1//===-- SOPInstructions.td - SOP Instruction Defintions -------------------===//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10def GPRIdxModeMatchClass : AsmOperandClass {
11  let Name = "GPRIdxMode";
12  let PredicateMethod = "isGPRIdxMode";
13  let RenderMethod = "addImmOperands";
14}
15
16def GPRIdxMode : Operand<i32> {
17  let PrintMethod = "printVGPRIndexMode";
18  let ParserMatchClass = GPRIdxModeMatchClass;
19  let OperandType = "OPERAND_IMMEDIATE";
20}
21
22class SOP_Pseudo<string opName, dag outs, dag ins, string asmOps,
23                  list<dag> pattern=[]> :
24    InstSI<outs, ins, "", pattern>,
25    SIMCInstr<opName, SIEncodingFamily.NONE> {
26
27  let isPseudo = 1;
28  let isCodeGenOnly = 1;
29  let SubtargetPredicate = isGCN;
30
31  string Mnemonic = opName;
32  string AsmOperands = asmOps;
33
34  bits<1> has_sdst = 0;
35}
36
37//===----------------------------------------------------------------------===//
38// SOP1 Instructions
39//===----------------------------------------------------------------------===//
40
41class SOP1_Pseudo <string opName, dag outs, dag ins,
42                   string asmOps, list<dag> pattern=[]> :
43  SOP_Pseudo<opName, outs, ins, asmOps, pattern> {
44
45  let mayLoad = 0;
46  let mayStore = 0;
47  let hasSideEffects = 0;
48  let SALU = 1;
49  let SOP1 = 1;
50  let SchedRW = [WriteSALU];
51  let Size = 4;
52  let UseNamedOperandTable = 1;
53
54  bits<1> has_src0 = 1;
55  bits<1> has_sdst = 1;
56}
57
58class SOP1_Real<bits<8> op, SOP1_Pseudo ps> :
59  InstSI <ps.OutOperandList, ps.InOperandList,
60          ps.Mnemonic # " " # ps.AsmOperands, []>,
61  Enc32 {
62
63  let isPseudo = 0;
64  let isCodeGenOnly = 0;
65  let Size = 4;
66
67  // copy relevant pseudo op flags
68  let SubtargetPredicate = ps.SubtargetPredicate;
69  let AsmMatchConverter  = ps.AsmMatchConverter;
70
71  // encoding
72  bits<7> sdst;
73  bits<8> src0;
74
75  let Inst{7-0} = !if(ps.has_src0, src0, ?);
76  let Inst{15-8} = op;
77  let Inst{22-16} = !if(ps.has_sdst, sdst, ?);
78  let Inst{31-23} = 0x17d; //encoding;
79}
80
81class SOP1_32 <string opName, list<dag> pattern=[]> : SOP1_Pseudo <
82  opName, (outs SReg_32:$sdst), (ins SSrc_b32:$src0),
83  "$sdst, $src0", pattern
84>;
85
86// 32-bit input, no output.
87class SOP1_0_32 <string opName, list<dag> pattern = []> : SOP1_Pseudo <
88  opName, (outs), (ins SSrc_b32:$src0),
89  "$src0", pattern> {
90  let has_sdst = 0;
91}
92
93class SOP1_0_32R <string opName, list<dag> pattern = []> : SOP1_Pseudo <
94  opName, (outs), (ins SReg_32:$src0),
95  "$src0", pattern> {
96  let has_sdst = 0;
97}
98
99class SOP1_64 <string opName, list<dag> pattern=[]> : SOP1_Pseudo <
100  opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0),
101  "$sdst, $src0", pattern
102>;
103
104// 64-bit input, 32-bit output.
105class SOP1_32_64 <string opName, list<dag> pattern=[]> : SOP1_Pseudo <
106  opName, (outs SReg_32:$sdst), (ins SSrc_b64:$src0),
107  "$sdst, $src0", pattern
108>;
109
110// 32-bit input, 64-bit output.
111class SOP1_64_32 <string opName, list<dag> pattern=[]> : SOP1_Pseudo <
112  opName, (outs SReg_64:$sdst), (ins SSrc_b32:$src0),
113  "$sdst, $src0", pattern
114>;
115
116// no input, 64-bit output.
117class SOP1_64_0 <string opName, list<dag> pattern=[]> : SOP1_Pseudo <
118  opName, (outs SReg_64:$sdst), (ins), "$sdst", pattern> {
119  let has_src0 = 0;
120}
121
122// 64-bit input, no output
123class SOP1_1 <string opName, list<dag> pattern=[]> : SOP1_Pseudo <
124  opName, (outs), (ins SReg_64:$src0), "$src0", pattern> {
125  let has_sdst = 0;
126}
127
128
129let isMoveImm = 1 in {
130  let isReMaterializable = 1, isAsCheapAsAMove = 1 in {
131    def S_MOV_B32 : SOP1_32 <"s_mov_b32">;
132    def S_MOV_B64 : SOP1_64 <"s_mov_b64">;
133  } // End isRematerializeable = 1
134
135  let Uses = [SCC] in {
136    def S_CMOV_B32 : SOP1_32 <"s_cmov_b32">;
137    def S_CMOV_B64 : SOP1_64 <"s_cmov_b64">;
138  } // End Uses = [SCC]
139} // End isMoveImm = 1
140
141let Defs = [SCC] in {
142  def S_NOT_B32 : SOP1_32 <"s_not_b32",
143    [(set i32:$sdst, (not i32:$src0))]
144  >;
145
146  def S_NOT_B64 : SOP1_64 <"s_not_b64",
147    [(set i64:$sdst, (not i64:$src0))]
148  >;
149  def S_WQM_B32 : SOP1_32 <"s_wqm_b32">;
150  def S_WQM_B64 : SOP1_64 <"s_wqm_b64",
151    [(set i1:$sdst, (int_amdgcn_wqm_vote i1:$src0))]
152  >;
153} // End Defs = [SCC]
154
155
156def S_BREV_B32 : SOP1_32 <"s_brev_b32",
157  [(set i32:$sdst, (bitreverse i32:$src0))]
158>;
159def S_BREV_B64 : SOP1_64 <"s_brev_b64">;
160
161let Defs = [SCC] in {
162def S_BCNT0_I32_B32 : SOP1_32 <"s_bcnt0_i32_b32">;
163def S_BCNT0_I32_B64 : SOP1_32_64 <"s_bcnt0_i32_b64">;
164def S_BCNT1_I32_B32 : SOP1_32 <"s_bcnt1_i32_b32",
165  [(set i32:$sdst, (ctpop i32:$src0))]
166>;
167def S_BCNT1_I32_B64 : SOP1_32_64 <"s_bcnt1_i32_b64">;
168} // End Defs = [SCC]
169
170def S_FF0_I32_B32 : SOP1_32 <"s_ff0_i32_b32">;
171def S_FF0_I32_B64 : SOP1_32_64 <"s_ff0_i32_b64">;
172def S_FF1_I32_B64 : SOP1_32_64 <"s_ff1_i32_b64">;
173
174def S_FF1_I32_B32 : SOP1_32 <"s_ff1_i32_b32",
175  [(set i32:$sdst, (AMDGPUffbl_b32 i32:$src0))]
176>;
177
178def S_FLBIT_I32_B32 : SOP1_32 <"s_flbit_i32_b32",
179  [(set i32:$sdst, (AMDGPUffbh_u32 i32:$src0))]
180>;
181
182def S_FLBIT_I32_B64 : SOP1_32_64 <"s_flbit_i32_b64">;
183def S_FLBIT_I32 : SOP1_32 <"s_flbit_i32",
184  [(set i32:$sdst, (AMDGPUffbh_i32 i32:$src0))]
185>;
186def S_FLBIT_I32_I64 : SOP1_32_64 <"s_flbit_i32_i64">;
187def S_SEXT_I32_I8 : SOP1_32 <"s_sext_i32_i8",
188  [(set i32:$sdst, (sext_inreg i32:$src0, i8))]
189>;
190def S_SEXT_I32_I16 : SOP1_32 <"s_sext_i32_i16",
191  [(set i32:$sdst, (sext_inreg i32:$src0, i16))]
192>;
193
194def S_BITSET0_B32 : SOP1_32    <"s_bitset0_b32">;
195def S_BITSET0_B64 : SOP1_64_32 <"s_bitset0_b64">;
196def S_BITSET1_B32 : SOP1_32    <"s_bitset1_b32">;
197def S_BITSET1_B64 : SOP1_64_32 <"s_bitset1_b64">;
198def S_GETPC_B64 : SOP1_64_0  <"s_getpc_b64",
199  [(set i64:$sdst, (int_amdgcn_s_getpc))]
200>;
201
202let isTerminator = 1, isBarrier = 1, SchedRW = [WriteBranch] in {
203
204let isBranch = 1, isIndirectBranch = 1 in {
205def S_SETPC_B64 : SOP1_1  <"s_setpc_b64">;
206} // End isBranch = 1, isIndirectBranch = 1
207
208let isReturn = 1 in {
209// Define variant marked as return rather than branch.
