[AArch64] The shift right/left and insert immediate builtins expect 3
[oota-llvm.git] / lib / Target / AArch64 / AArch64InstrNEON.td
1 //===-- AArch64InstrNEON.td - NEON support for AArch64 -----*- tablegen -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file describes the AArch64 NEON instruction set.
11 //
12 //===----------------------------------------------------------------------===//
13
14 //===----------------------------------------------------------------------===//
15 // NEON-specific DAG Nodes.
16 //===----------------------------------------------------------------------===//
17 def Neon_bsl       : SDNode<"AArch64ISD::NEON_BSL", SDTypeProfile<1, 3,
18                       [SDTCisVec<0>, SDTCisSameAs<0, 1>, SDTCisSameAs<0, 2>,
19                       SDTCisSameAs<0, 3>]>>;
20
21 // (outs Result), (ins Imm, OpCmode)
22 def SDT_Neon_movi : SDTypeProfile<1, 2, [SDTCisVec<0>, SDTCisVT<1, i32>]>;
23
24 def Neon_movi     : SDNode<"AArch64ISD::NEON_MOVIMM", SDT_Neon_movi>;
25
26 def Neon_mvni     : SDNode<"AArch64ISD::NEON_MVNIMM", SDT_Neon_movi>;
27
28 // (outs Result), (ins Imm)
29 def Neon_fmovi : SDNode<"AArch64ISD::NEON_FMOVIMM", SDTypeProfile<1, 1,
30                         [SDTCisVec<0>, SDTCisVT<1, i32>]>>;
31
32 // (outs Result), (ins LHS, RHS, CondCode)
33 def Neon_cmp : SDNode<"AArch64ISD::NEON_CMP", SDTypeProfile<1, 3,
34                  [SDTCisVec<0>,  SDTCisSameAs<1, 2>]>>;
35
36 // (outs Result), (ins LHS, 0/0.0 constant, CondCode)
37 def Neon_cmpz : SDNode<"AArch64ISD::NEON_CMPZ", SDTypeProfile<1, 3,
38                  [SDTCisVec<0>,  SDTCisVec<1>]>>;
39
40 // (outs Result), (ins LHS, RHS)
41 def Neon_tst : SDNode<"AArch64ISD::NEON_TST", SDTypeProfile<1, 2,
42                  [SDTCisVec<0>,  SDTCisSameAs<1, 2>]>>;
43
44 def SDTARMVSH : SDTypeProfile<1, 2, [SDTCisVec<0>, SDTCisSameAs<0, 1>,
45                                      SDTCisVT<2, i32>]>;
46 def Neon_sqrshlImm   : SDNode<"AArch64ISD::NEON_QSHLs", SDTARMVSH>;
47 def Neon_uqrshlImm   : SDNode<"AArch64ISD::NEON_QSHLu", SDTARMVSH>;
48
49 def Neon_vdup : SDNode<"AArch64ISD::NEON_VDUP", SDTypeProfile<1, 1,
50                        [SDTCisVec<0>]>>;
51 def Neon_vduplane : SDNode<"AArch64ISD::NEON_VDUPLANE", SDTypeProfile<1, 2,
52                            [SDTCisVec<0>, SDTCisVec<1>, SDTCisVT<2, i64>]>>;
53 def Neon_vextract : SDNode<"AArch64ISD::NEON_VEXTRACT", SDTypeProfile<1, 3,
54                            [SDTCisVec<0>,  SDTCisSameAs<0, 1>,
55                            SDTCisSameAs<0, 2>, SDTCisVT<3, i64>]>>;
56
57 //===----------------------------------------------------------------------===//
58 // Multiclasses
59 //===----------------------------------------------------------------------===//
60
61 multiclass NeonI_3VSame_B_sizes<bit u, bits<2> size,  bits<5> opcode,
62                                 string asmop, SDPatternOperator opnode8B,
63                                 SDPatternOperator opnode16B,
64                                 bit Commutable = 0> {
65   let isCommutable = Commutable in {
66     def _8B :  NeonI_3VSame<0b0, u, size, opcode,
67                (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
68                asmop # "\t$Rd.8b, $Rn.8b, $Rm.8b",
69                [(set (v8i8 VPR64:$Rd),
70                   (v8i8 (opnode8B (v8i8 VPR64:$Rn), (v8i8 VPR64:$Rm))))],
71                NoItinerary>;
72
73     def _16B : NeonI_3VSame<0b1, u, size, opcode,
74                (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
75                asmop # "\t$Rd.16b, $Rn.16b, $Rm.16b",
76                [(set (v16i8 VPR128:$Rd),
77                   (v16i8 (opnode16B (v16i8 VPR128:$Rn), (v16i8 VPR128:$Rm))))],
78                NoItinerary>;
79   }
80
81 }
82
83 multiclass NeonI_3VSame_HS_sizes<bit u, bits<5> opcode,
84                                   string asmop, SDPatternOperator opnode,
85                                   bit Commutable = 0> {
86   let isCommutable = Commutable in {
87     def _4H : NeonI_3VSame<0b0, u, 0b01, opcode,
88               (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
89               asmop # "\t$Rd.4h, $Rn.4h, $Rm.4h",
90               [(set (v4i16 VPR64:$Rd),
91                  (v4i16 (opnode (v4i16 VPR64:$Rn), (v4i16 VPR64:$Rm))))],
92               NoItinerary>;
93
94     def _8H : NeonI_3VSame<0b1, u, 0b01, opcode,
95               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
96               asmop # "\t$Rd.8h, $Rn.8h, $Rm.8h",
97               [(set (v8i16 VPR128:$Rd),
98                  (v8i16 (opnode (v8i16 VPR128:$Rn), (v8i16 VPR128:$Rm))))],
99               NoItinerary>;
100
101     def _2S : NeonI_3VSame<0b0, u, 0b10, opcode,
102               (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
103               asmop # "\t$Rd.2s, $Rn.2s, $Rm.2s",
104               [(set (v2i32 VPR64:$Rd),
105                  (v2i32 (opnode (v2i32 VPR64:$Rn), (v2i32 VPR64:$Rm))))],
106               NoItinerary>;
107
108     def _4S : NeonI_3VSame<0b1, u, 0b10, opcode,
109               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
110               asmop # "\t$Rd.4s, $Rn.4s, $Rm.4s",
111               [(set (v4i32 VPR128:$Rd),
112                  (v4i32 (opnode (v4i32 VPR128:$Rn), (v4i32 VPR128:$Rm))))],
113               NoItinerary>;
114   }
115 }
116 multiclass NeonI_3VSame_BHS_sizes<bit u, bits<5> opcode,
117                                   string asmop, SDPatternOperator opnode,
118                                   bit Commutable = 0>
119    : NeonI_3VSame_HS_sizes<u, opcode,  asmop, opnode, Commutable> {
120   let isCommutable = Commutable in {
121     def _8B :  NeonI_3VSame<0b0, u, 0b00, opcode,
122                (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
123                asmop # "\t$Rd.8b, $Rn.8b, $Rm.8b",
124                [(set (v8i8 VPR64:$Rd),
125                   (v8i8 (opnode (v8i8 VPR64:$Rn), (v8i8 VPR64:$Rm))))],
126                NoItinerary>;
127
128     def _16B : NeonI_3VSame<0b1, u, 0b00, opcode,
129                (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
130                asmop # "\t$Rd.16b, $Rn.16b, $Rm.16b",
131                [(set (v16i8 VPR128:$Rd),
132                   (v16i8 (opnode (v16i8 VPR128:$Rn), (v16i8 VPR128:$Rm))))],
133                NoItinerary>;
134   }
135 }
136
137 multiclass NeonI_3VSame_BHSD_sizes<bit u, bits<5> opcode,
138                                    string asmop, SDPatternOperator opnode,
139                                    bit Commutable = 0>
140    : NeonI_3VSame_BHS_sizes<u, opcode,  asmop, opnode, Commutable> {
141   let isCommutable = Commutable in {
142     def _2D : NeonI_3VSame<0b1, u, 0b11, opcode,
143               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
144               asmop # "\t$Rd.2d, $Rn.2d, $Rm.2d",
145               [(set (v2i64 VPR128:$Rd),
146                  (v2i64 (opnode (v2i64 VPR128:$Rn), (v2i64 VPR128:$Rm))))],
147               NoItinerary>;
148   }
149 }
150
151 // Multiclass NeonI_3VSame_SD_sizes: Operand types are floating point types,
152 // but Result types can be integer or floating point types.
153 multiclass NeonI_3VSame_SD_sizes<bit u, bit size, bits<5> opcode,
154                                  string asmop, SDPatternOperator opnode2S,
155                                  SDPatternOperator opnode4S,
156                                  SDPatternOperator opnode2D,
157                                  ValueType ResTy2S, ValueType ResTy4S,
158                                  ValueType ResTy2D, bit Commutable = 0> {
159   let isCommutable = Commutable in {
160     def _2S : NeonI_3VSame<0b0, u, {size, 0b0}, opcode,
161               (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
162               asmop # "\t$Rd.2s, $Rn.2s, $Rm.2s",
163               [(set (ResTy2S VPR64:$Rd),
164                  (ResTy2S (opnode2S (v2f32 VPR64:$Rn), (v2f32 VPR64:$Rm))))],
165               NoItinerary>;
166
167     def _4S : NeonI_3VSame<0b1, u, {size, 0b0}, opcode,
168               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
169               asmop # "\t$Rd.4s, $Rn.4s, $Rm.4s",
170               [(set (ResTy4S VPR128:$Rd),
171                  (ResTy4S (opnode4S (v4f32 VPR128:$Rn), (v4f32 VPR128:$Rm))))],
172               NoItinerary>;
173
174     def _2D : NeonI_3VSame<0b1, u, {size, 0b1}, opcode,
175               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
176               asmop # "\t$Rd.2d, $Rn.2d, $Rm.2d",
177               [(set (ResTy2D VPR128:$Rd),
178                  (ResTy2D (opnode2D (v2f64 VPR128:$Rn), (v2f64 VPR128:$Rm))))],
179                NoItinerary>;
180   }
181 }
182
183 //===----------------------------------------------------------------------===//
184 // Instruction Definitions
185 //===----------------------------------------------------------------------===//
186
187 // Vector Arithmetic Instructions
188
189 // Vector Add (Integer and Floating-Point)
190
191 defm ADDvvv :  NeonI_3VSame_BHSD_sizes<0b0, 0b10000, "add", add, 1>;
192 defm FADDvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11010, "fadd", fadd, fadd, fadd,
193                                      v2f32, v4f32, v2f64, 1>;
194
195 // Vector Sub (Integer and Floating-Point)
196
197 defm SUBvvv :  NeonI_3VSame_BHSD_sizes<0b1, 0b10000, "sub", sub, 0>;
198 defm FSUBvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11010, "fsub", fsub, fsub, fsub,
199                                      v2f32, v4f32, v2f64, 0>;
200
201 // Vector Multiply (Integer and Floating-Point)
202
203 defm MULvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b10011, "mul", mul, 1>;
204 defm FMULvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11011, "fmul", fmul, fmul, fmul,
205                                      v2f32, v4f32, v2f64, 1>;
206
207 // Vector Multiply (Polynomial)
208
209 defm PMULvvv : NeonI_3VSame_B_sizes<0b1, 0b00, 0b10011, "pmul",
210                                     int_arm_neon_vmulp, int_arm_neon_vmulp, 1>;
211
212 // Vector Multiply-accumulate and Multiply-subtract (Integer)
213
214 // class NeonI_3VSame_Constraint_impl: NeonI_3VSame with no data type and
215 // two operands constraints.
216 class NeonI_3VSame_Constraint_impl<string asmop, string asmlane,
217   RegisterOperand VPRC, ValueType OpTy, bit q, bit u, bits<2> size, 
218   bits<5> opcode, SDPatternOperator opnode>
219   : NeonI_3VSame<q, u, size, opcode,
220     (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, VPRC:$Rm),
221     asmop # "\t$Rd" # asmlane # ", $Rn" # asmlane # ", $Rm" # asmlane,
222     [(set (OpTy VPRC:$Rd),
223        (OpTy (opnode (OpTy VPRC:$src), (OpTy VPRC:$Rn), (OpTy VPRC:$Rm))))],
224     NoItinerary> {
225   let Constraints = "$src = $Rd";
226 }
227
228 def Neon_mla : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
229                        (add node:$Ra, (mul node:$Rn, node:$Rm))>;
230
231 def Neon_mls : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
232                        (sub node:$Ra, (mul node:$Rn, node:$Rm))>;
233
234
235 def MLAvvv_8B:  NeonI_3VSame_Constraint_impl<"mla", ".8b",  VPR64,  v8i8,
236                                              0b0, 0b0, 0b00, 0b10010, Neon_mla>;
237 def MLAvvv_16B: NeonI_3VSame_Constraint_impl<"mla", ".16b", VPR128, v16i8,
238                                              0b1, 0b0, 0b00, 0b10010, Neon_mla>;
239 def MLAvvv_4H:  NeonI_3VSame_Constraint_impl<"mla", ".4h",  VPR64,  v4i16,
240                                              0b0, 0b0, 0b01, 0b10010, Neon_mla>;
241 def MLAvvv_8H:  NeonI_3VSame_Constraint_impl<"mla", ".8h",  VPR128, v8i16,
242                                              0b1, 0b0, 0b01, 0b10010, Neon_mla>;
243 def MLAvvv_2S:  NeonI_3VSame_Constraint_impl<"mla", ".2s",  VPR64,  v2i32,
244                                              0b0, 0b0, 0b10, 0b10010, Neon_mla>;
245 def MLAvvv_4S:  NeonI_3VSame_Constraint_impl<"mla", ".4s",  VPR128, v4i32,
246                                              0b1, 0b0, 0b10, 0b10010, Neon_mla>;
247
248 def MLSvvv_8B:  NeonI_3VSame_Constraint_impl<"mls", ".8b",  VPR64,  v8i8,
249                                              0b0, 0b1, 0b00, 0b10010, Neon_mls>;
250 def MLSvvv_16B: NeonI_3VSame_Constraint_impl<"mls", ".16b", VPR128, v16i8,
251                                              0b1, 0b1, 0b00, 0b10010, Neon_mls>;
252 def MLSvvv_4H:  NeonI_3VSame_Constraint_impl<"mls", ".4h",  VPR64,  v4i16,
253                                              0b0, 0b1, 0b01, 0b10010, Neon_mls>;
254 def MLSvvv_8H:  NeonI_3VSame_Constraint_impl<"mls", ".8h",  VPR128, v8i16,
255                                              0b1, 0b1, 0b01, 0b10010, Neon_mls>;
256 def MLSvvv_2S:  NeonI_3VSame_Constraint_impl<"mls", ".2s",  VPR64,  v2i32,
257                                              0b0, 0b1, 0b10, 0b10010, Neon_mls>;
258 def MLSvvv_4S:  NeonI_3VSame_Constraint_impl<"mls", ".4s",  VPR128, v4i32,
259                                              0b1, 0b1, 0b10, 0b10010, Neon_mls>;
260
261 // Vector Multiply-accumulate and Multiply-subtract (Floating Point)
262
263 def Neon_fmla : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
264                         (fadd node:$Ra, (fmul node:$Rn, node:$Rm))>;
265
266 def Neon_fmls : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
267                         (fsub node:$Ra, (fmul node:$Rn, node:$Rm))>;
268
269 let Predicates = [HasNEON, UseFusedMAC] in {
270 def FMLAvvv_2S: NeonI_3VSame_Constraint_impl<"fmla", ".2s",  VPR64,  v2f32,
271                                              0b0, 0b0, 0b00, 0b11001, Neon_fmla>;
272 def FMLAvvv_4S: NeonI_3VSame_Constraint_impl<"fmla", ".4s",  VPR128, v4f32,
273                                              0b1, 0b0, 0b00, 0b11001, Neon_fmla>;
274 def FMLAvvv_2D: NeonI_3VSame_Constraint_impl<"fmla", ".2d",  VPR128, v2f64,
275                                              0b1, 0b0, 0b01, 0b11001, Neon_fmla>;
276
277 def FMLSvvv_2S: NeonI_3VSame_Constraint_impl<"fmls", ".2s",  VPR64,  v2f32,
278                                               0b0, 0b0, 0b10, 0b11001, Neon_fmls>;
279 def FMLSvvv_4S: NeonI_3VSame_Constraint_impl<"fmls", ".4s",  VPR128, v4f32,
280                                              0b1, 0b0, 0b10, 0b11001, Neon_fmls>;
281 def FMLSvvv_2D: NeonI_3VSame_Constraint_impl<"fmls", ".2d",  VPR128, v2f64,
282                                              0b1, 0b0, 0b11, 0b11001, Neon_fmls>;
283 }
284
285 // We're also allowed to match the fma instruction regardless of compile
286 // options.
287 def : Pat<(v2f32 (fma VPR64:$Rn, VPR64:$Rm, VPR64:$Ra)),
288           (FMLAvvv_2S VPR64:$Ra, VPR64:$Rn, VPR64:$Rm)>;
289 def : Pat<(v4f32 (fma VPR128:$Rn, VPR128:$Rm, VPR128:$Ra)),
290           (FMLAvvv_4S VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
291 def : Pat<(v2f64 (fma VPR128:$Rn, VPR128:$Rm, VPR128:$Ra)),
292           (FMLAvvv_2D VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
293
294 def : Pat<(v2f32 (fma (fneg VPR64:$Rn), VPR64:$Rm, VPR64:$Ra)),
295           (FMLSvvv_2S VPR64:$Ra, VPR64:$Rn, VPR64:$Rm)>;
296 def : Pat<(v4f32 (fma (fneg VPR128:$Rn), VPR128:$Rm, VPR128:$Ra)),
297           (FMLSvvv_4S VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
298 def : Pat<(v2f64 (fma (fneg VPR128:$Rn), VPR128:$Rm, VPR128:$Ra)),
299           (FMLSvvv_2D VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
300
301 // Vector Divide (Floating-Point)
302
303 defm FDIVvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11111, "fdiv", fdiv, fdiv, fdiv,
304                                      v2f32, v4f32, v2f64, 0>;
305
306 // Vector Bitwise Operations
307
308 // Vector Bitwise AND
309
310 defm ANDvvv : NeonI_3VSame_B_sizes<0b0, 0b00, 0b00011, "and", and, and, 1>;
311
312 // Vector Bitwise Exclusive OR
313
314 defm EORvvv : NeonI_3VSame_B_sizes<0b1, 0b00, 0b00011, "eor", xor, xor, 1>;
315
316 // Vector Bitwise OR
317
318 defm ORRvvv : NeonI_3VSame_B_sizes<0b0, 0b10, 0b00011, "orr", or, or, 1>;
319
320 // ORR disassembled as MOV if Vn==Vm
321
322 // Vector Move - register
323 // Alias for ORR if Vn=Vm.
324 // FIXME: This is actually the preferred syntax but TableGen can't deal with
325 // custom printing of aliases.
326 def : NeonInstAlias<"mov $Rd.8b, $Rn.8b",
327                     (ORRvvv_8B VPR64:$Rd, VPR64:$Rn, VPR64:$Rn), 0>;
328 def : NeonInstAlias<"mov $Rd.16b, $Rn.16b",
329                     (ORRvvv_16B VPR128:$Rd, VPR128:$Rn, VPR128:$Rn), 0>;
330
331 def Neon_immAllOnes: PatLeaf<(Neon_movi (i32 timm), (i32 imm)), [{
332   ConstantSDNode *ImmConstVal = cast<ConstantSDNode>(N->getOperand(0));
333   ConstantSDNode *OpCmodeConstVal = cast<ConstantSDNode>(N->getOperand(1));
334   unsigned EltBits;
335   uint64_t EltVal = A64Imms::decodeNeonModImm(ImmConstVal->getZExtValue(),
336     OpCmodeConstVal->getZExtValue(), EltBits);
337   return (EltBits == 8 && EltVal == 0xff);
338 }]>;
339
340 def Neon_immAllZeros: PatLeaf<(Neon_movi (i32 timm), (i32 imm)), [{
341   ConstantSDNode *ImmConstVal = cast<ConstantSDNode>(N->getOperand(0));
342   ConstantSDNode *OpCmodeConstVal = cast<ConstantSDNode>(N->getOperand(1));
343   unsigned EltBits;
344   uint64_t EltVal = A64Imms::decodeNeonModImm(ImmConstVal->getZExtValue(),
345     OpCmodeConstVal->getZExtValue(), EltBits);
346   return (EltBits == 8 && EltVal == 0x0);
347 }]>;
348
349
350 def Neon_not8B  : PatFrag<(ops node:$in),
351                           (xor node:$in, (bitconvert (v8i8 Neon_immAllOnes)))>;
352 def Neon_not16B : PatFrag<(ops node:$in),
353                           (xor node:$in, (bitconvert (v16i8 Neon_immAllOnes)))>;
354
355 def Neon_orn8B : PatFrag<(ops node:$Rn, node:$Rm),
356                          (or node:$Rn, (Neon_not8B node:$Rm))>;
357
358 def Neon_orn16B : PatFrag<(ops node:$Rn, node:$Rm),
359                           (or node:$Rn, (Neon_not16B node:$Rm))>;
360
361 def Neon_bic8B : PatFrag<(ops node:$Rn, node:$Rm),
362                          (and node:$Rn, (Neon_not8B node:$Rm))>;
363
364 def Neon_bic16B : PatFrag<(ops node:$Rn, node:$Rm),
365                           (and node:$Rn, (Neon_not16B node:$Rm))>;
366
367
368 // Vector Bitwise OR NOT - register
369
370 defm ORNvvv : NeonI_3VSame_B_sizes<0b0, 0b11, 0b00011, "orn",
371                                    Neon_orn8B, Neon_orn16B, 0>;
372
373 // Vector Bitwise Bit Clear (AND NOT) - register
374
375 defm BICvvv : NeonI_3VSame_B_sizes<0b0, 0b01, 0b00011, "bic",
376                                    Neon_bic8B, Neon_bic16B, 0>;
377
378 multiclass Neon_bitwise2V_patterns<SDPatternOperator opnode8B,
379                                    SDPatternOperator opnode16B,
380                                    Instruction INST8B,
381                                    Instruction INST16B> {
382   def : Pat<(v2i32 (opnode8B VPR64:$Rn, VPR64:$Rm)),
383             (INST8B VPR64:$Rn, VPR64:$Rm)>;
384   def : Pat<(v4i16 (opnode8B VPR64:$Rn, VPR64:$Rm)),
385             (INST8B VPR64:$Rn, VPR64:$Rm)>;
386   def : Pat<(v1i64 (opnode8B VPR64:$Rn, VPR64:$Rm)),
387             (INST8B VPR64:$Rn, VPR64:$Rm)>;
388   def : Pat<(v4i32 (opnode16B VPR128:$Rn, VPR128:$Rm)),
389             (INST16B VPR128:$Rn, VPR128:$Rm)>;
390   def : Pat<(v8i16 (opnode16B VPR128:$Rn, VPR128:$Rm)),
391             (INST16B VPR128:$Rn, VPR128:$Rm)>;
392   def : Pat<(v2i64 (opnode16B VPR128:$Rn, VPR128:$Rm)),
393             (INST16B VPR128:$Rn, VPR128:$Rm)>;
394 }
395
396 // Additional patterns for bitwise instructions AND, EOR, ORR, BIC, ORN
397 defm : Neon_bitwise2V_patterns<and, and, ANDvvv_8B, ANDvvv_16B>;
398 defm : Neon_bitwise2V_patterns<or,  or,  ORRvvv_8B, ORRvvv_16B>;
399 defm : Neon_bitwise2V_patterns<xor, xor, EORvvv_8B, EORvvv_16B>;
400 defm : Neon_bitwise2V_patterns<Neon_bic8B, Neon_bic16B, BICvvv_8B, BICvvv_16B>;
401 defm : Neon_bitwise2V_patterns<Neon_orn8B, Neon_orn16B, ORNvvv_8B, ORNvvv_16B>;
402
403 //   Vector Bitwise Select
404 def BSLvvv_8B  : NeonI_3VSame_Constraint_impl<"bsl", ".8b",  VPR64, v8i8,
405                                               0b0, 0b1, 0b01, 0b00011, Neon_bsl>;
406
407 def BSLvvv_16B : NeonI_3VSame_Constraint_impl<"bsl", ".16b", VPR128, v16i8,
408                                               0b1, 0b1, 0b01, 0b00011, Neon_bsl>;
409
410 multiclass Neon_bitwise3V_patterns<SDPatternOperator opnode,
411                                    Instruction INST8B,
412                                    Instruction INST16B> {
413   // Disassociate type from instruction definition
414   def : Pat<(v2i32 (opnode VPR64:$src,VPR64:$Rn, VPR64:$Rm)),
415             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
416   def : Pat<(v4i16 (opnode VPR64:$src, VPR64:$Rn, VPR64:$Rm)),
417             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
418   def : Pat<(v1i64 (opnode VPR64:$src, VPR64:$Rn, VPR64:$Rm)),
419             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
420   def : Pat<(v4i32 (opnode VPR128:$src, VPR128:$Rn, VPR128:$Rm)),
421             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
422   def : Pat<(v8i16 (opnode VPR128:$src, VPR128:$Rn, VPR128:$Rm)),
423             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
424   def : Pat<(v2i64 (opnode VPR128:$src, VPR128:$Rn, VPR128:$Rm)),
425             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
426
427   // Allow to match BSL instruction pattern with non-constant operand
428   def : Pat<(v8i8 (or (and VPR64:$Rn, VPR64:$Rd),
429                     (and VPR64:$Rm, (Neon_not8B VPR64:$Rd)))),
430           (INST8B VPR64:$Rd, VPR64:$Rn, VPR64:$Rm)>;
431   def : Pat<(v4i16 (or (and VPR64:$Rn, VPR64:$Rd),
432                      (and VPR64:$Rm, (Neon_not8B VPR64:$Rd)))),
433           (INST8B VPR64:$Rd, VPR64:$Rn, VPR64:$Rm)>;
434   def : Pat<(v2i32 (or (and VPR64:$Rn, VPR64:$Rd),
435                      (and VPR64:$Rm, (Neon_not8B VPR64:$Rd)))),
436           (INST8B VPR64:$Rd, VPR64:$Rn, VPR64:$Rm)>;
437   def : Pat<(v1i64 (or (and VPR64:$Rn, VPR64:$Rd),
438                      (and VPR64:$Rm, (Neon_not8B VPR64:$Rd)))),
439           (INST8B VPR64:$Rd, VPR64:$Rn, VPR64:$Rm)>;
440   def : Pat<(v16i8 (or (and VPR128:$Rn, VPR128:$Rd),
441                      (and VPR128:$Rm, (Neon_not16B VPR128:$Rd)))),
442           (INST16B VPR128:$Rd, VPR128:$Rn, VPR128:$Rm)>;
443   def : Pat<(v8i16 (or (and VPR128:$Rn, VPR128:$Rd),
444                      (and VPR128:$Rm, (Neon_not16B VPR128:$Rd)))),
445           (INST16B VPR128:$Rd, VPR128:$Rn, VPR128:$Rm)>;
446   def : Pat<(v4i32 (or (and VPR128:$Rn, VPR128:$Rd),
447                      (and VPR128:$Rm, (Neon_not16B VPR128:$Rd)))),
448           (INST16B VPR128:$Rd, VPR128:$Rn, VPR128:$Rm)>;
449   def : Pat<(v2i64 (or (and VPR128:$Rn, VPR128:$Rd),
450                      (and VPR128:$Rm, (Neon_not16B VPR128:$Rd)))),
451           (INST16B VPR128:$Rd, VPR128:$Rn, VPR128:$Rm)>;
452
453   // Allow to match llvm.arm.* intrinsics.
454   def : Pat<(v8i8 (int_arm_neon_vbsl (v8i8 VPR64:$src),
455                     (v8i8 VPR64:$Rn), (v8i8 VPR64:$Rm))),
456             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
457   def : Pat<(v4i16 (int_arm_neon_vbsl (v4i16 VPR64:$src),
458                     (v4i16 VPR64:$Rn), (v4i16 VPR64:$Rm))),
459             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
460   def : Pat<(v2i32 (int_arm_neon_vbsl (v2i32 VPR64:$src),
461                     (v2i32 VPR64:$Rn), (v2i32 VPR64:$Rm))),
462             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
463   def : Pat<(v1i64 (int_arm_neon_vbsl (v1i64 VPR64:$src),
464                     (v1i64 VPR64:$Rn), (v1i64 VPR64:$Rm))),
465             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
466   def : Pat<(v2f32 (int_arm_neon_vbsl (v2f32 VPR64:$src),
467                     (v2f32 VPR64:$Rn), (v2f32 VPR64:$Rm))),
468             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
469   def : Pat<(v16i8 (int_arm_neon_vbsl (v16i8 VPR128:$src),
470                     (v16i8 VPR128:$Rn), (v16i8 VPR128:$Rm))),
471             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
472   def : Pat<(v8i16 (int_arm_neon_vbsl (v8i16 VPR128:$src),
473                     (v8i16 VPR128:$Rn), (v8i16 VPR128:$Rm))),
474             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
475   def : Pat<(v4i32 (int_arm_neon_vbsl (v4i32 VPR128:$src),
476                     (v4i32 VPR128:$Rn), (v4i32 VPR128:$Rm))),
477             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
478   def : Pat<(v2i64 (int_arm_neon_vbsl (v2i64 VPR128:$src),
479                     (v2i64 VPR128:$Rn), (v2i64 VPR128:$Rm))),
480             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
481   def : Pat<(v4f32 (int_arm_neon_vbsl (v4f32 VPR128:$src),
482                     (v4f32 VPR128:$Rn), (v4f32 VPR128:$Rm))),
483             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
484   def : Pat<(v2f64 (int_arm_neon_vbsl (v2f64 VPR128:$src),
485                     (v2f64 VPR128:$Rn), (v2f64 VPR128:$Rm))),
486             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
487 }
488
489 // Additional patterns for bitwise instruction BSL
490 defm: Neon_bitwise3V_patterns<Neon_bsl, BSLvvv_8B, BSLvvv_16B>;
491
492 def Neon_NoBSLop : PatFrag<(ops node:$src, node:$Rn, node:$Rm),
493                            (Neon_bsl node:$src, node:$Rn, node:$Rm),
494                            [{ (void)N; return false; }]>;
495
496 // Vector Bitwise Insert if True
497
498 def BITvvv_8B  : NeonI_3VSame_Constraint_impl<"bit", ".8b", VPR64,   v8i8,
499                    0b0, 0b1, 0b10, 0b00011, Neon_NoBSLop>;
500 def BITvvv_16B : NeonI_3VSame_Constraint_impl<"bit", ".16b", VPR128, v16i8,
501                    0b1, 0b1, 0b10, 0b00011, Neon_NoBSLop>;
502
503 // Vector Bitwise Insert if False
504
505 def BIFvvv_8B  : NeonI_3VSame_Constraint_impl<"bif", ".8b", VPR64,  v8i8,
506                                 0b0, 0b1, 0b11, 0b00011, Neon_NoBSLop>;
507 def BIFvvv_16B : NeonI_3VSame_Constraint_impl<"bif", ".16b", VPR128, v16i8,
508                                 0b1, 0b1, 0b11, 0b00011, Neon_NoBSLop>;
509
510 // Vector Absolute Difference and Accumulate (Signed, Unsigned)
511
512 def Neon_uaba : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
513                        (add node:$Ra, (int_arm_neon_vabdu node:$Rn, node:$Rm))>;
514 def Neon_saba : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
515                        (add node:$Ra, (int_arm_neon_vabds node:$Rn, node:$Rm))>;
516
517 // Vector Absolute Difference and Accumulate (Unsigned)
518 def UABAvvv_8B :  NeonI_3VSame_Constraint_impl<"uaba", ".8b",  VPR64,  v8i8,
519                     0b0, 0b1, 0b00, 0b01111, Neon_uaba>;
520 def UABAvvv_16B : NeonI_3VSame_Constraint_impl<"uaba", ".16b", VPR128, v16i8,
521                     0b1, 0b1, 0b00, 0b01111, Neon_uaba>;
522 def UABAvvv_4H :  NeonI_3VSame_Constraint_impl<"uaba", ".4h",  VPR64,  v4i16,
523                     0b0, 0b1, 0b01, 0b01111, Neon_uaba>;
524 def UABAvvv_8H :  NeonI_3VSame_Constraint_impl<"uaba", ".8h",  VPR128, v8i16,
525                     0b1, 0b1, 0b01, 0b01111, Neon_uaba>;
526 def UABAvvv_2S :  NeonI_3VSame_Constraint_impl<"uaba", ".2s",  VPR64,  v2i32,
527                     0b0, 0b1, 0b10, 0b01111, Neon_uaba>;
528 def UABAvvv_4S :  NeonI_3VSame_Constraint_impl<"uaba", ".4s",  VPR128, v4i32,
529                     0b1, 0b1, 0b10, 0b01111, Neon_uaba>;
530
531 // Vector Absolute Difference and Accumulate (Signed)
532 def SABAvvv_8B :  NeonI_3VSame_Constraint_impl<"saba", ".8b",  VPR64,  v8i8,
533                     0b0, 0b0, 0b00, 0b01111, Neon_saba>;
534 def SABAvvv_16B : NeonI_3VSame_Constraint_impl<"saba", ".16b", VPR128, v16i8,
535                     0b1, 0b0, 0b00, 0b01111, Neon_saba>;
536 def SABAvvv_4H :  NeonI_3VSame_Constraint_impl<"saba", ".4h",  VPR64,  v4i16,
537                     0b0, 0b0, 0b01, 0b01111, Neon_saba>;
538 def SABAvvv_8H :  NeonI_3VSame_Constraint_impl<"saba", ".8h",  VPR128, v8i16,
539                     0b1, 0b0, 0b01, 0b01111, Neon_saba>;
540 def SABAvvv_2S :  NeonI_3VSame_Constraint_impl<"saba", ".2s",  VPR64,  v2i32,
541                     0b0, 0b0, 0b10, 0b01111, Neon_saba>;
542 def SABAvvv_4S :  NeonI_3VSame_Constraint_impl<"saba", ".4s",  VPR128, v4i32,
543                     0b1, 0b0, 0b10, 0b01111, Neon_saba>;
544
545
546 // Vector Absolute Difference (Signed, Unsigned)
547 defm UABDvvv : NeonI_3VSame_BHS_sizes<0b1, 0b01110, "uabd", int_arm_neon_vabdu, 0>;
548 defm SABDvvv : NeonI_3VSame_BHS_sizes<0b0, 0b01110, "sabd", int_arm_neon_vabds, 0>;
549
550 // Vector Absolute Difference (Floating Point)
551 defm FABDvvv: NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11010, "fabd",
552                                     int_arm_neon_vabds, int_arm_neon_vabds,
553                                     int_arm_neon_vabds, v2f32, v4f32, v2f64, 0>;
554
555 // Vector Reciprocal Step (Floating Point)
556 defm FRECPSvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11111, "frecps",
557                                        int_arm_neon_vrecps, int_arm_neon_vrecps,
558                                        int_arm_neon_vrecps,
559                                        v2f32, v4f32, v2f64, 0>;
560
561 // Vector Reciprocal Square Root Step (Floating Point)
562 defm FRSQRTSvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11111, "frsqrts",
563                                         int_arm_neon_vrsqrts,
564                                         int_arm_neon_vrsqrts,
565                                         int_arm_neon_vrsqrts,
566                                         v2f32, v4f32, v2f64, 0>;
567
568 // Vector Comparisons
569
570 def Neon_cmeq : PatFrag<(ops node:$lhs, node:$rhs),
571                         (Neon_cmp node:$lhs, node:$rhs, SETEQ)>;
572 def Neon_cmphs : PatFrag<(ops node:$lhs, node:$rhs),
573                          (Neon_cmp node:$lhs, node:$rhs, SETUGE)>;
574 def Neon_cmge : PatFrag<(ops node:$lhs, node:$rhs),
575                         (Neon_cmp node:$lhs, node:$rhs, SETGE)>;
576 def Neon_cmhi : PatFrag<(ops node:$lhs, node:$rhs),
577                         (Neon_cmp node:$lhs, node:$rhs, SETUGT)>;
578 def Neon_cmgt : PatFrag<(ops node:$lhs, node:$rhs),
579                         (Neon_cmp node:$lhs, node:$rhs, SETGT)>;
580
581 // NeonI_compare_aliases class: swaps register operands to implement
582 // comparison aliases, e.g., CMLE is alias for CMGE with operands reversed.
583 class NeonI_compare_aliases<string asmop, string asmlane,
584                             Instruction inst, RegisterOperand VPRC>
585   : NeonInstAlias<asmop # "\t$Rd" # asmlane #", $Rn" # asmlane #
586                     ", $Rm" # asmlane,
587                   (inst VPRC:$Rd, VPRC:$Rm, VPRC:$Rn), 0b0>;
588
589 // Vector Comparisons (Integer)
590
591 // Vector Compare Mask Equal (Integer)
592 let isCommutable =1 in {
593 defm CMEQvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b10001, "cmeq", Neon_cmeq, 0>;
594 }
595
596 // Vector Compare Mask Higher or Same (Unsigned Integer)
597 defm CMHSvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b00111, "cmhs", Neon_cmphs, 0>;
598
599 // Vector Compare Mask Greater Than or Equal (Integer)
600 defm CMGEvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b00111, "cmge", Neon_cmge, 0>;
601
602 // Vector Compare Mask Higher (Unsigned Integer)
603 defm CMHIvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b00110, "cmhi", Neon_cmhi, 0>;
604
605 // Vector Compare Mask Greater Than (Integer)
606 defm CMGTvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b00110, "cmgt", Neon_cmgt, 0>;
607
608 // Vector Compare Mask Bitwise Test (Integer)
609 defm CMTSTvvv:  NeonI_3VSame_BHSD_sizes<0b0, 0b10001, "cmtst", Neon_tst, 0>;
610
611 // Vector Compare Mask Less or Same (Unsigned Integer)
612 // CMLS is alias for CMHS with operands reversed.
613 def CMLSvvv_8B  : NeonI_compare_aliases<"cmls", ".8b",  CMHSvvv_8B,  VPR64>;
614 def CMLSvvv_16B : NeonI_compare_aliases<"cmls", ".16b", CMHSvvv_16B, VPR128>;
615 def CMLSvvv_4H  : NeonI_compare_aliases<"cmls", ".4h",  CMHSvvv_4H,  VPR64>;
616 def CMLSvvv_8H  : NeonI_compare_aliases<"cmls", ".8h",  CMHSvvv_8H,  VPR128>;
617 def CMLSvvv_2S  : NeonI_compare_aliases<"cmls", ".2s",  CMHSvvv_2S,  VPR64>;
618 def CMLSvvv_4S  : NeonI_compare_aliases<"cmls", ".4s",  CMHSvvv_4S,  VPR128>;
619 def CMLSvvv_2D  : NeonI_compare_aliases<"cmls", ".2d",  CMHSvvv_2D,  VPR128>;
620
621 // Vector Compare Mask Less Than or Equal (Integer)
622 // CMLE is alias for CMGE with operands reversed.
623 def CMLEvvv_8B  : NeonI_compare_aliases<"cmle", ".8b",  CMGEvvv_8B,  VPR64>;
624 def CMLEvvv_16B : NeonI_compare_aliases<"cmle", ".16b", CMGEvvv_16B, VPR128>;
625 def CMLEvvv_4H  : NeonI_compare_aliases<"cmle", ".4h",  CMGEvvv_4H,  VPR64>;
626 def CMLEvvv_8H  : NeonI_compare_aliases<"cmle", ".8h",  CMGEvvv_8H,  VPR128>;
627 def CMLEvvv_2S  : NeonI_compare_aliases<"cmle", ".2s",  CMGEvvv_2S,  VPR64>;
628 def CMLEvvv_4S  : NeonI_compare_aliases<"cmle", ".4s",  CMGEvvv_4S,  VPR128>;
629 def CMLEvvv_2D  : NeonI_compare_aliases<"cmle", ".2d",  CMGEvvv_2D,  VPR128>;
630
631 // Vector Compare Mask Lower (Unsigned Integer)
632 // CMLO is alias for CMHI with operands reversed.
633 def CMLOvvv_8B  : NeonI_compare_aliases<"cmlo", ".8b",  CMHIvvv_8B,  VPR64>;
634 def CMLOvvv_16B : NeonI_compare_aliases<"cmlo", ".16b", CMHIvvv_16B, VPR128>;
635 def CMLOvvv_4H  : NeonI_compare_aliases<"cmlo", ".4h",  CMHIvvv_4H,  VPR64>;
636 def CMLOvvv_8H  : NeonI_compare_aliases<"cmlo", ".8h",  CMHIvvv_8H,  VPR128>;
637 def CMLOvvv_2S  : NeonI_compare_aliases<"cmlo", ".2s",  CMHIvvv_2S,  VPR64>;
638 def CMLOvvv_4S  : NeonI_compare_aliases<"cmlo", ".4s",  CMHIvvv_4S,  VPR128>;
639 def CMLOvvv_2D  : NeonI_compare_aliases<"cmlo", ".2d",  CMHIvvv_2D,  VPR128>;
640
641 // Vector Compare Mask Less Than (Integer)
642 // CMLT is alias for CMGT with operands reversed.
643 def CMLTvvv_8B  : NeonI_compare_aliases<"cmlt", ".8b",  CMGTvvv_8B,  VPR64>;
644 def CMLTvvv_16B : NeonI_compare_aliases<"cmlt", ".16b", CMGTvvv_16B, VPR128>;
645 def CMLTvvv_4H  : NeonI_compare_aliases<"cmlt", ".4h",  CMGTvvv_4H,  VPR64>;
646 def CMLTvvv_8H  : NeonI_compare_aliases<"cmlt", ".8h",  CMGTvvv_8H,  VPR128>;
647 def CMLTvvv_2S  : NeonI_compare_aliases<"cmlt", ".2s",  CMGTvvv_2S,  VPR64>;
648 def CMLTvvv_4S  : NeonI_compare_aliases<"cmlt", ".4s",  CMGTvvv_4S,  VPR128>;
649 def CMLTvvv_2D  : NeonI_compare_aliases<"cmlt", ".2d",  CMGTvvv_2D,  VPR128>;
650
651
652 def neon_uimm0_asmoperand : AsmOperandClass
653 {
654   let Name = "UImm0";
655   let PredicateMethod = "isUImm<0>";
656   let RenderMethod = "addImmOperands";
657 }
658
659 def neon_uimm0 : Operand<i32>, ImmLeaf<i32, [{return Imm == 0;}]> {
660   let ParserMatchClass = neon_uimm0_asmoperand;
661   let PrintMethod = "printNeonUImm0Operand";
662
663 }
664
665 multiclass NeonI_cmpz_sizes<bit u, bits<5> opcode, string asmop, CondCode CC>
666 {
667   def _8B :  NeonI_2VMisc<0b0, u, 0b00, opcode,
668              (outs VPR64:$Rd), (ins VPR64:$Rn, neon_uimm0:$Imm),
669              asmop # "\t$Rd.8b, $Rn.8b, $Imm",
670              [(set (v8i8 VPR64:$Rd),
671                 (v8i8 (Neon_cmpz (v8i8 VPR64:$Rn), (i32 imm:$Imm), CC)))],
672              NoItinerary>;
673
674   def _16B : NeonI_2VMisc<0b1, u, 0b00, opcode,
675              (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
676              asmop # "\t$Rd.16b, $Rn.16b, $Imm",
677              [(set (v16i8 VPR128:$Rd),
678                 (v16i8 (Neon_cmpz (v16i8 VPR128:$Rn), (i32 imm:$Imm), CC)))],
679              NoItinerary>;
680
681   def _4H : NeonI_2VMisc<0b0, u, 0b01, opcode,
682             (outs VPR64:$Rd), (ins VPR64:$Rn, neon_uimm0:$Imm),
683             asmop # "\t$Rd.4h, $Rn.4h, $Imm",
684             [(set (v4i16 VPR64:$Rd),
685                (v4i16 (Neon_cmpz (v4i16 VPR64:$Rn), (i32 imm:$Imm), CC)))],
686             NoItinerary>;
687
688   def _8H : NeonI_2VMisc<0b1, u, 0b01, opcode,
689             (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
690             asmop # "\t$Rd.8h, $Rn.8h, $Imm",
691             [(set (v8i16 VPR128:$Rd),
692                (v8i16 (Neon_cmpz (v8i16 VPR128:$Rn), (i32 imm:$Imm), CC)))],
693             NoItinerary>;
694
695   def _2S : NeonI_2VMisc<0b0, u, 0b10, opcode,
696             (outs VPR64:$Rd), (ins VPR64:$Rn, neon_uimm0:$Imm),
697             asmop # "\t$Rd.2s, $Rn.2s, $Imm",
698             [(set (v2i32 VPR64:$Rd),
699                (v2i32 (Neon_cmpz (v2i32 VPR64:$Rn), (i32 imm:$Imm), CC)))],
700             NoItinerary>;
701
702   def _4S : NeonI_2VMisc<0b1, u, 0b10, opcode,
703             (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
704             asmop # "\t$Rd.4s, $Rn.4s, $Imm",
705             [(set (v4i32 VPR128:$Rd),
706                (v4i32 (Neon_cmpz (v4i32 VPR128:$Rn), (i32 imm:$Imm), CC)))],
707             NoItinerary>;
708
709   def _2D : NeonI_2VMisc<0b1, u, 0b11, opcode,
710             (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
711             asmop # "\t$Rd.2d, $Rn.2d, $Imm",
712             [(set (v2i64 VPR128:$Rd),
713                (v2i64 (Neon_cmpz (v2i64 VPR128:$Rn), (i32 imm:$Imm), CC)))],
714             NoItinerary>;
715 }
716
717 // Vector Compare Mask Equal to Zero (Integer)
718 defm CMEQvvi : NeonI_cmpz_sizes<0b0, 0b01001, "cmeq", SETEQ>;
719
720 // Vector Compare Mask Greater Than or Equal to Zero (Signed Integer)
721 defm CMGEvvi : NeonI_cmpz_sizes<0b1, 0b01000, "cmge", SETGE>;
722
723 // Vector Compare Mask Greater Than Zero (Signed Integer)
724 defm CMGTvvi : NeonI_cmpz_sizes<0b0, 0b01000, "cmgt", SETGT>;
725
726 // Vector Compare Mask Less Than or Equal To Zero (Signed Integer)
727 defm CMLEvvi : NeonI_cmpz_sizes<0b1, 0b01001, "cmle", SETLE>;
728
729 // Vector Compare Mask Less Than Zero (Signed Integer)
730 defm CMLTvvi : NeonI_cmpz_sizes<0b0, 0b01010, "cmlt", SETLT>;
731
732 // Vector Comparisons (Floating Point)
733
734 // Vector Compare Mask Equal (Floating Point)
735 let isCommutable =1 in {
736 defm FCMEQvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11100, "fcmeq", Neon_cmeq,
737                                       Neon_cmeq, Neon_cmeq,
738                                       v2i32, v4i32, v2i64, 0>;
739 }
740
741 // Vector Compare Mask Greater Than Or Equal (Floating Point)
742 defm FCMGEvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11100, "fcmge", Neon_cmge,
743                                       Neon_cmge, Neon_cmge,
744                                       v2i32, v4i32, v2i64, 0>;
745
746 // Vector Compare Mask Greater Than (Floating Point)
747 defm FCMGTvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11100, "fcmgt", Neon_cmgt,
748                                       Neon_cmgt, Neon_cmgt,
749                                       v2i32, v4i32, v2i64, 0>;
750
751 // Vector Compare Mask Less Than Or Equal (Floating Point)
752 // FCMLE is alias for FCMGE with operands reversed.
