:$clamp, omod0:$omod),
1667            !if (HasClamp,
1668              (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1669                   Src1Mod:$src1_modifiers, Src1RC:$src1,
1670                   Src2RC:$src2, clampmod0:$clamp),
1671              (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1672                   Src1Mod:$src1_modifiers, Src1RC:$src1,
1673                   Src2RC:$src2))))
1674      /* else */,
1675        // VOP3 without modifiers
1676        !if (HasClamp,
1677          (ins Src0RC:$src0, Src1RC:$src1, Src2RC:$src2, clampmod0:$clamp),
1678          (ins Src0RC:$src0, Src1RC:$src1, Src2RC:$src2))
1679      /* endif */ ))));
1680}
1681
1682class getInsVOP3Base<RegisterOperand Src0RC, RegisterOperand Src1RC,
1683                RegisterOperand Src2RC, int NumSrcArgs,
1684                bit HasClamp, bit HasModifiers, bit HasSrc2Mods, bit HasOMod,
1685                Operand Src0Mod, Operand Src1Mod, Operand Src2Mod, bit HasOpSel,
1686                bit IsVOP3P> {
1687  // getInst64 handles clamp and omod. implicit mutex between vop3p and omod
1688  dag base = getIns64 <Src0RC, Src1RC, Src2RC, NumSrcArgs,
1689                HasClamp, HasModifiers, HasSrc2Mods, HasOMod,
1690                Src0Mod, Src1Mod, Src2Mod>.ret;
1691  dag opsel = (ins op_sel0:$op_sel);
1692  dag vop3pFields = (ins op_sel_hi0:$op_sel_hi, neg_lo0:$neg_lo, neg_hi0:$neg_hi);
1693  dag ret = !con(base,
1694                 !if(HasOpSel, opsel,(ins)),
1695                 !if(IsVOP3P, vop3pFields,(ins)));
1696}
1697
1698class getInsVOP3P <RegisterOperand Src0RC, RegisterOperand Src1RC,
1699                   RegisterOperand Src2RC, int NumSrcArgs, bit HasClamp,
1700                   Operand Src0Mod, Operand Src1Mod, Operand Src2Mod> {
1701  dag ret = getInsVOP3Base<Src0RC, Src1RC, Src2RC, NumSrcArgs,
1702                    HasClamp, 1/*HasModifiers*/, 1/*HasSrc2Mods*/,
1703                    0/*HasOMod*/, Src0Mod, Src1Mod, Src2Mod,
1704                    1/*HasOpSel*/, 1/*IsVOP3P*/>.ret;
1705}
1706
1707class getInsVOP3OpSel <RegisterOperand Src0RC, RegisterOperand Src1RC,
1708                       RegisterOperand Src2RC, int NumSrcArgs,
1709                       bit HasClamp, bit HasOMod,
1710                       Operand Src0Mod, Operand Src1Mod, Operand Src2Mod> {
1711  dag ret = getInsVOP3Base<Src0RC, Src1RC,
1712                    Src2RC, NumSrcArgs,
1713                    HasClamp, 1/*HasModifiers*/, 1/*HasSrc2Mods*/, HasOMod,
1714                    Src0Mod, Src1Mod, Src2Mod, 1/*HasOpSel*/, 0>.ret;
1715}
1716
1717class getInsDPPBase <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC,
1718                 int NumSrcArgs, bit HasModifiers,
1719                 Operand Src0Mod, Operand Src1Mod> {
1720
1721  dag ret = !if (!eq(NumSrcArgs, 0),
1722                // VOP1 without input operands (V_NOP)
1723                (ins ),
1724            !if (!eq(NumSrcArgs, 1),
1725              !if (HasModifiers,
1726                // VOP1_DPP with modifiers
1727                (ins DstRC:$old, Src0Mod:$src0_modifiers,
1728                     Src0RC:$src0)
1729              /* else */,
1730                // VOP1_DPP without modifiers
1731                (ins DstRC:$old, Src0RC:$src0)
1732              /* endif */),
1733              !if (HasModifiers,
1734                // VOP2_DPP with modifiers
1735                (ins DstRC:$old,
1736                     Src0Mod:$src0_modifiers, Src0RC:$src0,
1737                     Src1Mod:$src1_modifiers, Src1RC:$src1)
1738              /* else */,
1739                // VOP2_DPP without modifiers
1740                (ins DstRC:$old,
1741                     Src0RC:$src0, Src1RC:$src1)
1742                )));
1743}
1744
1745class getInsDPP <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC,
1746                 int NumSrcArgs, bit HasModifiers,
1747                 Operand Src0Mod, Operand Src1Mod> {
1748  dag ret = !con(getInsDPPBase<DstRC, Src0RC, Src1RC, NumSrcArgs,
1749                               HasModifiers, Src0Mod, Src1Mod>.ret,
1750                 (ins dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
1751                  bank_mask:$bank_mask, bound_ctrl:$bound_ctrl));
1752}
1753
1754class getInsDPP16 <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC,
1755                 int NumSrcArgs, bit HasModifiers,
1756                 Operand Src0Mod, Operand Src1Mod> {
1757  dag ret = !con(getInsDPP<DstRC, Src0RC, Src1RC, NumSrcArgs,
1758                           HasModifiers, Src0Mod, Src1Mod>.ret,
1759                 (ins FI:$fi));
1760}
1761
1762class getInsDPP8 <RegisterOperand DstRC, RegisterClass Src0RC, RegisterClass Src1RC,
1763                 int NumSrcArgs, bit HasModifiers,
1764                 Operand Src0Mod, Operand Src1Mod> {
1765  dag ret = !con(getInsDPPBase<DstRC, Src0RC, Src1RC, NumSrcArgs,
1766                               HasModifiers, Src0Mod, Src1Mod>.ret,
1767                 (ins dpp8:$dpp8, FI:$fi));
1768}
1769
1770
1771// Ins for SDWA
1772class getInsSDWA <RegisterOperand Src0RC, RegisterOperand Src1RC, int NumSrcArgs,