210def S_SETPC_B64_return : SOP1_1<"", [(AMDGPUret_flag i64:$src0)]>;
211}
212} // End isTerminator = 1, isBarrier = 1
213
214let isCall = 1 in {
215def S_SWAPPC_B64 : SOP1_64 <"s_swappc_b64"
216>;
217}
218
219def S_RFE_B64 : SOP1_1  <"s_rfe_b64">;
220
221let hasSideEffects = 1, Uses = [EXEC], Defs = [EXEC, SCC] in {
222
223def S_AND_SAVEEXEC_B64 : SOP1_64 <"s_and_saveexec_b64">;
224def S_OR_SAVEEXEC_B64 : SOP1_64 <"s_or_saveexec_b64">;
225def S_XOR_SAVEEXEC_B64 : SOP1_64 <"s_xor_saveexec_b64">;
226def S_ANDN2_SAVEEXEC_B64 : SOP1_64 <"s_andn2_saveexec_b64">;
227def S_ORN2_SAVEEXEC_B64 : SOP1_64 <"s_orn2_saveexec_b64">;
228def S_NAND_SAVEEXEC_B64 : SOP1_64 <"s_nand_saveexec_b64">;
229def S_NOR_SAVEEXEC_B64 : SOP1_64 <"s_nor_saveexec_b64">;
230def S_XNOR_SAVEEXEC_B64 : SOP1_64 <"s_xnor_saveexec_b64">;
231
232} // End hasSideEffects = 1, Uses = [EXEC], Defs = [EXEC, SCC]
233
234def S_QUADMASK_B32 : SOP1_32 <"s_quadmask_b32">;
235def S_QUADMASK_B64 : SOP1_64 <"s_quadmask_b64">;
236
237let Uses = [M0] in {
238def S_MOVRELS_B32 : SOP1_32 <"s_movrels_b32">;
239def S_MOVRELS_B64 : SOP1_64 <"s_movrels_b64">;
240def S_MOVRELD_B32 : SOP1_32 <"s_movreld_b32">;
241def S_MOVRELD_B64 : SOP1_64 <"s_movreld_b64">;
242} // End Uses = [M0]
243
244def S_CBRANCH_JOIN : SOP1_0_32R <"s_cbranch_join">;
245def S_MOV_REGRD_B32 : SOP1_32 <"s_mov_regrd_b32">;
246let Defs = [SCC] in {
247def S_ABS_I32 : SOP1_32 <"s_abs_i32">;
248} // End Defs = [SCC]
249def S_MOV_FED_B32 : SOP1_32 <"s_mov_fed_b32">;
250
251let SubtargetPredicate = HasVGPRIndexMode in {
252def S_SET_GPR_IDX_IDX : SOP1_0_32<"s_set_gpr_idx_idx"> {
253  let Uses = [M0];
254  let Defs = [M0];
255}
256}
257
258let SubtargetPredicate = isGFX9 in {
259  let hasSideEffects = 1, Defs = [EXEC, SCC], Uses = [EXEC] in {
260    def S_ANDN1_SAVEEXEC_B64 : SOP1_64<"s_andn1_saveexec_b64">;
261    def S_ORN1_SAVEEXEC_B64  : SOP1_64<"s_orn1_saveexec_b64">;
262    def S_ANDN1_WREXEC_B64   : SOP1_64<"s_andn1_wrexec_b64">;
263    def S_ANDN2_WREXEC_B64   : SOP1_64<"s_andn2_wrexec_b64">;
264  } // End hasSideEffects = 1, Defs = [EXEC, SCC], Uses = [EXEC]
265
266  def S_BITREPLICATE_B64_B32 : SOP1_64_32<"s_bitreplicate_b64_b32">;
267} // End SubtargetPredicate = isGFX9
268
269//===----------------------------------------------------------------------===//
270// SOP2 Instructions
271//===----------------------------------------------------------------------===//
272
273class SOP2_Pseudo<string opName, dag outs, dag ins,
274                  string asmOps, list<dag> pattern=[]> :
275  SOP_Pseudo<opName, outs, ins, asmOps, pattern> {
276
277  let mayLoad = 0;
278  let mayStore = 0;
279  let hasSideEffects = 0;
280  let SALU = 1;
281  let SOP2 = 1;
282  let SchedRW = [WriteSALU];
283  let UseNamedOperandTable = 1;
284
285  let has_sdst = 1;
286
287  // Pseudo instructions have no encodings, but adding this field here allows
288  // us to do:
289  // let sdst = xxx in {
290  // for multiclasses that include both real and pseudo instructions.
291  // field bits<7> sdst = 0;
292  // let Size = 4; // Do we need size here?
293}
294
295class SOP2_Real<bits<7> op, SOP_Pseudo ps> :
296  InstSI <ps.OutOperandList, ps.InOperandList,
297          ps.Mnemonic # " " # ps.AsmOperands, []>,
298  Enc32 {
299  let isPseudo = 0;
300  let isCodeGenOnly = 0;
301
302  // copy relevant pseudo op flags
303  let SubtargetPredicate = ps.SubtargetPredicate;
304  let AsmMatchConverter  = ps.AsmMatchConverter;
305
306  // encoding
307  bits<7> sdst;
308  bits<8> src0;
309  bits<8> src1;
310
311  let Inst{7-0}   = src0;
312  let Inst{15-8}  = src1;
313  let Inst{22-16} = !if(ps.has_sdst, sdst, ?);
314  let Inst{29-23} = op;
315  let Inst{31-30} = 0x2; // encoding
316}
317
318
319class SOP2_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo <
320  opName, (outs SReg_32:$sdst), (ins SSrc_b32:$src0, SSrc_b32:$src1),
321  "$sdst, $src0, $src1", pattern
322>;
323
324class SOP2_64 <string opName, list<dag> pattern=[]> : SOP2_Pseudo <
325  opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0, SSrc_b64:$src1),
326  "$sdst, $src0, $src1", pattern
327>;
328
329class SOP2_64_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo <
330  opName, (outs SReg_64:$sdst), (ins SSrc_b64:$src0, SSrc_b32:$src1),
331  "$sdst, $src0, $src1", pattern
332>;
333
334class SOP2_64_32_32 <string opName, list<dag> pattern=[]> : SOP2_Pseudo <
335  opName, (outs SReg_64:$sdst), (ins SSrc_b32:$src0, SSrc_b32:$src1),
336  "$sdst, $src0, $src1", pattern
337>;
338
339class UniformBinFrag<SDPatternOperator Op> : PatFrag <
340  (ops node:$src0, node:$src1),
341  (Op $src0, $src1),
342  [{ return !N->isDivergent(); }]
343>;
344
345let Defs = [SCC] in { // Carry out goes to SCC
346let isCommutable = 1 in {
347def S_ADD_U32 : SOP2_32 <"s_add_u32">;
348def S_ADD_I32 : SOP2_32 <"s_add_i32",
349  [(set i32:$sdst, (UniformBinFrag<add> SSrc_b32:$src0, SSrc_b32:$src1))]
350>;
351} // End isCommutable = 1
352
353def S_SUB_U32 : SOP2_32 <"s_sub_u32">;
354def S_SUB_I32 : SOP2_32 <"s_sub_i32",
355  [(set i32:$sdst, (UniformBinFrag<sub> SSrc_b32:$src0, SSrc_b32:$src1))]
356>;
357
358let Uses = [SCC] in { // Carry in comes from SCC
359let isCommutable = 1 in {
360def S_ADDC_U32 : SOP2_32 <"s_addc_u32",
361  [(set i32:$sdst, (UniformBinFrag<adde> (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))]>;
362} // End isCommutable = 1
363
364def S_SUBB_U32 : SOP2_32 <"s_subb_u32",
365  [(set i32:$sdst, (UniformBinFrag<sube> (i32 SSrc_b32:$src0), (i32 SSrc_b32:$src1)))]>;
366} // End Uses = [SCC]
367
368
369let isCommutable = 1 in {
370def S_MIN_I32 : SOP2_32 <"s_min_i32",
371  [(set i32:$sdst, (UniformBinFrag<smin> i32:$src0, i32:$src1))]
372>;
373def S_MIN_U32 : SOP2_32 <"s_min_u32",
374  [(set i32:$sdst, (UniformBinFrag<umin> i32:$src0, i32:$src1))]
375>;
376def S_MAX_I32 : SOP2_32 <"s_max_i32",
377  [(set i32:$sdst, (UniformBinFrag<smax> i32:$src0, i32:$src1))]
378>;
379def S_MAX_U32 : SOP2_32 <"s_max_u32",
380  [(set i32:$sdst, (UniformBinFrag<umax> i32:$src0, i32:$src1))]
381>;
382} // End isCommutable = 1
383} // End Defs = [SCC]
384
385
386let Uses = [SCC] in {
387  def S_CSELECT_B32 : SOP2_32 <"s_cselect_b32">;
388  def S_CSELECT_B64 : SOP2_64 <"s_cselect_b64">;
389} // End Uses = [SCC]
390
391let Defs = [SCC] in {
392let isCommutable = 1 in {
393def S_AND_B32 : SOP2_32 <"s_and_b32",
394  [(set i32:$sdst, (UniformBinFrag<and> i32:$src0, i32:$src1))]
395>;
396
397def S_AND_B64 : SOP2_64 <"s_and_b64",
398  [(set i64:$sdst, (UniformBinFrag<and> i64:$src0, i64:$src1))]
399>;
400
401def S_OR_B32 : SOP2_32 <"s_or_b32",
402  [(set i32:$sdst, (UniformBinFrag<or> i32:$src0, i32:$src1))]
403>;
404
405def S_OR_B64 : SOP2_64 <"s_or_b64",
406  [(set i64:$sdst, (UniformBinFrag<or> i64:$src0, i64:$src1))]
407>;
408
409def S_XOR_B32 : SOP2_32 <"s_xor_b32",
410  [(set i32:$sdst, (UniformBinFrag<xor> i32:$src0, i32:$src1))]
411>;
412
413def S_XOR_B64 : SOP2_64 <"s_xor_b64",
414  [(set i64:$sdst, (UniformBinFrag<xor> i64:$src0, i64:$src1))]
415>;
416
417def S_XNOR_B32 : SOP2_32 <"s_xnor_b32",
418  [(set i32:$sdst, (not (xor_oneuse i32:$src0, i32:$src1)))]
419>;
420
421def S_XNOR_B64 : SOP2_64 <"s_xnor_b64",
422  [(set i64:$sdst, (not (xor_oneuse i64:$src0, i64:$src1)))]
423>;
424} // End isCommutable = 1
425
426def S_ANDN2_B32 : SOP2_32 <"s_andn2_b32">;
427def S_ANDN2_B64 : SOP2_64 <"s_andn2_b64">;
428def S_ORN2_B32 : SOP2_32 <"s_orn2_b32">;
429def S_ORN2_B64 : SOP2_64 <"s_orn2_b64">;
430def S_NAND_B32 : SOP2_32 <"s_nand_b32">;
431def S_NAND_B64 : SOP2_64 <"s_nand_b64">;
432def S_NOR_B32 : SOP2_32 <"s_nor_b32">;
433def S_NOR_B64 : SOP2_64 <"s_nor_b64">;
434} // End Defs = [SCC]
435
436// Use added complexity so these patterns are preferred to the VALU patterns.