753 def FCMLEvvv_2S  : NeonI_compare_aliases<"fcmle", ".2s",  FCMGEvvv_2S,  VPR64>;
754 def FCMLEvvv_4S  : NeonI_compare_aliases<"fcmle", ".4s",  FCMGEvvv_4S,  VPR128>;
755 def FCMLEvvv_2D  : NeonI_compare_aliases<"fcmle", ".2d",  FCMGEvvv_2D,  VPR128>;
756
757 // Vector Compare Mask Less Than (Floating Point)
758 // FCMLT is alias for FCMGT with operands reversed.
759 def FCMLTvvv_2S  : NeonI_compare_aliases<"fcmlt", ".2s",  FCMGTvvv_2S,  VPR64>;
760 def FCMLTvvv_4S  : NeonI_compare_aliases<"fcmlt", ".4s",  FCMGTvvv_4S,  VPR128>;
761 def FCMLTvvv_2D  : NeonI_compare_aliases<"fcmlt", ".2d",  FCMGTvvv_2D,  VPR128>;
762
763
764 multiclass NeonI_fpcmpz_sizes<bit u, bit size, bits<5> opcode,
765                               string asmop, CondCode CC>
766 {
767   def _2S : NeonI_2VMisc<0b0, u, {size, 0b0}, opcode,
768             (outs VPR64:$Rd), (ins VPR64:$Rn, fpz32:$FPImm),
769             asmop # "\t$Rd.2s, $Rn.2s, $FPImm",
770             [(set (v2i32 VPR64:$Rd),
771                (v2i32 (Neon_cmpz (v2f32 VPR64:$Rn), (f32 fpimm:$FPImm), CC)))],
772             NoItinerary>;
773
774   def _4S : NeonI_2VMisc<0b1, u, {size, 0b0}, opcode,
775             (outs VPR128:$Rd), (ins VPR128:$Rn, fpz32:$FPImm),
776             asmop # "\t$Rd.4s, $Rn.4s, $FPImm",
777             [(set (v4i32 VPR128:$Rd),
778                (v4i32 (Neon_cmpz (v4f32 VPR128:$Rn), (f32 fpimm:$FPImm), CC)))],
779             NoItinerary>;
780
781   def _2D : NeonI_2VMisc<0b1, u, {size, 0b1}, opcode,
782             (outs VPR128:$Rd), (ins VPR128:$Rn, fpz32:$FPImm),
783             asmop # "\t$Rd.2d, $Rn.2d, $FPImm",
784             [(set (v2i64 VPR128:$Rd),
785                (v2i64 (Neon_cmpz (v2f64 VPR128:$Rn), (f32 fpimm:$FPImm), CC)))],
786             NoItinerary>;
787 }
788
789 // Vector Compare Mask Equal to Zero (Floating Point)
790 defm FCMEQvvi : NeonI_fpcmpz_sizes<0b0, 0b1, 0b01101, "fcmeq", SETEQ>;
791
792 // Vector Compare Mask Greater Than or Equal to Zero (Floating Point)
793 defm FCMGEvvi : NeonI_fpcmpz_sizes<0b1, 0b1, 0b01100, "fcmge", SETGE>;
794
795 // Vector Compare Mask Greater Than Zero (Floating Point)
796 defm FCMGTvvi : NeonI_fpcmpz_sizes<0b0, 0b1, 0b01100, "fcmgt", SETGT>;
797
798 // Vector Compare Mask Less Than or Equal To Zero (Floating Point)
799 defm FCMLEvvi : NeonI_fpcmpz_sizes<0b1, 0b1, 0b01101, "fcmle", SETLE>;
800
801 // Vector Compare Mask Less Than Zero (Floating Point)
802 defm FCMLTvvi : NeonI_fpcmpz_sizes<0b0, 0b1, 0b01110, "fcmlt", SETLT>;
803
804 // Vector Absolute Comparisons (Floating Point)
805
806 // Vector Absolute Compare Mask Greater Than Or Equal (Floating Point)
807 defm FACGEvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11101, "facge",
808                                       int_arm_neon_vacged, int_arm_neon_vacgeq,
809                                       int_aarch64_neon_vacgeq,
810                                       v2i32, v4i32, v2i64, 0>;
811
812 // Vector Absolute Compare Mask Greater Than (Floating Point)
813 defm FACGTvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11101, "facgt",
814                                       int_arm_neon_vacgtd, int_arm_neon_vacgtq,
815                                       int_aarch64_neon_vacgtq,
816                                       v2i32, v4i32, v2i64, 0>;
817
818 // Vector Absolute Compare Mask Less Than Or Equal (Floating Point)
819 // FACLE is alias for FACGE with operands reversed.
820 def FACLEvvv_2S  : NeonI_compare_aliases<"facle", ".2s",  FACGEvvv_2S,  VPR64>;
821 def FACLEvvv_4S  : NeonI_compare_aliases<"facle", ".4s",  FACGEvvv_4S,  VPR128>;
822 def FACLEvvv_2D  : NeonI_compare_aliases<"facle", ".2d",  FACGEvvv_2D,  VPR128>;
823
824 // Vector Absolute Compare Mask Less Than (Floating Point)
825 // FACLT is alias for FACGT with operands reversed.
826 def FACLTvvv_2S  : NeonI_compare_aliases<"faclt", ".2s",  FACGTvvv_2S,  VPR64>;
827 def FACLTvvv_4S  : NeonI_compare_aliases<"faclt", ".4s",  FACGTvvv_4S,  VPR128>;
828 def FACLTvvv_2D  : NeonI_compare_aliases<"faclt", ".2d",  FACGTvvv_2D,  VPR128>;
829
830 // Vector halving add (Integer Signed, Unsigned)
831 defm SHADDvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b00000, "shadd",
832                                         int_arm_neon_vhadds, 1>;
833 defm UHADDvvv :  NeonI_3VSame_BHS_sizes<0b1, 0b00000, "uhadd",
834                                         int_arm_neon_vhaddu, 1>;
835
836 // Vector halving sub (Integer Signed, Unsigned)
837 defm SHSUBvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b00100, "shsub",
838                                         int_arm_neon_vhsubs, 0>;
839 defm UHSUBvvv :  NeonI_3VSame_BHS_sizes<0b1, 0b00100, "uhsub",
840                                         int_arm_neon_vhsubu, 0>;
841
842 // Vector rouding halving add (Integer Signed, Unsigned)
843 defm SRHADDvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b00010, "srhadd",
844                                          int_arm_neon_vrhadds, 1>;
845 defm URHADDvvv :  NeonI_3VSame_BHS_sizes<0b1, 0b00010, "urhadd",
846                                          int_arm_neon_vrhaddu, 1>;
847
848 // Vector Saturating add (Integer Signed, Unsigned)
849 defm SQADDvvv :  NeonI_3VSame_BHSD_sizes<0b0, 0b00001, "sqadd",
850                    int_arm_neon_vqadds, 1>;
851 defm UQADDvvv :  NeonI_3VSame_BHSD_sizes<0b1, 0b00001, "uqadd",
852                    int_arm_neon_vqaddu, 1>;
853
854 // Vector Saturating sub (Integer Signed, Unsigned)
855 defm SQSUBvvv :  NeonI_3VSame_BHSD_sizes<0b0, 0b00101, "sqsub",
856                    int_arm_neon_vqsubs, 1>;
857 defm UQSUBvvv :  NeonI_3VSame_BHSD_sizes<0b1, 0b00101, "uqsub",
858                    int_arm_neon_vqsubu, 1>;
859
860 // Vector Shift Left (Signed and Unsigned Integer)
861 defm SSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01000, "sshl",
862                  int_arm_neon_vshifts, 1>;
863 defm USHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01000, "ushl",
864                  int_arm_neon_vshiftu, 1>;
865
866 // Vector Saturating Shift Left (Signed and Unsigned Integer)
867 defm SQSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01001, "sqshl",
868                   int_arm_neon_vqshifts, 1>;
869 defm UQSHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01001, "uqshl",
870                   int_arm_neon_vqshiftu, 1>;
871
872 // Vector Rouding Shift Left (Signed and Unsigned Integer)
873 defm SRSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01010, "srshl",
874                   int_arm_neon_vrshifts, 1>;
875 defm URSHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01010, "urshl",
876                   int_arm_neon_vrshiftu, 1>;
877
878 // Vector Saturating Rouding Shift Left (Signed and Unsigned Integer)
879 defm SQRSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01011, "sqrshl",
880                    int_arm_neon_vqrshifts, 1>;
881 defm UQRSHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01011, "uqrshl",
882                    int_arm_neon_vqrshiftu, 1>;
883
884 // Vector Maximum (Signed and Unsigned Integer)
885 defm SMAXvvv : NeonI_3VSame_BHS_sizes<0b0, 0b01100, "smax", int_arm_neon_vmaxs, 1>;
886 defm UMAXvvv : NeonI_3VSame_BHS_sizes<0b1, 0b01100, "umax", int_arm_neon_vmaxu, 1>;
887
888 // Vector Minimum (Signed and Unsigned Integer)
889 defm SMINvvv : NeonI_3VSame_BHS_sizes<0b0, 0b01101, "smin", int_arm_neon_vmins, 1>;
890 defm UMINvvv : NeonI_3VSame_BHS_sizes<0b1, 0b01101, "umin", int_arm_neon_vminu, 1>;
891
892 // Vector Maximum (Floating Point)
893 defm FMAXvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11110, "fmax",
894                                      int_arm_neon_vmaxs, int_arm_neon_vmaxs,
895                                      int_arm_neon_vmaxs, v2f32, v4f32, v2f64, 1>;
896
897 // Vector Minimum (Floating Point)
898 defm FMINvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11110, "fmin",
899                                      int_arm_neon_vmins, int_arm_neon_vmins,
900                                      int_arm_neon_vmins, v2f32, v4f32, v2f64, 1>;
901
902 // Vector maxNum (Floating Point) -  prefer a number over a quiet NaN)
903 defm FMAXNMvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11000, "fmaxnm",
904                                        int_aarch64_neon_vmaxnm,
905                                        int_aarch64_neon_vmaxnm,
906                                        int_aarch64_neon_vmaxnm,
907                                        v2f32, v4f32, v2f64, 1>;
908
909 // Vector minNum (Floating Point) - prefer a number over a quiet NaN)
910 defm FMINNMvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11000, "fminnm",
911                                        int_aarch64_neon_vminnm,
912                                        int_aarch64_neon_vminnm,
913                                        int_aarch64_neon_vminnm,
914                                        v2f32, v4f32, v2f64, 1>;
915
916 // Vector Maximum Pairwise (Signed and Unsigned Integer)
917 defm SMAXPvvv : NeonI_3VSame_BHS_sizes<0b0, 0b10100, "smaxp", int_arm_neon_vpmaxs, 1>;
918 defm UMAXPvvv : NeonI_3VSame_BHS_sizes<0b1, 0b10100, "umaxp", int_arm_neon_vpmaxu, 1>;
919
920 // Vector Minimum Pairwise (Signed and Unsigned Integer)
921 defm SMINPvvv : NeonI_3VSame_BHS_sizes<0b0, 0b10101, "sminp", int_arm_neon_vpmins, 1>;
922 defm UMINPvvv : NeonI_3VSame_BHS_sizes<0b1, 0b10101, "uminp", int_arm_neon_vpminu, 1>;
923
924 // Vector Maximum Pairwise (Floating Point)
925 defm FMAXPvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11110, "fmaxp",
926                                      int_arm_neon_vpmaxs, int_arm_neon_vpmaxs,
927                                      int_arm_neon_vpmaxs, v2f32, v4f32, v2f64, 1>;
928
929 // Vector Minimum Pairwise (Floating Point)
930 defm FMINPvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11110, "fminp",
931                                      int_arm_neon_vpmins, int_arm_neon_vpmins,
932                                      int_arm_neon_vpmins, v2f32, v4f32, v2f64, 1>;
933
934 // Vector maxNum Pairwise (Floating Point) -  prefer a number over a quiet NaN)
935 defm FMAXNMPvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11000, "fmaxnmp",
936                                        int_aarch64_neon_vpmaxnm,
937                                        int_aarch64_neon_vpmaxnm,
938                                        int_aarch64_neon_vpmaxnm,
939                                        v2f32, v4f32, v2f64, 1>;
940
941 // Vector minNum Pairwise (Floating Point) -  prefer a number over a quiet NaN)
942 defm FMINNMPvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11000, "fminnmp",
943                                        int_aarch64_neon_vpminnm,
944                                        int_aarch64_neon_vpminnm,
945                                        int_aarch64_neon_vpminnm,
946                                        v2f32, v4f32, v2f64, 1>;
947
948 // Vector Addition Pairwise (Integer)
949 defm ADDP : NeonI_3VSame_BHSD_sizes<0b0, 0b10111, "addp", int_arm_neon_vpadd, 1>;
950
951 // Vector Addition Pairwise (Floating Point)
952 defm FADDP : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11010, "faddp",
953                                        int_arm_neon_vpadd,
954                                        int_arm_neon_vpadd,
955                                        int_arm_neon_vpadd,
956                                        v2f32, v4f32, v2f64, 1>;
957
958 // Vector Saturating Doubling Multiply High
959 defm SQDMULHvvv : NeonI_3VSame_HS_sizes<0b0, 0b10110, "sqdmulh",
960                     int_arm_neon_vqdmulh, 1>;
961
962 // Vector Saturating Rouding Doubling Multiply High
963 defm SQRDMULHvvv : NeonI_3VSame_HS_sizes<0b1, 0b10110, "sqrdmulh",
964                      int_arm_neon_vqrdmulh, 1>;
965
966 // Vector Multiply Extended (Floating Point)
967 defm FMULXvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11011, "fmulx",
968                                       int_aarch64_neon_vmulx,
969                                       int_aarch64_neon_vmulx,
970                                       int_aarch64_neon_vmulx,
971                                       v2f32, v4f32, v2f64, 1>;
972
973 // Vector Immediate Instructions
974
975 multiclass neon_mov_imm_shift_asmoperands<string PREFIX>
976 {
977   def _asmoperand : AsmOperandClass
978     {
979       let Name = "NeonMovImmShift" # PREFIX;
980       let RenderMethod = "addNeonMovImmShift" # PREFIX # "Operands";
981       let PredicateMethod = "isNeonMovImmShift" # PREFIX;
982     }
983 }
984
985 // Definition of vector immediates shift operands
986
987 // The selectable use-cases extract the shift operation
988 // information from the OpCmode fields encoded in the immediate.
989 def neon_mod_shift_imm_XFORM : SDNodeXForm<imm, [{
990   uint64_t OpCmode = N->getZExtValue();
991   unsigned ShiftImm;
992   unsigned ShiftOnesIn;
993   unsigned HasShift =
994     A64Imms::decodeNeonModShiftImm(OpCmode, ShiftImm, ShiftOnesIn);
995   if (!HasShift) return SDValue();
996   return CurDAG->getTargetConstant(ShiftImm, MVT::i32);
997 }]>;
998
999 // Vector immediates shift operands which accept LSL and MSL
1000 // shift operators with shift value in the range of 0, 8, 16, 24 (LSL),
1001 // or 0, 8 (LSLH) or 8, 16 (MSL).
1002 defm neon_mov_imm_LSL : neon_mov_imm_shift_asmoperands<"LSL">;
1003 defm neon_mov_imm_MSL : neon_mov_imm_shift_asmoperands<"MSL">;
1004 // LSLH restricts shift amount to  0, 8 out of 0, 8, 16, 24
1005 defm neon_mov_imm_LSLH : neon_mov_imm_shift_asmoperands<"LSLH">;
1006
1007 multiclass neon_mov_imm_shift_operands<string PREFIX,
1008                                        string HALF, string ISHALF, code pred>
1009 {
1010    def _operand : Operand<i32>, ImmLeaf<i32, pred, neon_mod_shift_imm_XFORM>
1011     {
1012       let PrintMethod =
1013         "printNeonMovImmShiftOperand<A64SE::" # PREFIX # ", " # ISHALF # ">";
1014       let DecoderMethod =
1015         "DecodeNeonMovImmShiftOperand<A64SE::" # PREFIX # ", " # ISHALF # ">";
1016       let ParserMatchClass =
1017         !cast<AsmOperandClass>("neon_mov_imm_" # PREFIX # HALF # "_asmoperand");
1018     }
1019 }
1020
1021 defm neon_mov_imm_LSL  : neon_mov_imm_shift_operands<"LSL", "", "false", [{
1022   unsigned ShiftImm;
1023   unsigned ShiftOnesIn;
1024   unsigned HasShift =
1025     A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1026   return (HasShift && !ShiftOnesIn);
1027 }]>;
1028
1029 defm neon_mov_imm_MSL  : neon_mov_imm_shift_operands<"MSL", "", "false", [{
1030   unsigned ShiftImm;
1031   unsigned ShiftOnesIn;
1032   unsigned HasShift =
1033     A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1034   return (HasShift && ShiftOnesIn);
1035 }]>;
1036
1037 defm neon_mov_imm_LSLH  : neon_mov_imm_shift_operands<"LSL", "H", "true", [{
1038   unsigned ShiftImm;
1039   unsigned ShiftOnesIn;
1040   unsigned HasShift =
1041     A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1042   return (HasShift && !ShiftOnesIn);
1043 }]>;
1044
1045 def neon_uimm1_asmoperand : AsmOperandClass
1046 {
1047   let Name = "UImm1";
1048   let PredicateMethod = "isUImm<1>";
1049   let RenderMethod = "addImmOperands";
1050 }
1051
1052 def neon_uimm2_asmoperand : AsmOperandClass
1053 {
1054   let Name = "UImm2";
1055   let PredicateMethod = "isUImm<2>";
1056   let RenderMethod = "addImmOperands";
1057 }
1058
1059 def neon_uimm8_asmoperand : AsmOperandClass
1060 {
1061   let Name = "UImm8";
1062   let PredicateMethod = "isUImm<8>";
1063   let RenderMethod = "addImmOperands";
1064 }
1065
1066 def neon_uimm8 : Operand<i32>, ImmLeaf<i32, [{(void)Imm; return true;}]> {
1067   let ParserMatchClass = neon_uimm8_asmoperand;
1068   let PrintMethod = "printUImmHexOperand";
1069 }
1070
1071 def neon_uimm64_mask_asmoperand : AsmOperandClass
1072 {
1073   let Name = "NeonUImm64Mask";
1074   let PredicateMethod = "isNeonUImm64Mask";
1075   let RenderMethod = "addNeonUImm64MaskOperands";
1076 }
1077
1078 // MCOperand for 64-bit bytemask with each byte having only the
1079 // value 0x00 and 0xff is encoded as an unsigned 8-bit value
1080 def neon_uimm64_mask : Operand<i32>, ImmLeaf<i32, [{(void)Imm; return true;}]> {
1081   let ParserMatchClass = neon_uimm64_mask_asmoperand;
1082   let PrintMethod = "printNeonUImm64MaskOperand";
1083 }
1084
1085 multiclass NeonI_mov_imm_lsl_sizes<string asmop, bit op,
1086                                    SDPatternOperator opnode>
1087 {
1088     // shift zeros, per word
1089     def _2S  : NeonI_1VModImm<0b0, op,
1090                               (outs VPR64:$Rd),
1091                               (ins neon_uimm8:$Imm,
1092                                 neon_mov_imm_LSL_operand:$Simm),
1093                               !strconcat(asmop, "\t$Rd.2s, $Imm$Simm"),
1094                               [(set (v2i32 VPR64:$Rd),
1095                                  (v2i32 (opnode (timm:$Imm),
1096                                    (neon_mov_imm_LSL_operand:$Simm))))],
1097                               NoItinerary> {
1098        bits<2> Simm;
1099        let cmode = {0b0, Simm{1}, Simm{0}, 0b0};
1100      }
1101
1102     def _4S  : NeonI_1VModImm<0b1, op,
1103                               (outs VPR128:$Rd),
1104                               (ins neon_uimm8:$Imm,
1105                                 neon_mov_imm_LSL_operand:$Simm),
1106                               !strconcat(asmop, "\t$Rd.4s, $Imm$Simm"),
1107                               [(set (v4i32 VPR128:$Rd),
1108                                  (v4i32 (opnode (timm:$Imm),
1109                                    (neon_mov_imm_LSL_operand:$Simm))))],
1110                               NoItinerary> {
1111       bits<2> Simm;
1112       let cmode = {0b0, Simm{1}, Simm{0}, 0b0};
1113     }
1114
1115     // shift zeros, per halfword
1116     def _4H  : NeonI_1VModImm<0b0, op,
1117                               (outs VPR64:$Rd),
1118                               (ins neon_uimm8:$Imm,
1119                                 neon_mov_imm_LSLH_operand:$Simm),
1120                               !strconcat(asmop, "\t$Rd.4h, $Imm$Simm"),
1121                               [(set (v4i16 VPR64:$Rd),
1122                                  (v4i16 (opnode (timm:$Imm),
1123                                    (neon_mov_imm_LSLH_operand:$Simm))))],
1124                               NoItinerary> {
1125       bit  Simm;
1126       let cmode = {0b1, 0b0, Simm, 0b0};
1127     }
1128
1129     def _8H  : NeonI_1VModImm<0b1, op,
1130                               (outs VPR128:$Rd),
1131                               (ins neon_uimm8:$Imm,
1132                                 neon_mov_imm_LSLH_operand:$Simm),
1133                               !strconcat(asmop, "\t$Rd.8h, $Imm$Simm"),
1134                               [(set (v8i16 VPR128:$Rd),
1135                                  (v8i16 (opnode (timm:$Imm),
1136                                    (neon_mov_imm_LSLH_operand:$Simm))))],
1137                               NoItinerary> {
1138       bit Simm;
1139       let cmode = {0b1, 0b0, Simm, 0b0};
1140      }
1141 }
1142
1143 multiclass NeonI_mov_imm_with_constraint_lsl_sizes<string asmop, bit op,
1144                                                    SDPatternOperator opnode,
1145                                                    SDPatternOperator neonopnode>
1146 {
1147   let Constraints = "$src = $Rd" in {
1148     // shift zeros, per word
1149     def _2S  : NeonI_1VModImm<0b0, op,
1150                  (outs VPR64:$Rd),
1151                  (ins VPR64:$src, neon_uimm8:$Imm,
1152                    neon_mov_imm_LSL_operand:$Simm),
1153                  !strconcat(asmop, "\t$Rd.2s, $Imm$Simm"),
1154                  [(set (v2i32 VPR64:$Rd),
1155                     (v2i32 (opnode (v2i32 VPR64:$src),
1156                       (v2i32 (bitconvert (v2i32 (neonopnode timm:$Imm,
1157                         neon_mov_imm_LSL_operand:$Simm)))))))],
1158                  NoItinerary> {
1159       bits<2> Simm;
1160       let cmode = {0b0, Simm{1}, Simm{0}, 0b1};
1161     }
1162
1163     def _4S  : NeonI_1VModImm<0b1, op,
1164                  (outs VPR128:$Rd),
1165                  (ins VPR128:$src, neon_uimm8:$Imm,
1166                    neon_mov_imm_LSL_operand:$Simm),
1167                  !strconcat(asmop, "\t$Rd.4s, $Imm$Simm"),
1168                  [(set (v4i32 VPR128:$Rd),
1169                     (v4i32 (opnode (v4i32 VPR128:$src),
1170                       (v4i32 (bitconvert (v4i32 (neonopnode timm:$Imm,
1171                         neon_mov_imm_LSL_operand:$Simm)))))))],
1172                  NoItinerary> {
1173       bits<2> Simm;
1174       let cmode = {0b0, Simm{1}, Simm{0}, 0b1};
1175     }
1176
1177     // shift zeros, per halfword
1178     def _4H  : NeonI_1VModImm<0b0, op,
1179                  (outs VPR64:$Rd),
1180                  (ins VPR64:$src, neon_uimm8:$Imm,
1181                    neon_mov_imm_LSLH_operand:$Simm),
1182                  !strconcat(asmop, "\t$Rd.4h, $Imm$Simm"),
1183                  [(set (v4i16 VPR64:$Rd),
1184                     (v4i16 (opnode (v4i16 VPR64:$src),
1185                        (v4i16 (bitconvert (v4i16 (neonopnode timm:$Imm,
1186                           neon_mov_imm_LSL_operand:$Simm)))))))],
1187                  NoItinerary> {
1188       bit  Simm;
1189       let cmode = {0b1, 0b0, Simm, 0b1};
1190     }
1191
1192     def _8H  : NeonI_1VModImm<0b1, op,
1193                  (outs VPR128:$Rd),
1194                  (ins VPR128:$src, neon_uimm8:$Imm,
1195                    neon_mov_imm_LSLH_operand:$Simm),
1196                  !strconcat(asmop, "\t$Rd.8h, $Imm$Simm"),
1197                  [(set (v8i16 VPR128:$Rd),
1198                     (v8i16 (opnode (v8i16 VPR128:$src),
1199                       (v8i16 (bitconvert (v8i16 (neonopnode timm:$Imm,
1200                         neon_mov_imm_LSL_operand:$Simm)))))))],
1201                  NoItinerary> {
1202       bit Simm;
1203       let cmode = {0b1, 0b0, Simm, 0b1};
1204     }
1205   }
1206 }
1207
1208 multiclass NeonI_mov_imm_msl_sizes<string asmop, bit op,
1209                                    SDPatternOperator opnode>
1210 {
1211     // shift ones, per word
1212     def _2S  : NeonI_1VModImm<0b0, op,
1213                              (outs VPR64:$Rd),
1214                              (ins neon_uimm8:$Imm,
1215                                neon_mov_imm_MSL_operand:$Simm),
1216                              !strconcat(asmop, "\t$Rd.2s, $Imm$Simm"),
1217                               [(set (v2i32 VPR64:$Rd),
1218                                  (v2i32 (opnode (timm:$Imm),
1219                                    (neon_mov_imm_MSL_operand:$Simm))))],
1220                              NoItinerary> {
1221        bit Simm;
1222        let cmode = {0b1, 0b1, 0b0, Simm};
1223      }
1224
1225    def _4S  : NeonI_1VModImm<0b1, op,
1226                               (outs VPR128:$Rd),
1227                               (ins neon_uimm8:$Imm,
1228                                 neon_mov_imm_MSL_operand:$Simm),
1229                               !strconcat(asmop, "\t$Rd.4s, $Imm$Simm"),
1230                               [(set (v4i32 VPR128:$Rd),
1231                                  (v4i32 (opnode (timm:$Imm),
1232                                    (neon_mov_imm_MSL_operand:$Simm))))],
1233                               NoItinerary> {
1234      bit Simm;
1235      let cmode = {0b1, 0b1, 0b0, Simm};
1236    }
1237 }
1238
1239 // Vector Move Immediate Shifted
1240 let isReMaterializable = 1 in {
1241 defm MOVIvi_lsl : NeonI_mov_imm_lsl_sizes<"movi", 0b0, Neon_movi>;
1242 }
1243
1244 // Vector Move Inverted Immediate Shifted
1245 let isReMaterializable = 1 in {
1246 defm MVNIvi_lsl : NeonI_mov_imm_lsl_sizes<"mvni", 0b1, Neon_mvni>;
1247 }
1248
1249 // Vector Bitwise Bit Clear (AND NOT) - immediate
1250 let isReMaterializable = 1 in {
1251 defm BICvi_lsl : NeonI_mov_imm_with_constraint_lsl_sizes<"bic", 0b1,
1252                                                          and, Neon_mvni>;
1253 }
1254
1255 // Vector Bitwise OR - immedidate
1256
1257 let isReMaterializable = 1 in {
1258 defm ORRvi_lsl   : NeonI_mov_imm_with_constraint_lsl_sizes<"orr", 0b0,
1259                                                            or, Neon_movi>;
1260 }
1261
1262 // Additional patterns for Vector Bitwise Bit Clear (AND NOT) - immedidate
1263 // LowerBUILD_VECTOR favors lowering MOVI over MVNI.
1264 // BIC immediate instructions selection requires additional patterns to
1265 // transform Neon_movi operands into BIC immediate operands
1266
1267 def neon_mov_imm_LSLH_transform_XFORM : SDNodeXForm<imm, [{
1268   uint64_t OpCmode = N->getZExtValue();
1269   unsigned ShiftImm;
1270   unsigned ShiftOnesIn;
1271   (void)A64Imms::decodeNeonModShiftImm(OpCmode, ShiftImm, ShiftOnesIn);
1272   // LSLH restricts shift amount to  0, 8 which are encoded as 0 and 1
1273   // Transform encoded shift amount 0 to 1 and 1 to 0.
1274   return CurDAG->getTargetConstant(!ShiftImm, MVT::i32);
1275 }]>;
1276
1277 def neon_mov_imm_LSLH_transform_operand
1278   : ImmLeaf<i32, [{
1279     unsigned ShiftImm;
1280     unsigned ShiftOnesIn;
1281     unsigned HasShift =
1282       A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1283     return (HasShift && !ShiftOnesIn); }],
1284   neon_mov_imm_LSLH_transform_XFORM>;
1285
1286 // Transform (and A, (4h Neon_movi 0xff)) -> BIC 4h (A, 0x00, LSL 8)
1287 // Transform (and A, (4h Neon_movi 0xff LSL #8)) -> BIC 4h (A, 0x00)
1288 def : Pat<(v4i16 (and VPR64:$src,
1289             (v4i16 (Neon_movi 255, neon_mov_imm_LSLH_transform_operand:$Simm)))),
1290           (BICvi_lsl_4H VPR64:$src, 0,
1291             neon_mov_imm_LSLH_transform_operand:$Simm)>;
1292
1293 // Transform (and A, (8h Neon_movi 8h 0xff)) -> BIC 8h (A, 0x00, LSL 8)
1294 // Transform (and A, (8h Neon_movi 0xff LSL #8)) -> BIC 8h (A, 0x00)
1295 def : Pat<(v8i16 (and VPR128:$src,
1296             (v8i16 (Neon_movi 255, neon_mov_imm_LSLH_transform_operand:$Simm)))),
1297           (BICvi_lsl_8H VPR128:$src, 0,
1298             neon_mov_imm_LSLH_transform_operand:$Simm)>;
1299
1300
1301 multiclass Neon_bitwiseVi_patterns<SDPatternOperator opnode,
1302                                    SDPatternOperator neonopnode,
1303                                    Instruction INST4H,
1304                                    Instruction INST8H> {
1305   def : Pat<(v8i8 (opnode VPR64:$src,
1306                     (bitconvert(v4i16 (neonopnode timm:$Imm,
1307                       neon_mov_imm_LSLH_operand:$Simm))))),
1308             (INST4H VPR64:$src, neon_uimm8:$Imm,
1309               neon_mov_imm_LSLH_operand:$Simm)>;
1310   def : Pat<(v1i64 (opnode VPR64:$src,
1311                   (bitconvert(v4i16 (neonopnode timm:$Imm,
1312                     neon_mov_imm_LSLH_operand:$Simm))))),
1313           (INST4H VPR64:$src, neon_uimm8:$Imm,
1314             neon_mov_imm_LSLH_operand:$Simm)>;
1315
1316   def : Pat<(v16i8 (opnode VPR128:$src,
1317                    (bitconvert(v8i16 (neonopnode timm:$Imm,
1318                      neon_mov_imm_LSLH_operand:$Simm))))),
1319           (INST8H VPR128:$src, neon_uimm8:$Imm,
1320             neon_mov_imm_LSLH_operand:$Simm)>;
1321   def : Pat<(v4i32 (opnode VPR128:$src,
1322                    (bitconvert(v8i16 (neonopnode timm:$Imm,
1323                      neon_mov_imm_LSLH_operand:$Simm))))),
1324           (INST8H VPR128:$src, neon_uimm8:$Imm,
1325             neon_mov_imm_LSLH_operand:$Simm)>;
1326   def : Pat<(v2i64 (opnode VPR128:$src,
1327                    (bitconvert(v8i16 (neonopnode timm:$Imm,
1328                      neon_mov_imm_LSLH_operand:$Simm))))),
1329           (INST8H VPR128:$src, neon_uimm8:$Imm,
1330             neon_mov_imm_LSLH_operand:$Simm)>;
1331 }
1332
1333 // Additional patterns for Vector Vector Bitwise Bit Clear (AND NOT) - immediate
1334 defm : Neon_bitwiseVi_patterns<or, Neon_mvni, BICvi_lsl_4H, BICvi_lsl_8H>;
1335
1336 // Additional patterns for Vector Bitwise OR - immedidate
1337 defm : Neon_bitwiseVi_patterns<or, Neon_movi, ORRvi_lsl_4H, ORRvi_lsl_8H>;
1338
1339
1340 // Vector Move Immediate Masked
1341 let isReMaterializable = 1 in {
1342 defm MOVIvi_msl : NeonI_mov_imm_msl_sizes<"movi", 0b0, Neon_movi>;
1343 }
1344
1345 // Vector Move Inverted Immediate Masked
1346 let isReMaterializable = 1 in {
1347 defm MVNIvi_msl : NeonI_mov_imm_msl_sizes<"mvni", 0b1, Neon_mvni>;
1348 }
1349
1350 class NeonI_mov_imm_lsl_aliases<string asmop, string asmlane,
1351                                 Instruction inst, RegisterOperand VPRC>
1352   : NeonInstAlias<!strconcat(asmop, "\t$Rd," # asmlane # ", $Imm"),
1353                         (inst VPRC:$Rd, neon_uimm8:$Imm,  0), 0b0>;
1354
1355 // Aliases for Vector Move Immediate Shifted
1356 def : NeonI_mov_imm_lsl_aliases<"movi", ".2s", MOVIvi_lsl_2S, VPR64>;
1357 def : NeonI_mov_imm_lsl_aliases<"movi", ".4s", MOVIvi_lsl_4S, VPR128>;
1358 def : NeonI_mov_imm_lsl_aliases<"movi", ".4h", MOVIvi_lsl_4H, VPR64>;
1359 def : NeonI_mov_imm_lsl_aliases<"movi", ".8h", MOVIvi_lsl_8H, VPR128>;
1360
1361 // Aliases for Vector Move Inverted Immediate Shifted
1362 def : NeonI_mov_imm_lsl_aliases<"mvni", ".2s", MVNIvi_lsl_2S, VPR64>;
1363 def : NeonI_mov_imm_lsl_aliases<"mvni", ".4s", MVNIvi_lsl_4S, VPR128>;
1364 def : NeonI_mov_imm_lsl_aliases<"mvni", ".4h", MVNIvi_lsl_4H, VPR64>;
1365 def : NeonI_mov_imm_lsl_aliases<"mvni", ".8h", MVNIvi_lsl_8H, VPR128>;
1366
1367 // Aliases for Vector Bitwise Bit Clear (AND NOT) - immediate
1368 def : NeonI_mov_imm_lsl_aliases<"bic", ".2s", BICvi_lsl_2S, VPR64>;
1369 def : NeonI_mov_imm_lsl_aliases<"bic", ".4s", BICvi_lsl_4S, VPR128>;
1370 def : NeonI_mov_imm_lsl_aliases<"bic", ".4h", BICvi_lsl_4H, VPR64>;
1371 def : NeonI_mov_imm_lsl_aliases<"bic", ".8h", BICvi_lsl_8H, VPR128>;
1372
1373 // Aliases for Vector Bitwise OR - immedidate
1374 def : NeonI_mov_imm_lsl_aliases<"orr", ".2s", ORRvi_lsl_2S, VPR64>;
1375 def : NeonI_mov_imm_lsl_aliases<"orr", ".4s", ORRvi_lsl_4S, VPR128>;
1376 def : NeonI_mov_imm_lsl_aliases<"orr", ".4h", ORRvi_lsl_4H, VPR64>;
1377 def : NeonI_mov_imm_lsl_aliases<"orr", ".8h", ORRvi_lsl_8H, VPR128>;
1378
1379 //  Vector Move Immediate - per byte
1380 let isReMaterializable = 1 in {
1381 def MOVIvi_8B : NeonI_1VModImm<0b0, 0b0,
1382                                (outs VPR64:$Rd), (ins neon_uimm8:$Imm),
1383                                "movi\t$Rd.8b, $Imm",
1384                                [(set (v8i8 VPR64:$Rd),
1385                                   (v8i8 (Neon_movi (timm:$Imm), (i32 imm))))],
1386                                 NoItinerary> {
1387   let cmode = 0b1110;
1388 }
1389
1390 def MOVIvi_16B : NeonI_1VModImm<0b1, 0b0,
1391                                 (outs VPR128:$Rd), (ins neon_uimm8:$Imm),
1392                                 "movi\t$Rd.16b, $Imm",
1393                                 [(set (v16i8 VPR128:$Rd),
1394                                    (v16i8 (Neon_movi (timm:$Imm), (i32 imm))))],
1395                                  NoItinerary> {
1396   let cmode = 0b1110;
1397 }
1398 }
1399
1400 // Vector Move Immediate - bytemask, per double word
1401 let isReMaterializable = 1 in {
1402 def MOVIvi_2D : NeonI_1VModImm<0b1, 0b1,
1403                                (outs VPR128:$Rd), (ins neon_uimm64_mask:$Imm),
1404                                "movi\t $Rd.2d, $Imm",
1405                                [(set (v2i64 VPR128:$Rd),
1406                                   (v2i64 (Neon_movi (timm:$Imm), (i32 imm))))],
1407                                NoItinerary> {
1408   let cmode = 0b1110;
1409 }
1410 }
1411
1412 // Vector Move Immediate - bytemask, one doubleword
1413
1414 let isReMaterializable = 1 in {
1415 def MOVIdi : NeonI_1VModImm<0b0, 0b1,
1416                            (outs FPR64:$Rd), (ins neon_uimm64_mask:$Imm),
1417                            "movi\t $Rd, $Imm",
1418                            [(set (f64 FPR64:$Rd),
1419                               (f64 (bitconvert
1420                                 (v1i64 (Neon_movi (timm:$Imm), (i32 imm))))))],
1421                            NoItinerary> {
1422   let cmode = 0b1110;
1423 }
1424 }
1425
1426 // Vector Floating Point Move Immediate
1427
1428 class NeonI_FMOV_impl<string asmlane, RegisterOperand VPRC, ValueType OpTy,
1429                       Operand immOpType, bit q, bit op>
1430   : NeonI_1VModImm<q, op,
1431                    (outs VPRC:$Rd), (ins immOpType:$Imm),
1432                    "fmov\t$Rd" # asmlane # ", $Imm",
1433                    [(set (OpTy VPRC:$Rd),
1434                       (OpTy (Neon_fmovi (timm:$Imm))))],
1435                    NoItinerary> {
1436      let cmode = 0b1111;
1437    }
1438
1439 let isReMaterializable = 1 in {
1440 def FMOVvi_2S : NeonI_FMOV_impl<".2s", VPR64,  v2f32, fmov32_operand, 0b0, 0b0>;
1441 def FMOVvi_4S : NeonI_FMOV_impl<".4s", VPR128, v4f32, fmov32_operand, 0b1, 0b0>;
1442 def FMOVvi_2D : NeonI_FMOV_impl<".2d", VPR128, v2f64, fmov64_operand, 0b1, 0b1>;
1443 }
1444
1445 // Vector Shift (Immediate) 
1446 // Immediate in [0, 63]
1447 def imm0_63 : Operand<i32> {
1448   let ParserMatchClass = uimm6_asmoperand;
1449 }
1450
1451 // Shift Right/Left Immediate - The immh:immb field of these shifts are encoded
1452 // as follows:
1453 //
1454 //    Offset    Encoding
1455 //     8        immh:immb<6:3> = '0001xxx', <imm> is encoded in immh:immb<2:0>
1456 //     16       immh:immb<6:4> = '001xxxx', <imm> is encoded in immh:immb<3:0>
1457 //     32       immh:immb<6:5> = '01xxxxx', <imm> is encoded in immh:immb<4:0>
1458 //     64       immh:immb<6>   = '1xxxxxx', <imm> is encoded in immh:immb<5:0>
1459 //
1460 // The shift right immediate amount, in the range 1 to element bits, is computed
1461 // as Offset - UInt(immh:immb).  The shift left immediate amount, in the range 0
1462 // to element bits - 1, is computed as UInt(immh:immb) - Offset.
1463
1464 class shr_imm_asmoperands<string OFFSET> : AsmOperandClass {
1465   let Name = "ShrImm" # OFFSET;
1466   let RenderMethod = "addImmOperands";
1467   let DiagnosticType = "ShrImm" # OFFSET;
1468 }
1469
1470 class shr_imm<string OFFSET> : Operand<i32> {
1471   let EncoderMethod = "getShiftRightImm" # OFFSET;
1472   let DecoderMethod = "DecodeShiftRightImm" # OFFSET;
1473   let ParserMatchClass = 
1474     !cast<AsmOperandClass>("shr_imm" # OFFSET # "_asmoperand");
1475 }
1476
1477 def shr_imm8_asmoperand : shr_imm_asmoperands<"8">;
1478 def shr_imm16_asmoperand : shr_imm_asmoperands<"16">;
1479 def shr_imm32_asmoperand : shr_imm_asmoperands<"32">;
1480 def shr_imm64_asmoperand : shr_imm_asmoperands<"64">;
1481
1482 def shr_imm8 : shr_imm<"8">;
1483 def shr_imm16 : shr_imm<"16">;
1484 def shr_imm32 : shr_imm<"32">;
1485 def shr_imm64 : shr_imm<"64">;
1486
1487 class shl_imm_asmoperands<string OFFSET> : AsmOperandClass {
1488   let Name = "ShlImm" # OFFSET;
1489   let RenderMethod = "addImmOperands";
1490   let DiagnosticType = "ShlImm" # OFFSET;
1491 }
1492
1493 class shl_imm<string OFFSET> : Operand<i32> {
1494   let EncoderMethod = "getShiftLeftImm" # OFFSET;
1495   let DecoderMethod = "DecodeShiftLeftImm" # OFFSET;
1496   let ParserMatchClass = 
1497     !cast<AsmOperandClass>("shl_imm" # OFFSET # "_asmoperand");
1498 }
1499
1500 def shl_imm8_asmoperand : shl_imm_asmoperands<"8">;
1501 def shl_imm16_asmoperand : shl_imm_asmoperands<"16">;
1502 def shl_imm32_asmoperand : shl_imm_asmoperands<"32">;
1503 def shl_imm64_asmoperand : shl_imm_asmoperands<"64">;
1504
1505 def shl_imm8 : shl_imm<"8">;
1506 def shl_imm16 : shl_imm<"16">;
1507 def shl_imm32 : shl_imm<"32">;
1508 def shl_imm64 : shl_imm<"64">;
1509
1510 class N2VShift<bit q, bit u, bits<5> opcode, string asmop, string T,
1511                RegisterOperand VPRC, ValueType Ty, Operand ImmTy, SDNode OpNode>
1512   : NeonI_2VShiftImm<q, u, opcode,
1513                      (outs VPRC:$Rd), (ins VPRC:$Rn, ImmTy:$Imm),
1514                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1515                      [(set (Ty VPRC:$Rd),
1516                         (Ty (OpNode (Ty VPRC:$Rn),
1517                           (Ty (Neon_vdup (i32 imm:$Imm))))))],
1518                      NoItinerary>;
1519
1520 multiclass NeonI_N2VShL<bit u, bits<5> opcode, string asmop> {
1521   // 64-bit vector types.
