AArch64: Add missing scalar pair intrinsics.
[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 SDTPERMUTE : SDTypeProfile<1, 2, [SDTCisVec<0>, SDTCisSameAs<0, 1>,
50                                SDTCisSameAs<0, 2>]>;
51 def Neon_uzp1    : SDNode<"AArch64ISD::NEON_UZP1", SDTPERMUTE>;
52 def Neon_uzp2    : SDNode<"AArch64ISD::NEON_UZP2", SDTPERMUTE>;
53 def Neon_zip1    : SDNode<"AArch64ISD::NEON_ZIP1", SDTPERMUTE>;
54 def Neon_zip2    : SDNode<"AArch64ISD::NEON_ZIP2", SDTPERMUTE>;
55 def Neon_trn1    : SDNode<"AArch64ISD::NEON_TRN1", SDTPERMUTE>;
56 def Neon_trn2    : SDNode<"AArch64ISD::NEON_TRN2", SDTPERMUTE>;
57
58 def SDTVSHUF : SDTypeProfile<1, 1, [SDTCisVec<0>, SDTCisSameAs<0, 1>]>;
59 def Neon_rev64    : SDNode<"AArch64ISD::NEON_REV64", SDTVSHUF>;
60 def Neon_rev32    : SDNode<"AArch64ISD::NEON_REV32", SDTVSHUF>;
61 def Neon_rev16    : SDNode<"AArch64ISD::NEON_REV16", SDTVSHUF>;
62 def Neon_vdup : SDNode<"AArch64ISD::NEON_VDUP", SDTypeProfile<1, 1,
63                        [SDTCisVec<0>]>>;
64 def Neon_vduplane : SDNode<"AArch64ISD::NEON_VDUPLANE", SDTypeProfile<1, 2,
65                            [SDTCisVec<0>, SDTCisVec<1>, SDTCisVT<2, i64>]>>;
66 def Neon_vextract : SDNode<"AArch64ISD::NEON_VEXTRACT", SDTypeProfile<1, 3,
67                            [SDTCisVec<0>,  SDTCisSameAs<0, 1>,
68                            SDTCisSameAs<0, 2>, SDTCisVT<3, i64>]>>;
69
70 //===----------------------------------------------------------------------===//
71 // Multiclasses
72 //===----------------------------------------------------------------------===//
73
74 multiclass NeonI_3VSame_B_sizes<bit u, bits<2> size,  bits<5> opcode,
75                                 string asmop, SDPatternOperator opnode8B,
76                                 SDPatternOperator opnode16B,
77                                 bit Commutable = 0> {
78   let isCommutable = Commutable in {
79     def _8B :  NeonI_3VSame<0b0, u, size, opcode,
80                (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
81                asmop # "\t$Rd.8b, $Rn.8b, $Rm.8b",
82                [(set (v8i8 VPR64:$Rd),
83                   (v8i8 (opnode8B (v8i8 VPR64:$Rn), (v8i8 VPR64:$Rm))))],
84                NoItinerary>;
85
86     def _16B : NeonI_3VSame<0b1, u, size, opcode,
87                (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
88                asmop # "\t$Rd.16b, $Rn.16b, $Rm.16b",
89                [(set (v16i8 VPR128:$Rd),
90                   (v16i8 (opnode16B (v16i8 VPR128:$Rn), (v16i8 VPR128:$Rm))))],
91                NoItinerary>;
92   }
93
94 }
95
96 multiclass NeonI_3VSame_HS_sizes<bit u, bits<5> opcode,
97                                   string asmop, SDPatternOperator opnode,
98                                   bit Commutable = 0> {
99   let isCommutable = Commutable in {
100     def _4H : NeonI_3VSame<0b0, u, 0b01, opcode,
101               (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
102               asmop # "\t$Rd.4h, $Rn.4h, $Rm.4h",
103               [(set (v4i16 VPR64:$Rd),
104                  (v4i16 (opnode (v4i16 VPR64:$Rn), (v4i16 VPR64:$Rm))))],
105               NoItinerary>;
106
107     def _8H : NeonI_3VSame<0b1, u, 0b01, opcode,
108               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
109               asmop # "\t$Rd.8h, $Rn.8h, $Rm.8h",
110               [(set (v8i16 VPR128:$Rd),
111                  (v8i16 (opnode (v8i16 VPR128:$Rn), (v8i16 VPR128:$Rm))))],
112               NoItinerary>;
113
114     def _2S : NeonI_3VSame<0b0, u, 0b10, opcode,
115               (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
116               asmop # "\t$Rd.2s, $Rn.2s, $Rm.2s",
117               [(set (v2i32 VPR64:$Rd),
118                  (v2i32 (opnode (v2i32 VPR64:$Rn), (v2i32 VPR64:$Rm))))],
119               NoItinerary>;
120
121     def _4S : NeonI_3VSame<0b1, u, 0b10, opcode,
122               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
123               asmop # "\t$Rd.4s, $Rn.4s, $Rm.4s",
124               [(set (v4i32 VPR128:$Rd),
125                  (v4i32 (opnode (v4i32 VPR128:$Rn), (v4i32 VPR128:$Rm))))],
126               NoItinerary>;
127   }
128 }
129 multiclass NeonI_3VSame_BHS_sizes<bit u, bits<5> opcode,
130                                   string asmop, SDPatternOperator opnode,
131                                   bit Commutable = 0>
132    : NeonI_3VSame_HS_sizes<u, opcode,  asmop, opnode, Commutable> {
133   let isCommutable = Commutable in {
134     def _8B :  NeonI_3VSame<0b0, u, 0b00, opcode,
135                (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
136                asmop # "\t$Rd.8b, $Rn.8b, $Rm.8b",
137                [(set (v8i8 VPR64:$Rd),
138                   (v8i8 (opnode (v8i8 VPR64:$Rn), (v8i8 VPR64:$Rm))))],
139                NoItinerary>;
140
141     def _16B : NeonI_3VSame<0b1, u, 0b00, opcode,
142                (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
143                asmop # "\t$Rd.16b, $Rn.16b, $Rm.16b",
144                [(set (v16i8 VPR128:$Rd),
145                   (v16i8 (opnode (v16i8 VPR128:$Rn), (v16i8 VPR128:$Rm))))],
146                NoItinerary>;
147   }
148 }
149
150 multiclass NeonI_3VSame_BHSD_sizes<bit u, bits<5> opcode,
151                                    string asmop, SDPatternOperator opnode,
152                                    bit Commutable = 0>
153    : NeonI_3VSame_BHS_sizes<u, opcode,  asmop, opnode, Commutable> {
154   let isCommutable = Commutable in {
155     def _2D : NeonI_3VSame<0b1, u, 0b11, opcode,
156               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
157               asmop # "\t$Rd.2d, $Rn.2d, $Rm.2d",
158               [(set (v2i64 VPR128:$Rd),
159                  (v2i64 (opnode (v2i64 VPR128:$Rn), (v2i64 VPR128:$Rm))))],
160               NoItinerary>;
161   }
162 }
163
164 // Multiclass NeonI_3VSame_SD_sizes: Operand types are floating point types,
165 // but Result types can be integer or floating point types.
166 multiclass NeonI_3VSame_SD_sizes<bit u, bit size, bits<5> opcode,
167                                  string asmop, SDPatternOperator opnode2S,
168                                  SDPatternOperator opnode4S,
169                                  SDPatternOperator opnode2D,
170                                  ValueType ResTy2S, ValueType ResTy4S,
171                                  ValueType ResTy2D, bit Commutable = 0> {
172   let isCommutable = Commutable in {
173     def _2S : NeonI_3VSame<0b0, u, {size, 0b0}, opcode,
174               (outs VPR64:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
175               asmop # "\t$Rd.2s, $Rn.2s, $Rm.2s",
176               [(set (ResTy2S VPR64:$Rd),
177                  (ResTy2S (opnode2S (v2f32 VPR64:$Rn), (v2f32 VPR64:$Rm))))],
178               NoItinerary>;
179
180     def _4S : NeonI_3VSame<0b1, u, {size, 0b0}, opcode,
181               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
182               asmop # "\t$Rd.4s, $Rn.4s, $Rm.4s",
183               [(set (ResTy4S VPR128:$Rd),
184                  (ResTy4S (opnode4S (v4f32 VPR128:$Rn), (v4f32 VPR128:$Rm))))],
185               NoItinerary>;
186
187     def _2D : NeonI_3VSame<0b1, u, {size, 0b1}, opcode,
188               (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
189               asmop # "\t$Rd.2d, $Rn.2d, $Rm.2d",
190               [(set (ResTy2D VPR128:$Rd),
191                  (ResTy2D (opnode2D (v2f64 VPR128:$Rn), (v2f64 VPR128:$Rm))))],
192                NoItinerary>;
193   }
194 }
195
196 //===----------------------------------------------------------------------===//
197 // Instruction Definitions
198 //===----------------------------------------------------------------------===//
199
200 // Vector Arithmetic Instructions
201
202 // Vector Add (Integer and Floating-Point)
203
204 defm ADDvvv :  NeonI_3VSame_BHSD_sizes<0b0, 0b10000, "add", add, 1>;
205 defm FADDvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11010, "fadd", fadd, fadd, fadd,
206                                      v2f32, v4f32, v2f64, 1>;
207
208 // Vector Sub (Integer and Floating-Point)
209
210 defm SUBvvv :  NeonI_3VSame_BHSD_sizes<0b1, 0b10000, "sub", sub, 0>;
211 defm FSUBvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11010, "fsub", fsub, fsub, fsub,
212                                      v2f32, v4f32, v2f64, 0>;
213
214 // Vector Multiply (Integer and Floating-Point)
215
216 defm MULvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b10011, "mul", mul, 1>;
217 defm FMULvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11011, "fmul", fmul, fmul, fmul,
218                                      v2f32, v4f32, v2f64, 1>;
219
220 // Vector Multiply (Polynomial)
221
222 defm PMULvvv : NeonI_3VSame_B_sizes<0b1, 0b00, 0b10011, "pmul",
223                                     int_arm_neon_vmulp, int_arm_neon_vmulp, 1>;
224
225 // Vector Multiply-accumulate and Multiply-subtract (Integer)
226
227 // class NeonI_3VSame_Constraint_impl: NeonI_3VSame with no data type and
228 // two operands constraints.
229 class NeonI_3VSame_Constraint_impl<string asmop, string asmlane,
230   RegisterOperand VPRC, ValueType OpTy, bit q, bit u, bits<2> size, 
231   bits<5> opcode, SDPatternOperator opnode>
232   : NeonI_3VSame<q, u, size, opcode,
233     (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, VPRC:$Rm),
234     asmop # "\t$Rd" # asmlane # ", $Rn" # asmlane # ", $Rm" # asmlane,
235     [(set (OpTy VPRC:$Rd),
236        (OpTy (opnode (OpTy VPRC:$src), (OpTy VPRC:$Rn), (OpTy VPRC:$Rm))))],
237     NoItinerary> {
238   let Constraints = "$src = $Rd";
239 }
240
241 def Neon_mla : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
242                        (add node:$Ra, (mul node:$Rn, node:$Rm))>;
243
244 def Neon_mls : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
245                        (sub node:$Ra, (mul node:$Rn, node:$Rm))>;
246
247
248 def MLAvvv_8B:  NeonI_3VSame_Constraint_impl<"mla", ".8b",  VPR64,  v8i8,
249                                              0b0, 0b0, 0b00, 0b10010, Neon_mla>;
250 def MLAvvv_16B: NeonI_3VSame_Constraint_impl<"mla", ".16b", VPR128, v16i8,
251                                              0b1, 0b0, 0b00, 0b10010, Neon_mla>;
252 def MLAvvv_4H:  NeonI_3VSame_Constraint_impl<"mla", ".4h",  VPR64,  v4i16,
253                                              0b0, 0b0, 0b01, 0b10010, Neon_mla>;
254 def MLAvvv_8H:  NeonI_3VSame_Constraint_impl<"mla", ".8h",  VPR128, v8i16,
255                                              0b1, 0b0, 0b01, 0b10010, Neon_mla>;
256 def MLAvvv_2S:  NeonI_3VSame_Constraint_impl<"mla", ".2s",  VPR64,  v2i32,
257                                              0b0, 0b0, 0b10, 0b10010, Neon_mla>;
258 def MLAvvv_4S:  NeonI_3VSame_Constraint_impl<"mla", ".4s",  VPR128, v4i32,
259                                              0b1, 0b0, 0b10, 0b10010, Neon_mla>;
260
261 def MLSvvv_8B:  NeonI_3VSame_Constraint_impl<"mls", ".8b",  VPR64,  v8i8,
262                                              0b0, 0b1, 0b00, 0b10010, Neon_mls>;
263 def MLSvvv_16B: NeonI_3VSame_Constraint_impl<"mls", ".16b", VPR128, v16i8,
264                                              0b1, 0b1, 0b00, 0b10010, Neon_mls>;
265 def MLSvvv_4H:  NeonI_3VSame_Constraint_impl<"mls", ".4h",  VPR64,  v4i16,
266                                              0b0, 0b1, 0b01, 0b10010, Neon_mls>;
267 def MLSvvv_8H:  NeonI_3VSame_Constraint_impl<"mls", ".8h",  VPR128, v8i16,
268                                              0b1, 0b1, 0b01, 0b10010, Neon_mls>;
269 def MLSvvv_2S:  NeonI_3VSame_Constraint_impl<"mls", ".2s",  VPR64,  v2i32,
270                                              0b0, 0b1, 0b10, 0b10010, Neon_mls>;
271 def MLSvvv_4S:  NeonI_3VSame_Constraint_impl<"mls", ".4s",  VPR128, v4i32,
272                                              0b1, 0b1, 0b10, 0b10010, Neon_mls>;
273
274 // Vector Multiply-accumulate and Multiply-subtract (Floating Point)
275
276 def Neon_fmla : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
277                         (fadd node:$Ra, (fmul node:$Rn, node:$Rm))>;
278
279 def Neon_fmls : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
280                         (fsub node:$Ra, (fmul node:$Rn, node:$Rm))>;
281
282 let Predicates = [HasNEON, UseFusedMAC] in {
283 def FMLAvvv_2S: NeonI_3VSame_Constraint_impl<"fmla", ".2s",  VPR64,  v2f32,
284                                              0b0, 0b0, 0b00, 0b11001, Neon_fmla>;
285 def FMLAvvv_4S: NeonI_3VSame_Constraint_impl<"fmla", ".4s",  VPR128, v4f32,
286                                              0b1, 0b0, 0b00, 0b11001, Neon_fmla>;
287 def FMLAvvv_2D: NeonI_3VSame_Constraint_impl<"fmla", ".2d",  VPR128, v2f64,
288                                              0b1, 0b0, 0b01, 0b11001, Neon_fmla>;
289
290 def FMLSvvv_2S: NeonI_3VSame_Constraint_impl<"fmls", ".2s",  VPR64,  v2f32,
291                                               0b0, 0b0, 0b10, 0b11001, Neon_fmls>;
292 def FMLSvvv_4S: NeonI_3VSame_Constraint_impl<"fmls", ".4s",  VPR128, v4f32,
293                                              0b1, 0b0, 0b10, 0b11001, Neon_fmls>;
294 def FMLSvvv_2D: NeonI_3VSame_Constraint_impl<"fmls", ".2d",  VPR128, v2f64,
295                                              0b1, 0b0, 0b11, 0b11001, Neon_fmls>;
296 }
297
298 // We're also allowed to match the fma instruction regardless of compile
299 // options.
300 def : Pat<(v2f32 (fma VPR64:$Rn, VPR64:$Rm, VPR64:$Ra)),
301           (FMLAvvv_2S VPR64:$Ra, VPR64:$Rn, VPR64:$Rm)>;
302 def : Pat<(v4f32 (fma VPR128:$Rn, VPR128:$Rm, VPR128:$Ra)),
303           (FMLAvvv_4S VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
304 def : Pat<(v2f64 (fma VPR128:$Rn, VPR128:$Rm, VPR128:$Ra)),
305           (FMLAvvv_2D VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
306
307 def : Pat<(v2f32 (fma (fneg VPR64:$Rn), VPR64:$Rm, VPR64:$Ra)),
308           (FMLSvvv_2S VPR64:$Ra, VPR64:$Rn, VPR64:$Rm)>;
309 def : Pat<(v4f32 (fma (fneg VPR128:$Rn), VPR128:$Rm, VPR128:$Ra)),
310           (FMLSvvv_4S VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
311 def : Pat<(v2f64 (fma (fneg VPR128:$Rn), VPR128:$Rm, VPR128:$Ra)),
312           (FMLSvvv_2D VPR128:$Ra, VPR128:$Rn, VPR128:$Rm)>;
313
314 // Vector Divide (Floating-Point)
315
316 defm FDIVvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11111, "fdiv", fdiv, fdiv, fdiv,
317                                      v2f32, v4f32, v2f64, 0>;
318
319 // Vector Bitwise Operations
320
321 // Vector Bitwise AND
322
323 defm ANDvvv : NeonI_3VSame_B_sizes<0b0, 0b00, 0b00011, "and", and, and, 1>;
324
325 // Vector Bitwise Exclusive OR
326
327 defm EORvvv : NeonI_3VSame_B_sizes<0b1, 0b00, 0b00011, "eor", xor, xor, 1>;
328
329 // Vector Bitwise OR
330
331 defm ORRvvv : NeonI_3VSame_B_sizes<0b0, 0b10, 0b00011, "orr", or, or, 1>;
332
333 // ORR disassembled as MOV if Vn==Vm
334
335 // Vector Move - register
336 // Alias for ORR if Vn=Vm.
337 // FIXME: This is actually the preferred syntax but TableGen can't deal with
338 // custom printing of aliases.
339 def : NeonInstAlias<"mov $Rd.8b, $Rn.8b",
340                     (ORRvvv_8B VPR64:$Rd, VPR64:$Rn, VPR64:$Rn), 0>;
341 def : NeonInstAlias<"mov $Rd.16b, $Rn.16b",
342                     (ORRvvv_16B VPR128:$Rd, VPR128:$Rn, VPR128:$Rn), 0>;
343
344 // The MOVI instruction takes two immediate operands.  The first is the
345 // immediate encoding, while the second is the cmode.  A cmode of 14, or
346 // 0b1110, produces a MOVI operation, rather than a MVNI, ORR, or BIC.
347 def Neon_AllZero : PatFrag<(ops), (Neon_movi (i32 0), (i32 14))>;
348 def Neon_AllOne : PatFrag<(ops), (Neon_movi (i32 255), (i32 14))>;
349
350 def Neon_not8B  : PatFrag<(ops node:$in),
351                           (xor node:$in, (bitconvert (v8i8 Neon_AllOne)))>;
352 def Neon_not16B : PatFrag<(ops node:$in),
353                           (xor node:$in, (bitconvert (v16i8 Neon_AllOne)))>;
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<(v1f64 (int_arm_neon_vbsl (v1f64 VPR64:$src),
470                     (v1f64 VPR64:$Rn), (v1f64 VPR64:$Rm))),
471             (INST8B VPR64:$src, VPR64:$Rn, VPR64:$Rm)>;
472   def : Pat<(v16i8 (int_arm_neon_vbsl (v16i8 VPR128:$src),
473                     (v16i8 VPR128:$Rn), (v16i8 VPR128:$Rm))),
474             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
475   def : Pat<(v8i16 (int_arm_neon_vbsl (v8i16 VPR128:$src),
476                     (v8i16 VPR128:$Rn), (v8i16 VPR128:$Rm))),
477             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
478   def : Pat<(v4i32 (int_arm_neon_vbsl (v4i32 VPR128:$src),
479                     (v4i32 VPR128:$Rn), (v4i32 VPR128:$Rm))),
480             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
481   def : Pat<(v2i64 (int_arm_neon_vbsl (v2i64 VPR128:$src),
482                     (v2i64 VPR128:$Rn), (v2i64 VPR128:$Rm))),
483             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
484   def : Pat<(v4f32 (int_arm_neon_vbsl (v4f32 VPR128:$src),
485                     (v4f32 VPR128:$Rn), (v4f32 VPR128:$Rm))),
486             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
487   def : Pat<(v2f64 (int_arm_neon_vbsl (v2f64 VPR128:$src),
488                     (v2f64 VPR128:$Rn), (v2f64 VPR128:$Rm))),
489             (INST16B VPR128:$src, VPR128:$Rn, VPR128:$Rm)>;
490 }
491
492 // Additional patterns for bitwise instruction BSL
493 defm: Neon_bitwise3V_patterns<Neon_bsl, BSLvvv_8B, BSLvvv_16B>;
494
495 def Neon_NoBSLop : PatFrag<(ops node:$src, node:$Rn, node:$Rm),
496                            (Neon_bsl node:$src, node:$Rn, node:$Rm),
497                            [{ (void)N; return false; }]>;
498
499 // Vector Bitwise Insert if True
500
501 def BITvvv_8B  : NeonI_3VSame_Constraint_impl<"bit", ".8b", VPR64,   v8i8,
502                    0b0, 0b1, 0b10, 0b00011, Neon_NoBSLop>;
503 def BITvvv_16B : NeonI_3VSame_Constraint_impl<"bit", ".16b", VPR128, v16i8,
504                    0b1, 0b1, 0b10, 0b00011, Neon_NoBSLop>;
505
506 // Vector Bitwise Insert if False
507
508 def BIFvvv_8B  : NeonI_3VSame_Constraint_impl<"bif", ".8b", VPR64,  v8i8,
509                                 0b0, 0b1, 0b11, 0b00011, Neon_NoBSLop>;
510 def BIFvvv_16B : NeonI_3VSame_Constraint_impl<"bif", ".16b", VPR128, v16i8,
511                                 0b1, 0b1, 0b11, 0b00011, Neon_NoBSLop>;
512
513 // Vector Absolute Difference and Accumulate (Signed, Unsigned)
514
515 def Neon_uaba : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
516                        (add node:$Ra, (int_arm_neon_vabdu node:$Rn, node:$Rm))>;
517 def Neon_saba : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
518                        (add node:$Ra, (int_arm_neon_vabds node:$Rn, node:$Rm))>;
519
520 // Vector Absolute Difference and Accumulate (Unsigned)
521 def UABAvvv_8B :  NeonI_3VSame_Constraint_impl<"uaba", ".8b",  VPR64,  v8i8,
522                     0b0, 0b1, 0b00, 0b01111, Neon_uaba>;
523 def UABAvvv_16B : NeonI_3VSame_Constraint_impl<"uaba", ".16b", VPR128, v16i8,
524                     0b1, 0b1, 0b00, 0b01111, Neon_uaba>;
525 def UABAvvv_4H :  NeonI_3VSame_Constraint_impl<"uaba", ".4h",  VPR64,  v4i16,
526                     0b0, 0b1, 0b01, 0b01111, Neon_uaba>;
527 def UABAvvv_8H :  NeonI_3VSame_Constraint_impl<"uaba", ".8h",  VPR128, v8i16,
528                     0b1, 0b1, 0b01, 0b01111, Neon_uaba>;
529 def UABAvvv_2S :  NeonI_3VSame_Constraint_impl<"uaba", ".2s",  VPR64,  v2i32,
530                     0b0, 0b1, 0b10, 0b01111, Neon_uaba>;
531 def UABAvvv_4S :  NeonI_3VSame_Constraint_impl<"uaba", ".4s",  VPR128, v4i32,
532                     0b1, 0b1, 0b10, 0b01111, Neon_uaba>;
533
534 // Vector Absolute Difference and Accumulate (Signed)
535 def SABAvvv_8B :  NeonI_3VSame_Constraint_impl<"saba", ".8b",  VPR64,  v8i8,
536                     0b0, 0b0, 0b00, 0b01111, Neon_saba>;
537 def SABAvvv_16B : NeonI_3VSame_Constraint_impl<"saba", ".16b", VPR128, v16i8,
538                     0b1, 0b0, 0b00, 0b01111, Neon_saba>;
539 def SABAvvv_4H :  NeonI_3VSame_Constraint_impl<"saba", ".4h",  VPR64,  v4i16,
540                     0b0, 0b0, 0b01, 0b01111, Neon_saba>;
541 def SABAvvv_8H :  NeonI_3VSame_Constraint_impl<"saba", ".8h",  VPR128, v8i16,
542                     0b1, 0b0, 0b01, 0b01111, Neon_saba>;
543 def SABAvvv_2S :  NeonI_3VSame_Constraint_impl<"saba", ".2s",  VPR64,  v2i32,
544                     0b0, 0b0, 0b10, 0b01111, Neon_saba>;
545 def SABAvvv_4S :  NeonI_3VSame_Constraint_impl<"saba", ".4s",  VPR128, v4i32,
546                     0b1, 0b0, 0b10, 0b01111, Neon_saba>;
547
548
549 // Vector Absolute Difference (Signed, Unsigned)
550 defm UABDvvv : NeonI_3VSame_BHS_sizes<0b1, 0b01110, "uabd", int_arm_neon_vabdu, 0>;
551 defm SABDvvv : NeonI_3VSame_BHS_sizes<0b0, 0b01110, "sabd", int_arm_neon_vabds, 0>;
552
553 // Vector Absolute Difference (Floating Point)
554 defm FABDvvv: NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11010, "fabd",
555                                     int_arm_neon_vabds, int_arm_neon_vabds,
556                                     int_arm_neon_vabds, v2f32, v4f32, v2f64, 0>;
557
558 // Vector Reciprocal Step (Floating Point)
559 defm FRECPSvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11111, "frecps",
560                                        int_arm_neon_vrecps, int_arm_neon_vrecps,
561                                        int_arm_neon_vrecps,
562                                        v2f32, v4f32, v2f64, 0>;
563
564 // Vector Reciprocal Square Root Step (Floating Point)
565 defm FRSQRTSvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11111, "frsqrts",
566                                         int_arm_neon_vrsqrts,
567                                         int_arm_neon_vrsqrts,
568                                         int_arm_neon_vrsqrts,
569                                         v2f32, v4f32, v2f64, 0>;
570
571 // Vector Comparisons
572
573 def Neon_cmeq : PatFrag<(ops node:$lhs, node:$rhs),
574                         (Neon_cmp node:$lhs, node:$rhs, SETEQ)>;
575 def Neon_cmphs : PatFrag<(ops node:$lhs, node:$rhs),
576                          (Neon_cmp node:$lhs, node:$rhs, SETUGE)>;
577 def Neon_cmge : PatFrag<(ops node:$lhs, node:$rhs),
578                         (Neon_cmp node:$lhs, node:$rhs, SETGE)>;
579 def Neon_cmhi : PatFrag<(ops node:$lhs, node:$rhs),
580                         (Neon_cmp node:$lhs, node:$rhs, SETUGT)>;
581 def Neon_cmgt : PatFrag<(ops node:$lhs, node:$rhs),
582                         (Neon_cmp node:$lhs, node:$rhs, SETGT)>;
583
584 // NeonI_compare_aliases class: swaps register operands to implement
585 // comparison aliases, e.g., CMLE is alias for CMGE with operands reversed.