437let AddedComplexity = 1 in {
438
439let Defs = [SCC] in {
440// TODO: b64 versions require VOP3 change since v_lshlrev_b64 is VOP3
441def S_LSHL_B32 : SOP2_32 <"s_lshl_b32",
442  [(set i32:$sdst, (UniformBinFrag<shl> i32:$src0, i32:$src1))]
443>;
444def S_LSHL_B64 : SOP2_64_32 <"s_lshl_b64",
445  [(set i64:$sdst, (UniformBinFrag<shl> i64:$src0, i32:$src1))]
446>;
447def S_LSHR_B32 : SOP2_32 <"s_lshr_b32",
448  [(set i32:$sdst, (UniformBinFrag<srl> i32:$src0, i32:$src1))]
449>;
450def S_LSHR_B64 : SOP2_64_32 <"s_lshr_b64",
451  [(set i64:$sdst, (UniformBinFrag<srl> i64:$src0, i32:$src1))]
452>;
453def S_ASHR_I32 : SOP2_32 <"s_ashr_i32",
454  [(set i32:$sdst, (UniformBinFrag<sra> i32:$src0, i32:$src1))]
455>;
456def S_ASHR_I64 : SOP2_64_32 <"s_ashr_i64",
457  [(set i64:$sdst, (UniformBinFrag<sra> i64:$src0, i32:$src1))]
458>;
459} // End Defs = [SCC]
460
461def S_BFM_B32 : SOP2_32 <"s_bfm_b32",
462  [(set i32:$sdst, (UniformBinFrag<AMDGPUbfm> i32:$src0, i32:$src1))]>;
463def S_BFM_B64 : SOP2_64_32_32 <"s_bfm_b64">;
464
465// TODO: S_MUL_I32 require V_MUL_LO_I32 from VOP3 change
466def S_MUL_I32 : SOP2_32 <"s_mul_i32",
467  [(set i32:$sdst, (mul i32:$src0, i32:$src1))]> {
468  let isCommutable = 1;
469}
470
471} // End AddedComplexity = 1
472
473let Defs = [SCC] in {
474def S_BFE_U32 : SOP2_32 <"s_bfe_u32">;
475def S_BFE_I32 : SOP2_32 <"s_bfe_i32">;
476def S_BFE_U64 : SOP2_64_32 <"s_bfe_u64">;
477def S_BFE_I64 : SOP2_64_32 <"s_bfe_i64">;
478} // End Defs = [SCC]
479
480def S_CBRANCH_G_FORK : SOP2_Pseudo <
481  "s_cbranch_g_fork", (outs),
482  (ins SCSrc_b64:$src0, SCSrc_b64:$src1),
483  "$src0, $src1"
484> {
485  let has_sdst = 0;
486}
487
488let Defs = [SCC] in {
489def S_ABSDIFF_I32 : SOP2_32 <"s_absdiff_i32">;
490} // End Defs = [SCC]
491
492let SubtargetPredicate = isVI in {
493  def S_RFE_RESTORE_B64 : SOP2_Pseudo <
494    "s_rfe_restore_b64", (outs),
495    (ins SSrc_b64:$src0, SSrc_b32:$src1),
496    "$src0, $src1"
497  > {
498    let hasSideEffects = 1;
499    let has_sdst = 0;
500  }
501}
502
503let SubtargetPredicate = isGFX9 in {
504  def S_PACK_LL_B32_B16 : SOP2_32<"s_pack_ll_b32_b16">;
505  def S_PACK_LH_B32_B16 : SOP2_32<"s_pack_lh_b32_b16">;
506  def S_PACK_HH_B32_B16 : SOP2_32<"s_pack_hh_b32_b16">;
507
508  let Defs = [SCC] in {
509    def S_LSHL1_ADD_U32 : SOP2_32<"s_lshl1_add_u32">;
510    def S_LSHL2_ADD_U32 : SOP2_32<"s_lshl2_add_u32">;
511    def S_LSHL3_ADD_U32 : SOP2_32<"s_lshl3_add_u32">;
512    def S_LSHL4_ADD_U32 : SOP2_32<"s_lshl4_add_u32">;
513  } // End Defs = [SCC]
514
515  def S_MUL_HI_U32 : SOP2_32<"s_mul_hi_u32">;
516  def S_MUL_HI_I32 : SOP2_32<"s_mul_hi_i32">;
517}
518
519//===----------------------------------------------------------------------===//
520// SOPK Instructions
521//===----------------------------------------------------------------------===//
522
523class SOPK_Pseudo <string opName, dag outs, dag ins,
524                   string asmOps, list<dag> pattern=[]> :
525  InstSI <outs, ins, "", pattern>,
526  SIMCInstr<opName, SIEncodingFamily.NONE> {
527  let isPseudo = 1;
528  let isCodeGenOnly = 1;
529  let SubtargetPredicate = isGCN;
530  let mayLoad = 0;
531  let mayStore = 0;
532  let hasSideEffects = 0;
533  let SALU = 1;
534  let SOPK = 1;
535  let SchedRW = [WriteSALU];
536  let UseNamedOperandTable = 1;
537  string Mnemonic = opName;
538  string AsmOperands = asmOps;
539
540  bits<1> has_sdst = 1;
541}
542
543class SOPK_Real<bits<5> op, SOPK_Pseudo ps> :
544  InstSI <ps.OutOperandList, ps.InOperandList,
545          ps.Mnemonic # " " # ps.AsmOperands, []> {
546  let isPseudo = 0;
547  let isCodeGenOnly = 0;
548
549  // copy relevant pseudo op flags
550  let SubtargetPredicate = ps.SubtargetPredicate;
551  let AsmMatchConverter  = ps.AsmMatchConverter;
552  let DisableEncoding    = ps.DisableEncoding;
553  let Constraints        = ps.Constraints;
554
555  // encoding
556  bits<7>  sdst;
557  bits<16> simm16;
558  bits<32> imm;
559}
560
561class SOPK_Real32<bits<5> op, SOPK_Pseudo ps> :
562  SOPK_Real <op, ps>,
563  Enc32 {
564  let Inst{15-0}  = simm16;
565  let Inst{22-16} = !if(ps.has_sdst, sdst, ?);
566  let Inst{27-23} = op;
567  let Inst{31-28} = 0xb; //encoding
568}
569
570class SOPK_Real64<bits<5> op, SOPK_Pseudo ps> :
571  SOPK_Real<op, ps>,
572  Enc64 {
573  let Inst{15-0}  = simm16;
574  let Inst{22-16} = !if(ps.has_sdst, sdst, ?);
575  let Inst{27-23} = op;
576  let Inst{31-28} = 0xb; //encoding
577  let Inst{63-32} = imm;
578}
579
580class SOPKInstTable <bit is_sopk, string cmpOp = ""> {
581  bit IsSOPK = is_sopk;
582  string BaseCmpOp = cmpOp;
583}
584
585class SOPK_32 <string opName, list<dag> pattern=[]> : SOPK_Pseudo <
586  opName,
587  (outs SReg_32:$sdst),
588  (ins s16imm:$simm16),
589  "$sdst, $simm16",
590  pattern>;
591
592class SOPK_SCC <string opName, string base_op, bit isSignExt> : SOPK_Pseudo <
593  opName,
594  (outs),
595  !if(isSignExt,
596      (ins SReg_32:$sdst, s16imm:$simm16),
597      (ins SReg_32:$sdst, u16imm:$simm16)),
598  "$sdst, $simm16", []>,
599  SOPKInstTable<1, base_op>{
600  let Defs = [SCC];
601}
602
603class SOPK_32TIE <string opName, list<dag> pattern=[]> : SOPK_Pseudo <
604  opName,
605  (outs SReg_32:$sdst),
606  (ins SReg_32:$src0, s16imm:$simm16),
607  "$sdst, $simm16",
608  pattern
609>;
610
611let isReMaterializable = 1, isMoveImm = 1 in {
612def S_MOVK_I32 : SOPK_32 <"s_movk_i32">;
613} // End isReMaterializable = 1
614let Uses = [SCC] in {
615def S_CMOVK_I32 : SOPK_32 <"s_cmovk_i32">;
616}
617
618let isCompare = 1 in {
619
620// This instruction is disabled for now until we can figure out how to teach
621// the instruction selector to correctly use the  S_CMP* vs V_CMP*
622// instructions.