1522   def _8B : N2VShift<0b0, u, opcode, asmop, "8b", VPR64, v8i8, uimm3, shl> {
1523     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1524   }
1525
1526   def _4H : N2VShift<0b0, u, opcode, asmop, "4h", VPR64, v4i16, uimm4, shl> {
1527     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1528   }
1529
1530   def _2S : N2VShift<0b0, u, opcode, asmop, "2s", VPR64, v2i32, uimm5, shl> {
1531     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1532   }
1533
1534   // 128-bit vector types.
1535   def _16B : N2VShift<0b1, u, opcode, asmop, "16b", VPR128, v16i8, uimm3, shl> {
1536     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1537   }
1538
1539   def _8H : N2VShift<0b1, u, opcode, asmop, "8h", VPR128, v8i16, uimm4, shl> {
1540     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1541   }
1542
1543   def _4S : N2VShift<0b1, u, opcode, asmop, "4s", VPR128, v4i32, uimm5, shl> {
1544     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1545   }
1546
1547   def _2D : N2VShift<0b1, u, opcode, asmop, "2d", VPR128, v2i64, imm0_63, shl> {
1548     let Inst{22} = 0b1;        // immh:immb = 1xxxxxx
1549   }
1550 }
1551
1552 multiclass NeonI_N2VShR<bit u, bits<5> opcode, string asmop, SDNode OpNode> {
1553   def _8B : N2VShift<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1554                      OpNode> {
1555     let Inst{22-19} = 0b0001;
1556   }
1557
1558   def _4H : N2VShift<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1559                      OpNode> {
1560     let Inst{22-20} = 0b001;
1561   }
1562
1563   def _2S : N2VShift<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1564                      OpNode> {
1565      let Inst{22-21} = 0b01;
1566   }
1567
1568   def _16B : N2VShift<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1569                       OpNode> {
1570                       let Inst{22-19} = 0b0001;
1571                     }
1572
1573   def _8H : N2VShift<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1574                      OpNode> {
1575                      let Inst{22-20} = 0b001;
1576                     }
1577
1578   def _4S : N2VShift<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1579                      OpNode> {
1580                       let Inst{22-21} = 0b01;
1581                     }
1582
1583   def _2D : N2VShift<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1584                      OpNode> {
1585                       let Inst{22} = 0b1;
1586                     }
1587 }
1588
1589 // Shift left
1590 defm SHLvvi : NeonI_N2VShL<0b0, 0b01010, "shl">;
1591
1592 // Shift right
1593 defm SSHRvvi : NeonI_N2VShR<0b0, 0b00000, "sshr", sra>;
1594 defm USHRvvi : NeonI_N2VShR<0b1, 0b00000, "ushr", srl>;
1595
1596 def Neon_High16B : PatFrag<(ops node:$in),
1597                            (extract_subvector (v16i8 node:$in), (iPTR 8))>;
1598 def Neon_High8H  : PatFrag<(ops node:$in),
1599                            (extract_subvector (v8i16 node:$in), (iPTR 4))>;
1600 def Neon_High4S  : PatFrag<(ops node:$in),
1601                            (extract_subvector (v4i32 node:$in), (iPTR 2))>;
1602
1603 def Neon_low8H : PatFrag<(ops node:$in),
1604                          (v4i16 (extract_subvector (v8i16 node:$in),
1605                                                    (iPTR 0)))>;
1606 def Neon_low4S : PatFrag<(ops node:$in),
1607                          (v2i32 (extract_subvector (v4i32 node:$in),
1608                                                    (iPTR 0)))>;
1609 def Neon_low4f : PatFrag<(ops node:$in),
1610                          (v2f32 (extract_subvector (v4f32 node:$in),
1611                                                    (iPTR 0)))>;
1612
1613 class N2VShiftLong<bit q, bit u, bits<5> opcode, string asmop, string DestT,
1614                    string SrcT, ValueType DestTy, ValueType SrcTy,
1615                    Operand ImmTy, SDPatternOperator ExtOp>
1616   : NeonI_2VShiftImm<q, u, opcode, (outs VPR128:$Rd),
1617                      (ins VPR64:$Rn, ImmTy:$Imm),
1618                      asmop # "\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
1619                      [(set (DestTy VPR128:$Rd),
1620                         (DestTy (shl
1621                           (DestTy (ExtOp (SrcTy VPR64:$Rn))),
1622                             (DestTy (Neon_vdup (i32 imm:$Imm))))))],
1623                      NoItinerary>;
1624
1625 class N2VShiftLongHigh<bit q, bit u, bits<5> opcode, string asmop, string DestT,
1626                        string SrcT, ValueType DestTy, ValueType SrcTy,
1627                        int StartIndex, Operand ImmTy,
1628                        SDPatternOperator ExtOp, PatFrag getTop>
1629   : NeonI_2VShiftImm<q, u, opcode, (outs VPR128:$Rd),
1630                      (ins VPR128:$Rn, ImmTy:$Imm),
1631                      asmop # "2\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
1632                      [(set (DestTy VPR128:$Rd),
1633                         (DestTy (shl
1634                           (DestTy (ExtOp
1635                             (SrcTy (getTop VPR128:$Rn)))),
1636                               (DestTy (Neon_vdup (i32 imm:$Imm))))))],
1637                      NoItinerary>;
1638
1639 multiclass NeonI_N2VShLL<string prefix, bit u, bits<5> opcode, string asmop,
1640                          SDNode ExtOp> {
1641   // 64-bit vector types.
1642   def _8B : N2VShiftLong<0b0, u, opcode, asmop, "8h", "8b", v8i16, v8i8,
1643                          uimm3, ExtOp> {
1644     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1645   }
1646
1647   def _4H : N2VShiftLong<0b0, u, opcode, asmop, "4s", "4h", v4i32, v4i16,
1648                          uimm4, ExtOp> {
1649     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1650   }
1651
1652   def _2S : N2VShiftLong<0b0, u, opcode, asmop, "2d", "2s", v2i64, v2i32,
1653                          uimm5, ExtOp> {
1654     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1655   }
1656
1657   // 128-bit vector types
1658   def _16B : N2VShiftLongHigh<0b1, u, opcode, asmop, "8h", "16b",
1659                               v8i16, v8i8, 8, uimm3, ExtOp, Neon_High16B> {
1660     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1661   }
1662
1663   def _8H : N2VShiftLongHigh<0b1, u, opcode, asmop, "4s", "8h",
1664                              v4i32, v4i16, 4, uimm4, ExtOp, Neon_High8H> {
1665     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1666   }
1667
1668   def _4S : N2VShiftLongHigh<0b1, u, opcode, asmop, "2d", "4s",
1669                              v2i64, v2i32, 2, uimm5, ExtOp, Neon_High4S> {
1670     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1671   }
1672
1673   // Use other patterns to match when the immediate is 0.
1674   def : Pat<(v8i16 (ExtOp (v8i8 VPR64:$Rn))),
1675             (!cast<Instruction>(prefix # "_8B") VPR64:$Rn, 0)>;
1676
1677   def : Pat<(v4i32 (ExtOp (v4i16 VPR64:$Rn))),
1678             (!cast<Instruction>(prefix # "_4H") VPR64:$Rn, 0)>;
1679
1680   def : Pat<(v2i64 (ExtOp (v2i32 VPR64:$Rn))),
1681             (!cast<Instruction>(prefix # "_2S") VPR64:$Rn, 0)>;
1682
1683   def : Pat<(v8i16 (ExtOp (v8i8 (Neon_High16B VPR128:$Rn)))),
1684             (!cast<Instruction>(prefix # "_16B") VPR128:$Rn, 0)>;
1685
1686   def : Pat<(v4i32 (ExtOp (v4i16 (Neon_High8H VPR128:$Rn)))),
1687             (!cast<Instruction>(prefix # "_8H") VPR128:$Rn, 0)>;
1688
1689   def : Pat<(v2i64 (ExtOp (v2i32 (Neon_High4S VPR128:$Rn)))),
1690             (!cast<Instruction>(prefix # "_4S") VPR128:$Rn, 0)>;
1691 }
1692
1693 // Shift left long
1694 defm SSHLLvvi : NeonI_N2VShLL<"SSHLLvvi", 0b0, 0b10100, "sshll", sext>;
1695 defm USHLLvvi : NeonI_N2VShLL<"USHLLvvi", 0b1, 0b10100, "ushll", zext>;
1696
1697 // Rounding/Saturating shift
1698 class N2VShift_RQ<bit q, bit u, bits<5> opcode, string asmop, string T,
1699                   RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1700                   SDPatternOperator OpNode>
1701   : NeonI_2VShiftImm<q, u, opcode,
1702                      (outs VPRC:$Rd), (ins VPRC:$Rn, ImmTy:$Imm),
1703                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1704                      [(set (Ty VPRC:$Rd), (Ty (OpNode (Ty VPRC:$Rn),
1705                         (i32 imm:$Imm))))],
1706                      NoItinerary>;
1707
1708 // shift right (vector by immediate)
1709 multiclass NeonI_N2VShR_RQ<bit u, bits<5> opcode, string asmop,
1710                            SDPatternOperator OpNode> {
1711   def _8B  : N2VShift_RQ<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1712                          OpNode> {
1713     let Inst{22-19} = 0b0001;
1714   }
1715
1716   def _4H  : N2VShift_RQ<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1717                          OpNode> {
1718     let Inst{22-20} = 0b001;
1719   }
1720
1721   def _2S  : N2VShift_RQ<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1722                          OpNode> {
1723     let Inst{22-21} = 0b01;
1724   }
1725
1726   def _16B : N2VShift_RQ<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1727                          OpNode> {
1728     let Inst{22-19} = 0b0001;
1729   }
1730
1731   def _8H : N2VShift_RQ<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1732                         OpNode> {
1733     let Inst{22-20} = 0b001;
1734   }
1735
1736   def _4S : N2VShift_RQ<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1737                         OpNode> {
1738     let Inst{22-21} = 0b01;
1739   }
1740
1741   def _2D : N2VShift_RQ<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1742                         OpNode> {
1743     let Inst{22} = 0b1;
1744   }
1745 }
1746
1747 multiclass NeonI_N2VShL_Q<bit u, bits<5> opcode, string asmop,
1748                           SDPatternOperator OpNode> {
1749   // 64-bit vector types.
1750   def _8B : N2VShift_RQ<0b0, u, opcode, asmop, "8b", VPR64, v8i8, uimm3,
1751                         OpNode> {
1752     let Inst{22-19} = 0b0001;
1753   }
1754
1755   def _4H : N2VShift_RQ<0b0, u, opcode, asmop, "4h", VPR64, v4i16, uimm4,
1756                         OpNode> {
1757     let Inst{22-20} = 0b001;
1758   }
1759
1760   def _2S : N2VShift_RQ<0b0, u, opcode, asmop, "2s", VPR64, v2i32, uimm5,
1761                         OpNode> {
1762     let Inst{22-21} = 0b01;
1763   }
1764
1765   // 128-bit vector types.
1766   def _16B : N2VShift_RQ<0b1, u, opcode, asmop, "16b", VPR128, v16i8, uimm3,
1767                          OpNode> {
1768     let Inst{22-19} = 0b0001;
1769   }
1770
1771   def _8H : N2VShift_RQ<0b1, u, opcode, asmop, "8h", VPR128, v8i16, uimm4,
1772                         OpNode> {
1773     let Inst{22-20} = 0b001;
1774   }
1775
1776   def _4S : N2VShift_RQ<0b1, u, opcode, asmop, "4s", VPR128, v4i32, uimm5,
1777                         OpNode> {
1778     let Inst{22-21} = 0b01;
1779   }
1780
1781   def _2D : N2VShift_RQ<0b1, u, opcode, asmop, "2d", VPR128, v2i64, imm0_63,
1782                         OpNode> {
1783     let Inst{22} = 0b1;
1784   }
1785 }
1786
1787 // Rounding shift right
1788 defm SRSHRvvi : NeonI_N2VShR_RQ<0b0, 0b00100, "srshr",
1789                                 int_aarch64_neon_vsrshr>;
1790 defm URSHRvvi : NeonI_N2VShR_RQ<0b1, 0b00100, "urshr",
1791                                 int_aarch64_neon_vurshr>;
1792
1793 // Saturating shift left unsigned
1794 defm SQSHLUvvi : NeonI_N2VShL_Q<0b1, 0b01100, "sqshlu", int_aarch64_neon_vsqshlu>;
1795
1796 // Saturating shift left
1797 defm SQSHLvvi : NeonI_N2VShL_Q<0b0, 0b01110, "sqshl", Neon_sqrshlImm>;
1798 defm UQSHLvvi : NeonI_N2VShL_Q<0b1, 0b01110, "uqshl", Neon_uqrshlImm>;
1799
1800 class N2VShiftAdd<bit q, bit u, bits<5> opcode, string asmop, string T,
1801                   RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1802                   SDNode OpNode>
1803   : NeonI_2VShiftImm<q, u, opcode,
1804            (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, ImmTy:$Imm),
1805            asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1806            [(set (Ty VPRC:$Rd), (Ty (add (Ty VPRC:$src),
1807               (Ty (OpNode (Ty VPRC:$Rn),
1808                 (Ty (Neon_vdup (i32 imm:$Imm))))))))],
1809            NoItinerary> {
1810   let Constraints = "$src = $Rd";
1811 }
1812
1813 // Shift Right accumulate
1814 multiclass NeonI_N2VShRAdd<bit u, bits<5> opcode, string asmop, SDNode OpNode> {
1815   def _8B : N2VShiftAdd<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1816                         OpNode> {
1817     let Inst{22-19} = 0b0001;
1818   }
1819
1820   def _4H : N2VShiftAdd<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1821                         OpNode> {
1822     let Inst{22-20} = 0b001;
1823   }
1824
1825   def _2S : N2VShiftAdd<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1826                         OpNode> {
1827     let Inst{22-21} = 0b01;
1828   }
1829
1830   def _16B : N2VShiftAdd<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1831                          OpNode> {
1832     let Inst{22-19} = 0b0001;
1833   }
1834
1835   def _8H : N2VShiftAdd<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1836                         OpNode> {
1837     let Inst{22-20} = 0b001;
1838   }
1839
1840   def _4S : N2VShiftAdd<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1841                         OpNode> {
1842     let Inst{22-21} = 0b01;
1843   }
1844
1845   def _2D : N2VShiftAdd<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1846                         OpNode> {
1847     let Inst{22} = 0b1;
1848   }
1849 }
1850
1851 // Shift right and accumulate
1852 defm SSRAvvi    : NeonI_N2VShRAdd<0, 0b00010, "ssra", sra>;
1853 defm USRAvvi    : NeonI_N2VShRAdd<1, 0b00010, "usra", srl>;
1854
1855 // Rounding shift accumulate
1856 class N2VShiftAdd_R<bit q, bit u, bits<5> opcode, string asmop, string T,
1857                     RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1858                     SDPatternOperator OpNode>
1859   : NeonI_2VShiftImm<q, u, opcode,
1860                      (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, ImmTy:$Imm),
1861                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1862                      [(set (Ty VPRC:$Rd), (Ty (add (Ty VPRC:$src),
1863                         (Ty (OpNode (Ty VPRC:$Rn), (i32 imm:$Imm))))))],
1864                      NoItinerary> {
1865   let Constraints = "$src = $Rd";
1866 }
1867
1868 multiclass NeonI_N2VShRAdd_R<bit u, bits<5> opcode, string asmop,
1869                              SDPatternOperator OpNode> {
1870   def _8B : N2VShiftAdd_R<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1871                           OpNode> {
1872     let Inst{22-19} = 0b0001;
1873   }
1874
1875   def _4H : N2VShiftAdd_R<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1876                           OpNode> {
1877     let Inst{22-20} = 0b001;
1878   }
1879
1880   def _2S : N2VShiftAdd_R<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1881                           OpNode> {
1882     let Inst{22-21} = 0b01;
1883   }
1884
1885   def _16B : N2VShiftAdd_R<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1886                            OpNode> {
1887     let Inst{22-19} = 0b0001;
1888   }
1889
1890   def _8H : N2VShiftAdd_R<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1891                           OpNode> {
1892     let Inst{22-20} = 0b001;
1893   }
1894
1895   def _4S : N2VShiftAdd_R<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1896                           OpNode> {
1897     let Inst{22-21} = 0b01;
1898   }
1899
1900   def _2D : N2VShiftAdd_R<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1901                           OpNode> {
1902     let Inst{22} = 0b1;
1903   }
1904 }
1905
1906 // Rounding shift right and accumulate
1907 defm SRSRAvvi : NeonI_N2VShRAdd_R<0, 0b00110, "srsra", int_aarch64_neon_vsrshr>;
1908 defm URSRAvvi : NeonI_N2VShRAdd_R<1, 0b00110, "ursra", int_aarch64_neon_vurshr>;
1909
1910 // Shift insert by immediate
1911 class N2VShiftIns<bit q, bit u, bits<5> opcode, string asmop, string T,
1912                   RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1913                   SDPatternOperator OpNode>
1914     : NeonI_2VShiftImm<q, u, opcode,
1915            (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, ImmTy:$Imm),
1916            asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1917            [(set (Ty VPRC:$Rd), (Ty (OpNode (Ty VPRC:$src), (Ty VPRC:$Rn),
1918              (i32 imm:$Imm))))],
1919            NoItinerary> {
1920   let Constraints = "$src = $Rd";
1921 }
1922
1923 // shift left insert (vector by immediate)
1924 multiclass NeonI_N2VShLIns<bit u, bits<5> opcode, string asmop> {
1925   def _8B : N2VShiftIns<0b0, u, opcode, asmop, "8b", VPR64, v8i8, uimm3,
1926                         int_aarch64_neon_vsli> {
1927     let Inst{22-19} = 0b0001;
1928   }
1929
1930   def _4H : N2VShiftIns<0b0, u, opcode, asmop, "4h", VPR64, v4i16, uimm4,
1931                         int_aarch64_neon_vsli> {
1932     let Inst{22-20} = 0b001;
1933   }
1934
1935   def _2S : N2VShiftIns<0b0, u, opcode, asmop, "2s", VPR64, v2i32, uimm5,
1936                         int_aarch64_neon_vsli> {
1937     let Inst{22-21} = 0b01;
1938   }
1939
1940     // 128-bit vector types
1941   def _16B : N2VShiftIns<0b1, u, opcode, asmop, "16b", VPR128, v16i8, uimm3,
1942                          int_aarch64_neon_vsli> {
1943     let Inst{22-19} = 0b0001;
1944   }
1945
1946   def _8H : N2VShiftIns<0b1, u, opcode, asmop, "8h", VPR128, v8i16, uimm4,
1947                         int_aarch64_neon_vsli> {
1948     let Inst{22-20} = 0b001;
1949   }
1950
1951   def _4S : N2VShiftIns<0b1, u, opcode, asmop, "4s", VPR128, v4i32, uimm5,
1952                         int_aarch64_neon_vsli> {
1953     let Inst{22-21} = 0b01;
1954   }
1955
1956   def _2D : N2VShiftIns<0b1, u, opcode, asmop, "2d", VPR128, v2i64, imm0_63,
1957                         int_aarch64_neon_vsli> {
1958     let Inst{22} = 0b1;
1959   }
1960 }
1961
1962 // shift right insert (vector by immediate)
1963 multiclass NeonI_N2VShRIns<bit u, bits<5> opcode, string asmop> {
1964     // 64-bit vector types.
1965   def _8B : N2VShiftIns<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1966                         int_aarch64_neon_vsri> {
1967     let Inst{22-19} = 0b0001;
1968   }
1969
1970   def _4H : N2VShiftIns<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1971                         int_aarch64_neon_vsri> {
1972     let Inst{22-20} = 0b001;
1973   }
1974
1975   def _2S : N2VShiftIns<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1976                         int_aarch64_neon_vsri> {
1977     let Inst{22-21} = 0b01;
1978   }
1979
1980     // 128-bit vector types
1981   def _16B : N2VShiftIns<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1982                          int_aarch64_neon_vsri> {
1983     let Inst{22-19} = 0b0001;
1984   }
1985
1986   def _8H : N2VShiftIns<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1987                         int_aarch64_neon_vsri> {
1988     let Inst{22-20} = 0b001;
1989   }
1990
1991   def _4S : N2VShiftIns<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1992                         int_aarch64_neon_vsri> {
1993     let Inst{22-21} = 0b01;
1994   }
1995
1996   def _2D : N2VShiftIns<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1997                         int_aarch64_neon_vsri> {
1998     let Inst{22} = 0b1;
1999   }
2000 }
2001
2002 // Shift left and insert
2003 defm SLIvvi   : NeonI_N2VShLIns<0b1, 0b01010, "sli">;
2004
2005 // Shift right and insert
2006 defm SRIvvi   : NeonI_N2VShRIns<0b1, 0b01000, "sri">;
2007
2008 class N2VShR_Narrow<bit q, bit u, bits<5> opcode, string asmop, string DestT,
2009                     string SrcT, Operand ImmTy>
2010   : NeonI_2VShiftImm<q, u, opcode,
2011                      (outs VPR64:$Rd), (ins VPR128:$Rn, ImmTy:$Imm),
2012                      asmop # "\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
2013                      [], NoItinerary>;
2014
2015 class N2VShR_Narrow_Hi<bit q, bit u, bits<5> opcode, string asmop, string DestT,
2016                        string SrcT, Operand ImmTy>
2017   : NeonI_2VShiftImm<q, u, opcode, (outs VPR128:$Rd),
2018                      (ins VPR128:$src, VPR128:$Rn, ImmTy:$Imm),
2019                      asmop # "\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
2020                      [], NoItinerary> {
2021   let Constraints = "$src = $Rd";
2022 }
2023
2024 // left long shift by immediate
2025 multiclass NeonI_N2VShR_Narrow<bit u, bits<5> opcode, string asmop> {
2026   def _8B : N2VShR_Narrow<0b0, u, opcode, asmop, "8b", "8h", shr_imm8> {
2027     let Inst{22-19} = 0b0001;
2028   }
2029
2030   def _4H : N2VShR_Narrow<0b0, u, opcode, asmop, "4h", "4s", shr_imm16> {
2031     let Inst{22-20} = 0b001;
2032   }
2033
2034   def _2S : N2VShR_Narrow<0b0, u, opcode, asmop, "2s", "2d", shr_imm32> {
2035     let Inst{22-21} = 0b01;
2036   }
2037
2038   // Shift Narrow High
2039   def _16B : N2VShR_Narrow_Hi<0b1, u, opcode, asmop # "2", "16b", "8h",
2040                               shr_imm8> {
2041     let Inst{22-19} = 0b0001;
2042   }
2043
2044   def _8H : N2VShR_Narrow_Hi<0b1, u, opcode, asmop # "2", "8h", "4s",
2045                              shr_imm16> {
2046     let Inst{22-20} = 0b001;
2047   }
2048
2049   def _4S : N2VShR_Narrow_Hi<0b1, u, opcode, asmop # "2", "4s", "2d",
2050                              shr_imm32> {
2051     let Inst{22-21} = 0b01;
2052   }
2053 }
2054
2055 // Shift right narrow
2056 defm SHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10000, "shrn">;
2057
2058 // Shift right narrow (prefix Q is saturating, prefix R is rounding)
2059 defm QSHRUNvvi :NeonI_N2VShR_Narrow<0b1, 0b10000, "sqshrun">;
2060 defm RSHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10001, "rshrn">;
2061 defm QRSHRUNvvi : NeonI_N2VShR_Narrow<0b1, 0b10001, "sqrshrun">;
2062 defm SQSHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10010, "sqshrn">;
2063 defm UQSHRNvvi : NeonI_N2VShR_Narrow<0b1, 0b10010, "uqshrn">;
2064 defm SQRSHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10011, "sqrshrn">;
2065 defm UQRSHRNvvi : NeonI_N2VShR_Narrow<0b1, 0b10011, "uqrshrn">;
2066
2067 def Neon_combine_2D : PatFrag<(ops node:$Rm, node:$Rn),
2068                               (v2i64 (concat_vectors (v1i64 node:$Rm),
2069                                                      (v1i64 node:$Rn)))>;
2070 def Neon_combine_8H : PatFrag<(ops node:$Rm, node:$Rn),
2071                               (v8i16 (concat_vectors (v4i16 node:$Rm),
2072                                                      (v4i16 node:$Rn)))>;
2073 def Neon_combine_4S : PatFrag<(ops node:$Rm, node:$Rn),
2074                               (v4i32 (concat_vectors (v2i32 node:$Rm),
2075                                                      (v2i32 node:$Rn)))>;
2076 def Neon_combine_4f : PatFrag<(ops node:$Rm, node:$Rn),
2077                               (v4f32 (concat_vectors (v2f32 node:$Rm),
2078                                                      (v2f32 node:$Rn)))>;
2079 def Neon_combine_2d : PatFrag<(ops node:$Rm, node:$Rn),
2080                               (v2f64 (concat_vectors (v1f64 node:$Rm),
2081                                                      (v1f64 node:$Rn)))>;
2082
2083 def Neon_lshrImm8H : PatFrag<(ops node:$lhs, node:$rhs),
2084                              (v8i16 (srl (v8i16 node:$lhs),
2085                                (v8i16 (Neon_vdup (i32 node:$rhs)))))>;
2086 def Neon_lshrImm4S : PatFrag<(ops node:$lhs, node:$rhs),
2087                              (v4i32 (srl (v4i32 node:$lhs),
2088                                (v4i32 (Neon_vdup (i32 node:$rhs)))))>;
2089 def Neon_lshrImm2D : PatFrag<(ops node:$lhs, node:$rhs),
2090                              (v2i64 (srl (v2i64 node:$lhs),
2091                                (v2i64 (Neon_vdup (i32 node:$rhs)))))>;
2092 def Neon_ashrImm8H : PatFrag<(ops node:$lhs, node:$rhs),
2093                              (v8i16 (sra (v8i16 node:$lhs),
2094                                (v8i16 (Neon_vdup (i32 node:$rhs)))))>;
2095 def Neon_ashrImm4S : PatFrag<(ops node:$lhs, node:$rhs),
2096                              (v4i32 (sra (v4i32 node:$lhs),
2097                                (v4i32 (Neon_vdup (i32 node:$rhs)))))>;
2098 def Neon_ashrImm2D : PatFrag<(ops node:$lhs, node:$rhs),
2099                              (v2i64 (sra (v2i64 node:$lhs),
2100                                (v2i64 (Neon_vdup (i32 node:$rhs)))))>;
2101
2102 // Normal shift right narrow is matched by IR (srl/sra, trunc, concat_vectors)
2103 multiclass Neon_shiftNarrow_patterns<string shr> {
2104   def : Pat<(v8i8 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm8H") VPR128:$Rn,
2105               (i32 imm:$Imm)))),
2106             (SHRNvvi_8B VPR128:$Rn, imm:$Imm)>;
2107   def : Pat<(v4i16 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm4S") VPR128:$Rn,
2108               (i32 imm:$Imm)))),
2109             (SHRNvvi_4H VPR128:$Rn, imm:$Imm)>;
2110   def : Pat<(v2i32 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm2D") VPR128:$Rn,
2111               (i32 imm:$Imm)))),
2112             (SHRNvvi_2S VPR128:$Rn, imm:$Imm)>;
2113
2114   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src), (v1i64 (bitconvert
2115               (v8i8 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm8H")
2116                 VPR128:$Rn, (i32 imm:$Imm))))))),
2117             (SHRNvvi_16B (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64)),
2118                          VPR128:$Rn, imm:$Imm)>;
2119   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src), (v1i64 (bitconvert
2120               (v4i16 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm4S")
2121                 VPR128:$Rn, (i32 imm:$Imm))))))),
2122             (SHRNvvi_8H (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2123                         VPR128:$Rn, imm:$Imm)>;
2124   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src), (v1i64 (bitconvert
2125               (v2i32 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm2D")
2126                 VPR128:$Rn, (i32 imm:$Imm))))))),
2127             (SHRNvvi_4S (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2128                         VPR128:$Rn, imm:$Imm)>;
2129 }
2130
2131 multiclass Neon_shiftNarrow_QR_patterns<SDPatternOperator op, string prefix> {
2132   def : Pat<(v8i8 (op (v8i16 VPR128:$Rn), imm:$Imm)),
2133             (!cast<Instruction>(prefix # "_8B") VPR128:$Rn, imm:$Imm)>;
2134   def : Pat<(v4i16 (op (v4i32 VPR128:$Rn), imm:$Imm)),
2135             (!cast<Instruction>(prefix # "_4H") VPR128:$Rn, imm:$Imm)>;
2136   def : Pat<(v2i32 (op (v2i64 VPR128:$Rn), imm:$Imm)),
2137             (!cast<Instruction>(prefix # "_2S") VPR128:$Rn, imm:$Imm)>;
2138
2139   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2140                 (v1i64 (bitconvert (v8i8 (op (v8i16 VPR128:$Rn), imm:$Imm))))),
2141             (!cast<Instruction>(prefix # "_16B")
2142                 (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2143                 VPR128:$Rn, imm:$Imm)>;
2144   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2145                 (v1i64 (bitconvert (v4i16 (op (v4i32 VPR128:$Rn), imm:$Imm))))),
2146             (!cast<Instruction>(prefix # "_8H")
2147                 (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2148                 VPR128:$Rn, imm:$Imm)>;
2149   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2150                 (v1i64 (bitconvert (v2i32 (op (v2i64 VPR128:$Rn), imm:$Imm))))),
2151             (!cast<Instruction>(prefix # "_4S")
2152                   (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2153                   VPR128:$Rn, imm:$Imm)>;
2154 }
2155
2156 defm : Neon_shiftNarrow_patterns<"lshr">;
2157 defm : Neon_shiftNarrow_patterns<"ashr">;
2158
2159 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqshrun, "QSHRUNvvi">;
2160 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vrshrn, "RSHRNvvi">;
2161 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqrshrun, "QRSHRUNvvi">;
2162 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqshrn, "SQSHRNvvi">;
2163 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vuqshrn, "UQSHRNvvi">;
2164 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqrshrn, "SQRSHRNvvi">;
2165 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vuqrshrn, "UQRSHRNvvi">;
2166
2167 // Convert fix-point and float-pointing
2168 class N2VCvt_Fx<bit q, bit u, bits<5> opcode, string asmop, string T,
2169                 RegisterOperand VPRC, ValueType DestTy, ValueType SrcTy,
2170                 Operand ImmTy, SDPatternOperator IntOp>
2171   : NeonI_2VShiftImm<q, u, opcode,
2172                      (outs VPRC:$Rd), (ins VPRC:$Rn, ImmTy:$Imm),
2173                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
2174                      [(set (DestTy VPRC:$Rd), (DestTy (IntOp (SrcTy VPRC:$Rn),
2175                        (i32 imm:$Imm))))],
2176                      NoItinerary>;
2177
2178 multiclass NeonI_N2VCvt_Fx2fp<bit u, bits<5> opcode, string asmop,
2179                               SDPatternOperator IntOp> {
2180   def _2S : N2VCvt_Fx<0, u, opcode, asmop, "2s", VPR64, v2f32, v2i32,
2181                       shr_imm32, IntOp> {
2182     let Inst{22-21} = 0b01;
2183   }
2184
2185   def _4S : N2VCvt_Fx<1, u, opcode, asmop, "4s", VPR128, v4f32, v4i32,
2186                       shr_imm32, IntOp> {
2187     let Inst{22-21} = 0b01;
2188   }
2189
2190   def _2D : N2VCvt_Fx<1, u, opcode, asmop, "2d", VPR128, v2f64, v2i64,
2191                       shr_imm64, IntOp> {
2192     let Inst{22} = 0b1;
2193   }
2194 }
2195
2196 multiclass NeonI_N2VCvt_Fp2fx<bit u, bits<5> opcode, string asmop,
2197                               SDPatternOperator IntOp> {
2198   def _2S : N2VCvt_Fx<0, u, opcode, asmop, "2s", VPR64, v2i32, v2f32,
2199                       shr_imm32, IntOp> {
2200     let Inst{22-21} = 0b01;
2201   }
2202
2203   def _4S : N2VCvt_Fx<1, u, opcode, asmop, "4s", VPR128, v4i32, v4f32,
2204                       shr_imm32, IntOp> {
2205     let Inst{22-21} = 0b01;
2206   }
2207
2208   def _2D : N2VCvt_Fx<1, u, opcode, asmop, "2d", VPR128, v2i64, v2f64,
2209                       shr_imm64, IntOp> {
2210     let Inst{22} = 0b1;
2211   }
2212 }
2213
2214 // Convert fixed-point to floating-point
2215 defm VCVTxs2f : NeonI_N2VCvt_Fx2fp<0, 0b11100, "scvtf",
2216                                    int_arm_neon_vcvtfxs2fp>;
2217 defm VCVTxu2f : NeonI_N2VCvt_Fx2fp<1, 0b11100, "ucvtf",
2218                                    int_arm_neon_vcvtfxu2fp>;
2219
2220 // Convert floating-point to fixed-point
2221 defm VCVTf2xs : NeonI_N2VCvt_Fp2fx<0, 0b11111, "fcvtzs",
2222                                    int_arm_neon_vcvtfp2fxs>;
2223 defm VCVTf2xu : NeonI_N2VCvt_Fp2fx<1, 0b11111, "fcvtzu",
2224                                    int_arm_neon_vcvtfp2fxu>;
2225
2226 multiclass Neon_sshll2_0<SDNode ext>
2227 {
2228   def _v8i8  : PatFrag<(ops node:$Rn),
2229                        (v8i16 (ext (v8i8 (Neon_High16B node:$Rn))))>;
2230   def _v4i16 : PatFrag<(ops node:$Rn),
2231                        (v4i32 (ext (v4i16 (Neon_High8H node:$Rn))))>;
2232   def _v2i32 : PatFrag<(ops node:$Rn),
2233                        (v2i64 (ext (v2i32 (Neon_High4S node:$Rn))))>;
2234 }
2235
2236 defm NI_sext_high : Neon_sshll2_0<sext>;
2237 defm NI_zext_high : Neon_sshll2_0<zext>;
2238
2239
2240 //===----------------------------------------------------------------------===//
2241 // Multiclasses for NeonI_Across
2242 //===----------------------------------------------------------------------===//
2243
2244 // Variant 1
2245
2246 multiclass NeonI_2VAcross_1<bit u, bits<5> opcode,
2247                             string asmop, SDPatternOperator opnode>
2248 {
2249     def _1h8b:  NeonI_2VAcross<0b0, u, 0b00, opcode,
2250                 (outs FPR16:$Rd), (ins VPR64:$Rn),
2251                 asmop # "\t$Rd, $Rn.8b",
2252                 [(set (v1i16 FPR16:$Rd),
2253                     (v1i16 (opnode (v8i8 VPR64:$Rn))))],
2254                 NoItinerary>;
2255
2256     def _1h16b: NeonI_2VAcross<0b1, u, 0b00, opcode,
2257                 (outs FPR16:$Rd), (ins VPR128:$Rn),
2258                 asmop # "\t$Rd, $Rn.16b",
2259                 [(set (v1i16 FPR16:$Rd),
2260                     (v1i16 (opnode (v16i8 VPR128:$Rn))))],
2261                 NoItinerary>;
2262
2263     def _1s4h:  NeonI_2VAcross<0b0, u, 0b01, opcode,
2264                 (outs FPR32:$Rd), (ins VPR64:$Rn),
2265                 asmop # "\t$Rd, $Rn.4h",
2266                 [(set (v1i32 FPR32:$Rd),
2267                     (v1i32 (opnode (v4i16 VPR64:$Rn))))],
2268                 NoItinerary>;
2269
2270     def _1s8h:  NeonI_2VAcross<0b1, u, 0b01, opcode,
2271                 (outs FPR32:$Rd), (ins VPR128:$Rn),
2272                 asmop # "\t$Rd, $Rn.8h",
2273                 [(set (v1i32 FPR32:$Rd),
2274                     (v1i32 (opnode (v8i16 VPR128:$Rn))))],
2275                 NoItinerary>;
2276
2277     // _1d2s doesn't exist!
2278
2279     def _1d4s:  NeonI_2VAcross<0b1, u, 0b10, opcode,
2280                 (outs FPR64:$Rd), (ins VPR128:$Rn),
2281                 asmop # "\t$Rd, $Rn.4s",
2282                 [(set (v1i64 FPR64:$Rd),
2283                     (v1i64 (opnode (v4i32 VPR128:$Rn))))],
2284                 NoItinerary>;
2285 }
2286
2287 defm SADDLV : NeonI_2VAcross_1<0b0, 0b00011, "saddlv", int_aarch64_neon_saddlv>;
2288 defm UADDLV : NeonI_2VAcross_1<0b1, 0b00011, "uaddlv", int_aarch64_neon_uaddlv>;
2289
2290 // Variant 2
2291
2292 multiclass NeonI_2VAcross_2<bit u, bits<5> opcode,
2293                             string asmop, SDPatternOperator opnode>
2294 {
2295     def _1b8b:  NeonI_2VAcross<0b0, u, 0b00, opcode,
2296                 (outs FPR8:$Rd), (ins VPR64:$Rn),
2297                 asmop # "\t$Rd, $Rn.8b",
2298                 [(set (v1i8 FPR8:$Rd),
2299                     (v1i8 (opnode (v8i8 VPR64:$Rn))))],
2300                 NoItinerary>;
2301
2302     def _1b16b: NeonI_2VAcross<0b1, u, 0b00, opcode,
2303                 (outs FPR8:$Rd), (ins VPR128:$Rn),
2304                 asmop # "\t$Rd, $Rn.16b",
2305                 [(set (v1i8 FPR8:$Rd),
2306                     (v1i8 (opnode (v16i8 VPR128:$Rn))))],
2307                 NoItinerary>;
2308
2309     def _1h4h:  NeonI_2VAcross<0b0, u, 0b01, opcode,
2310                 (outs FPR16:$Rd), (ins VPR64:$Rn),
2311                 asmop # "\t$Rd, $Rn.4h",
2312                 [(set (v1i16 FPR16:$Rd),
2313                     (v1i16 (opnode (v4i16 VPR64:$Rn))))],
2314                 NoItinerary>;
2315
2316     def _1h8h:  NeonI_2VAcross<0b1, u, 0b01, opcode,
2317                 (outs FPR16:$Rd), (ins VPR128:$Rn),
2318                 asmop # "\t$Rd, $Rn.8h",
2319                 [(set (v1i16 FPR16:$Rd),
2320                     (v1i16 (opnode (v8i16 VPR128:$Rn))))],
2321                 NoItinerary>;
2322
2323     // _1s2s doesn't exist!