586 class NeonI_compare_aliases<string asmop, string asmlane,
587                             Instruction inst, RegisterOperand VPRC>
588   : NeonInstAlias<asmop # "\t$Rd" # asmlane #", $Rn" # asmlane #
589                     ", $Rm" # asmlane,
590                   (inst VPRC:$Rd, VPRC:$Rm, VPRC:$Rn), 0b0>;
591
592 // Vector Comparisons (Integer)
593
594 // Vector Compare Mask Equal (Integer)
595 let isCommutable =1 in {
596 defm CMEQvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b10001, "cmeq", Neon_cmeq, 0>;
597 }
598
599 // Vector Compare Mask Higher or Same (Unsigned Integer)
600 defm CMHSvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b00111, "cmhs", Neon_cmphs, 0>;
601
602 // Vector Compare Mask Greater Than or Equal (Integer)
603 defm CMGEvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b00111, "cmge", Neon_cmge, 0>;
604
605 // Vector Compare Mask Higher (Unsigned Integer)
606 defm CMHIvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b00110, "cmhi", Neon_cmhi, 0>;
607
608 // Vector Compare Mask Greater Than (Integer)
609 defm CMGTvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b00110, "cmgt", Neon_cmgt, 0>;
610
611 // Vector Compare Mask Bitwise Test (Integer)
612 defm CMTSTvvv:  NeonI_3VSame_BHSD_sizes<0b0, 0b10001, "cmtst", Neon_tst, 0>;
613
614 // Vector Compare Mask Less or Same (Unsigned Integer)
615 // CMLS is alias for CMHS with operands reversed.
616 def CMLSvvv_8B  : NeonI_compare_aliases<"cmls", ".8b",  CMHSvvv_8B,  VPR64>;
617 def CMLSvvv_16B : NeonI_compare_aliases<"cmls", ".16b", CMHSvvv_16B, VPR128>;
618 def CMLSvvv_4H  : NeonI_compare_aliases<"cmls", ".4h",  CMHSvvv_4H,  VPR64>;
619 def CMLSvvv_8H  : NeonI_compare_aliases<"cmls", ".8h",  CMHSvvv_8H,  VPR128>;
620 def CMLSvvv_2S  : NeonI_compare_aliases<"cmls", ".2s",  CMHSvvv_2S,  VPR64>;
621 def CMLSvvv_4S  : NeonI_compare_aliases<"cmls", ".4s",  CMHSvvv_4S,  VPR128>;
622 def CMLSvvv_2D  : NeonI_compare_aliases<"cmls", ".2d",  CMHSvvv_2D,  VPR128>;
623
624 // Vector Compare Mask Less Than or Equal (Integer)
625 // CMLE is alias for CMGE with operands reversed.
626 def CMLEvvv_8B  : NeonI_compare_aliases<"cmle", ".8b",  CMGEvvv_8B,  VPR64>;
627 def CMLEvvv_16B : NeonI_compare_aliases<"cmle", ".16b", CMGEvvv_16B, VPR128>;
628 def CMLEvvv_4H  : NeonI_compare_aliases<"cmle", ".4h",  CMGEvvv_4H,  VPR64>;
629 def CMLEvvv_8H  : NeonI_compare_aliases<"cmle", ".8h",  CMGEvvv_8H,  VPR128>;
630 def CMLEvvv_2S  : NeonI_compare_aliases<"cmle", ".2s",  CMGEvvv_2S,  VPR64>;
631 def CMLEvvv_4S  : NeonI_compare_aliases<"cmle", ".4s",  CMGEvvv_4S,  VPR128>;
632 def CMLEvvv_2D  : NeonI_compare_aliases<"cmle", ".2d",  CMGEvvv_2D,  VPR128>;
633
634 // Vector Compare Mask Lower (Unsigned Integer)
635 // CMLO is alias for CMHI with operands reversed.
636 def CMLOvvv_8B  : NeonI_compare_aliases<"cmlo", ".8b",  CMHIvvv_8B,  VPR64>;
637 def CMLOvvv_16B : NeonI_compare_aliases<"cmlo", ".16b", CMHIvvv_16B, VPR128>;
638 def CMLOvvv_4H  : NeonI_compare_aliases<"cmlo", ".4h",  CMHIvvv_4H,  VPR64>;
639 def CMLOvvv_8H  : NeonI_compare_aliases<"cmlo", ".8h",  CMHIvvv_8H,  VPR128>;
640 def CMLOvvv_2S  : NeonI_compare_aliases<"cmlo", ".2s",  CMHIvvv_2S,  VPR64>;
641 def CMLOvvv_4S  : NeonI_compare_aliases<"cmlo", ".4s",  CMHIvvv_4S,  VPR128>;
642 def CMLOvvv_2D  : NeonI_compare_aliases<"cmlo", ".2d",  CMHIvvv_2D,  VPR128>;
643
644 // Vector Compare Mask Less Than (Integer)
645 // CMLT is alias for CMGT with operands reversed.
646 def CMLTvvv_8B  : NeonI_compare_aliases<"cmlt", ".8b",  CMGTvvv_8B,  VPR64>;
647 def CMLTvvv_16B : NeonI_compare_aliases<"cmlt", ".16b", CMGTvvv_16B, VPR128>;
648 def CMLTvvv_4H  : NeonI_compare_aliases<"cmlt", ".4h",  CMGTvvv_4H,  VPR64>;
649 def CMLTvvv_8H  : NeonI_compare_aliases<"cmlt", ".8h",  CMGTvvv_8H,  VPR128>;
650 def CMLTvvv_2S  : NeonI_compare_aliases<"cmlt", ".2s",  CMGTvvv_2S,  VPR64>;
651 def CMLTvvv_4S  : NeonI_compare_aliases<"cmlt", ".4s",  CMGTvvv_4S,  VPR128>;
652 def CMLTvvv_2D  : NeonI_compare_aliases<"cmlt", ".2d",  CMGTvvv_2D,  VPR128>;
653
654
655 def neon_uimm0_asmoperand : AsmOperandClass
656 {
657   let Name = "UImm0";
658   let PredicateMethod = "isUImm<0>";
659   let RenderMethod = "addImmOperands";
660 }
661
662 def neon_uimm0 : Operand<i32>, ImmLeaf<i32, [{return Imm == 0;}]> {
663   let ParserMatchClass = neon_uimm0_asmoperand;
664   let PrintMethod = "printNeonUImm0Operand";
665
666 }
667
668 multiclass NeonI_cmpz_sizes<bit u, bits<5> opcode, string asmop, CondCode CC>
669 {
670   def _8B :  NeonI_2VMisc<0b0, u, 0b00, opcode,
671              (outs VPR64:$Rd), (ins VPR64:$Rn, neon_uimm0:$Imm),
672              asmop # "\t$Rd.8b, $Rn.8b, $Imm",
673              [(set (v8i8 VPR64:$Rd),
674                 (v8i8 (Neon_cmpz (v8i8 VPR64:$Rn), (i32 imm:$Imm), CC)))],
675              NoItinerary>;
676
677   def _16B : NeonI_2VMisc<0b1, u, 0b00, opcode,
678              (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
679              asmop # "\t$Rd.16b, $Rn.16b, $Imm",
680              [(set (v16i8 VPR128:$Rd),
681                 (v16i8 (Neon_cmpz (v16i8 VPR128:$Rn), (i32 imm:$Imm), CC)))],
682              NoItinerary>;
683
684   def _4H : NeonI_2VMisc<0b0, u, 0b01, opcode,
685             (outs VPR64:$Rd), (ins VPR64:$Rn, neon_uimm0:$Imm),
686             asmop # "\t$Rd.4h, $Rn.4h, $Imm",
687             [(set (v4i16 VPR64:$Rd),
688                (v4i16 (Neon_cmpz (v4i16 VPR64:$Rn), (i32 imm:$Imm), CC)))],
689             NoItinerary>;
690
691   def _8H : NeonI_2VMisc<0b1, u, 0b01, opcode,
692             (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
693             asmop # "\t$Rd.8h, $Rn.8h, $Imm",
694             [(set (v8i16 VPR128:$Rd),
695                (v8i16 (Neon_cmpz (v8i16 VPR128:$Rn), (i32 imm:$Imm), CC)))],
696             NoItinerary>;
697
698   def _2S : NeonI_2VMisc<0b0, u, 0b10, opcode,
699             (outs VPR64:$Rd), (ins VPR64:$Rn, neon_uimm0:$Imm),
700             asmop # "\t$Rd.2s, $Rn.2s, $Imm",
701             [(set (v2i32 VPR64:$Rd),
702                (v2i32 (Neon_cmpz (v2i32 VPR64:$Rn), (i32 imm:$Imm), CC)))],
703             NoItinerary>;
704
705   def _4S : NeonI_2VMisc<0b1, u, 0b10, opcode,
706             (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
707             asmop # "\t$Rd.4s, $Rn.4s, $Imm",
708             [(set (v4i32 VPR128:$Rd),
709                (v4i32 (Neon_cmpz (v4i32 VPR128:$Rn), (i32 imm:$Imm), CC)))],
710             NoItinerary>;
711
712   def _2D : NeonI_2VMisc<0b1, u, 0b11, opcode,
713             (outs VPR128:$Rd), (ins VPR128:$Rn, neon_uimm0:$Imm),
714             asmop # "\t$Rd.2d, $Rn.2d, $Imm",
715             [(set (v2i64 VPR128:$Rd),
716                (v2i64 (Neon_cmpz (v2i64 VPR128:$Rn), (i32 imm:$Imm), CC)))],
717             NoItinerary>;
718 }
719
720 // Vector Compare Mask Equal to Zero (Integer)
721 defm CMEQvvi : NeonI_cmpz_sizes<0b0, 0b01001, "cmeq", SETEQ>;
722
723 // Vector Compare Mask Greater Than or Equal to Zero (Signed Integer)
724 defm CMGEvvi : NeonI_cmpz_sizes<0b1, 0b01000, "cmge", SETGE>;
725
726 // Vector Compare Mask Greater Than Zero (Signed Integer)
727 defm CMGTvvi : NeonI_cmpz_sizes<0b0, 0b01000, "cmgt", SETGT>;
728
729 // Vector Compare Mask Less Than or Equal To Zero (Signed Integer)
730 defm CMLEvvi : NeonI_cmpz_sizes<0b1, 0b01001, "cmle", SETLE>;
731
732 // Vector Compare Mask Less Than Zero (Signed Integer)
733 defm CMLTvvi : NeonI_cmpz_sizes<0b0, 0b01010, "cmlt", SETLT>;
734
735 // Vector Comparisons (Floating Point)
736
737 // Vector Compare Mask Equal (Floating Point)
738 let isCommutable =1 in {
739 defm FCMEQvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11100, "fcmeq", Neon_cmeq,
740                                       Neon_cmeq, Neon_cmeq,
741                                       v2i32, v4i32, v2i64, 0>;
742 }
743
744 // Vector Compare Mask Greater Than Or Equal (Floating Point)
745 defm FCMGEvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11100, "fcmge", Neon_cmge,
746                                       Neon_cmge, Neon_cmge,
747                                       v2i32, v4i32, v2i64, 0>;
748
749 // Vector Compare Mask Greater Than (Floating Point)
750 defm FCMGTvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11100, "fcmgt", Neon_cmgt,
751                                       Neon_cmgt, Neon_cmgt,
752                                       v2i32, v4i32, v2i64, 0>;
753
754 // Vector Compare Mask Less Than Or Equal (Floating Point)
755 // FCMLE is alias for FCMGE with operands reversed.
756 def FCMLEvvv_2S  : NeonI_compare_aliases<"fcmle", ".2s",  FCMGEvvv_2S,  VPR64>;
757 def FCMLEvvv_4S  : NeonI_compare_aliases<"fcmle", ".4s",  FCMGEvvv_4S,  VPR128>;
758 def FCMLEvvv_2D  : NeonI_compare_aliases<"fcmle", ".2d",  FCMGEvvv_2D,  VPR128>;
759
760 // Vector Compare Mask Less Than (Floating Point)
761 // FCMLT is alias for FCMGT with operands reversed.
762 def FCMLTvvv_2S  : NeonI_compare_aliases<"fcmlt", ".2s",  FCMGTvvv_2S,  VPR64>;
763 def FCMLTvvv_4S  : NeonI_compare_aliases<"fcmlt", ".4s",  FCMGTvvv_4S,  VPR128>;
764 def FCMLTvvv_2D  : NeonI_compare_aliases<"fcmlt", ".2d",  FCMGTvvv_2D,  VPR128>;
765
766
767 multiclass NeonI_fpcmpz_sizes<bit u, bit size, bits<5> opcode,
768                               string asmop, CondCode CC>
769 {
770   def _2S : NeonI_2VMisc<0b0, u, {size, 0b0}, opcode,
771             (outs VPR64:$Rd), (ins VPR64:$Rn, fpz32:$FPImm),
772             asmop # "\t$Rd.2s, $Rn.2s, $FPImm",
773             [(set (v2i32 VPR64:$Rd),
774                (v2i32 (Neon_cmpz (v2f32 VPR64:$Rn), (f32 fpimm:$FPImm), CC)))],
775             NoItinerary>;
776
777   def _4S : NeonI_2VMisc<0b1, u, {size, 0b0}, opcode,
778             (outs VPR128:$Rd), (ins VPR128:$Rn, fpz32:$FPImm),
779             asmop # "\t$Rd.4s, $Rn.4s, $FPImm",
780             [(set (v4i32 VPR128:$Rd),
781                (v4i32 (Neon_cmpz (v4f32 VPR128:$Rn), (f32 fpimm:$FPImm), CC)))],
782             NoItinerary>;
783
784   def _2D : NeonI_2VMisc<0b1, u, {size, 0b1}, opcode,
785             (outs VPR128:$Rd), (ins VPR128:$Rn, fpz32:$FPImm),
786             asmop # "\t$Rd.2d, $Rn.2d, $FPImm",
787             [(set (v2i64 VPR128:$Rd),
788                (v2i64 (Neon_cmpz (v2f64 VPR128:$Rn), (f32 fpimm:$FPImm), CC)))],
789             NoItinerary>;
790 }
791
792 // Vector Compare Mask Equal to Zero (Floating Point)
793 defm FCMEQvvi : NeonI_fpcmpz_sizes<0b0, 0b1, 0b01101, "fcmeq", SETEQ>;
794
795 // Vector Compare Mask Greater Than or Equal to Zero (Floating Point)
796 defm FCMGEvvi : NeonI_fpcmpz_sizes<0b1, 0b1, 0b01100, "fcmge", SETGE>;
797
798 // Vector Compare Mask Greater Than Zero (Floating Point)
799 defm FCMGTvvi : NeonI_fpcmpz_sizes<0b0, 0b1, 0b01100, "fcmgt", SETGT>;
800
801 // Vector Compare Mask Less Than or Equal To Zero (Floating Point)
802 defm FCMLEvvi : NeonI_fpcmpz_sizes<0b1, 0b1, 0b01101, "fcmle", SETLE>;
803
804 // Vector Compare Mask Less Than Zero (Floating Point)
805 defm FCMLTvvi : NeonI_fpcmpz_sizes<0b0, 0b1, 0b01110, "fcmlt", SETLT>;
806
807 // Vector Absolute Comparisons (Floating Point)
808
809 // Vector Absolute Compare Mask Greater Than Or Equal (Floating Point)
810 defm FACGEvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11101, "facge",
811                                       int_arm_neon_vacged, int_arm_neon_vacgeq,
812                                       int_aarch64_neon_vacgeq,
813                                       v2i32, v4i32, v2i64, 0>;
814
815 // Vector Absolute Compare Mask Greater Than (Floating Point)
816 defm FACGTvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11101, "facgt",
817                                       int_arm_neon_vacgtd, int_arm_neon_vacgtq,
818                                       int_aarch64_neon_vacgtq,
819                                       v2i32, v4i32, v2i64, 0>;
820
821 // Vector Absolute Compare Mask Less Than Or Equal (Floating Point)
822 // FACLE is alias for FACGE with operands reversed.
823 def FACLEvvv_2S  : NeonI_compare_aliases<"facle", ".2s",  FACGEvvv_2S,  VPR64>;
824 def FACLEvvv_4S  : NeonI_compare_aliases<"facle", ".4s",  FACGEvvv_4S,  VPR128>;
825 def FACLEvvv_2D  : NeonI_compare_aliases<"facle", ".2d",  FACGEvvv_2D,  VPR128>;
826
827 // Vector Absolute Compare Mask Less Than (Floating Point)
828 // FACLT is alias for FACGT with operands reversed.
829 def FACLTvvv_2S  : NeonI_compare_aliases<"faclt", ".2s",  FACGTvvv_2S,  VPR64>;
830 def FACLTvvv_4S  : NeonI_compare_aliases<"faclt", ".4s",  FACGTvvv_4S,  VPR128>;
831 def FACLTvvv_2D  : NeonI_compare_aliases<"faclt", ".2d",  FACGTvvv_2D,  VPR128>;
832
833 // Vector halving add (Integer Signed, Unsigned)
834 defm SHADDvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b00000, "shadd",
835                                         int_arm_neon_vhadds, 1>;
836 defm UHADDvvv :  NeonI_3VSame_BHS_sizes<0b1, 0b00000, "uhadd",
837                                         int_arm_neon_vhaddu, 1>;
838
839 // Vector halving sub (Integer Signed, Unsigned)
840 defm SHSUBvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b00100, "shsub",
841                                         int_arm_neon_vhsubs, 0>;
842 defm UHSUBvvv :  NeonI_3VSame_BHS_sizes<0b1, 0b00100, "uhsub",
843                                         int_arm_neon_vhsubu, 0>;
844
845 // Vector rouding halving add (Integer Signed, Unsigned)
846 defm SRHADDvvv :  NeonI_3VSame_BHS_sizes<0b0, 0b00010, "srhadd",
847                                          int_arm_neon_vrhadds, 1>;
848 defm URHADDvvv :  NeonI_3VSame_BHS_sizes<0b1, 0b00010, "urhadd",
849                                          int_arm_neon_vrhaddu, 1>;
850
851 // Vector Saturating add (Integer Signed, Unsigned)
852 defm SQADDvvv :  NeonI_3VSame_BHSD_sizes<0b0, 0b00001, "sqadd",
853                    int_arm_neon_vqadds, 1>;
854 defm UQADDvvv :  NeonI_3VSame_BHSD_sizes<0b1, 0b00001, "uqadd",
855                    int_arm_neon_vqaddu, 1>;
856
857 // Vector Saturating sub (Integer Signed, Unsigned)
858 defm SQSUBvvv :  NeonI_3VSame_BHSD_sizes<0b0, 0b00101, "sqsub",
859                    int_arm_neon_vqsubs, 1>;
860 defm UQSUBvvv :  NeonI_3VSame_BHSD_sizes<0b1, 0b00101, "uqsub",
861                    int_arm_neon_vqsubu, 1>;
862
863 // Vector Shift Left (Signed and Unsigned Integer)
864 defm SSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01000, "sshl",
865                  int_arm_neon_vshifts, 1>;
866 defm USHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01000, "ushl",
867                  int_arm_neon_vshiftu, 1>;
868
869 // Vector Saturating Shift Left (Signed and Unsigned Integer)
870 defm SQSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01001, "sqshl",
871                   int_arm_neon_vqshifts, 1>;
872 defm UQSHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01001, "uqshl",
873                   int_arm_neon_vqshiftu, 1>;
874
875 // Vector Rouding Shift Left (Signed and Unsigned Integer)
876 defm SRSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01010, "srshl",
877                   int_arm_neon_vrshifts, 1>;
878 defm URSHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01010, "urshl",
879                   int_arm_neon_vrshiftu, 1>;
880
881 // Vector Saturating Rouding Shift Left (Signed and Unsigned Integer)
882 defm SQRSHLvvv : NeonI_3VSame_BHSD_sizes<0b0, 0b01011, "sqrshl",
883                    int_arm_neon_vqrshifts, 1>;
884 defm UQRSHLvvv : NeonI_3VSame_BHSD_sizes<0b1, 0b01011, "uqrshl",
885                    int_arm_neon_vqrshiftu, 1>;
886
887 // Vector Maximum (Signed and Unsigned Integer)
888 defm SMAXvvv : NeonI_3VSame_BHS_sizes<0b0, 0b01100, "smax", int_arm_neon_vmaxs, 1>;
889 defm UMAXvvv : NeonI_3VSame_BHS_sizes<0b1, 0b01100, "umax", int_arm_neon_vmaxu, 1>;
890
891 // Vector Minimum (Signed and Unsigned Integer)
892 defm SMINvvv : NeonI_3VSame_BHS_sizes<0b0, 0b01101, "smin", int_arm_neon_vmins, 1>;
893 defm UMINvvv : NeonI_3VSame_BHS_sizes<0b1, 0b01101, "umin", int_arm_neon_vminu, 1>;
894
895 // Vector Maximum (Floating Point)
896 defm FMAXvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11110, "fmax",
897                                      int_arm_neon_vmaxs, int_arm_neon_vmaxs,
898                                      int_arm_neon_vmaxs, v2f32, v4f32, v2f64, 1>;
899
900 // Vector Minimum (Floating Point)
901 defm FMINvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11110, "fmin",
902                                      int_arm_neon_vmins, int_arm_neon_vmins,
903                                      int_arm_neon_vmins, v2f32, v4f32, v2f64, 1>;
904
905 // Vector maxNum (Floating Point) -  prefer a number over a quiet NaN)
906 defm FMAXNMvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11000, "fmaxnm",
907                                        int_aarch64_neon_vmaxnm,
908                                        int_aarch64_neon_vmaxnm,
909                                        int_aarch64_neon_vmaxnm,
910                                        v2f32, v4f32, v2f64, 1>;
911
912 // Vector minNum (Floating Point) - prefer a number over a quiet NaN)
913 defm FMINNMvvv : NeonI_3VSame_SD_sizes<0b0, 0b1, 0b11000, "fminnm",
914                                        int_aarch64_neon_vminnm,
915                                        int_aarch64_neon_vminnm,
916                                        int_aarch64_neon_vminnm,
917                                        v2f32, v4f32, v2f64, 1>;
918
919 // Vector Maximum Pairwise (Signed and Unsigned Integer)
920 defm SMAXPvvv : NeonI_3VSame_BHS_sizes<0b0, 0b10100, "smaxp", int_arm_neon_vpmaxs, 1>;
921 defm UMAXPvvv : NeonI_3VSame_BHS_sizes<0b1, 0b10100, "umaxp", int_arm_neon_vpmaxu, 1>;
922
923 // Vector Minimum Pairwise (Signed and Unsigned Integer)
924 defm SMINPvvv : NeonI_3VSame_BHS_sizes<0b0, 0b10101, "sminp", int_arm_neon_vpmins, 1>;
925 defm UMINPvvv : NeonI_3VSame_BHS_sizes<0b1, 0b10101, "uminp", int_arm_neon_vpminu, 1>;
926
927 // Vector Maximum Pairwise (Floating Point)
928 defm FMAXPvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11110, "fmaxp",
929                                      int_arm_neon_vpmaxs, int_arm_neon_vpmaxs,
930                                      int_arm_neon_vpmaxs, v2f32, v4f32, v2f64, 1>;
931
932 // Vector Minimum Pairwise (Floating Point)
933 defm FMINPvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11110, "fminp",
934                                      int_arm_neon_vpmins, int_arm_neon_vpmins,
935                                      int_arm_neon_vpmins, v2f32, v4f32, v2f64, 1>;
936
937 // Vector maxNum Pairwise (Floating Point) -  prefer a number over a quiet NaN)
938 defm FMAXNMPvvv : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11000, "fmaxnmp",
939                                        int_aarch64_neon_vpmaxnm,
940                                        int_aarch64_neon_vpmaxnm,
941                                        int_aarch64_neon_vpmaxnm,
942                                        v2f32, v4f32, v2f64, 1>;
943
944 // Vector minNum Pairwise (Floating Point) -  prefer a number over a quiet NaN)
945 defm FMINNMPvvv : NeonI_3VSame_SD_sizes<0b1, 0b1, 0b11000, "fminnmp",
946                                        int_aarch64_neon_vpminnm,
947                                        int_aarch64_neon_vpminnm,
948                                        int_aarch64_neon_vpminnm,
949                                        v2f32, v4f32, v2f64, 1>;
950
951 // Vector Addition Pairwise (Integer)
952 defm ADDP : NeonI_3VSame_BHSD_sizes<0b0, 0b10111, "addp", int_arm_neon_vpadd, 1>;
953
954 // Vector Addition Pairwise (Floating Point)
955 defm FADDP : NeonI_3VSame_SD_sizes<0b1, 0b0, 0b11010, "faddp",
956                                        int_arm_neon_vpadd,
957                                        int_arm_neon_vpadd,
958                                        int_arm_neon_vpadd,
959                                        v2f32, v4f32, v2f64, 1>;
960
961 // Vector Saturating Doubling Multiply High
962 defm SQDMULHvvv : NeonI_3VSame_HS_sizes<0b0, 0b10110, "sqdmulh",
963                     int_arm_neon_vqdmulh, 1>;
964
965 // Vector Saturating Rouding Doubling Multiply High
966 defm SQRDMULHvvv : NeonI_3VSame_HS_sizes<0b1, 0b10110, "sqrdmulh",
967                      int_arm_neon_vqrdmulh, 1>;
968
969 // Vector Multiply Extended (Floating Point)
970 defm FMULXvvv : NeonI_3VSame_SD_sizes<0b0, 0b0, 0b11011, "fmulx",
971                                       int_aarch64_neon_vmulx,
972                                       int_aarch64_neon_vmulx,
973                                       int_aarch64_neon_vmulx,
974                                       v2f32, v4f32, v2f64, 1>;
975
976 // Vector Immediate Instructions
977
978 multiclass neon_mov_imm_shift_asmoperands<string PREFIX>
979 {
980   def _asmoperand : AsmOperandClass
981     {
982       let Name = "NeonMovImmShift" # PREFIX;
983       let RenderMethod = "addNeonMovImmShift" # PREFIX # "Operands";
984       let PredicateMethod = "isNeonMovImmShift" # PREFIX;
985     }
986 }
987
988 // Definition of vector immediates shift operands
989
990 // The selectable use-cases extract the shift operation
991 // information from the OpCmode fields encoded in the immediate.