623//
624// When this instruction is enabled the code generator sometimes produces this
625// invalid sequence:
626//
627// SCC = S_CMPK_EQ_I32 SGPR0, imm
628// VCC = COPY SCC
629// VGPR0 = V_CNDMASK VCC, VGPR0, VGPR1
630//
631// def S_CMPK_EQ_I32 : SOPK_SCC <"s_cmpk_eq_i32",
632//   [(set i1:$dst, (setcc i32:$src0, imm:$src1, SETEQ))]
633// >;
634
635def S_CMPK_EQ_I32 : SOPK_SCC <"s_cmpk_eq_i32", "s_cmp_eq_i32", 1>;
636def S_CMPK_LG_I32 : SOPK_SCC <"s_cmpk_lg_i32", "s_cmp_lg_i32", 1>;
637def S_CMPK_GT_I32 : SOPK_SCC <"s_cmpk_gt_i32", "s_cmp_gt_i32", 1>;
638def S_CMPK_GE_I32 : SOPK_SCC <"s_cmpk_ge_i32", "s_cmp_ge_i32", 1>;
639def S_CMPK_LT_I32 : SOPK_SCC <"s_cmpk_lt_i32", "s_cmp_lt_i32", 1>;
640def S_CMPK_LE_I32 : SOPK_SCC <"s_cmpk_le_i32", "s_cmp_le_i32", 1>;
641
642let SOPKZext = 1 in {
643def S_CMPK_EQ_U32 : SOPK_SCC <"s_cmpk_eq_u32", "s_cmp_eq_u32", 0>;
644def S_CMPK_LG_U32 : SOPK_SCC <"s_cmpk_lg_u32", "s_cmp_lg_u32", 0>;
645def S_CMPK_GT_U32 : SOPK_SCC <"s_cmpk_gt_u32", "s_cmp_gt_u32", 0>;
646def S_CMPK_GE_U32 : SOPK_SCC <"s_cmpk_ge_u32", "s_cmp_ge_u32", 0>;
647def S_CMPK_LT_U32 : SOPK_SCC <"s_cmpk_lt_u32", "s_cmp_lt_u32", 0>;
648def S_CMPK_LE_U32 : SOPK_SCC <"s_cmpk_le_u32", "s_cmp_le_u32", 0>;
649} // End SOPKZext = 1
650} // End isCompare = 1
651
652let Defs = [SCC], isCommutable = 1, DisableEncoding = "$src0",
653    Constraints = "$sdst = $src0" in {
654  def S_ADDK_I32 : SOPK_32TIE <"s_addk_i32">;
655  def S_MULK_I32 : SOPK_32TIE <"s_mulk_i32">;
656}
657
658def S_CBRANCH_I_FORK : SOPK_Pseudo <
659  "s_cbranch_i_fork",
660  (outs), (ins SReg_64:$sdst, s16imm:$simm16),
661  "$sdst, $simm16"
662>;
663
664let mayLoad = 1 in {
665def S_GETREG_B32 : SOPK_Pseudo <
666  "s_getreg_b32",
667  (outs SReg_32:$sdst), (ins hwreg:$simm16),
668  "$sdst, $simm16"
669>;
670}
671
672let hasSideEffects = 1 in {
673
674def S_SETREG_B32 : SOPK_Pseudo <
675  "s_setreg_b32",
676  (outs), (ins SReg_32:$sdst, hwreg:$simm16),
677  "$simm16, $sdst",
678  [(AMDGPUsetreg i32:$sdst, (i16 timm:$simm16))]
679>;
680
681// FIXME: Not on SI?
682//def S_GETREG_REGRD_B32 : SOPK_32 <sopk<0x14, 0x13>, "s_getreg_regrd_b32">;
683
684def S_SETREG_IMM32_B32 : SOPK_Pseudo <
685  "s_setreg_imm32_b32",
686  (outs), (ins i32imm:$imm, hwreg:$simm16),
687  "$simm16, $imm"> {
688  let Size = 8; // Unlike every other SOPK instruction.
689  let has_sdst = 0;
690}
691
692} // End hasSideEffects = 1
693
694let SubtargetPredicate = isGFX9 in {
695  def S_CALL_B64 : SOPK_Pseudo<
696      "s_call_b64",
697      (outs SReg_64:$sdst),
698      (ins s16imm:$simm16),
699      "$sdst, $simm16"> {
700    let isCall = 1;
701  }
702}
703
704//===----------------------------------------------------------------------===//
705// SOPC Instructions
706//===----------------------------------------------------------------------===//
707
708class SOPCe <bits<7> op> : Enc32 {
709  bits<8> src0;
710  bits<8> src1;
711
712  let Inst{7-0} = src0;
713  let Inst{15-8} = src1;
714  let Inst{22-16} = op;
715  let Inst{31-23} = 0x17e;
716}
717
718class SOPC <bits<7> op, dag outs, dag ins, string asm,
719            list<dag> pattern = []> :
720  InstSI<outs, ins, asm, pattern>, SOPCe <op> {
721  let mayLoad = 0;
722  let mayStore = 0;
723  let hasSideEffects = 0;
724  let SALU = 1;
725  let SOPC = 1;
726  let isCodeGenOnly = 0;
727  let Defs = [SCC];
728  let SchedRW = [WriteSALU];
729  let UseNamedOperandTable = 1;
730  let SubtargetPredicate = isGCN;
731}
732
733class SOPC_Base <bits<7> op, RegisterOperand rc0, RegisterOperand rc1,
734                 string opName, list<dag> pattern = []> : SOPC <
735  op, (outs), (ins rc0:$src0, rc1:$src1),
736  opName#" $src0, $src1", pattern > {
737  let Defs = [SCC];
738}
739class SOPC_Helper <bits<7> op, RegisterOperand rc, ValueType vt,
740                    string opName, PatLeaf cond> : SOPC_Base <
741  op, rc, rc, opName,
742  [(set SCC, (si_setcc_uniform vt:$src0, vt:$src1, cond))] > {
743}
744
745class SOPC_CMP_32<bits<7> op, string opName,
746                  PatLeaf cond = COND_NULL, string revOp = opName>
747  : SOPC_Helper<op, SSrc_b32, i32, opName, cond>,
748    Commutable_REV<revOp, !eq(revOp, opName)>,
749    SOPKInstTable<0, opName> {
750  let isCompare = 1;
751  let isCommutable = 1;
752}
753
754class SOPC_CMP_64<bits<7> op, string opName,
755                  PatLeaf cond = COND_NULL, string revOp = opName>
756  : SOPC_Helper<op, SSrc_b64, i64, opName, cond>,
757    Commutable_REV<revOp, !eq(revOp, opName)> {
758  let isCompare = 1;
759  let isCommutable = 1;
760}
761
762class SOPC_32<bits<7> op, string opName, list<dag> pattern = []>
763  : SOPC_Base<op, SSrc_b32, SSrc_b32, opName, pattern>;
764
765class SOPC_64_32<bits<7> op, string opName, list<dag> pattern = []>
766  : SOPC_Base<op, SSrc_b64, SSrc_b32, opName, pattern>;
767
768def S_CMP_EQ_I32 : SOPC_CMP_32 <0x00, "s_cmp_eq_i32">;
769def S_CMP_LG_I32 : SOPC_CMP_32 <0x01, "s_cmp_lg_i32">;
770def S_CMP_GT_I32 : SOPC_CMP_32 <0x02, "s_cmp_gt_i32", COND_SGT>;
771def S_CMP_GE_I32 : SOPC_CMP_32 <0x03, "s_cmp_ge_i32", COND_SGE>;
772def S_CMP_LT_I32 : SOPC_CMP_32 <0x04, "s_cmp_lt_i32", COND_SLT, "s_cmp_gt_i32">;
773def S_CMP_LE_I32 : SOPC_CMP_32 <0x05, "s_cmp_le_i32", COND_SLE, "s_cmp_ge_i32">;
774def S_CMP_EQ_U32 : SOPC_CMP_32 <0x06, "s_cmp_eq_u32", COND_EQ>;
775def S_CMP_LG_U32 : SOPC_CMP_32 <0x07, "s_cmp_lg_u32", COND_NE>;
776def S_CMP_GT_U32 : SOPC_CMP_32 <0x08, "s_cmp_gt_u32", COND_UGT>;
777def S_CMP_GE_U32 : SOPC_CMP_32 <0x09, "s_cmp_ge_u32", COND_UGE>;
778def S_CMP_LT_U32 : SOPC_CMP_32 <0x0a, "s_cmp_lt_u32", COND_ULT, "s_cmp_gt_u32">;
779def S_CMP_LE_U32 : SOPC_CMP_32 <0x0b, "s_cmp_le_u32", COND_ULE, "s_cmp_ge_u32">;
780
781def S_BITCMP0_B32 : SOPC_32 <0x0c, "s_bitcmp0_b32">;
782def S_BITCMP1_B32 : SOPC_32 <0x0d, "s_bitcmp1_b32">;
783def S_BITCMP0_B64 : SOPC_64_32 <0x0e, "s_bitcmp0_b64">;
784def S_BITCMP1_B64 : SOPC_64_32 <0x0f, "s_bitcmp1_b64">;
785def S_SETVSKIP : SOPC_32 <0x10, "s_setvskip">;
786
787let SubtargetPredicate = isVI in {
788def S_CMP_EQ_U64 : SOPC_CMP_64 <0x12, "s_cmp_eq_u64", COND_EQ>;
789def S_CMP_LG_U64 : SOPC_CMP_64 <0x13, "s_cmp_lg_u64", COND_NE>;
790}
791
792let SubtargetPredicate = HasVGPRIndexMode in {
793def S_SET_GPR_IDX_ON : SOPC <0x11,
794  (outs),
795  (ins SSrc_b32:$src0, GPRIdxMode:$src1),
796  "s_set_gpr_idx_on $src0,$src1"> {
797  let Defs = [M0]; // No scc def
798  let Uses = [M0]; // Other bits of m0 unmodified.