1773                  bit HasSDWAOMod, Operand Src0Mod, Operand Src1Mod,
1774                  ValueType DstVT> {
1775
1776  dag ret = !if(!eq(NumSrcArgs, 0),
1777               // VOP1 without input operands (V_NOP)
1778               (ins),
1779            !if(!eq(NumSrcArgs, 1),
1780               // VOP1
1781               !if(!not(HasSDWAOMod),
1782                  // VOP1_SDWA without omod
1783                  (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1784                       clampmod:$clamp,
1785                       dst_sel:$dst_sel, dst_unused:$dst_unused,
1786                       src0_sel:$src0_sel),
1787                  // VOP1_SDWA with omod
1788                  (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1789                       clampmod:$clamp, omod:$omod,
1790                       dst_sel:$dst_sel, dst_unused:$dst_unused,
1791                       src0_sel:$src0_sel)),
1792            !if(!eq(NumSrcArgs, 2),
1793               !if(!eq(DstVT.Size, 1),
1794                  // VOPC_SDWA
1795                  (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1796                       Src1Mod:$src1_modifiers, Src1RC:$src1,
1797                       clampmod:$clamp, src0_sel:$src0_sel, src1_sel:$src1_sel),
1798                  // VOP2_SDWA
1799                  !if(!not(HasSDWAOMod),
1800                     // VOP2_SDWA without omod
1801                     (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1802                          Src1Mod:$src1_modifiers, Src1RC:$src1,
1803                          clampmod:$clamp,
1804                          dst_sel:$dst_sel, dst_unused:$dst_unused,
1805                          src0_sel:$src0_sel, src1_sel:$src1_sel),
1806                     // VOP2_SDWA with omod
1807                     (ins Src0Mod:$src0_modifiers, Src0RC:$src0,
1808                          Src1Mod:$src1_modifiers, Src1RC:$src1,
1809                          clampmod:$clamp, omod:$omod,
1810                          dst_sel:$dst_sel, dst_unused:$dst_unused,
1811                          src0_sel:$src0_sel, src1_sel:$src1_sel))),
1812            (ins)/* endif */)));
1813}
1814
1815// Outs for DPP
1816class getOutsDPP <bit HasDst, ValueType DstVT, RegisterOperand DstRCDPP> {
1817  dag ret = !if(HasDst,
1818                !if(!eq(DstVT.Size, 1),
1819                    (outs), // no dst for VOPC, we use "vcc"-token as dst in SDWA VOPC instructions
1820                    (outs DstRCDPP:$vdst)),
1821                (outs)); // V_NOP
1822}
1823
1824// Outs for SDWA
1825class getOutsSDWA <bit HasDst, ValueType DstVT, RegisterOperand DstRCSDWA> {
1826  dag ret = !if(HasDst,
1827                !if(!eq(DstVT.Size, 1),
1828                    (outs DstRCSDWA:$sdst),
1829                    (outs DstRCSDWA:$vdst)),
1830                (outs)); // V_NOP
1831}
1832
1833// Returns the assembly string for the inputs and outputs of a VOP[12C]
1834// instruction.  This does not add the _e32 suffix, so it can be reused
1835// by getAsm64.
1836class getAsm32 <bit HasDst, int NumSrcArgs, ValueType DstVT = i32> {
1837  string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC
1838  string src0 = ", $src0";
1839  string src1 = ", $src1";
1840  string src2 = ", $src2";
1841  string ret = !if(HasDst, dst, "") #
1842               !if(!eq(NumSrcArgs, 1), src0, "") #
1843               !if(!eq(NumSrcArgs, 2), src0#src1, "") #
1844               !if(!eq(NumSrcArgs, 3), src0#src1#src2, "");
1845}
1846
1847// Returns the assembly string for the inputs and outputs of a VOP3
1848// instruction.
1849class getAsm64 <bit HasDst, int NumSrcArgs, bit HasIntClamp, bit HasModifiers,
1850                bit HasOMod, ValueType DstVT = i32> {
1851  string dst = !if(!eq(DstVT.Size, 1), "$sdst", "$vdst"); // use $sdst for VOPC
1852  string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,");
1853  string src1 = !if(!eq(NumSrcArgs, 1), "",
1854                   !if(!eq(NumSrcArgs, 2), " $src1_modifiers",
1855                                           " $src1_modifiers,"));
1856  string src2 = !if(!eq(NumSrcArgs, 3), " $src2_modifiers", "");
1857  string iclamp = !if(HasIntClamp, "$clamp", "");
1858  string ret =
1859  !if(!not(HasModifiers),
1860      getAsm32<HasDst, NumSrcArgs, DstVT>.ret # iclamp,
1861      dst#", "#src0#src1#src2#"$clamp"#!if(HasOMod, "$omod", ""));
1862}
1863
1864// Returns the assembly string for the inputs and outputs of a VOP3P
1865// instruction.
1866class getAsmVOP3P <bit HasDst, int NumSrcArgs, bit HasModifiers,
1867                   bit HasClamp, ValueType DstVT = i32> {
1868  string dst = " $vdst";
1869  string src0 = !if(!eq(NumSrcArgs, 1), "$src0", "$src0,");
1870  string src1 = !if(!eq(NumSrcArgs, 1), "",
1871                   !if(!eq(NumSrcArgs, 2), " $src1",
1872                                           " $src1,"));
1873  string src2 = !if(!eq(NumSrcArgs, 3), " $src2", "");
1874
1875  string mods = !if(HasModifiers, "$neg_lo$neg_hi", "");
1876  string clamp = !if(HasClamp, "$clamp", "");
1877
1878  // Each modifier is printed as an array of bits for each operand, so
1879  // all operands are printed as part of src0_modifiers.