2324
2325     def _1s4s:  NeonI_2VAcross<0b1, u, 0b10, opcode,
2326                 (outs FPR32:$Rd), (ins VPR128:$Rn),
2327                 asmop # "\t$Rd, $Rn.4s",
2328                 [(set (v1i32 FPR32:$Rd),
2329                     (v1i32 (opnode (v4i32 VPR128:$Rn))))],
2330                 NoItinerary>;
2331 }
2332
2333 defm SMAXV : NeonI_2VAcross_2<0b0, 0b01010, "smaxv", int_aarch64_neon_smaxv>;
2334 defm UMAXV : NeonI_2VAcross_2<0b1, 0b01010, "umaxv", int_aarch64_neon_umaxv>;
2335
2336 defm SMINV : NeonI_2VAcross_2<0b0, 0b11010, "sminv", int_aarch64_neon_sminv>;
2337 defm UMINV : NeonI_2VAcross_2<0b1, 0b11010, "uminv", int_aarch64_neon_uminv>;
2338
2339 defm ADDV : NeonI_2VAcross_2<0b0, 0b11011, "addv", int_aarch64_neon_vaddv>;
2340
2341 // Variant 3
2342
2343 multiclass NeonI_2VAcross_3<bit u, bits<5> opcode, bits<2> size,
2344                             string asmop, SDPatternOperator opnode> {
2345     def _1s4s:  NeonI_2VAcross<0b1, u, size, opcode,
2346                 (outs FPR32:$Rd), (ins VPR128:$Rn),
2347                 asmop # "\t$Rd, $Rn.4s",
2348                 [(set (v1f32 FPR32:$Rd),
2349                     (v1f32 (opnode (v4f32 VPR128:$Rn))))],
2350                 NoItinerary>;
2351 }
2352
2353 defm FMAXNMV : NeonI_2VAcross_3<0b1, 0b01100, 0b00, "fmaxnmv",
2354                                 int_aarch64_neon_vmaxnmv>;
2355 defm FMINNMV : NeonI_2VAcross_3<0b1, 0b01100, 0b10, "fminnmv",
2356                                 int_aarch64_neon_vminnmv>;
2357
2358 defm FMAXV : NeonI_2VAcross_3<0b1, 0b01111, 0b00, "fmaxv",
2359                               int_aarch64_neon_vmaxv>;
2360 defm FMINV : NeonI_2VAcross_3<0b1, 0b01111, 0b10, "fminv",
2361                               int_aarch64_neon_vminv>;
2362
2363 // The followings are for instruction class (Perm)
2364
2365 class NeonI_Permute<bit q, bits<2> size, bits<3> opcode,
2366                     string asmop, RegisterOperand OpVPR, string OpS>
2367   : NeonI_Perm<q, size, opcode,
2368                (outs OpVPR:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2369                asmop # "\t$Rd." # OpS # ", $Rn." # OpS # ", $Rm." # OpS,
2370                [], NoItinerary>;
2371
2372 multiclass NeonI_Perm_pat<bits<3> opcode, string asmop> {
2373    def _8b  : NeonI_Permute<0b0, 0b00, opcode, asmop, VPR64,  "8b">;
2374    def _16b : NeonI_Permute<0b1, 0b00, opcode, asmop, VPR128, "16b">;
2375    def _4h  : NeonI_Permute<0b0, 0b01, opcode, asmop, VPR64,  "4h">;
2376    def _8h  : NeonI_Permute<0b1, 0b01, opcode, asmop, VPR128, "8h">;
2377    def _2s  : NeonI_Permute<0b0, 0b10, opcode, asmop, VPR64,  "2s">;
2378    def _4s  : NeonI_Permute<0b1, 0b10, opcode, asmop, VPR128, "4s">;
2379    def _2d  : NeonI_Permute<0b1, 0b11, opcode, asmop, VPR128, "2d">;
2380 }                          
2381
2382 defm UZP1vvv : NeonI_Perm_pat<0b001, "uzp1">;
2383 defm TRN1vvv : NeonI_Perm_pat<0b010, "trn1">;
2384 defm ZIP1vvv : NeonI_Perm_pat<0b011, "zip1">;
2385 defm UZP2vvv : NeonI_Perm_pat<0b101, "uzp2">;
2386 defm TRN2vvv : NeonI_Perm_pat<0b110, "trn2">;
2387 defm ZIP2vvv : NeonI_Perm_pat<0b111, "zip2">;
2388
2389 // Extract and Insert
2390 def NI_ei_i32 : PatFrag<(ops node:$Rn, node:$Rm, node:$Ext, node:$Ins),
2391                         (vector_insert node:$Rn,
2392                           (i32 (vector_extract node:$Rm, node:$Ext)),
2393                           node:$Ins)>;
2394
2395 def NI_ei_f32 : PatFrag<(ops node:$Rn, node:$Rm, node:$Ext, node:$Ins),
2396                         (vector_insert node:$Rn,
2397                           (f32 (vector_extract node:$Rm, node:$Ext)),
2398                           node:$Ins)>;
2399
2400 // uzp1
2401 def : Pat<(v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2402           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2403           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2404           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2405           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2406           (v16i8 VPR128:$Rn),
2407           (v16i8 VPR128:$Rn), 2,  1)),
2408           (v16i8 VPR128:$Rn), 4,  2)),
2409           (v16i8 VPR128:$Rn), 6,  3)),
2410           (v16i8 VPR128:$Rn), 8,  4)),
2411           (v16i8 VPR128:$Rn), 10, 5)),
2412           (v16i8 VPR128:$Rn), 12, 6)),
2413           (v16i8 VPR128:$Rn), 14, 7)),
2414           (v16i8 VPR128:$Rm), 0,  8)),
2415           (v16i8 VPR128:$Rm), 2,  9)),
2416           (v16i8 VPR128:$Rm), 4,  10)),
2417           (v16i8 VPR128:$Rm), 6,  11)),
2418           (v16i8 VPR128:$Rm), 8,  12)),
2419           (v16i8 VPR128:$Rm), 10, 13)),
2420           (v16i8 VPR128:$Rm), 12, 14)),
2421           (v16i8 VPR128:$Rm), 14, 15)),
2422           (UZP1vvv_16b VPR128:$Rn, VPR128:$Rm)>;
2423
2424 class NI_Uzp1_v8<ValueType Ty, RegisterOperand VPR, Instruction INST>
2425   : Pat<(Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2426         (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2427         (Ty VPR:$Rn),
2428         (Ty VPR:$Rn), 2, 1)),
2429         (Ty VPR:$Rn), 4, 2)),
2430         (Ty VPR:$Rn), 6, 3)),
2431         (Ty VPR:$Rm), 0, 4)),
2432         (Ty VPR:$Rm), 2, 5)),
2433         (Ty VPR:$Rm), 4, 6)),
2434         (Ty VPR:$Rm), 6, 7)),
2435         (INST VPR:$Rn, VPR:$Rm)>;
2436
2437 def : NI_Uzp1_v8<v8i8, VPR64, UZP1vvv_8b>;
2438 def : NI_Uzp1_v8<v8i16, VPR128, UZP1vvv_8h>;
2439
2440 class NI_Uzp1_v4<ValueType Ty, RegisterOperand VPR, Instruction INST,
2441                  PatFrag ei>
2442   : Pat<(Ty (ei (Ty (ei (Ty (ei
2443         (Ty VPR:$Rn),
2444         (Ty VPR:$Rn), 2, 1)),
2445         (Ty VPR:$Rm), 0, 2)),
2446         (Ty VPR:$Rm), 2, 3)),
2447         (INST VPR:$Rn, VPR:$Rm)>;
2448
2449 def : NI_Uzp1_v4<v4i16, VPR64, UZP1vvv_4h, NI_ei_i32>;
2450 def : NI_Uzp1_v4<v4i32, VPR128, UZP1vvv_4s, NI_ei_i32>;
2451 def : NI_Uzp1_v4<v4f32, VPR128, UZP1vvv_4s, NI_ei_f32>;
2452
2453 // uzp2
2454 def : Pat<(v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2455           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2456           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2457           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2458           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 
2459           (v16i8 VPR128:$Rm),
2460           (v16i8 VPR128:$Rn), 1,  0)),
2461           (v16i8 VPR128:$Rn), 3,  1)),
2462           (v16i8 VPR128:$Rn), 5,  2)),
2463           (v16i8 VPR128:$Rn), 7,  3)),
2464           (v16i8 VPR128:$Rn), 9,  4)),
2465           (v16i8 VPR128:$Rn), 11, 5)),
2466           (v16i8 VPR128:$Rn), 13, 6)),
2467           (v16i8 VPR128:$Rn), 15, 7)),
2468           (v16i8 VPR128:$Rm), 1,  8)),
2469           (v16i8 VPR128:$Rm), 3,  9)),
2470           (v16i8 VPR128:$Rm), 5,  10)),
2471           (v16i8 VPR128:$Rm), 7,  11)),
2472           (v16i8 VPR128:$Rm), 9,  12)),
2473           (v16i8 VPR128:$Rm), 11, 13)),
2474           (v16i8 VPR128:$Rm), 13, 14)),
2475           (UZP2vvv_16b VPR128:$Rn, VPR128:$Rm)>;
2476
2477 class NI_Uzp2_v8<ValueType Ty, RegisterOperand VPR, Instruction INST>
2478   : Pat<(Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2479         (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2480         (Ty VPR:$Rm),
2481         (Ty VPR:$Rn), 1, 0)),
2482         (Ty VPR:$Rn), 3, 1)),
2483         (Ty VPR:$Rn), 5, 2)),
2484         (Ty VPR:$Rn), 7, 3)),
2485         (Ty VPR:$Rm), 1, 4)),
2486         (Ty VPR:$Rm), 3, 5)),
2487         (Ty VPR:$Rm), 5, 6)),
2488         (INST VPR:$Rn, VPR:$Rm)>;
2489
2490 def : NI_Uzp2_v8<v8i8, VPR64, UZP2vvv_8b>;
2491 def : NI_Uzp2_v8<v8i16, VPR128, UZP2vvv_8h>;
2492
2493 class NI_Uzp2_v4<ValueType Ty, RegisterOperand VPR, Instruction INST,
2494                  PatFrag ei>
2495   : Pat<(Ty (ei (Ty (ei (Ty (ei
2496         (Ty VPR:$Rm),
2497         (Ty VPR:$Rn), 1, 0)),
2498         (Ty VPR:$Rn), 3, 1)),
2499         (Ty VPR:$Rm), 1, 2)),
2500         (INST VPR:$Rn, VPR:$Rm)>;
2501
2502 def : NI_Uzp2_v4<v4i16, VPR64, UZP2vvv_4h, NI_ei_i32>;
2503 def : NI_Uzp2_v4<v4i32, VPR128, UZP2vvv_4s, NI_ei_i32>;
2504 def : NI_Uzp2_v4<v4f32, VPR128, UZP2vvv_4s, NI_ei_f32>;
2505
2506 // zip1
2507 def : Pat<(v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2508           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2509           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2510           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2511           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2512           (v16i8 VPR128:$Rn),
2513           (v16i8 VPR128:$Rm), 0, 1)),
2514           (v16i8 VPR128:$Rn), 1, 2)),
2515           (v16i8 VPR128:$Rm), 1, 3)),
2516           (v16i8 VPR128:$Rn), 2, 4)),
2517           (v16i8 VPR128:$Rm), 2, 5)),
2518           (v16i8 VPR128:$Rn), 3, 6)),
2519           (v16i8 VPR128:$Rm), 3, 7)),
2520           (v16i8 VPR128:$Rn), 4, 8)),
2521           (v16i8 VPR128:$Rm), 4, 9)),
2522           (v16i8 VPR128:$Rn), 5, 10)),
2523           (v16i8 VPR128:$Rm), 5, 11)),
2524           (v16i8 VPR128:$Rn), 6, 12)),
2525           (v16i8 VPR128:$Rm), 6, 13)),
2526           (v16i8 VPR128:$Rn), 7, 14)),
2527           (v16i8 VPR128:$Rm), 7, 15)),
2528           (ZIP1vvv_16b VPR128:$Rn, VPR128:$Rm)>;
2529
2530 class NI_Zip1_v8<ValueType Ty, RegisterOperand VPR, Instruction INST>
2531   : Pat<(Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2532         (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2533         (Ty VPR:$Rn),
2534         (Ty VPR:$Rm), 0, 1)),
2535         (Ty VPR:$Rn), 1, 2)),
2536         (Ty VPR:$Rm), 1, 3)),
2537         (Ty VPR:$Rn), 2, 4)),
2538         (Ty VPR:$Rm), 2, 5)),
2539         (Ty VPR:$Rn), 3, 6)),
2540         (Ty VPR:$Rm), 3, 7)),
2541         (INST VPR:$Rn, VPR:$Rm)>;
2542
2543 def : NI_Zip1_v8<v8i8, VPR64, ZIP1vvv_8b>;
2544 def : NI_Zip1_v8<v8i16, VPR128, ZIP1vvv_8h>;
2545
2546 class NI_Zip1_v4<ValueType Ty, RegisterOperand VPR, Instruction INST,
2547                  PatFrag ei>
2548   : Pat<(Ty (ei (Ty (ei (Ty (ei
2549         (Ty VPR:$Rn),
2550         (Ty VPR:$Rm), 0, 1)),
2551         (Ty VPR:$Rn), 1, 2)),
2552         (Ty VPR:$Rm), 1, 3)),
2553         (INST VPR:$Rn, VPR:$Rm)>;
2554
2555 def : NI_Zip1_v4<v4i16, VPR64, ZIP1vvv_4h, NI_ei_i32>;
2556 def : NI_Zip1_v4<v4i32, VPR128, ZIP1vvv_4s, NI_ei_i32>;
2557 def : NI_Zip1_v4<v4f32, VPR128, ZIP1vvv_4s, NI_ei_f32>;
2558
2559 // zip2
2560 def : Pat<(v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2561           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2562           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2563           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2564           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2565           (v16i8 VPR128:$Rm),
2566           (v16i8 VPR128:$Rn), 8, 0)),
2567           (v16i8 VPR128:$Rm), 8, 1)),
2568           (v16i8 VPR128:$Rn), 9, 2)),
2569           (v16i8 VPR128:$Rm), 9, 3)),
2570           (v16i8 VPR128:$Rn), 10, 4)),
2571           (v16i8 VPR128:$Rm), 10, 5)),
2572           (v16i8 VPR128:$Rn), 11, 6)),
2573           (v16i8 VPR128:$Rm), 11, 7)),
2574           (v16i8 VPR128:$Rn), 12, 8)),
2575           (v16i8 VPR128:$Rm), 12, 9)),
2576           (v16i8 VPR128:$Rn), 13, 10)),
2577           (v16i8 VPR128:$Rm), 13, 11)),
2578           (v16i8 VPR128:$Rn), 14, 12)),
2579           (v16i8 VPR128:$Rm), 14, 13)),
2580           (v16i8 VPR128:$Rn), 15, 14)),
2581           (ZIP2vvv_16b VPR128:$Rn, VPR128:$Rm)>;
2582
2583 class NI_Zip2_v8<ValueType Ty, RegisterOperand VPR, Instruction INST>
2584   : Pat<(Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2585         (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2586         (Ty VPR:$Rm),
2587         (Ty VPR:$Rn), 4, 0)),
2588         (Ty VPR:$Rm), 4, 1)),
2589         (Ty VPR:$Rn), 5, 2)),
2590         (Ty VPR:$Rm), 5, 3)),
2591         (Ty VPR:$Rn), 6, 4)),
2592         (Ty VPR:$Rm), 6, 5)),
2593         (Ty VPR:$Rn), 7, 6)),
2594         (INST VPR:$Rn, VPR:$Rm)>;
2595
2596 def : NI_Zip2_v8<v8i8, VPR64, ZIP2vvv_8b>;
2597 def : NI_Zip2_v8<v8i16, VPR128, ZIP2vvv_8h>;
2598
2599 class NI_Zip2_v4<ValueType Ty, RegisterOperand VPR, Instruction INST,
2600                  PatFrag ei>
2601   : Pat<(Ty (ei (Ty (ei (Ty (ei
2602         (Ty VPR:$Rm),
2603         (Ty VPR:$Rn), 2, 0)),
2604         (Ty VPR:$Rm), 2, 1)),
2605         (Ty VPR:$Rn), 3, 2)),
2606         (INST VPR:$Rn, VPR:$Rm)>;
2607
2608 def : NI_Zip2_v4<v4i16, VPR64, ZIP2vvv_4h, NI_ei_i32>;
2609 def : NI_Zip2_v4<v4i32, VPR128, ZIP2vvv_4s, NI_ei_i32>;
2610 def : NI_Zip2_v4<v4f32, VPR128, ZIP2vvv_4s, NI_ei_f32>;
2611
2612 // trn1
2613 def : Pat<(v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2614           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2615           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2616           (v16i8 VPR128:$Rn),
2617           (v16i8 VPR128:$Rm), 0,  1)),
2618           (v16i8 VPR128:$Rm), 2,  3)),
2619           (v16i8 VPR128:$Rm), 4,  5)),
2620           (v16i8 VPR128:$Rm), 6,  7)),
2621           (v16i8 VPR128:$Rm), 8,  9)),
2622           (v16i8 VPR128:$Rm), 10, 11)),
2623           (v16i8 VPR128:$Rm), 12, 13)),
2624           (v16i8 VPR128:$Rm), 14, 15)),
2625           (TRN1vvv_16b VPR128:$Rn, VPR128:$Rm)>;
2626
2627 class NI_Trn1_v8<ValueType Ty, RegisterOperand VPR, Instruction INST>
2628   : Pat<(Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2629         (Ty VPR:$Rn),
2630         (Ty VPR:$Rm), 0, 1)),
2631         (Ty VPR:$Rm), 2, 3)),
2632         (Ty VPR:$Rm), 4, 5)),
2633         (Ty VPR:$Rm), 6, 7)),
2634         (INST VPR:$Rn, VPR:$Rm)>;
2635
2636 def : NI_Trn1_v8<v8i8, VPR64, TRN1vvv_8b>;
2637 def : NI_Trn1_v8<v8i16, VPR128, TRN1vvv_8h>;
2638
2639 class NI_Trn1_v4<ValueType Ty, RegisterOperand VPR, Instruction INST,
2640                  PatFrag ei>
2641   : Pat<(Ty (ei (Ty (ei
2642         (Ty VPR:$Rn),
2643         (Ty VPR:$Rm), 0, 1)),
2644         (Ty VPR:$Rm), 2, 3)),
2645         (INST VPR:$Rn, VPR:$Rm)>;
2646
2647 def : NI_Trn1_v4<v4i16, VPR64, TRN1vvv_4h, NI_ei_i32>;
2648 def : NI_Trn1_v4<v4i32, VPR128, TRN1vvv_4s, NI_ei_i32>;
2649 def : NI_Trn1_v4<v4f32, VPR128, TRN1vvv_4s, NI_ei_f32>;
2650
2651 // trn2
2652 def : Pat<(v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2653           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2654           (v16i8 (NI_ei_i32 (v16i8 (NI_ei_i32
2655           (v16i8 VPR128:$Rm),
2656           (v16i8 VPR128:$Rn), 1,  0)),
2657           (v16i8 VPR128:$Rn), 3,  2)),
2658           (v16i8 VPR128:$Rn), 5,  4)),
2659           (v16i8 VPR128:$Rn), 7,  6)),
2660           (v16i8 VPR128:$Rn), 9,  8)),
2661           (v16i8 VPR128:$Rn), 11, 10)),
2662           (v16i8 VPR128:$Rn), 13, 12)),
2663           (v16i8 VPR128:$Rn), 15, 14)),
2664           (TRN2vvv_16b VPR128:$Rn, VPR128:$Rm)>;
2665
2666 class NI_Trn2_v8<ValueType Ty, RegisterOperand VPR, Instruction INST>
2667   : Pat<(Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32 (Ty (NI_ei_i32
2668         (Ty VPR:$Rm),
2669         (Ty VPR:$Rn), 1, 0)),
2670         (Ty VPR:$Rn), 3, 2)),
2671         (Ty VPR:$Rn), 5, 4)),
2672         (Ty VPR:$Rn), 7, 6)),
2673         (INST VPR:$Rn, VPR:$Rm)>;
2674
2675 def : NI_Trn2_v8<v8i8, VPR64, TRN2vvv_8b>;
2676 def : NI_Trn2_v8<v8i16, VPR128, TRN2vvv_8h>;
2677
2678 class NI_Trn2_v4<ValueType Ty, RegisterOperand VPR, Instruction INST,
2679                  PatFrag ei>
2680   : Pat<(Ty (ei (Ty (ei
2681         (Ty VPR:$Rm),
2682         (Ty VPR:$Rn), 1, 0)),
2683         (Ty VPR:$Rn), 3, 2)),
2684         (INST VPR:$Rn, VPR:$Rm)>;
2685
2686 def : NI_Trn2_v4<v4i16, VPR64, TRN2vvv_4h, NI_ei_i32>;
2687 def : NI_Trn2_v4<v4i32, VPR128, TRN2vvv_4s, NI_ei_i32>;
2688 def : NI_Trn2_v4<v4f32, VPR128, TRN2vvv_4s, NI_ei_f32>;
2689
2690 // End of implementation for instruction class (Perm)
2691
2692 // The followings are for instruction class (3V Diff)
2693
2694 // normal long/long2 pattern
2695 class NeonI_3VDL<bit q, bit u, bits<2> size, bits<4> opcode,
2696                  string asmop, string ResS, string OpS,
2697                  SDPatternOperator opnode, SDPatternOperator ext,
2698                  RegisterOperand OpVPR,
2699                  ValueType ResTy, ValueType OpTy>
2700   : NeonI_3VDiff<q, u, size, opcode,
2701                  (outs VPR128:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2702                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2703                  [(set (ResTy VPR128:$Rd),
2704                     (ResTy (opnode (ResTy (ext (OpTy OpVPR:$Rn))),
2705                                    (ResTy (ext (OpTy OpVPR:$Rm))))))],
2706                  NoItinerary>;
2707
2708 multiclass NeonI_3VDL_s<bit u, bits<4> opcode,
2709                         string asmop, SDPatternOperator opnode,
2710                         bit Commutable = 0> {
2711   let isCommutable = Commutable in {
2712     def _8h8b : NeonI_3VDL<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2713                            opnode, sext, VPR64, v8i16, v8i8>;
2714     def _4s4h : NeonI_3VDL<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2715                            opnode, sext, VPR64, v4i32, v4i16>;
2716     def _2d2s : NeonI_3VDL<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2717                            opnode, sext, VPR64, v2i64, v2i32>;
2718   }
2719 }
2720
2721 multiclass NeonI_3VDL2_s<bit u, bits<4> opcode, string asmop,
2722                          SDPatternOperator opnode, bit Commutable = 0> {
2723   let isCommutable = Commutable in {
2724     def _8h16b : NeonI_3VDL<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2725                             opnode, NI_sext_high_v8i8, VPR128, v8i16, v16i8>;
2726     def _4s8h  : NeonI_3VDL<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2727                             opnode, NI_sext_high_v4i16, VPR128, v4i32, v8i16>;
2728     def _2d4s  : NeonI_3VDL<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2729                             opnode, NI_sext_high_v2i32, VPR128, v2i64, v4i32>;
2730   }
2731 }
2732
2733 multiclass NeonI_3VDL_u<bit u, bits<4> opcode, string asmop,
2734                         SDPatternOperator opnode, bit Commutable = 0> {
2735   let isCommutable = Commutable in {
2736     def _8h8b : NeonI_3VDL<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2737                            opnode, zext, VPR64, v8i16, v8i8>;
2738     def _4s4h : NeonI_3VDL<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2739                            opnode, zext, VPR64, v4i32, v4i16>;
2740     def _2d2s : NeonI_3VDL<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2741                            opnode, zext, VPR64, v2i64, v2i32>;
2742   }
2743 }
2744
2745 multiclass NeonI_3VDL2_u<bit u, bits<4> opcode, string asmop,
2746                          SDPatternOperator opnode, bit Commutable = 0> {
2747   let isCommutable = Commutable in {
2748     def _8h16b : NeonI_3VDL<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2749                             opnode, NI_zext_high_v8i8, VPR128, v8i16, v16i8>;
2750     def _4s8h : NeonI_3VDL<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2751                            opnode, NI_zext_high_v4i16, VPR128, v4i32, v8i16>;
2752     def _2d4s : NeonI_3VDL<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2753                            opnode, NI_zext_high_v2i32, VPR128, v2i64, v4i32>;
2754   }
2755 }
2756
2757 defm SADDLvvv :  NeonI_3VDL_s<0b0, 0b0000, "saddl", add, 1>;
2758 defm UADDLvvv :  NeonI_3VDL_u<0b1, 0b0000, "uaddl", add, 1>;
2759
2760 defm SADDL2vvv :  NeonI_3VDL2_s<0b0, 0b0000, "saddl2", add, 1>;
2761 defm UADDL2vvv :  NeonI_3VDL2_u<0b1, 0b0000, "uaddl2", add, 1>;
2762
2763 defm SSUBLvvv :  NeonI_3VDL_s<0b0, 0b0010, "ssubl", sub, 0>;
2764 defm USUBLvvv :  NeonI_3VDL_u<0b1, 0b0010, "usubl", sub, 0>;
2765
2766 defm SSUBL2vvv :  NeonI_3VDL2_s<0b0, 0b0010, "ssubl2", sub, 0>;
2767 defm USUBL2vvv :  NeonI_3VDL2_u<0b1, 0b0010, "usubl2", sub, 0>;
2768
2769 // normal wide/wide2 pattern
2770 class NeonI_3VDW<bit q, bit u, bits<2> size, bits<4> opcode,
2771                  string asmop, string ResS, string OpS,
2772                  SDPatternOperator opnode, SDPatternOperator ext,
2773                  RegisterOperand OpVPR,
2774                  ValueType ResTy, ValueType OpTy>
2775   : NeonI_3VDiff<q, u, size, opcode,
2776                  (outs VPR128:$Rd), (ins VPR128:$Rn, OpVPR:$Rm),
2777                  asmop # "\t$Rd." # ResS # ", $Rn." # ResS # ", $Rm." # OpS,
2778                  [(set (ResTy VPR128:$Rd),
2779                     (ResTy (opnode (ResTy VPR128:$Rn),
2780                                    (ResTy (ext (OpTy OpVPR:$Rm))))))],
2781                  NoItinerary>;
2782
2783 multiclass NeonI_3VDW_s<bit u, bits<4> opcode, string asmop,
2784                         SDPatternOperator opnode> {
2785   def _8h8b : NeonI_3VDW<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2786                          opnode, sext, VPR64, v8i16, v8i8>;
2787   def _4s4h : NeonI_3VDW<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2788                          opnode, sext, VPR64, v4i32, v4i16>;
2789   def _2d2s : NeonI_3VDW<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2790                          opnode, sext, VPR64, v2i64, v2i32>;
2791 }
2792
2793 defm SADDWvvv :  NeonI_3VDW_s<0b0, 0b0001, "saddw", add>;
2794 defm SSUBWvvv :  NeonI_3VDW_s<0b0, 0b0011, "ssubw", sub>;
2795
2796 multiclass NeonI_3VDW2_s<bit u, bits<4> opcode, string asmop,
2797                          SDPatternOperator opnode> {
2798   def _8h16b : NeonI_3VDW<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2799                           opnode, NI_sext_high_v8i8, VPR128, v8i16, v16i8>;
2800   def _4s8h  : NeonI_3VDW<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2801                           opnode, NI_sext_high_v4i16, VPR128, v4i32, v8i16>;
2802   def _2d4s  : NeonI_3VDW<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2803                           opnode, NI_sext_high_v2i32, VPR128, v2i64, v4i32>;
2804 }
2805
2806 defm SADDW2vvv :  NeonI_3VDW2_s<0b0, 0b0001, "saddw2", add>;
2807 defm SSUBW2vvv :  NeonI_3VDW2_s<0b0, 0b0011, "ssubw2", sub>;
2808
2809 multiclass NeonI_3VDW_u<bit u, bits<4> opcode, string asmop,
2810                         SDPatternOperator opnode> {
2811   def _8h8b : NeonI_3VDW<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2812                          opnode, zext, VPR64, v8i16, v8i8>;
2813   def _4s4h : NeonI_3VDW<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2814                          opnode, zext, VPR64, v4i32, v4i16>;
2815   def _2d2s : NeonI_3VDW<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2816                          opnode, zext, VPR64, v2i64, v2i32>;
2817 }
2818
2819 defm UADDWvvv :  NeonI_3VDW_u<0b1, 0b0001, "uaddw", add>;
2820 defm USUBWvvv :  NeonI_3VDW_u<0b1, 0b0011, "usubw", sub>;
2821
2822 multiclass NeonI_3VDW2_u<bit u, bits<4> opcode, string asmop,
2823                          SDPatternOperator opnode> {
2824   def _8h16b : NeonI_3VDW<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2825                           opnode, NI_zext_high_v8i8, VPR128, v8i16, v16i8>;
2826   def _4s8h : NeonI_3VDW<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2827                          opnode, NI_zext_high_v4i16, VPR128, v4i32, v8i16>;
2828   def _2d4s : NeonI_3VDW<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2829                          opnode, NI_zext_high_v2i32, VPR128, v2i64, v4i32>;
2830 }
2831
2832 defm UADDW2vvv :  NeonI_3VDW2_u<0b1, 0b0001, "uaddw2", add>;
2833 defm USUBW2vvv :  NeonI_3VDW2_u<0b1, 0b0011, "usubw2", sub>;
2834
2835 // Get the high half part of the vector element.
2836 multiclass NeonI_get_high {
2837   def _8h : PatFrag<(ops node:$Rn),
2838                     (v8i8 (trunc (v8i16 (srl (v8i16 node:$Rn),
2839                                              (v8i16 (Neon_vdup (i32 8)))))))>;
2840   def _4s : PatFrag<(ops node:$Rn),
2841                     (v4i16 (trunc (v4i32 (srl (v4i32 node:$Rn),
2842                                               (v4i32 (Neon_vdup (i32 16)))))))>;
2843   def _2d : PatFrag<(ops node:$Rn),
2844                     (v2i32 (trunc (v2i64 (srl (v2i64 node:$Rn),
2845                                               (v2i64 (Neon_vdup (i32 32)))))))>;
2846 }
2847
2848 defm NI_get_hi : NeonI_get_high;
2849
2850 // pattern for addhn/subhn with 2 operands
2851 class NeonI_3VDN_addhn_2Op<bit q, bit u, bits<2> size, bits<4> opcode,
2852                            string asmop, string ResS, string OpS,
2853                            SDPatternOperator opnode, SDPatternOperator get_hi,
2854                            ValueType ResTy, ValueType OpTy>
2855   : NeonI_3VDiff<q, u, size, opcode,
2856                  (outs VPR64:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
2857                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2858                  [(set (ResTy VPR64:$Rd),
2859                     (ResTy (get_hi
2860                       (OpTy (opnode (OpTy VPR128:$Rn),
2861                                     (OpTy VPR128:$Rm))))))],
2862                  NoItinerary>;
2863
2864 multiclass NeonI_3VDN_addhn_2Op<bit u, bits<4> opcode, string asmop,
2865                                 SDPatternOperator opnode, bit Commutable = 0> {
2866   let isCommutable = Commutable in {
2867     def _8b8h : NeonI_3VDN_addhn_2Op<0b0, u, 0b00, opcode, asmop, "8b", "8h",
2868                                      opnode, NI_get_hi_8h, v8i8, v8i16>;
2869     def _4h4s : NeonI_3VDN_addhn_2Op<0b0, u, 0b01, opcode, asmop, "4h", "4s",
2870                                      opnode, NI_get_hi_4s, v4i16, v4i32>;
2871     def _2s2d : NeonI_3VDN_addhn_2Op<0b0, u, 0b10, opcode, asmop, "2s", "2d",
2872                                      opnode, NI_get_hi_2d, v2i32, v2i64>;
2873   }
2874 }
2875
2876 defm ADDHNvvv  : NeonI_3VDN_addhn_2Op<0b0, 0b0100, "addhn", add, 1>;
2877 defm SUBHNvvv  : NeonI_3VDN_addhn_2Op<0b0, 0b0110, "subhn", sub, 0>;
2878
2879 // pattern for operation with 2 operands
2880 class NeonI_3VD_2Op<bit q, bit u, bits<2> size, bits<4> opcode,
2881                     string asmop, string ResS, string OpS,
2882                     SDPatternOperator opnode,
2883                     RegisterOperand ResVPR, RegisterOperand OpVPR,
2884                     ValueType ResTy, ValueType OpTy>
2885   : NeonI_3VDiff<q, u, size, opcode,
2886                  (outs ResVPR:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2887                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2888                  [(set (ResTy ResVPR:$Rd),
2889                     (ResTy (opnode (OpTy OpVPR:$Rn), (OpTy OpVPR:$Rm))))],
2890                  NoItinerary>;
2891
2892 // normal narrow pattern
2893 multiclass NeonI_3VDN_2Op<bit u, bits<4> opcode, string asmop,
2894                           SDPatternOperator opnode, bit Commutable = 0> {
2895   let isCommutable = Commutable in {
2896     def _8b8h : NeonI_3VD_2Op<0b0, u, 0b00, opcode, asmop, "8b", "8h",
2897                               opnode, VPR64, VPR128, v8i8, v8i16>;
2898     def _4h4s : NeonI_3VD_2Op<0b0, u, 0b01, opcode, asmop, "4h", "4s",
2899                               opnode, VPR64, VPR128, v4i16, v4i32>;
2900     def _2s2d : NeonI_3VD_2Op<0b0, u, 0b10, opcode, asmop, "2s", "2d",
2901                               opnode, VPR64, VPR128, v2i32, v2i64>;
2902   }
2903 }
2904
2905 defm RADDHNvvv : NeonI_3VDN_2Op<0b1, 0b0100, "raddhn", int_arm_neon_vraddhn, 1>;
2906 defm RSUBHNvvv : NeonI_3VDN_2Op<0b1, 0b0110, "rsubhn", int_arm_neon_vrsubhn, 0>;
2907
2908 // pattern for acle intrinsic with 3 operands
2909 class NeonI_3VDN_3Op<bit q, bit u, bits<2> size, bits<4> opcode,
2910                      string asmop, string ResS, string OpS>
2911   : NeonI_3VDiff<q, u, size, opcode,
2912                  (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn, VPR128:$Rm),
2913                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2914                  [], NoItinerary> {
2915   let Constraints = "$src = $Rd";
2916   let neverHasSideEffects = 1;
2917 }
2918
2919 multiclass NeonI_3VDN_3Op_v1<bit u, bits<4> opcode, string asmop> {
2920   def _16b8h : NeonI_3VDN_3Op<0b1, u, 0b00, opcode, asmop, "16b", "8h">;
2921   def _8h4s : NeonI_3VDN_3Op<0b1, u, 0b01, opcode, asmop, "8h", "4s">;
2922   def _4s2d : NeonI_3VDN_3Op<0b1, u, 0b10, opcode, asmop, "4s", "2d">;
2923 }
2924
2925 defm ADDHN2vvv  : NeonI_3VDN_3Op_v1<0b0, 0b0100, "addhn2">;
2926 defm SUBHN2vvv  : NeonI_3VDN_3Op_v1<0b0, 0b0110, "subhn2">;
2927
2928 defm RADDHN2vvv : NeonI_3VDN_3Op_v1<0b1, 0b0100, "raddhn2">;
2929 defm RSUBHN2vvv : NeonI_3VDN_3Op_v1<0b1, 0b0110, "rsubhn2">;
2930
2931 // Patterns have to be separate because there's a SUBREG_TO_REG in the output
2932 // part.
2933 class NarrowHighHalfPat<Instruction INST, ValueType DstTy, ValueType SrcTy,
2934                         SDPatternOperator coreop>
2935   : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2936                       (v1i64 (bitconvert (DstTy (coreop (SrcTy VPR128:$Rn),
2937                                                         (SrcTy VPR128:$Rm)))))),
2938         (INST (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2939               VPR128:$Rn, VPR128:$Rm)>;
2940
2941 // addhn2 patterns
2942 def : NarrowHighHalfPat<ADDHN2vvv_16b8h, v8i8,  v8i16,
2943           BinOpFrag<(NI_get_hi_8h (add node:$LHS, node:$RHS))>>;
2944 def : NarrowHighHalfPat<ADDHN2vvv_8h4s,  v4i16, v4i32,
2945           BinOpFrag<(NI_get_hi_4s (add node:$LHS, node:$RHS))>>;
2946 def : NarrowHighHalfPat<ADDHN2vvv_4s2d,  v2i32, v2i64,
2947           BinOpFrag<(NI_get_hi_2d (add node:$LHS, node:$RHS))>>;
2948
2949 // subhn2 patterns
2950 def : NarrowHighHalfPat<SUBHN2vvv_16b8h, v8i8,  v8i16,
2951           BinOpFrag<(NI_get_hi_8h (sub node:$LHS, node:$RHS))>>;
2952 def : NarrowHighHalfPat<SUBHN2vvv_8h4s,  v4i16, v4i32,
2953           BinOpFrag<(NI_get_hi_4s (sub node:$LHS, node:$RHS))>>;
2954 def : NarrowHighHalfPat<SUBHN2vvv_4s2d,  v2i32, v2i64,
2955           BinOpFrag<(NI_get_hi_2d (sub node:$LHS, node:$RHS))>>;
2956
2957 // raddhn2 patterns
2958 def : NarrowHighHalfPat<RADDHN2vvv_16b8h, v8i8,  v8i16, int_arm_neon_vraddhn>;
2959 def : NarrowHighHalfPat<RADDHN2vvv_8h4s,  v4i16, v4i32, int_arm_neon_vraddhn>;
2960 def : NarrowHighHalfPat<RADDHN2vvv_4s2d,  v2i32, v2i64, int_arm_neon_vraddhn>;
2961
2962 // rsubhn2 patterns
2963 def : NarrowHighHalfPat<RSUBHN2vvv_16b8h, v8i8,  v8i16, int_arm_neon_vrsubhn>;
2964 def : NarrowHighHalfPat<RSUBHN2vvv_8h4s,  v4i16, v4i32, int_arm_neon_vrsubhn>;
2965 def : NarrowHighHalfPat<RSUBHN2vvv_4s2d,  v2i32, v2i64, int_arm_neon_vrsubhn>;
2966
2967 // pattern that need to extend result
2968 class NeonI_3VDL_Ext<bit q, bit u, bits<2> size, bits<4> opcode,
2969                      string asmop, string ResS, string OpS,
2970                      SDPatternOperator opnode,
2971                      RegisterOperand OpVPR,
2972                      ValueType ResTy, ValueType OpTy, ValueType OpSTy>
2973   : NeonI_3VDiff<q, u, size, opcode,
2974                  (outs VPR128:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2975                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2976                  [(set (ResTy VPR128:$Rd),
2977                     (ResTy (zext (OpSTy (opnode (OpTy OpVPR:$Rn),
2978                                                 (OpTy OpVPR:$Rm))))))],
2979                  NoItinerary>;
2980
2981 multiclass NeonI_3VDL_zext<bit u, bits<4> opcode, string asmop,
2982                            SDPatternOperator opnode, bit Commutable = 0> {
2983   let isCommutable = Commutable in {
2984     def _8h8b : NeonI_3VDL_Ext<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2985                                opnode, VPR64, v8i16, v8i8, v8i8>;
2986     def _4s4h : NeonI_3VDL_Ext<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2987                                opnode, VPR64, v4i32, v4i16, v4i16>;
2988     def _2d2s : NeonI_3VDL_Ext<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2989                                opnode, VPR64, v2i64, v2i32, v2i32>;
2990   }
2991 }
2992
2993 defm SABDLvvv : NeonI_3VDL_zext<0b0, 0b0111, "sabdl", int_arm_neon_vabds, 1>;
2994 defm UABDLvvv : NeonI_3VDL_zext<0b1, 0b0111, "uabdl", int_arm_neon_vabdu, 1>;
2995
2996 multiclass NeonI_Op_High<SDPatternOperator op> {
2997   def _16B : PatFrag<(ops node:$Rn, node:$Rm),
2998                      (op (v8i8 (Neon_High16B node:$Rn)),
2999                          (v8i8 (Neon_High16B node:$Rm)))>;
3000   def _8H  : PatFrag<(ops node:$Rn, node:$Rm),
3001                      (op (v4i16 (Neon_High8H node:$Rn)),
3002                          (v4i16 (Neon_High8H node:$Rm)))>;
3003   def _4S  : PatFrag<(ops node:$Rn, node:$Rm),
3004                      (op (v2i32 (Neon_High4S node:$Rn)),
3005                          (v2i32 (Neon_High4S node:$Rm)))>;
3006 }
3007
3008 defm NI_sabdl_hi : NeonI_Op_High<int_arm_neon_vabds>;
3009 defm NI_uabdl_hi : NeonI_Op_High<int_arm_neon_vabdu>;
3010 defm NI_smull_hi : NeonI_Op_High<int_arm_neon_vmulls>;
3011 defm NI_umull_hi : NeonI_Op_High<int_arm_neon_vmullu>;
3012 defm NI_qdmull_hi : NeonI_Op_High<int_arm_neon_vqdmull>;
3013 defm NI_pmull_hi : NeonI_Op_High<int_arm_neon_vmullp>;
3014
3015 multiclass NeonI_3VDL_Abd_u<bit u, bits<4> opcode, string asmop, string opnode,
3016                             bit Commutable = 0> {
3017   let isCommutable = Commutable in {
3018     def _8h8b  : NeonI_3VDL_Ext<0b1, u, 0b00, opcode, asmop, "8h", "16b",
3019                                 !cast<PatFrag>(opnode # "_16B"),
3020                                 VPR128, v8i16, v16i8, v8i8>;
3021     def _4s4h  : NeonI_3VDL_Ext<0b1, u, 0b01, opcode, asmop, "4s", "8h",
3022                                 !cast<PatFrag>(opnode # "_8H"),
3023                                 VPR128, v4i32, v8i16, v4i16>;
3024     def _2d2s  : NeonI_3VDL_Ext<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3025                                 !cast<PatFrag>(opnode # "_4S"),
3026                                 VPR128, v2i64, v4i32, v2i32>;
3027   }
3028 }
3029
3030 defm SABDL2vvv : NeonI_3VDL_Abd_u<0b0, 0b0111, "sabdl2", "NI_sabdl_hi", 1>;
3031 defm UABDL2vvv : NeonI_3VDL_Abd_u<0b1, 0b0111, "uabdl2", "NI_uabdl_hi", 1>;
3032
3033 // For pattern that need two operators being chained.