992 def neon_mod_shift_imm_XFORM : SDNodeXForm<imm, [{
993   uint64_t OpCmode = N->getZExtValue();
994   unsigned ShiftImm;
995   unsigned ShiftOnesIn;
996   unsigned HasShift =
997     A64Imms::decodeNeonModShiftImm(OpCmode, ShiftImm, ShiftOnesIn);
998   if (!HasShift) return SDValue();
999   return CurDAG->getTargetConstant(ShiftImm, MVT::i32);
1000 }]>;
1001
1002 // Vector immediates shift operands which accept LSL and MSL
1003 // shift operators with shift value in the range of 0, 8, 16, 24 (LSL),
1004 // or 0, 8 (LSLH) or 8, 16 (MSL).
1005 defm neon_mov_imm_LSL : neon_mov_imm_shift_asmoperands<"LSL">;
1006 defm neon_mov_imm_MSL : neon_mov_imm_shift_asmoperands<"MSL">;
1007 // LSLH restricts shift amount to  0, 8 out of 0, 8, 16, 24
1008 defm neon_mov_imm_LSLH : neon_mov_imm_shift_asmoperands<"LSLH">;
1009
1010 multiclass neon_mov_imm_shift_operands<string PREFIX,
1011                                        string HALF, string ISHALF, code pred>
1012 {
1013    def _operand : Operand<i32>, ImmLeaf<i32, pred, neon_mod_shift_imm_XFORM>
1014     {
1015       let PrintMethod =
1016         "printNeonMovImmShiftOperand<A64SE::" # PREFIX # ", " # ISHALF # ">";
1017       let DecoderMethod =
1018         "DecodeNeonMovImmShiftOperand<A64SE::" # PREFIX # ", " # ISHALF # ">";
1019       let ParserMatchClass =
1020         !cast<AsmOperandClass>("neon_mov_imm_" # PREFIX # HALF # "_asmoperand");
1021     }
1022 }
1023
1024 defm neon_mov_imm_LSL  : neon_mov_imm_shift_operands<"LSL", "", "false", [{
1025   unsigned ShiftImm;
1026   unsigned ShiftOnesIn;
1027   unsigned HasShift =
1028     A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1029   return (HasShift && !ShiftOnesIn);
1030 }]>;
1031
1032 defm neon_mov_imm_MSL  : neon_mov_imm_shift_operands<"MSL", "", "false", [{
1033   unsigned ShiftImm;
1034   unsigned ShiftOnesIn;
1035   unsigned HasShift =
1036     A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1037   return (HasShift && ShiftOnesIn);
1038 }]>;
1039
1040 defm neon_mov_imm_LSLH  : neon_mov_imm_shift_operands<"LSL", "H", "true", [{
1041   unsigned ShiftImm;
1042   unsigned ShiftOnesIn;
1043   unsigned HasShift =
1044     A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1045   return (HasShift && !ShiftOnesIn);
1046 }]>;
1047
1048 def neon_uimm1_asmoperand : AsmOperandClass
1049 {
1050   let Name = "UImm1";
1051   let PredicateMethod = "isUImm<1>";
1052   let RenderMethod = "addImmOperands";
1053 }
1054
1055 def neon_uimm2_asmoperand : AsmOperandClass
1056 {
1057   let Name = "UImm2";
1058   let PredicateMethod = "isUImm<2>";
1059   let RenderMethod = "addImmOperands";
1060 }
1061
1062 def neon_uimm8_asmoperand : AsmOperandClass
1063 {
1064   let Name = "UImm8";
1065   let PredicateMethod = "isUImm<8>";
1066   let RenderMethod = "addImmOperands";
1067 }
1068
1069 def neon_uimm8 : Operand<i32>, ImmLeaf<i32, [{(void)Imm; return true;}]> {
1070   let ParserMatchClass = neon_uimm8_asmoperand;
1071   let PrintMethod = "printUImmHexOperand";
1072 }
1073
1074 def neon_uimm64_mask_asmoperand : AsmOperandClass
1075 {
1076   let Name = "NeonUImm64Mask";
1077   let PredicateMethod = "isNeonUImm64Mask";
1078   let RenderMethod = "addNeonUImm64MaskOperands";
1079 }
1080
1081 // MCOperand for 64-bit bytemask with each byte having only the
1082 // value 0x00 and 0xff is encoded as an unsigned 8-bit value
1083 def neon_uimm64_mask : Operand<i32>, ImmLeaf<i32, [{(void)Imm; return true;}]> {
1084   let ParserMatchClass = neon_uimm64_mask_asmoperand;
1085   let PrintMethod = "printNeonUImm64MaskOperand";
1086 }
1087
1088 multiclass NeonI_mov_imm_lsl_sizes<string asmop, bit op,
1089                                    SDPatternOperator opnode>
1090 {
1091     // shift zeros, per word
1092     def _2S  : NeonI_1VModImm<0b0, op,
1093                               (outs VPR64:$Rd),
1094                               (ins neon_uimm8:$Imm,
1095                                 neon_mov_imm_LSL_operand:$Simm),
1096                               !strconcat(asmop, "\t$Rd.2s, $Imm$Simm"),
1097                               [(set (v2i32 VPR64:$Rd),
1098                                  (v2i32 (opnode (timm:$Imm),
1099                                    (neon_mov_imm_LSL_operand:$Simm))))],
1100                               NoItinerary> {
1101        bits<2> Simm;
1102        let cmode = {0b0, Simm{1}, Simm{0}, 0b0};
1103      }
1104
1105     def _4S  : NeonI_1VModImm<0b1, op,
1106                               (outs VPR128:$Rd),
1107                               (ins neon_uimm8:$Imm,
1108                                 neon_mov_imm_LSL_operand:$Simm),
1109                               !strconcat(asmop, "\t$Rd.4s, $Imm$Simm"),
1110                               [(set (v4i32 VPR128:$Rd),
1111                                  (v4i32 (opnode (timm:$Imm),
1112                                    (neon_mov_imm_LSL_operand:$Simm))))],
1113                               NoItinerary> {
1114       bits<2> Simm;
1115       let cmode = {0b0, Simm{1}, Simm{0}, 0b0};
1116     }
1117
1118     // shift zeros, per halfword
1119     def _4H  : NeonI_1VModImm<0b0, op,
1120                               (outs VPR64:$Rd),
1121                               (ins neon_uimm8:$Imm,
1122                                 neon_mov_imm_LSLH_operand:$Simm),
1123                               !strconcat(asmop, "\t$Rd.4h, $Imm$Simm"),
1124                               [(set (v4i16 VPR64:$Rd),
1125                                  (v4i16 (opnode (timm:$Imm),
1126                                    (neon_mov_imm_LSLH_operand:$Simm))))],
1127                               NoItinerary> {
1128       bit  Simm;
1129       let cmode = {0b1, 0b0, Simm, 0b0};
1130     }
1131
1132     def _8H  : NeonI_1VModImm<0b1, op,
1133                               (outs VPR128:$Rd),
1134                               (ins neon_uimm8:$Imm,
1135                                 neon_mov_imm_LSLH_operand:$Simm),
1136                               !strconcat(asmop, "\t$Rd.8h, $Imm$Simm"),
1137                               [(set (v8i16 VPR128:$Rd),
1138                                  (v8i16 (opnode (timm:$Imm),
1139                                    (neon_mov_imm_LSLH_operand:$Simm))))],
1140                               NoItinerary> {
1141       bit Simm;
1142       let cmode = {0b1, 0b0, Simm, 0b0};
1143      }
1144 }
1145
1146 multiclass NeonI_mov_imm_with_constraint_lsl_sizes<string asmop, bit op,
1147                                                    SDPatternOperator opnode,
1148                                                    SDPatternOperator neonopnode>
1149 {
1150   let Constraints = "$src = $Rd" in {
1151     // shift zeros, per word
1152     def _2S  : NeonI_1VModImm<0b0, op,
1153                  (outs VPR64:$Rd),
1154                  (ins VPR64:$src, neon_uimm8:$Imm,
1155                    neon_mov_imm_LSL_operand:$Simm),
1156                  !strconcat(asmop, "\t$Rd.2s, $Imm$Simm"),
1157                  [(set (v2i32 VPR64:$Rd),
1158                     (v2i32 (opnode (v2i32 VPR64:$src),
1159                       (v2i32 (bitconvert (v2i32 (neonopnode timm:$Imm,
1160                         neon_mov_imm_LSL_operand:$Simm)))))))],
1161                  NoItinerary> {
1162       bits<2> Simm;
1163       let cmode = {0b0, Simm{1}, Simm{0}, 0b1};
1164     }
1165
1166     def _4S  : NeonI_1VModImm<0b1, op,
1167                  (outs VPR128:$Rd),
1168                  (ins VPR128:$src, neon_uimm8:$Imm,
1169                    neon_mov_imm_LSL_operand:$Simm),
1170                  !strconcat(asmop, "\t$Rd.4s, $Imm$Simm"),
1171                  [(set (v4i32 VPR128:$Rd),
1172                     (v4i32 (opnode (v4i32 VPR128:$src),
1173                       (v4i32 (bitconvert (v4i32 (neonopnode timm:$Imm,
1174                         neon_mov_imm_LSL_operand:$Simm)))))))],
1175                  NoItinerary> {
1176       bits<2> Simm;
1177       let cmode = {0b0, Simm{1}, Simm{0}, 0b1};
1178     }
1179
1180     // shift zeros, per halfword
1181     def _4H  : NeonI_1VModImm<0b0, op,
1182                  (outs VPR64:$Rd),
1183                  (ins VPR64:$src, neon_uimm8:$Imm,
1184                    neon_mov_imm_LSLH_operand:$Simm),
1185                  !strconcat(asmop, "\t$Rd.4h, $Imm$Simm"),
1186                  [(set (v4i16 VPR64:$Rd),
1187                     (v4i16 (opnode (v4i16 VPR64:$src),
1188                        (v4i16 (bitconvert (v4i16 (neonopnode timm:$Imm,
1189                           neon_mov_imm_LSL_operand:$Simm)))))))],
1190                  NoItinerary> {
1191       bit  Simm;
1192       let cmode = {0b1, 0b0, Simm, 0b1};
1193     }
1194
1195     def _8H  : NeonI_1VModImm<0b1, op,
1196                  (outs VPR128:$Rd),
1197                  (ins VPR128:$src, neon_uimm8:$Imm,
1198                    neon_mov_imm_LSLH_operand:$Simm),
1199                  !strconcat(asmop, "\t$Rd.8h, $Imm$Simm"),
1200                  [(set (v8i16 VPR128:$Rd),
1201                     (v8i16 (opnode (v8i16 VPR128:$src),
1202                       (v8i16 (bitconvert (v8i16 (neonopnode timm:$Imm,
1203                         neon_mov_imm_LSL_operand:$Simm)))))))],
1204                  NoItinerary> {
1205       bit Simm;
1206       let cmode = {0b1, 0b0, Simm, 0b1};
1207     }
1208   }
1209 }
1210
1211 multiclass NeonI_mov_imm_msl_sizes<string asmop, bit op,
1212                                    SDPatternOperator opnode>
1213 {
1214     // shift ones, per word
1215     def _2S  : NeonI_1VModImm<0b0, op,
1216                              (outs VPR64:$Rd),
1217                              (ins neon_uimm8:$Imm,
1218                                neon_mov_imm_MSL_operand:$Simm),
1219                              !strconcat(asmop, "\t$Rd.2s, $Imm$Simm"),
1220                               [(set (v2i32 VPR64:$Rd),
1221                                  (v2i32 (opnode (timm:$Imm),
1222                                    (neon_mov_imm_MSL_operand:$Simm))))],
1223                              NoItinerary> {
1224        bit Simm;
1225        let cmode = {0b1, 0b1, 0b0, Simm};
1226      }
1227
1228    def _4S  : NeonI_1VModImm<0b1, op,
1229                               (outs VPR128:$Rd),
1230                               (ins neon_uimm8:$Imm,
1231                                 neon_mov_imm_MSL_operand:$Simm),
1232                               !strconcat(asmop, "\t$Rd.4s, $Imm$Simm"),
1233                               [(set (v4i32 VPR128:$Rd),
1234                                  (v4i32 (opnode (timm:$Imm),
1235                                    (neon_mov_imm_MSL_operand:$Simm))))],
1236                               NoItinerary> {
1237      bit Simm;
1238      let cmode = {0b1, 0b1, 0b0, Simm};
1239    }
1240 }
1241
1242 // Vector Move Immediate Shifted
1243 let isReMaterializable = 1 in {
1244 defm MOVIvi_lsl : NeonI_mov_imm_lsl_sizes<"movi", 0b0, Neon_movi>;
1245 }
1246
1247 // Vector Move Inverted Immediate Shifted
1248 let isReMaterializable = 1 in {
1249 defm MVNIvi_lsl : NeonI_mov_imm_lsl_sizes<"mvni", 0b1, Neon_mvni>;
1250 }
1251
1252 // Vector Bitwise Bit Clear (AND NOT) - immediate
1253 let isReMaterializable = 1 in {
1254 defm BICvi_lsl : NeonI_mov_imm_with_constraint_lsl_sizes<"bic", 0b1,
1255                                                          and, Neon_mvni>;
1256 }
1257
1258 // Vector Bitwise OR - immedidate
1259
1260 let isReMaterializable = 1 in {
1261 defm ORRvi_lsl   : NeonI_mov_imm_with_constraint_lsl_sizes<"orr", 0b0,
1262                                                            or, Neon_movi>;
1263 }
1264
1265 // Additional patterns for Vector Bitwise Bit Clear (AND NOT) - immedidate
1266 // LowerBUILD_VECTOR favors lowering MOVI over MVNI.
1267 // BIC immediate instructions selection requires additional patterns to
1268 // transform Neon_movi operands into BIC immediate operands
1269
1270 def neon_mov_imm_LSLH_transform_XFORM : SDNodeXForm<imm, [{
1271   uint64_t OpCmode = N->getZExtValue();
1272   unsigned ShiftImm;
1273   unsigned ShiftOnesIn;
1274   (void)A64Imms::decodeNeonModShiftImm(OpCmode, ShiftImm, ShiftOnesIn);
1275   // LSLH restricts shift amount to  0, 8 which are encoded as 0 and 1
1276   // Transform encoded shift amount 0 to 1 and 1 to 0.
1277   return CurDAG->getTargetConstant(!ShiftImm, MVT::i32);
1278 }]>;
1279
1280 def neon_mov_imm_LSLH_transform_operand
1281   : ImmLeaf<i32, [{
1282     unsigned ShiftImm;
1283     unsigned ShiftOnesIn;
1284     unsigned HasShift =
1285       A64Imms::decodeNeonModShiftImm(Imm, ShiftImm, ShiftOnesIn);
1286     return (HasShift && !ShiftOnesIn); }],
1287   neon_mov_imm_LSLH_transform_XFORM>;
1288
1289 // Transform (and A, (4h Neon_movi 0xff)) -> BIC 4h (A, 0x00, LSL 8)
1290 // Transform (and A, (4h Neon_movi 0xff LSL #8)) -> BIC 4h (A, 0x00)
1291 def : Pat<(v4i16 (and VPR64:$src,
1292             (v4i16 (Neon_movi 255, neon_mov_imm_LSLH_transform_operand:$Simm)))),
1293           (BICvi_lsl_4H VPR64:$src, 0,
1294             neon_mov_imm_LSLH_transform_operand:$Simm)>;
1295
1296 // Transform (and A, (8h Neon_movi 8h 0xff)) -> BIC 8h (A, 0x00, LSL 8)
1297 // Transform (and A, (8h Neon_movi 0xff LSL #8)) -> BIC 8h (A, 0x00)
1298 def : Pat<(v8i16 (and VPR128:$src,
1299             (v8i16 (Neon_movi 255, neon_mov_imm_LSLH_transform_operand:$Simm)))),
1300           (BICvi_lsl_8H VPR128:$src, 0,
1301             neon_mov_imm_LSLH_transform_operand:$Simm)>;
1302
1303
1304 multiclass Neon_bitwiseVi_patterns<SDPatternOperator opnode,
1305                                    SDPatternOperator neonopnode,
1306                                    Instruction INST4H,
1307                                    Instruction INST8H> {
1308   def : Pat<(v8i8 (opnode VPR64:$src,
1309                     (bitconvert(v4i16 (neonopnode timm:$Imm,
1310                       neon_mov_imm_LSLH_operand:$Simm))))),
1311             (INST4H VPR64:$src, neon_uimm8:$Imm,
1312               neon_mov_imm_LSLH_operand:$Simm)>;
1313   def : Pat<(v1i64 (opnode VPR64:$src,
1314                   (bitconvert(v4i16 (neonopnode timm:$Imm,
1315                     neon_mov_imm_LSLH_operand:$Simm))))),
1316           (INST4H VPR64:$src, neon_uimm8:$Imm,
1317             neon_mov_imm_LSLH_operand:$Simm)>;
1318
1319   def : Pat<(v16i8 (opnode VPR128:$src,
1320                    (bitconvert(v8i16 (neonopnode timm:$Imm,
1321                      neon_mov_imm_LSLH_operand:$Simm))))),
1322           (INST8H VPR128:$src, neon_uimm8:$Imm,
1323             neon_mov_imm_LSLH_operand:$Simm)>;
1324   def : Pat<(v4i32 (opnode VPR128:$src,
1325                    (bitconvert(v8i16 (neonopnode timm:$Imm,
1326                      neon_mov_imm_LSLH_operand:$Simm))))),
1327           (INST8H VPR128:$src, neon_uimm8:$Imm,
1328             neon_mov_imm_LSLH_operand:$Simm)>;
1329   def : Pat<(v2i64 (opnode VPR128:$src,
1330                    (bitconvert(v8i16 (neonopnode timm:$Imm,
1331                      neon_mov_imm_LSLH_operand:$Simm))))),
1332           (INST8H VPR128:$src, neon_uimm8:$Imm,
1333             neon_mov_imm_LSLH_operand:$Simm)>;
1334 }
1335
1336 // Additional patterns for Vector Vector Bitwise Bit Clear (AND NOT) - immediate
1337 defm : Neon_bitwiseVi_patterns<or, Neon_mvni, BICvi_lsl_4H, BICvi_lsl_8H>;
1338
1339 // Additional patterns for Vector Bitwise OR - immedidate
1340 defm : Neon_bitwiseVi_patterns<or, Neon_movi, ORRvi_lsl_4H, ORRvi_lsl_8H>;
1341
1342
1343 // Vector Move Immediate Masked
1344 let isReMaterializable = 1 in {
1345 defm MOVIvi_msl : NeonI_mov_imm_msl_sizes<"movi", 0b0, Neon_movi>;
1346 }
1347
1348 // Vector Move Inverted Immediate Masked
1349 let isReMaterializable = 1 in {
1350 defm MVNIvi_msl : NeonI_mov_imm_msl_sizes<"mvni", 0b1, Neon_mvni>;
1351 }
1352
1353 class NeonI_mov_imm_lsl_aliases<string asmop, string asmlane,
1354                                 Instruction inst, RegisterOperand VPRC>
1355   : NeonInstAlias<!strconcat(asmop, "\t$Rd," # asmlane # ", $Imm"),
1356                         (inst VPRC:$Rd, neon_uimm8:$Imm,  0), 0b0>;
1357
1358 // Aliases for Vector Move Immediate Shifted
1359 def : NeonI_mov_imm_lsl_aliases<"movi", ".2s", MOVIvi_lsl_2S, VPR64>;
1360 def : NeonI_mov_imm_lsl_aliases<"movi", ".4s", MOVIvi_lsl_4S, VPR128>;
1361 def : NeonI_mov_imm_lsl_aliases<"movi", ".4h", MOVIvi_lsl_4H, VPR64>;
1362 def : NeonI_mov_imm_lsl_aliases<"movi", ".8h", MOVIvi_lsl_8H, VPR128>;
1363
1364 // Aliases for Vector Move Inverted Immediate Shifted
1365 def : NeonI_mov_imm_lsl_aliases<"mvni", ".2s", MVNIvi_lsl_2S, VPR64>;
1366 def : NeonI_mov_imm_lsl_aliases<"mvni", ".4s", MVNIvi_lsl_4S, VPR128>;
1367 def : NeonI_mov_imm_lsl_aliases<"mvni", ".4h", MVNIvi_lsl_4H, VPR64>;
1368 def : NeonI_mov_imm_lsl_aliases<"mvni", ".8h", MVNIvi_lsl_8H, VPR128>;
1369
1370 // Aliases for Vector Bitwise Bit Clear (AND NOT) - immediate
1371 def : NeonI_mov_imm_lsl_aliases<"bic", ".2s", BICvi_lsl_2S, VPR64>;
1372 def : NeonI_mov_imm_lsl_aliases<"bic", ".4s", BICvi_lsl_4S, VPR128>;
1373 def : NeonI_mov_imm_lsl_aliases<"bic", ".4h", BICvi_lsl_4H, VPR64>;
1374 def : NeonI_mov_imm_lsl_aliases<"bic", ".8h", BICvi_lsl_8H, VPR128>;
1375
1376 // Aliases for Vector Bitwise OR - immedidate
1377 def : NeonI_mov_imm_lsl_aliases<"orr", ".2s", ORRvi_lsl_2S, VPR64>;
1378 def : NeonI_mov_imm_lsl_aliases<"orr", ".4s", ORRvi_lsl_4S, VPR128>;
1379 def : NeonI_mov_imm_lsl_aliases<"orr", ".4h", ORRvi_lsl_4H, VPR64>;
1380 def : NeonI_mov_imm_lsl_aliases<"orr", ".8h", ORRvi_lsl_8H, VPR128>;
1381
1382 //  Vector Move Immediate - per byte
1383 let isReMaterializable = 1 in {
1384 def MOVIvi_8B : NeonI_1VModImm<0b0, 0b0,
1385                                (outs VPR64:$Rd), (ins neon_uimm8:$Imm),
1386                                "movi\t$Rd.8b, $Imm",
1387                                [(set (v8i8 VPR64:$Rd),
1388                                   (v8i8 (Neon_movi (timm:$Imm), (i32 imm))))],
1389                                 NoItinerary> {
1390   let cmode = 0b1110;
1391 }
1392
1393 def MOVIvi_16B : NeonI_1VModImm<0b1, 0b0,
1394                                 (outs VPR128:$Rd), (ins neon_uimm8:$Imm),
1395                                 "movi\t$Rd.16b, $Imm",
1396                                 [(set (v16i8 VPR128:$Rd),
1397                                    (v16i8 (Neon_movi (timm:$Imm), (i32 imm))))],
1398                                  NoItinerary> {
1399   let cmode = 0b1110;
1400 }
1401 }
1402
1403 // Vector Move Immediate - bytemask, per double word
1404 let isReMaterializable = 1 in {
1405 def MOVIvi_2D : NeonI_1VModImm<0b1, 0b1,
1406                                (outs VPR128:$Rd), (ins neon_uimm64_mask:$Imm),
1407                                "movi\t $Rd.2d, $Imm",
1408                                [(set (v2i64 VPR128:$Rd),
1409                                   (v2i64 (Neon_movi (timm:$Imm), (i32 imm))))],
1410                                NoItinerary> {
1411   let cmode = 0b1110;
1412 }
1413 }
1414
1415 // Vector Move Immediate - bytemask, one doubleword
1416
1417 let isReMaterializable = 1 in {
1418 def MOVIdi : NeonI_1VModImm<0b0, 0b1,
1419                            (outs FPR64:$Rd), (ins neon_uimm64_mask:$Imm),
1420                            "movi\t $Rd, $Imm",
1421                            [(set (f64 FPR64:$Rd),
1422                               (f64 (bitconvert
1423                                 (v1i64 (Neon_movi (timm:$Imm), (i32 imm))))))],
1424                            NoItinerary> {
1425   let cmode = 0b1110;
1426 }
1427 }
1428
1429 // Vector Floating Point Move Immediate
1430
1431 class NeonI_FMOV_impl<string asmlane, RegisterOperand VPRC, ValueType OpTy,
1432                       Operand immOpType, bit q, bit op>
1433   : NeonI_1VModImm<q, op,
1434                    (outs VPRC:$Rd), (ins immOpType:$Imm),
1435                    "fmov\t$Rd" # asmlane # ", $Imm",
1436                    [(set (OpTy VPRC:$Rd),
1437                       (OpTy (Neon_fmovi (timm:$Imm))))],
1438                    NoItinerary> {
1439      let cmode = 0b1111;
1440    }
1441
1442 let isReMaterializable = 1 in {
1443 def FMOVvi_2S : NeonI_FMOV_impl<".2s", VPR64,  v2f32, fmov32_operand, 0b0, 0b0>;
1444 def FMOVvi_4S : NeonI_FMOV_impl<".4s", VPR128, v4f32, fmov32_operand, 0b1, 0b0>;
1445 def FMOVvi_2D : NeonI_FMOV_impl<".2d", VPR128, v2f64, fmov64_operand, 0b1, 0b1>;
1446 }
1447
1448 // Vector Shift (Immediate) 
1449 // Immediate in [0, 63]
1450 def imm0_63 : Operand<i32> {
1451   let ParserMatchClass = uimm6_asmoperand;
1452 }
1453
1454 // Shift Right/Left Immediate - The immh:immb field of these shifts are encoded
1455 // as follows:
1456 //
1457 //    Offset    Encoding
1458 //     8        immh:immb<6:3> = '0001xxx', <imm> is encoded in immh:immb<2:0>
1459 //     16       immh:immb<6:4> = '001xxxx', <imm> is encoded in immh:immb<3:0>
1460 //     32       immh:immb<6:5> = '01xxxxx', <imm> is encoded in immh:immb<4:0>
1461 //     64       immh:immb<6>   = '1xxxxxx', <imm> is encoded in immh:immb<5:0>
1462 //
1463 // The shift right immediate amount, in the range 1 to element bits, is computed
1464 // as Offset - UInt(immh:immb).  The shift left immediate amount, in the range 0
1465 // to element bits - 1, is computed as UInt(immh:immb) - Offset.