799  let hasSideEffects = 1; // Sets mode.gpr_idx_en
800  let FixedSize = 1;
801}
802}
803
804//===----------------------------------------------------------------------===//
805// SOPP Instructions
806//===----------------------------------------------------------------------===//
807
808class SOPPe <bits<7> op> : Enc32 {
809  bits <16> simm16;
810
811  let Inst{15-0} = simm16;
812  let Inst{22-16} = op;
813  let Inst{31-23} = 0x17f; // encoding
814}
815
816class SOPP <bits<7> op, dag ins, string asm, list<dag> pattern = []> :
817  InstSI <(outs), ins, asm, pattern >, SOPPe <op> {
818
819  let mayLoad = 0;
820  let mayStore = 0;
821  let hasSideEffects = 0;
822  let SALU = 1;
823  let SOPP = 1;
824  let Size = 4;
825  let SchedRW = [WriteSALU];
826
827  let UseNamedOperandTable = 1;
828  let SubtargetPredicate = isGCN;
829}
830
831
832def S_NOP : SOPP <0x00000000, (ins i16imm:$simm16), "s_nop $simm16">;
833
834let isTerminator = 1 in {
835
836def S_ENDPGM : SOPP <0x00000001, (ins), "s_endpgm",
837  [(AMDGPUendpgm)]> {
838  let simm16 = 0;
839  let isBarrier = 1;
840  let isReturn = 1;
841}
842
843let SubtargetPredicate = isVI in {
844def S_ENDPGM_SAVED : SOPP <0x0000001B, (ins), "s_endpgm_saved"> {
845  let simm16 = 0;
846  let isBarrier = 1;
847  let isReturn = 1;
848}
849}
850
851let SubtargetPredicate = isGFX9 in {
852  let isBarrier = 1, isReturn = 1, simm16 = 0 in {
853    def S_ENDPGM_ORDERED_PS_DONE :
854      SOPP<0x01e, (ins), "s_endpgm_ordered_ps_done">;
855  } // End isBarrier = 1, isReturn = 1, simm16 = 0
856} // End SubtargetPredicate = isGFX9
857
858let isBranch = 1, SchedRW = [WriteBranch] in {
859def S_BRANCH : SOPP <
860  0x00000002, (ins sopp_brtarget:$simm16), "s_branch $simm16",
861  [(br bb:$simm16)]> {
862  let isBarrier = 1;
863}
864
865let Uses = [SCC] in {
866def S_CBRANCH_SCC0 : SOPP <
867  0x00000004, (ins sopp_brtarget:$simm16),
868  "s_cbranch_scc0 $simm16"
869>;
870def S_CBRANCH_SCC1 : SOPP <
871  0x00000005, (ins sopp_brtarget:$simm16),
872  "s_cbranch_scc1 $simm16"
873>;
874} // End Uses = [SCC]
875
876let Uses = [VCC] in {
877def S_CBRANCH_VCCZ : SOPP <
878  0x00000006, (ins sopp_brtarget:$simm16),
879  "s_cbranch_vccz $simm16"
880>;
881def S_CBRANCH_VCCNZ : SOPP <
882  0x00000007, (ins sopp_brtarget:$simm16),
883  "s_cbranch_vccnz $simm16"
884>;
885} // End Uses = [VCC]
886
887let Uses = [EXEC] in {
888def S_CBRANCH_EXECZ : SOPP <
889  0x00000008, (ins sopp_brtarget:$simm16),
890  "s_cbranch_execz $simm16"
891>;
892def S_CBRANCH_EXECNZ : SOPP <
893  0x00000009, (ins sopp_brtarget:$simm16),
894  "s_cbranch_execnz $simm16"
895>;
896} // End Uses = [EXEC]
897
898def S_CBRANCH_CDBGSYS : SOPP <
899  0x00000017, (ins sopp_brtarget:$simm16),
900  "s_cbranch_cdbgsys $simm16"
901>;
902
903def S_CBRANCH_CDBGSYS_AND_USER : SOPP <
904  0x0000001A, (ins sopp_brtarget:$simm16),
905  "s_cbranch_cdbgsys_and_user $simm16"
906>;
907
908def S_CBRANCH_CDBGSYS_OR_USER : SOPP <
909  0x00000019, (ins sopp_brtarget:$simm16),
910  "s_cbranch_cdbgsys_or_user $simm16"
911>;
912
913def S_CBRANCH_CDBGUSER : SOPP <
914  0x00000018, (ins sopp_brtarget:$simm16),
915  "s_cbranch_cdbguser $simm16"
916>;
917
918} // End isBranch = 1
919} // End isTerminator = 1
920
921let hasSideEffects = 1 in {
922def S_BARRIER : SOPP <0x0000000a, (ins), "s_barrier",
923  [(int_amdgcn_s_barrier)]> {
924  let SchedRW = [WriteBarrier];
925  let simm16 = 0;
926  let mayLoad = 1;
927  let mayStore = 1;
928  let isConvergent = 1;
929}
930
931let SubtargetPredicate = isVI in {
932def S_WAKEUP : SOPP <0x00000003, (ins), "s_wakeup"> {
933  let simm16 = 0;
934  let mayLoad = 1;
935  let mayStore = 1;
936}
937}
938
939let mayLoad = 1, mayStore = 1, hasSideEffects = 1 in
940def S_WAITCNT : SOPP <0x0000000c, (ins WAIT_FLAG:$simm16), "s_waitcnt $simm16">;
941def S_SETHALT : SOPP <0x0000000d, (ins i16imm:$simm16), "s_sethalt $simm16">;
942def S_SETKILL : SOPP <0x0000000b, (ins i16imm:$simm16), "s_setkill $simm16">;
943
944// On SI the documentation says sleep for approximately 64 * low 2
945// bits, consistent with the reported maximum of 448. On VI the
946// maximum reported is 960 cycles, so 960 / 64 = 15 max, so is the
947// maximum really 15 on VI?
948def S_SLEEP : SOPP <0x0000000e, (ins i32imm:$simm16),
949  "s_sleep $simm16", [(int_amdgcn_s_sleep SIMM16bit:$simm16)]> {
950  let hasSideEffects = 1;
951  let mayLoad = 1;
952  let mayStore = 1;
953}
954
955def S_SETPRIO : SOPP <0x0000000f, (ins i16imm:$simm16), "s_setprio $simm16">;
956
957let Uses = [EXEC, M0] in {
958// FIXME: Should this be mayLoad+mayStore?
959def S_SENDMSG : SOPP <0x00000010, (ins SendMsgImm:$simm16), "s_sendmsg $simm16",
960  [(AMDGPUsendmsg (i32 imm:$simm16))]
961>;
962
963def S_SENDMSGHALT : SOPP <0x00000011, (ins SendMsgImm:$simm16), "s_sendmsghalt $simm16",
964  [(AMDGPUsendmsghalt (i32 imm:$simm16))]
965>;
966} // End Uses = [EXEC, M0]
967
968def S_TRAP : SOPP <0x00000012, (ins i16imm:$simm16), "s_trap $simm16">;
969def S_ICACHE_INV : SOPP <0x00000013, (ins), "s_icache_inv"> {
970  let simm16 = 0;
971}
972def S_INCPERFLEVEL : SOPP <0x00000014, (ins i32imm:$simm16), "s_incperflevel $simm16",
973  [(int_amdgcn_s_incperflevel SIMM16bit:$simm16)]> {
974  let hasSideEffects = 1;
975  let mayLoad = 1;
976  let mayStore = 1;
977}
978def S_DECPERFLEVEL : SOPP <0x00000015, (ins i32imm:$simm16), "s_decperflevel $simm16",
979  [(int_amdgcn_s_decperflevel SIMM16bit:$simm16)]> {
980  let hasSideEffects = 1;
981  let mayLoad = 1;
982  let mayStore = 1;
983}
984def S_TTRACEDATA : SOPP <0x00000016, (ins), "s_ttracedata"> {
985  let simm16 = 0;
986}
987
988let SubtargetPredicate = HasVGPRIndexMode in {
989def S_SET_GPR_IDX_OFF : SOPP<0x1c, (ins), "s_set_gpr_idx_off"> {
990  let simm16 = 0;
991}
992}
993} // End hasSideEffects
994
995let SubtargetPredicate = HasVGPRIndexMode in {
996def S_SET_GPR_IDX_MODE : SOPP<0x1d, (ins GPRIdxMode:$simm16),
997  "s_set_gpr_idx_mode$simm16"> {
998  let Defs = [M0];
999}
1000}
1001
1002//===----------------------------------------------------------------------===//
1003// S_GETREG_B32 Intrinsic Pattern.
1004//===----------------------------------------------------------------------===//
1005def : GCNPat <
1006  (int_amdgcn_s_getreg imm:$simm16),
1007  (S_GETREG_B32 (as_i16imm $simm16))
1008>;
1009
1010//===----------------------------------------------------------------------===//
1011// SOP1 Patterns
1012//===----------------------------------------------------------------------===//
1013
1014def : GCNPat <
1015  (i64 (ctpop i64:$src)),
1016    (i64 (REG_SEQUENCE SReg_64,
1017     (i32 (COPY_TO_REGCLASS (S_BCNT1_I32_B64 $src), SReg_32)), sub0,
1018     (S_MOV_B32 (i32 0)), sub1))
1019>;
1020
1021def : GCNPat <
1022  (i32 (smax i32:$x, (i32 (ineg i32:$x)))),
1023  (S_ABS_I32 $x)
1024>;
1025
1026def : GCNPat <
1027  (i16 imm:$imm),
1028  (S_MOV_B32 imm:$imm)
1029>;
1030
1031// Same as a 32-bit inreg
1032def : GCNPat<
1033  (i32 (sext i16:$src)),
1034  (S_SEXT_I32_I16 $src)
1035>;
1036
1037
1038//===----------------------------------------------------------------------===//
1039// SOP2 Patterns
1040//===----------------------------------------------------------------------===//
1041
1042// V_ADD_I32_e32/S_ADD_U32 produces carry in VCC/SCC. For the vector
1043// case, the sgpr-copies pass will fix this to use the vector version.
1044def : GCNPat <
1045  (i32 (addc i32:$src0, i32:$src1)),
1046  (S_ADD_U32 $src0, $src1)
1047>;
1048
1049// FIXME: We need to use COPY_TO_REGCLASS to work-around the fact that
1050// REG_SEQUENCE patterns don't support instructions with multiple
1051// outputs.