3034 class NeonI_3VDL_Aba<bit q, bit u, bits<2> size, bits<4> opcode,
3035                      string asmop, string ResS, string OpS, 
3036                      SDPatternOperator opnode, SDPatternOperator subop,
3037                      RegisterOperand OpVPR,
3038                      ValueType ResTy, ValueType OpTy, ValueType OpSTy>
3039   : NeonI_3VDiff<q, u, size, opcode,
3040                  (outs VPR128:$Rd), (ins VPR128:$src, OpVPR:$Rn, OpVPR:$Rm),
3041                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS, 
3042                  [(set (ResTy VPR128:$Rd),
3043                     (ResTy (opnode
3044                       (ResTy VPR128:$src), 
3045                       (ResTy (zext (OpSTy (subop (OpTy OpVPR:$Rn),
3046                                                  (OpTy OpVPR:$Rm))))))))],
3047                  NoItinerary> {
3048   let Constraints = "$src = $Rd";
3049 }
3050
3051 multiclass NeonI_3VDL_Aba_v1<bit u, bits<4> opcode, string asmop,
3052                              SDPatternOperator opnode, SDPatternOperator subop>{
3053   def _8h8b : NeonI_3VDL_Aba<0b0, u, 0b00, opcode, asmop, "8h", "8b",
3054                              opnode, subop, VPR64, v8i16, v8i8, v8i8>;
3055   def _4s4h : NeonI_3VDL_Aba<0b0, u, 0b01, opcode, asmop, "4s", "4h",
3056                              opnode, subop, VPR64, v4i32, v4i16, v4i16>;
3057   def _2d2s : NeonI_3VDL_Aba<0b0, u, 0b10, opcode, asmop, "2d", "2s",
3058                              opnode, subop, VPR64, v2i64, v2i32, v2i32>;
3059 }
3060
3061 defm SABALvvv :  NeonI_3VDL_Aba_v1<0b0, 0b0101, "sabal",
3062                                    add, int_arm_neon_vabds>;
3063 defm UABALvvv :  NeonI_3VDL_Aba_v1<0b1, 0b0101, "uabal",
3064                                    add, int_arm_neon_vabdu>;
3065
3066 multiclass NeonI_3VDL2_Aba_v1<bit u, bits<4> opcode, string asmop,
3067                               SDPatternOperator opnode, string subop> {
3068   def _8h8b : NeonI_3VDL_Aba<0b1, u, 0b00, opcode, asmop, "8h", "16b",
3069                              opnode, !cast<PatFrag>(subop # "_16B"), 
3070                              VPR128, v8i16, v16i8, v8i8>;
3071   def _4s4h : NeonI_3VDL_Aba<0b1, u, 0b01, opcode, asmop, "4s", "8h",
3072                              opnode, !cast<PatFrag>(subop # "_8H"), 
3073                              VPR128, v4i32, v8i16, v4i16>;
3074   def _2d2s : NeonI_3VDL_Aba<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3075                              opnode, !cast<PatFrag>(subop # "_4S"), 
3076                              VPR128, v2i64, v4i32, v2i32>;
3077 }
3078
3079 defm SABAL2vvv :  NeonI_3VDL2_Aba_v1<0b0, 0b0101, "sabal2", add,
3080                                      "NI_sabdl_hi">;
3081 defm UABAL2vvv :  NeonI_3VDL2_Aba_v1<0b1, 0b0101, "uabal2", add,
3082                                      "NI_uabdl_hi">;
3083
3084 // Long pattern with 2 operands
3085 multiclass NeonI_3VDL_2Op<bit u, bits<4> opcode, string asmop,
3086                           SDPatternOperator opnode, bit Commutable = 0> {
3087   let isCommutable = Commutable in {
3088     def _8h8b : NeonI_3VD_2Op<0b0, u, 0b00, opcode, asmop, "8h", "8b",
3089                               opnode, VPR128, VPR64, v8i16, v8i8>;
3090     def _4s4h : NeonI_3VD_2Op<0b0, u, 0b01, opcode, asmop, "4s", "4h",
3091                               opnode, VPR128, VPR64, v4i32, v4i16>;
3092     def _2d2s : NeonI_3VD_2Op<0b0, u, 0b10, opcode, asmop, "2d", "2s",
3093                               opnode, VPR128, VPR64, v2i64, v2i32>;
3094   }
3095 }
3096
3097 defm SMULLvvv :  NeonI_3VDL_2Op<0b0, 0b1100, "smull", int_arm_neon_vmulls, 1>;
3098 defm UMULLvvv :  NeonI_3VDL_2Op<0b1, 0b1100, "umull", int_arm_neon_vmullu, 1>;
3099
3100 class NeonI_3VDL2_2Op_mull<bit q, bit u, bits<2> size, bits<4> opcode,
3101                            string asmop, string ResS, string OpS,
3102                            SDPatternOperator opnode,
3103                            ValueType ResTy, ValueType OpTy>
3104   : NeonI_3VDiff<q, u, size, opcode,
3105                  (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
3106                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
3107                  [(set (ResTy VPR128:$Rd),
3108                     (ResTy (opnode (OpTy VPR128:$Rn), (OpTy VPR128:$Rm))))],
3109                  NoItinerary>;
3110
3111 multiclass NeonI_3VDL2_2Op_mull_v1<bit u, bits<4> opcode, string asmop,
3112                                    string opnode, bit Commutable = 0> {
3113   let isCommutable = Commutable in {
3114     def _8h16b : NeonI_3VDL2_2Op_mull<0b1, u, 0b00, opcode, asmop, "8h", "16b",
3115                                       !cast<PatFrag>(opnode # "_16B"),
3116                                       v8i16, v16i8>;
3117     def _4s8h : NeonI_3VDL2_2Op_mull<0b1, u, 0b01, opcode, asmop, "4s", "8h",
3118                                      !cast<PatFrag>(opnode # "_8H"),
3119                                      v4i32, v8i16>;
3120     def _2d4s : NeonI_3VDL2_2Op_mull<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3121                                      !cast<PatFrag>(opnode # "_4S"),
3122                                      v2i64, v4i32>;
3123   }
3124 }
3125
3126 defm SMULL2vvv : NeonI_3VDL2_2Op_mull_v1<0b0, 0b1100, "smull2",
3127                                          "NI_smull_hi", 1>;
3128 defm UMULL2vvv : NeonI_3VDL2_2Op_mull_v1<0b1, 0b1100, "umull2",
3129                                          "NI_umull_hi", 1>;
3130
3131 // Long pattern with 3 operands
3132 class NeonI_3VDL_3Op<bit q, bit u, bits<2> size, bits<4> opcode,
3133                      string asmop, string ResS, string OpS,
3134                      SDPatternOperator opnode,
3135                      ValueType ResTy, ValueType OpTy>
3136   : NeonI_3VDiff<q, u, size, opcode,
3137                  (outs VPR128:$Rd), (ins VPR128:$src, VPR64:$Rn, VPR64:$Rm),
3138                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
3139                  [(set (ResTy VPR128:$Rd),
3140                     (ResTy (opnode
3141                       (ResTy VPR128:$src),
3142                       (OpTy VPR64:$Rn), (OpTy VPR64:$Rm))))],
3143                NoItinerary> {
3144   let Constraints = "$src = $Rd";
3145 }
3146
3147 multiclass NeonI_3VDL_3Op_v1<bit u, bits<4> opcode, string asmop,
3148                              SDPatternOperator opnode> {
3149   def _8h8b : NeonI_3VDL_3Op<0b0, u, 0b00, opcode, asmop, "8h", "8b",
3150                              opnode, v8i16, v8i8>;
3151   def _4s4h : NeonI_3VDL_3Op<0b0, u, 0b01, opcode, asmop, "4s", "4h",
3152                              opnode, v4i32, v4i16>;
3153   def _2d2s : NeonI_3VDL_3Op<0b0, u, 0b10, opcode, asmop, "2d", "2s",
3154                              opnode, v2i64, v2i32>;
3155 }
3156
3157 def Neon_smlal : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
3158                          (add node:$Rd,
3159                             (int_arm_neon_vmulls node:$Rn, node:$Rm))>;
3160
3161 def Neon_umlal : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
3162                          (add node:$Rd,
3163                             (int_arm_neon_vmullu node:$Rn, node:$Rm))>;
3164
3165 def Neon_smlsl : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
3166                          (sub node:$Rd,
3167                             (int_arm_neon_vmulls node:$Rn, node:$Rm))>;
3168
3169 def Neon_umlsl : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
3170                          (sub node:$Rd,
3171                             (int_arm_neon_vmullu node:$Rn, node:$Rm))>;
3172
3173 defm SMLALvvv :  NeonI_3VDL_3Op_v1<0b0, 0b1000, "smlal", Neon_smlal>;
3174 defm UMLALvvv :  NeonI_3VDL_3Op_v1<0b1, 0b1000, "umlal", Neon_umlal>;
3175
3176 defm SMLSLvvv :  NeonI_3VDL_3Op_v1<0b0, 0b1010, "smlsl", Neon_smlsl>;
3177 defm UMLSLvvv :  NeonI_3VDL_3Op_v1<0b1, 0b1010, "umlsl", Neon_umlsl>;
3178
3179 class NeonI_3VDL2_3Op_mlas<bit q, bit u, bits<2> size, bits<4> opcode,
3180                            string asmop, string ResS, string OpS,
3181                            SDPatternOperator subop, SDPatternOperator opnode,
3182                            RegisterOperand OpVPR,
3183                            ValueType ResTy, ValueType OpTy>
3184   : NeonI_3VDiff<q, u, size, opcode,
3185                (outs VPR128:$Rd), (ins VPR128:$src, OpVPR:$Rn, OpVPR:$Rm),
3186                asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
3187                [(set (ResTy VPR128:$Rd),
3188                   (ResTy (subop
3189                     (ResTy VPR128:$src),
3190                     (ResTy (opnode (OpTy OpVPR:$Rn), (OpTy OpVPR:$Rm))))))],
3191                NoItinerary> {
3192   let Constraints = "$src = $Rd";
3193 }
3194
3195 multiclass NeonI_3VDL2_3Op_mlas_v1<bit u, bits<4> opcode, string asmop, 
3196                                    SDPatternOperator subop, string opnode> {
3197   def _8h16b : NeonI_3VDL2_3Op_mlas<0b1, u, 0b00, opcode, asmop, "8h", "16b",
3198                                     subop, !cast<PatFrag>(opnode # "_16B"),
3199                                     VPR128, v8i16, v16i8>;
3200   def _4s8h : NeonI_3VDL2_3Op_mlas<0b1, u, 0b01, opcode, asmop, "4s", "8h",
3201                                    subop, !cast<PatFrag>(opnode # "_8H"), 
3202                                    VPR128, v4i32, v8i16>;
3203   def _2d4s : NeonI_3VDL2_3Op_mlas<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3204                                    subop, !cast<PatFrag>(opnode # "_4S"),
3205                                    VPR128, v2i64, v4i32>;
3206 }
3207
3208 defm SMLAL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b0, 0b1000, "smlal2",
3209                                           add, "NI_smull_hi">;
3210 defm UMLAL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b1, 0b1000, "umlal2",
3211                                           add, "NI_umull_hi">;
3212
3213 defm SMLSL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b0, 0b1010, "smlsl2",
3214                                           sub, "NI_smull_hi">;
3215 defm UMLSL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b1, 0b1010, "umlsl2",
3216                                           sub, "NI_umull_hi">;
3217
3218 multiclass NeonI_3VDL_qdmlal_3Op_v2<bit u, bits<4> opcode, string asmop,
3219                                     SDPatternOperator opnode> {
3220   def _4s4h : NeonI_3VDL2_3Op_mlas<0b0, u, 0b01, opcode, asmop, "4s", "4h",
3221                                    opnode, int_arm_neon_vqdmull,
3222                                    VPR64, v4i32, v4i16>;
3223   def _2d2s : NeonI_3VDL2_3Op_mlas<0b0, u, 0b10, opcode, asmop, "2d", "2s",
3224                                    opnode, int_arm_neon_vqdmull,
3225                                    VPR64, v2i64, v2i32>;
3226 }
3227
3228 defm SQDMLALvvv : NeonI_3VDL_qdmlal_3Op_v2<0b0, 0b1001, "sqdmlal",
3229                                            int_arm_neon_vqadds>;
3230 defm SQDMLSLvvv : NeonI_3VDL_qdmlal_3Op_v2<0b0, 0b1011, "sqdmlsl",
3231                                            int_arm_neon_vqsubs>;
3232
3233 multiclass NeonI_3VDL_v2<bit u, bits<4> opcode, string asmop,
3234                          SDPatternOperator opnode, bit Commutable = 0> {
3235   let isCommutable = Commutable in {
3236     def _4s4h : NeonI_3VD_2Op<0b0, u, 0b01, opcode, asmop, "4s", "4h",
3237                               opnode, VPR128, VPR64, v4i32, v4i16>;
3238     def _2d2s : NeonI_3VD_2Op<0b0, u, 0b10, opcode, asmop, "2d", "2s",
3239                               opnode, VPR128, VPR64, v2i64, v2i32>;
3240   }
3241 }
3242
3243 defm SQDMULLvvv : NeonI_3VDL_v2<0b0, 0b1101, "sqdmull",
3244                                 int_arm_neon_vqdmull, 1>;
3245
3246 multiclass NeonI_3VDL2_2Op_mull_v2<bit u, bits<4> opcode, string asmop, 
3247                                    string opnode, bit Commutable = 0> {
3248   let isCommutable = Commutable in {
3249     def _4s8h : NeonI_3VDL2_2Op_mull<0b1, u, 0b01, opcode, asmop, "4s", "8h",
3250                                      !cast<PatFrag>(opnode # "_8H"),
3251                                      v4i32, v8i16>;
3252     def _2d4s : NeonI_3VDL2_2Op_mull<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3253                                      !cast<PatFrag>(opnode # "_4S"),
3254                                      v2i64, v4i32>;
3255   }
3256 }
3257
3258 defm SQDMULL2vvv : NeonI_3VDL2_2Op_mull_v2<0b0, 0b1101, "sqdmull2", 
3259                                            "NI_qdmull_hi", 1>;
3260
3261 multiclass NeonI_3VDL2_3Op_qdmlal_v2<bit u, bits<4> opcode, string asmop, 
3262                                      SDPatternOperator opnode> {
3263   def _4s8h : NeonI_3VDL2_3Op_mlas<0b1, u, 0b01, opcode, asmop, "4s", "8h",
3264                                    opnode, NI_qdmull_hi_8H,
3265                                    VPR128, v4i32, v8i16>;
3266   def _2d4s : NeonI_3VDL2_3Op_mlas<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3267                                    opnode, NI_qdmull_hi_4S,
3268                                    VPR128, v2i64, v4i32>;
3269 }
3270
3271 defm SQDMLAL2vvv : NeonI_3VDL2_3Op_qdmlal_v2<0b0, 0b1001, "sqdmlal2",
3272                                              int_arm_neon_vqadds>;
3273 defm SQDMLSL2vvv : NeonI_3VDL2_3Op_qdmlal_v2<0b0, 0b1011, "sqdmlsl2",
3274                                              int_arm_neon_vqsubs>;
3275
3276 multiclass NeonI_3VDL_v3<bit u, bits<4> opcode, string asmop,
3277                          SDPatternOperator opnode, bit Commutable = 0> {
3278   let isCommutable = Commutable in {
3279     def _8h8b : NeonI_3VD_2Op<0b0, u, 0b00, opcode, asmop, "8h", "8b",
3280                               opnode, VPR128, VPR64, v8i16, v8i8>;
3281   }
3282 }
3283
3284 defm PMULLvvv : NeonI_3VDL_v3<0b0, 0b1110, "pmull", int_arm_neon_vmullp, 1>;
3285
3286 multiclass NeonI_3VDL2_2Op_mull_v3<bit u, bits<4> opcode, string asmop, 
3287                                    string opnode, bit Commutable = 0> {
3288   let isCommutable = Commutable in {
3289     def _8h16b : NeonI_3VDL2_2Op_mull<0b1, u, 0b00, opcode, asmop, "8h", "16b",
3290                                       !cast<PatFrag>(opnode # "_16B"),
3291                                       v8i16, v16i8>;
3292   }
3293 }
3294
3295 defm PMULL2vvv : NeonI_3VDL2_2Op_mull_v3<0b0, 0b1110, "pmull2", "NI_pmull_hi",
3296                                          1>;
3297
3298 // End of implementation for instruction class (3V Diff)
3299
3300 // The followings are vector load/store multiple N-element structure
3301 // (class SIMD lselem).
3302
3303 // ld1:         load multiple 1-element structure to 1/2/3/4 registers.
3304 // ld2/ld3/ld4: load multiple N-element structure to N registers (N = 2, 3, 4).
3305 //              The structure consists of a sequence of sets of N values.
3306 //              The first element of the structure is placed in the first lane
3307 //              of the first first vector, the second element in the first lane
3308 //              of the second vector, and so on. 
3309 // E.g. LD1_3V_2S will load 32-bit elements {A, B, C, D, E, F} sequentially into
3310 // the three 64-bit vectors list {BA, DC, FE}.
3311 // E.g. LD3_2S will load 32-bit elements {A, B, C, D, E, F} into the three
3312 // 64-bit vectors list {DA, EB, FC}.
3313 // Store instructions store multiple structure to N registers like load.
3314
3315
3316 class NeonI_LDVList<bit q, bits<4> opcode, bits<2> size,
3317                     RegisterOperand VecList, string asmop>
3318   : NeonI_LdStMult<q, 1, opcode, size,
3319                  (outs VecList:$Rt), (ins GPR64xsp:$Rn),
3320                  asmop # "\t$Rt, [$Rn]",
3321                  [],
3322                  NoItinerary> {
3323   let mayLoad = 1;
3324   let neverHasSideEffects = 1;
3325 }
3326
3327 multiclass LDVList_BHSD<bits<4> opcode, string List, string asmop> {
3328   def _8B : NeonI_LDVList<0, opcode, 0b00,
3329                           !cast<RegisterOperand>(List # "8B_operand"), asmop>;
3330
3331   def _4H : NeonI_LDVList<0, opcode, 0b01,
3332                           !cast<RegisterOperand>(List # "4H_operand"), asmop>;
3333
3334   def _2S : NeonI_LDVList<0, opcode, 0b10,
3335                           !cast<RegisterOperand>(List # "2S_operand"), asmop>;
3336
3337   def _16B : NeonI_LDVList<1, opcode, 0b00,
3338                            !cast<RegisterOperand>(List # "16B_operand"), asmop>;
3339
3340   def _8H : NeonI_LDVList<1, opcode, 0b01,
3341                           !cast<RegisterOperand>(List # "8H_operand"), asmop>;
3342
3343   def _4S : NeonI_LDVList<1, opcode, 0b10,
3344                           !cast<RegisterOperand>(List # "4S_operand"), asmop>;
3345
3346   def _2D : NeonI_LDVList<1, opcode, 0b11,
3347                           !cast<RegisterOperand>(List # "2D_operand"), asmop>;
3348 }
3349
3350 // Load multiple N-element structure to N consecutive registers (N = 1,2,3,4)
3351 defm LD1 : LDVList_BHSD<0b0111, "VOne", "ld1">;
3352 def LD1_1D : NeonI_LDVList<0, 0b0111, 0b11, VOne1D_operand, "ld1">;
3353
3354 defm LD2 : LDVList_BHSD<0b1000, "VPair", "ld2">;
3355
3356 defm LD3 : LDVList_BHSD<0b0100, "VTriple", "ld3">;
3357
3358 defm LD4 : LDVList_BHSD<0b0000, "VQuad", "ld4">;
3359
3360 // Load multiple 1-element structure to N consecutive registers (N = 2,3,4)
3361 defm LD1_2V : LDVList_BHSD<0b1010, "VPair", "ld1">;
3362 def LD1_2V_1D : NeonI_LDVList<0, 0b1010, 0b11, VPair1D_operand, "ld1">;
3363
3364 defm LD1_3V : LDVList_BHSD<0b0110, "VTriple", "ld1">;
3365 def LD1_3V_1D : NeonI_LDVList<0, 0b0110, 0b11, VTriple1D_operand, "ld1">;
3366
3367 defm LD1_4V : LDVList_BHSD<0b0010, "VQuad", "ld1">;
3368 def LD1_4V_1D : NeonI_LDVList<0, 0b0010, 0b11, VQuad1D_operand, "ld1">;
3369
3370 class NeonI_STVList<bit q, bits<4> opcode, bits<2> size,
3371                     RegisterOperand VecList, string asmop>
3372   : NeonI_LdStMult<q, 0, opcode, size,
3373                  (outs), (ins GPR64xsp:$Rn, VecList:$Rt), 
3374                  asmop # "\t$Rt, [$Rn]",
3375                  [], 
3376                  NoItinerary> {
3377   let mayStore = 1;
3378   let neverHasSideEffects = 1;
3379 }
3380
3381 multiclass STVList_BHSD<bits<4> opcode, string List, string asmop> {
3382   def _8B : NeonI_STVList<0, opcode, 0b00,
3383                           !cast<RegisterOperand>(List # "8B_operand"), asmop>;
3384
3385   def _4H : NeonI_STVList<0, opcode, 0b01,
3386                           !cast<RegisterOperand>(List # "4H_operand"), asmop>;
3387
3388   def _2S : NeonI_STVList<0, opcode, 0b10,
3389                           !cast<RegisterOperand>(List # "2S_operand"), asmop>;
3390
3391   def _16B : NeonI_STVList<1, opcode, 0b00,
3392                            !cast<RegisterOperand>(List # "16B_operand"), asmop>;
3393
3394   def _8H : NeonI_STVList<1, opcode, 0b01,
3395                           !cast<RegisterOperand>(List # "8H_operand"), asmop>;
3396
3397   def _4S : NeonI_STVList<1, opcode, 0b10,
3398                           !cast<RegisterOperand>(List # "4S_operand"), asmop>;
3399
3400   def _2D : NeonI_STVList<1, opcode, 0b11,
3401                           !cast<RegisterOperand>(List # "2D_operand"), asmop>;
3402 }
3403
3404 // Store multiple N-element structures from N registers (N = 1,2,3,4)
3405 defm ST1 : STVList_BHSD<0b0111, "VOne", "st1">;
3406 def ST1_1D : NeonI_STVList<0, 0b0111, 0b11, VOne1D_operand, "st1">;
3407
3408 defm ST2 : STVList_BHSD<0b1000, "VPair", "st2">;
3409
3410 defm ST3 : STVList_BHSD<0b0100, "VTriple", "st3">;
3411
3412 defm ST4 : STVList_BHSD<0b0000, "VQuad", "st4">;
3413
3414 // Store multiple 1-element structures from N consecutive registers (N = 2,3,4)
3415 defm ST1_2V : STVList_BHSD<0b1010, "VPair", "st1">;
3416 def ST1_2V_1D : NeonI_STVList<0, 0b1010, 0b11, VPair1D_operand, "st1">;
3417
3418 defm ST1_3V : STVList_BHSD<0b0110, "VTriple", "st1">;
3419 def ST1_3V_1D : NeonI_STVList<0, 0b0110, 0b11, VTriple1D_operand, "st1">;
3420
3421 defm ST1_4V : STVList_BHSD<0b0010, "VQuad", "st1">;
3422 def ST1_4V_1D : NeonI_STVList<0, 0b0010, 0b11, VQuad1D_operand, "st1">;
3423
3424 // End of vector load/store multiple N-element structure(class SIMD lselem)
3425
3426 // The followings are post-index vector load/store multiple N-element
3427 // structure(class SIMD lselem-post)
3428 def exact8_asmoperand : AsmOperandClass {
3429   let Name = "Exact8";
3430   let PredicateMethod = "isExactImm<8>";
3431   let RenderMethod = "addImmOperands";
3432 }
3433 def uimm_exact8 : Operand<i32>, ImmLeaf<i32, [{return Imm == 8;}]> {
3434   let ParserMatchClass = exact8_asmoperand;
3435 }
3436
3437 def exact16_asmoperand : AsmOperandClass {
3438   let Name = "Exact16";
3439   let PredicateMethod = "isExactImm<16>";
3440   let RenderMethod = "addImmOperands";
3441 }
3442 def uimm_exact16 : Operand<i32>, ImmLeaf<i32, [{return Imm == 16;}]> {
3443   let ParserMatchClass = exact16_asmoperand;
3444 }
3445
3446 def exact24_asmoperand : AsmOperandClass {
3447   let Name = "Exact24";
3448   let PredicateMethod = "isExactImm<24>";
3449   let RenderMethod = "addImmOperands";
3450 }
3451 def uimm_exact24 : Operand<i32>, ImmLeaf<i32, [{return Imm == 24;}]> {
3452   let ParserMatchClass = exact24_asmoperand;
3453 }
3454
3455 def exact32_asmoperand : AsmOperandClass {
3456   let Name = "Exact32";
3457   let PredicateMethod = "isExactImm<32>";
3458   let RenderMethod = "addImmOperands";
3459 }
3460 def uimm_exact32 : Operand<i32>, ImmLeaf<i32, [{return Imm == 32;}]> {
3461   let ParserMatchClass = exact32_asmoperand;
3462 }
3463
3464 def exact48_asmoperand : AsmOperandClass {
3465   let Name = "Exact48";
3466   let PredicateMethod = "isExactImm<48>";
3467   let RenderMethod = "addImmOperands";
3468 }
3469 def uimm_exact48 : Operand<i32>, ImmLeaf<i32, [{return Imm == 48;}]> {
3470   let ParserMatchClass = exact48_asmoperand;
3471 }
3472
3473 def exact64_asmoperand : AsmOperandClass {
3474   let Name = "Exact64";
3475   let PredicateMethod = "isExactImm<64>";
3476   let RenderMethod = "addImmOperands";
3477 }
3478 def uimm_exact64 : Operand<i32>, ImmLeaf<i32, [{return Imm == 64;}]> {
3479   let ParserMatchClass = exact64_asmoperand;
3480 }
3481
3482 multiclass NeonI_LDWB_VList<bit q, bits<4> opcode, bits<2> size,
3483                            RegisterOperand VecList, Operand ImmTy,
3484                            string asmop> {
3485   let Constraints = "$Rn = $wb", mayLoad = 1, neverHasSideEffects = 1, 
3486       DecoderMethod = "DecodeVLDSTPostInstruction" in {
3487     def _fixed : NeonI_LdStMult_Post<q, 1, opcode, size,
3488                      (outs VecList:$Rt, GPR64xsp:$wb),
3489                      (ins GPR64xsp:$Rn, ImmTy:$amt), 
3490                      asmop # "\t$Rt, [$Rn], $amt",
3491                      [],
3492                      NoItinerary> {
3493       let Rm = 0b11111;
3494     }
3495
3496     def _register : NeonI_LdStMult_Post<q, 1, opcode, size,
3497                         (outs VecList:$Rt, GPR64xsp:$wb),
3498                         (ins GPR64xsp:$Rn, GPR64noxzr:$Rm), 
3499                         asmop # "\t$Rt, [$Rn], $Rm",
3500                         [],
3501                         NoItinerary>;
3502   }
3503 }
3504
3505 multiclass LDWB_VList_BHSD<bits<4> opcode, string List, Operand ImmTy,
3506     Operand ImmTy2, string asmop> {
3507   defm _8B : NeonI_LDWB_VList<0, opcode, 0b00,
3508                               !cast<RegisterOperand>(List # "8B_operand"),
3509                               ImmTy, asmop>;
3510
3511   defm _4H : NeonI_LDWB_VList<0, opcode, 0b01,
3512                               !cast<RegisterOperand>(List # "4H_operand"),
3513                               ImmTy, asmop>;
3514
3515   defm _2S : NeonI_LDWB_VList<0, opcode, 0b10,
3516                               !cast<RegisterOperand>(List # "2S_operand"),
3517                               ImmTy, asmop>;
3518
3519   defm _16B : NeonI_LDWB_VList<1, opcode, 0b00,
3520                                !cast<RegisterOperand>(List # "16B_operand"),
3521                                ImmTy2, asmop>;
3522
3523   defm _8H : NeonI_LDWB_VList<1, opcode, 0b01,
3524                               !cast<RegisterOperand>(List # "8H_operand"),
3525                               ImmTy2, asmop>;
3526
3527   defm _4S : NeonI_LDWB_VList<1, opcode, 0b10,
3528                               !cast<RegisterOperand>(List # "4S_operand"),
3529                               ImmTy2, asmop>;
3530
3531   defm _2D : NeonI_LDWB_VList<1, opcode, 0b11,
3532                               !cast<RegisterOperand>(List # "2D_operand"),
3533                               ImmTy2, asmop>;
3534 }
3535
3536 // Post-index load multiple N-element structures from N registers (N = 1,2,3,4)
3537 defm LD1WB : LDWB_VList_BHSD<0b0111, "VOne", uimm_exact8, uimm_exact16, "ld1">;
3538 defm LD1WB_1D : NeonI_LDWB_VList<0, 0b0111, 0b11, VOne1D_operand, uimm_exact8,
3539                                  "ld1">;
3540
3541 defm LD2WB : LDWB_VList_BHSD<0b1000, "VPair", uimm_exact16, uimm_exact32, "ld2">;
3542
3543 defm LD3WB : LDWB_VList_BHSD<0b0100, "VTriple", uimm_exact24, uimm_exact48,
3544                              "ld3">;
3545
3546 defm LD4WB : LDWB_VList_BHSD<0b0000, "VQuad", uimm_exact32, uimm_exact64, "ld4">;
3547
3548 // Post-index load multiple 1-element structures from N consecutive registers
3549 // (N = 2,3,4)
3550 defm LD1WB2V : LDWB_VList_BHSD<0b1010, "VPair", uimm_exact16, uimm_exact32,
3551                                "ld1">;
3552 defm LD1WB2V_1D : NeonI_LDWB_VList<0, 0b1010, 0b11, VPair1D_operand,
3553                                    uimm_exact16, "ld1">;
3554
3555 defm LD1WB3V : LDWB_VList_BHSD<0b0110, "VTriple", uimm_exact24, uimm_exact48,
3556                                "ld1">;
3557 defm LD1WB3V_1D : NeonI_LDWB_VList<0, 0b0110, 0b11, VTriple1D_operand,
3558                                    uimm_exact24, "ld1">;
3559
3560 defm LD1WB_4V : LDWB_VList_BHSD<0b0010, "VQuad", uimm_exact32, uimm_exact64,
3561                                 "ld1">;
3562 defm LD1WB4V_1D : NeonI_LDWB_VList<0, 0b0010, 0b11, VQuad1D_operand,
3563                                    uimm_exact32, "ld1">;
3564
3565 multiclass NeonI_STWB_VList<bit q, bits<4> opcode, bits<2> size,
3566                             RegisterOperand VecList, Operand ImmTy,
3567                             string asmop> {
3568   let Constraints = "$Rn = $wb", mayStore = 1, neverHasSideEffects = 1,
3569       DecoderMethod = "DecodeVLDSTPostInstruction" in {
3570     def _fixed : NeonI_LdStMult_Post<q, 0, opcode, size,
3571                      (outs GPR64xsp:$wb),
3572                      (ins GPR64xsp:$Rn, ImmTy:$amt, VecList:$Rt),
3573                      asmop # "\t$Rt, [$Rn], $amt",
3574                      [],
3575                      NoItinerary> {
3576       let Rm = 0b11111;
3577     }
3578
3579     def _register : NeonI_LdStMult_Post<q, 0, opcode, size,
3580                       (outs GPR64xsp:$wb),
3581                       (ins GPR64xsp:$Rn, GPR64noxzr:$Rm, VecList:$Rt), 
3582                       asmop # "\t$Rt, [$Rn], $Rm",
3583                       [],
3584                       NoItinerary>;
3585   }
3586 }
3587
3588 multiclass STWB_VList_BHSD<bits<4> opcode, string List, Operand ImmTy,
3589                            Operand ImmTy2, string asmop> {
3590   defm _8B : NeonI_STWB_VList<0, opcode, 0b00,
3591                  !cast<RegisterOperand>(List # "8B_operand"), ImmTy, asmop>;
3592
3593   defm _4H : NeonI_STWB_VList<0, opcode, 0b01,
3594                               !cast<RegisterOperand>(List # "4H_operand"),
3595                               ImmTy, asmop>;
3596
3597   defm _2S : NeonI_STWB_VList<0, opcode, 0b10,
3598                               !cast<RegisterOperand>(List # "2S_operand"),
3599                               ImmTy, asmop>;
3600
3601   defm _16B : NeonI_STWB_VList<1, opcode, 0b00,
3602                                !cast<RegisterOperand>(List # "16B_operand"),
3603                                ImmTy2, asmop>;
3604
3605   defm _8H : NeonI_STWB_VList<1, opcode, 0b01,
3606                               !cast<RegisterOperand>(List # "8H_operand"),
3607                               ImmTy2, asmop>;
3608
3609   defm _4S : NeonI_STWB_VList<1, opcode, 0b10,
3610                               !cast<RegisterOperand>(List # "4S_operand"),
3611                               ImmTy2, asmop>;
3612
3613   defm _2D : NeonI_STWB_VList<1, opcode, 0b11,
3614                               !cast<RegisterOperand>(List # "2D_operand"),
3615                               ImmTy2, asmop>;
3616 }
3617
3618 // Post-index load multiple N-element structures from N registers (N = 1,2,3,4)
3619 defm ST1WB : STWB_VList_BHSD<0b0111, "VOne", uimm_exact8, uimm_exact16, "st1">;
3620 defm ST1WB_1D : NeonI_STWB_VList<0, 0b0111, 0b11, VOne1D_operand, uimm_exact8,
3621                                  "st1">;
3622
3623 defm ST2WB : STWB_VList_BHSD<0b1000, "VPair", uimm_exact16, uimm_exact32, "st2">;
3624
3625 defm ST3WB : STWB_VList_BHSD<0b0100, "VTriple", uimm_exact24, uimm_exact48,
3626                              "st3">;
3627
3628 defm ST4WB : STWB_VList_BHSD<0b0000, "VQuad", uimm_exact32, uimm_exact64, "st4">;
3629
3630 // Post-index load multiple 1-element structures from N consecutive registers
3631 // (N = 2,3,4)
3632 defm ST1WB2V : STWB_VList_BHSD<0b1010, "VPair", uimm_exact16, uimm_exact32,
3633                                "st1">;
3634 defm ST1WB2V_1D : NeonI_STWB_VList<0, 0b1010, 0b11, VPair1D_operand,
3635                                    uimm_exact16, "st1">;
3636
3637 defm ST1WB3V : STWB_VList_BHSD<0b0110, "VTriple", uimm_exact24, uimm_exact48,
3638                                "st1">;
3639 defm ST1WB3V_1D : NeonI_STWB_VList<0, 0b0110, 0b11, VTriple1D_operand,
3640                                    uimm_exact24, "st1">;
3641
3642 defm ST1WB4V : STWB_VList_BHSD<0b0010, "VQuad", uimm_exact32, uimm_exact64,
3643                                "st1">;
3644 defm ST1WB4V_1D : NeonI_STWB_VList<0, 0b0010, 0b11, VQuad1D_operand,
3645                                    uimm_exact32, "st1">;
3646
3647 // End of post-index vector load/store multiple N-element structure
3648 // (class SIMD lselem-post)
3649
3650 // Scalar Three Same
3651
3652 class NeonI_Scalar3Same_size<bit u, bits<2> size, bits<5> opcode, string asmop,
3653                              RegisterClass FPRC>
3654   : NeonI_Scalar3Same<u, size, opcode,
3655                       (outs FPRC:$Rd), (ins FPRC:$Rn, FPRC:$Rm),
3656                       !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
3657                       [],
3658                       NoItinerary>;
3659
3660 class NeonI_Scalar3Same_D_size<bit u, bits<5> opcode, string asmop>
3661   : NeonI_Scalar3Same_size<u, 0b11, opcode, asmop, FPR64>;
3662
3663 multiclass NeonI_Scalar3Same_HS_sizes<bit u, bits<5> opcode, string asmop,
3664                                       bit Commutable = 0> {
3665   let isCommutable = Commutable in {
3666     def hhh : NeonI_Scalar3Same_size<u, 0b01, opcode, asmop, FPR16>;
3667     def sss : NeonI_Scalar3Same_size<u, 0b10, opcode, asmop, FPR32>;
3668   }
3669 }
3670
3671 multiclass NeonI_Scalar3Same_SD_sizes<bit u, bit size_high, bits<5> opcode,
3672                                       string asmop, bit Commutable = 0> {
3673   let isCommutable = Commutable in {
3674     def sss : NeonI_Scalar3Same_size<u, {size_high, 0b0}, opcode, asmop, FPR32>;
3675     def ddd : NeonI_Scalar3Same_size<u, {size_high, 0b1}, opcode, asmop, FPR64>;
3676   }
3677 }
3678
3679 multiclass NeonI_Scalar3Same_BHSD_sizes<bit u, bits<5> opcode,
3680                                         string asmop, bit Commutable = 0> {
3681   let isCommutable = Commutable in {
3682     def bbb : NeonI_Scalar3Same_size<u, 0b00, opcode, asmop, FPR8>;
3683     def hhh : NeonI_Scalar3Same_size<u, 0b01, opcode, asmop, FPR16>;
3684     def sss : NeonI_Scalar3Same_size<u, 0b10, opcode, asmop, FPR32>;
3685     def ddd : NeonI_Scalar3Same_size<u, 0b11, opcode, asmop, FPR64>;
3686   }
3687 }
3688
3689 multiclass Neon_Scalar3Same_D_size_patterns<SDPatternOperator opnode,
3690                                             Instruction INSTD> {
3691   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (v1i64 FPR64:$Rm))),
3692             (INSTD FPR64:$Rn, FPR64:$Rm)>;        
3693 }
3694
3695 multiclass Neon_Scalar3Same_BHSD_size_patterns<SDPatternOperator opnode,
3696                                                Instruction INSTB,
3697                                                Instruction INSTH,
3698                                                Instruction INSTS,
3699                                                Instruction INSTD>
3700   : Neon_Scalar3Same_D_size_patterns<opnode, INSTD> {
3701   def: Pat<(v1i8 (opnode (v1i8 FPR8:$Rn), (v1i8 FPR8:$Rm))),
3702            (INSTB FPR8:$Rn, FPR8:$Rm)>;
3703
3704   def: Pat<(v1i16 (opnode (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
3705            (INSTH FPR16:$Rn, FPR16:$Rm)>;
3706
3707   def: Pat<(v1i32 (opnode (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
3708            (INSTS FPR32:$Rn, FPR32:$Rm)>;
3709 }
3710
3711 class Neon_Scalar3Same_cmp_D_size_patterns<SDPatternOperator opnode,
3712                                            Instruction INSTD>
3713   : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (v1i64 FPR64:$Rm))),
3714         (INSTD FPR64:$Rn, FPR64:$Rm)>;
3715
3716 multiclass Neon_Scalar3Same_HS_size_patterns<SDPatternOperator opnode,
3717                                              Instruction INSTH,
3718                                              Instruction INSTS> {
3719   def : Pat<(v1i16 (opnode (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
3720             (INSTH FPR16:$Rn, FPR16:$Rm)>;
3721   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
3722             (INSTS FPR32:$Rn, FPR32:$Rm)>;
3723 }
3724
3725 multiclass Neon_Scalar3Same_SD_size_patterns<SDPatternOperator opnode,
3726                                              Instruction INSTS,
3727                                              Instruction INSTD> {
3728   def : Pat<(v1f32 (opnode (v1f32 FPR32:$Rn), (v1f32 FPR32:$Rm))),
3729             (INSTS FPR32:$Rn, FPR32:$Rm)>;
3730   def : Pat<(v1f64 (opnode (v1f64 FPR64:$Rn), (v1f64 FPR64:$Rm))),
3731             (INSTD FPR64:$Rn, FPR64:$Rm)>;
3732 }
3733
3734 multiclass Neon_Scalar3Same_cmp_SD_size_patterns<SDPatternOperator opnode,
3735                                                  Instruction INSTS,
3736                                                  Instruction INSTD> {
3737   def : Pat<(v1i32 (opnode (v1f32 FPR32:$Rn), (v1f32 FPR32:$Rm))),
3738             (INSTS FPR32:$Rn, FPR32:$Rm)>;
3739   def : Pat<(v1i64 (opnode (v1f64 FPR64:$Rn), (v1f64 FPR64:$Rm))),
3740             (INSTD FPR64:$Rn, FPR64:$Rm)>;
3741 }
3742
3743 // Scalar Three Different
3744
3745 class NeonI_Scalar3Diff_size<bit u, bits<2> size, bits<4> opcode, string asmop,
3746                              RegisterClass FPRCD, RegisterClass FPRCS>
3747   : NeonI_Scalar3Diff<u, size, opcode,
3748                       (outs FPRCD:$Rd), (ins FPRCS:$Rn, FPRCS:$Rm),
3749                       !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
3750                       [],
3751                       NoItinerary>;
3752
3753 multiclass NeonI_Scalar3Diff_HS_size<bit u, bits<4> opcode, string asmop> {
3754   def shh : NeonI_Scalar3Diff_size<u, 0b01, opcode, asmop, FPR32, FPR16>;
3755   def dss : NeonI_Scalar3Diff_size<u, 0b10, opcode, asmop, FPR64, FPR32>;
3756 }
3757
3758 multiclass NeonI_Scalar3Diff_ml_HS_size<bit u, bits<4> opcode, string asmop> {
3759   let Constraints = "$Src = $Rd" in {
3760     def shh : NeonI_Scalar3Diff<u, 0b01, opcode,
3761                        (outs FPR32:$Rd), (ins FPR32:$Src, FPR16:$Rn, FPR16:$Rm),
3762                        !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
3763                        [],
3764                        NoItinerary>;
3765     def dss : NeonI_Scalar3Diff<u, 0b10, opcode,
3766                        (outs FPR64:$Rd), (ins FPR64:$Src, FPR32:$Rn, FPR32:$Rm),
3767                        !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
3768                        [],
3769                        NoItinerary>;
3770   }
3771 }
3772
3773 multiclass Neon_Scalar3Diff_HS_size_patterns<SDPatternOperator opnode,
3774                                              Instruction INSTH,
3775                                              Instruction INSTS> {
3776   def : Pat<(v1i32 (opnode (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
3777             (INSTH FPR16:$Rn, FPR16:$Rm)>;
3778   def : Pat<(v1i64 (opnode (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
3779             (INSTS FPR32:$Rn, FPR32:$Rm)>;
3780 }
3781
3782 multiclass Neon_Scalar3Diff_ml_HS_size_patterns<SDPatternOperator opnode,
3783                                              Instruction INSTH,
3784                                              Instruction INSTS> {
3785   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Src), (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
3786             (INSTH FPR32:$Src, FPR16:$Rn, FPR16:$Rm)>;
3787   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Src), (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
3788             (INSTS FPR64:$Src, FPR32:$Rn, FPR32:$Rm)>;
3789 }
3790
3791 // Scalar Two Registers Miscellaneous
3792
3793 class NeonI_Scalar2SameMisc_size<bit u, bits<2> size, bits<5> opcode, string asmop,
3794                              RegisterClass FPRCD, RegisterClass FPRCS>
3795   : NeonI_Scalar2SameMisc<u, size, opcode,
3796                           (outs FPRCD:$Rd), (ins FPRCS:$Rn),
3797                           !strconcat(asmop, "\t$Rd, $Rn"),
3798                           [],
3799                           NoItinerary>;
3800
3801 multiclass NeonI_Scalar2SameMisc_SD_size<bit u, bit size_high, bits<5> opcode,
3802                                          string asmop> {
3803   def ss : NeonI_Scalar2SameMisc_size<u, {size_high, 0b0}, opcode, asmop, FPR32,
3804                                       FPR32>;
3805   def dd : NeonI_Scalar2SameMisc_size<u, {size_high, 0b1}, opcode, asmop, FPR64,
3806                                       FPR64>;
3807 }
3808
3809 multiclass NeonI_Scalar2SameMisc_D_size<bit u, bits<5> opcode, string asmop> {
3810   def dd: NeonI_Scalar2SameMisc_size<u, 0b11, opcode, asmop, FPR64, FPR64>;
3811 }
3812
3813 multiclass NeonI_Scalar2SameMisc_BHSD_size<bit u, bits<5> opcode, string asmop>
3814   : NeonI_Scalar2SameMisc_D_size<u, opcode, asmop> {
3815   def bb : NeonI_Scalar2SameMisc_size<u, 0b00, opcode, asmop, FPR8, FPR8>;
3816   def hh : NeonI_Scalar2SameMisc_size<u, 0b01, opcode, asmop, FPR16, FPR16>;
3817   def ss : NeonI_Scalar2SameMisc_size<u, 0b10, opcode, asmop, FPR32, FPR32>;
3818 }
3819
3820 multiclass NeonI_Scalar2SameMisc_narrow_HSD_size<bit u, bits<5> opcode,
3821                                                  string asmop> {
3822   def bh : NeonI_Scalar2SameMisc_size<u, 0b00, opcode, asmop, FPR8, FPR16>;
3823   def hs : NeonI_Scalar2SameMisc_size<u, 0b01, opcode, asmop, FPR16, FPR32>;
3824   def sd : NeonI_Scalar2SameMisc_size<u, 0b10, opcode, asmop, FPR32, FPR64>;
3825 }
3826
3827 class NeonI_Scalar2SameMisc_accum_size<bit u, bits<2> size, bits<5> opcode,
3828                                        string asmop, RegisterClass FPRC>
3829   : NeonI_Scalar2SameMisc<u, size, opcode,
3830                           (outs FPRC:$Rd), (ins FPRC:$Src, FPRC:$Rn),
3831                           !strconcat(asmop, "\t$Rd, $Rn"),
3832                           [],
3833                           NoItinerary>;
3834
3835 multiclass NeonI_Scalar2SameMisc_accum_BHSD_size<bit u, bits<5> opcode,
3836                                                  string asmop> {
3837
3838   let Constraints = "$Src = $Rd" in {
3839     def bb : NeonI_Scalar2SameMisc_accum_size<u, 0b00, opcode, asmop, FPR8>;
3840     def hh : NeonI_Scalar2SameMisc_accum_size<u, 0b01, opcode, asmop, FPR16>;
3841     def ss : NeonI_Scalar2SameMisc_accum_size<u, 0b10, opcode, asmop, FPR32>;
3842     def dd : NeonI_Scalar2SameMisc_accum_size<u, 0b11, opcode, asmop, FPR64>;
3843   }
3844 }
3845
3846 multiclass Neon_Scalar2SameMisc_cvt_SD_size_patterns<SDPatternOperator Sopnode,
3847                                                      SDPatternOperator Dopnode,
3848                                                      Instruction INSTS,
3849                                                      Instruction INSTD> {
3850   def : Pat<(v1f32 (Sopnode (v1i32 FPR32:$Rn))),
3851             (INSTS FPR32:$Rn)>;
3852   def : Pat<(v1f64 (Dopnode (v1i64 FPR64:$Rn))),
3853             (INSTD FPR64:$Rn)>;
3854 }
3855
3856 multiclass Neon_Scalar2SameMisc_SD_size_patterns<SDPatternOperator opnode,
3857                                                  Instruction INSTS,
3858                                                  Instruction INSTD> {
3859   def : Pat<(v1f32 (opnode (v1f32 FPR32:$Rn))),
3860             (INSTS FPR32:$Rn)>;
3861   def : Pat<(v1f64 (opnode (v1f64 FPR64:$Rn))),
3862             (INSTD FPR64:$Rn)>;
3863 }
3864
3865 class NeonI_Scalar2SameMisc_cmpz_D_size<bit u, bits<5> opcode, string asmop>
3866   : NeonI_Scalar2SameMisc<u, 0b11, opcode,
3867                           (outs FPR64:$Rd), (ins FPR64:$Rn, neon_uimm0:$Imm),
3868                           !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
3869                           [],
3870                           NoItinerary>;
3871
3872 multiclass NeonI_Scalar2SameMisc_cmpz_SD_size<bit u, bits<5> opcode,
3873                                               string asmop> {
3874   def ssi : NeonI_Scalar2SameMisc<u, 0b10, opcode,
3875                            (outs FPR32:$Rd), (ins FPR32:$Rn, fpz32:$FPImm),
3876                            !strconcat(asmop, "\t$Rd, $Rn, $FPImm"),
3877                            [],
3878                            NoItinerary>;
3879   def ddi : NeonI_Scalar2SameMisc<u, 0b11, opcode,
3880                            (outs FPR64:$Rd), (ins FPR64:$Rn, fpz64movi:$FPImm),
3881                            !strconcat(asmop, "\t$Rd, $Rn, $FPImm"),
3882                            [],
3883                            NoItinerary>;
3884 }
3885
3886 class Neon_Scalar2SameMisc_cmpz_D_size_patterns<SDPatternOperator opnode,
3887                                                 Instruction INSTD>
3888   : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn),
3889                        (v1i64 (bitconvert (v8i8 Neon_immAllZeros))))),
3890         (INSTD FPR64:$Rn, 0)>;
3891
3892 multiclass Neon_Scalar2SameMisc_cmpz_SD_size_patterns<SDPatternOperator opnode,
3893                                                       Instruction INSTS,
3894                                                       Instruction INSTD> {
3895   def : Pat<(v1i32 (opnode (v1f32 FPR32:$Rn),
3896                            (v1f32 (scalar_to_vector (f32 fpimm:$FPImm))))),
3897             (INSTS FPR32:$Rn, fpimm:$FPImm)>;
3898   def : Pat<(v1i64 (opnode (v1f64 FPR64:$Rn),