1466
1467 class shr_imm_asmoperands<string OFFSET> : AsmOperandClass {
1468   let Name = "ShrImm" # OFFSET;
1469   let RenderMethod = "addImmOperands";
1470   let DiagnosticType = "ShrImm" # OFFSET;
1471 }
1472
1473 class shr_imm<string OFFSET> : Operand<i32> {
1474   let EncoderMethod = "getShiftRightImm" # OFFSET;
1475   let DecoderMethod = "DecodeShiftRightImm" # OFFSET;
1476   let ParserMatchClass = 
1477     !cast<AsmOperandClass>("shr_imm" # OFFSET # "_asmoperand");
1478 }
1479
1480 def shr_imm8_asmoperand : shr_imm_asmoperands<"8">;
1481 def shr_imm16_asmoperand : shr_imm_asmoperands<"16">;
1482 def shr_imm32_asmoperand : shr_imm_asmoperands<"32">;
1483 def shr_imm64_asmoperand : shr_imm_asmoperands<"64">;
1484
1485 def shr_imm8 : shr_imm<"8">, ImmLeaf<i32, [{return Imm > 0 && Imm <= 8;}]>;
1486 def shr_imm16 : shr_imm<"16">, ImmLeaf<i32, [{return Imm > 0 && Imm <= 16;}]>;
1487 def shr_imm32 : shr_imm<"32">, ImmLeaf<i32, [{return Imm > 0 && Imm <= 32;}]>;
1488 def shr_imm64 : shr_imm<"64">, ImmLeaf<i32, [{return Imm > 0 && Imm <= 64;}]>;
1489
1490 class shl_imm_asmoperands<string OFFSET> : AsmOperandClass {
1491   let Name = "ShlImm" # OFFSET;
1492   let RenderMethod = "addImmOperands";
1493   let DiagnosticType = "ShlImm" # OFFSET;
1494 }
1495
1496 class shl_imm<string OFFSET> : Operand<i32> {
1497   let EncoderMethod = "getShiftLeftImm" # OFFSET;
1498   let DecoderMethod = "DecodeShiftLeftImm" # OFFSET;
1499   let ParserMatchClass = 
1500     !cast<AsmOperandClass>("shl_imm" # OFFSET # "_asmoperand");
1501 }
1502
1503 def shl_imm8_asmoperand : shl_imm_asmoperands<"8">;
1504 def shl_imm16_asmoperand : shl_imm_asmoperands<"16">;
1505 def shl_imm32_asmoperand : shl_imm_asmoperands<"32">;
1506 def shl_imm64_asmoperand : shl_imm_asmoperands<"64">;
1507
1508 def shl_imm8 : shl_imm<"8">, ImmLeaf<i32, [{return Imm >= 0 && Imm < 8;}]>;
1509 def shl_imm16 : shl_imm<"16">, ImmLeaf<i32, [{return Imm >= 0 && Imm < 16;}]>;
1510 def shl_imm32 : shl_imm<"32">, ImmLeaf<i32, [{return Imm >= 0 && Imm < 32;}]>;
1511 def shl_imm64 : shl_imm<"64">, ImmLeaf<i32, [{return Imm >= 0 && Imm < 64;}]>;
1512
1513 class N2VShift<bit q, bit u, bits<5> opcode, string asmop, string T,
1514                RegisterOperand VPRC, ValueType Ty, Operand ImmTy, SDNode OpNode>
1515   : NeonI_2VShiftImm<q, u, opcode,
1516                      (outs VPRC:$Rd), (ins VPRC:$Rn, ImmTy:$Imm),
1517                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1518                      [(set (Ty VPRC:$Rd),
1519                         (Ty (OpNode (Ty VPRC:$Rn),
1520                           (Ty (Neon_vdup (i32 ImmTy:$Imm))))))],
1521                      NoItinerary>;
1522
1523 multiclass NeonI_N2VShL<bit u, bits<5> opcode, string asmop> {
1524   // 64-bit vector types.
1525   def _8B : N2VShift<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shl_imm8, shl> {
1526     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1527   }
1528
1529   def _4H : N2VShift<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shl_imm16, shl> {
1530     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1531   }
1532
1533   def _2S : N2VShift<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shl_imm32, shl> {
1534     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1535   }
1536
1537   // 128-bit vector types.
1538   def _16B : N2VShift<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shl_imm8, shl> {
1539     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1540   }
1541
1542   def _8H : N2VShift<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shl_imm16, shl> {
1543     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1544   }
1545
1546   def _4S : N2VShift<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shl_imm32, shl> {
1547     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1548   }
1549
1550   def _2D : N2VShift<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shl_imm64, shl> {
1551     let Inst{22} = 0b1;        // immh:immb = 1xxxxxx
1552   }
1553 }
1554
1555 multiclass NeonI_N2VShR<bit u, bits<5> opcode, string asmop, SDNode OpNode> {
1556   def _8B : N2VShift<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1557                      OpNode> {
1558     let Inst{22-19} = 0b0001;
1559   }
1560
1561   def _4H : N2VShift<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1562                      OpNode> {
1563     let Inst{22-20} = 0b001;
1564   }
1565
1566   def _2S : N2VShift<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1567                      OpNode> {
1568      let Inst{22-21} = 0b01;
1569   }
1570
1571   def _16B : N2VShift<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1572                       OpNode> {
1573                       let Inst{22-19} = 0b0001;
1574                     }
1575
1576   def _8H : N2VShift<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1577                      OpNode> {
1578                      let Inst{22-20} = 0b001;
1579                     }
1580
1581   def _4S : N2VShift<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1582                      OpNode> {
1583                       let Inst{22-21} = 0b01;
1584                     }
1585
1586   def _2D : N2VShift<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1587                      OpNode> {
1588                       let Inst{22} = 0b1;
1589                     }
1590 }
1591
1592 // Shift left
1593 defm SHLvvi : NeonI_N2VShL<0b0, 0b01010, "shl">;
1594
1595 // Shift right
1596 defm SSHRvvi : NeonI_N2VShR<0b0, 0b00000, "sshr", sra>;
1597 defm USHRvvi : NeonI_N2VShR<0b1, 0b00000, "ushr", srl>;
1598
1599 def Neon_High16B : PatFrag<(ops node:$in),
1600                            (extract_subvector (v16i8 node:$in), (iPTR 8))>;
1601 def Neon_High8H  : PatFrag<(ops node:$in),
1602                            (extract_subvector (v8i16 node:$in), (iPTR 4))>;
1603 def Neon_High4S  : PatFrag<(ops node:$in),
1604                            (extract_subvector (v4i32 node:$in), (iPTR 2))>;
1605 def Neon_High2D  : PatFrag<(ops node:$in),
1606                            (extract_subvector (v2i64 node:$in), (iPTR 1))>;
1607 def Neon_High4float : PatFrag<(ops node:$in),
1608                                (extract_subvector (v4f32 node:$in), (iPTR 2))>;
1609 def Neon_High2double : PatFrag<(ops node:$in),
1610                                (extract_subvector (v2f64 node:$in), (iPTR 1))>;
1611
1612 def Neon_Low16B : PatFrag<(ops node:$in),
1613                           (v8i8 (extract_subvector (v16i8 node:$in),
1614                                                    (iPTR 0)))>;
1615 def Neon_Low8H : PatFrag<(ops node:$in),
1616                          (v4i16 (extract_subvector (v8i16 node:$in),
1617                                                    (iPTR 0)))>;
1618 def Neon_Low4S : PatFrag<(ops node:$in),
1619                          (v2i32 (extract_subvector (v4i32 node:$in),
1620                                                    (iPTR 0)))>;
1621 def Neon_Low2D : PatFrag<(ops node:$in),
1622                          (v1i64 (extract_subvector (v2i64 node:$in),
1623                                                    (iPTR 0)))>;
1624 def Neon_Low4float : PatFrag<(ops node:$in),
1625                              (v2f32 (extract_subvector (v4f32 node:$in),
1626                                                        (iPTR 0)))>;
1627 def Neon_Low2double : PatFrag<(ops node:$in),
1628                               (v1f64 (extract_subvector (v2f64 node:$in),
1629                                                         (iPTR 0)))>;
1630
1631 class N2VShiftLong<bit q, bit u, bits<5> opcode, string asmop, string DestT,
1632                    string SrcT, ValueType DestTy, ValueType SrcTy,
1633                    Operand ImmTy, SDPatternOperator ExtOp>
1634   : NeonI_2VShiftImm<q, u, opcode, (outs VPR128:$Rd),
1635                      (ins VPR64:$Rn, ImmTy:$Imm),
1636                      asmop # "\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
1637                      [(set (DestTy VPR128:$Rd),
1638                         (DestTy (shl
1639                           (DestTy (ExtOp (SrcTy VPR64:$Rn))),
1640                             (DestTy (Neon_vdup (i32 ImmTy:$Imm))))))],
1641                      NoItinerary>;
1642
1643 class N2VShiftLongHigh<bit q, bit u, bits<5> opcode, string asmop, string DestT,
1644                        string SrcT, ValueType DestTy, ValueType SrcTy,
1645                        int StartIndex, Operand ImmTy,
1646                        SDPatternOperator ExtOp, PatFrag getTop>
1647   : NeonI_2VShiftImm<q, u, opcode, (outs VPR128:$Rd),
1648                      (ins VPR128:$Rn, ImmTy:$Imm),
1649                      asmop # "2\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
1650                      [(set (DestTy VPR128:$Rd),
1651                         (DestTy (shl
1652                           (DestTy (ExtOp
1653                             (SrcTy (getTop VPR128:$Rn)))),
1654                               (DestTy (Neon_vdup (i32 ImmTy:$Imm))))))],
1655                      NoItinerary>;
1656
1657 multiclass NeonI_N2VShLL<string prefix, bit u, bits<5> opcode, string asmop,
1658                          SDNode ExtOp> {
1659   // 64-bit vector types.
1660   def _8B : N2VShiftLong<0b0, u, opcode, asmop, "8h", "8b", v8i16, v8i8,
1661                          shl_imm8, ExtOp> {
1662     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1663   }
1664
1665   def _4H : N2VShiftLong<0b0, u, opcode, asmop, "4s", "4h", v4i32, v4i16,
1666                          shl_imm16, ExtOp> {
1667     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1668   }
1669
1670   def _2S : N2VShiftLong<0b0, u, opcode, asmop, "2d", "2s", v2i64, v2i32,
1671                          shl_imm32, ExtOp> {
1672     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1673   }
1674
1675   // 128-bit vector types
1676   def _16B : N2VShiftLongHigh<0b1, u, opcode, asmop, "8h", "16b", v8i16, v8i8,
1677                               8, shl_imm8, ExtOp, Neon_High16B> {
1678     let Inst{22-19} = 0b0001;  // immh:immb = 0001xxx
1679   }
1680
1681   def _8H : N2VShiftLongHigh<0b1, u, opcode, asmop, "4s", "8h", v4i32, v4i16,
1682                              4, shl_imm16, ExtOp, Neon_High8H> {
1683     let Inst{22-20} = 0b001;   // immh:immb = 001xxxx
1684   }
1685
1686   def _4S : N2VShiftLongHigh<0b1, u, opcode, asmop, "2d", "4s", v2i64, v2i32,
1687                              2, shl_imm32, ExtOp, Neon_High4S> {
1688     let Inst{22-21} = 0b01;    // immh:immb = 01xxxxx
1689   }
1690
1691   // Use other patterns to match when the immediate is 0.
1692   def : Pat<(v8i16 (ExtOp (v8i8 VPR64:$Rn))),
1693             (!cast<Instruction>(prefix # "_8B") VPR64:$Rn, 0)>;
1694
1695   def : Pat<(v4i32 (ExtOp (v4i16 VPR64:$Rn))),
1696             (!cast<Instruction>(prefix # "_4H") VPR64:$Rn, 0)>;
1697
1698   def : Pat<(v2i64 (ExtOp (v2i32 VPR64:$Rn))),
1699             (!cast<Instruction>(prefix # "_2S") VPR64:$Rn, 0)>;
1700
1701   def : Pat<(v8i16 (ExtOp (v8i8 (Neon_High16B VPR128:$Rn)))),
1702             (!cast<Instruction>(prefix # "_16B") VPR128:$Rn, 0)>;
1703
1704   def : Pat<(v4i32 (ExtOp (v4i16 (Neon_High8H VPR128:$Rn)))),
1705             (!cast<Instruction>(prefix # "_8H") VPR128:$Rn, 0)>;
1706
1707   def : Pat<(v2i64 (ExtOp (v2i32 (Neon_High4S VPR128:$Rn)))),
1708             (!cast<Instruction>(prefix # "_4S") VPR128:$Rn, 0)>;
1709 }
1710
1711 // Shift left long
1712 defm SSHLLvvi : NeonI_N2VShLL<"SSHLLvvi", 0b0, 0b10100, "sshll", sext>;
1713 defm USHLLvvi : NeonI_N2VShLL<"USHLLvvi", 0b1, 0b10100, "ushll", zext>;
1714
1715 // Rounding/Saturating shift
1716 class N2VShift_RQ<bit q, bit u, bits<5> opcode, string asmop, string T,
1717                   RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1718                   SDPatternOperator OpNode>
1719   : NeonI_2VShiftImm<q, u, opcode,
1720                      (outs VPRC:$Rd), (ins VPRC:$Rn, ImmTy:$Imm),
1721                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1722                      [(set (Ty VPRC:$Rd), (Ty (OpNode (Ty VPRC:$Rn),
1723                         (i32 ImmTy:$Imm))))],
1724                      NoItinerary>;
1725
1726 // shift right (vector by immediate)
1727 multiclass NeonI_N2VShR_RQ<bit u, bits<5> opcode, string asmop,
1728                            SDPatternOperator OpNode> {
1729   def _8B  : N2VShift_RQ<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1730                          OpNode> {
1731     let Inst{22-19} = 0b0001;
1732   }
1733
1734   def _4H  : N2VShift_RQ<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1735                          OpNode> {
1736     let Inst{22-20} = 0b001;
1737   }
1738
1739   def _2S  : N2VShift_RQ<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1740                          OpNode> {
1741     let Inst{22-21} = 0b01;
1742   }
1743
1744   def _16B : N2VShift_RQ<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1745                          OpNode> {
1746     let Inst{22-19} = 0b0001;
1747   }
1748
1749   def _8H : N2VShift_RQ<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1750                         OpNode> {
1751     let Inst{22-20} = 0b001;
1752   }
1753
1754   def _4S : N2VShift_RQ<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1755                         OpNode> {
1756     let Inst{22-21} = 0b01;
1757   }
1758
1759   def _2D : N2VShift_RQ<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1760                         OpNode> {
1761     let Inst{22} = 0b1;
1762   }
1763 }
1764
1765 multiclass NeonI_N2VShL_Q<bit u, bits<5> opcode, string asmop,
1766                           SDPatternOperator OpNode> {
1767   // 64-bit vector types.
1768   def _8B : N2VShift_RQ<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shl_imm8,
1769                         OpNode> {
1770     let Inst{22-19} = 0b0001;
1771   }
1772
1773   def _4H : N2VShift_RQ<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shl_imm16,
1774                         OpNode> {
1775     let Inst{22-20} = 0b001;
1776   }
1777
1778   def _2S : N2VShift_RQ<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shl_imm32,
1779                         OpNode> {
1780     let Inst{22-21} = 0b01;
1781   }
1782
1783   // 128-bit vector types.
1784   def _16B : N2VShift_RQ<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shl_imm8,
1785                          OpNode> {
1786     let Inst{22-19} = 0b0001;
1787   }
1788
1789   def _8H : N2VShift_RQ<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shl_imm16,
1790                         OpNode> {
1791     let Inst{22-20} = 0b001;
1792   }
1793
1794   def _4S : N2VShift_RQ<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shl_imm32,
1795                         OpNode> {
1796     let Inst{22-21} = 0b01;
1797   }
1798
1799   def _2D : N2VShift_RQ<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shl_imm64,
1800                         OpNode> {
1801     let Inst{22} = 0b1;
1802   }
1803 }
1804
1805 // Rounding shift right
1806 defm SRSHRvvi : NeonI_N2VShR_RQ<0b0, 0b00100, "srshr",
1807                                 int_aarch64_neon_vsrshr>;
1808 defm URSHRvvi : NeonI_N2VShR_RQ<0b1, 0b00100, "urshr",
1809                                 int_aarch64_neon_vurshr>;
1810
1811 // Saturating shift left unsigned
1812 defm SQSHLUvvi : NeonI_N2VShL_Q<0b1, 0b01100, "sqshlu", int_aarch64_neon_vsqshlu>;
1813
1814 // Saturating shift left
1815 defm SQSHLvvi : NeonI_N2VShL_Q<0b0, 0b01110, "sqshl", Neon_sqrshlImm>;
1816 defm UQSHLvvi : NeonI_N2VShL_Q<0b1, 0b01110, "uqshl", Neon_uqrshlImm>;
1817
1818 class N2VShiftAdd<bit q, bit u, bits<5> opcode, string asmop, string T,
1819                   RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1820                   SDNode OpNode>
1821   : NeonI_2VShiftImm<q, u, opcode,
1822            (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, ImmTy:$Imm),
1823            asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1824            [(set (Ty VPRC:$Rd), (Ty (add (Ty VPRC:$src),
1825               (Ty (OpNode (Ty VPRC:$Rn),
1826                 (Ty (Neon_vdup (i32 ImmTy:$Imm))))))))],
1827            NoItinerary> {
1828   let Constraints = "$src = $Rd";
1829 }
1830
1831 // Shift Right accumulate
1832 multiclass NeonI_N2VShRAdd<bit u, bits<5> opcode, string asmop, SDNode OpNode> {
1833   def _8B : N2VShiftAdd<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1834                         OpNode> {
1835     let Inst{22-19} = 0b0001;
1836   }
1837
1838   def _4H : N2VShiftAdd<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1839                         OpNode> {
1840     let Inst{22-20} = 0b001;
1841   }
1842
1843   def _2S : N2VShiftAdd<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1844                         OpNode> {
1845     let Inst{22-21} = 0b01;
1846   }
1847
1848   def _16B : N2VShiftAdd<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1849                          OpNode> {
1850     let Inst{22-19} = 0b0001;
1851   }
1852
1853   def _8H : N2VShiftAdd<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1854                         OpNode> {
1855     let Inst{22-20} = 0b001;
1856   }
1857
1858   def _4S : N2VShiftAdd<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1859                         OpNode> {
1860     let Inst{22-21} = 0b01;
1861   }
1862
1863   def _2D : N2VShiftAdd<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1864                         OpNode> {
1865     let Inst{22} = 0b1;
1866   }
1867 }
1868
1869 // Shift right and accumulate
1870 defm SSRAvvi    : NeonI_N2VShRAdd<0, 0b00010, "ssra", sra>;
1871 defm USRAvvi    : NeonI_N2VShRAdd<1, 0b00010, "usra", srl>;
1872
1873 // Rounding shift accumulate
1874 class N2VShiftAdd_R<bit q, bit u, bits<5> opcode, string asmop, string T,
1875                     RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1876                     SDPatternOperator OpNode>
1877   : NeonI_2VShiftImm<q, u, opcode,
1878                      (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, ImmTy:$Imm),
1879                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1880                      [(set (Ty VPRC:$Rd), (Ty (add (Ty VPRC:$src),
1881                         (Ty (OpNode (Ty VPRC:$Rn), (i32 ImmTy:$Imm))))))],
1882                      NoItinerary> {
1883   let Constraints = "$src = $Rd";
1884 }
1885
1886 multiclass NeonI_N2VShRAdd_R<bit u, bits<5> opcode, string asmop,
1887                              SDPatternOperator OpNode> {
1888   def _8B : N2VShiftAdd_R<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1889                           OpNode> {
1890     let Inst{22-19} = 0b0001;
1891   }
1892
1893   def _4H : N2VShiftAdd_R<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1894                           OpNode> {
1895     let Inst{22-20} = 0b001;
1896   }
1897
1898   def _2S : N2VShiftAdd_R<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1899                           OpNode> {
1900     let Inst{22-21} = 0b01;
1901   }
1902
1903   def _16B : N2VShiftAdd_R<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
1904                            OpNode> {
1905     let Inst{22-19} = 0b0001;
1906   }
1907
1908   def _8H : N2VShiftAdd_R<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
1909                           OpNode> {
1910     let Inst{22-20} = 0b001;
1911   }
1912
1913   def _4S : N2VShiftAdd_R<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
1914                           OpNode> {
1915     let Inst{22-21} = 0b01;
1916   }
1917
1918   def _2D : N2VShiftAdd_R<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
1919                           OpNode> {
1920     let Inst{22} = 0b1;
1921   }
1922 }
1923
1924 // Rounding shift right and accumulate
1925 defm SRSRAvvi : NeonI_N2VShRAdd_R<0, 0b00110, "srsra", int_aarch64_neon_vsrshr>;
1926 defm URSRAvvi : NeonI_N2VShRAdd_R<1, 0b00110, "ursra", int_aarch64_neon_vurshr>;
1927
1928 // Shift insert by immediate
1929 class N2VShiftIns<bit q, bit u, bits<5> opcode, string asmop, string T,
1930                   RegisterOperand VPRC, ValueType Ty, Operand ImmTy,
1931                   SDPatternOperator OpNode>
1932     : NeonI_2VShiftImm<q, u, opcode,
1933            (outs VPRC:$Rd), (ins VPRC:$src, VPRC:$Rn, ImmTy:$Imm),
1934            asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
1935            [(set (Ty VPRC:$Rd), (Ty (OpNode (Ty VPRC:$src), (Ty VPRC:$Rn),
1936              (i32 ImmTy:$Imm))))],
1937            NoItinerary> {
1938   let Constraints = "$src = $Rd";
1939 }
1940
1941 // shift left insert (vector by immediate)
1942 multiclass NeonI_N2VShLIns<bit u, bits<5> opcode, string asmop> {
1943   def _8B : N2VShiftIns<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shl_imm8,
1944                         int_aarch64_neon_vsli> {
1945     let Inst{22-19} = 0b0001;
1946   }
1947
1948   def _4H : N2VShiftIns<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shl_imm16,
1949                         int_aarch64_neon_vsli> {
1950     let Inst{22-20} = 0b001;
1951   }
1952
1953   def _2S : N2VShiftIns<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shl_imm32,
1954                         int_aarch64_neon_vsli> {
1955     let Inst{22-21} = 0b01;
1956   }
1957
1958     // 128-bit vector types
1959   def _16B : N2VShiftIns<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shl_imm8,
1960                          int_aarch64_neon_vsli> {
1961     let Inst{22-19} = 0b0001;
1962   }
1963
1964   def _8H : N2VShiftIns<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shl_imm16,
1965                         int_aarch64_neon_vsli> {
1966     let Inst{22-20} = 0b001;
1967   }
1968
1969   def _4S : N2VShiftIns<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shl_imm32,
1970                         int_aarch64_neon_vsli> {
1971     let Inst{22-21} = 0b01;
1972   }
1973
1974   def _2D : N2VShiftIns<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shl_imm64,
1975                         int_aarch64_neon_vsli> {
1976     let Inst{22} = 0b1;
1977   }
1978 }
1979
1980 // shift right insert (vector by immediate)
1981 multiclass NeonI_N2VShRIns<bit u, bits<5> opcode, string asmop> {
1982     // 64-bit vector types.