1052def : GCNPat<
1053  (i64 (zext i16:$src)),
1054    (REG_SEQUENCE SReg_64,
1055      (i32 (COPY_TO_REGCLASS (S_AND_B32 $src, (S_MOV_B32 (i32 0xffff))), SGPR_32)), sub0,
1056      (S_MOV_B32 (i32 0)), sub1)
1057>;
1058
1059def : GCNPat <
1060  (i64 (sext i16:$src)),
1061    (REG_SEQUENCE SReg_64, (i32 (S_SEXT_I32_I16 $src)), sub0,
1062    (i32 (COPY_TO_REGCLASS (S_ASHR_I32 (i32 (S_SEXT_I32_I16 $src)), (S_MOV_B32 (i32 31))), SGPR_32)), sub1)
1063>;
1064
1065def : GCNPat<
1066  (i32 (zext i16:$src)),
1067  (S_AND_B32 (S_MOV_B32 (i32 0xffff)), $src)
1068>;
1069
1070
1071
1072//===----------------------------------------------------------------------===//
1073// SOPP Patterns
1074//===----------------------------------------------------------------------===//
1075
1076def : GCNPat <
1077  (int_amdgcn_s_waitcnt i32:$simm16),
1078  (S_WAITCNT (as_i16imm $simm16))
1079>;
1080
1081
1082//===----------------------------------------------------------------------===//
1083// Real target instructions, move this to the appropriate subtarget TD file
1084//===----------------------------------------------------------------------===//
1085
1086class Select_si<string opName> :
1087  SIMCInstr<opName, SIEncodingFamily.SI> {
1088  list<Predicate> AssemblerPredicates = [isSICI];
1089  string DecoderNamespace = "SICI";
1090}
1091
1092class SOP1_Real_si<bits<8> op, SOP1_Pseudo ps> :
1093  SOP1_Real<op, ps>,
1094  Select_si<ps.Mnemonic>;
1095
1096class SOP2_Real_si<bits<7> op, SOP2_Pseudo ps> :
1097  SOP2_Real<op, ps>,
1098  Select_si<ps.Mnemonic>;
1099
1100class SOPK_Real_si<bits<5> op, SOPK_Pseudo ps> :
1101  SOPK_Real32<op, ps>,
1102  Select_si<ps.Mnemonic>;
1103
1104def S_MOV_B32_si           : SOP1_Real_si <0x03, S_MOV_B32>;
1105def S_MOV_B64_si           : SOP1_Real_si <0x04, S_MOV_B64>;
1106def S_CMOV_B32_si          : SOP1_Real_si <0x05, S_CMOV_B32>;
1107def S_CMOV_B64_si          : SOP1_Real_si <0x06, S_CMOV_B64>;
1108def S_NOT_B32_si           : SOP1_Real_si <0x07, S_NOT_B32>;
1109def S_NOT_B64_si           : SOP1_Real_si <0x08, S_NOT_B64>;
1110def S_WQM_B32_si           : SOP1_Real_si <0x09, S_WQM_B32>;
1111def S_WQM_B64_si           : SOP1_Real_si <0x0a, S_WQM_B64>;
1112def S_BREV_B32_si          : SOP1_Real_si <0x0b, S_BREV_B32>;
1113def S_BREV_B64_si          : SOP1_Real_si <0x0c, S_BREV_B64>;
1114def S_BCNT0_I32_B32_si     : SOP1_Real_si <0x0d, S_BCNT0_I32_B32>;
1115def S_BCNT0_I32_B64_si     : SOP1_Real_si <0x0e, S_BCNT0_I32_B64>;
1116def S_BCNT1_I32_B32_si     : SOP1_Real_si <0x0f, S_BCNT1_I32_B32>;
1117def S_BCNT1_I32_B64_si     : SOP1_Real_si <0x10, S_BCNT1_I32_B64>;
1118def S_FF0_I32_B32_si       : SOP1_Real_si <0x11, S_FF0_I32_B32>;
1119def S_FF0_I32_B64_si       : SOP1_Real_si <0x12, S_FF0_I32_B64>;
1120def S_FF1_I32_B32_si       : SOP1_Real_si <0x13, S_FF1_I32_B32>;
1121def S_FF1_I32_B64_si       : SOP1_Real_si <0x14, S_FF1_I32_B64>;
1122def S_FLBIT_I32_B32_si     : SOP1_Real_si <0x15, S_FLBIT_I32_B32>;
1123def S_FLBIT_I32_B64_si     : SOP1_Real_si <0x16, S_FLBIT_I32_B64>;
1124def S_FLBIT_I32_si         : SOP1_Real_si <0x17, S_FLBIT_I32>;
1125def S_FLBIT_I32_I64_si     : SOP1_Real_si <0x18, S_FLBIT_I32_I64>;
1126def S_SEXT_I32_I8_si       : SOP1_Real_si <0x19, S_SEXT_I32_I8>;
1127def S_SEXT_I32_I16_si      : SOP1_Real_si <0x1a, S_SEXT_I32_I16>;
1128def S_BITSET0_B32_si       : SOP1_Real_si <0x1b, S_BITSET0_B32>;
1129def S_BITSET0_B64_si       : SOP1_Real_si <0x1c, S_BITSET0_B64>;
1130def S_BITSET1_B32_si       : SOP1_Real_si <0x1d, S_BITSET1_B32>;
1131def S_BITSET1_B64_si       : SOP1_Real_si <0x1e, S_BITSET1_B64>;
1132def S_GETPC_B64_si         : SOP1_Real_si <0x1f, S_GETPC_B64>;
1133def S_SETPC_B64_si         : SOP1_Real_si <0x20, S_SETPC_B64>;
1134def S_SWAPPC_B64_si        : SOP1_Real_si <0x21, S_SWAPPC_B64>;
1135def S_RFE_B64_si           : SOP1_Real_si <0x22, S_RFE_B64>;
1136def S_AND_SAVEEXEC_B64_si  : SOP1_Real_si <0x24, S_AND_SAVEEXEC_B64>;
1137def S_OR_SAVEEXEC_B64_si   : SOP1_Real_si <0x25, S_OR_SAVEEXEC_B64>;
1138def S_XOR_SAVEEXEC_B64_si  : SOP1_Real_si <0x26, S_XOR_SAVEEXEC_B64>;
1139def S_ANDN2_SAVEEXEC_B64_si: SOP1_Real_si <0x27, S_ANDN2_SAVEEXEC_B64>;
1140def S_ORN2_SAVEEXEC_B64_si : SOP1_Real_si <0x28, S_ORN2_SAVEEXEC_B64>;
1141def S_NAND_SAVEEXEC_B64_si : SOP1_Real_si <0x29, S_NAND_SAVEEXEC_B64>;
1142def S_NOR_SAVEEXEC_B64_si  : SOP1_Real_si <0x2a, S_NOR_SAVEEXEC_B64>;
1143def S_XNOR_SAVEEXEC_B64_si : SOP1_Real_si <0x2b, S_XNOR_SAVEEXEC_B64>;
1144def S_QUADMASK_B32_si      : SOP1_Real_si <0x2c, S_QUADMASK_B32>;
1145def S_QUADMASK_B64_si      : SOP1_Real_si <0x2d, S_QUADMASK_B64>;
1146def S_MOVRELS_B32_si       : SOP1_Real_si <0x2e, S_MOVRELS_B32>;
1147def S_MOVRELS_B64_si       : SOP1_Real_si <0x2f, S_MOVRELS_B64>;
1148def S_MOVRELD_B32_si       : SOP1_Real_si <0x30, S_MOVRELD_B32>;
1149def S_MOVRELD_B64_si       : SOP1_Real_si <0x31, S_MOVRELD_B64>;
1150def S_CBRANCH_JOIN_si      : SOP1_Real_si <0x32, S_CBRANCH_JOIN>;
1151def S_MOV_REGRD_B32_si     : SOP1_Real_si <0x33, S_MOV_REGRD_B32>;
1152def S_ABS_I32_si           : SOP1_Real_si <0x34, S_ABS_I32>;
1153def S_MOV_FED_B32_si       : SOP1_Real_si <0x35, S_MOV_FED_B32>;
1154
1155def S_ADD_U32_si           : SOP2_Real_si <0x00, S_ADD_U32>;
1156def S_ADD_I32_si           : SOP2_Real_si <0x02, S_ADD_I32>;
1157def S_SUB_U32_si           : SOP2_Real_si <0x01, S_SUB_U32>;
1158def S_SUB_I32_si           : SOP2_Real_si <0x03, S_SUB_I32>;
1159def S_ADDC_U32_si          : SOP2_Real_si <0x04, S_ADDC_U32>;
1160def S_SUBB_U32_si          : SOP2_Real_si <0x05, S_SUBB_U32>;
1161def S_MIN_I32_si           : SOP2_Real_si <0x06, S_MIN_I32>;
1162def S_MIN_U32_si           : SOP2_Real_si <0x07, S_MIN_U32>;
1163def S_MAX_I32_si           : SOP2_Real_si <0x08, S_MAX_I32>;
1164def S_MAX_U32_si           : SOP2_Real_si <0x09, S_MAX_U32>;
1165def S_CSELECT_B32_si       : SOP2_Real_si <0x0a, S_CSELECT_B32>;
1166def S_CSELECT_B64_si       : SOP2_Real_si <0x0b, S_CSELECT_B64>;
1167def S_AND_B32_si           : SOP2_Real_si <0x0e, S_AND_B32>;
1168def S_AND_B64_si           : SOP2_Real_si <0x0f, S_AND_B64>;
1169def S_OR_B32_si            : SOP2_Real_si <0x10, S_OR_B32>;
1170def S_OR_B64_si            : SOP2_Real_si <0x11, S_OR_B64>;
1171def S_XOR_B32_si           : SOP2_Real_si <0x12, S_XOR_B32>;
1172def S_XOR_B64_si           : SOP2_Real_si <0x13, S_XOR_B64>;
1173def S_ANDN2_B32_si         : SOP2_Real_si <0x14, S_ANDN2_B32>;
1174def S_ANDN2_B64_si         : SOP2_Real_si <0x15, S_ANDN2_B64>;
1175def S_ORN2_B32_si          : SOP2_Real_si <0x16, S_ORN2_B32>;