1880  string ret = dst#", "#src0#src1#src2#"$op_sel$op_sel_hi"#mods#clamp;
1881}
1882
1883class getAsmVOP3OpSel <int NumSrcArgs,
1884                       bit HasClamp,
1885                       bit HasOMod,
1886                       bit Src0HasMods,
1887                       bit Src1HasMods,
1888                       bit Src2HasMods> {
1889  string dst = " $vdst";
1890
1891  string isrc0 = !if(!eq(NumSrcArgs, 1), "$src0", "$src0,");
1892  string isrc1 = !if(!eq(NumSrcArgs, 1), "",
1893                     !if(!eq(NumSrcArgs, 2), " $src1",
1894                                             " $src1,"));
1895  string isrc2 = !if(!eq(NumSrcArgs, 3), " $src2", "");
1896
1897  string fsrc0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,");
1898  string fsrc1 = !if(!eq(NumSrcArgs, 1), "",
1899                     !if(!eq(NumSrcArgs, 2), " $src1_modifiers",
1900                                             " $src1_modifiers,"));
1901  string fsrc2 = !if(!eq(NumSrcArgs, 3), " $src2_modifiers", "");
1902
1903  string src0 = !if(Src0HasMods, fsrc0, isrc0);
1904  string src1 = !if(Src1HasMods, fsrc1, isrc1);
1905  string src2 = !if(Src2HasMods, fsrc2, isrc2);
1906
1907  string clamp = !if(HasClamp, "$clamp", "");
1908
1909  string ret = dst#", "#src0#src1#src2#"$op_sel"#clamp;
1910}
1911
1912class getAsmDPP <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> {
1913  string dst = !if(HasDst,
1914                   !if(!eq(DstVT.Size, 1),
1915                       "$sdst",
1916                       "$vdst"),
1917                    ""); // use $sdst for VOPC
1918  string src0 = !if(!eq(NumSrcArgs, 1), "$src0_modifiers", "$src0_modifiers,");
1919  string src1 = !if(!eq(NumSrcArgs, 1), "",
1920                   !if(!eq(NumSrcArgs, 2), " $src1_modifiers",
1921                                           " $src1_modifiers,"));
1922  string args = !if(!not(HasModifiers),
1923                     getAsm32<0, NumSrcArgs, DstVT>.ret,
1924                     ", "#src0#src1);
1925  string ret = dst#args#" $dpp_ctrl$row_mask$bank_mask$bound_ctrl";
1926}
1927
1928class getAsmDPP16 <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32> {
1929  string ret = getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret#"$fi";
1930}
1931
1932class getAsmDPP8 <bit HasDst, int NumSrcArgs, bit HasModifiers, ValueType DstVT = i32>
1933  : getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT> {
1934  let ret = dst#args#" $dpp8$fi";
1935}
1936
1937
1938class getAsmSDWA <bit HasDst, int NumSrcArgs, ValueType DstVT = i32> {
1939  string dst = !if(HasDst,
1940                   !if(!eq(DstVT.Size, 1),
1941                       " vcc", // use vcc token as dst for VOPC instructioins
1942                       "$vdst"),
1943                    "");
1944  string src0 = "$src0_modifiers";
1945  string src1 = "$src1_modifiers";
1946  string args = !if(!eq(NumSrcArgs, 0),
1947                    "",
1948                    !if(!eq(NumSrcArgs, 1),
1949                        ", "#src0#"$clamp",
1950                        ", "#src0#", "#src1#"$clamp"
1951                     )
1952                );
1953  string sdwa = !if(!eq(NumSrcArgs, 0),
1954                    "",
1955                    !if(!eq(NumSrcArgs, 1),
1956                        " $dst_sel $dst_unused $src0_sel",
1957                        !if(!eq(DstVT.Size, 1),
1958                            " $src0_sel $src1_sel", // No dst_sel and dst_unused for VOPC
1959                            " $dst_sel $dst_unused $src0_sel $src1_sel"
1960                        )
1961                    )
1962                );
1963  string ret = dst#args#sdwa;
1964}
1965
1966class getAsmSDWA9 <bit HasDst, bit HasOMod, int NumSrcArgs,
1967                   ValueType DstVT = i32> {
1968  string dst = !if(HasDst,
1969                   !if(!eq(DstVT.Size, 1),
1970                       "$sdst", // VOPC
1971                       "$vdst"), // VOP1/2
1972                    "");
1973  string src0 = "$src0_modifiers";
1974  string src1 = "$src1_modifiers";
1975  string out_mods = !if(!not(HasOMod), "$clamp", "$clamp$omod");
1976  string args = !if(!eq(NumSrcArgs, 0), "",
1977                    !if(!eq(NumSrcArgs, 1),
1978                        ", "#src0,
1979                        ", "#src0#", "#src1
1980                     )
1981                );
1982  string sdwa = !if(!eq(NumSrcArgs, 0), "",
1983                    !if(!eq(NumSrcArgs, 1),
1984                        out_mods#" $dst_sel $dst_unused $src0_sel",
1985                        !if(!eq(DstVT.Size, 1),
1986                            " $src0_sel $src1_sel", // No dst_sel, dst_unused and output modifiers for VOPC
1987                            out_mods#" $dst_sel $dst_unused $src0_sel $src1_sel"
1988                        )
1989                    )
1990                );
1991  string ret = dst#args#sdwa;
1992}
1993
1994class getHas64BitOps <int NumSrcArgs, ValueType DstVT, ValueType Src0VT,
1995                      ValueType Src1VT> {
1996  bit ret = !if(!eq(NumSrcArgs, 3),
1997                0,
1998                !if(!eq(DstVT.Size, 64),
1999                    1,
2000                    !if(!eq(Src0VT.Size, 64),
2001                        1,
2002                        !if(!eq(Src1VT.Size, 64),
2003                            1,
2004                            0
2005                        )
2006                    )
2007                )
2008            );
2009}
2010
2011class getHasSDWA <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32,
2012                  ValueType Src1VT = i32> {
2013  bit ret = !if(!eq(NumSrcArgs, 3),
2014                0, // NumSrcArgs == 3 - No SDWA for VOP3
2015                !if(!eq(DstVT.Size, 64),
2016                    0, // 64-bit dst - No SDWA for 64-bit operands
2017                    !if(!eq(Src0VT.Size, 64),
2018                        0, // 64-bit src0
2019                        !if(!eq(Src1VT.Size, 64),
2020                            0, // 64-bit src2
2021                            1
2022                        )
2023                    )
2024                )
2025            );
2026}
2027
2028class getHasDPP <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32,
2029                 ValueType Src1VT = i32> {
2030  bit ret = !if(!eq(NumSrcArgs, 3),
2031                0, // NumSrcArgs == 3 - No DPP for VOP3
2032                1);
2033}
2034
2035class getHasExt64BitDPP <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32,
2036                 ValueType Src1VT = i32> {
2037  bit ret = !and(getHasDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret,
2038                 getHas64BitOps<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret);
2039}
2040
2041// Function that checks if instruction supports DPP and SDWA
2042class getHasExt <int NumSrcArgs, ValueType DstVT = i32, ValueType Src0VT = i32,
2043                 ValueType Src1VT = i32> {
2044  bit ret = !or(getHasDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret,
2045                getHasSDWA<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret);
2046}
2047
2048// Return an AGPR+VGPR operand class for the given VGPR register class.