1983   def _8B : N2VShiftIns<0b0, u, opcode, asmop, "8b", VPR64, v8i8, shr_imm8,
1984                         int_aarch64_neon_vsri> {
1985     let Inst{22-19} = 0b0001;
1986   }
1987
1988   def _4H : N2VShiftIns<0b0, u, opcode, asmop, "4h", VPR64, v4i16, shr_imm16,
1989                         int_aarch64_neon_vsri> {
1990     let Inst{22-20} = 0b001;
1991   }
1992
1993   def _2S : N2VShiftIns<0b0, u, opcode, asmop, "2s", VPR64, v2i32, shr_imm32,
1994                         int_aarch64_neon_vsri> {
1995     let Inst{22-21} = 0b01;
1996   }
1997
1998     // 128-bit vector types
1999   def _16B : N2VShiftIns<0b1, u, opcode, asmop, "16b", VPR128, v16i8, shr_imm8,
2000                          int_aarch64_neon_vsri> {
2001     let Inst{22-19} = 0b0001;
2002   }
2003
2004   def _8H : N2VShiftIns<0b1, u, opcode, asmop, "8h", VPR128, v8i16, shr_imm16,
2005                         int_aarch64_neon_vsri> {
2006     let Inst{22-20} = 0b001;
2007   }
2008
2009   def _4S : N2VShiftIns<0b1, u, opcode, asmop, "4s", VPR128, v4i32, shr_imm32,
2010                         int_aarch64_neon_vsri> {
2011     let Inst{22-21} = 0b01;
2012   }
2013
2014   def _2D : N2VShiftIns<0b1, u, opcode, asmop, "2d", VPR128, v2i64, shr_imm64,
2015                         int_aarch64_neon_vsri> {
2016     let Inst{22} = 0b1;
2017   }
2018 }
2019
2020 // Shift left and insert
2021 defm SLIvvi   : NeonI_N2VShLIns<0b1, 0b01010, "sli">;
2022
2023 // Shift right and insert
2024 defm SRIvvi   : NeonI_N2VShRIns<0b1, 0b01000, "sri">;
2025
2026 class N2VShR_Narrow<bit q, bit u, bits<5> opcode, string asmop, string DestT,
2027                     string SrcT, Operand ImmTy>
2028   : NeonI_2VShiftImm<q, u, opcode,
2029                      (outs VPR64:$Rd), (ins VPR128:$Rn, ImmTy:$Imm),
2030                      asmop # "\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
2031                      [], NoItinerary>;
2032
2033 class N2VShR_Narrow_Hi<bit q, bit u, bits<5> opcode, string asmop, string DestT,
2034                        string SrcT, Operand ImmTy>
2035   : NeonI_2VShiftImm<q, u, opcode, (outs VPR128:$Rd),
2036                      (ins VPR128:$src, VPR128:$Rn, ImmTy:$Imm),
2037                      asmop # "\t$Rd." # DestT # ", $Rn." # SrcT # ", $Imm",
2038                      [], NoItinerary> {
2039   let Constraints = "$src = $Rd";
2040 }
2041
2042 // left long shift by immediate
2043 multiclass NeonI_N2VShR_Narrow<bit u, bits<5> opcode, string asmop> {
2044   def _8B : N2VShR_Narrow<0b0, u, opcode, asmop, "8b", "8h", shr_imm8> {
2045     let Inst{22-19} = 0b0001;
2046   }
2047
2048   def _4H : N2VShR_Narrow<0b0, u, opcode, asmop, "4h", "4s", shr_imm16> {
2049     let Inst{22-20} = 0b001;
2050   }
2051
2052   def _2S : N2VShR_Narrow<0b0, u, opcode, asmop, "2s", "2d", shr_imm32> {
2053     let Inst{22-21} = 0b01;
2054   }
2055
2056   // Shift Narrow High
2057   def _16B : N2VShR_Narrow_Hi<0b1, u, opcode, asmop # "2", "16b", "8h",
2058                               shr_imm8> {
2059     let Inst{22-19} = 0b0001;
2060   }
2061
2062   def _8H : N2VShR_Narrow_Hi<0b1, u, opcode, asmop # "2", "8h", "4s",
2063                              shr_imm16> {
2064     let Inst{22-20} = 0b001;
2065   }
2066
2067   def _4S : N2VShR_Narrow_Hi<0b1, u, opcode, asmop # "2", "4s", "2d",
2068                              shr_imm32> {
2069     let Inst{22-21} = 0b01;
2070   }
2071 }
2072
2073 // Shift right narrow
2074 defm SHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10000, "shrn">;
2075
2076 // Shift right narrow (prefix Q is saturating, prefix R is rounding)
2077 defm QSHRUNvvi :NeonI_N2VShR_Narrow<0b1, 0b10000, "sqshrun">;
2078 defm RSHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10001, "rshrn">;
2079 defm QRSHRUNvvi : NeonI_N2VShR_Narrow<0b1, 0b10001, "sqrshrun">;
2080 defm SQSHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10010, "sqshrn">;
2081 defm UQSHRNvvi : NeonI_N2VShR_Narrow<0b1, 0b10010, "uqshrn">;
2082 defm SQRSHRNvvi : NeonI_N2VShR_Narrow<0b0, 0b10011, "sqrshrn">;
2083 defm UQRSHRNvvi : NeonI_N2VShR_Narrow<0b1, 0b10011, "uqrshrn">;
2084
2085 def Neon_combine_2D : PatFrag<(ops node:$Rm, node:$Rn),
2086                               (v2i64 (concat_vectors (v1i64 node:$Rm),
2087                                                      (v1i64 node:$Rn)))>;
2088 def Neon_combine_8H : PatFrag<(ops node:$Rm, node:$Rn),
2089                               (v8i16 (concat_vectors (v4i16 node:$Rm),
2090                                                      (v4i16 node:$Rn)))>;
2091 def Neon_combine_4S : PatFrag<(ops node:$Rm, node:$Rn),
2092                               (v4i32 (concat_vectors (v2i32 node:$Rm),
2093                                                      (v2i32 node:$Rn)))>;
2094 def Neon_combine_4f : PatFrag<(ops node:$Rm, node:$Rn),
2095                               (v4f32 (concat_vectors (v2f32 node:$Rm),
2096                                                      (v2f32 node:$Rn)))>;
2097 def Neon_combine_2d : PatFrag<(ops node:$Rm, node:$Rn),
2098                               (v2f64 (concat_vectors (v1f64 node:$Rm),
2099                                                      (v1f64 node:$Rn)))>;
2100
2101 def Neon_lshrImm8H : PatFrag<(ops node:$lhs, node:$rhs),
2102                              (v8i16 (srl (v8i16 node:$lhs),
2103                                (v8i16 (Neon_vdup (i32 node:$rhs)))))>;
2104 def Neon_lshrImm4S : PatFrag<(ops node:$lhs, node:$rhs),
2105                              (v4i32 (srl (v4i32 node:$lhs),
2106                                (v4i32 (Neon_vdup (i32 node:$rhs)))))>;
2107 def Neon_lshrImm2D : PatFrag<(ops node:$lhs, node:$rhs),
2108                              (v2i64 (srl (v2i64 node:$lhs),
2109                                (v2i64 (Neon_vdup (i32 node:$rhs)))))>;
2110 def Neon_ashrImm8H : PatFrag<(ops node:$lhs, node:$rhs),
2111                              (v8i16 (sra (v8i16 node:$lhs),
2112                                (v8i16 (Neon_vdup (i32 node:$rhs)))))>;
2113 def Neon_ashrImm4S : PatFrag<(ops node:$lhs, node:$rhs),
2114                              (v4i32 (sra (v4i32 node:$lhs),
2115                                (v4i32 (Neon_vdup (i32 node:$rhs)))))>;
2116 def Neon_ashrImm2D : PatFrag<(ops node:$lhs, node:$rhs),
2117                              (v2i64 (sra (v2i64 node:$lhs),
2118                                (v2i64 (Neon_vdup (i32 node:$rhs)))))>;
2119
2120 // Normal shift right narrow is matched by IR (srl/sra, trunc, concat_vectors)
2121 multiclass Neon_shiftNarrow_patterns<string shr> {
2122   def : Pat<(v8i8 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm8H") VPR128:$Rn,
2123               (i32 shr_imm8:$Imm)))),
2124             (SHRNvvi_8B VPR128:$Rn, imm:$Imm)>;
2125   def : Pat<(v4i16 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm4S") VPR128:$Rn,
2126               (i32 shr_imm16:$Imm)))),
2127             (SHRNvvi_4H VPR128:$Rn, imm:$Imm)>;
2128   def : Pat<(v2i32 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm2D") VPR128:$Rn,
2129               (i32 shr_imm32:$Imm)))),
2130             (SHRNvvi_2S VPR128:$Rn, imm:$Imm)>;
2131
2132   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src), (v1i64 (bitconvert
2133               (v8i8 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm8H")
2134                 VPR128:$Rn, (i32 shr_imm8:$Imm))))))),
2135             (SHRNvvi_16B (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64)),
2136                          VPR128:$Rn, imm:$Imm)>;
2137   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src), (v1i64 (bitconvert
2138               (v4i16 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm4S")
2139                 VPR128:$Rn, (i32 shr_imm16:$Imm))))))),
2140             (SHRNvvi_8H (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2141                         VPR128:$Rn, imm:$Imm)>;
2142   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src), (v1i64 (bitconvert
2143               (v2i32 (trunc (!cast<PatFrag>("Neon_" # shr # "Imm2D")
2144                 VPR128:$Rn, (i32 shr_imm32:$Imm))))))),
2145             (SHRNvvi_4S (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2146                         VPR128:$Rn, imm:$Imm)>;
2147 }
2148
2149 multiclass Neon_shiftNarrow_QR_patterns<SDPatternOperator op, string prefix> {
2150   def : Pat<(v8i8 (op (v8i16 VPR128:$Rn), shr_imm8:$Imm)),
2151             (!cast<Instruction>(prefix # "_8B") VPR128:$Rn, imm:$Imm)>;
2152   def : Pat<(v4i16 (op (v4i32 VPR128:$Rn), shr_imm16:$Imm)),
2153             (!cast<Instruction>(prefix # "_4H") VPR128:$Rn, imm:$Imm)>;
2154   def : Pat<(v2i32 (op (v2i64 VPR128:$Rn), shr_imm32:$Imm)),
2155             (!cast<Instruction>(prefix # "_2S") VPR128:$Rn, imm:$Imm)>;
2156
2157   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2158                 (v1i64 (bitconvert (v8i8
2159                     (op (v8i16 VPR128:$Rn), shr_imm8:$Imm))))),
2160             (!cast<Instruction>(prefix # "_16B")
2161                 (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2162                 VPR128:$Rn, imm:$Imm)>;
2163   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2164                 (v1i64 (bitconvert (v4i16
2165                     (op (v4i32 VPR128:$Rn), shr_imm16:$Imm))))),
2166             (!cast<Instruction>(prefix # "_8H")
2167                 (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2168                 VPR128:$Rn, imm:$Imm)>;
2169   def : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2170                 (v1i64 (bitconvert (v2i32
2171                     (op (v2i64 VPR128:$Rn), shr_imm32:$Imm))))),
2172             (!cast<Instruction>(prefix # "_4S")
2173                   (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2174                   VPR128:$Rn, imm:$Imm)>;
2175 }
2176
2177 defm : Neon_shiftNarrow_patterns<"lshr">;
2178 defm : Neon_shiftNarrow_patterns<"ashr">;
2179
2180 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqshrun, "QSHRUNvvi">;
2181 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vrshrn, "RSHRNvvi">;
2182 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqrshrun, "QRSHRUNvvi">;
2183 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqshrn, "SQSHRNvvi">;
2184 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vuqshrn, "UQSHRNvvi">;
2185 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vsqrshrn, "SQRSHRNvvi">;
2186 defm : Neon_shiftNarrow_QR_patterns<int_aarch64_neon_vuqrshrn, "UQRSHRNvvi">;
2187
2188 // Convert fix-point and float-pointing
2189 class N2VCvt_Fx<bit q, bit u, bits<5> opcode, string asmop, string T,
2190                 RegisterOperand VPRC, ValueType DestTy, ValueType SrcTy,
2191                 Operand ImmTy, SDPatternOperator IntOp>
2192   : NeonI_2VShiftImm<q, u, opcode,
2193                      (outs VPRC:$Rd), (ins VPRC:$Rn, ImmTy:$Imm),
2194                      asmop # "\t$Rd." # T # ", $Rn." # T # ", $Imm",
2195                      [(set (DestTy VPRC:$Rd), (DestTy (IntOp (SrcTy VPRC:$Rn),
2196                        (i32 ImmTy:$Imm))))],
2197                      NoItinerary>;
2198
2199 multiclass NeonI_N2VCvt_Fx2fp<bit u, bits<5> opcode, string asmop,
2200                               SDPatternOperator IntOp> {
2201   def _2S : N2VCvt_Fx<0, u, opcode, asmop, "2s", VPR64, v2f32, v2i32,
2202                       shr_imm32, IntOp> {
2203     let Inst{22-21} = 0b01;
2204   }
2205
2206   def _4S : N2VCvt_Fx<1, u, opcode, asmop, "4s", VPR128, v4f32, v4i32,
2207                       shr_imm32, IntOp> {
2208     let Inst{22-21} = 0b01;
2209   }
2210
2211   def _2D : N2VCvt_Fx<1, u, opcode, asmop, "2d", VPR128, v2f64, v2i64,
2212                       shr_imm64, IntOp> {
2213     let Inst{22} = 0b1;
2214   }
2215 }
2216
2217 multiclass NeonI_N2VCvt_Fp2fx<bit u, bits<5> opcode, string asmop,
2218                               SDPatternOperator IntOp> {
2219   def _2S : N2VCvt_Fx<0, u, opcode, asmop, "2s", VPR64, v2i32, v2f32,
2220                       shr_imm32, IntOp> {
2221     let Inst{22-21} = 0b01;
2222   }
2223
2224   def _4S : N2VCvt_Fx<1, u, opcode, asmop, "4s", VPR128, v4i32, v4f32,
2225                       shr_imm32, IntOp> {
2226     let Inst{22-21} = 0b01;
2227   }
2228
2229   def _2D : N2VCvt_Fx<1, u, opcode, asmop, "2d", VPR128, v2i64, v2f64,
2230                       shr_imm64, IntOp> {
2231     let Inst{22} = 0b1;
2232   }
2233 }
2234
2235 // Convert fixed-point to floating-point
2236 defm VCVTxs2f : NeonI_N2VCvt_Fx2fp<0, 0b11100, "scvtf",
2237                                    int_arm_neon_vcvtfxs2fp>;
2238 defm VCVTxu2f : NeonI_N2VCvt_Fx2fp<1, 0b11100, "ucvtf",
2239                                    int_arm_neon_vcvtfxu2fp>;
2240
2241 // Convert floating-point to fixed-point
2242 defm VCVTf2xs : NeonI_N2VCvt_Fp2fx<0, 0b11111, "fcvtzs",
2243                                    int_arm_neon_vcvtfp2fxs>;
2244 defm VCVTf2xu : NeonI_N2VCvt_Fp2fx<1, 0b11111, "fcvtzu",
2245                                    int_arm_neon_vcvtfp2fxu>;
2246
2247 multiclass Neon_sshll2_0<SDNode ext>
2248 {
2249   def _v8i8  : PatFrag<(ops node:$Rn),
2250                        (v8i16 (ext (v8i8 (Neon_High16B node:$Rn))))>;
2251   def _v4i16 : PatFrag<(ops node:$Rn),
2252                        (v4i32 (ext (v4i16 (Neon_High8H node:$Rn))))>;
2253   def _v2i32 : PatFrag<(ops node:$Rn),
2254                        (v2i64 (ext (v2i32 (Neon_High4S node:$Rn))))>;
2255 }
2256
2257 defm NI_sext_high : Neon_sshll2_0<sext>;
2258 defm NI_zext_high : Neon_sshll2_0<zext>;
2259
2260
2261 //===----------------------------------------------------------------------===//
2262 // Multiclasses for NeonI_Across
2263 //===----------------------------------------------------------------------===//
2264
2265 // Variant 1
2266
2267 multiclass NeonI_2VAcross_1<bit u, bits<5> opcode,
2268                             string asmop, SDPatternOperator opnode>
2269 {
2270     def _1h8b:  NeonI_2VAcross<0b0, u, 0b00, opcode,
2271                 (outs FPR16:$Rd), (ins VPR64:$Rn),
2272                 asmop # "\t$Rd, $Rn.8b",
2273                 [(set (v1i16 FPR16:$Rd),
2274                     (v1i16 (opnode (v8i8 VPR64:$Rn))))],
2275                 NoItinerary>;
2276
2277     def _1h16b: NeonI_2VAcross<0b1, u, 0b00, opcode,
2278                 (outs FPR16:$Rd), (ins VPR128:$Rn),
2279                 asmop # "\t$Rd, $Rn.16b",
2280                 [(set (v1i16 FPR16:$Rd),
2281                     (v1i16 (opnode (v16i8 VPR128:$Rn))))],
2282                 NoItinerary>;
2283
2284     def _1s4h:  NeonI_2VAcross<0b0, u, 0b01, opcode,
2285                 (outs FPR32:$Rd), (ins VPR64:$Rn),
2286                 asmop # "\t$Rd, $Rn.4h",
2287                 [(set (v1i32 FPR32:$Rd),
2288                     (v1i32 (opnode (v4i16 VPR64:$Rn))))],
2289                 NoItinerary>;
2290
2291     def _1s8h:  NeonI_2VAcross<0b1, u, 0b01, opcode,
2292                 (outs FPR32:$Rd), (ins VPR128:$Rn),
2293                 asmop # "\t$Rd, $Rn.8h",
2294                 [(set (v1i32 FPR32:$Rd),
2295                     (v1i32 (opnode (v8i16 VPR128:$Rn))))],
2296                 NoItinerary>;
2297
2298     // _1d2s doesn't exist!
2299
2300     def _1d4s:  NeonI_2VAcross<0b1, u, 0b10, opcode,
2301                 (outs FPR64:$Rd), (ins VPR128:$Rn),
2302                 asmop # "\t$Rd, $Rn.4s",
2303                 [(set (v1i64 FPR64:$Rd),
2304                     (v1i64 (opnode (v4i32 VPR128:$Rn))))],
2305                 NoItinerary>;
2306 }
2307
2308 defm SADDLV : NeonI_2VAcross_1<0b0, 0b00011, "saddlv", int_aarch64_neon_saddlv>;
2309 defm UADDLV : NeonI_2VAcross_1<0b1, 0b00011, "uaddlv", int_aarch64_neon_uaddlv>;
2310
2311 // Variant 2
2312
2313 multiclass NeonI_2VAcross_2<bit u, bits<5> opcode,
2314                             string asmop, SDPatternOperator opnode>
2315 {
2316     def _1b8b:  NeonI_2VAcross<0b0, u, 0b00, opcode,
2317                 (outs FPR8:$Rd), (ins VPR64:$Rn),
2318                 asmop # "\t$Rd, $Rn.8b",
2319                 [(set (v1i8 FPR8:$Rd),
2320                     (v1i8 (opnode (v8i8 VPR64:$Rn))))],
2321                 NoItinerary>;
2322
2323     def _1b16b: NeonI_2VAcross<0b1, u, 0b00, opcode,
2324                 (outs FPR8:$Rd), (ins VPR128:$Rn),
2325                 asmop # "\t$Rd, $Rn.16b",
2326                 [(set (v1i8 FPR8:$Rd),
2327                     (v1i8 (opnode (v16i8 VPR128:$Rn))))],
2328                 NoItinerary>;
2329
2330     def _1h4h:  NeonI_2VAcross<0b0, u, 0b01, opcode,
2331                 (outs FPR16:$Rd), (ins VPR64:$Rn),
2332                 asmop # "\t$Rd, $Rn.4h",
2333                 [(set (v1i16 FPR16:$Rd),
2334                     (v1i16 (opnode (v4i16 VPR64:$Rn))))],
2335                 NoItinerary>;
2336
2337     def _1h8h:  NeonI_2VAcross<0b1, u, 0b01, opcode,
2338                 (outs FPR16:$Rd), (ins VPR128:$Rn),
2339                 asmop # "\t$Rd, $Rn.8h",
2340                 [(set (v1i16 FPR16:$Rd),
2341                     (v1i16 (opnode (v8i16 VPR128:$Rn))))],
2342                 NoItinerary>;
2343
2344     // _1s2s doesn't exist!