3899                            (v1f64 (bitconvert (v8i8 Neon_immAllZeros))))),
3900             (INSTD FPR64:$Rn, 0)>;
3901 }
3902
3903 multiclass Neon_Scalar2SameMisc_D_size_patterns<SDPatternOperator opnode,
3904                                                 Instruction INSTD> {
3905   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn))),
3906             (INSTD FPR64:$Rn)>;
3907 }
3908
3909 multiclass Neon_Scalar2SameMisc_BHSD_size_patterns<SDPatternOperator opnode,
3910                                                    Instruction INSTB,
3911                                                    Instruction INSTH,
3912                                                    Instruction INSTS,
3913                                                    Instruction INSTD>
3914   : Neon_Scalar2SameMisc_D_size_patterns<opnode, INSTD> {
3915   def : Pat<(v1i8 (opnode (v1i8 FPR8:$Rn))),
3916             (INSTB FPR8:$Rn)>;
3917   def : Pat<(v1i16 (opnode (v1i16 FPR16:$Rn))),
3918             (INSTH FPR16:$Rn)>;
3919   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Rn))),
3920             (INSTS FPR32:$Rn)>;
3921 }
3922
3923 multiclass Neon_Scalar2SameMisc_narrow_HSD_size_patterns<
3924                                                        SDPatternOperator opnode,
3925                                                        Instruction INSTH,
3926                                                        Instruction INSTS,
3927                                                        Instruction INSTD> {
3928   def : Pat<(v1i8 (opnode (v1i16 FPR16:$Rn))),
3929             (INSTH FPR16:$Rn)>;
3930   def : Pat<(v1i16 (opnode (v1i32 FPR32:$Rn))),
3931             (INSTS FPR32:$Rn)>;
3932   def : Pat<(v1i32 (opnode (v1i64 FPR64:$Rn))),
3933             (INSTD FPR64:$Rn)>;
3934
3935 }
3936
3937 multiclass Neon_Scalar2SameMisc_accum_BHSD_size_patterns<
3938                                                        SDPatternOperator opnode,
3939                                                        Instruction INSTB,
3940                                                        Instruction INSTH,
3941                                                        Instruction INSTS,
3942                                                        Instruction INSTD> {
3943   def : Pat<(v1i8 (opnode (v1i8 FPR8:$Src), (v1i8 FPR8:$Rn))),
3944             (INSTB FPR8:$Src, FPR8:$Rn)>;
3945   def : Pat<(v1i16 (opnode (v1i16 FPR16:$Src), (v1i16 FPR16:$Rn))),
3946             (INSTH FPR16:$Src, FPR16:$Rn)>;
3947   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Src), (v1i32 FPR32:$Rn))),
3948             (INSTS FPR32:$Src, FPR32:$Rn)>;
3949   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Src), (v1i64 FPR64:$Rn))),
3950             (INSTD FPR64:$Src, FPR64:$Rn)>;
3951 }
3952
3953 // Scalar Shift By Immediate
3954
3955 class NeonI_ScalarShiftImm_size<bit u, bits<5> opcode, string asmop,
3956                                 RegisterClass FPRC, Operand ImmTy>
3957   : NeonI_ScalarShiftImm<u, opcode,
3958                          (outs FPRC:$Rd), (ins FPRC:$Rn, ImmTy:$Imm),
3959                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
3960                          [], NoItinerary>;
3961
3962 multiclass NeonI_ScalarShiftRightImm_D_size<bit u, bits<5> opcode,
3963                                             string asmop> {
3964   def ddi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR64, shr_imm64> {
3965     bits<6> Imm;
3966     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
3967     let Inst{21-16} = Imm;
3968   }
3969 }
3970
3971 multiclass NeonI_ScalarShiftRightImm_BHSD_size<bit u, bits<5> opcode,
3972                                                string asmop>
3973   : NeonI_ScalarShiftRightImm_D_size<u, opcode, asmop> {
3974   def bbi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR8, shr_imm8> {
3975     bits<3> Imm;
3976     let Inst{22-19} = 0b0001; // immh:immb = 0001xxx
3977     let Inst{18-16} = Imm;
3978   }
3979   def hhi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR16, shr_imm16> {
3980     bits<4> Imm;
3981     let Inst{22-20} = 0b001; // immh:immb = 001xxxx
3982     let Inst{19-16} = Imm;
3983   }
3984   def ssi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR32, shr_imm32> {
3985     bits<5> Imm;
3986     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
3987     let Inst{20-16} = Imm;
3988   }
3989 }
3990
3991 multiclass NeonI_ScalarShiftLeftImm_D_size<bit u, bits<5> opcode,
3992                                             string asmop> {
3993   def ddi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR64, shl_imm64> {
3994     bits<6> Imm;
3995     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
3996     let Inst{21-16} = Imm;
3997   }
3998 }
3999
4000 multiclass NeonI_ScalarShiftLeftImm_BHSD_size<bit u, bits<5> opcode,
4001                                               string asmop>
4002   : NeonI_ScalarShiftLeftImm_D_size<u, opcode, asmop> {
4003   def bbi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR8, shl_imm8> {
4004     bits<3> Imm;
4005     let Inst{22-19} = 0b0001; // immh:immb = 0001xxx
4006     let Inst{18-16} = Imm;
4007   }
4008   def hhi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR16, shl_imm16> {
4009     bits<4> Imm;
4010     let Inst{22-20} = 0b001; // immh:immb = 001xxxx
4011     let Inst{19-16} = Imm;
4012   }
4013   def ssi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR32, shl_imm32> {
4014     bits<5> Imm;
4015     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
4016     let Inst{20-16} = Imm;
4017   }
4018 }
4019
4020 class NeonI_ScalarShiftRightImm_accum_D_size<bit u, bits<5> opcode, string asmop>
4021   : NeonI_ScalarShiftImm<u, opcode,
4022                          (outs FPR64:$Rd), (ins FPR64:$Src, FPR64:$Rn, shr_imm64:$Imm),
4023                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4024                          [], NoItinerary> {
4025     bits<6> Imm;
4026     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4027     let Inst{21-16} = Imm;
4028     let Constraints = "$Src = $Rd";
4029 }
4030
4031 class NeonI_ScalarShiftLeftImm_accum_D_size<bit u, bits<5> opcode, string asmop>
4032   : NeonI_ScalarShiftImm<u, opcode,
4033                          (outs FPR64:$Rd), (ins FPR64:$Src, FPR64:$Rn, shl_imm64:$Imm),
4034                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4035                          [], NoItinerary> {
4036     bits<6> Imm;
4037     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4038     let Inst{21-16} = Imm;
4039     let Constraints = "$Src = $Rd";
4040 }
4041
4042 class NeonI_ScalarShiftImm_narrow_size<bit u, bits<5> opcode, string asmop,
4043                                        RegisterClass FPRCD, RegisterClass FPRCS,
4044                                        Operand ImmTy>
4045   : NeonI_ScalarShiftImm<u, opcode,
4046                          (outs FPRCD:$Rd), (ins FPRCS:$Rn, ImmTy:$Imm),
4047                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4048                          [], NoItinerary>;
4049
4050 multiclass NeonI_ScalarShiftImm_narrow_HSD_size<bit u, bits<5> opcode,
4051                                                 string asmop> {
4052   def bhi : NeonI_ScalarShiftImm_narrow_size<u, opcode, asmop, FPR8, FPR16,
4053                                              shr_imm8> {
4054     bits<3> Imm;
4055     let Inst{22-19} = 0b0001; // immh:immb = 0001xxx
4056     let Inst{18-16} = Imm;
4057   }
4058   def hsi : NeonI_ScalarShiftImm_narrow_size<u, opcode, asmop, FPR16, FPR32,
4059                                              shr_imm16> {
4060     bits<4> Imm;
4061     let Inst{22-20} = 0b001; // immh:immb = 001xxxx
4062     let Inst{19-16} = Imm;
4063   }
4064   def sdi : NeonI_ScalarShiftImm_narrow_size<u, opcode, asmop, FPR32, FPR64,
4065                                              shr_imm32> {
4066     bits<5> Imm;
4067     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
4068     let Inst{20-16} = Imm;
4069   }
4070 }
4071
4072 multiclass NeonI_ScalarShiftImm_cvt_SD_size<bit u, bits<5> opcode, string asmop> {
4073   def ssi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR32, shr_imm32> {
4074     bits<5> Imm;
4075     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
4076     let Inst{20-16} = Imm;
4077   }
4078   def ddi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR64, shr_imm64> {
4079     bits<6> Imm;
4080     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4081     let Inst{21-16} = Imm;
4082   }
4083 }
4084
4085 multiclass Neon_ScalarShiftImm_D_size_patterns<SDPatternOperator opnode,
4086                                                Instruction INSTD> {
4087   def ddi : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (i32 imm:$Imm))),
4088                 (INSTD FPR64:$Rn, imm:$Imm)>;
4089 }
4090
4091 multiclass Neon_ScalarShiftImm_BHSD_size_patterns<SDPatternOperator opnode,
4092                                                   Instruction INSTB,
4093                                                   Instruction INSTH,
4094                                                   Instruction INSTS,
4095                                                   Instruction INSTD>
4096   : Neon_ScalarShiftImm_D_size_patterns<opnode, INSTD> {
4097   def bbi : Pat<(v1i8 (opnode (v1i8 FPR8:$Rn), (i32 imm:$Imm))),
4098                 (INSTB FPR8:$Rn, imm:$Imm)>;
4099   def hhi : Pat<(v1i16 (opnode (v1i16 FPR16:$Rn), (i32 imm:$Imm))),
4100                 (INSTH FPR16:$Rn, imm:$Imm)>;
4101   def ssi : Pat<(v1i32 (opnode (v1i32 FPR32:$Rn), (i32 imm:$Imm))),
4102                 (INSTS FPR32:$Rn, imm:$Imm)>;
4103 }
4104
4105 class Neon_ScalarShiftImm_accum_D_size_patterns<SDPatternOperator opnode,
4106                                                 Instruction INSTD>
4107   : Pat<(v1i64 (opnode (v1i64 FPR64:$Src), (v1i64 FPR64:$Rn), (i32 imm:$Imm))),
4108         (INSTD FPR64:$Src, FPR64:$Rn, imm:$Imm)>;
4109
4110 multiclass Neon_ScalarShiftImm_narrow_HSD_size_patterns<
4111                                                        SDPatternOperator opnode,
4112                                                        Instruction INSTH,
4113                                                        Instruction INSTS,
4114                                                        Instruction INSTD> {
4115   def bhi : Pat<(v1i8 (opnode (v1i16 FPR16:$Rn), (i32 imm:$Imm))),
4116                 (INSTH FPR16:$Rn, imm:$Imm)>;
4117   def hsi : Pat<(v1i16 (opnode (v1i32 FPR32:$Rn), (i32 imm:$Imm))),
4118                 (INSTS FPR32:$Rn, imm:$Imm)>;
4119   def sdi : Pat<(v1i32 (opnode (v1i64 FPR64:$Rn), (i32 imm:$Imm))),
4120                 (INSTD FPR64:$Rn, imm:$Imm)>;
4121 }
4122
4123 multiclass Neon_ScalarShiftImm_scvtf_SD_size_patterns<SDPatternOperator Sopnode,
4124                                                       SDPatternOperator Dopnode,
4125                                                       Instruction INSTS,
4126                                                       Instruction INSTD> {
4127   def ssi : Pat<(v1f32 (Sopnode (v1i32 FPR32:$Rn), (i32 imm:$Imm))),
4128                 (INSTS FPR32:$Rn, imm:$Imm)>;
4129   def ddi : Pat<(v1f64 (Dopnode (v1i64 FPR64:$Rn), (i32 imm:$Imm))),
4130                 (INSTD FPR64:$Rn, imm:$Imm)>;
4131 }
4132
4133 multiclass Neon_ScalarShiftImm_fcvts_SD_size_patterns<SDPatternOperator Sopnode,
4134                                                       SDPatternOperator Dopnode,
4135                                                       Instruction INSTS,
4136                                                       Instruction INSTD> {
4137   def ssi : Pat<(v1i32 (Sopnode (v1f32 FPR32:$Rn), (i32 imm:$Imm))),
4138                 (INSTS FPR32:$Rn, imm:$Imm)>;
4139   def ddi : Pat<(v1i64 (Dopnode (v1f64 FPR64:$Rn), (i32 imm:$Imm))),
4140                 (INSTD FPR64:$Rn, imm:$Imm)>;
4141 }
4142
4143 // Scalar Signed Shift Right (Immediate)
4144 defm SSHR : NeonI_ScalarShiftRightImm_D_size<0b0, 0b00000, "sshr">;
4145 defm : Neon_ScalarShiftImm_D_size_patterns<int_aarch64_neon_vshrds_n, SSHRddi>;
4146
4147 // Scalar Unsigned Shift Right (Immediate)
4148 defm USHR : NeonI_ScalarShiftRightImm_D_size<0b1, 0b00000, "ushr">;
4149 defm : Neon_ScalarShiftImm_D_size_patterns<int_aarch64_neon_vshrdu_n, USHRddi>;
4150
4151 // Scalar Signed Rounding Shift Right (Immediate)
4152 defm SRSHR : NeonI_ScalarShiftRightImm_D_size<0b0, 0b00100, "srshr">;
4153 defm : Neon_ScalarShiftImm_D_size_patterns<int_aarch64_neon_vrshrds_n, SRSHRddi>;
4154
4155 // Scalar Unigned Rounding Shift Right (Immediate)
4156 defm URSHR : NeonI_ScalarShiftRightImm_D_size<0b1, 0b00100, "urshr">;
4157 defm : Neon_ScalarShiftImm_D_size_patterns<int_aarch64_neon_vrshrdu_n, URSHRddi>;
4158
4159 // Scalar Signed Shift Right and Accumulate (Immediate)
4160 def SSRA : NeonI_ScalarShiftRightImm_accum_D_size<0b0, 0b00010, "ssra">;
4161 def : Neon_ScalarShiftImm_accum_D_size_patterns<int_aarch64_neon_vsrads_n, SSRA>;
4162
4163 // Scalar Unsigned Shift Right and Accumulate (Immediate)
4164 def USRA : NeonI_ScalarShiftRightImm_accum_D_size<0b1, 0b00010, "usra">;
4165 def : Neon_ScalarShiftImm_accum_D_size_patterns<int_aarch64_neon_vsradu_n, USRA>;
4166
4167 // Scalar Signed Rounding Shift Right and Accumulate (Immediate)
4168 def SRSRA : NeonI_ScalarShiftRightImm_accum_D_size<0b0, 0b00110, "srsra">;
4169 def : Neon_ScalarShiftImm_accum_D_size_patterns<int_aarch64_neon_vrsrads_n, SRSRA>;
4170
4171 // Scalar Unsigned Rounding Shift Right and Accumulate (Immediate)
4172 def URSRA : NeonI_ScalarShiftRightImm_accum_D_size<0b1, 0b00110, "ursra">;
4173 def : Neon_ScalarShiftImm_accum_D_size_patterns<int_aarch64_neon_vrsradu_n, URSRA>;
4174
4175 // Scalar Shift Left (Immediate)
4176 defm SHL : NeonI_ScalarShiftLeftImm_D_size<0b0, 0b01010, "shl">;
4177 defm : Neon_ScalarShiftImm_D_size_patterns<int_aarch64_neon_vshld_n, SHLddi>;
4178
4179 // Signed Saturating Shift Left (Immediate)
4180 defm SQSHL : NeonI_ScalarShiftLeftImm_BHSD_size<0b0, 0b01110, "sqshl">;
4181 defm : Neon_ScalarShiftImm_BHSD_size_patterns<int_aarch64_neon_vqshls_n,
4182                                               SQSHLbbi, SQSHLhhi,
4183                                               SQSHLssi, SQSHLddi>;
4184
4185 // Unsigned Saturating Shift Left (Immediate)
4186 defm UQSHL : NeonI_ScalarShiftLeftImm_BHSD_size<0b1, 0b01110, "uqshl">;
4187 defm : Neon_ScalarShiftImm_BHSD_size_patterns<int_aarch64_neon_vqshlu_n,
4188                                               UQSHLbbi, UQSHLhhi,
4189                                               UQSHLssi, UQSHLddi>;
4190
4191 // Signed Saturating Shift Left Unsigned (Immediate)
4192 defm SQSHLU : NeonI_ScalarShiftLeftImm_BHSD_size<0b1, 0b01100, "sqshlu">;
4193 defm : Neon_ScalarShiftImm_BHSD_size_patterns<int_aarch64_neon_vqshlus_n,
4194                                               SQSHLUbbi, SQSHLUhhi,
4195                                               SQSHLUssi, SQSHLUddi>;
4196
4197 // Shift Right And Insert (Immediate)
4198 def SRI : NeonI_ScalarShiftRightImm_accum_D_size<0b1, 0b01000, "sri">;
4199 def : Neon_ScalarShiftImm_accum_D_size_patterns<int_aarch64_neon_vsrid_n, SRI>;
4200
4201 // Shift Left And Insert (Immediate)
4202 def SLI : NeonI_ScalarShiftLeftImm_accum_D_size<0b1, 0b01010, "sli">;
4203 def : Neon_ScalarShiftImm_accum_D_size_patterns<int_aarch64_neon_vslid_n, SLI>;
4204
4205 // Signed Saturating Shift Right Narrow (Immediate)
4206 defm SQSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b0, 0b10010, "sqshrn">;
4207 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqshrn,
4208                                                     SQSHRNbhi, SQSHRNhsi,
4209                                                     SQSHRNsdi>;
4210
4211 // Unsigned Saturating Shift Right Narrow (Immediate)
4212 defm UQSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10010, "uqshrn">;
4213 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vuqshrn,
4214                                                     UQSHRNbhi, UQSHRNhsi,
4215                                                     UQSHRNsdi>;
4216
4217 // Signed Saturating Rounded Shift Right Narrow (Immediate)
4218 defm SQRSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b0, 0b10011, "sqrshrn">;
4219 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqrshrn,
4220                                                     SQRSHRNbhi, SQRSHRNhsi,
4221                                                     SQRSHRNsdi>;
4222
4223 // Unsigned Saturating Rounded Shift Right Narrow (Immediate)
4224 defm UQRSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10011, "uqrshrn">;
4225 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vuqrshrn,
4226                                                     UQRSHRNbhi, UQRSHRNhsi,
4227                                                     UQRSHRNsdi>;
4228
4229 // Signed Saturating Shift Right Unsigned Narrow (Immediate)
4230 defm SQSHRUN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10000, "sqshrun">;
4231 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqshrun,
4232                                                     SQSHRUNbhi, SQSHRUNhsi,
4233                                                     SQSHRUNsdi>;
4234
4235 // Signed Saturating Rounded Shift Right Unsigned Narrow (Immediate)
4236 defm SQRSHRUN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10001, "sqrshrun">;
4237 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqrshrun,
4238                                                     SQRSHRUNbhi, SQRSHRUNhsi,
4239                                                     SQRSHRUNsdi>;
4240
4241 // Scalar Signed Fixed-point Convert To Floating-Point (Immediate)
4242 defm SCVTF_N : NeonI_ScalarShiftImm_cvt_SD_size<0b0, 0b11100, "scvtf">;
4243 defm : Neon_ScalarShiftImm_scvtf_SD_size_patterns<int_aarch64_neon_vcvtf32_n_s32,
4244                                                   int_aarch64_neon_vcvtf64_n_s64,
4245                                                   SCVTF_Nssi, SCVTF_Nddi>;
4246
4247 // Scalar Unsigned Fixed-point Convert To Floating-Point (Immediate)
4248 defm UCVTF_N : NeonI_ScalarShiftImm_cvt_SD_size<0b1, 0b11100, "ucvtf">;
4249 defm : Neon_ScalarShiftImm_scvtf_SD_size_patterns<int_aarch64_neon_vcvtf32_n_u32,
4250                                                   int_aarch64_neon_vcvtf64_n_u64,
4251                                                   UCVTF_Nssi, UCVTF_Nddi>;
4252
4253 // Scalar Floating-point Convert To Signed Fixed-point (Immediate)
4254 defm FCVTZS_N : NeonI_ScalarShiftImm_cvt_SD_size<0b0, 0b11111, "fcvtzs">;
4255 defm : Neon_ScalarShiftImm_fcvts_SD_size_patterns<int_aarch64_neon_vcvts_n_s32_f32,
4256                                                   int_aarch64_neon_vcvtd_n_s64_f64,
4257                                                   FCVTZS_Nssi, FCVTZS_Nddi>;
4258
4259 // Scalar Floating-point Convert To Unsigned Fixed-point (Immediate)
4260 defm FCVTZU_N : NeonI_ScalarShiftImm_cvt_SD_size<0b1, 0b11111, "fcvtzu">;
4261 defm : Neon_ScalarShiftImm_fcvts_SD_size_patterns<int_aarch64_neon_vcvts_n_u32_f32,
4262                                                   int_aarch64_neon_vcvtd_n_u64_f64,
4263                                                   FCVTZU_Nssi, FCVTZU_Nddi>;
4264
4265 // Scalar Integer Add
4266 let isCommutable = 1 in {
4267 def ADDddd : NeonI_Scalar3Same_D_size<0b0, 0b10000, "add">;
4268 }
4269
4270 // Scalar Integer Sub
4271 def SUBddd : NeonI_Scalar3Same_D_size<0b1, 0b10000, "sub">;
4272
4273 // Pattern for Scalar Integer Add and Sub with D register only
4274 defm : Neon_Scalar3Same_D_size_patterns<add, ADDddd>;
4275 defm : Neon_Scalar3Same_D_size_patterns<sub, SUBddd>;
4276
4277 // Patterns to match llvm.aarch64.* intrinsic for Scalar Add, Sub
4278 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vaddds, ADDddd>;
4279 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vadddu, ADDddd>;
4280 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vsubds, SUBddd>;
4281 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vsubdu, SUBddd>;
4282
4283 // Scalar Integer Saturating Add (Signed, Unsigned)
4284 defm SQADD : NeonI_Scalar3Same_BHSD_sizes<0b0, 0b00001, "sqadd", 1>;
4285 defm UQADD : NeonI_Scalar3Same_BHSD_sizes<0b1, 0b00001, "uqadd", 1>;
4286
4287 // Scalar Integer Saturating Sub (Signed, Unsigned)
4288 defm SQSUB : NeonI_Scalar3Same_BHSD_sizes<0b0, 0b00101, "sqsub", 0>;
4289 defm UQSUB : NeonI_Scalar3Same_BHSD_sizes<0b1, 0b00101, "uqsub", 0>;
4290
4291 // Patterns to match llvm.arm.* intrinsic for
4292 // Scalar Integer Saturating Add, Sub  (Signed, Unsigned)
4293 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqadds, SQADDddd>;
4294 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqaddu, UQADDddd>;
4295 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqsubs, SQSUBddd>;
4296 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqsubu, UQSUBddd>;
4297
4298 // Patterns to match llvm.aarch64.* intrinsic for
4299 // Scalar Integer Saturating Add, Sub  (Signed, Unsigned)
4300 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqadds, SQADDbbb,
4301                                            SQADDhhh, SQADDsss, SQADDddd>;
4302 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqaddu, UQADDbbb,
4303                                            UQADDhhh, UQADDsss, UQADDddd>;
4304 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqsubs, SQSUBbbb,
4305                                            SQSUBhhh, SQSUBsss, SQSUBddd>;
4306 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqsubu, UQSUBbbb,
4307                                            UQSUBhhh, UQSUBsss, UQSUBddd>;
4308
4309 // Scalar Integer Saturating Doubling Multiply Half High
4310 defm SQDMULH : NeonI_Scalar3Same_HS_sizes<0b0, 0b10110, "sqdmulh", 1>;
4311
4312 // Scalar Integer Saturating Rounding Doubling Multiply Half High
4313 defm SQRDMULH : NeonI_Scalar3Same_HS_sizes<0b1, 0b10110, "sqrdmulh", 1>;
4314
4315 // Patterns to match llvm.arm.* intrinsic for
4316 // Scalar Integer Saturating Doubling Multiply Half High and
4317 // Scalar Integer Saturating Rounding Doubling Multiply Half High
4318 defm : Neon_Scalar3Same_HS_size_patterns<int_arm_neon_vqdmulh, SQDMULHhhh,
4319                                                                SQDMULHsss>;
4320 defm : Neon_Scalar3Same_HS_size_patterns<int_arm_neon_vqrdmulh, SQRDMULHhhh,
4321                                                                 SQRDMULHsss>;
4322
4323 // Scalar Floating-point Multiply Extended
4324 defm FMULX : NeonI_Scalar3Same_SD_sizes<0b0, 0b0, 0b11011, "fmulx", 1>;
4325
4326 // Scalar Floating-point Reciprocal Step
4327 defm FRECPS : NeonI_Scalar3Same_SD_sizes<0b0, 0b0, 0b11111, "frecps", 0>;
4328
4329 // Scalar Floating-point Reciprocal Square Root Step
4330 defm FRSQRTS : NeonI_Scalar3Same_SD_sizes<0b0, 0b1, 0b11111, "frsqrts", 0>;
4331
4332 // Patterns to match llvm.arm.* intrinsic for
4333 // Scalar Floating-point Reciprocal Step and
4334 // Scalar Floating-point Reciprocal Square Root Step
4335 defm : Neon_Scalar3Same_SD_size_patterns<int_arm_neon_vrecps, FRECPSsss,
4336                                                               FRECPSddd>;
4337 defm : Neon_Scalar3Same_SD_size_patterns<int_arm_neon_vrsqrts, FRSQRTSsss,
4338                                                                FRSQRTSddd>;
4339
4340 // Patterns to match llvm.aarch64.* intrinsic for
4341 // Scalar Floating-point Multiply Extended,
4342 defm : Neon_Scalar3Same_SD_size_patterns<int_aarch64_neon_vmulx, FMULXsss,
4343                                          FMULXddd>;
4344
4345 // Scalar Integer Shift Left (Signed, Unsigned)
4346 def SSHLddd : NeonI_Scalar3Same_D_size<0b0, 0b01000, "sshl">;
4347 def USHLddd : NeonI_Scalar3Same_D_size<0b1, 0b01000, "ushl">;
4348
4349 // Patterns to match llvm.arm.* intrinsic for
4350 // Scalar Integer Shift Left (Signed, Unsigned)
4351 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vshifts, SSHLddd>;
4352 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vshiftu, USHLddd>;
4353
4354 // Patterns to match llvm.aarch64.* intrinsic for
4355 // Scalar Integer Shift Left (Signed, Unsigned)
4356 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vshlds, SSHLddd>;
4357 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vshldu, USHLddd>;
4358
4359 // Scalar Integer Saturating Shift Left (Signed, Unsigned)
4360 defm SQSHL: NeonI_Scalar3Same_BHSD_sizes<0b0, 0b01001, "sqshl", 0>;
4361 defm UQSHL: NeonI_Scalar3Same_BHSD_sizes<0b1, 0b01001, "uqshl", 0>;
4362
4363 // Patterns to match llvm.aarch64.* intrinsic for
4364 // Scalar  Integer Saturating Shift Letf (Signed, Unsigned)
4365 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqshls, SQSHLbbb,
4366                                            SQSHLhhh, SQSHLsss, SQSHLddd>;
4367 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqshlu, UQSHLbbb,
4368                                            UQSHLhhh, UQSHLsss, UQSHLddd>;
4369
4370 // Patterns to match llvm.arm.* intrinsic for
4371 // Scalar  Integer Saturating Shift Letf (Signed, Unsigned)
4372 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqshifts, SQSHLddd>;
4373 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqshiftu, UQSHLddd>;
4374
4375 // Scalar Integer Rounding Shift Left (Signed, Unsigned)
4376 def SRSHLddd: NeonI_Scalar3Same_D_size<0b0, 0b01010, "srshl">;
4377 def URSHLddd: NeonI_Scalar3Same_D_size<0b1, 0b01010, "urshl">;
4378
4379 // Patterns to match llvm.aarch64.* intrinsic for
4380 // Scalar Integer Rounding Shift Left (Signed, Unsigned)
4381 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vrshlds, SRSHLddd>;
4382 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vrshldu, URSHLddd>;
4383
4384 // Patterns to match llvm.arm.* intrinsic for
4385 // Scalar Integer Rounding Shift Left (Signed, Unsigned)
4386 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vrshifts, SRSHLddd>;
4387 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vrshiftu, URSHLddd>;
4388
4389 // Scalar Integer Saturating Rounding Shift Left (Signed, Unsigned)
4390 defm SQRSHL: NeonI_Scalar3Same_BHSD_sizes<0b0, 0b01011, "sqrshl", 0>;
4391 defm UQRSHL: NeonI_Scalar3Same_BHSD_sizes<0b1, 0b01011, "uqrshl", 0>;
4392
4393 // Patterns to match llvm.aarch64.* intrinsic for
4394 // Scalar Integer Saturating Rounding Shift Left (Signed, Unsigned)
4395 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqrshls, SQRSHLbbb,
4396                                            SQRSHLhhh, SQRSHLsss, SQRSHLddd>;
4397 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqrshlu, UQRSHLbbb,
4398                                            UQRSHLhhh, UQRSHLsss, UQRSHLddd>;
4399
4400 // Patterns to match llvm.arm.* intrinsic for
4401 // Scalar Integer Saturating Rounding Shift Left (Signed, Unsigned)
4402 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqrshifts, SQRSHLddd>;
4403 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqrshiftu, UQRSHLddd>;
4404
4405 // Signed Saturating Doubling Multiply-Add Long
4406 defm SQDMLAL : NeonI_Scalar3Diff_ml_HS_size<0b0, 0b1001, "sqdmlal">;
4407 defm : Neon_Scalar3Diff_ml_HS_size_patterns<int_aarch64_neon_vqdmlal,
4408                                             SQDMLALshh, SQDMLALdss>;
4409
4410 // Signed Saturating Doubling Multiply-Subtract Long
4411 defm SQDMLSL : NeonI_Scalar3Diff_ml_HS_size<0b0, 0b1011, "sqdmlsl">;
4412 defm : Neon_Scalar3Diff_ml_HS_size_patterns<int_aarch64_neon_vqdmlsl,
4413                                             SQDMLSLshh, SQDMLSLdss>;
4414
4415 // Signed Saturating Doubling Multiply Long
4416 defm SQDMULL : NeonI_Scalar3Diff_HS_size<0b0, 0b1101, "sqdmull">;
4417 defm : Neon_Scalar3Diff_HS_size_patterns<int_aarch64_neon_vqdmull,
4418                                          SQDMULLshh, SQDMULLdss>;
4419
4420 // Scalar Signed Integer Convert To Floating-point
4421 defm SCVTF  : NeonI_Scalar2SameMisc_SD_size<0b0, 0b0, 0b11101, "scvtf">;
4422 defm : Neon_Scalar2SameMisc_cvt_SD_size_patterns<int_aarch64_neon_vcvtf32_s32,
4423                                                  int_aarch64_neon_vcvtf64_s64,
4424                                                  SCVTFss, SCVTFdd>;
4425
4426 // Scalar Unsigned Integer Convert To Floating-point
4427 defm UCVTF  : NeonI_Scalar2SameMisc_SD_size<0b1, 0b0, 0b11101, "ucvtf">;
4428 defm : Neon_Scalar2SameMisc_cvt_SD_size_patterns<int_aarch64_neon_vcvtf32_u32,
4429                                                  int_aarch64_neon_vcvtf64_u64,
4430                                                  UCVTFss, UCVTFdd>;
4431
4432 // Scalar Floating-point Reciprocal Estimate
4433 defm FRECPE : NeonI_Scalar2SameMisc_SD_size<0b0, 0b1, 0b11101, "frecpe">;
4434 defm : Neon_Scalar2SameMisc_SD_size_patterns<int_arm_neon_vrecpe,
4435                                              FRECPEss, FRECPEdd>;
4436
4437 // Scalar Floating-point Reciprocal Exponent
4438 defm FRECPX : NeonI_Scalar2SameMisc_SD_size<0b0, 0b1, 0b11111, "frecpx">;
4439 defm : Neon_Scalar2SameMisc_SD_size_patterns<int_aarch64_neon_vrecpx,
4440                                              FRECPXss, FRECPXdd>;
4441
4442 // Scalar Floating-point Reciprocal Square Root Estimate
4443 defm FRSQRTE: NeonI_Scalar2SameMisc_SD_size<0b1, 0b1, 0b11101, "frsqrte">;
4444 defm : Neon_Scalar2SameMisc_SD_size_patterns<int_arm_neon_vrsqrte,
4445                                              FRSQRTEss, FRSQRTEdd>;
4446
4447 // Scalar Integer Compare
4448
4449 // Scalar Compare Bitwise Equal
4450 def CMEQddd: NeonI_Scalar3Same_D_size<0b1, 0b10001, "cmeq">;
4451 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vceq, CMEQddd>;
4452
4453 // Scalar Compare Signed Greather Than Or Equal
4454 def CMGEddd: NeonI_Scalar3Same_D_size<0b0, 0b00111, "cmge">;
4455 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vcge, CMGEddd>;
4456
4457 // Scalar Compare Unsigned Higher Or Same
4458 def CMHSddd: NeonI_Scalar3Same_D_size<0b1, 0b00111, "cmhs">;
4459 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vchs, CMHSddd>;
4460
4461 // Scalar Compare Unsigned Higher
4462 def CMHIddd: NeonI_Scalar3Same_D_size<0b1, 0b00110, "cmhi">;
4463 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vchi, CMHIddd>;
4464
4465 // Scalar Compare Signed Greater Than
4466 def CMGTddd: NeonI_Scalar3Same_D_size<0b0, 0b00110, "cmgt">;
4467 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vcgt, CMGTddd>;
4468
4469 // Scalar Compare Bitwise Test Bits
4470 def CMTSTddd: NeonI_Scalar3Same_D_size<0b0, 0b10001, "cmtst">;
4471 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vtstd, CMTSTddd>;
4472
4473 // Scalar Compare Bitwise Equal To Zero
4474 def CMEQddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b0, 0b01001, "cmeq">;
4475 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vceq,
4476                                                 CMEQddi>;
4477
4478 // Scalar Compare Signed Greather Than Or Equal To Zero
4479 def CMGEddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b1, 0b01000, "cmge">;
4480 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vcge,
4481                                                 CMGEddi>;
4482
4483 // Scalar Compare Signed Greater Than Zero
4484 def CMGTddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b0, 0b01000, "cmgt">;
4485 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vcgt,
4486                                                 CMGTddi>;
4487
4488 // Scalar Compare Signed Less Than Or Equal To Zero
4489 def CMLEddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b1, 0b01001, "cmle">;
4490 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vclez,
4491                                                 CMLEddi>;
4492
4493 // Scalar Compare Less Than Zero
4494 def CMLTddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b0, 0b01010, "cmlt">;
4495 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vcltz,
4496                                                 CMLTddi>;
4497
4498 // Scalar Floating-point Compare
4499
4500 // Scalar Floating-point Compare Mask Equal
4501 defm FCMEQ: NeonI_Scalar3Same_SD_sizes<0b0, 0b0, 0b11100, "fcmeq">;
4502 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vceq,
4503                                              FCMEQsss, FCMEQddd>;
4504
4505 // Scalar Floating-point Compare Mask Equal To Zero
4506 defm FCMEQZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b0, 0b01101, "fcmeq">;
4507 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vceq,
4508                                                   FCMEQZssi, FCMEQZddi>;
4509
4510 // Scalar Floating-point Compare Mask Greater Than Or Equal
4511 defm FCMGE: NeonI_Scalar3Same_SD_sizes<0b1, 0b0, 0b11100, "fcmge">;
4512 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcge,
4513                                              FCMGEsss, FCMGEddd>;
4514
4515 // Scalar Floating-point Compare Mask Greater Than Or Equal To Zero
4516 defm FCMGEZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b1, 0b01100, "fcmge">;
4517 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vcge,
4518                                                   FCMGEZssi, FCMGEZddi>;
4519
4520 // Scalar Floating-point Compare Mask Greather Than
4521 defm FCMGT: NeonI_Scalar3Same_SD_sizes<0b1, 0b1, 0b11100, "fcmgt">;
4522 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcgt,
4523                                              FCMGTsss, FCMGTddd>;
4524
4525 // Scalar Floating-point Compare Mask Greather Than Zero
4526 defm FCMGTZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b0, 0b01100, "fcmgt">;
4527 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vcgt,
4528                                                   FCMGTZssi, FCMGTZddi>;
4529
4530 // Scalar Floating-point Compare Mask Less Than Or Equal To Zero
4531 defm FCMLEZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b1, 0b01101, "fcmle">;
4532 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vclez,
4533                                                   FCMLEZssi, FCMLEZddi>;
4534
4535 // Scalar Floating-point Compare Mask Less Than Zero
4536 defm FCMLTZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b0, 0b01110, "fcmlt">;
4537 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vcltz,
4538                                                   FCMLTZssi, FCMLTZddi>;
4539
4540 // Scalar Floating-point Absolute Compare Mask Greater Than Or Equal
4541 defm FACGE: NeonI_Scalar3Same_SD_sizes<0b1, 0b0, 0b11101, "facge">;
4542 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcage,
4543                                              FACGEsss, FACGEddd>;
4544
4545 // Scalar Floating-point Absolute Compare Mask Greater Than
4546 defm FACGT: NeonI_Scalar3Same_SD_sizes<0b1, 0b1, 0b11101, "facgt">;
4547 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcagt,
4548                                              FACGTsss, FACGTddd>;
4549
4550 // Scalar Absolute Value
4551 defm ABS : NeonI_Scalar2SameMisc_D_size<0b0, 0b01011, "abs">;
4552 defm : Neon_Scalar2SameMisc_D_size_patterns<int_aarch64_neon_vabs, ABSdd>;
4553
4554 // Scalar Signed Saturating Absolute Value
4555 defm SQABS : NeonI_Scalar2SameMisc_BHSD_size<0b0, 0b00111, "sqabs">;
4556 defm : Neon_Scalar2SameMisc_BHSD_size_patterns<int_arm_neon_vqabs,
4557                                                SQABSbb, SQABShh, SQABSss, SQABSdd>;
4558
4559 // Scalar Negate
4560 defm NEG : NeonI_Scalar2SameMisc_D_size<0b1, 0b01011, "neg">;
4561 defm : Neon_Scalar2SameMisc_D_size_patterns<int_aarch64_neon_vneg, NEGdd>;
4562
4563 // Scalar Signed Saturating Negate
4564 defm SQNEG : NeonI_Scalar2SameMisc_BHSD_size<0b1, 0b00111, "sqneg">;
4565 defm : Neon_Scalar2SameMisc_BHSD_size_patterns<int_arm_neon_vqneg,
4566                                                SQNEGbb, SQNEGhh, SQNEGss, SQNEGdd>;
4567
4568 // Scalar Signed Saturating Accumulated of Unsigned Value
4569 defm SUQADD : NeonI_Scalar2SameMisc_accum_BHSD_size<0b0, 0b00011, "suqadd">;
4570 defm : Neon_Scalar2SameMisc_accum_BHSD_size_patterns<int_aarch64_neon_vuqadd,
4571                                                      SUQADDbb, SUQADDhh,
4572                                                      SUQADDss, SUQADDdd>;
4573
4574 // Scalar Unsigned Saturating Accumulated of Signed Value
4575 defm USQADD : NeonI_Scalar2SameMisc_accum_BHSD_size<0b1, 0b00011, "usqadd">;
4576 defm : Neon_Scalar2SameMisc_accum_BHSD_size_patterns<int_aarch64_neon_vsqadd,
4577                                                      USQADDbb, USQADDhh,
4578                                                      USQADDss, USQADDdd>;
4579
4580 // Scalar Signed Saturating Extract Unsigned Narrow
4581 defm SQXTUN : NeonI_Scalar2SameMisc_narrow_HSD_size<0b1, 0b10010, "sqxtun">;
4582 defm : Neon_Scalar2SameMisc_narrow_HSD_size_patterns<int_arm_neon_vqmovnsu,
4583                                                      SQXTUNbh, SQXTUNhs,
4584                                                      SQXTUNsd>;
4585
4586 // Scalar Signed Saturating Extract Narrow
4587 defm SQXTN  : NeonI_Scalar2SameMisc_narrow_HSD_size<0b0, 0b10100, "sqxtn">;
4588 defm : Neon_Scalar2SameMisc_narrow_HSD_size_patterns<int_arm_neon_vqmovns,
4589                                                      SQXTNbh, SQXTNhs,
4590                                                      SQXTNsd>;
4591
4592 // Scalar Unsigned Saturating Extract Narrow
4593 defm UQXTN  : NeonI_Scalar2SameMisc_narrow_HSD_size<0b1, 0b10100, "uqxtn">;
4594 defm : Neon_Scalar2SameMisc_narrow_HSD_size_patterns<int_arm_neon_vqmovnu,
4595                                                      UQXTNbh, UQXTNhs,
4596                                                      UQXTNsd>;
4597
4598 // Scalar Reduce Pairwise
4599
4600 multiclass NeonI_ScalarPair_D_sizes<bit u, bit size, bits<5> opcode,
4601                                      string asmop, bit Commutable = 0> {
4602   let isCommutable = Commutable in {
4603     def _D_2D : NeonI_ScalarPair<u, {size, 0b1}, opcode,
4604                                 (outs FPR64:$Rd), (ins VPR128:$Rn),
4605                                 !strconcat(asmop, "\t$Rd, $Rn.2d"),
4606                                 [],
4607                                 NoItinerary>;
4608   }
4609 }
4610
4611 multiclass NeonI_ScalarPair_SD_sizes<bit u, bit size, bits<5> opcode,
4612                                      string asmop, bit Commutable = 0>
4613   : NeonI_ScalarPair_D_sizes<u, size, opcode, asmop, Commutable> {
4614   let isCommutable = Commutable in {
4615     def _S_2S : NeonI_ScalarPair<u, {size, 0b0}, opcode,
4616                                 (outs FPR32:$Rd), (ins VPR64:$Rn),
4617                                 !strconcat(asmop, "\t$Rd, $Rn.2s"),
4618                                 [],
4619                                 NoItinerary>;
4620   }
4621 }
4622
4623 // Scalar Reduce Addition Pairwise (Integer) with
4624 // Pattern to match llvm.arm.* intrinsic
4625 defm ADDPvv : NeonI_ScalarPair_D_sizes<0b0, 0b1, 0b11011, "addp", 0>;
4626
4627 // Pattern to match llvm.aarch64.* intrinsic for
4628 // Scalar Reduce Addition Pairwise (Integer)
4629 def : Pat<(v1i64 (int_aarch64_neon_vpadd (v2i64 VPR128:$Rn))),
4630           (ADDPvv_D_2D VPR128:$Rn)>;
4631
4632 // Scalar Reduce Addition Pairwise (Floating Point)
4633 defm FADDPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b0, 0b01101, "faddp", 0>;
4634
4635 // Scalar Reduce Maximum Pairwise (Floating Point)
4636 defm FMAXPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b0, 0b01111, "fmaxp", 0>;
4637
4638 // Scalar Reduce Minimum Pairwise (Floating Point)
4639 defm FMINPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b1, 0b01111, "fminp", 0>;
4640
4641 // Scalar Reduce maxNum Pairwise (Floating Point)
4642 defm FMAXNMPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b0, 0b01100, "fmaxnmp", 0>;
4643
4644 // Scalar Reduce minNum Pairwise (Floating Point)
4645 defm FMINNMPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b1, 0b01100, "fminnmp", 0>;
4646
4647 multiclass Neon_ScalarPair_SD_size_patterns<SDPatternOperator opnodeS,
4648                                             SDPatternOperator opnodeD,
4649                                             Instruction INSTS,
4650                                             Instruction INSTD> {
4651   def : Pat<(v1f32 (opnodeS (v2f32 VPR64:$Rn))),
4652             (INSTS VPR64:$Rn)>;
4653   def : Pat<(v1f64 (opnodeD (v2f64 VPR128:$Rn))),
4654             (INSTD VPR128:$Rn)>;
4655 }
4656
4657 // Patterns to match llvm.aarch64.* intrinsic for
4658 // Scalar Reduce Add, Max, Min, MaxiNum, MinNum Pairwise (Floating Point)
4659 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpfadd,
4660   int_aarch64_neon_vpfaddq, FADDPvv_S_2S, FADDPvv_D_2D>;
4661
4662 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpmax,
4663   int_aarch64_neon_vpmaxq, FMAXPvv_S_2S, FMAXPvv_D_2D>;
4664
4665 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpmin,
4666   int_aarch64_neon_vpminq, FMINPvv_S_2S, FMINPvv_D_2D>;
4667
4668 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpfmaxnm,
4669   int_aarch64_neon_vpfmaxnmq, FMAXNMPvv_S_2S, FMAXNMPvv_D_2D>;
4670
4671 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpfminnm, 
4672   int_aarch64_neon_vpfminnmq, FMINNMPvv_S_2S, FMINNMPvv_D_2D>;
4673
4674
4675
4676 //===----------------------------------------------------------------------===//
4677 // Non-Instruction Patterns
4678 //===----------------------------------------------------------------------===//
4679
4680 // 64-bit vector bitcasts...
4681
4682 def : Pat<(v1i64 (bitconvert (v8i8  VPR64:$src))), (v1i64 VPR64:$src)>;
4683 def : Pat<(v2f32 (bitconvert (v8i8  VPR64:$src))), (v2f32 VPR64:$src)>;
4684 def : Pat<(v2i32 (bitconvert (v8i8  VPR64:$src))), (v2i32 VPR64:$src)>;
4685 def : Pat<(v4i16 (bitconvert (v8i8  VPR64:$src))), (v4i16 VPR64:$src)>;
4686
4687 def : Pat<(v1i64 (bitconvert (v4i16  VPR64:$src))), (v1i64 VPR64:$src)>;
4688 def : Pat<(v2i32 (bitconvert (v4i16  VPR64:$src))), (v2i32 VPR64:$src)>;
4689 def : Pat<(v2f32 (bitconvert (v4i16  VPR64:$src))), (v2f32 VPR64:$src)>;
4690 def : Pat<(v8i8  (bitconvert (v4i16  VPR64:$src))), (v8i8 VPR64:$src)>;
4691
4692 def : Pat<(v1i64 (bitconvert (v2i32  VPR64:$src))), (v1i64 VPR64:$src)>;
4693 def : Pat<(v2f32 (bitconvert (v2i32  VPR64:$src))), (v2f32 VPR64:$src)>;
4694 def : Pat<(v4i16 (bitconvert (v2i32  VPR64:$src))), (v4i16 VPR64:$src)>;
4695 def : Pat<(v8i8  (bitconvert (v2i32  VPR64:$src))), (v8i8 VPR64:$src)>;
4696
4697 def : Pat<(v1i64 (bitconvert (v2f32  VPR64:$src))), (v1i64 VPR64:$src)>;
4698 def : Pat<(v2i32 (bitconvert (v2f32  VPR64:$src))), (v2i32 VPR64:$src)>;
4699 def : Pat<(v4i16 (bitconvert (v2f32  VPR64:$src))), (v4i16 VPR64:$src)>;
4700 def : Pat<(v8i8  (bitconvert (v2f32  VPR64:$src))), (v8i8 VPR64:$src)>;
4701
4702 def : Pat<(v2f32 (bitconvert (v1i64  VPR64:$src))), (v2f32 VPR64:$src)>;
4703 def : Pat<(v2i32 (bitconvert (v1i64  VPR64:$src))), (v2i32 VPR64:$src)>;
4704 def : Pat<(v4i16 (bitconvert (v1i64  VPR64:$src))), (v4i16 VPR64:$src)>;
4705 def : Pat<(v8i8  (bitconvert (v1i64  VPR64:$src))), (v8i8 VPR64:$src)>;
4706
4707 // ..and 128-bit vector bitcasts...