2049class getLdStRegisterOperand<RegisterClass RC> {
2050  RegisterOperand ret =
2051    !if(!eq(RC.Size, 32), AVLdSt_32,
2052      !if(!eq(RC.Size, 64), AVLdSt_64,
2053        !if(!eq(RC.Size, 96), AVLdSt_96,
2054          !if(!eq(RC.Size, 128), AVLdSt_128,
2055            !if(!eq(RC.Size, 160), AVLdSt_160,
2056              RegisterOperand<VReg_1> // invalid register
2057    )))));
2058}
2059
2060class BitOr<bit a, bit b> {
2061  bit ret = !if(a, 1, !if(b, 1, 0));
2062}
2063
2064class BitAnd<bit a, bit b> {
2065  bit ret = !if(a, !if(b, 1, 0), 0);
2066}
2067
2068def PatGenMode {
2069  int NoPattern = 0;
2070  int Pattern   = 1;
2071}
2072
2073class VOPProfile <list<ValueType> _ArgVT, bit _EnableF32SrcMods = 0,
2074                  bit _EnableClamp = 0> {
2075
2076  field list<ValueType> ArgVT = _ArgVT;
2077  field bit EnableF32SrcMods = _EnableF32SrcMods;
2078  field bit EnableClamp = _EnableClamp;
2079
2080  field ValueType DstVT = ArgVT[0];
2081  field ValueType Src0VT = ArgVT[1];
2082  field ValueType Src1VT = ArgVT[2];
2083  field ValueType Src2VT = ArgVT[3];
2084  field RegisterOperand DstRC = getVALUDstForVT<DstVT>.ret;
2085  field RegisterOperand DstRCDPP = getVALUDstForVT<DstVT>.ret;
2086  field RegisterOperand DstRCSDWA = getSDWADstForVT<DstVT>.ret;
2087  field RegisterOperand Src0RC32 = getVOPSrc0ForVT<Src0VT>.ret;
2088  field RegisterClass Src1RC32 = getVregSrcForVT<Src1VT>.ret;
2089  field RegisterOperand Src0RC64 = getVOP3SrcForVT<Src0VT>.ret;
2090  field RegisterOperand Src1RC64 = getVOP3SrcForVT<Src1VT>.ret;
2091  field RegisterOperand Src2RC64 = getVOP3SrcForVT<Src2VT>.ret;
2092  field RegisterClass Src0DPP = getVregSrcForVT<Src0VT>.ret;
2093  field RegisterClass Src1DPP = getVregSrcForVT<Src1VT>.ret;
2094  field RegisterOperand Src0SDWA = getSDWASrcForVT<Src0VT>.ret;
2095  field RegisterOperand Src1SDWA = getSDWASrcForVT<Src0VT>.ret;
2096  field Operand Src0Mod = getSrcMod<Src0VT, EnableF32SrcMods>.ret;
2097  field Operand Src1Mod = getSrcMod<Src1VT, EnableF32SrcMods>.ret;
2098  field Operand Src2Mod = getSrcMod<Src2VT, EnableF32SrcMods>.ret;
2099  field Operand Src0ModDPP = getSrcModDPP<Src0VT>.ret;
2100  field Operand Src1ModDPP = getSrcModDPP<Src1VT>.ret;
2101  field Operand Src0ModSDWA = getSrcModSDWA<Src0VT>.ret;
2102  field Operand Src1ModSDWA = getSrcModSDWA<Src1VT>.ret;
2103
2104
2105  field bit HasDst = !ne(DstVT.Value, untyped.Value);
2106  field bit HasDst32 = HasDst;
2107  field bit EmitDst = HasDst; // force dst encoding, see v_movreld_b32 special case
2108  field int NumSrcArgs = getNumSrcArgs<Src0VT, Src1VT, Src2VT>.ret;
2109  field bit HasSrc0 = !ne(Src0VT.Value, untyped.Value);
2110  field bit HasSrc1 = !ne(Src1VT.Value, untyped.Value);
2111  field bit HasSrc2 = !ne(Src2VT.Value, untyped.Value);
2112
2113  // HasSrc*FloatMods affects the SDWA encoding. We ignore EnableF32SrcMods.
2114  field bit HasSrc0FloatMods = isFloatType<Src0VT>.ret;
2115  field bit HasSrc1FloatMods = isFloatType<Src1VT>.ret;
2116  field bit HasSrc2FloatMods = isFloatType<Src2VT>.ret;
2117
2118  // HasSrc*IntMods affects the SDWA encoding. We ignore EnableF32SrcMods.