2345
2346     def _1s4s:  NeonI_2VAcross<0b1, u, 0b10, opcode,
2347                 (outs FPR32:$Rd), (ins VPR128:$Rn),
2348                 asmop # "\t$Rd, $Rn.4s",
2349                 [(set (v1i32 FPR32:$Rd),
2350                     (v1i32 (opnode (v4i32 VPR128:$Rn))))],
2351                 NoItinerary>;
2352 }
2353
2354 defm SMAXV : NeonI_2VAcross_2<0b0, 0b01010, "smaxv", int_aarch64_neon_smaxv>;
2355 defm UMAXV : NeonI_2VAcross_2<0b1, 0b01010, "umaxv", int_aarch64_neon_umaxv>;
2356
2357 defm SMINV : NeonI_2VAcross_2<0b0, 0b11010, "sminv", int_aarch64_neon_sminv>;
2358 defm UMINV : NeonI_2VAcross_2<0b1, 0b11010, "uminv", int_aarch64_neon_uminv>;
2359
2360 defm ADDV : NeonI_2VAcross_2<0b0, 0b11011, "addv", int_aarch64_neon_vaddv>;
2361
2362 // Variant 3
2363
2364 multiclass NeonI_2VAcross_3<bit u, bits<5> opcode, bits<2> size,
2365                             string asmop, SDPatternOperator opnode> {
2366     def _1s4s:  NeonI_2VAcross<0b1, u, size, opcode,
2367                 (outs FPR32:$Rd), (ins VPR128:$Rn),
2368                 asmop # "\t$Rd, $Rn.4s",
2369                 [(set (v1f32 FPR32:$Rd),
2370                     (v1f32 (opnode (v4f32 VPR128:$Rn))))],
2371                 NoItinerary>;
2372 }
2373
2374 defm FMAXNMV : NeonI_2VAcross_3<0b1, 0b01100, 0b00, "fmaxnmv",
2375                                 int_aarch64_neon_vmaxnmv>;
2376 defm FMINNMV : NeonI_2VAcross_3<0b1, 0b01100, 0b10, "fminnmv",
2377                                 int_aarch64_neon_vminnmv>;
2378
2379 defm FMAXV : NeonI_2VAcross_3<0b1, 0b01111, 0b00, "fmaxv",
2380                               int_aarch64_neon_vmaxv>;
2381 defm FMINV : NeonI_2VAcross_3<0b1, 0b01111, 0b10, "fminv",
2382                               int_aarch64_neon_vminv>;
2383
2384 // The followings are for instruction class (Perm)
2385
2386 class NeonI_Permute<bit q, bits<2> size, bits<3> opcode,
2387                     string asmop, RegisterOperand OpVPR, string OpS,
2388                     SDPatternOperator opnode, ValueType Ty>
2389   : NeonI_Perm<q, size, opcode,
2390                (outs OpVPR:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2391                asmop # "\t$Rd." # OpS # ", $Rn." # OpS # ", $Rm." # OpS,
2392                [(set (Ty OpVPR:$Rd),
2393                   (Ty (opnode (Ty OpVPR:$Rn), (Ty OpVPR:$Rm))))],
2394                NoItinerary>;
2395
2396 multiclass NeonI_Perm_pat<bits<3> opcode, string asmop,
2397                           SDPatternOperator opnode> {
2398   def _8b  : NeonI_Permute<0b0, 0b00, opcode, asmop,
2399                            VPR64, "8b", opnode, v8i8>;
2400   def _16b : NeonI_Permute<0b1, 0b00, opcode, asmop,
2401                            VPR128, "16b",opnode, v16i8>;
2402   def _4h  : NeonI_Permute<0b0, 0b01, opcode, asmop,
2403                            VPR64, "4h", opnode, v4i16>;
2404   def _8h  : NeonI_Permute<0b1, 0b01, opcode, asmop,
2405                            VPR128, "8h", opnode, v8i16>;
2406   def _2s  : NeonI_Permute<0b0, 0b10, opcode, asmop,
2407                            VPR64, "2s", opnode, v2i32>;
2408   def _4s  : NeonI_Permute<0b1, 0b10, opcode, asmop,
2409                            VPR128, "4s", opnode, v4i32>;
2410   def _2d  : NeonI_Permute<0b1, 0b11, opcode, asmop,
2411                            VPR128, "2d", opnode, v2i64>;
2412 }
2413
2414 defm UZP1vvv : NeonI_Perm_pat<0b001, "uzp1", Neon_uzp1>;
2415 defm TRN1vvv : NeonI_Perm_pat<0b010, "trn1", Neon_trn1>;
2416 defm ZIP1vvv : NeonI_Perm_pat<0b011, "zip1", Neon_zip1>;
2417 defm UZP2vvv : NeonI_Perm_pat<0b101, "uzp2", Neon_uzp2>;
2418 defm TRN2vvv : NeonI_Perm_pat<0b110, "trn2", Neon_trn2>;
2419 defm ZIP2vvv : NeonI_Perm_pat<0b111, "zip2", Neon_zip2>;
2420
2421 multiclass NeonI_Perm_float_pat<string INS, SDPatternOperator opnode> {
2422   def : Pat<(v2f32 (opnode (v2f32 VPR64:$Rn), (v2f32 VPR64:$Rm))),
2423             (!cast<Instruction>(INS # "_2s") VPR64:$Rn, VPR64:$Rm)>;
2424
2425   def : Pat<(v4f32 (opnode (v4f32 VPR128:$Rn), (v4f32 VPR128:$Rm))),
2426             (!cast<Instruction>(INS # "_4s") VPR128:$Rn, VPR128:$Rm)>;
2427
2428   def : Pat<(v2f64 (opnode (v2f64 VPR128:$Rn), (v2f64 VPR128:$Rm))),
2429             (!cast<Instruction>(INS # "_2d") VPR128:$Rn, VPR128:$Rm)>;
2430 }
2431
2432 defm : NeonI_Perm_float_pat<"UZP1vvv", Neon_uzp1>;
2433 defm : NeonI_Perm_float_pat<"UZP2vvv", Neon_uzp2>;
2434 defm : NeonI_Perm_float_pat<"ZIP1vvv", Neon_zip1>;
2435 defm : NeonI_Perm_float_pat<"ZIP2vvv", Neon_zip2>;
2436 defm : NeonI_Perm_float_pat<"TRN1vvv", Neon_trn1>;
2437 defm : NeonI_Perm_float_pat<"TRN2vvv", Neon_trn2>;
2438
2439 // The followings are for instruction class (3V Diff)
2440
2441 // normal long/long2 pattern
2442 class NeonI_3VDL<bit q, bit u, bits<2> size, bits<4> opcode,
2443                  string asmop, string ResS, string OpS,
2444                  SDPatternOperator opnode, SDPatternOperator ext,
2445                  RegisterOperand OpVPR,
2446                  ValueType ResTy, ValueType OpTy>
2447   : NeonI_3VDiff<q, u, size, opcode,
2448                  (outs VPR128:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2449                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2450                  [(set (ResTy VPR128:$Rd),
2451                     (ResTy (opnode (ResTy (ext (OpTy OpVPR:$Rn))),
2452                                    (ResTy (ext (OpTy OpVPR:$Rm))))))],
2453                  NoItinerary>;
2454
2455 multiclass NeonI_3VDL_s<bit u, bits<4> opcode,
2456                         string asmop, SDPatternOperator opnode,
2457                         bit Commutable = 0> {
2458   let isCommutable = Commutable in {
2459     def _8h8b : NeonI_3VDL<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2460                            opnode, sext, VPR64, v8i16, v8i8>;
2461     def _4s4h : NeonI_3VDL<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2462                            opnode, sext, VPR64, v4i32, v4i16>;
2463     def _2d2s : NeonI_3VDL<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2464                            opnode, sext, VPR64, v2i64, v2i32>;
2465   }
2466 }
2467
2468 multiclass NeonI_3VDL2_s<bit u, bits<4> opcode, string asmop,
2469                          SDPatternOperator opnode, bit Commutable = 0> {
2470   let isCommutable = Commutable in {
2471     def _8h16b : NeonI_3VDL<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2472                             opnode, NI_sext_high_v8i8, VPR128, v8i16, v16i8>;
2473     def _4s8h  : NeonI_3VDL<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2474                             opnode, NI_sext_high_v4i16, VPR128, v4i32, v8i16>;
2475     def _2d4s  : NeonI_3VDL<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2476                             opnode, NI_sext_high_v2i32, VPR128, v2i64, v4i32>;
2477   }
2478 }
2479
2480 multiclass NeonI_3VDL_u<bit u, bits<4> opcode, string asmop,
2481                         SDPatternOperator opnode, bit Commutable = 0> {
2482   let isCommutable = Commutable in {
2483     def _8h8b : NeonI_3VDL<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2484                            opnode, zext, VPR64, v8i16, v8i8>;
2485     def _4s4h : NeonI_3VDL<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2486                            opnode, zext, VPR64, v4i32, v4i16>;
2487     def _2d2s : NeonI_3VDL<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2488                            opnode, zext, VPR64, v2i64, v2i32>;
2489   }
2490 }
2491
2492 multiclass NeonI_3VDL2_u<bit u, bits<4> opcode, string asmop,
2493                          SDPatternOperator opnode, bit Commutable = 0> {
2494   let isCommutable = Commutable in {
2495     def _8h16b : NeonI_3VDL<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2496                             opnode, NI_zext_high_v8i8, VPR128, v8i16, v16i8>;
2497     def _4s8h : NeonI_3VDL<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2498                            opnode, NI_zext_high_v4i16, VPR128, v4i32, v8i16>;
2499     def _2d4s : NeonI_3VDL<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2500                            opnode, NI_zext_high_v2i32, VPR128, v2i64, v4i32>;
2501   }
2502 }
2503
2504 defm SADDLvvv :  NeonI_3VDL_s<0b0, 0b0000, "saddl", add, 1>;
2505 defm UADDLvvv :  NeonI_3VDL_u<0b1, 0b0000, "uaddl", add, 1>;
2506
2507 defm SADDL2vvv :  NeonI_3VDL2_s<0b0, 0b0000, "saddl2", add, 1>;
2508 defm UADDL2vvv :  NeonI_3VDL2_u<0b1, 0b0000, "uaddl2", add, 1>;
2509
2510 defm SSUBLvvv :  NeonI_3VDL_s<0b0, 0b0010, "ssubl", sub, 0>;
2511 defm USUBLvvv :  NeonI_3VDL_u<0b1, 0b0010, "usubl", sub, 0>;
2512
2513 defm SSUBL2vvv :  NeonI_3VDL2_s<0b0, 0b0010, "ssubl2", sub, 0>;
2514 defm USUBL2vvv :  NeonI_3VDL2_u<0b1, 0b0010, "usubl2", sub, 0>;
2515
2516 // normal wide/wide2 pattern
2517 class NeonI_3VDW<bit q, bit u, bits<2> size, bits<4> opcode,
2518                  string asmop, string ResS, string OpS,
2519                  SDPatternOperator opnode, SDPatternOperator ext,
2520                  RegisterOperand OpVPR,
2521                  ValueType ResTy, ValueType OpTy>
2522   : NeonI_3VDiff<q, u, size, opcode,
2523                  (outs VPR128:$Rd), (ins VPR128:$Rn, OpVPR:$Rm),
2524                  asmop # "\t$Rd." # ResS # ", $Rn." # ResS # ", $Rm." # OpS,
2525                  [(set (ResTy VPR128:$Rd),
2526                     (ResTy (opnode (ResTy VPR128:$Rn),
2527                                    (ResTy (ext (OpTy OpVPR:$Rm))))))],
2528                  NoItinerary>;
2529
2530 multiclass NeonI_3VDW_s<bit u, bits<4> opcode, string asmop,
2531                         SDPatternOperator opnode> {
2532   def _8h8b : NeonI_3VDW<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2533                          opnode, sext, VPR64, v8i16, v8i8>;
2534   def _4s4h : NeonI_3VDW<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2535                          opnode, sext, VPR64, v4i32, v4i16>;
2536   def _2d2s : NeonI_3VDW<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2537                          opnode, sext, VPR64, v2i64, v2i32>;
2538 }
2539
2540 defm SADDWvvv :  NeonI_3VDW_s<0b0, 0b0001, "saddw", add>;
2541 defm SSUBWvvv :  NeonI_3VDW_s<0b0, 0b0011, "ssubw", sub>;
2542
2543 multiclass NeonI_3VDW2_s<bit u, bits<4> opcode, string asmop,
2544                          SDPatternOperator opnode> {
2545   def _8h16b : NeonI_3VDW<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2546                           opnode, NI_sext_high_v8i8, VPR128, v8i16, v16i8>;
2547   def _4s8h  : NeonI_3VDW<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2548                           opnode, NI_sext_high_v4i16, VPR128, v4i32, v8i16>;
2549   def _2d4s  : NeonI_3VDW<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2550                           opnode, NI_sext_high_v2i32, VPR128, v2i64, v4i32>;
2551 }
2552
2553 defm SADDW2vvv :  NeonI_3VDW2_s<0b0, 0b0001, "saddw2", add>;
2554 defm SSUBW2vvv :  NeonI_3VDW2_s<0b0, 0b0011, "ssubw2", sub>;
2555
2556 multiclass NeonI_3VDW_u<bit u, bits<4> opcode, string asmop,
2557                         SDPatternOperator opnode> {
2558   def _8h8b : NeonI_3VDW<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2559                          opnode, zext, VPR64, v8i16, v8i8>;
2560   def _4s4h : NeonI_3VDW<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2561                          opnode, zext, VPR64, v4i32, v4i16>;
2562   def _2d2s : NeonI_3VDW<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2563                          opnode, zext, VPR64, v2i64, v2i32>;
2564 }
2565
2566 defm UADDWvvv :  NeonI_3VDW_u<0b1, 0b0001, "uaddw", add>;
2567 defm USUBWvvv :  NeonI_3VDW_u<0b1, 0b0011, "usubw", sub>;
2568
2569 multiclass NeonI_3VDW2_u<bit u, bits<4> opcode, string asmop,
2570                          SDPatternOperator opnode> {
2571   def _8h16b : NeonI_3VDW<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2572                           opnode, NI_zext_high_v8i8, VPR128, v8i16, v16i8>;
2573   def _4s8h : NeonI_3VDW<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2574                          opnode, NI_zext_high_v4i16, VPR128, v4i32, v8i16>;
2575   def _2d4s : NeonI_3VDW<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2576                          opnode, NI_zext_high_v2i32, VPR128, v2i64, v4i32>;
2577 }
2578
2579 defm UADDW2vvv :  NeonI_3VDW2_u<0b1, 0b0001, "uaddw2", add>;
2580 defm USUBW2vvv :  NeonI_3VDW2_u<0b1, 0b0011, "usubw2", sub>;
2581
2582 // Get the high half part of the vector element.
2583 multiclass NeonI_get_high {
2584   def _8h : PatFrag<(ops node:$Rn),
2585                     (v8i8 (trunc (v8i16 (srl (v8i16 node:$Rn),
2586                                              (v8i16 (Neon_vdup (i32 8)))))))>;
2587   def _4s : PatFrag<(ops node:$Rn),
2588                     (v4i16 (trunc (v4i32 (srl (v4i32 node:$Rn),
2589                                               (v4i32 (Neon_vdup (i32 16)))))))>;
2590   def _2d : PatFrag<(ops node:$Rn),
2591                     (v2i32 (trunc (v2i64 (srl (v2i64 node:$Rn),
2592                                               (v2i64 (Neon_vdup (i32 32)))))))>;
2593 }
2594
2595 defm NI_get_hi : NeonI_get_high;
2596
2597 // pattern for addhn/subhn with 2 operands
2598 class NeonI_3VDN_addhn_2Op<bit q, bit u, bits<2> size, bits<4> opcode,
2599                            string asmop, string ResS, string OpS,
2600                            SDPatternOperator opnode, SDPatternOperator get_hi,
2601                            ValueType ResTy, ValueType OpTy>
2602   : NeonI_3VDiff<q, u, size, opcode,
2603                  (outs VPR64:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
2604                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2605                  [(set (ResTy VPR64:$Rd),
2606                     (ResTy (get_hi
2607                       (OpTy (opnode (OpTy VPR128:$Rn),
2608                                     (OpTy VPR128:$Rm))))))],
2609                  NoItinerary>;
2610
2611 multiclass NeonI_3VDN_addhn_2Op<bit u, bits<4> opcode, string asmop,
2612                                 SDPatternOperator opnode, bit Commutable = 0> {
2613   let isCommutable = Commutable in {
2614     def _8b8h : NeonI_3VDN_addhn_2Op<0b0, u, 0b00, opcode, asmop, "8b", "8h",
2615                                      opnode, NI_get_hi_8h, v8i8, v8i16>;
2616     def _4h4s : NeonI_3VDN_addhn_2Op<0b0, u, 0b01, opcode, asmop, "4h", "4s",
2617                                      opnode, NI_get_hi_4s, v4i16, v4i32>;
2618     def _2s2d : NeonI_3VDN_addhn_2Op<0b0, u, 0b10, opcode, asmop, "2s", "2d",
2619                                      opnode, NI_get_hi_2d, v2i32, v2i64>;
2620   }
2621 }
2622
2623 defm ADDHNvvv  : NeonI_3VDN_addhn_2Op<0b0, 0b0100, "addhn", add, 1>;
2624 defm SUBHNvvv  : NeonI_3VDN_addhn_2Op<0b0, 0b0110, "subhn", sub, 0>;
2625
2626 // pattern for operation with 2 operands
2627 class NeonI_3VD_2Op<bit q, bit u, bits<2> size, bits<4> opcode,
2628                     string asmop, string ResS, string OpS,
2629                     SDPatternOperator opnode,
2630                     RegisterOperand ResVPR, RegisterOperand OpVPR,
2631                     ValueType ResTy, ValueType OpTy>
2632   : NeonI_3VDiff<q, u, size, opcode,
2633                  (outs ResVPR:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2634                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2635                  [(set (ResTy ResVPR:$Rd),
2636                     (ResTy (opnode (OpTy OpVPR:$Rn), (OpTy OpVPR:$Rm))))],
2637                  NoItinerary>;
2638
2639 // normal narrow pattern
2640 multiclass NeonI_3VDN_2Op<bit u, bits<4> opcode, string asmop,
2641                           SDPatternOperator opnode, bit Commutable = 0> {
2642   let isCommutable = Commutable in {
2643     def _8b8h : NeonI_3VD_2Op<0b0, u, 0b00, opcode, asmop, "8b", "8h",
2644                               opnode, VPR64, VPR128, v8i8, v8i16>;
2645     def _4h4s : NeonI_3VD_2Op<0b0, u, 0b01, opcode, asmop, "4h", "4s",
2646                               opnode, VPR64, VPR128, v4i16, v4i32>;
2647     def _2s2d : NeonI_3VD_2Op<0b0, u, 0b10, opcode, asmop, "2s", "2d",
2648                               opnode, VPR64, VPR128, v2i32, v2i64>;
2649   }
2650 }
2651
2652 defm RADDHNvvv : NeonI_3VDN_2Op<0b1, 0b0100, "raddhn", int_arm_neon_vraddhn, 1>;
2653 defm RSUBHNvvv : NeonI_3VDN_2Op<0b1, 0b0110, "rsubhn", int_arm_neon_vrsubhn, 0>;
2654
2655 // pattern for acle intrinsic with 3 operands
2656 class NeonI_3VDN_3Op<bit q, bit u, bits<2> size, bits<4> opcode,
2657                      string asmop, string ResS, string OpS>
2658   : NeonI_3VDiff<q, u, size, opcode,
2659                  (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn, VPR128:$Rm),
2660                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2661                  [], NoItinerary> {
2662   let Constraints = "$src = $Rd";
2663   let neverHasSideEffects = 1;
2664 }
2665
2666 multiclass NeonI_3VDN_3Op_v1<bit u, bits<4> opcode, string asmop> {
2667   def _16b8h : NeonI_3VDN_3Op<0b1, u, 0b00, opcode, asmop, "16b", "8h">;
2668   def _8h4s : NeonI_3VDN_3Op<0b1, u, 0b01, opcode, asmop, "8h", "4s">;
2669   def _4s2d : NeonI_3VDN_3Op<0b1, u, 0b10, opcode, asmop, "4s", "2d">;
2670 }
2671
2672 defm ADDHN2vvv  : NeonI_3VDN_3Op_v1<0b0, 0b0100, "addhn2">;
2673 defm SUBHN2vvv  : NeonI_3VDN_3Op_v1<0b0, 0b0110, "subhn2">;
2674
2675 defm RADDHN2vvv : NeonI_3VDN_3Op_v1<0b1, 0b0100, "raddhn2">;
2676 defm RSUBHN2vvv : NeonI_3VDN_3Op_v1<0b1, 0b0110, "rsubhn2">;
2677
2678 // Patterns have to be separate because there's a SUBREG_TO_REG in the output
2679 // part.
2680 class NarrowHighHalfPat<Instruction INST, ValueType DstTy, ValueType SrcTy,
2681                         SDPatternOperator coreop>
2682   : Pat<(Neon_combine_2D (v1i64 VPR64:$src),
2683                       (v1i64 (bitconvert (DstTy (coreop (SrcTy VPR128:$Rn),
2684                                                         (SrcTy VPR128:$Rm)))))),
2685         (INST (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
2686               VPR128:$Rn, VPR128:$Rm)>;
2687
2688 // addhn2 patterns
2689 def : NarrowHighHalfPat<ADDHN2vvv_16b8h, v8i8,  v8i16,
2690           BinOpFrag<(NI_get_hi_8h (add node:$LHS, node:$RHS))>>;
2691 def : NarrowHighHalfPat<ADDHN2vvv_8h4s,  v4i16, v4i32,
2692           BinOpFrag<(NI_get_hi_4s (add node:$LHS, node:$RHS))>>;
2693 def : NarrowHighHalfPat<ADDHN2vvv_4s2d,  v2i32, v2i64,
2694           BinOpFrag<(NI_get_hi_2d (add node:$LHS, node:$RHS))>>;
2695
2696 // subhn2 patterns
2697 def : NarrowHighHalfPat<SUBHN2vvv_16b8h, v8i8,  v8i16,
2698           BinOpFrag<(NI_get_hi_8h (sub node:$LHS, node:$RHS))>>;
2699 def : NarrowHighHalfPat<SUBHN2vvv_8h4s,  v4i16, v4i32,
2700           BinOpFrag<(NI_get_hi_4s (sub node:$LHS, node:$RHS))>>;
2701 def : NarrowHighHalfPat<SUBHN2vvv_4s2d,  v2i32, v2i64,
2702           BinOpFrag<(NI_get_hi_2d (sub node:$LHS, node:$RHS))>>;
2703
2704 // raddhn2 patterns
2705 def : NarrowHighHalfPat<RADDHN2vvv_16b8h, v8i8,  v8i16, int_arm_neon_vraddhn>;
2706 def : NarrowHighHalfPat<RADDHN2vvv_8h4s,  v4i16, v4i32, int_arm_neon_vraddhn>;
2707 def : NarrowHighHalfPat<RADDHN2vvv_4s2d,  v2i32, v2i64, int_arm_neon_vraddhn>;
2708
2709 // rsubhn2 patterns
2710 def : NarrowHighHalfPat<RSUBHN2vvv_16b8h, v8i8,  v8i16, int_arm_neon_vrsubhn>;
2711 def : NarrowHighHalfPat<RSUBHN2vvv_8h4s,  v4i16, v4i32, int_arm_neon_vrsubhn>;
2712 def : NarrowHighHalfPat<RSUBHN2vvv_4s2d,  v2i32, v2i64, int_arm_neon_vrsubhn>;
2713
2714 // pattern that need to extend result
2715 class NeonI_3VDL_Ext<bit q, bit u, bits<2> size, bits<4> opcode,
2716                      string asmop, string ResS, string OpS,
2717                      SDPatternOperator opnode,
2718                      RegisterOperand OpVPR,
2719                      ValueType ResTy, ValueType OpTy, ValueType OpSTy>
2720   : NeonI_3VDiff<q, u, size, opcode,
2721                  (outs VPR128:$Rd), (ins OpVPR:$Rn, OpVPR:$Rm),
2722                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2723                  [(set (ResTy VPR128:$Rd),
2724                     (ResTy (zext (OpSTy (opnode (OpTy OpVPR:$Rn),
2725                                                 (OpTy OpVPR:$Rm))))))],
2726                  NoItinerary>;
2727
2728 multiclass NeonI_3VDL_zext<bit u, bits<4> opcode, string asmop,
2729                            SDPatternOperator opnode, bit Commutable = 0> {
2730   let isCommutable = Commutable in {
2731     def _8h8b : NeonI_3VDL_Ext<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2732                                opnode, VPR64, v8i16, v8i8, v8i8>;
2733     def _4s4h : NeonI_3VDL_Ext<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2734                                opnode, VPR64, v4i32, v4i16, v4i16>;
2735     def _2d2s : NeonI_3VDL_Ext<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2736                                opnode, VPR64, v2i64, v2i32, v2i32>;
2737   }
2738 }
2739
2740 defm SABDLvvv : NeonI_3VDL_zext<0b0, 0b0111, "sabdl", int_arm_neon_vabds, 1>;
2741 defm UABDLvvv : NeonI_3VDL_zext<0b1, 0b0111, "uabdl", int_arm_neon_vabdu, 1>;
2742
2743 multiclass NeonI_Op_High<SDPatternOperator op> {
2744   def _16B : PatFrag<(ops node:$Rn, node:$Rm),
2745                      (op (v8i8 (Neon_High16B node:$Rn)),
2746                          (v8i8 (Neon_High16B node:$Rm)))>;
2747   def _8H  : PatFrag<(ops node:$Rn, node:$Rm),
2748                      (op (v4i16 (Neon_High8H node:$Rn)),
2749                          (v4i16 (Neon_High8H node:$Rm)))>;
2750   def _4S  : PatFrag<(ops node:$Rn, node:$Rm),
2751                      (op (v2i32 (Neon_High4S node:$Rn)),
2752                          (v2i32 (Neon_High4S node:$Rm)))>;
2753 }
2754
2755 defm NI_sabdl_hi : NeonI_Op_High<int_arm_neon_vabds>;
2756 defm NI_uabdl_hi : NeonI_Op_High<int_arm_neon_vabdu>;
2757 defm NI_smull_hi : NeonI_Op_High<int_arm_neon_vmulls>;
2758 defm NI_umull_hi : NeonI_Op_High<int_arm_neon_vmullu>;
2759 defm NI_qdmull_hi : NeonI_Op_High<int_arm_neon_vqdmull>;
2760 defm NI_pmull_hi : NeonI_Op_High<int_arm_neon_vmullp>;
2761
2762 multiclass NeonI_3VDL_Abd_u<bit u, bits<4> opcode, string asmop, string opnode,
2763                             bit Commutable = 0> {
2764   let isCommutable = Commutable in {
2765     def _8h8b  : NeonI_3VDL_Ext<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2766                                 !cast<PatFrag>(opnode # "_16B"),
2767                                 VPR128, v8i16, v16i8, v8i8>;
2768     def _4s4h  : NeonI_3VDL_Ext<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2769                                 !cast<PatFrag>(opnode # "_8H"),
2770                                 VPR128, v4i32, v8i16, v4i16>;
2771     def _2d2s  : NeonI_3VDL_Ext<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2772                                 !cast<PatFrag>(opnode # "_4S"),
2773                                 VPR128, v2i64, v4i32, v2i32>;
2774   }
2775 }
2776
2777 defm SABDL2vvv : NeonI_3VDL_Abd_u<0b0, 0b0111, "sabdl2", "NI_sabdl_hi", 1>;
2778 defm UABDL2vvv : NeonI_3VDL_Abd_u<0b1, 0b0111, "uabdl2", "NI_uabdl_hi", 1>;
2779
2780 // For pattern that need two operators being chained.