4708
4709 def : Pat<(v2f64 (bitconvert (v16i8  VPR128:$src))), (v2f64 VPR128:$src)>;
4710 def : Pat<(v2i64 (bitconvert (v16i8  VPR128:$src))), (v2i64 VPR128:$src)>;
4711 def : Pat<(v4f32 (bitconvert (v16i8  VPR128:$src))), (v4f32 VPR128:$src)>;
4712 def : Pat<(v4i32 (bitconvert (v16i8  VPR128:$src))), (v4i32 VPR128:$src)>;
4713 def : Pat<(v8i16 (bitconvert (v16i8  VPR128:$src))), (v8i16 VPR128:$src)>;
4714
4715 def : Pat<(v2f64 (bitconvert (v8i16  VPR128:$src))), (v2f64 VPR128:$src)>;
4716 def : Pat<(v2i64 (bitconvert (v8i16  VPR128:$src))), (v2i64 VPR128:$src)>;
4717 def : Pat<(v4i32 (bitconvert (v8i16  VPR128:$src))), (v4i32 VPR128:$src)>;
4718 def : Pat<(v4f32 (bitconvert (v8i16  VPR128:$src))), (v4f32 VPR128:$src)>;
4719 def : Pat<(v16i8 (bitconvert (v8i16  VPR128:$src))), (v16i8 VPR128:$src)>;
4720
4721 def : Pat<(v2f64 (bitconvert (v4i32  VPR128:$src))), (v2f64 VPR128:$src)>;
4722 def : Pat<(v2i64 (bitconvert (v4i32  VPR128:$src))), (v2i64 VPR128:$src)>;
4723 def : Pat<(v4f32 (bitconvert (v4i32  VPR128:$src))), (v4f32 VPR128:$src)>;
4724 def : Pat<(v8i16 (bitconvert (v4i32  VPR128:$src))), (v8i16 VPR128:$src)>;
4725 def : Pat<(v16i8 (bitconvert (v4i32  VPR128:$src))), (v16i8 VPR128:$src)>;
4726
4727 def : Pat<(v2f64 (bitconvert (v4f32  VPR128:$src))), (v2f64 VPR128:$src)>;
4728 def : Pat<(v2i64 (bitconvert (v4f32  VPR128:$src))), (v2i64 VPR128:$src)>;
4729 def : Pat<(v4i32 (bitconvert (v4f32  VPR128:$src))), (v4i32 VPR128:$src)>;
4730 def : Pat<(v8i16 (bitconvert (v4f32  VPR128:$src))), (v8i16 VPR128:$src)>;
4731 def : Pat<(v16i8 (bitconvert (v4f32  VPR128:$src))), (v16i8 VPR128:$src)>;
4732
4733 def : Pat<(v2f64 (bitconvert (v2i64  VPR128:$src))), (v2f64 VPR128:$src)>;
4734 def : Pat<(v4f32 (bitconvert (v2i64  VPR128:$src))), (v4f32 VPR128:$src)>;
4735 def : Pat<(v4i32 (bitconvert (v2i64  VPR128:$src))), (v4i32 VPR128:$src)>;
4736 def : Pat<(v8i16 (bitconvert (v2i64  VPR128:$src))), (v8i16 VPR128:$src)>;
4737 def : Pat<(v16i8 (bitconvert (v2i64  VPR128:$src))), (v16i8 VPR128:$src)>;
4738
4739 def : Pat<(v2i64 (bitconvert (v2f64  VPR128:$src))), (v2i64 VPR128:$src)>;
4740 def : Pat<(v4f32 (bitconvert (v2f64  VPR128:$src))), (v4f32 VPR128:$src)>;
4741 def : Pat<(v4i32 (bitconvert (v2f64  VPR128:$src))), (v4i32 VPR128:$src)>;
4742 def : Pat<(v8i16 (bitconvert (v2f64  VPR128:$src))), (v8i16 VPR128:$src)>;
4743 def : Pat<(v16i8 (bitconvert (v2f64  VPR128:$src))), (v16i8 VPR128:$src)>;
4744
4745
4746 // ...and scalar bitcasts...
4747 def : Pat<(f16 (bitconvert (v1i16  FPR16:$src))), (f16 FPR16:$src)>;
4748 def : Pat<(f32 (bitconvert (v1i32  FPR32:$src))), (f32 FPR32:$src)>;
4749 def : Pat<(f64 (bitconvert (v1i64  FPR64:$src))), (f64 FPR64:$src)>;
4750 def : Pat<(f32 (bitconvert (v1f32  FPR32:$src))), (f32 FPR32:$src)>;
4751 def : Pat<(f64 (bitconvert (v1f64  FPR64:$src))), (f64 FPR64:$src)>;
4752
4753 def : Pat<(i64 (bitconvert (v1i64  FPR64:$src))), (FMOVxd $src)>;
4754 def : Pat<(i32 (bitconvert (v1i32  FPR32:$src))), (FMOVws $src)>;
4755
4756 def : Pat<(v8i8  (bitconvert (v1i64  VPR64:$src))), (v8i8 VPR64:$src)>;
4757 def : Pat<(v4i16 (bitconvert (v1i64  VPR64:$src))), (v4i16 VPR64:$src)>;
4758 def : Pat<(v2i32 (bitconvert (v1i64  VPR64:$src))), (v2i32 VPR64:$src)>;
4759
4760 def : Pat<(f64   (bitconvert (v8i8  VPR64:$src))), (f64 VPR64:$src)>;
4761 def : Pat<(f64   (bitconvert (v4i16  VPR64:$src))), (f64 VPR64:$src)>;
4762 def : Pat<(f64   (bitconvert (v2i32  VPR64:$src))), (f64 VPR64:$src)>;
4763 def : Pat<(f64   (bitconvert (v2f32  VPR64:$src))), (f64 VPR64:$src)>;
4764 def : Pat<(f64   (bitconvert (v1i64  VPR64:$src))), (f64 VPR64:$src)>;
4765
4766 def : Pat<(f128  (bitconvert (v16i8  VPR128:$src))), (f128 VPR128:$src)>;
4767 def : Pat<(f128  (bitconvert (v8i16  VPR128:$src))), (f128 VPR128:$src)>;
4768 def : Pat<(f128  (bitconvert (v4i32  VPR128:$src))), (f128 VPR128:$src)>;
4769 def : Pat<(f128  (bitconvert (v2i64  VPR128:$src))), (f128 VPR128:$src)>;
4770 def : Pat<(f128  (bitconvert (v4f32  VPR128:$src))), (f128 VPR128:$src)>;
4771 def : Pat<(f128  (bitconvert (v2f64  VPR128:$src))), (f128 VPR128:$src)>;
4772
4773 def : Pat<(v1i16 (bitconvert (f16  FPR16:$src))), (v1i16 FPR16:$src)>;
4774 def : Pat<(v1i32 (bitconvert (f32  FPR32:$src))), (v1i32 FPR32:$src)>;
4775 def : Pat<(v1i64 (bitconvert (f64  FPR64:$src))), (v1i64 FPR64:$src)>;
4776 def : Pat<(v1f32 (bitconvert (f32  FPR32:$src))), (v1f32 FPR32:$src)>;
4777 def : Pat<(v1f64 (bitconvert (f64  FPR64:$src))), (v1f64 FPR64:$src)>;
4778
4779 def : Pat<(v1i64 (bitconvert (i64  GPR64:$src))), (FMOVdx $src)>;
4780 def : Pat<(v1i32 (bitconvert (i32  GPR32:$src))), (FMOVsw $src)>;
4781
4782 def : Pat<(v8i8   (bitconvert (f64   FPR64:$src))), (v8i8 FPR64:$src)>;
4783 def : Pat<(v4i16  (bitconvert (f64   FPR64:$src))), (v4i16 FPR64:$src)>;
4784 def : Pat<(v2i32  (bitconvert (f64   FPR64:$src))), (v2i32 FPR64:$src)>;
4785 def : Pat<(v2f32  (bitconvert (f64   FPR64:$src))), (v2f32 FPR64:$src)>;
4786 def : Pat<(v1i64  (bitconvert (f64   FPR64:$src))), (v1i64 FPR64:$src)>;
4787
4788 def : Pat<(v16i8  (bitconvert (f128   FPR128:$src))), (v16i8 FPR128:$src)>;
4789 def : Pat<(v8i16  (bitconvert (f128   FPR128:$src))), (v8i16 FPR128:$src)>;
4790 def : Pat<(v4i32  (bitconvert (f128   FPR128:$src))), (v4i32 FPR128:$src)>;
4791 def : Pat<(v2i64  (bitconvert (f128   FPR128:$src))), (v2i64 FPR128:$src)>;
4792 def : Pat<(v4f32  (bitconvert (f128   FPR128:$src))), (v4f32 FPR128:$src)>;
4793 def : Pat<(v2f64  (bitconvert (f128   FPR128:$src))), (v2f64 FPR128:$src)>;
4794
4795 def neon_uimm0_bare : Operand<i64>,
4796                         ImmLeaf<i64, [{return Imm == 0;}]> {
4797   let ParserMatchClass = neon_uimm0_asmoperand;
4798   let PrintMethod = "printUImmBareOperand";
4799 }
4800
4801 def neon_uimm1_bare : Operand<i64>,
4802                         ImmLeaf<i64, [{(void)Imm; return true;}]> {
4803   let ParserMatchClass = neon_uimm1_asmoperand;
4804   let PrintMethod = "printUImmBareOperand";
4805 }
4806
4807 def neon_uimm2_bare : Operand<i64>,
4808                         ImmLeaf<i64, [{(void)Imm; return true;}]> {
4809   let ParserMatchClass = neon_uimm2_asmoperand;
4810   let PrintMethod = "printUImmBareOperand";
4811 }
4812
4813 def neon_uimm3_bare : Operand<i64>,
4814                         ImmLeaf<i64, [{(void)Imm; return true;}]> {
4815   let ParserMatchClass = uimm3_asmoperand;
4816   let PrintMethod = "printUImmBareOperand";
4817 }
4818
4819 def neon_uimm4_bare : Operand<i64>,
4820                         ImmLeaf<i64, [{(void)Imm; return true;}]> {
4821   let ParserMatchClass = uimm4_asmoperand;
4822   let PrintMethod = "printUImmBareOperand";
4823 }
4824
4825 def neon_uimm3 : Operand<i64>,
4826                    ImmLeaf<i64, [{(void)Imm; return true;}]> {
4827   let ParserMatchClass = uimm3_asmoperand;
4828   let PrintMethod = "printUImmHexOperand";
4829 }
4830
4831 def neon_uimm4 : Operand<i64>,
4832                    ImmLeaf<i64, [{(void)Imm; return true;}]> {
4833   let ParserMatchClass = uimm4_asmoperand;
4834   let PrintMethod = "printUImmHexOperand";
4835 }
4836
4837 class NeonI_INS_main<string asmop, string Res, ValueType ResTy,
4838                      RegisterClass OpGPR, ValueType OpTy, Operand OpImm>
4839   : NeonI_copy<0b1, 0b0, 0b0011,
4840                (outs VPR128:$Rd), (ins VPR128:$src, OpGPR:$Rn, OpImm:$Imm),
4841                asmop # "\t$Rd." # Res # "[$Imm], $Rn",
4842                [(set (ResTy VPR128:$Rd),
4843                  (ResTy (vector_insert
4844                    (ResTy VPR128:$src),
4845                    (OpTy OpGPR:$Rn),
4846                    (OpImm:$Imm))))],
4847                NoItinerary> {
4848   bits<4> Imm;
4849   let Constraints = "$src = $Rd";
4850 }
4851
4852 // Bitwise Extract
4853 class NeonI_Extract<bit q, bits<2> op2, string asmop,
4854                     string OpS, RegisterOperand OpVPR, Operand OpImm>
4855   : NeonI_BitExtract<q, op2, (outs OpVPR:$Rd),
4856                      (ins OpVPR:$Rn, OpVPR:$Rm, OpImm:$Index),
4857                      asmop # "\t$Rd." # OpS # ", $Rn." # OpS # 
4858                      ", $Rm." # OpS # ", $Index",
4859                      [],
4860                      NoItinerary>{
4861   bits<4> Index;
4862 }
4863
4864 def EXTvvvi_8b : NeonI_Extract<0b0, 0b00, "ext", "8b",
4865                                VPR64, neon_uimm3> {
4866   let Inst{14-11} = {0b0, Index{2}, Index{1}, Index{0}};
4867 }
4868
4869 def EXTvvvi_16b: NeonI_Extract<0b1, 0b00, "ext", "16b",
4870                                VPR128, neon_uimm4> {
4871   let Inst{14-11} = Index;
4872 }
4873
4874 class NI_Extract<ValueType OpTy, RegisterOperand OpVPR, Instruction INST,
4875                  Operand OpImm> 
4876   : Pat<(OpTy (Neon_vextract (OpTy OpVPR:$Rn), (OpTy OpVPR:$Rm),
4877                                  (i64 OpImm:$Imm))),
4878               (INST OpVPR:$Rn, OpVPR:$Rm, OpImm:$Imm)>;
4879
4880 def : NI_Extract<v8i8,  VPR64,  EXTvvvi_8b,  neon_uimm3>;
4881 def : NI_Extract<v4i16, VPR64,  EXTvvvi_8b,  neon_uimm3>;
4882 def : NI_Extract<v2i32, VPR64,  EXTvvvi_8b,  neon_uimm3>;
4883 def : NI_Extract<v1i64, VPR64,  EXTvvvi_8b,  neon_uimm3>;
4884 def : NI_Extract<v2f32, VPR64,  EXTvvvi_8b,  neon_uimm3>;
4885 def : NI_Extract<v1f64, VPR64,  EXTvvvi_8b,  neon_uimm3>;
4886 def : NI_Extract<v16i8, VPR128, EXTvvvi_16b, neon_uimm4>;
4887 def : NI_Extract<v8i16, VPR128, EXTvvvi_16b, neon_uimm4>;
4888 def : NI_Extract<v4i32, VPR128, EXTvvvi_16b, neon_uimm4>;
4889 def : NI_Extract<v2i64, VPR128, EXTvvvi_16b, neon_uimm4>;
4890 def : NI_Extract<v4f32, VPR128, EXTvvvi_16b, neon_uimm4>;
4891 def : NI_Extract<v2f64, VPR128, EXTvvvi_16b, neon_uimm4>;
4892
4893 // The followings are for instruction class (3V Elem)
4894
4895 // Variant 1
4896
4897 class NI_2VE<bit q, bit u, bits<2> size, bits<4> opcode,
4898              string asmop, string ResS, string OpS, string EleOpS,
4899              Operand OpImm, RegisterOperand ResVPR,
4900              RegisterOperand OpVPR, RegisterOperand EleOpVPR>
4901   : NeonI_2VElem<q, u, size, opcode, 
4902                  (outs ResVPR:$Rd), (ins ResVPR:$src, OpVPR:$Rn,
4903                                          EleOpVPR:$Re, OpImm:$Index),
4904                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS #
4905                  ", $Re." # EleOpS # "[$Index]",
4906                  [],
4907                  NoItinerary> {
4908   bits<3> Index;
4909   bits<5> Re;
4910
4911   let Constraints = "$src = $Rd";
4912 }
4913
4914 multiclass NI_2VE_v1<bit u, bits<4> opcode, string asmop> {
4915   // vector register class for element is always 128-bit to cover the max index
4916   def _2s4s : NI_2VE<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
4917                      neon_uimm2_bare, VPR64, VPR64, VPR128> {
4918     let Inst{11} = {Index{1}};
4919     let Inst{21} = {Index{0}};
4920     let Inst{20-16} = Re;
4921   }
4922
4923   def _4s4s : NI_2VE<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
4924                      neon_uimm2_bare, VPR128, VPR128, VPR128> {
4925     let Inst{11} = {Index{1}};
4926     let Inst{21} = {Index{0}};
4927     let Inst{20-16} = Re;
4928   }
4929
4930   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
4931   def _4h8h : NI_2VE<0b0, u, 0b01, opcode, asmop, "4h", "4h", "h",
4932                      neon_uimm3_bare, VPR64, VPR64, VPR128Lo> {
4933     let Inst{11} = {Index{2}};
4934     let Inst{21} = {Index{1}};
4935     let Inst{20} = {Index{0}};
4936     let Inst{19-16} = Re{3-0};
4937   }
4938
4939   def _8h8h : NI_2VE<0b1, u, 0b01, opcode, asmop, "8h", "8h", "h",
4940                      neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
4941     let Inst{11} = {Index{2}};
4942     let Inst{21} = {Index{1}};
4943     let Inst{20} = {Index{0}};
4944     let Inst{19-16} = Re{3-0};
4945   }
4946 }
4947
4948 defm MLAvve : NI_2VE_v1<0b1, 0b0000, "mla">;
4949 defm MLSvve : NI_2VE_v1<0b1, 0b0100, "mls">;
4950
4951 // Pattern for lane in 128-bit vector
4952 class NI_2VE_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
4953                    RegisterOperand ResVPR, RegisterOperand OpVPR,
4954                    RegisterOperand EleOpVPR, ValueType ResTy, ValueType OpTy,
4955                    ValueType EleOpTy, SDPatternOperator coreop>
4956   : Pat<(ResTy (op (ResTy ResVPR:$src), (OpTy OpVPR:$Rn),
4957           (OpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
4958         (INST ResVPR:$src, OpVPR:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
4959
4960 // Pattern for lane in 64-bit vector
4961 class NI_2VE_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
4962                   RegisterOperand ResVPR, RegisterOperand OpVPR,
4963                   RegisterOperand EleOpVPR, ValueType ResTy, ValueType OpTy,
4964                   ValueType EleOpTy, SDPatternOperator coreop>
4965   : Pat<(ResTy (op (ResTy ResVPR:$src), (OpTy OpVPR:$Rn),
4966           (OpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
4967         (INST ResVPR:$src, OpVPR:$Rn, 
4968           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
4969
4970 multiclass NI_2VE_v1_pat<string subop, SDPatternOperator op>
4971 {
4972   def : NI_2VE_laneq<!cast<Instruction>(subop # "_2s4s"), neon_uimm2_bare,
4973                      op, VPR64, VPR64, VPR128, v2i32, v2i32, v4i32,
4974                      BinOpFrag<(Neon_vduplane
4975                                  (Neon_low4S node:$LHS), node:$RHS)>>;
4976
4977   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4s4s"), neon_uimm2_bare,
4978                      op, VPR128, VPR128, VPR128, v4i32, v4i32, v4i32,
4979                      BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
4980
4981   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4h8h"), neon_uimm3_bare,
4982                      op, VPR64, VPR64, VPR128Lo, v4i16, v4i16, v8i16,
4983                      BinOpFrag<(Neon_vduplane
4984                                  (Neon_low8H node:$LHS), node:$RHS)>>;
4985
4986   def : NI_2VE_laneq<!cast<Instruction>(subop # "_8h8h"), neon_uimm3_bare,
4987                      op, VPR128, VPR128, VPR128Lo, v8i16, v8i16, v8i16,
4988                      BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
4989
4990   // Index can only be half of the max value for lane in 64-bit vector
4991
4992   def : NI_2VE_lane<!cast<Instruction>(subop # "_2s4s"), neon_uimm1_bare,
4993                     op, VPR64, VPR64, VPR64, v2i32, v2i32, v2i32,
4994                     BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
4995
4996   def : NI_2VE_lane<!cast<Instruction>(subop # "_4s4s"), neon_uimm1_bare,
4997                     op, VPR128, VPR128, VPR64, v4i32, v4i32, v2i32,
4998                     BinOpFrag<(Neon_vduplane
4999                                 (Neon_combine_4S node:$LHS, undef),
5000                                  node:$RHS)>>;
5001
5002   def : NI_2VE_lane<!cast<Instruction>(subop # "_4h8h"), neon_uimm2_bare,
5003                     op, VPR64, VPR64, VPR64Lo, v4i16, v4i16, v4i16,
5004                     BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5005
5006   def : NI_2VE_lane<!cast<Instruction>(subop # "_8h8h"), neon_uimm2_bare,
5007                     op, VPR128, VPR128, VPR64Lo, v8i16, v8i16, v4i16,
5008                     BinOpFrag<(Neon_vduplane
5009                                 (Neon_combine_8H node:$LHS, undef),
5010                                 node:$RHS)>>;
5011 }
5012
5013 defm MLA_lane_v1 : NI_2VE_v1_pat<"MLAvve", Neon_mla>;
5014 defm MLS_lane_v1 : NI_2VE_v1_pat<"MLSvve", Neon_mls>;
5015
5016 class NI_2VE_2op<bit q, bit u, bits<2> size, bits<4> opcode,
5017                  string asmop, string ResS, string OpS, string EleOpS,
5018                  Operand OpImm, RegisterOperand ResVPR,
5019                  RegisterOperand OpVPR, RegisterOperand EleOpVPR>
5020   : NeonI_2VElem<q, u, size, opcode, 
5021                  (outs ResVPR:$Rd), (ins OpVPR:$Rn,
5022                                          EleOpVPR:$Re, OpImm:$Index),
5023                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS #
5024                  ", $Re." # EleOpS # "[$Index]",
5025                  [],
5026                  NoItinerary> {
5027   bits<3> Index;
5028   bits<5> Re;
5029 }
5030
5031 multiclass NI_2VE_v1_2op<bit u, bits<4> opcode, string asmop> {
5032   // vector register class for element is always 128-bit to cover the max index
5033   def _2s4s : NI_2VE_2op<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
5034                          neon_uimm2_bare, VPR64, VPR64, VPR128> {
5035     let Inst{11} = {Index{1}};
5036     let Inst{21} = {Index{0}};
5037     let Inst{20-16} = Re;
5038   }
5039
5040   def _4s4s : NI_2VE_2op<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
5041                          neon_uimm2_bare, VPR128, VPR128, VPR128> {
5042     let Inst{11} = {Index{1}};
5043     let Inst{21} = {Index{0}};
5044     let Inst{20-16} = Re;
5045   }
5046
5047   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
5048   def _4h8h : NI_2VE_2op<0b0, u, 0b01, opcode, asmop, "4h", "4h", "h",
5049                          neon_uimm3_bare, VPR64, VPR64, VPR128Lo> {
5050     let Inst{11} = {Index{2}};
5051     let Inst{21} = {Index{1}};
5052     let Inst{20} = {Index{0}};
5053     let Inst{19-16} = Re{3-0};
5054   }
5055
5056   def _8h8h : NI_2VE_2op<0b1, u, 0b01, opcode, asmop, "8h", "8h", "h",
5057                          neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
5058     let Inst{11} = {Index{2}};
5059     let Inst{21} = {Index{1}};
5060     let Inst{20} = {Index{0}};
5061     let Inst{19-16} = Re{3-0};
5062   }
5063 }
5064
5065 defm MULve : NI_2VE_v1_2op<0b0, 0b1000, "mul">;
5066 defm SQDMULHve : NI_2VE_v1_2op<0b0, 0b1100, "sqdmulh">;
5067 defm SQRDMULHve : NI_2VE_v1_2op<0b0, 0b1101, "sqrdmulh">;
5068
5069 // Pattern for lane in 128-bit vector
5070 class NI_2VE_mul_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
5071                        RegisterOperand OpVPR, RegisterOperand EleOpVPR,
5072                        ValueType ResTy, ValueType OpTy, ValueType EleOpTy,
5073                        SDPatternOperator coreop>
5074   : Pat<(ResTy (op (OpTy OpVPR:$Rn),
5075           (OpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
5076         (INST OpVPR:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
5077
5078 // Pattern for lane in 64-bit vector
5079 class NI_2VE_mul_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
5080                       RegisterOperand OpVPR, RegisterOperand EleOpVPR,
5081                       ValueType ResTy, ValueType OpTy, ValueType EleOpTy,
5082                       SDPatternOperator coreop>
5083   : Pat<(ResTy (op (OpTy OpVPR:$Rn),
5084           (OpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
5085         (INST OpVPR:$Rn, 
5086           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
5087
5088 multiclass NI_2VE_mul_v1_pat<string subop, SDPatternOperator op> {
5089   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2s4s"), neon_uimm2_bare,
5090                          op, VPR64, VPR128, v2i32, v2i32, v4i32,
5091                          BinOpFrag<(Neon_vduplane
5092                                      (Neon_low4S node:$LHS), node:$RHS)>>;
5093
5094   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4s4s"), neon_uimm2_bare,
5095                          op, VPR128, VPR128, v4i32, v4i32, v4i32,
5096                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5097
5098   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4h8h"), neon_uimm3_bare,
5099                          op, VPR64, VPR128Lo, v4i16, v4i16, v8i16,
5100                          BinOpFrag<(Neon_vduplane
5101                                     (Neon_low8H node:$LHS), node:$RHS)>>;
5102
5103   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_8h8h"), neon_uimm3_bare,
5104                          op, VPR128, VPR128Lo, v8i16, v8i16, v8i16,
5105                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5106
5107   // Index can only be half of the max value for lane in 64-bit vector
5108
5109   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_2s4s"), neon_uimm1_bare,
5110                         op, VPR64, VPR64, v2i32, v2i32, v2i32,
5111                         BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5112
5113   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_4s4s"), neon_uimm1_bare,
5114                         op, VPR128, VPR64, v4i32, v4i32, v2i32,
5115                         BinOpFrag<(Neon_vduplane
5116                                     (Neon_combine_4S node:$LHS, undef),
5117                                      node:$RHS)>>;
5118
5119   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_4h8h"), neon_uimm2_bare,
5120                         op, VPR64, VPR64Lo, v4i16, v4i16, v4i16,
5121                         BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5122
5123   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_8h8h"), neon_uimm2_bare,
5124                         op, VPR128, VPR64Lo, v8i16, v8i16, v4i16,
5125                         BinOpFrag<(Neon_vduplane
5126                                     (Neon_combine_8H node:$LHS, undef),
5127                                     node:$RHS)>>;
5128 }
5129
5130 defm MUL_lane_v1 : NI_2VE_mul_v1_pat<"MULve", mul>;
5131 defm SQDMULH_lane_v1 : NI_2VE_mul_v1_pat<"SQDMULHve", int_arm_neon_vqdmulh>;
5132 defm SQRDMULH_lane_v1 : NI_2VE_mul_v1_pat<"SQRDMULHve", int_arm_neon_vqrdmulh>;
5133
5134 // Variant 2
5135
5136 multiclass NI_2VE_v2_2op<bit u, bits<4> opcode, string asmop> {
5137   // vector register class for element is always 128-bit to cover the max index
5138   def _2s4s : NI_2VE_2op<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
5139                          neon_uimm2_bare, VPR64, VPR64, VPR128> {
5140     let Inst{11} = {Index{1}};
5141     let Inst{21} = {Index{0}};
5142     let Inst{20-16} = Re;
5143   }
5144
5145   def _4s4s : NI_2VE_2op<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
5146                          neon_uimm2_bare, VPR128, VPR128, VPR128> {
5147     let Inst{11} = {Index{1}};
5148     let Inst{21} = {Index{0}};
5149     let Inst{20-16} = Re;
5150   }
5151
5152   // _1d2d doesn't exist!
5153
5154   def _2d2d : NI_2VE_2op<0b1, u, 0b11, opcode, asmop, "2d", "2d", "d",
5155                          neon_uimm1_bare, VPR128, VPR128, VPR128> {
5156     let Inst{11} = {Index{0}};
5157     let Inst{21} = 0b0;
5158     let Inst{20-16} = Re;
5159   }
5160 }
5161
5162 defm FMULve : NI_2VE_v2_2op<0b0, 0b1001, "fmul">;
5163 defm FMULXve : NI_2VE_v2_2op<0b1, 0b1001, "fmulx">;
5164
5165 class NI_2VE_mul_lane_2d<Instruction INST, Operand OpImm, SDPatternOperator op,
5166                          RegisterOperand OpVPR, RegisterOperand EleOpVPR,
5167                          ValueType ResTy, ValueType OpTy, ValueType EleOpTy,
5168                          SDPatternOperator coreop>
5169   : Pat<(ResTy (op (OpTy OpVPR:$Rn),
5170           (OpTy (coreop (EleOpTy EleOpVPR:$Re), (EleOpTy EleOpVPR:$Re))))),
5171         (INST OpVPR:$Rn, 
5172           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), 0)>;
5173
5174 multiclass NI_2VE_mul_v2_pat<string subop, SDPatternOperator op> {
5175   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2s4s"), neon_uimm2_bare,
5176                          op, VPR64, VPR128, v2f32, v2f32, v4f32,
5177                          BinOpFrag<(Neon_vduplane
5178                                      (Neon_low4f node:$LHS), node:$RHS)>>;
5179
5180   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4s4s"), neon_uimm2_bare,
5181                          op, VPR128, VPR128, v4f32, v4f32, v4f32,
5182                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5183
5184   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2d2d"), neon_uimm1_bare,
5185                          op, VPR128, VPR128, v2f64, v2f64, v2f64,
5186                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5187
5188   // Index can only be half of the max value for lane in 64-bit vector
5189
5190   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_2s4s"), neon_uimm1_bare,
5191                         op, VPR64, VPR64, v2f32, v2f32, v2f32,
5192                         BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5193
5194   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_4s4s"), neon_uimm1_bare,
5195                         op, VPR128, VPR64, v4f32, v4f32, v2f32,
5196                         BinOpFrag<(Neon_vduplane
5197                                     (Neon_combine_4f node:$LHS, undef),
5198                                     node:$RHS)>>;
5199
5200   def : NI_2VE_mul_lane_2d<!cast<Instruction>(subop # "_2d2d"), neon_uimm1_bare,
5201                            op, VPR128, VPR64, v2f64, v2f64, v1f64,
5202                            BinOpFrag<(Neon_combine_2d node:$LHS, node:$RHS)>>;
5203 }
5204
5205 defm FMUL_lane_v2 : NI_2VE_mul_v2_pat<"FMULve", fmul>;
5206 defm FMULX_lane_v2 : NI_2VE_mul_v2_pat<"FMULXve", int_aarch64_neon_vmulx>;
5207
5208 // The followings are patterns using fma
5209 // -ffp-contract=fast generates fma
5210
5211 multiclass NI_2VE_v2<bit u, bits<4> opcode, string asmop> {
5212   // vector register class for element is always 128-bit to cover the max index
5213   def _2s4s : NI_2VE<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
5214                      neon_uimm2_bare, VPR64, VPR64, VPR128> {
5215     let Inst{11} = {Index{1}};
5216     let Inst{21} = {Index{0}};
5217     let Inst{20-16} = Re;
5218   }
5219
5220   def _4s4s : NI_2VE<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
5221                      neon_uimm2_bare, VPR128, VPR128, VPR128> {
5222     let Inst{11} = {Index{1}};
5223     let Inst{21} = {Index{0}};
5224     let Inst{20-16} = Re;
5225   }
5226
5227   // _1d2d doesn't exist!
5228   
5229   def _2d2d : NI_2VE<0b1, u, 0b11, opcode, asmop, "2d", "2d", "d",
5230                      neon_uimm1_bare, VPR128, VPR128, VPR128> {
5231     let Inst{11} = {Index{0}};
5232     let Inst{21} = 0b0;
5233     let Inst{20-16} = Re;
5234   }
5235 }
5236
5237 defm FMLAvve : NI_2VE_v2<0b0, 0b0001, "fmla">;
5238 defm FMLSvve : NI_2VE_v2<0b0, 0b0101, "fmls">;
5239
5240 // Pattern for lane in 128-bit vector
5241 class NI_2VEswap_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
5242                        RegisterOperand ResVPR, RegisterOperand OpVPR,
5243                        ValueType ResTy, ValueType OpTy,
5244                        SDPatternOperator coreop>
5245   : Pat<(ResTy (op (ResTy (coreop (OpTy OpVPR:$Re), (i64 OpImm:$Index))),
5246                    (ResTy ResVPR:$src), (ResTy ResVPR:$Rn))),
5247         (INST ResVPR:$src, ResVPR:$Rn, OpVPR:$Re, OpImm:$Index)>;
5248
5249 // Pattern for lane in 64-bit vector
5250 class NI_2VEswap_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
5251                       RegisterOperand ResVPR, RegisterOperand OpVPR,
5252                       ValueType ResTy, ValueType OpTy,
5253                       SDPatternOperator coreop>
5254   : Pat<(ResTy (op (ResTy (coreop (OpTy OpVPR:$Re), (i64 OpImm:$Index))),
5255                    (ResTy ResVPR:$Rn), (ResTy ResVPR:$src))),
5256         (INST ResVPR:$src, ResVPR:$Rn, 
5257           (SUBREG_TO_REG (i64 0), OpVPR:$Re, sub_64), OpImm:$Index)>;
5258
5259 // Pattern for lane in 64-bit vector
5260 class NI_2VEswap_lane_2d2d<Instruction INST, Operand OpImm,
5261                            SDPatternOperator op,
5262                            RegisterOperand ResVPR, RegisterOperand OpVPR,
5263                            ValueType ResTy, ValueType OpTy,
5264                            SDPatternOperator coreop>
5265   : Pat<(ResTy (op (ResTy (coreop (OpTy OpVPR:$Re), (OpTy OpVPR:$Re))),
5266                    (ResTy ResVPR:$Rn), (ResTy ResVPR:$src))),
5267         (INST ResVPR:$src, ResVPR:$Rn, 
5268           (SUBREG_TO_REG (i64 0), OpVPR:$Re, sub_64), 0)>;
5269
5270
5271 multiclass NI_2VE_fma_v2_pat<string subop, SDPatternOperator op> {
5272   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2s4s"),
5273                          neon_uimm2_bare, op, VPR64, VPR128, v2f32, v4f32,
5274                          BinOpFrag<(Neon_vduplane
5275                                      (Neon_low4f node:$LHS), node:$RHS)>>;
5276
5277   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_4s4s"),
5278                          neon_uimm2_bare, op, VPR128, VPR128, v4f32, v4f32,
5279                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5280
5281   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2d2d"),
5282                          neon_uimm1_bare, op, VPR128, VPR128, v2f64, v2f64,
5283                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5284
5285   // Index can only be half of the max value for lane in 64-bit vector
5286
5287   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_2s4s"),
5288                         neon_uimm1_bare, op, VPR64, VPR64, v2f32, v2f32,
5289                         BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5290
5291   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_4s4s"),
5292                         neon_uimm1_bare, op, VPR128, VPR64, v4f32, v2f32,
5293                         BinOpFrag<(Neon_vduplane
5294                                     (Neon_combine_4f node:$LHS, undef),
5295                                     node:$RHS)>>;
5296
5297   def : NI_2VEswap_lane_2d2d<!cast<Instruction>(subop # "_2d2d"),
5298                              neon_uimm1_bare, op, VPR128, VPR64, v2f64, v1f64,
5299                              BinOpFrag<(Neon_combine_2d node:$LHS, node:$RHS)>>;
5300 }
5301
5302 defm FMLA_lane_v2_s : NI_2VE_fma_v2_pat<"FMLAvve", fma>;
5303
5304 multiclass NI_2VE_fms_v2_pat<string subop, SDPatternOperator op>
5305 {
5306   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2s4s"),
5307                          neon_uimm2_bare, op, VPR64, VPR128, v2f32, v4f32,
5308                          BinOpFrag<(fneg (Neon_vduplane
5309                                      (Neon_low4f node:$LHS), node:$RHS))>>;
5310
5311   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2s4s"),
5312                          neon_uimm2_bare, op, VPR64, VPR128, v2f32, v4f32,
5313                          BinOpFrag<(Neon_vduplane
5314                                      (Neon_low4f (fneg node:$LHS)),
5315                                      node:$RHS)>>;
5316
5317   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_4s4s"),
5318                          neon_uimm2_bare, op, VPR128, VPR128, v4f32, v4f32,
5319                          BinOpFrag<(fneg (Neon_vduplane
5320                                      node:$LHS, node:$RHS))>>;
5321
5322   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_4s4s"),
5323                          neon_uimm2_bare, op, VPR128, VPR128, v4f32, v4f32,
5324                          BinOpFrag<(Neon_vduplane
5325                                      (fneg node:$LHS), node:$RHS)>>;
5326
5327   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2d2d"),
5328                          neon_uimm1_bare, op, VPR128, VPR128, v2f64, v2f64,
5329                          BinOpFrag<(fneg (Neon_vduplane
5330                                      node:$LHS, node:$RHS))>>;
5331
5332   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2d2d"),
5333                          neon_uimm1_bare, op, VPR128, VPR128, v2f64, v2f64,
5334                          BinOpFrag<(Neon_vduplane
5335                                      (fneg node:$LHS), node:$RHS)>>;
5336
5337   // Index can only be half of the max value for lane in 64-bit vector
5338
5339   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_2s4s"),
5340                         neon_uimm1_bare, op, VPR64, VPR64, v2f32, v2f32,
5341                         BinOpFrag<(fneg (Neon_vduplane
5342                                     node:$LHS, node:$RHS))>>;
5343
5344   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_2s4s"),
5345                         neon_uimm1_bare, op, VPR64, VPR64, v2f32, v2f32,
5346                         BinOpFrag<(Neon_vduplane
5347                                     (fneg node:$LHS), node:$RHS)>>;
5348
5349   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_4s4s"),
5350                         neon_uimm1_bare, op, VPR128, VPR64, v4f32, v2f32,
5351                         BinOpFrag<(fneg (Neon_vduplane
5352                                     (Neon_combine_4f node:$LHS, undef),
5353                                     node:$RHS))>>;
5354
5355   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_4s4s"),
5356                         neon_uimm1_bare, op, VPR128, VPR64, v4f32, v2f32,
5357                         BinOpFrag<(Neon_vduplane
5358                                     (Neon_combine_4f (fneg node:$LHS), undef),
5359                                     node:$RHS)>>;
5360
5361   def : NI_2VEswap_lane_2d2d<!cast<Instruction>(subop # "_2d2d"),
5362                              neon_uimm1_bare, op, VPR128, VPR64, v2f64, v1f64,
5363                              BinOpFrag<(fneg (Neon_combine_2d
5364                                          node:$LHS, node:$RHS))>>;
5365
5366   def : NI_2VEswap_lane_2d2d<!cast<Instruction>(subop # "_2d2d"),
5367                              neon_uimm1_bare, op, VPR128, VPR64, v2f64, v1f64,
5368                              BinOpFrag<(Neon_combine_2d
5369                                          (fneg node:$LHS), (fneg node:$RHS))>>;
5370 }
5371
5372 defm FMLS_lane_v2_s : NI_2VE_fms_v2_pat<"FMLSvve", fma>;
5373
5374 // Variant 3: Long type
5375 // E.g. SMLAL : 4S/4H/H (v0-v15), 2D/2S/S
5376 //      SMLAL2: 4S/8H/H (v0-v15), 2D/4S/S
5377
5378 multiclass NI_2VE_v3<bit u, bits<4> opcode, string asmop> {
5379   // vector register class for element is always 128-bit to cover the max index
5380   def _2d2s : NI_2VE<0b0, u, 0b10, opcode, asmop, "2d", "2s", "s",
5381                      neon_uimm2_bare, VPR128, VPR64, VPR128> {
5382     let Inst{11} = {Index{1}};
5383     let Inst{21} = {Index{0}};
5384     let Inst{20-16} = Re;
5385   }
5386   
5387   def _2d4s : NI_2VE<0b1, u, 0b10, opcode, asmop # "2", "2d", "4s", "s",
5388                      neon_uimm2_bare, VPR128, VPR128, VPR128> {
5389     let Inst{11} = {Index{1}};
5390     let Inst{21} = {Index{0}};
5391     let Inst{20-16} = Re;
5392   }
5393
5394   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
5395   def _4s8h : NI_2VE<0b1, u, 0b01, opcode, asmop # "2", "4s", "8h", "h",
5396                      neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
5397     let Inst{11} = {Index{2}};
5398     let Inst{21} = {Index{1}};
5399     let Inst{20} = {Index{0}};
5400     let Inst{19-16} = Re{3-0};
5401   }
5402   
5403   def _4s4h : NI_2VE<0b0, u, 0b01, opcode, asmop, "4s", "4h", "h",
5404                      neon_uimm3_bare, VPR128, VPR64, VPR128Lo> {
5405     let Inst{11} = {Index{2}};
5406     let Inst{21} = {Index{1}};
5407     let Inst{20} = {Index{0}};
5408     let Inst{19-16} = Re{3-0};
5409   }
5410 }
5411
5412 defm SMLALvve : NI_2VE_v3<0b0, 0b0010, "smlal">;
5413 defm UMLALvve : NI_2VE_v3<0b1, 0b0010, "umlal">;
5414 defm SMLSLvve : NI_2VE_v3<0b0, 0b0110, "smlsl">;
5415 defm UMLSLvve : NI_2VE_v3<0b1, 0b0110, "umlsl">;
5416 defm SQDMLALvve : NI_2VE_v3<0b0, 0b0011, "sqdmlal">;
5417 defm SQDMLSLvve : NI_2VE_v3<0b0, 0b0111, "sqdmlsl">;
5418
5419 multiclass NI_2VE_v3_2op<bit u, bits<4> opcode, string asmop> {
5420   // vector register class for element is always 128-bit to cover the max index
5421   def _2d2s : NI_2VE_2op<0b0, u, 0b10, opcode, asmop, "2d", "2s", "s",
5422                          neon_uimm2_bare, VPR128, VPR64, VPR128> {
5423     let Inst{11} = {Index{1}};
5424     let Inst{21} = {Index{0}};
5425     let Inst{20-16} = Re;
5426   }
5427   
5428   def _2d4s : NI_2VE_2op<0b1, u, 0b10, opcode, asmop # "2", "2d", "4s", "s",
5429                          neon_uimm2_bare, VPR128, VPR128, VPR128> {
5430     let Inst{11} = {Index{1}};
5431     let Inst{21} = {Index{0}};
5432     let Inst{20-16} = Re;
5433   }
5434
5435   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
5436   def _4s8h : NI_2VE_2op<0b1, u, 0b01, opcode, asmop # "2", "4s", "8h", "h",
5437                          neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
5438     let Inst{11} = {Index{2}};
5439     let Inst{21} = {Index{1}};
5440     let Inst{20} = {Index{0}};
5441     let Inst{19-16} = Re{3-0};
5442   }
5443   
5444   def _4s4h : NI_2VE_2op<0b0, u, 0b01, opcode, asmop, "4s", "4h", "h",
5445                          neon_uimm3_bare, VPR128, VPR64, VPR128Lo> {
5446     let Inst{11} = {Index{2}};
5447     let Inst{21} = {Index{1}};
5448     let Inst{20} = {Index{0}};
5449     let Inst{19-16} = Re{3-0};
5450   }
5451 }
5452
5453 defm SMULLve : NI_2VE_v3_2op<0b0, 0b1010, "smull">;
5454 defm UMULLve : NI_2VE_v3_2op<0b1, 0b1010, "umull">;
5455 defm SQDMULLve : NI_2VE_v3_2op<0b0, 0b1011, "sqdmull">;
5456
5457 // Pattern for lane in 128-bit vector
5458 class NI_2VEL2_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
5459                      RegisterOperand EleOpVPR, ValueType ResTy,
5460                      ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
5461                      SDPatternOperator hiop, SDPatternOperator coreop>
5462   : Pat<(ResTy (op (ResTy VPR128:$src),
5463           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
5464           (HalfOpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
5465         (INST VPR128:$src, VPR128:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
5466
5467 // Pattern for lane in 64-bit vector
5468 class NI_2VEL2_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
5469                     RegisterOperand EleOpVPR, ValueType ResTy,
5470                     ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
5471                     SDPatternOperator hiop, SDPatternOperator coreop>
5472   : Pat<(ResTy (op (ResTy VPR128:$src),
5473           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
5474           (HalfOpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
5475         (INST VPR128:$src, VPR128:$Rn, 
5476           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
5477
5478 multiclass NI_2VEL_v3_pat<string subop, SDPatternOperator op> {
5479   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4s4h"), neon_uimm3_bare,
5480                      op, VPR128, VPR64, VPR128Lo, v4i32, v4i16, v8i16,
5481                      BinOpFrag<(Neon_vduplane
5482                                  (Neon_low8H node:$LHS), node:$RHS)>>;
5483   
5484   def : NI_2VE_laneq<!cast<Instruction>(subop # "_2d2s"), neon_uimm2_bare,
5485                      op, VPR128, VPR64, VPR128, v2i64, v2i32, v4i32,
5486                      BinOpFrag<(Neon_vduplane
5487                                  (Neon_low4S node:$LHS), node:$RHS)>>;
5488   
5489   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_4s8h"), neon_uimm3_bare,
5490                        op, VPR128Lo, v4i32, v8i16, v8i16, v4i16, Neon_High8H,
5491                        BinOpFrag<(Neon_vduplane
5492                                    (Neon_low8H node:$LHS), node:$RHS)>>;
5493   
5494   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_2d4s"), neon_uimm2_bare,
5495                        op, VPR128, v2i64, v4i32, v4i32, v2i32, Neon_High4S,
5496                        BinOpFrag<(Neon_vduplane
5497                                    (Neon_low4S node:$LHS), node:$RHS)>>;
5498   
5499   // Index can only be half of the max value for lane in 64-bit vector
5500
5501   def : NI_2VE_lane<!cast<Instruction>(subop # "_4s4h"), neon_uimm2_bare,
5502                     op, VPR128, VPR64, VPR64Lo, v4i32, v4i16, v4i16,
5503                     BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5504   
5505   def : NI_2VE_lane<!cast<Instruction>(subop # "_2d2s"), neon_uimm1_bare,
5506                     op, VPR128, VPR64, VPR64, v2i64, v2i32, v2i32,
5507                     BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5508
5509   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_4s8h"), neon_uimm2_bare,
5510                       op, VPR64Lo, v4i32, v8i16, v4i16, v4i16, Neon_High8H,
5511                       BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5512   
5513   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_2d4s"), neon_uimm1_bare,
5514                       op, VPR64, v2i64, v4i32, v2i32, v2i32, Neon_High4S,
5515                       BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5516 }
5517
5518 defm SMLAL_lane_v3 : NI_2VEL_v3_pat<"SMLALvve", Neon_smlal>;
5519 defm UMLAL_lane_v3 : NI_2VEL_v3_pat<"UMLALvve", Neon_umlal>;
5520 defm SMLSL_lane_v3 : NI_2VEL_v3_pat<"SMLSLvve", Neon_smlsl>;
5521 defm UMLSL_lane_v3 : NI_2VEL_v3_pat<"UMLSLvve", Neon_umlsl>;
5522
5523 // Pattern for lane in 128-bit vector
5524 class NI_2VEL2_mul_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
5525                          RegisterOperand EleOpVPR, ValueType ResTy,
5526                          ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
5527                          SDPatternOperator hiop, SDPatternOperator coreop>
5528   : Pat<(ResTy (op 
5529           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
5530           (HalfOpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
5531         (INST VPR128:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
5532
5533 // Pattern for lane in 64-bit vector
5534 class NI_2VEL2_mul_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
5535                         RegisterOperand EleOpVPR, ValueType ResTy,
5536                         ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
5537                         SDPatternOperator hiop, SDPatternOperator coreop>
5538   : Pat<(ResTy (op
5539           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
5540           (HalfOpTy (coreop (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
5541         (INST VPR128:$Rn, 
5542           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
5543
5544 multiclass NI_2VEL_mul_v3_pat<string subop, SDPatternOperator op> {
5545   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4s4h"), neon_uimm3_bare,
5546                          op, VPR64, VPR128Lo, v4i32, v4i16, v8i16,
5547                          BinOpFrag<(Neon_vduplane
5548                                      (Neon_low8H node:$LHS), node:$RHS)>>;
5549
5550   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2d2s"), neon_uimm2_bare,
5551                          op, VPR64, VPR128, v2i64, v2i32, v4i32,
5552                          BinOpFrag<(Neon_vduplane
5553                                      (Neon_low4S node:$LHS), node:$RHS)>>;
5554
5555   def : NI_2VEL2_mul_laneq<!cast<Instruction>(subop # "_4s8h"), neon_uimm3_bare,
5556                            op, VPR128Lo, v4i32, v8i16, v8i16, v4i16,
5557                            Neon_High8H,
5558                            BinOpFrag<(Neon_vduplane
5559                                        (Neon_low8H node:$LHS), node:$RHS)>>;
5560   
5561   def : NI_2VEL2_mul_laneq<!cast<Instruction>(subop # "_2d4s"), neon_uimm2_bare,
5562                            op, VPR128, v2i64, v4i32, v4i32, v2i32, Neon_High4S,
5563                            BinOpFrag<(Neon_vduplane
5564                                        (Neon_low4S node:$LHS), node:$RHS)>>;
5565   
5566   // Index can only be half of the max value for lane in 64-bit vector
5567
5568   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_4s4h"), neon_uimm2_bare,
5569                         op, VPR64, VPR64Lo, v4i32, v4i16, v4i16,
5570                         BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5571
5572   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_2d2s"), neon_uimm1_bare,
5573                         op, VPR64, VPR64, v2i64, v2i32, v2i32,
5574                         BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5575
5576   def : NI_2VEL2_mul_lane<!cast<Instruction>(subop # "_4s8h"), neon_uimm2_bare,
5577                           op, VPR64Lo, v4i32, v8i16, v4i16, v4i16, Neon_High8H,
5578                           BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5579   
5580   def : NI_2VEL2_mul_lane<!cast<Instruction>(subop # "_2d4s"), neon_uimm1_bare,
5581                           op, VPR64, v2i64, v4i32, v2i32, v2i32, Neon_High4S,
5582                           BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5583 }
5584
5585 defm SMULL_lane_v3 : NI_2VEL_mul_v3_pat<"SMULLve", int_arm_neon_vmulls>;
5586 defm UMULL_lane_v3 : NI_2VEL_mul_v3_pat<"UMULLve", int_arm_neon_vmullu>;
5587 defm SQDMULL_lane_v3 : NI_2VEL_mul_v3_pat<"SQDMULLve", int_arm_neon_vqdmull>;
5588
5589 multiclass NI_qdma<SDPatternOperator op> {
5590   def _4s : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
5591                     (op node:$Ra,
5592                       (v4i32 (int_arm_neon_vqdmull node:$Rn, node:$Rm)))>;
5593
5594   def _2d : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
5595                     (op node:$Ra,
5596                       (v2i64 (int_arm_neon_vqdmull node:$Rn, node:$Rm)))>;
5597 }
5598
5599 defm Neon_qdmlal : NI_qdma<int_arm_neon_vqadds>;
5600 defm Neon_qdmlsl : NI_qdma<int_arm_neon_vqsubs>;
5601
5602 multiclass NI_2VEL_v3_qdma_pat<string subop, string op> {
5603   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4s4h"), neon_uimm3_bare,
5604                      !cast<PatFrag>(op # "_4s"), VPR128, VPR64, VPR128Lo,
5605                      v4i32, v4i16, v8i16,
5606                      BinOpFrag<(Neon_vduplane
5607                                  (Neon_low8H node:$LHS), node:$RHS)>>;
5608   
5609   def : NI_2VE_laneq<!cast<Instruction>(subop # "_2d2s"), neon_uimm2_bare,
5610                      !cast<PatFrag>(op # "_2d"), VPR128, VPR64, VPR128,
5611                      v2i64, v2i32, v4i32,
5612                      BinOpFrag<(Neon_vduplane
5613                                  (Neon_low4S node:$LHS), node:$RHS)>>;
5614   
5615   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_4s8h"), neon_uimm3_bare,
5616                        !cast<PatFrag>(op # "_4s"), VPR128Lo,
5617                        v4i32, v8i16, v8i16, v4i16, Neon_High8H,
5618                        BinOpFrag<(Neon_vduplane
5619                                    (Neon_low8H node:$LHS), node:$RHS)>>;
5620   
5621   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_2d4s"), neon_uimm2_bare,
5622                        !cast<PatFrag>(op # "_2d"), VPR128,
5623                        v2i64, v4i32, v4i32, v2i32, Neon_High4S,
5624                        BinOpFrag<(Neon_vduplane
5625                                    (Neon_low4S node:$LHS), node:$RHS)>>;
5626   
5627   // Index can only be half of the max value for lane in 64-bit vector
5628
5629   def : NI_2VE_lane<!cast<Instruction>(subop # "_4s4h"), neon_uimm2_bare,
5630                     !cast<PatFrag>(op # "_4s"), VPR128, VPR64, VPR64Lo,
5631                     v4i32, v4i16, v4i16,
5632                     BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5633   
5634   def : NI_2VE_lane<!cast<Instruction>(subop # "_2d2s"), neon_uimm1_bare,
5635                     !cast<PatFrag>(op # "_2d"), VPR128, VPR64, VPR64,
5636                     v2i64, v2i32, v2i32,
5637                     BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5638
5639   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_4s8h"), neon_uimm2_bare,
5640                       !cast<PatFrag>(op # "_4s"), VPR64Lo,
5641                       v4i32, v8i16, v4i16, v4i16, Neon_High8H,
5642                       BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5643   
5644   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_2d4s"), neon_uimm1_bare,
5645                       !cast<PatFrag>(op # "_2d"), VPR64,
5646                       v2i64, v4i32, v2i32, v2i32, Neon_High4S,
5647                       BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
5648 }
5649
5650 defm SQDMLAL_lane_v3 : NI_2VEL_v3_qdma_pat<"SQDMLALvve", "Neon_qdmlal">;
5651 defm SQDMLSL_lane_v3 : NI_2VEL_v3_qdma_pat<"SQDMLSLvve", "Neon_qdmlsl">;
5652
5653 // End of implementation for instruction class (3V Elem)
5654
5655 //Insert element (vector, from main)
5656 def INSbw : NeonI_INS_main<"ins", "b", v16i8, GPR32, i32,
5657                            neon_uimm4_bare> {
5658   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
5659 }
5660 def INShw : NeonI_INS_main<"ins", "h", v8i16, GPR32, i32,
5661                            neon_uimm3_bare> {
5662   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
5663 }
5664 def INSsw : NeonI_INS_main<"ins", "s", v4i32, GPR32, i32,
5665                            neon_uimm2_bare> {
5666   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
5667 }
5668 def INSdx : NeonI_INS_main<"ins", "d", v2i64, GPR64, i64,
5669                            neon_uimm1_bare> {
5670   let Inst{20-16} = {Imm, 0b1, 0b0, 0b0, 0b0};
5671 }
5672
5673 class Neon_INS_main_pattern <ValueType ResTy,ValueType ExtResTy,
5674                              RegisterClass OpGPR, ValueType OpTy, 
5675                              Operand OpImm, Instruction INS> 
5676   : Pat<(ResTy (vector_insert
5677               (ResTy VPR64:$src),
5678               (OpTy OpGPR:$Rn),
5679               (OpImm:$Imm))),
5680         (ResTy (EXTRACT_SUBREG 
5681           (ExtResTy (INS (ExtResTy (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64)),
5682             OpGPR:$Rn, OpImm:$Imm)), sub_64))>;
5683
5684 def INSbw_pattern : Neon_INS_main_pattern<v8i8, v16i8, GPR32, i32,
5685                                           neon_uimm3_bare, INSbw>;
5686 def INShw_pattern : Neon_INS_main_pattern<v4i16, v8i16, GPR32, i32,
5687                                           neon_uimm2_bare, INShw>;
5688 def INSsw_pattern : Neon_INS_main_pattern<v2i32, v4i32, GPR32, i32,
5689                                           neon_uimm1_bare, INSsw>;
5690 def INSdx_pattern : Neon_INS_main_pattern<v1i64, v2i64, GPR64, i64,
5691                                           neon_uimm0_bare, INSdx>;
5692
5693 class NeonI_INS_element<string asmop, string Res, Operand ResImm>
5694   : NeonI_insert<0b1, 0b1,
5695                  (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn, 
5696                  ResImm:$Immd, ResImm:$Immn),
5697                  asmop # "\t$Rd." # Res # "[$Immd], $Rn." # Res # "[$Immn]",
5698                  [],
5699                  NoItinerary> {
5700   let Constraints = "$src = $Rd";
5701   bits<4> Immd;
5702   bits<4> Immn;
5703 }
5704
5705 //Insert element (vector, from element)
5706 def INSELb : NeonI_INS_element<"ins", "b", neon_uimm4_bare> {
5707   let Inst{20-16} = {Immd{3}, Immd{2}, Immd{1}, Immd{0}, 0b1};
5708   let Inst{14-11} = {Immn{3}, Immn{2}, Immn{1}, Immn{0}};
5709 }
5710 def INSELh : NeonI_INS_element<"ins", "h", neon_uimm3_bare> {
5711   let Inst{20-16} = {Immd{2}, Immd{1}, Immd{0}, 0b1, 0b0};
5712   let Inst{14-12} = {Immn{2}, Immn{1}, Immn{0}};
5713   // bit 11 is unspecified.