2119  field bit HasSrc0IntMods = isIntType<Src0VT>.ret;
2120  field bit HasSrc1IntMods = isIntType<Src1VT>.ret;
2121  field bit HasSrc2IntMods = isIntType<Src2VT>.ret;
2122
2123  field bit HasClamp = !or(isModifierType<Src0VT>.ret, EnableClamp);
2124  field bit HasSDWAClamp = EmitDst;
2125  field bit HasFPClamp = !and(isFloatType<DstVT>.ret, HasClamp);
2126  field bit HasIntClamp = !if(isFloatType<DstVT>.ret, 0, HasClamp);
2127  field bit HasClampLo = HasClamp;
2128  field bit HasClampHi = !and(isPackedType<DstVT>.ret, HasClamp);
2129  field bit HasHigh = 0;
2130
2131  field bit IsPacked = isPackedType<Src0VT>.ret;
2132  field bit HasOpSel = IsPacked;
2133  field bit HasOMod = !if(HasOpSel, 0, isFloatType<DstVT>.ret);
2134  field bit HasSDWAOMod = isFloatType<DstVT>.ret;
2135
2136  field bit HasModifiers = !or(isModifierType<Src0VT>.ret,
2137                               isModifierType<Src1VT>.ret,
2138                               isModifierType<Src2VT>.ret,
2139                               HasOMod,
2140                               EnableF32SrcMods);
2141
2142  field bit HasSrc0Mods = HasModifiers;
2143  field bit HasSrc1Mods = !if(HasModifiers, !or(HasSrc1FloatMods, HasSrc1IntMods), 0);
2144  field bit HasSrc2Mods = !if(HasModifiers, !or(HasSrc2FloatMods, HasSrc2IntMods), 0);
2145
2146  field bit HasExt = getHasExt<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret;
2147  field bit HasExtDPP = getHasDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret;
2148  field bit HasExt64BitDPP = getHasExt64BitDPP<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret;
2149  field bit HasExtSDWA = getHasSDWA<NumSrcArgs, DstVT, Src0VT, Src1VT>.ret;
2150  field bit HasExtSDWA9 = HasExtSDWA;
2151  field int NeedPatGen = PatGenMode.NoPattern;
2152
2153  field bit IsMAI = 0;
2154  field bit IsDOT = 0;
2155
2156  field Operand Src0PackedMod = !if(HasSrc0FloatMods, PackedF16InputMods, PackedI16InputMods);
2157  field Operand Src1PackedMod = !if(HasSrc1FloatMods, PackedF16InputMods, PackedI16InputMods);
2158  field Operand Src2PackedMod = !if(HasSrc2FloatMods, PackedF16InputMods, PackedI16InputMods);
2159
2160  field dag Outs = !if(HasDst,(outs DstRC:$vdst),(outs));
2161
2162  // VOP3b instructions are a special case with a second explicit
2163  // output. This is manually overridden for them.
2164  field dag Outs32 = Outs;
2165  field dag Outs64 = Outs;
2166  field dag OutsDPP = getOutsDPP<HasDst, DstVT, DstRCDPP>.ret;
2167  field dag OutsDPP8 = getOutsDPP<HasDst, DstVT, DstRCDPP>.ret;
2168  field dag OutsSDWA = getOutsSDWA<HasDst, DstVT, DstRCSDWA>.ret;
2169
2170  field dag Ins32 = getIns32<Src0RC32, Src1RC32, NumSrcArgs>.ret;
2171  field dag Ins64 = getIns64<Src0RC64, Src1RC64, Src2RC64, NumSrcArgs,
2172                             HasIntClamp, HasModifiers, HasSrc2Mods,
2173                             HasOMod, Src0Mod, Src1Mod, Src2Mod>.ret;
2174  field dag InsVOP3P = getInsVOP3P<Src0RC64, Src1RC64, Src2RC64,
2175                                   NumSrcArgs, HasClamp,
2176                                   Src0PackedMod, Src1PackedMod, Src2PackedMod>.ret;
2177  field dag InsVOP3OpSel = getInsVOP3OpSel<Src0RC64, Src1RC64, Src2RC64,
2178                                NumSrcArgs, HasClamp, HasOMod,
2179                                getOpSelMod<Src0VT>.ret,
2180                                getOpSelMod<Src1VT>.ret,
2181                                getOpSelMod<Src2VT>.ret>.ret;
2182  field dag InsDPP = !if(HasExtDPP,
2183                         getInsDPP<DstRCDPP, Src0DPP, Src1DPP, NumSrcArgs,
2184                                   HasModifiers, Src0ModDPP, Src1ModDPP>.ret,
2185                         (ins));
2186  field dag InsDPP16 = getInsDPP16<DstRCDPP, Src0DPP, Src1DPP, NumSrcArgs,
2187                                   HasModifiers, Src0ModDPP, Src1ModDPP>.ret;
2188  field dag InsDPP8 = getInsDPP8<DstRCDPP, Src0DPP, Src1DPP, NumSrcArgs, 0,
2189                                 Src0ModDPP, Src1ModDPP>.ret;
2190  field dag InsSDWA = getInsSDWA<Src0SDWA, Src1SDWA, NumSrcArgs,
2191                                 HasSDWAOMod, Src0ModSDWA, Src1ModSDWA,
2192                                 DstVT>.ret;
2193
2194
2195  field string Asm32 = getAsm32<HasDst, NumSrcArgs, DstVT>.ret;
2196  field string Asm64 = getAsm64<HasDst, NumSrcArgs, HasIntClamp, HasModifiers, HasOMod, DstVT>.ret;
2197  field string AsmVOP3P = getAsmVOP3P<HasDst, NumSrcArgs, HasModifiers, HasClamp, DstVT>.ret;
2198  field string AsmVOP3OpSel = getAsmVOP3OpSel<NumSrcArgs,
2199                                              HasClamp, HasOMod,
2200                                              HasSrc0FloatMods,
2201                                              HasSrc1FloatMods,
2202                                              HasSrc2FloatMods>.ret;