2781 class NeonI_3VDL_Aba<bit q, bit u, bits<2> size, bits<4> opcode,
2782                      string asmop, string ResS, string OpS, 
2783                      SDPatternOperator opnode, SDPatternOperator subop,
2784                      RegisterOperand OpVPR,
2785                      ValueType ResTy, ValueType OpTy, ValueType OpSTy>
2786   : NeonI_3VDiff<q, u, size, opcode,
2787                  (outs VPR128:$Rd), (ins VPR128:$src, OpVPR:$Rn, OpVPR:$Rm),
2788                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS, 
2789                  [(set (ResTy VPR128:$Rd),
2790                     (ResTy (opnode
2791                       (ResTy VPR128:$src), 
2792                       (ResTy (zext (OpSTy (subop (OpTy OpVPR:$Rn),
2793                                                  (OpTy OpVPR:$Rm))))))))],
2794                  NoItinerary> {
2795   let Constraints = "$src = $Rd";
2796 }
2797
2798 multiclass NeonI_3VDL_Aba_v1<bit u, bits<4> opcode, string asmop,
2799                              SDPatternOperator opnode, SDPatternOperator subop>{
2800   def _8h8b : NeonI_3VDL_Aba<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2801                              opnode, subop, VPR64, v8i16, v8i8, v8i8>;
2802   def _4s4h : NeonI_3VDL_Aba<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2803                              opnode, subop, VPR64, v4i32, v4i16, v4i16>;
2804   def _2d2s : NeonI_3VDL_Aba<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2805                              opnode, subop, VPR64, v2i64, v2i32, v2i32>;
2806 }
2807
2808 defm SABALvvv :  NeonI_3VDL_Aba_v1<0b0, 0b0101, "sabal",
2809                                    add, int_arm_neon_vabds>;
2810 defm UABALvvv :  NeonI_3VDL_Aba_v1<0b1, 0b0101, "uabal",
2811                                    add, int_arm_neon_vabdu>;
2812
2813 multiclass NeonI_3VDL2_Aba_v1<bit u, bits<4> opcode, string asmop,
2814                               SDPatternOperator opnode, string subop> {
2815   def _8h8b : NeonI_3VDL_Aba<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2816                              opnode, !cast<PatFrag>(subop # "_16B"), 
2817                              VPR128, v8i16, v16i8, v8i8>;
2818   def _4s4h : NeonI_3VDL_Aba<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2819                              opnode, !cast<PatFrag>(subop # "_8H"), 
2820                              VPR128, v4i32, v8i16, v4i16>;
2821   def _2d2s : NeonI_3VDL_Aba<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2822                              opnode, !cast<PatFrag>(subop # "_4S"), 
2823                              VPR128, v2i64, v4i32, v2i32>;
2824 }
2825
2826 defm SABAL2vvv :  NeonI_3VDL2_Aba_v1<0b0, 0b0101, "sabal2", add,
2827                                      "NI_sabdl_hi">;
2828 defm UABAL2vvv :  NeonI_3VDL2_Aba_v1<0b1, 0b0101, "uabal2", add,
2829                                      "NI_uabdl_hi">;
2830
2831 // Long pattern with 2 operands
2832 multiclass NeonI_3VDL_2Op<bit u, bits<4> opcode, string asmop,
2833                           SDPatternOperator opnode, bit Commutable = 0> {
2834   let isCommutable = Commutable in {
2835     def _8h8b : NeonI_3VD_2Op<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2836                               opnode, VPR128, VPR64, v8i16, v8i8>;
2837     def _4s4h : NeonI_3VD_2Op<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2838                               opnode, VPR128, VPR64, v4i32, v4i16>;
2839     def _2d2s : NeonI_3VD_2Op<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2840                               opnode, VPR128, VPR64, v2i64, v2i32>;
2841   }
2842 }
2843
2844 defm SMULLvvv :  NeonI_3VDL_2Op<0b0, 0b1100, "smull", int_arm_neon_vmulls, 1>;
2845 defm UMULLvvv :  NeonI_3VDL_2Op<0b1, 0b1100, "umull", int_arm_neon_vmullu, 1>;
2846
2847 class NeonI_3VDL2_2Op_mull<bit q, bit u, bits<2> size, bits<4> opcode,
2848                            string asmop, string ResS, string OpS,
2849                            SDPatternOperator opnode,
2850                            ValueType ResTy, ValueType OpTy>
2851   : NeonI_3VDiff<q, u, size, opcode,
2852                  (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
2853                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2854                  [(set (ResTy VPR128:$Rd),
2855                     (ResTy (opnode (OpTy VPR128:$Rn), (OpTy VPR128:$Rm))))],
2856                  NoItinerary>;
2857
2858 multiclass NeonI_3VDL2_2Op_mull_v1<bit u, bits<4> opcode, string asmop,
2859                                    string opnode, bit Commutable = 0> {
2860   let isCommutable = Commutable in {
2861     def _8h16b : NeonI_3VDL2_2Op_mull<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2862                                       !cast<PatFrag>(opnode # "_16B"),
2863                                       v8i16, v16i8>;
2864     def _4s8h : NeonI_3VDL2_2Op_mull<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2865                                      !cast<PatFrag>(opnode # "_8H"),
2866                                      v4i32, v8i16>;
2867     def _2d4s : NeonI_3VDL2_2Op_mull<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2868                                      !cast<PatFrag>(opnode # "_4S"),
2869                                      v2i64, v4i32>;
2870   }
2871 }
2872
2873 defm SMULL2vvv : NeonI_3VDL2_2Op_mull_v1<0b0, 0b1100, "smull2",
2874                                          "NI_smull_hi", 1>;
2875 defm UMULL2vvv : NeonI_3VDL2_2Op_mull_v1<0b1, 0b1100, "umull2",
2876                                          "NI_umull_hi", 1>;
2877
2878 // Long pattern with 3 operands
2879 class NeonI_3VDL_3Op<bit q, bit u, bits<2> size, bits<4> opcode,
2880                      string asmop, string ResS, string OpS,
2881                      SDPatternOperator opnode,
2882                      ValueType ResTy, ValueType OpTy>
2883   : NeonI_3VDiff<q, u, size, opcode,
2884                  (outs VPR128:$Rd), (ins VPR128:$src, VPR64:$Rn, VPR64:$Rm),
2885                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2886                  [(set (ResTy VPR128:$Rd),
2887                     (ResTy (opnode
2888                       (ResTy VPR128:$src),
2889                       (OpTy VPR64:$Rn), (OpTy VPR64:$Rm))))],
2890                NoItinerary> {
2891   let Constraints = "$src = $Rd";
2892 }
2893
2894 multiclass NeonI_3VDL_3Op_v1<bit u, bits<4> opcode, string asmop,
2895                              SDPatternOperator opnode> {
2896   def _8h8b : NeonI_3VDL_3Op<0b0, u, 0b00, opcode, asmop, "8h", "8b",
2897                              opnode, v8i16, v8i8>;
2898   def _4s4h : NeonI_3VDL_3Op<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2899                              opnode, v4i32, v4i16>;
2900   def _2d2s : NeonI_3VDL_3Op<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2901                              opnode, v2i64, v2i32>;
2902 }
2903
2904 def Neon_smlal : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
2905                          (add node:$Rd,
2906                             (int_arm_neon_vmulls node:$Rn, node:$Rm))>;
2907
2908 def Neon_umlal : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
2909                          (add node:$Rd,
2910                             (int_arm_neon_vmullu node:$Rn, node:$Rm))>;
2911
2912 def Neon_smlsl : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
2913                          (sub node:$Rd,
2914                             (int_arm_neon_vmulls node:$Rn, node:$Rm))>;
2915
2916 def Neon_umlsl : PatFrag<(ops node:$Rd, node:$Rn, node:$Rm),
2917                          (sub node:$Rd,
2918                             (int_arm_neon_vmullu node:$Rn, node:$Rm))>;
2919
2920 defm SMLALvvv :  NeonI_3VDL_3Op_v1<0b0, 0b1000, "smlal", Neon_smlal>;
2921 defm UMLALvvv :  NeonI_3VDL_3Op_v1<0b1, 0b1000, "umlal", Neon_umlal>;
2922
2923 defm SMLSLvvv :  NeonI_3VDL_3Op_v1<0b0, 0b1010, "smlsl", Neon_smlsl>;
2924 defm UMLSLvvv :  NeonI_3VDL_3Op_v1<0b1, 0b1010, "umlsl", Neon_umlsl>;
2925
2926 class NeonI_3VDL2_3Op_mlas<bit q, bit u, bits<2> size, bits<4> opcode,
2927                            string asmop, string ResS, string OpS,
2928                            SDPatternOperator subop, SDPatternOperator opnode,
2929                            RegisterOperand OpVPR,
2930                            ValueType ResTy, ValueType OpTy>
2931   : NeonI_3VDiff<q, u, size, opcode,
2932                (outs VPR128:$Rd), (ins VPR128:$src, OpVPR:$Rn, OpVPR:$Rm),
2933                asmop # "\t$Rd." # ResS # ", $Rn." # OpS # ", $Rm." # OpS,
2934                [(set (ResTy VPR128:$Rd),
2935                   (ResTy (subop
2936                     (ResTy VPR128:$src),
2937                     (ResTy (opnode (OpTy OpVPR:$Rn), (OpTy OpVPR:$Rm))))))],
2938                NoItinerary> {
2939   let Constraints = "$src = $Rd";
2940 }
2941
2942 multiclass NeonI_3VDL2_3Op_mlas_v1<bit u, bits<4> opcode, string asmop, 
2943                                    SDPatternOperator subop, string opnode> {
2944   def _8h16b : NeonI_3VDL2_3Op_mlas<0b1, u, 0b00, opcode, asmop, "8h", "16b",
2945                                     subop, !cast<PatFrag>(opnode # "_16B"),
2946                                     VPR128, v8i16, v16i8>;
2947   def _4s8h : NeonI_3VDL2_3Op_mlas<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2948                                    subop, !cast<PatFrag>(opnode # "_8H"), 
2949                                    VPR128, v4i32, v8i16>;
2950   def _2d4s : NeonI_3VDL2_3Op_mlas<0b1, u, 0b10, opcode, asmop, "2d", "4s",
2951                                    subop, !cast<PatFrag>(opnode # "_4S"),
2952                                    VPR128, v2i64, v4i32>;
2953 }
2954
2955 defm SMLAL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b0, 0b1000, "smlal2",
2956                                           add, "NI_smull_hi">;
2957 defm UMLAL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b1, 0b1000, "umlal2",
2958                                           add, "NI_umull_hi">;
2959
2960 defm SMLSL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b0, 0b1010, "smlsl2",
2961                                           sub, "NI_smull_hi">;
2962 defm UMLSL2vvv :  NeonI_3VDL2_3Op_mlas_v1<0b1, 0b1010, "umlsl2",
2963                                           sub, "NI_umull_hi">;
2964
2965 multiclass NeonI_3VDL_qdmlal_3Op_v2<bit u, bits<4> opcode, string asmop,
2966                                     SDPatternOperator opnode> {
2967   def _4s4h : NeonI_3VDL2_3Op_mlas<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2968                                    opnode, int_arm_neon_vqdmull,
2969                                    VPR64, v4i32, v4i16>;
2970   def _2d2s : NeonI_3VDL2_3Op_mlas<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2971                                    opnode, int_arm_neon_vqdmull,
2972                                    VPR64, v2i64, v2i32>;
2973 }
2974
2975 defm SQDMLALvvv : NeonI_3VDL_qdmlal_3Op_v2<0b0, 0b1001, "sqdmlal",
2976                                            int_arm_neon_vqadds>;
2977 defm SQDMLSLvvv : NeonI_3VDL_qdmlal_3Op_v2<0b0, 0b1011, "sqdmlsl",
2978                                            int_arm_neon_vqsubs>;
2979
2980 multiclass NeonI_3VDL_v2<bit u, bits<4> opcode, string asmop,
2981                          SDPatternOperator opnode, bit Commutable = 0> {
2982   let isCommutable = Commutable in {
2983     def _4s4h : NeonI_3VD_2Op<0b0, u, 0b01, opcode, asmop, "4s", "4h",
2984                               opnode, VPR128, VPR64, v4i32, v4i16>;
2985     def _2d2s : NeonI_3VD_2Op<0b0, u, 0b10, opcode, asmop, "2d", "2s",
2986                               opnode, VPR128, VPR64, v2i64, v2i32>;
2987   }
2988 }
2989
2990 defm SQDMULLvvv : NeonI_3VDL_v2<0b0, 0b1101, "sqdmull",
2991                                 int_arm_neon_vqdmull, 1>;
2992
2993 multiclass NeonI_3VDL2_2Op_mull_v2<bit u, bits<4> opcode, string asmop, 
2994                                    string opnode, bit Commutable = 0> {
2995   let isCommutable = Commutable in {
2996     def _4s8h : NeonI_3VDL2_2Op_mull<0b1, u, 0b01, opcode, asmop, "4s", "8h",
2997                                      !cast<PatFrag>(opnode # "_8H"),
2998                                      v4i32, v8i16>;
2999     def _2d4s : NeonI_3VDL2_2Op_mull<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3000                                      !cast<PatFrag>(opnode # "_4S"),
3001                                      v2i64, v4i32>;
3002   }
3003 }
3004
3005 defm SQDMULL2vvv : NeonI_3VDL2_2Op_mull_v2<0b0, 0b1101, "sqdmull2", 
3006                                            "NI_qdmull_hi", 1>;
3007
3008 multiclass NeonI_3VDL2_3Op_qdmlal_v2<bit u, bits<4> opcode, string asmop, 
3009                                      SDPatternOperator opnode> {
3010   def _4s8h : NeonI_3VDL2_3Op_mlas<0b1, u, 0b01, opcode, asmop, "4s", "8h",
3011                                    opnode, NI_qdmull_hi_8H,
3012                                    VPR128, v4i32, v8i16>;
3013   def _2d4s : NeonI_3VDL2_3Op_mlas<0b1, u, 0b10, opcode, asmop, "2d", "4s",
3014                                    opnode, NI_qdmull_hi_4S,
3015                                    VPR128, v2i64, v4i32>;
3016 }
3017
3018 defm SQDMLAL2vvv : NeonI_3VDL2_3Op_qdmlal_v2<0b0, 0b1001, "sqdmlal2",
3019                                              int_arm_neon_vqadds>;
3020 defm SQDMLSL2vvv : NeonI_3VDL2_3Op_qdmlal_v2<0b0, 0b1011, "sqdmlsl2",
3021                                              int_arm_neon_vqsubs>;
3022
3023 multiclass NeonI_3VDL_v3<bit u, bits<4> opcode, string asmop,
3024                          SDPatternOperator opnode, bit Commutable = 0> {
3025   let isCommutable = Commutable in {
3026     def _8h8b : NeonI_3VD_2Op<0b0, u, 0b00, opcode, asmop, "8h", "8b",
3027                               opnode, VPR128, VPR64, v8i16, v8i8>;
3028     
3029     def _1q1d : NeonI_3VDiff<0b0, u, 0b11, opcode,
3030                              (outs VPR128:$Rd), (ins VPR64:$Rn, VPR64:$Rm),
3031                              asmop # "\t$Rd.1q, $Rn.1d, $Rm.1d",
3032                              [], NoItinerary>;
3033   }
3034 }
3035
3036 defm PMULLvvv : NeonI_3VDL_v3<0b0, 0b1110, "pmull", int_arm_neon_vmullp, 1>;
3037
3038 multiclass NeonI_3VDL2_2Op_mull_v3<bit u, bits<4> opcode, string asmop, 
3039                                    string opnode, bit Commutable = 0> {
3040   let isCommutable = Commutable in {
3041     def _8h16b : NeonI_3VDL2_2Op_mull<0b1, u, 0b00, opcode, asmop, "8h", "16b",
3042                                       !cast<PatFrag>(opnode # "_16B"),
3043                                       v8i16, v16i8>;
3044     
3045     def _1q2d : NeonI_3VDiff<0b1, u, 0b11, opcode,
3046                              (outs VPR128:$Rd), (ins VPR128:$Rn, VPR128:$Rm),
3047                              asmop # "\t$Rd.1q, $Rn.2d, $Rm.2d",
3048                              [], NoItinerary>;
3049   }
3050 }
3051
3052 defm PMULL2vvv : NeonI_3VDL2_2Op_mull_v3<0b0, 0b1110, "pmull2", "NI_pmull_hi",
3053                                          1>;
3054
3055 // End of implementation for instruction class (3V Diff)
3056
3057 // The followings are vector load/store multiple N-element structure
3058 // (class SIMD lselem).
3059
3060 // ld1:         load multiple 1-element structure to 1/2/3/4 registers.
3061 // ld2/ld3/ld4: load multiple N-element structure to N registers (N = 2, 3, 4).
3062 //              The structure consists of a sequence of sets of N values.
3063 //              The first element of the structure is placed in the first lane
3064 //              of the first first vector, the second element in the first lane
3065 //              of the second vector, and so on. 
3066 // E.g. LD1_3V_2S will load 32-bit elements {A, B, C, D, E, F} sequentially into
3067 // the three 64-bit vectors list {BA, DC, FE}.
3068 // E.g. LD3_2S will load 32-bit elements {A, B, C, D, E, F} into the three
3069 // 64-bit vectors list {DA, EB, FC}.
3070 // Store instructions store multiple structure to N registers like load.
3071
3072
3073 class NeonI_LDVList<bit q, bits<4> opcode, bits<2> size,
3074                     RegisterOperand VecList, string asmop>
3075   : NeonI_LdStMult<q, 1, opcode, size,
3076                  (outs VecList:$Rt), (ins GPR64xsp:$Rn),
3077                  asmop # "\t$Rt, [$Rn]",
3078                  [],
3079                  NoItinerary> {
3080   let mayLoad = 1;
3081   let neverHasSideEffects = 1;
3082 }
3083
3084 multiclass LDVList_BHSD<bits<4> opcode, string List, string asmop> {
3085   def _8B : NeonI_LDVList<0, opcode, 0b00,
3086                           !cast<RegisterOperand>(List # "8B_operand"), asmop>;
3087
3088   def _4H : NeonI_LDVList<0, opcode, 0b01,
3089                           !cast<RegisterOperand>(List # "4H_operand"), asmop>;
3090
3091   def _2S : NeonI_LDVList<0, opcode, 0b10,
3092                           !cast<RegisterOperand>(List # "2S_operand"), asmop>;
3093
3094   def _16B : NeonI_LDVList<1, opcode, 0b00,
3095                            !cast<RegisterOperand>(List # "16B_operand"), asmop>;
3096
3097   def _8H : NeonI_LDVList<1, opcode, 0b01,
3098                           !cast<RegisterOperand>(List # "8H_operand"), asmop>;
3099
3100   def _4S : NeonI_LDVList<1, opcode, 0b10,
3101                           !cast<RegisterOperand>(List # "4S_operand"), asmop>;
3102
3103   def _2D : NeonI_LDVList<1, opcode, 0b11,
3104                           !cast<RegisterOperand>(List # "2D_operand"), asmop>;
3105 }
3106
3107 // Load multiple N-element structure to N consecutive registers (N = 1,2,3,4)
3108 defm LD1 : LDVList_BHSD<0b0111, "VOne", "ld1">;
3109 def LD1_1D : NeonI_LDVList<0, 0b0111, 0b11, VOne1D_operand, "ld1">;
3110
3111 defm LD2 : LDVList_BHSD<0b1000, "VPair", "ld2">;
3112
3113 defm LD3 : LDVList_BHSD<0b0100, "VTriple", "ld3">;
3114
3115 defm LD4 : LDVList_BHSD<0b0000, "VQuad", "ld4">;
3116
3117 // Load multiple 1-element structure to N consecutive registers (N = 2,3,4)
3118 defm LD1x2 : LDVList_BHSD<0b1010, "VPair", "ld1">;
3119 def LD1x2_1D : NeonI_LDVList<0, 0b1010, 0b11, VPair1D_operand, "ld1">;
3120
3121 defm LD1x3 : LDVList_BHSD<0b0110, "VTriple", "ld1">;
3122 def LD1x3_1D : NeonI_LDVList<0, 0b0110, 0b11, VTriple1D_operand, "ld1">;
3123
3124 defm LD1x4 : LDVList_BHSD<0b0010, "VQuad", "ld1">;
3125 def LD1x4_1D : NeonI_LDVList<0, 0b0010, 0b11, VQuad1D_operand, "ld1">;
3126
3127 class NeonI_STVList<bit q, bits<4> opcode, bits<2> size,
3128                     RegisterOperand VecList, string asmop>
3129   : NeonI_LdStMult<q, 0, opcode, size,
3130                  (outs), (ins GPR64xsp:$Rn, VecList:$Rt), 
3131                  asmop # "\t$Rt, [$Rn]",
3132                  [], 
3133                  NoItinerary> {
3134   let mayStore = 1;
3135   let neverHasSideEffects = 1;
3136 }
3137
3138 multiclass STVList_BHSD<bits<4> opcode, string List, string asmop> {
3139   def _8B : NeonI_STVList<0, opcode, 0b00,
3140                           !cast<RegisterOperand>(List # "8B_operand"), asmop>;
3141
3142   def _4H : NeonI_STVList<0, opcode, 0b01,
3143                           !cast<RegisterOperand>(List # "4H_operand"), asmop>;
3144
3145   def _2S : NeonI_STVList<0, opcode, 0b10,
3146                           !cast<RegisterOperand>(List # "2S_operand"), asmop>;
3147
3148   def _16B : NeonI_STVList<1, opcode, 0b00,
3149                            !cast<RegisterOperand>(List # "16B_operand"), asmop>;
3150
3151   def _8H : NeonI_STVList<1, opcode, 0b01,
3152                           !cast<RegisterOperand>(List # "8H_operand"), asmop>;
3153
3154   def _4S : NeonI_STVList<1, opcode, 0b10,
3155                           !cast<RegisterOperand>(List # "4S_operand"), asmop>;
3156
3157   def _2D : NeonI_STVList<1, opcode, 0b11,
3158                           !cast<RegisterOperand>(List # "2D_operand"), asmop>;
3159 }
3160
3161 // Store multiple N-element structures from N registers (N = 1,2,3,4)
3162 defm ST1 : STVList_BHSD<0b0111, "VOne", "st1">;
3163 def ST1_1D : NeonI_STVList<0, 0b0111, 0b11, VOne1D_operand, "st1">;
3164
3165 defm ST2 : STVList_BHSD<0b1000, "VPair", "st2">;
3166
3167 defm ST3 : STVList_BHSD<0b0100, "VTriple", "st3">;
3168
3169 defm ST4 : STVList_BHSD<0b0000, "VQuad", "st4">;
3170
3171 // Store multiple 1-element structures from N consecutive registers (N = 2,3,4)
3172 defm ST1x2 : STVList_BHSD<0b1010, "VPair", "st1">;
3173 def ST1x2_1D : NeonI_STVList<0, 0b1010, 0b11, VPair1D_operand, "st1">;
3174
3175 defm ST1x3 : STVList_BHSD<0b0110, "VTriple", "st1">;
3176 def ST1x3_1D : NeonI_STVList<0, 0b0110, 0b11, VTriple1D_operand, "st1">;
3177
3178 defm ST1x4 : STVList_BHSD<0b0010, "VQuad", "st1">;
3179 def ST1x4_1D : NeonI_STVList<0, 0b0010, 0b11, VQuad1D_operand, "st1">;
3180
3181 def : Pat<(v2f64 (load GPR64xsp:$addr)), (LD1_2D GPR64xsp:$addr)>;
3182 def : Pat<(v2i64 (load GPR64xsp:$addr)), (LD1_2D GPR64xsp:$addr)>;
3183
3184 def : Pat<(v4f32 (load GPR64xsp:$addr)), (LD1_4S GPR64xsp:$addr)>;
3185 def : Pat<(v4i32 (load GPR64xsp:$addr)), (LD1_4S GPR64xsp:$addr)>;
3186
3187 def : Pat<(v8i16 (load GPR64xsp:$addr)), (LD1_8H GPR64xsp:$addr)>;
3188 def : Pat<(v16i8 (load GPR64xsp:$addr)), (LD1_16B GPR64xsp:$addr)>;
3189
3190 def : Pat<(v1f64 (load GPR64xsp:$addr)), (LD1_1D GPR64xsp:$addr)>;
3191 def : Pat<(v1i64 (load GPR64xsp:$addr)), (LD1_1D GPR64xsp:$addr)>;
3192
3193 def : Pat<(v2f32 (load GPR64xsp:$addr)), (LD1_2S GPR64xsp:$addr)>;
3194 def : Pat<(v2i32 (load GPR64xsp:$addr)), (LD1_2S GPR64xsp:$addr)>;
3195
3196 def : Pat<(v4i16 (load GPR64xsp:$addr)), (LD1_4H GPR64xsp:$addr)>;
3197 def : Pat<(v8i8 (load GPR64xsp:$addr)), (LD1_8B GPR64xsp:$addr)>;
3198
3199 def : Pat<(store (v2i64 VPR128:$value), GPR64xsp:$addr),
3200           (ST1_2D GPR64xsp:$addr, VPR128:$value)>;
3201 def : Pat<(store (v2f64 VPR128:$value), GPR64xsp:$addr),