5714 }
5715 def INSELs : NeonI_INS_element<"ins", "s", neon_uimm2_bare> {
5716   let Inst{20-16} = {Immd{1}, Immd{0}, 0b1, 0b0, 0b0};
5717   let Inst{14-13} = {Immn{1}, Immn{0}};
5718   // bits 11-12 are unspecified.
5719 }
5720 def INSELd : NeonI_INS_element<"ins", "d", neon_uimm1_bare> {
5721   let Inst{20-16} = {Immd, 0b1, 0b0, 0b0, 0b0};
5722   let Inst{14} = Immn{0};
5723   // bits 11-13 are unspecified.
5724 }
5725
5726 multiclass Neon_INS_elt_pattern<ValueType ResTy, ValueType NaTy,
5727                                 ValueType MidTy, Operand StImm, Operand NaImm,
5728                                 Instruction INS> {
5729 def : Pat<(ResTy (vector_insert
5730             (ResTy VPR128:$src),
5731             (MidTy (vector_extract
5732               (ResTy VPR128:$Rn),
5733               (StImm:$Immn))),
5734             (StImm:$Immd))),
5735           (INS (ResTy VPR128:$src), (ResTy VPR128:$Rn),
5736               StImm:$Immd, StImm:$Immn)>;
5737
5738 def : Pat <(ResTy (vector_insert
5739              (ResTy VPR128:$src),
5740              (MidTy (vector_extract
5741                (NaTy VPR64:$Rn),
5742                (NaImm:$Immn))),
5743              (StImm:$Immd))),
5744            (INS (ResTy VPR128:$src),
5745              (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$Rn), sub_64)),
5746              StImm:$Immd, NaImm:$Immn)>;
5747
5748 def : Pat <(NaTy (vector_insert
5749              (NaTy VPR64:$src),
5750              (MidTy (vector_extract
5751                (ResTy VPR128:$Rn),
5752                (StImm:$Immn))),
5753              (NaImm:$Immd))),
5754            (NaTy (EXTRACT_SUBREG
5755              (ResTy (INS
5756                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$src), sub_64)),
5757                (ResTy VPR128:$Rn),
5758                NaImm:$Immd, StImm:$Immn)),
5759              sub_64))>;
5760
5761 def : Pat <(NaTy (vector_insert
5762              (NaTy VPR64:$src),
5763              (MidTy (vector_extract
5764                (NaTy VPR64:$Rn),
5765                (NaImm:$Immn))),
5766              (NaImm:$Immd))),
5767            (NaTy (EXTRACT_SUBREG
5768              (ResTy (INS
5769                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$src), sub_64)),
5770                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$Rn), sub_64)),
5771                NaImm:$Immd, NaImm:$Immn)),
5772              sub_64))>;
5773 }
5774
5775 defm : Neon_INS_elt_pattern<v4f32, v2f32, f32, neon_uimm2_bare,
5776                             neon_uimm1_bare, INSELs>;
5777 defm : Neon_INS_elt_pattern<v2f64, v1f64, f64, neon_uimm1_bare,
5778                             neon_uimm0_bare, INSELd>;
5779 defm : Neon_INS_elt_pattern<v16i8, v8i8, i32, neon_uimm4_bare,
5780                             neon_uimm3_bare, INSELb>;
5781 defm : Neon_INS_elt_pattern<v8i16, v4i16, i32, neon_uimm3_bare,
5782                             neon_uimm2_bare, INSELh>;
5783 defm : Neon_INS_elt_pattern<v4i32, v2i32, i32, neon_uimm2_bare,
5784                             neon_uimm1_bare, INSELs>;
5785 defm : Neon_INS_elt_pattern<v2i64, v1i64, i64, neon_uimm1_bare,
5786                             neon_uimm0_bare, INSELd>;
5787
5788 multiclass Neon_INS_elt_float_pattern<ValueType ResTy, ValueType NaTy,
5789                                       ValueType MidTy,
5790                                       RegisterClass OpFPR, Operand ResImm,
5791                                       SubRegIndex SubIndex, Instruction INS> {
5792 def : Pat <(ResTy (vector_insert
5793              (ResTy VPR128:$src),
5794              (MidTy OpFPR:$Rn),
5795              (ResImm:$Imm))),
5796            (INS (ResTy VPR128:$src),
5797              (ResTy (SUBREG_TO_REG (i64 0), OpFPR:$Rn, SubIndex)),
5798              ResImm:$Imm,
5799              (i64 0))>;
5800
5801 def : Pat <(NaTy (vector_insert
5802              (NaTy VPR64:$src),
5803              (MidTy OpFPR:$Rn),
5804              (ResImm:$Imm))),
5805            (NaTy (EXTRACT_SUBREG 
5806              (ResTy (INS 
5807                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$src), sub_64)),
5808                (ResTy (SUBREG_TO_REG (i64 0), (MidTy OpFPR:$Rn), SubIndex)),
5809                ResImm:$Imm,
5810                (i64 0))),
5811              sub_64))>;
5812 }
5813
5814 defm : Neon_INS_elt_float_pattern<v4f32, v2f32, f32, FPR32, neon_uimm2_bare,
5815                                   sub_32, INSELs>;
5816 defm : Neon_INS_elt_float_pattern<v2f64, v1f64, f64, FPR64, neon_uimm1_bare,
5817                                   sub_64, INSELd>;
5818
5819 class NeonI_SMOV<string asmop, string Res, bit Q,
5820                  ValueType OpTy, ValueType eleTy,
5821                  Operand OpImm, RegisterClass ResGPR, ValueType ResTy>
5822   : NeonI_copy<Q, 0b0, 0b0101,
5823                (outs ResGPR:$Rd), (ins VPR128:$Rn, OpImm:$Imm),
5824                asmop # "\t$Rd, $Rn." # Res # "[$Imm]",
5825                [(set (ResTy ResGPR:$Rd),
5826                  (ResTy (sext_inreg
5827                    (ResTy (vector_extract
5828                      (OpTy VPR128:$Rn), (OpImm:$Imm))),
5829                    eleTy)))],
5830                NoItinerary> {
5831   bits<4> Imm;
5832 }
5833
5834 //Signed integer move (main, from element)
5835 def SMOVwb : NeonI_SMOV<"smov", "b", 0b0, v16i8, i8, neon_uimm4_bare,
5836                         GPR32, i32> {
5837   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
5838 }
5839 def SMOVwh : NeonI_SMOV<"smov", "h", 0b0, v8i16, i16, neon_uimm3_bare,
5840                         GPR32, i32> {
5841   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
5842 }
5843 def SMOVxb : NeonI_SMOV<"smov", "b", 0b1, v16i8, i8, neon_uimm4_bare,
5844                         GPR64, i64> {
5845   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
5846 }
5847 def SMOVxh : NeonI_SMOV<"smov", "h", 0b1, v8i16, i16, neon_uimm3_bare,
5848                         GPR64, i64> {
5849   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
5850 }
5851 def SMOVxs : NeonI_SMOV<"smov", "s", 0b1, v4i32, i32, neon_uimm2_bare,
5852                         GPR64, i64> {
5853   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
5854 }
5855
5856 multiclass Neon_SMOVx_pattern <ValueType StTy, ValueType NaTy,
5857                                ValueType eleTy, Operand StImm,  Operand NaImm,
5858                                Instruction SMOVI> {
5859   def : Pat<(i64 (sext_inreg
5860               (i64 (anyext
5861                 (i32 (vector_extract
5862                   (StTy VPR128:$Rn), (StImm:$Imm))))),
5863               eleTy)),
5864             (SMOVI VPR128:$Rn, StImm:$Imm)>;
5865   
5866   def : Pat<(i64 (sext
5867               (i32 (vector_extract
5868                 (StTy VPR128:$Rn), (StImm:$Imm))))),
5869             (SMOVI VPR128:$Rn, StImm:$Imm)>;
5870   
5871   def : Pat<(i64 (sext_inreg
5872               (i64 (vector_extract
5873                 (NaTy VPR64:$Rn), (NaImm:$Imm))),
5874               eleTy)),
5875             (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5876               NaImm:$Imm)>;
5877   
5878   def : Pat<(i64 (sext_inreg
5879               (i64 (anyext
5880                 (i32 (vector_extract
5881                   (NaTy VPR64:$Rn), (NaImm:$Imm))))),
5882               eleTy)),
5883             (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5884               NaImm:$Imm)>;
5885   
5886   def : Pat<(i64 (sext
5887               (i32 (vector_extract
5888                 (NaTy VPR64:$Rn), (NaImm:$Imm))))),
5889             (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5890               NaImm:$Imm)>; 
5891 }
5892
5893 defm : Neon_SMOVx_pattern<v16i8, v8i8, i8, neon_uimm4_bare,
5894                           neon_uimm3_bare, SMOVxb>;
5895 defm : Neon_SMOVx_pattern<v8i16, v4i16, i16, neon_uimm3_bare,
5896                           neon_uimm2_bare, SMOVxh>;
5897 defm : Neon_SMOVx_pattern<v4i32, v2i32, i32, neon_uimm2_bare,
5898                           neon_uimm1_bare, SMOVxs>;
5899
5900 class Neon_SMOVw_pattern <ValueType StTy, ValueType NaTy,
5901                           ValueType eleTy, Operand StImm,  Operand NaImm,
5902                           Instruction SMOVI>
5903   : Pat<(i32 (sext_inreg
5904           (i32 (vector_extract
5905             (NaTy VPR64:$Rn), (NaImm:$Imm))),
5906           eleTy)),
5907         (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5908           NaImm:$Imm)>;
5909
5910 def : Neon_SMOVw_pattern<v16i8, v8i8, i8, neon_uimm4_bare,
5911                          neon_uimm3_bare, SMOVwb>;
5912 def : Neon_SMOVw_pattern<v8i16, v4i16, i16, neon_uimm3_bare,
5913                          neon_uimm2_bare, SMOVwh>;
5914
5915 class NeonI_UMOV<string asmop, string Res, bit Q,
5916                  ValueType OpTy, Operand OpImm,
5917                  RegisterClass ResGPR, ValueType ResTy>
5918   : NeonI_copy<Q, 0b0, 0b0111,
5919                (outs ResGPR:$Rd), (ins VPR128:$Rn, OpImm:$Imm),
5920                asmop # "\t$Rd, $Rn." # Res # "[$Imm]",
5921                [(set (ResTy ResGPR:$Rd),
5922                   (ResTy (vector_extract
5923                     (OpTy VPR128:$Rn), (OpImm:$Imm))))],
5924                NoItinerary> {
5925   bits<4> Imm;
5926 }
5927
5928 //Unsigned integer move (main, from element)
5929 def UMOVwb : NeonI_UMOV<"umov", "b", 0b0, v16i8, neon_uimm4_bare,
5930                          GPR32, i32> {
5931   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
5932 }
5933 def UMOVwh : NeonI_UMOV<"umov", "h", 0b0, v8i16, neon_uimm3_bare,
5934                          GPR32, i32> {
5935   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
5936 }
5937 def UMOVws : NeonI_UMOV<"umov", "s", 0b0, v4i32, neon_uimm2_bare,
5938                          GPR32, i32> {
5939   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
5940 }
5941 def UMOVxd : NeonI_UMOV<"umov", "d", 0b1, v2i64, neon_uimm1_bare,
5942                          GPR64, i64> {
5943   let Inst{20-16} = {Imm, 0b1, 0b0, 0b0, 0b0};
5944 }
5945
5946 class Neon_UMOV_pattern <ValueType StTy, ValueType NaTy, ValueType ResTy,
5947                          Operand StImm,  Operand NaImm,
5948                          Instruction SMOVI>
5949   : Pat<(ResTy (vector_extract
5950           (NaTy VPR64:$Rn), NaImm:$Imm)),
5951         (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5952           NaImm:$Imm)>;
5953
5954 def : Neon_UMOV_pattern<v16i8, v8i8, i32, neon_uimm4_bare,
5955                         neon_uimm3_bare, UMOVwb>;
5956 def : Neon_UMOV_pattern<v8i16, v4i16, i32, neon_uimm3_bare,
5957                         neon_uimm2_bare, UMOVwh>; 
5958 def : Neon_UMOV_pattern<v4i32, v2i32, i32, neon_uimm2_bare,
5959                         neon_uimm1_bare, UMOVws>;
5960
5961 def : Pat<(i32 (and
5962             (i32 (vector_extract
5963               (v16i8 VPR128:$Rn), (neon_uimm4_bare:$Imm))),
5964             255)),
5965           (UMOVwb VPR128:$Rn, neon_uimm4_bare:$Imm)>;
5966
5967 def : Pat<(i32 (and
5968             (i32 (vector_extract
5969               (v8i16 VPR128:$Rn), (neon_uimm3_bare:$Imm))),
5970             65535)),
5971           (UMOVwh VPR128:$Rn, neon_uimm3_bare:$Imm)>;
5972
5973 def : Pat<(i64 (zext
5974             (i32 (vector_extract
5975               (v2i64 VPR128:$Rn), (neon_uimm1_bare:$Imm))))),
5976           (UMOVxd VPR128:$Rn, neon_uimm1_bare:$Imm)>;
5977
5978 def : Pat<(i32 (and
5979             (i32 (vector_extract
5980               (v8i8 VPR64:$Rn), (neon_uimm3_bare:$Imm))),
5981             255)),
5982           (UMOVwb (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64),
5983             neon_uimm3_bare:$Imm)>;
5984
5985 def : Pat<(i32 (and
5986             (i32 (vector_extract
5987               (v4i16 VPR64:$Rn), (neon_uimm2_bare:$Imm))),
5988             65535)),
5989           (UMOVwh (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64),
5990             neon_uimm2_bare:$Imm)>;
5991
5992 def : Pat<(i64 (zext
5993             (i32 (vector_extract
5994               (v1i64 VPR64:$Rn), (neon_uimm0_bare:$Imm))))),
5995           (UMOVxd (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64),
5996             neon_uimm0_bare:$Imm)>;
5997
5998 // Additional copy patterns for scalar types
5999 def : Pat<(i32 (vector_extract (v1i8 FPR8:$Rn), (i64 0))),
6000           (UMOVwb (v16i8
6001             (SUBREG_TO_REG (i64 0), FPR8:$Rn, sub_8)), (i64 0))>;
6002
6003 def : Pat<(i32 (vector_extract (v1i16 FPR16:$Rn), (i64 0))),
6004           (UMOVwh (v8i16
6005             (SUBREG_TO_REG (i64 0), FPR16:$Rn, sub_16)), (i64 0))>;
6006
6007 def : Pat<(i32 (vector_extract (v1i32 FPR32:$Rn), (i64 0))),
6008           (FMOVws FPR32:$Rn)>;
6009
6010 def : Pat<(i64 (vector_extract (v1i64 FPR64:$Rn), (i64 0))),
6011           (FMOVxd FPR64:$Rn)>;
6012                
6013 def : Pat<(f64 (vector_extract (v1f64 FPR64:$Rn), (i64 0))),
6014           (f64 FPR64:$Rn)>;
6015
6016 def : Pat<(f32 (vector_extract (v1f32 FPR32:$Rn), (i64 0))),
6017           (f32 FPR32:$Rn)>;
6018
6019 def : Pat<(v1i8 (scalar_to_vector GPR32:$Rn)),
6020           (v1i8 (EXTRACT_SUBREG (v16i8
6021             (INSbw (v16i8 (IMPLICIT_DEF)), $Rn, (i64 0))),
6022             sub_8))>;
6023
6024 def : Pat<(v1i16 (scalar_to_vector GPR32:$Rn)),
6025           (v1i16 (EXTRACT_SUBREG (v8i16
6026             (INShw (v8i16 (IMPLICIT_DEF)), $Rn, (i64 0))),
6027             sub_16))>;
6028
6029 def : Pat<(v1i32 (scalar_to_vector GPR32:$src)),
6030           (FMOVsw $src)>;
6031
6032 def : Pat<(v1i64 (scalar_to_vector GPR64:$src)),
6033           (FMOVdx $src)>;
6034
6035 def : Pat<(v1f32 (scalar_to_vector (f32 FPR32:$Rn))),
6036           (v1f32 FPR32:$Rn)>;
6037 def : Pat<(v1f64 (scalar_to_vector (f64 FPR64:$Rn))),
6038           (v1f64 FPR64:$Rn)>;
6039
6040 def : Pat<(v1f64 (scalar_to_vector (f64 FPR64:$src))),
6041           (FMOVdd $src)>;
6042
6043 def : Pat<(v2f64 (scalar_to_vector (f64 FPR64:$src))),
6044           (INSERT_SUBREG (v2f64 (IMPLICIT_DEF)),
6045                          (f64 FPR64:$src), sub_64)>;
6046
6047 class NeonI_DUP_Elt<bit Q, string asmop, string rdlane,  string rnlane,
6048                     RegisterOperand ResVPR, Operand OpImm>
6049   : NeonI_copy<Q, 0b0, 0b0000, (outs ResVPR:$Rd),
6050                (ins VPR128:$Rn, OpImm:$Imm),
6051                asmop # "\t$Rd" # rdlane # ", $Rn" # rnlane # "[$Imm]",
6052                [],
6053                NoItinerary> {
6054   bits<4> Imm;
6055 }
6056
6057 def DUPELT16b : NeonI_DUP_Elt<0b1, "dup", ".16b", ".b", VPR128,
6058                               neon_uimm4_bare> {
6059   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6060 }
6061
6062 def DUPELT8h : NeonI_DUP_Elt<0b1, "dup", ".8h", ".h", VPR128,
6063                               neon_uimm3_bare> {
6064   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6065 }
6066
6067 def DUPELT4s : NeonI_DUP_Elt<0b1, "dup", ".4s", ".s", VPR128,
6068                               neon_uimm2_bare> {
6069   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
6070 }
6071
6072 def DUPELT2d : NeonI_DUP_Elt<0b1, "dup", ".2d", ".d", VPR128,
6073                               neon_uimm1_bare> {
6074   let Inst{20-16} = {Imm, 0b1, 0b0, 0b0, 0b0};
6075 }
6076
6077 def DUPELT8b : NeonI_DUP_Elt<0b0, "dup", ".8b", ".b", VPR64,
6078                               neon_uimm4_bare> {
6079   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6080 }
6081
6082 def DUPELT4h : NeonI_DUP_Elt<0b0, "dup", ".4h", ".h", VPR64,
6083                               neon_uimm3_bare> {
6084   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6085 }
6086
6087 def DUPELT2s : NeonI_DUP_Elt<0b0, "dup", ".2s", ".s", VPR64,
6088                               neon_uimm2_bare> {
6089   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
6090 }
6091
6092 multiclass NeonI_DUP_Elt_pattern<Instruction DUPELT, ValueType ResTy,
6093                                        ValueType OpTy,ValueType NaTy,
6094                                        ValueType ExTy, Operand OpLImm,
6095                                        Operand OpNImm> {
6096 def  : Pat<(ResTy (Neon_vduplane (OpTy VPR128:$Rn), OpLImm:$Imm)),
6097         (ResTy (DUPELT (OpTy VPR128:$Rn), OpLImm:$Imm))>;
6098
6099 def : Pat<(ResTy (Neon_vduplane
6100             (NaTy VPR64:$Rn), OpNImm:$Imm)),
6101           (ResTy (DUPELT
6102             (ExTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)), OpNImm:$Imm))>;
6103 }
6104 defm : NeonI_DUP_Elt_pattern<DUPELT16b, v16i8, v16i8, v8i8, v16i8,
6105                              neon_uimm4_bare, neon_uimm3_bare>;
6106 defm : NeonI_DUP_Elt_pattern<DUPELT8b, v8i8, v16i8, v8i8, v16i8,
6107                              neon_uimm4_bare, neon_uimm3_bare>;
6108 defm : NeonI_DUP_Elt_pattern<DUPELT8h, v8i16, v8i16, v4i16, v8i16,
6109                              neon_uimm3_bare, neon_uimm2_bare>;
6110 defm : NeonI_DUP_Elt_pattern<DUPELT4h, v4i16, v8i16, v4i16, v8i16,
6111                              neon_uimm3_bare, neon_uimm2_bare>;
6112 defm : NeonI_DUP_Elt_pattern<DUPELT4s, v4i32, v4i32, v2i32, v4i32,
6113                              neon_uimm2_bare, neon_uimm1_bare>;
6114 defm : NeonI_DUP_Elt_pattern<DUPELT2s, v2i32, v4i32, v2i32, v4i32,
6115                              neon_uimm2_bare, neon_uimm1_bare>;
6116 defm : NeonI_DUP_Elt_pattern<DUPELT2d, v2i64, v2i64, v1i64, v2i64,
6117                              neon_uimm1_bare, neon_uimm0_bare>;
6118 defm : NeonI_DUP_Elt_pattern<DUPELT4s, v4f32, v4f32, v2f32, v4f32,
6119                              neon_uimm2_bare, neon_uimm1_bare>;
6120 defm : NeonI_DUP_Elt_pattern<DUPELT2s, v2f32, v4f32, v2f32, v4f32,
6121                              neon_uimm2_bare, neon_uimm1_bare>;
6122 defm : NeonI_DUP_Elt_pattern<DUPELT2d, v2f64, v2f64, v1f64, v2f64,
6123                              neon_uimm1_bare, neon_uimm0_bare>;
6124
6125 def : Pat<(v2f32 (Neon_vdup (f32 FPR32:$Rn))),
6126           (v2f32 (DUPELT2s 
6127             (SUBREG_TO_REG (i64 0), FPR32:$Rn, sub_32),
6128             (i64 0)))>;
6129 def : Pat<(v4f32 (Neon_vdup (f32 FPR32:$Rn))),
6130           (v4f32 (DUPELT4s 
6131             (SUBREG_TO_REG (i64 0), FPR32:$Rn, sub_32),
6132             (i64 0)))>;
6133 def : Pat<(v2f64 (Neon_vdup (f64 FPR64:$Rn))),
6134           (v2f64 (DUPELT2d 
6135             (SUBREG_TO_REG (i64 0), FPR64:$Rn, sub_64),
6136             (i64 0)))>;
6137
6138 class NeonI_DUP<bit Q, string asmop, string rdlane,
6139                 RegisterOperand ResVPR, ValueType ResTy,
6140                 RegisterClass OpGPR, ValueType OpTy>
6141   : NeonI_copy<Q, 0b0, 0b0001, (outs ResVPR:$Rd), (ins OpGPR:$Rn),
6142                asmop # "\t$Rd" # rdlane # ", $Rn",
6143                [(set (ResTy ResVPR:$Rd), 
6144                  (ResTy (Neon_vdup (OpTy OpGPR:$Rn))))],
6145                NoItinerary>;
6146
6147 def DUP16b : NeonI_DUP<0b1, "dup", ".16b", VPR128, v16i8, GPR32, i32> {
6148   let Inst{16} = 0b1;
6149   // bits 17-19 are unspecified.
6150 }
6151
6152 def DUP8h : NeonI_DUP<0b1, "dup", ".8h", VPR128, v8i16, GPR32, i32> {
6153   let Inst{17-16} = 0b10;
6154   // bits 18-19 are unspecified.
6155 }
6156
6157 def DUP4s : NeonI_DUP<0b1, "dup", ".4s", VPR128, v4i32, GPR32, i32> {
6158   let Inst{18-16} = 0b100;
6159   // bit 19 is unspecified.
6160 }
6161
6162 def DUP2d : NeonI_DUP<0b1, "dup", ".2d", VPR128, v2i64, GPR64, i64> {
6163   let Inst{19-16} = 0b1000;
6164 }
6165
6166 def DUP8b : NeonI_DUP<0b0, "dup", ".8b", VPR64, v8i8, GPR32, i32> {
6167   let Inst{16} = 0b1;
6168   // bits 17-19 are unspecified.
6169 }
6170
6171 def DUP4h : NeonI_DUP<0b0, "dup", ".4h", VPR64, v4i16, GPR32, i32> {
6172   let Inst{17-16} = 0b10;
6173   // bits 18-19 are unspecified.
6174 }
6175
6176 def DUP2s : NeonI_DUP<0b0, "dup", ".2s", VPR64, v2i32, GPR32, i32> {
6177   let Inst{18-16} = 0b100;
6178   // bit 19 is unspecified.
6179 }
6180
6181 // patterns for CONCAT_VECTORS
6182 multiclass Concat_Vector_Pattern<ValueType ResTy, ValueType OpTy> {
6183 def : Pat<(ResTy (concat_vectors (OpTy VPR64:$Rn), undef)),
6184           (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)>;
6185 def : Pat<(ResTy (concat_vectors (OpTy VPR64:$Rn), (OpTy VPR64:$Rm))),
6186           (INSELd 
6187             (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6188             (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$Rm, sub_64)),
6189             (i64 1),
6190             (i64 0))>;
6191 def : Pat<(ResTy (concat_vectors (OpTy VPR64:$Rn), (OpTy VPR64:$Rn))),
6192           (DUPELT2d 
6193             (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6194             (i64 0))> ;
6195 }
6196
6197 defm : Concat_Vector_Pattern<v16i8, v8i8>;
6198 defm : Concat_Vector_Pattern<v8i16, v4i16>;
6199 defm : Concat_Vector_Pattern<v4i32, v2i32>;
6200 defm : Concat_Vector_Pattern<v2i64, v1i64>;
6201 defm : Concat_Vector_Pattern<v4f32, v2f32>;
6202 defm : Concat_Vector_Pattern<v2f64, v1f64>;
6203
6204 //patterns for EXTRACT_SUBVECTOR
6205 def : Pat<(v8i8 (extract_subvector (v16i8 VPR128:$Rn), (i64 0))),
6206           (v8i8 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6207 def : Pat<(v4i16 (extract_subvector (v8i16 VPR128:$Rn), (i64 0))),
6208           (v4i16 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6209 def : Pat<(v2i32 (extract_subvector (v4i32 VPR128:$Rn), (i64 0))),
6210           (v2i32 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6211 def : Pat<(v1i64 (extract_subvector (v2i64 VPR128:$Rn), (i64 0))),
6212           (v1i64 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6213 def : Pat<(v2f32 (extract_subvector (v4f32 VPR128:$Rn), (i64 0))),
6214           (v2f32 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6215 def : Pat<(v1f64 (extract_subvector (v2f64 VPR128:$Rn), (i64 0))),
6216           (v1f64 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6217
6218 // Crypto Class
6219 class NeonI_Cryptoaes_2v<bits<2> size, bits<5> opcode,
6220                          string asmop, SDPatternOperator opnode>
6221   : NeonI_Crypto_AES<size, opcode,
6222                      (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
6223                      asmop # "\t$Rd.16b, $Rn.16b",
6224                      [(set (v16i8 VPR128:$Rd),
6225                         (v16i8 (opnode (v16i8 VPR128:$src),
6226                                        (v16i8 VPR128:$Rn))))],
6227                      NoItinerary>{
6228   let Constraints = "$src = $Rd";
6229 }
6230
6231 def AESE : NeonI_Cryptoaes_2v<0b00, 0b00100, "aese", int_arm_neon_aese>;
6232 def AESD : NeonI_Cryptoaes_2v<0b00, 0b00101, "aesd", int_arm_neon_aesd>;
6233
6234 class NeonI_Cryptoaes<bits<2> size, bits<5> opcode,
6235                       string asmop, SDPatternOperator opnode>
6236   : NeonI_Crypto_AES<size, opcode,
6237                      (outs VPR128:$Rd), (ins VPR128:$Rn),
6238                      asmop # "\t$Rd.16b, $Rn.16b",
6239                      [(set (v16i8 VPR128:$Rd),
6240                         (v16i8 (opnode (v16i8 VPR128:$Rn))))],
6241                      NoItinerary>;
6242
6243 def AESMC : NeonI_Cryptoaes<0b00, 0b00110, "aesmc", int_arm_neon_aesmc>;
6244 def AESIMC : NeonI_Cryptoaes<0b00, 0b00111, "aesimc", int_arm_neon_aesimc>;
6245
6246 class NeonI_Cryptosha_vv<bits<2> size, bits<5> opcode,
6247                          string asmop, SDPatternOperator opnode>
6248   : NeonI_Crypto_SHA<size, opcode,
6249                      (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
6250                      asmop # "\t$Rd.4s, $Rn.4s",
6251                      [(set (v4i32 VPR128:$Rd),
6252                         (v4i32 (opnode (v4i32 VPR128:$src),
6253                                        (v4i32 VPR128:$Rn))))],
6254                      NoItinerary> {
6255   let Constraints = "$src = $Rd";
6256 }
6257
6258 def SHA1SU1 : NeonI_Cryptosha_vv<0b00, 0b00001, "sha1su1",
6259                                  int_arm_neon_sha1su1>;
6260 def SHA256SU0 : NeonI_Cryptosha_vv<0b00, 0b00010, "sha256su0",
6261                                    int_arm_neon_sha256su0>;
6262
6263 class NeonI_Cryptosha_ss<bits<2> size, bits<5> opcode,
6264                          string asmop, SDPatternOperator opnode>
6265   : NeonI_Crypto_SHA<size, opcode,
6266                      (outs FPR32:$Rd), (ins FPR32:$Rn),
6267                      asmop # "\t$Rd, $Rn",
6268                      [(set (v1i32 FPR32:$Rd),
6269                         (v1i32 (opnode (v1i32 FPR32:$Rn))))],
6270                      NoItinerary>;
6271
6272 def SHA1H : NeonI_Cryptosha_ss<0b00, 0b00000, "sha1h", int_arm_neon_sha1h>;
6273
6274 class NeonI_Cryptosha3_vvv<bits<2> size, bits<3> opcode, string asmop,
6275                            SDPatternOperator opnode>
6276   : NeonI_Crypto_3VSHA<size, opcode,
6277                        (outs VPR128:$Rd),
6278                        (ins VPR128:$src, VPR128:$Rn, VPR128:$Rm),
6279                        asmop # "\t$Rd.4s, $Rn.4s, $Rm.4s",
6280                        [(set (v4i32 VPR128:$Rd),
6281                           (v4i32 (opnode (v4i32 VPR128:$src),
6282                                          (v4i32 VPR128:$Rn),
6283                                          (v4i32 VPR128:$Rm))))],
6284                        NoItinerary> {
6285   let Constraints = "$src = $Rd";
6286 }
6287
6288 def SHA1SU0 : NeonI_Cryptosha3_vvv<0b00, 0b011, "sha1su0",
6289                                    int_arm_neon_sha1su0>;
6290 def SHA256SU1 : NeonI_Cryptosha3_vvv<0b00, 0b110, "sha256su1",
6291                                      int_arm_neon_sha256su1>;
6292
6293 class NeonI_Cryptosha3_qqv<bits<2> size, bits<3> opcode, string asmop,
6294                            SDPatternOperator opnode>
6295   : NeonI_Crypto_3VSHA<size, opcode,
6296                        (outs FPR128:$Rd),
6297                        (ins FPR128:$src, FPR128:$Rn, VPR128:$Rm),
6298                        asmop # "\t$Rd, $Rn, $Rm.4s",
6299                        [(set (v4i32 FPR128:$Rd),
6300                           (v4i32 (opnode (v4i32 FPR128:$src),
6301                                          (v4i32 FPR128:$Rn),
6302                                          (v4i32 VPR128:$Rm))))],
6303                        NoItinerary> {
6304   let Constraints = "$src = $Rd";
6305 }
6306
6307 def SHA256H : NeonI_Cryptosha3_qqv<0b00, 0b100, "sha256h",
6308                                    int_arm_neon_sha256h>;
6309 def SHA256H2 : NeonI_Cryptosha3_qqv<0b00, 0b101, "sha256h2",
6310                                     int_arm_neon_sha256h2>;
6311
6312 class NeonI_Cryptosha3_qsv<bits<2> size, bits<3> opcode, string asmop,
6313                            SDPatternOperator opnode>
6314   : NeonI_Crypto_3VSHA<size, opcode,
6315                        (outs FPR128:$Rd),
6316                        (ins FPR128:$src, FPR32:$Rn, VPR128:$Rm),
6317                        asmop # "\t$Rd, $Rn, $Rm.4s",
6318                        [(set (v4i32 FPR128:$Rd),
6319                           (v4i32 (opnode (v4i32 FPR128:$src),
6320                                          (v1i32 FPR32:$Rn),
6321                                          (v4i32 VPR128:$Rm))))],
6322                        NoItinerary> {
6323   let Constraints = "$src = $Rd";
6324 }
6325
6326 def SHA1C : NeonI_Cryptosha3_qsv<0b00, 0b000, "sha1c", int_aarch64_neon_sha1c>;
6327 def SHA1P : NeonI_Cryptosha3_qsv<0b00, 0b001, "sha1p", int_aarch64_neon_sha1p>;
6328 def SHA1M : NeonI_Cryptosha3_qsv<0b00, 0b010, "sha1m", int_aarch64_neon_sha1m>;
6329