2203  field string AsmDPP = !if(HasExtDPP,
2204                            getAsmDPP<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret, "");
2205  field string AsmDPP16 = getAsmDPP16<HasDst, NumSrcArgs, HasModifiers, DstVT>.ret;
2206  field string AsmDPP8 = getAsmDPP8<HasDst, NumSrcArgs, 0, DstVT>.ret;
2207  field string AsmSDWA = getAsmSDWA<HasDst, NumSrcArgs, DstVT>.ret;
2208  field string AsmSDWA9 = getAsmSDWA9<HasDst, HasSDWAOMod, NumSrcArgs, DstVT>.ret;
2209
2210  field string TieRegDPP = "$old";
2211}
2212
2213class VOP_NO_EXT <VOPProfile p> : VOPProfile <p.ArgVT> {
2214  let HasExt = 0;
2215  let HasExtDPP = 0;
2216  let HasExt64BitDPP = 0;
2217  let HasExtSDWA = 0;
2218  let HasExtSDWA9 = 0;
2219}
2220
2221class VOP_PAT_GEN <VOPProfile p, int mode=PatGenMode.Pattern> : VOPProfile <p.ArgVT> {
2222  let NeedPatGen = mode;
2223}
2224
2225def VOP_F16_F16 : VOPProfile <[f16, f16, untyped, untyped]>;
2226def VOP_F16_I16 : VOPProfile <[f16, i16, untyped, untyped]>;
2227def VOP_I16_F16 : VOPProfile <[i16, f16, untyped, untyped]>;
2228
2229def VOP_F16_F16_F16 : VOPProfile <[f16, f16, f16, untyped]>;
2230def VOP_F16_F16_I16 : VOPProfile <[f16, f16, i16, untyped]>;
2231def VOP_F16_F16_I32 : VOPProfile <[f16, f16, i32, untyped]>;
2232def VOP_I16_I16_I16 : VOPProfile <[i16, i16, i16, untyped]>;
2233def VOP_I16_I16_I16_ARITH : VOPProfile <[i16, i16, i16, untyped], 0, /*EnableClamp=*/1>;
2234
2235def VOP_I16_I16_I16_I16 : VOPProfile <[i16, i16, i16, i16, untyped]>;
2236def VOP_F16_F16_F16_F16 : VOPProfile <[f16, f16, f16, f16, untyped]>;
2237
2238def VOP_I32_I16_I16_I32 : VOPProfile <[i32, i16, i16, i32, untyped]>;
2239
2240def VOP_V2F16_V2F16_V2F16 : VOPProfile <[v2f16, v2f16, v2f16, untyped]>;
2241def VOP_V2I16_V2I16_V2I16 : VOPProfile <[v2i16, v2i16, v2i16, untyped]>;
2242def VOP_B32_F16_F16 : VOPProfile <[i32, f16, f16, untyped]>;
2243
2244def VOP_V2F16_V2F16_V2F16_V2F16 : VOPProfile <[v2f16, v2f16, v2f16, v2f16]>;
2245def VOP_V2I16_V2I16_V2I16_V2I16 : VOPProfile <[v2i16, v2i16, v2i16, v2i16]>;
2246def VOP_V2I16_F32_F32 : VOPProfile <[v2i16, f32, f32, untyped]>;
2247def VOP_V2I16_I32_I32 : VOPProfile <[v2i16, i32, i32, untyped]>;
2248
2249def VOP_F32_V2F16_V2F16_V2F16 : VOPProfile <[f32, v2f16, v2f16, v2f16]>;
2250
2251def VOP_NONE : VOPProfile <[untyped, untyped, untyped, untyped]>;
2252
2253def VOP_F32_F32 : VOPProfile <[f32, f32, untyped, untyped]>;
2254def VOP_F32_F64 : VOPProfile <[f32, f64, untyped, untyped]>;
2255def VOP_F32_I32 : VOPProfile <[f32, i32, untyped, untyped]>;
2256def VOP_F64_F32 : VOPProfile <[f64, f32, untyped, untyped]>;
2257def VOP_F64_F64 : VOPProfile <[f64, f64, untyped, untyped]>;
2258def VOP_F64_I32 : VOPProfile <[f64, i32, untyped, untyped]>;
2259def VOP_I32_F32 : VOPProfile <[i32, f32, untyped, untyped]>;
2260def VOP_I32_F64 : VOPProfile <[i32, f64, untyped, untyped]>;
2261def VOP_I32_I32 : VOPProfile <[i32, i32, untyped, untyped]>;
2262def VOP_F16_F32 : VOPProfile <[f16, f32, untyped, untyped]>;
2263def VOP_F32_F16 : VOPProfile <[f32, f16, untyped, untyped]>;
2264def VOP_I64_I64 : VOPProfile <[i64, i64, untyped, untyped]>;
2265
2266def VOP_F32_F32_F16 : VOPProfile <[f32, f32, f16, untyped]>;
2267def VOP_F32_F32_F32 : VOPProfile <[f32, f32, f32, untyped]>;
2268def VOP_F32_F32_I32 : VOPProfile <[f32, f32, i32, untyped]>;
2269def VOP_F64_F64_F64 : VOPProfile <[f64, f64, f64, untyped]>;
2270def VOP_F64_F64_I32 : VOPProfile <[f64, f64, i32, untyped]>;
2271def VOP_I32_F32_F32 : VOPProfile <[i32, f32, f32, untyped]>;
2272def VOP_I32_F32_I32 : VOPProfile <[i32, f32, i32, untyped]>;
2273def VOP_I32_I32_I32 : VOPProfile <[i32, i32, i32, untyped]>;
2274def VOP_I32_I32_I32_ARITH : VOPProfile <[i32, i32, i32, untyped], 0, /*EnableClamp=*/1>;
2275def VOP_V2F16_F32_F32 : VOPProfile <[v2f16, f32, f32, untyped]>;
2276def VOP_F32_F16_F16_F16 : VOPProfile <[f32, f16, f16, f16]>;
2277
2278def VOP_I64_I64_I32 : VOPProfile <[i64, i64, i32, untyped]>;
2279def VOP_I64_I32_I64 : VOPProfile <[i64, i32, i64, untyped]>;
2280def VOP_I64_I64_I64 : VOPProfile <[i64, i64, i64, untyped]>;
2281
2282def VOP_F16_F32_F16_F32 : VOPProfile <[f16, f32, f16, f32]>;
2283def VOP_F32_F32_F16_F16 : VOPProfile <[f32, f32, f16, f16]>;
2284def VOP_F32_F32_F32_F32 : VOPProfile <[f32, f32, f32, f32]>;
2285def VOP_F64_F64_F64_F64 : VOPProfile <[f64, f64, f64, f64]>;
2286def VOP_I32_I32_I32_I32 : VOPProfile <[i32, i32, i32, i32]>;
2287def VOP_I64_I32_I32_I64 : VOPProfile <[i64, i32, i32, i64]>;
2288def VOP_I32_F32_I32_I32 : VOPProfile <[i32, f32, i32, i32]>;
2289def VOP_I64_I64_I32_I64 : VOPProfile <[i64, i64, i32, i64]>;
2290def VOP_V4I32_I64_I32_V4I32 : VOPProfile <[v4i32, i64, i32, v4i32]>;
2291
2292def VOP_F32_V2F16_V2F16_F32 : VOPProfile <[f32, v2f16, v2f16, f32]>;
2293def VOP_I32_V2I16_V2I16_I32 : VOPProfile <[i32, v2i16, v2i16, i32]>;
2294