1176def S_ORN2_B64_si          : SOP2_Real_si <0x17, S_ORN2_B64>;
1177def S_NAND_B32_si          : SOP2_Real_si <0x18, S_NAND_B32>;
1178def S_NAND_B64_si          : SOP2_Real_si <0x19, S_NAND_B64>;
1179def S_NOR_B32_si           : SOP2_Real_si <0x1a, S_NOR_B32>;
1180def S_NOR_B64_si           : SOP2_Real_si <0x1b, S_NOR_B64>;
1181def S_XNOR_B32_si          : SOP2_Real_si <0x1c, S_XNOR_B32>;
1182def S_XNOR_B64_si          : SOP2_Real_si <0x1d, S_XNOR_B64>;
1183def S_LSHL_B32_si          : SOP2_Real_si <0x1e, S_LSHL_B32>;
1184def S_LSHL_B64_si          : SOP2_Real_si <0x1f, S_LSHL_B64>;
1185def S_LSHR_B32_si          : SOP2_Real_si <0x20, S_LSHR_B32>;
1186def S_LSHR_B64_si          : SOP2_Real_si <0x21, S_LSHR_B64>;
1187def S_ASHR_I32_si          : SOP2_Real_si <0x22, S_ASHR_I32>;
1188def S_ASHR_I64_si          : SOP2_Real_si <0x23, S_ASHR_I64>;
1189def S_BFM_B32_si           : SOP2_Real_si <0x24, S_BFM_B32>;
1190def S_BFM_B64_si           : SOP2_Real_si <0x25, S_BFM_B64>;
1191def S_MUL_I32_si           : SOP2_Real_si <0x26, S_MUL_I32>;
1192def S_BFE_U32_si           : SOP2_Real_si <0x27, S_BFE_U32>;
1193def S_BFE_I32_si           : SOP2_Real_si <0x28, S_BFE_I32>;
1194def S_BFE_U64_si           : SOP2_Real_si <0x29, S_BFE_U64>;
1195def S_BFE_I64_si           : SOP2_Real_si <0x2a, S_BFE_I64>;
1196def S_CBRANCH_G_FORK_si    : SOP2_Real_si <0x2b, S_CBRANCH_G_FORK>;
1197def S_ABSDIFF_I32_si       : SOP2_Real_si <0x2c, S_ABSDIFF_I32>;
1198
1199def S_MOVK_I32_si          : SOPK_Real_si <0x00, S_MOVK_I32>;
1200def S_CMOVK_I32_si         : SOPK_Real_si <0x02, S_CMOVK_I32>;
1201def S_CMPK_EQ_I32_si       : SOPK_Real_si <0x03, S_CMPK_EQ_I32>;
1202def S_CMPK_LG_I32_si       : SOPK_Real_si <0x04, S_CMPK_LG_I32>;
1203def S_CMPK_GT_I32_si       : SOPK_Real_si <0x05, S_CMPK_GT_I32>;
1204def S_CMPK_GE_I32_si       : SOPK_Real_si <0x06, S_CMPK_GE_I32>;
1205def S_CMPK_LT_I32_si       : SOPK_Real_si <0x07, S_CMPK_LT_I32>;
1206def S_CMPK_LE_I32_si       : SOPK_Real_si <0x08, S_CMPK_LE_I32>;
1207def S_CMPK_EQ_U32_si       : SOPK_Real_si <0x09, S_CMPK_EQ_U32>;
1208def S_CMPK_LG_U32_si       : SOPK_Real_si <0x0a, S_CMPK_LG_U32>;
1209def S_CMPK_GT_U32_si       : SOPK_Real_si <0x0b, S_CMPK_GT_U32>;
1210def S_CMPK_GE_U32_si       : SOPK_Real_si <0x0c, S_CMPK_GE_U32>;
1211def S_CMPK_LT_U32_si       : SOPK_Real_si <0x0d, S_CMPK_LT_U32>;
1212def S_CMPK_LE_U32_si       : SOPK_Real_si <0x0e, S_CMPK_LE_U32>;
1213def S_ADDK_I32_si          : SOPK_Real_si <0x0f, S_ADDK_I32>;
1214def S_MULK_I32_si          : SOPK_Real_si <0x10, S_MULK_I32>;
1215def S_CBRANCH_I_FORK_si    : SOPK_Real_si <0x11, S_CBRANCH_I_FORK>;
1216def S_GETREG_B32_si        : SOPK_Real_si <0x12, S_GETREG_B32>;
1217def S_SETREG_B32_si        : SOPK_Real_si <0x13, S_SETREG_B32>;
1218//def S_GETREG_REGRD_B32_si  : SOPK_Real_si <0x14, S_GETREG_REGRD_B32>; // see pseudo for comments
1219def S_SETREG_IMM32_B32_si  : SOPK_Real64<0x15, S_SETREG_IMM32_B32>,
1220                             Select_si<S_SETREG_IMM32_B32.Mnemonic>;
1221
1222
1223class Select_vi<string opName> :
1224  SIMCInstr<opName, SIEncodingFamily.VI> {
1225  list<Predicate> AssemblerPredicates = [isVI];
1226  string DecoderNamespace = "VI";
1227}
1228
1229class SOP1_Real_vi<bits<8> op, SOP1_Pseudo ps> :
1230  SOP1_Real<op, ps>,
1231  Select_vi<ps.Mnemonic>;
1232
1233
1234class SOP2_Real_vi<bits<7> op, SOP2_Pseudo ps> :
1235  SOP2_Real<op, ps>,
1236  Select_vi<ps.Mnemonic>;
1237
1238class SOPK_Real_vi<bits<5> op, SOPK_Pseudo ps> :
1239  SOPK_Real32<op, ps>,
1240  Select_vi<ps.Mnemonic>;
1241
1242def S_MOV_B32_vi           : SOP1_Real_vi <0x00, S_MOV_B32>;
1243def S_MOV_B64_vi           : SOP1_Real_vi <0x01, S_MOV_B64>;
1244def S_CMOV_B32_vi          : SOP1_Real_vi <0x02, S_CMOV_B32>;
1245def S_CMOV_B64_vi          : SOP1_Real_vi <0x03, S_CMOV_B64>;
1246def S_NOT_B32_vi           : SOP1_Real_vi <0x04, S_NOT_B32>;
1247def S_NOT_B64_vi           : SOP1_Real_vi <0x05, S_NOT_B64>;
1248def S_WQM_B32_vi           : SOP1_Real_vi <0x06, S_WQM_B32>;
1249def S_WQM_B64_vi           : SOP1_Real_vi <0x07, S_WQM_B64>;
1250def S_BREV_B32_vi          : SOP1_Real_vi <0x08, S_BREV_B32>;
1251def S_BREV_B64_vi          : SOP1_Real_vi <0x09, S_BREV_B64>;
1252def S_BCNT0_I32_B32_vi     : SOP1_Real_vi <0x0a, S_BCNT0_I32_B32>;
1253def S_BCNT0_I32_B64_vi     : SOP1_Real_vi <0x0b, S_BCNT0_I32_B64>;
1254def S_BCNT1_I32_B32_vi     : SOP1_Real_vi <0x0c, S_BCNT1_I32_B32>;
1255def S_BCNT1_I32_B64_vi     : SOP1_Real_vi <0x0d, S_BCNT1_I32_B64>;
1256def S_FF0_I32_B32_vi       : SOP1_Real_vi <0x0e, S_FF0_I32_B32>;
1257def S_FF0_I32_B64_vi       : SOP1_Real_vi <0x0f, S_FF0_I32_B64>;
1258def S_FF1_I32_B32_vi       : SOP1_Real_vi <0x10, S_FF1_I32_B32>;
1259def S_FF1_I32_B64_vi       : SOP1_Real_vi <0x11, S_FF1_I32_B64>;
1260def S_FLBIT_I32_B32_vi     : SOP1_Real_vi <0x12, S_FLBIT_I32_B32>;
1261def S_FLBIT_I32_B64_vi     : SOP1_Real_vi <0x13, S_FLBIT_I32_B64>;
1262def S_FLBIT_I32_vi         : SOP1_Real_vi <0x14, S_FLBIT_I32>;
1263def S_FLBIT_I32_I64_vi     : SOP1_Real_vi <0x15, S_FLBIT_I32_I64>;
1264def S_SEXT_I32_I8_vi       : SOP1_Real_vi <0x16, S_SEXT_I32_I8>;
1265def S_SEXT_I32_I16_vi      : SOP1_Real_vi <0x17, S_SEXT_I32_I16>;
1266def S_BITSET0_B32_vi       : SOP1_Real_vi <0x18, S_BITSET0_B32>;
1267def S_BITSET0_B64_vi       : SOP1_Real_vi <0x19, S_BITSET0_B64>;
1268def S_BITSET1_B32_vi       : SOP1_Real_vi <0x1a, S_BITSET1_B32>;
1269def S_BITSET1_B64_vi       : SOP1_Real_vi <0x1b, S_BITSET1_B64>;
1270def S_GETPC_B64_vi         : SOP1_Real_vi <0x1c, S_GETPC_B64>;
1271def S_SETPC_B64_vi         : SOP1_Real_vi <0x1d, S_SETPC_B64>;
1272def S_SWAPPC_B64_vi        : SOP1_Real_vi <0x1e, S_SWAPPC_B64>;
1273def S_RFE_B64_vi           : SOP1_Real_vi <0x1f, S_RFE_B64>;
1274def S_AND_SAVEEXEC_B64_vi  : SOP1_Real_vi <0x20, S_AND_SAVEEXEC_B64>;
1275def S_OR_SAVEEXEC_B64_vi   : SOP1_Real_vi <0x21, S_OR_SAVEEXEC_B64>;
1276def S_XOR_SAVEEXEC_B64_vi  : SOP1_Real_vi <0x22, S_XOR_SAVEEXEC_B64>;
1277def S_ANDN2_SAVEEXEC_B64_vi: SOP1_Real_vi <0x23, S_ANDN2_SAVEEXEC_B64>;
1278def S_ORN2_SAVEEXEC_B64_vi : SOP1_Real_vi <0x24, S_ORN2_SAVEEXEC_B64>;
1279def S_NAND_SAVEEXEC_B64_vi : SOP1_Real_vi <0x25, S_NAND_SAVEEXEC_B64>;
1280def S_NOR_SAVEEXEC_B64_vi  : SOP1_Real_vi <0x26, S_NOR_SAVEEXEC_B64>;
1281def S_XNOR_SAVEEXEC_B64_vi : SOP1_Real_vi <0x27, S_XNOR_SAVEEXEC_B64>;
1282def S_QUADMASK_B32_vi      : SOP1_Real_vi <0x28, S_QUADMASK_B32>;
1283def S_QUADMASK_B64_vi      : SOP1_Real_vi <0x29, S_QUADMASK_B64>;
1284def S_MOVRELS_B32_vi       : SOP1_Real_vi <0x2a, S_MOVRELS_B32>;