2295def VOP_V4F32_F32_F32_V4F32       : VOPProfile <[v4f32,  f32,   f32,   v4f32]>;
2296def VOP_V16F32_F32_F32_V16F32     : VOPProfile <[v16f32, f32,   f32,   v16f32]>;
2297def VOP_V32F32_F32_F32_V32F32     : VOPProfile <[v32f32, f32,   f32,   v32f32]>;
2298def VOP_V4F32_V4F16_V4F16_V4F32   : VOPProfile <[v4f32,  v4f16, v4f16, v4f32]>;
2299def VOP_V16F32_V4F16_V4F16_V16F32 : VOPProfile <[v16f32, v4f16, v4f16, v16f32]>;
2300def VOP_V32F32_V4F16_V4F16_V32F32 : VOPProfile <[v32f32, v4f16, v4f16, v32f32]>;
2301def VOP_V4F32_V2I16_V2I16_V4F32   : VOPProfile <[v4f32,  v2i16, v2i16, v4f32]>;
2302def VOP_V16F32_V2I16_V2I16_V16F32 : VOPProfile <[v16f32, v2i16, v2i16, v16f32]>;
2303def VOP_V32F32_V2I16_V2I16_V32F32 : VOPProfile <[v32f32, v2i16, v2i16, v32f32]>;
2304def VOP_V4I32_I32_I32_V4I32       : VOPProfile <[v4i32,  i32,   i32,   v4i32]>;
2305def VOP_V16I32_I32_I32_V16I32     : VOPProfile <[v16i32, i32,   i32,   v16i32]>;
2306def VOP_V32I32_I32_I32_V32I32     : VOPProfile <[v32i32, i32,   i32,   v32i32]>;
2307
2308def VOP_V4F64_F64_F64_V4F64 : VOPProfile <[v4f64, f64, f64, v4f64]>;
2309def VOP_V1F64_F64_F64_V1F64 : VOPProfile <[v1f64, f64, f64, v1f64]>;
2310
2311def VOP_V2F32_V2F32_V2F32_V2F32   : VOPProfile <[v2f32,  v2f32, v2f32, v2f32]>;
2312def VOP_V2F32_V2F32_V2F32         : VOPProfile <[v2f32,  v2f32, v2f32, untyped]>;
2313def VOP_V2I32_V2I32_V2I32         : VOPProfile <[v2i32,  v2i32, v2i32, untyped]>;
2314def VOP_V4F32_V4I16_V4I16_V4F32   : VOPProfile <[v4f32,  v4i16, v4i16, v4f32]>;
2315def VOP_V16F32_V4I16_V4I16_V16F32 : VOPProfile <[v16f32, v4i16, v4i16, v16f32]>;
2316def VOP_V32F32_V4I16_V4I16_V32F32 : VOPProfile <[v32f32, v4i16, v4i16, v32f32]>;
2317
2318class Commutable_REV <string revOp, bit isOrig> {
2319  string RevOp = revOp;
2320  bit IsOrig = isOrig;
2321}
2322
2323class AtomicNoRet <string noRetOp, bit isRet> {
2324  string NoRetOp = noRetOp;
2325  bit IsRet = isRet;
2326}
2327
2328//===----------------------------------------------------------------------===//
2329// Interpolation opcodes
2330//===----------------------------------------------------------------------===//
2331
2332class VINTRPDstOperand <RegisterClass rc> : RegisterOperand <rc, "printVINTRPDst">;
2333
2334class VINTRP_Pseudo <string opName, dag outs, dag ins, list<dag> pattern> :
2335  VINTRPCommon <outs, ins, "", pattern>,
2336  SIMCInstr<opName, SIEncodingFamily.NONE> {
2337  let isPseudo = 1;
2338  let isCodeGenOnly = 1;
2339}
2340
2341// FIXME-GFX10: WIP.
2342class VINTRP_Real_si <bits <2> op, string opName, dag outs, dag ins,
2343                      string asm, int encodingFamily> :
2344  VINTRPCommon <outs, ins, asm, []>,
2345  VINTRPe <op>,
2346  SIMCInstr<opName, encodingFamily> {
2347}
2348
2349class VINTRP_Real_vi <bits <2> op, string opName, dag outs, dag ins,
2350                      string asm> :
2351  VINTRPCommon <outs, ins, asm, []>,
2352  VINTRPe_vi <op>,
2353  SIMCInstr<opName, SIEncodingFamily.VI> {
2354  let AssemblerPredicate = VIAssemblerPredicate;
2355  let DecoderNamespace = "GFX8";
2356}
2357
2358// FIXME-GFX10: WIP.
2359multiclass VINTRP_m <bits <2> op, dag outs, dag ins, string asm,
2360                     list<dag> pattern = []> {
2361  def "" : VINTRP_Pseudo <NAME, outs, ins, pattern>;
2362
2363  let AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7" in {
2364    def _si : VINTRP_Real_si <op, NAME, outs, ins, asm, SIEncodingFamily.SI>;
2365  } // End AssemblerPredicate = isGFX6GFX7, DecoderNamespace = "GFX6GFX7"
2366
2367  def _vi : VINTRP_Real_vi <op, NAME, outs, ins, asm>;
2368
2369  let AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10" in {
2370    def _gfx10 : VINTRP_Real_si<op, NAME, outs, ins, asm, SIEncodingFamily.GFX10>;
2371  } // End AssemblerPredicate = isGFX10Plus, DecoderNamespace = "GFX10"
2372}
2373//===----------------------------------------------------------------------===//
2374// Vector instruction mappings
2375//===----------------------------------------------------------------------===//
2376
2377// Maps an opcode in e32 form to its e64 equivalent
2378def getVOPe64 : InstrMapping {
2379  let FilterClass = "VOP";
2380  let RowFields = ["OpName"];
2381  let ColFields = ["Size", "VOP3"];
2382  let KeyCol = ["4", "0"];
2383  let ValueCols = [["8", "1"]];
2384}
2385
2386// Maps an opcode in e64 form to its e32 equivalent
2387def getVOPe32 : InstrMapping {
2388  let FilterClass = "VOP";
2389  let RowFields = ["OpName"];
2390  let ColFields = ["Size", "VOP3"];
2391  let KeyCol = ["8", "1"];
2392  let ValueCols = [["4", "0"]];
2393}
2394
2395// Maps ordinary instructions to their SDWA counterparts
2396def getSDWAOp : InstrMapping {
2397  let FilterClass = "VOP";
2398  let RowFields = ["OpName"];
2399  let ColFields = ["AsmVariantName"];
2400  let KeyCol = ["Default"];
2401  let ValueCols = [["SDWA"]];
2402}
2403
2404// Maps SDWA instructions to their ordinary counterparts
2405def getBasicFromSDWAOp : InstrMapping {
2406  let FilterClass = "VOP";
2407  let RowFields = ["OpName"];
2408  let ColFields = ["AsmVariantName"];
2409  let KeyCol = ["SDWA"];
2410  let ValueCols = [["Default"]];
2411}
2412
2413// Maps ordinary instructions to their DPP counterparts
2414def getDPPOp32 : InstrMapping {
2415  let FilterClass = "VOP";
2416  let RowFields = ["OpName"];
2417  let ColFields = ["AsmVariantName"];
2418  let KeyCol = ["Default"];
2419  let ValueCols = [["DPP"]];
2420}
2421
2422// Maps an commuted opcode to its original version
2423def getCommuteOrig : InstrMapping {
2424  let FilterClass = "Commutable_REV";
2425  let RowFields = ["RevOp"];
2426  let ColFields = ["IsOrig"];
2427  let KeyCol = ["0"];
2428  let ValueCols = [["1"]];
2429}
2430
2431// Maps an original opcode to its commuted version
2432def getCommuteRev : InstrMapping {
2433  let FilterClass = "Commutable_REV";
2434  let RowFields = ["RevOp"];
2435  let ColFields = ["IsOrig"];
2436  let KeyCol = ["1"];
2437  let ValueCols = [["0"]];
2438}
2439
2440def getMCOpcodeGen : InstrMapping {
2441  let FilterClass = "SIMCInstr";
2442  let RowFields = ["PseudoInstr"];
2443  let ColFields = ["Subtarget"];
2444  let KeyCol = [!cast<string>(SIEncodingFamily.NONE)];
2445  let ValueCols = [[!cast<string>(SIEncodingFamily.SI)],
2446                   [!cast<string>(SIEncodingFamily.VI)],
2447                   [!cast<string>(SIEncodingFamily.SDWA)],
2448                   [!cast<string>(SIEncodingFamily.SDWA9)],
2449                   // GFX80 encoding is added to work around a multiple matching
2450                   // issue for buffer instructions with unpacked d16 data. This
2451                   // does not actually change the encoding, and thus may be
2452                   // removed later.
2453                   [!cast<string>(SIEncodingFamily.GFX80)],
2454                   [!cast<string>(SIEncodingFamily.GFX9)],
2455                   [!cast<string>(SIEncodingFamily.GFX10)],
2456                   [!cast<string>(SIEncodingFamily.SDWA10)],
2457                   [!cast<string>(SIEncodingFamily.GFX90A)]];
2458}
2459
2460// Get equivalent SOPK instruction.
2461def getSOPKOp : InstrMapping {
2462  let FilterClass = "SOPKInstTable";
2463  let RowFields = ["BaseCmpOp"];
2464  let ColFields = ["IsSOPK"];
2465  let KeyCol = ["0"];
2466  let ValueCols = [["1"]];
2467}
2468
2469def getAddr64Inst : InstrMapping {
2470  let FilterClass = "MUBUFAddr64Table";
2471  let RowFields = ["OpName"];
2472  let ColFields = ["IsAddr64"];
2473  let KeyCol = ["0"];
2474  let ValueCols = [["1"]];
2475}
2476
2477def getIfAddr64Inst : InstrMapping {
2478  let FilterClass = "MUBUFAddr64Table";
2479  let RowFields = ["OpName"];
2480  let ColFields = ["IsAddr64"];
2481  let KeyCol = ["1"];
2482  let ValueCols = [["1"]];
2483}
2484
2485def getMUBUFNoLdsInst : InstrMapping {
2486  let FilterClass = "MUBUFLdsTable";
2487  let RowFields = ["OpName"];
2488  let ColFields = ["IsLds"];
2489  let KeyCol = ["1"];
2490  let ValueCols = [["0"]];
2491}
2492
2493// Maps an atomic opcode to its returnless version.
2494def getAtomicNoRetOp : InstrMapping {
2495  let FilterClass = "AtomicNoRet";
2496  let RowFields = ["NoRetOp"];
2497  let ColFields = ["IsRet"];
2498  let KeyCol = ["1"];
2499  let ValueCols = [["0"]];
2500}
2501
2502// Maps a GLOBAL to its SADDR form.
2503def getGlobalSaddrOp : InstrMapping {
2504  let FilterClass = "GlobalSaddrTable";
2505  let RowFields = ["SaddrOp"];
2506  let ColFields = ["IsSaddr"];
2507  let KeyCol = ["0"];
2508  let ValueCols = [["1"]];
2509}
2510
2511// Maps a v_cmpx opcode with sdst to opcode without sdst.
2512def getVCMPXNoSDstOp : InstrMapping {
2513  let FilterClass = "VCMPXNoSDstTable";
2514  let RowFields = ["NoSDstOp"];
2515  let ColFields = ["HasSDst"];
2516  let KeyCol = ["1"];
2517  let ValueCols = [["0"]];
2518}
2519
2520// Maps a SOPP to a SOPP with S_NOP
2521def getSOPPWithRelaxation : InstrMapping {
2522  let FilterClass = "SOPPRelaxTable";
2523  let RowFields = ["KeyName"];
2524  let ColFields = ["IsRelaxed"];
2525  let KeyCol = ["0"];
2526  let ValueCols = [["1"]];
2527}
2528
2529// Maps flat scratch opcodes by addressing modes
2530def getFlatScratchInstSTfromSS : InstrMapping {
2531  let FilterClass = "FlatScratchInst";
2532  let RowFields = ["SVOp"];
2533  let ColFields = ["Mode"];
2534  let KeyCol = ["SS"];
2535  let ValueCols = [["ST"]];
2536}
2537
2538def getFlatScratchInstSSfromSV : InstrMapping {
2539  let FilterClass = "FlatScratchInst";
2540  let RowFields = ["SVOp"];
2541  let ColFields = ["Mode"];
2542  let KeyCol = ["SV"];
2543  let ValueCols = [["SS"]];
2544}
2545
2546include "SIInstructions.td"
2547
2548include "DSInstructions.td"
2549include "MIMGInstructions.td"
2550