1285def S_MOVRELS_B64_vi       : SOP1_Real_vi <0x2b, S_MOVRELS_B64>;
1286def S_MOVRELD_B32_vi       : SOP1_Real_vi <0x2c, S_MOVRELD_B32>;
1287def S_MOVRELD_B64_vi       : SOP1_Real_vi <0x2d, S_MOVRELD_B64>;
1288def S_CBRANCH_JOIN_vi      : SOP1_Real_vi <0x2e, S_CBRANCH_JOIN>;
1289def S_MOV_REGRD_B32_vi     : SOP1_Real_vi <0x2f, S_MOV_REGRD_B32>;
1290def S_ABS_I32_vi           : SOP1_Real_vi <0x30, S_ABS_I32>;
1291def S_MOV_FED_B32_vi       : SOP1_Real_vi <0x31, S_MOV_FED_B32>;
1292def S_SET_GPR_IDX_IDX_vi   : SOP1_Real_vi <0x32, S_SET_GPR_IDX_IDX>;
1293
1294def S_ADD_U32_vi           : SOP2_Real_vi <0x00, S_ADD_U32>;
1295def S_ADD_I32_vi           : SOP2_Real_vi <0x02, S_ADD_I32>;
1296def S_SUB_U32_vi           : SOP2_Real_vi <0x01, S_SUB_U32>;
1297def S_SUB_I32_vi           : SOP2_Real_vi <0x03, S_SUB_I32>;
1298def S_ADDC_U32_vi          : SOP2_Real_vi <0x04, S_ADDC_U32>;
1299def S_SUBB_U32_vi          : SOP2_Real_vi <0x05, S_SUBB_U32>;
1300def S_MIN_I32_vi           : SOP2_Real_vi <0x06, S_MIN_I32>;
1301def S_MIN_U32_vi           : SOP2_Real_vi <0x07, S_MIN_U32>;
1302def S_MAX_I32_vi           : SOP2_Real_vi <0x08, S_MAX_I32>;
1303def S_MAX_U32_vi           : SOP2_Real_vi <0x09, S_MAX_U32>;
1304def S_CSELECT_B32_vi       : SOP2_Real_vi <0x0a, S_CSELECT_B32>;
1305def S_CSELECT_B64_vi       : SOP2_Real_vi <0x0b, S_CSELECT_B64>;
1306def S_AND_B32_vi           : SOP2_Real_vi <0x0c, S_AND_B32>;
1307def S_AND_B64_vi           : SOP2_Real_vi <0x0d, S_AND_B64>;
1308def S_OR_B32_vi            : SOP2_Real_vi <0x0e, S_OR_B32>;
1309def S_OR_B64_vi            : SOP2_Real_vi <0x0f, S_OR_B64>;
1310def S_XOR_B32_vi           : SOP2_Real_vi <0x10, S_XOR_B32>;
1311def S_XOR_B64_vi           : SOP2_Real_vi <0x11, S_XOR_B64>;
1312def S_ANDN2_B32_vi         : SOP2_Real_vi <0x12, S_ANDN2_B32>;
1313def S_ANDN2_B64_vi         : SOP2_Real_vi <0x13, S_ANDN2_B64>;
1314def S_ORN2_B32_vi          : SOP2_Real_vi <0x14, S_ORN2_B32>;
1315def S_ORN2_B64_vi          : SOP2_Real_vi <0x15, S_ORN2_B64>;
1316def S_NAND_B32_vi          : SOP2_Real_vi <0x16, S_NAND_B32>;
1317def S_NAND_B64_vi          : SOP2_Real_vi <0x17, S_NAND_B64>;
1318def S_NOR_B32_vi           : SOP2_Real_vi <0x18, S_NOR_B32>;
1319def S_NOR_B64_vi           : SOP2_Real_vi <0x19, S_NOR_B64>;
1320def S_XNOR_B32_vi          : SOP2_Real_vi <0x1a, S_XNOR_B32>;
1321def S_XNOR_B64_vi          : SOP2_Real_vi <0x1b, S_XNOR_B64>;
1322def S_LSHL_B32_vi          : SOP2_Real_vi <0x1c, S_LSHL_B32>;
1323def S_LSHL_B64_vi          : SOP2_Real_vi <0x1d, S_LSHL_B64>;
1324def S_LSHR_B32_vi          : SOP2_Real_vi <0x1e, S_LSHR_B32>;
1325def S_LSHR_B64_vi          : SOP2_Real_vi <0x1f, S_LSHR_B64>;
1326def S_ASHR_I32_vi          : SOP2_Real_vi <0x20, S_ASHR_I32>;
1327def S_ASHR_I64_vi          : SOP2_Real_vi <0x21, S_ASHR_I64>;
1328def S_BFM_B32_vi           : SOP2_Real_vi <0x22, S_BFM_B32>;
1329def S_BFM_B64_vi           : SOP2_Real_vi <0x23, S_BFM_B64>;
1330def S_MUL_I32_vi           : SOP2_Real_vi <0x24, S_MUL_I32>;
1331def S_BFE_U32_vi           : SOP2_Real_vi <0x25, S_BFE_U32>;
1332def S_BFE_I32_vi           : SOP2_Real_vi <0x26, S_BFE_I32>;
1333def S_BFE_U64_vi           : SOP2_Real_vi <0x27, S_BFE_U64>;
1334def S_BFE_I64_vi           : SOP2_Real_vi <0x28, S_BFE_I64>;
1335def S_CBRANCH_G_FORK_vi    : SOP2_Real_vi <0x29, S_CBRANCH_G_FORK>;
1336def S_ABSDIFF_I32_vi       : SOP2_Real_vi <0x2a, S_ABSDIFF_I32>;
1337def S_PACK_LL_B32_B16_vi   : SOP2_Real_vi <0x32, S_PACK_LL_B32_B16>;
1338def S_PACK_LH_B32_B16_vi   : SOP2_Real_vi <0x33, S_PACK_LH_B32_B16>;
1339def S_PACK_HH_B32_B16_vi   : SOP2_Real_vi <0x34, S_PACK_HH_B32_B16>;
1340def S_RFE_RESTORE_B64_vi   : SOP2_Real_vi <0x2b, S_RFE_RESTORE_B64>;
1341
1342def S_MOVK_I32_vi          : SOPK_Real_vi <0x00, S_MOVK_I32>;
1343def S_CMOVK_I32_vi         : SOPK_Real_vi <0x01, S_CMOVK_I32>;
1344def S_CMPK_EQ_I32_vi       : SOPK_Real_vi <0x02, S_CMPK_EQ_I32>;
1345def S_CMPK_LG_I32_vi       : SOPK_Real_vi <0x03, S_CMPK_LG_I32>;
1346def S_CMPK_GT_I32_vi       : SOPK_Real_vi <0x04, S_CMPK_GT_I32>;
1347def S_CMPK_GE_I32_vi       : SOPK_Real_vi <0x05, S_CMPK_GE_I32>;
1348def S_CMPK_LT_I32_vi       : SOPK_Real_vi <0x06, S_CMPK_LT_I32>;
1349def S_CMPK_LE_I32_vi       : SOPK_Real_vi <0x07, S_CMPK_LE_I32>;
1350def S_CMPK_EQ_U32_vi       : SOPK_Real_vi <0x08, S_CMPK_EQ_U32>;
1351def S_CMPK_LG_U32_vi       : SOPK_Real_vi <0x09, S_CMPK_LG_U32>;
1352def S_CMPK_GT_U32_vi       : SOPK_Real_vi <0x0A, S_CMPK_GT_U32>;
1353def S_CMPK_GE_U32_vi       : SOPK_Real_vi <0x0B, S_CMPK_GE_U32>;
1354def S_CMPK_LT_U32_vi       : SOPK_Real_vi <0x0C, S_CMPK_LT_U32>;
1355def S_CMPK_LE_U32_vi       : SOPK_Real_vi <0x0D, S_CMPK_LE_U32>;
1356def S_ADDK_I32_vi          : SOPK_Real_vi <0x0E, S_ADDK_I32>;
1357def S_MULK_I32_vi          : SOPK_Real_vi <0x0F, S_MULK_I32>;
1358def S_CBRANCH_I_FORK_vi    : SOPK_Real_vi <0x10, S_CBRANCH_I_FORK>;
1359def S_GETREG_B32_vi        : SOPK_Real_vi <0x11, S_GETREG_B32>;
1360def S_SETREG_B32_vi        : SOPK_Real_vi <0x12, S_SETREG_B32>;
1361//def S_GETREG_REGRD_B32_vi  : SOPK_Real_vi <0x13, S_GETREG_REGRD_B32>; // see pseudo for comments
1362def S_SETREG_IMM32_B32_vi  : SOPK_Real64<0x14, S_SETREG_IMM32_B32>,
1363                             Select_vi<S_SETREG_IMM32_B32.Mnemonic>;
1364
1365def S_CALL_B64_vi          : SOPK_Real_vi <0x15, S_CALL_B64>;
1366
1367//===----------------------------------------------------------------------===//
1368// SOP1 - GFX9.
1369//===----------------------------------------------------------------------===//
1370
1371def S_ANDN1_SAVEEXEC_B64_vi   : SOP1_Real_vi<0x33, S_ANDN1_SAVEEXEC_B64>;
1372def S_ORN1_SAVEEXEC_B64_vi    : SOP1_Real_vi<0x34, S_ORN1_SAVEEXEC_B64>;
1373def S_ANDN1_WREXEC_B64_vi     : SOP1_Real_vi<0x35, S_ANDN1_WREXEC_B64>;
1374def S_ANDN2_WREXEC_B64_vi     : SOP1_Real_vi<0x36, S_ANDN2_WREXEC_B64>;
1375def S_BITREPLICATE_B64_B32_vi : SOP1_Real_vi<0x37, S_BITREPLICATE_B64_B32>;
1376
1377//===----------------------------------------------------------------------===//
1378// SOP2 - GFX9.
1379//===----------------------------------------------------------------------===//
1380
1381def S_LSHL1_ADD_U32_vi   : SOP2_Real_vi<0x2e, S_LSHL1_ADD_U32>;
1382def S_LSHL2_ADD_U32_vi   : SOP2_Real_vi<0x2f, S_LSHL2_ADD_U32>;
1383def S_LSHL3_ADD_U32_vi   : SOP2_Real_vi<0x30, S_LSHL3_ADD_U32>;
1384def S_LSHL4_ADD_U32_vi   : SOP2_Real_vi<0x31, S_LSHL4_ADD_U32>;
1385def S_MUL_HI_U32_vi      : SOP2_Real_vi<0x2c, S_MUL_HI_U32>;
1386def S_MUL_HI_I32_vi      : SOP2_Real_vi<0x2d, S_MUL_HI_I32>;
1387