3202           (ST1_2D GPR64xsp:$addr, VPR128:$value)>;
3203
3204 def : Pat<(store (v4i32 VPR128:$value), GPR64xsp:$addr),
3205           (ST1_4S GPR64xsp:$addr, VPR128:$value)>;
3206 def : Pat<(store (v4f32 VPR128:$value), GPR64xsp:$addr),
3207           (ST1_4S GPR64xsp:$addr, VPR128:$value)>;
3208
3209 def : Pat<(store (v8i16 VPR128:$value), GPR64xsp:$addr),
3210           (ST1_8H GPR64xsp:$addr, VPR128:$value)>;
3211 def : Pat<(store (v16i8 VPR128:$value), GPR64xsp:$addr),
3212           (ST1_16B GPR64xsp:$addr, VPR128:$value)>;
3213
3214 def : Pat<(store (v1i64 VPR64:$value), GPR64xsp:$addr),
3215           (ST1_1D GPR64xsp:$addr, VPR64:$value)>;
3216 def : Pat<(store (v1f64 VPR64:$value), GPR64xsp:$addr),
3217           (ST1_1D GPR64xsp:$addr, VPR64:$value)>;
3218
3219 def : Pat<(store (v2i32 VPR64:$value), GPR64xsp:$addr),
3220           (ST1_2S GPR64xsp:$addr, VPR64:$value)>;
3221 def : Pat<(store (v2f32 VPR64:$value), GPR64xsp:$addr),
3222           (ST1_2S GPR64xsp:$addr, VPR64:$value)>;
3223
3224 def : Pat<(store (v4i16 VPR64:$value), GPR64xsp:$addr),
3225           (ST1_4H GPR64xsp:$addr, VPR64:$value)>;
3226 def : Pat<(store (v8i8 VPR64:$value), GPR64xsp:$addr),
3227           (ST1_8B GPR64xsp:$addr, VPR64:$value)>;
3228
3229 // End of vector load/store multiple N-element structure(class SIMD lselem)
3230
3231 // The followings are post-index vector load/store multiple N-element
3232 // structure(class SIMD lselem-post)
3233 def exact1_asmoperand : AsmOperandClass {
3234   let Name = "Exact1";
3235   let PredicateMethod = "isExactImm<1>";
3236   let RenderMethod = "addImmOperands";
3237 }
3238 def uimm_exact1 : Operand<i32>, ImmLeaf<i32, [{return Imm == 1;}]> {
3239   let ParserMatchClass = exact1_asmoperand;
3240 }
3241
3242 def exact2_asmoperand : AsmOperandClass {
3243   let Name = "Exact2";
3244   let PredicateMethod = "isExactImm<2>";
3245   let RenderMethod = "addImmOperands";
3246 }
3247 def uimm_exact2 : Operand<i32>, ImmLeaf<i32, [{return Imm == 2;}]> {
3248   let ParserMatchClass = exact2_asmoperand;
3249 }
3250
3251 def exact3_asmoperand : AsmOperandClass {
3252   let Name = "Exact3";
3253   let PredicateMethod = "isExactImm<3>";
3254   let RenderMethod = "addImmOperands";
3255 }
3256 def uimm_exact3 : Operand<i32>, ImmLeaf<i32, [{return Imm == 3;}]> {
3257   let ParserMatchClass = exact3_asmoperand;
3258 }
3259
3260 def exact4_asmoperand : AsmOperandClass {
3261   let Name = "Exact4";
3262   let PredicateMethod = "isExactImm<4>";
3263   let RenderMethod = "addImmOperands";
3264 }
3265 def uimm_exact4 : Operand<i32>, ImmLeaf<i32, [{return Imm == 4;}]> {
3266   let ParserMatchClass = exact4_asmoperand;
3267 }
3268
3269 def exact6_asmoperand : AsmOperandClass {
3270   let Name = "Exact6";
3271   let PredicateMethod = "isExactImm<6>";
3272   let RenderMethod = "addImmOperands";
3273 }
3274 def uimm_exact6 : Operand<i32>, ImmLeaf<i32, [{return Imm == 6;}]> {
3275   let ParserMatchClass = exact6_asmoperand;
3276 }
3277
3278 def exact8_asmoperand : AsmOperandClass {
3279   let Name = "Exact8";
3280   let PredicateMethod = "isExactImm<8>";
3281   let RenderMethod = "addImmOperands";
3282 }
3283 def uimm_exact8 : Operand<i32>, ImmLeaf<i32, [{return Imm == 8;}]> {
3284   let ParserMatchClass = exact8_asmoperand;
3285 }
3286
3287 def exact12_asmoperand : AsmOperandClass {
3288   let Name = "Exact12";
3289   let PredicateMethod = "isExactImm<12>";
3290   let RenderMethod = "addImmOperands";
3291 }
3292 def uimm_exact12 : Operand<i32>, ImmLeaf<i32, [{return Imm == 12;}]> {
3293   let ParserMatchClass = exact12_asmoperand;
3294 }
3295
3296 def exact16_asmoperand : AsmOperandClass {
3297   let Name = "Exact16";
3298   let PredicateMethod = "isExactImm<16>";
3299   let RenderMethod = "addImmOperands";
3300 }
3301 def uimm_exact16 : Operand<i32>, ImmLeaf<i32, [{return Imm == 16;}]> {
3302   let ParserMatchClass = exact16_asmoperand;
3303 }
3304
3305 def exact24_asmoperand : AsmOperandClass {
3306   let Name = "Exact24";
3307   let PredicateMethod = "isExactImm<24>";
3308   let RenderMethod = "addImmOperands";
3309 }
3310 def uimm_exact24 : Operand<i32>, ImmLeaf<i32, [{return Imm == 24;}]> {
3311   let ParserMatchClass = exact24_asmoperand;
3312 }
3313
3314 def exact32_asmoperand : AsmOperandClass {
3315   let Name = "Exact32";
3316   let PredicateMethod = "isExactImm<32>";
3317   let RenderMethod = "addImmOperands";
3318 }
3319 def uimm_exact32 : Operand<i32>, ImmLeaf<i32, [{return Imm == 32;}]> {
3320   let ParserMatchClass = exact32_asmoperand;
3321 }
3322
3323 def exact48_asmoperand : AsmOperandClass {
3324   let Name = "Exact48";
3325   let PredicateMethod = "isExactImm<48>";
3326   let RenderMethod = "addImmOperands";
3327 }
3328 def uimm_exact48 : Operand<i32>, ImmLeaf<i32, [{return Imm == 48;}]> {
3329   let ParserMatchClass = exact48_asmoperand;
3330 }
3331
3332 def exact64_asmoperand : AsmOperandClass {
3333   let Name = "Exact64";
3334   let PredicateMethod = "isExactImm<64>";
3335   let RenderMethod = "addImmOperands";
3336 }
3337 def uimm_exact64 : Operand<i32>, ImmLeaf<i32, [{return Imm == 64;}]> {
3338   let ParserMatchClass = exact64_asmoperand;
3339 }
3340
3341 multiclass NeonI_LDWB_VList<bit q, bits<4> opcode, bits<2> size,
3342                            RegisterOperand VecList, Operand ImmTy,
3343                            string asmop> {
3344   let Constraints = "$Rn = $wb", mayLoad = 1, neverHasSideEffects = 1, 
3345       DecoderMethod = "DecodeVLDSTPostInstruction" in {
3346     def _fixed : NeonI_LdStMult_Post<q, 1, opcode, size,
3347                      (outs VecList:$Rt, GPR64xsp:$wb),
3348                      (ins GPR64xsp:$Rn, ImmTy:$amt), 
3349                      asmop # "\t$Rt, [$Rn], $amt",
3350                      [],
3351                      NoItinerary> {
3352       let Rm = 0b11111;
3353     }
3354
3355     def _register : NeonI_LdStMult_Post<q, 1, opcode, size,
3356                         (outs VecList:$Rt, GPR64xsp:$wb),
3357                         (ins GPR64xsp:$Rn, GPR64noxzr:$Rm), 
3358                         asmop # "\t$Rt, [$Rn], $Rm",
3359                         [],
3360                         NoItinerary>;
3361   }
3362 }
3363
3364 multiclass LDWB_VList_BHSD<bits<4> opcode, string List, Operand ImmTy,
3365     Operand ImmTy2, string asmop> {
3366   defm _8B : NeonI_LDWB_VList<0, opcode, 0b00,
3367                               !cast<RegisterOperand>(List # "8B_operand"),
3368                               ImmTy, asmop>;
3369
3370   defm _4H : NeonI_LDWB_VList<0, opcode, 0b01,
3371                               !cast<RegisterOperand>(List # "4H_operand"),
3372                               ImmTy, asmop>;
3373
3374   defm _2S : NeonI_LDWB_VList<0, opcode, 0b10,
3375                               !cast<RegisterOperand>(List # "2S_operand"),
3376                               ImmTy, asmop>;
3377
3378   defm _16B : NeonI_LDWB_VList<1, opcode, 0b00,
3379                                !cast<RegisterOperand>(List # "16B_operand"),
3380                                ImmTy2, asmop>;
3381
3382   defm _8H : NeonI_LDWB_VList<1, opcode, 0b01,
3383                               !cast<RegisterOperand>(List # "8H_operand"),
3384                               ImmTy2, asmop>;
3385
3386   defm _4S : NeonI_LDWB_VList<1, opcode, 0b10,
3387                               !cast<RegisterOperand>(List # "4S_operand"),
3388                               ImmTy2, asmop>;
3389
3390   defm _2D : NeonI_LDWB_VList<1, opcode, 0b11,
3391                               !cast<RegisterOperand>(List # "2D_operand"),
3392                               ImmTy2, asmop>;
3393 }
3394
3395 // Post-index load multiple N-element structures from N registers (N = 1,2,3,4)
3396 defm LD1WB : LDWB_VList_BHSD<0b0111, "VOne", uimm_exact8, uimm_exact16, "ld1">;
3397 defm LD1WB_1D : NeonI_LDWB_VList<0, 0b0111, 0b11, VOne1D_operand, uimm_exact8,
3398                                  "ld1">;
3399
3400 defm LD2WB : LDWB_VList_BHSD<0b1000, "VPair", uimm_exact16, uimm_exact32, "ld2">;
3401
3402 defm LD3WB : LDWB_VList_BHSD<0b0100, "VTriple", uimm_exact24, uimm_exact48,
3403                              "ld3">;
3404
3405 defm LD4WB : LDWB_VList_BHSD<0b0000, "VQuad", uimm_exact32, uimm_exact64, "ld4">;
3406
3407 // Post-index load multiple 1-element structures from N consecutive registers
3408 // (N = 2,3,4)
3409 defm LD1x2WB : LDWB_VList_BHSD<0b1010, "VPair", uimm_exact16, uimm_exact32,
3410                                "ld1">;
3411 defm LD1x2WB_1D : NeonI_LDWB_VList<0, 0b1010, 0b11, VPair1D_operand,
3412                                    uimm_exact16, "ld1">;
3413
3414 defm LD1x3WB : LDWB_VList_BHSD<0b0110, "VTriple", uimm_exact24, uimm_exact48,
3415                                "ld1">;
3416 defm LD1x3WB_1D : NeonI_LDWB_VList<0, 0b0110, 0b11, VTriple1D_operand,
3417                                    uimm_exact24, "ld1">;
3418
3419 defm LD1x4WB : LDWB_VList_BHSD<0b0010, "VQuad", uimm_exact32, uimm_exact64,
3420                                 "ld1">;
3421 defm LD1x4WB_1D : NeonI_LDWB_VList<0, 0b0010, 0b11, VQuad1D_operand,
3422                                    uimm_exact32, "ld1">;
3423
3424 multiclass NeonI_STWB_VList<bit q, bits<4> opcode, bits<2> size,
3425                             RegisterOperand VecList, Operand ImmTy,
3426                             string asmop> {
3427   let Constraints = "$Rn = $wb", mayStore = 1, neverHasSideEffects = 1,
3428       DecoderMethod = "DecodeVLDSTPostInstruction" in {
3429     def _fixed : NeonI_LdStMult_Post<q, 0, opcode, size,
3430                      (outs GPR64xsp:$wb),
3431                      (ins GPR64xsp:$Rn, ImmTy:$amt, VecList:$Rt),
3432                      asmop # "\t$Rt, [$Rn], $amt",
3433                      [],
3434                      NoItinerary> {
3435       let Rm = 0b11111;
3436     }
3437
3438     def _register : NeonI_LdStMult_Post<q, 0, opcode, size,
3439                       (outs GPR64xsp:$wb),
3440                       (ins GPR64xsp:$Rn, GPR64noxzr:$Rm, VecList:$Rt), 
3441                       asmop # "\t$Rt, [$Rn], $Rm",
3442                       [],
3443                       NoItinerary>;
3444   }
3445 }
3446
3447 multiclass STWB_VList_BHSD<bits<4> opcode, string List, Operand ImmTy,
3448                            Operand ImmTy2, string asmop> {
3449   defm _8B : NeonI_STWB_VList<0, opcode, 0b00,
3450                  !cast<RegisterOperand>(List # "8B_operand"), ImmTy, asmop>;
3451
3452   defm _4H : NeonI_STWB_VList<0, opcode, 0b01,
3453                               !cast<RegisterOperand>(List # "4H_operand"),
3454                               ImmTy, asmop>;
3455
3456   defm _2S : NeonI_STWB_VList<0, opcode, 0b10,
3457                               !cast<RegisterOperand>(List # "2S_operand"),
3458                               ImmTy, asmop>;
3459
3460   defm _16B : NeonI_STWB_VList<1, opcode, 0b00,
3461                                !cast<RegisterOperand>(List # "16B_operand"),
3462                                ImmTy2, asmop>;
3463
3464   defm _8H : NeonI_STWB_VList<1, opcode, 0b01,
3465                               !cast<RegisterOperand>(List # "8H_operand"),
3466                               ImmTy2, asmop>;
3467
3468   defm _4S : NeonI_STWB_VList<1, opcode, 0b10,
3469                               !cast<RegisterOperand>(List # "4S_operand"),
3470                               ImmTy2, asmop>;
3471
3472   defm _2D : NeonI_STWB_VList<1, opcode, 0b11,
3473                               !cast<RegisterOperand>(List # "2D_operand"),
3474                               ImmTy2, asmop>;
3475 }
3476
3477 // Post-index load multiple N-element structures from N registers (N = 1,2,3,4)
3478 defm ST1WB : STWB_VList_BHSD<0b0111, "VOne", uimm_exact8, uimm_exact16, "st1">;
3479 defm ST1WB_1D : NeonI_STWB_VList<0, 0b0111, 0b11, VOne1D_operand, uimm_exact8,
3480                                  "st1">;
3481
3482 defm ST2WB : STWB_VList_BHSD<0b1000, "VPair", uimm_exact16, uimm_exact32, "st2">;
3483
3484 defm ST3WB : STWB_VList_BHSD<0b0100, "VTriple", uimm_exact24, uimm_exact48,
3485                              "st3">;
3486
3487 defm ST4WB : STWB_VList_BHSD<0b0000, "VQuad", uimm_exact32, uimm_exact64, "st4">;
3488
3489 // Post-index load multiple 1-element structures from N consecutive registers
3490 // (N = 2,3,4)
3491 defm ST1x2WB : STWB_VList_BHSD<0b1010, "VPair", uimm_exact16, uimm_exact32,
3492                                "st1">;
3493 defm ST1x2WB_1D : NeonI_STWB_VList<0, 0b1010, 0b11, VPair1D_operand,
3494                                    uimm_exact16, "st1">;
3495
3496 defm ST1x3WB : STWB_VList_BHSD<0b0110, "VTriple", uimm_exact24, uimm_exact48,
3497                                "st1">;
3498 defm ST1x3WB_1D : NeonI_STWB_VList<0, 0b0110, 0b11, VTriple1D_operand,
3499                                    uimm_exact24, "st1">;
3500
3501 defm ST1x4WB : STWB_VList_BHSD<0b0010, "VQuad", uimm_exact32, uimm_exact64,
3502                                "st1">;
3503 defm ST1x4WB_1D : NeonI_STWB_VList<0, 0b0010, 0b11, VQuad1D_operand,
3504                                    uimm_exact32, "st1">;
3505
3506 // End of post-index vector load/store multiple N-element structure
3507 // (class SIMD lselem-post)
3508
3509 // The followings are vector load/store single N-element structure
3510 // (class SIMD lsone).
3511 def neon_uimm0_bare : Operand<i64>,
3512                         ImmLeaf<i64, [{return Imm == 0;}]> {
3513   let ParserMatchClass = neon_uimm0_asmoperand;
3514   let PrintMethod = "printUImmBareOperand";
3515 }
3516
3517 def neon_uimm1_bare : Operand<i64>,
3518                         ImmLeaf<i64, [{return Imm < 2;}]> {
3519   let ParserMatchClass = neon_uimm1_asmoperand;
3520   let PrintMethod = "printUImmBareOperand";
3521 }
3522
3523 def neon_uimm2_bare : Operand<i64>,
3524                         ImmLeaf<i64, [{return Imm < 4;}]> {
3525   let ParserMatchClass = neon_uimm2_asmoperand;
3526   let PrintMethod = "printUImmBareOperand";
3527 }
3528
3529 def neon_uimm3_bare : Operand<i64>,
3530                         ImmLeaf<i64, [{return Imm < 8;}]> {
3531   let ParserMatchClass = uimm3_asmoperand;
3532   let PrintMethod = "printUImmBareOperand";
3533 }
3534
3535 def neon_uimm4_bare : Operand<i64>,
3536                         ImmLeaf<i64, [{return Imm < 16;}]> {
3537   let ParserMatchClass = uimm4_asmoperand;
3538   let PrintMethod = "printUImmBareOperand";
3539 }
3540
3541 class NeonI_LDN_Dup<bit q, bit r, bits<3> opcode, bits<2> size,
3542                     RegisterOperand VecList, string asmop>
3543     : NeonI_LdOne_Dup<q, r, opcode, size,
3544                       (outs VecList:$Rt), (ins GPR64xsp:$Rn),
3545                       asmop # "\t$Rt, [$Rn]",
3546                       [],
3547                       NoItinerary> {
3548   let mayLoad = 1;
3549   let neverHasSideEffects = 1;
3550 }
3551
3552 multiclass LDN_Dup_BHSD<bit r, bits<3> opcode, string List, string asmop> {
3553   def _8B : NeonI_LDN_Dup<0, r, opcode, 0b00,
3554                           !cast<RegisterOperand>(List # "8B_operand"), asmop>;
3555
3556   def _4H : NeonI_LDN_Dup<0, r, opcode, 0b01,
3557                           !cast<RegisterOperand>(List # "4H_operand"), asmop>;
3558
3559   def _2S : NeonI_LDN_Dup<0, r, opcode, 0b10,
3560                           !cast<RegisterOperand>(List # "2S_operand"), asmop>;
3561
3562   def _1D : NeonI_LDN_Dup<0, r, opcode, 0b11,
3563                           !cast<RegisterOperand>(List # "1D_operand"), asmop>;
3564
3565   def _16B : NeonI_LDN_Dup<1, r, opcode, 0b00,
3566                            !cast<RegisterOperand>(List # "16B_operand"), asmop>;
3567
3568   def _8H : NeonI_LDN_Dup<1, r, opcode, 0b01,
3569                           !cast<RegisterOperand>(List # "8H_operand"), asmop>;
3570
3571   def _4S : NeonI_LDN_Dup<1, r, opcode, 0b10,
3572                           !cast<RegisterOperand>(List # "4S_operand"), asmop>;
3573
3574   def _2D : NeonI_LDN_Dup<1, r, opcode, 0b11,
3575                           !cast<RegisterOperand>(List # "2D_operand"), asmop>;
3576 }
3577
3578 // Load single 1-element structure to all lanes of 1 register
3579 defm LD1R : LDN_Dup_BHSD<0b0, 0b110, "VOne", "ld1r">;
3580
3581 // Load single N-element structure to all lanes of N consecutive 
3582 // registers (N = 2,3,4)
3583 defm LD2R : LDN_Dup_BHSD<0b1, 0b110, "VPair", "ld2r">;
3584 defm LD3R : LDN_Dup_BHSD<0b0, 0b111, "VTriple", "ld3r">;
3585 defm LD4R : LDN_Dup_BHSD<0b1, 0b111, "VQuad", "ld4r">;
3586
3587
3588 class LD1R_pattern <ValueType VTy, ValueType DTy, PatFrag LoadOp,
3589                     Instruction INST>
3590     : Pat<(VTy (Neon_vdup (DTy (LoadOp GPR64xsp:$Rn)))),
3591           (VTy (INST GPR64xsp:$Rn))>;
3592
3593 // Match all LD1R instructions
3594 def : LD1R_pattern<v8i8, i32, extloadi8, LD1R_8B>;
3595
3596 def : LD1R_pattern<v16i8, i32, extloadi8, LD1R_16B>;
3597
3598 def : LD1R_pattern<v4i16, i32, extloadi16, LD1R_4H>;
3599
3600 def : LD1R_pattern<v8i16, i32, extloadi16, LD1R_8H>;
3601
3602 def : LD1R_pattern<v2i32, i32, load, LD1R_2S>;
3603 def : LD1R_pattern<v2f32, f32, load, LD1R_2S>;
3604
3605 def : LD1R_pattern<v4i32, i32, load, LD1R_4S>;
3606 def : LD1R_pattern<v4f32, f32, load, LD1R_4S>;
3607
3608 def : LD1R_pattern<v1i64, i64, load, LD1R_1D>;
3609 def : LD1R_pattern<v1f64, f64, load, LD1R_1D>;
3610
3611 def : LD1R_pattern<v2i64, i64, load, LD1R_2D>;
3612 def : LD1R_pattern<v2f64, f64, load, LD1R_2D>;
3613
3614
3615 multiclass VectorList_Bare_BHSD<string PREFIX, int Count,
3616                                 RegisterClass RegList> {
3617   defm B : VectorList_operands<PREFIX, "B", Count, RegList>;
3618   defm H : VectorList_operands<PREFIX, "H", Count, RegList>;
3619   defm S : VectorList_operands<PREFIX, "S", Count, RegList>;
3620   defm D : VectorList_operands<PREFIX, "D", Count, RegList>;
3621 }
3622
3623 // Special vector list operand of 128-bit vectors with bare layout.
3624 // i.e. only show ".b", ".h", ".s", ".d"
3625 defm VOne : VectorList_Bare_BHSD<"VOne", 1, FPR128>;
3626 defm VPair : VectorList_Bare_BHSD<"VPair", 2, QPair>;
3627 defm VTriple : VectorList_Bare_BHSD<"VTriple", 3, QTriple>;
3628 defm VQuad : VectorList_Bare_BHSD<"VQuad", 4, QQuad>;
3629
3630 class NeonI_LDN_Lane<bit r, bits<2> op2_1, bit op0, RegisterOperand VList,
3631                      Operand ImmOp, string asmop>
3632     : NeonI_LdStOne_Lane<1, r, op2_1, op0,
3633                          (outs VList:$Rt),
3634                          (ins GPR64xsp:$Rn, VList:$src, ImmOp:$lane),
3635                          asmop # "\t$Rt[$lane], [$Rn]",
3636                          [],
3637                          NoItinerary> {
3638   let mayLoad = 1;
3639   let neverHasSideEffects = 1;
3640   let hasExtraDefRegAllocReq = 1;
3641   let Constraints = "$src = $Rt";
3642 }
3643
3644 multiclass LDN_Lane_BHSD<bit r, bit op0, string List, string asmop> {
3645   def _B : NeonI_LDN_Lane<r, 0b00, op0,
3646                           !cast<RegisterOperand>(List # "B_operand"),
3647                           neon_uimm4_bare, asmop> {
3648     let Inst{12-10} = lane{2-0};
3649     let Inst{30} = lane{3};
3650   }
3651
3652   def _H : NeonI_LDN_Lane<r, 0b01, op0,
3653                           !cast<RegisterOperand>(List # "H_operand"),
3654                           neon_uimm3_bare, asmop> {
3655     let Inst{12-10} = {lane{1}, lane{0}, 0b0};
3656     let Inst{30} = lane{2};
3657   }
3658
3659   def _S : NeonI_LDN_Lane<r, 0b10, op0,
3660                           !cast<RegisterOperand>(List # "S_operand"),
3661                           neon_uimm2_bare, asmop> {
3662     let Inst{12-10} = {lane{0}, 0b0, 0b0};
3663     let Inst{30} = lane{1};
3664   }
3665   
3666   def _D : NeonI_LDN_Lane<r, 0b10, op0,
3667                           !cast<RegisterOperand>(List # "D_operand"),
3668                           neon_uimm1_bare, asmop> {
3669     let Inst{12-10} = 0b001;
3670     let Inst{30} = lane{0};
3671   }
3672 }
3673
3674 // Load single 1-element structure to one lane of 1 register.
3675 defm LD1LN : LDN_Lane_BHSD<0b0, 0b0, "VOne", "ld1">;
3676
3677 // Load single N-element structure to one lane of N consecutive registers
3678 // (N = 2,3,4)
3679 defm LD2LN : LDN_Lane_BHSD<0b1, 0b0, "VPair", "ld2">;
3680 defm LD3LN : LDN_Lane_BHSD<0b0, 0b1, "VTriple", "ld3">;
3681 defm LD4LN : LDN_Lane_BHSD<0b1, 0b1, "VQuad", "ld4">;
3682
3683 multiclass LD1LN_patterns<ValueType VTy, ValueType VTy2, ValueType DTy,
3684                           Operand ImmOp, Operand ImmOp2, PatFrag LoadOp,
3685                           Instruction INST> {
3686   def : Pat<(VTy (vector_insert (VTy VPR64:$src),
3687                      (DTy (LoadOp GPR64xsp:$Rn)), (ImmOp:$lane))),
3688             (VTy (EXTRACT_SUBREG 
3689                      (INST GPR64xsp:$Rn, 
3690                            (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64),
3691                            ImmOp:$lane),
3692                      sub_64))>;
3693
3694   def : Pat<(VTy2 (vector_insert (VTy2 VPR128:$src),
3695                       (DTy (LoadOp GPR64xsp:$Rn)), (ImmOp2:$lane))),
3696             (VTy2 (INST GPR64xsp:$Rn, VPR128:$src, ImmOp2:$lane))>;
3697 }
3698
3699 // Match all LD1LN instructions
3700 defm : LD1LN_patterns<v8i8, v16i8, i32, neon_uimm3_bare, neon_uimm4_bare,
3701                       extloadi8, LD1LN_B>;
3702
3703 defm : LD1LN_patterns<v4i16, v8i16, i32, neon_uimm2_bare, neon_uimm3_bare,
3704                       extloadi16, LD1LN_H>;
3705
3706 defm : LD1LN_patterns<v2i32, v4i32, i32, neon_uimm1_bare, neon_uimm2_bare,
3707                       load, LD1LN_S>;
3708 defm : LD1LN_patterns<v2f32, v4f32, f32, neon_uimm1_bare, neon_uimm2_bare,
3709                       load, LD1LN_S>;
3710
3711 defm : LD1LN_patterns<v1i64, v2i64, i64, neon_uimm0_bare, neon_uimm1_bare,
3712                       load, LD1LN_D>;
3713 defm : LD1LN_patterns<v1f64, v2f64, f64, neon_uimm0_bare, neon_uimm1_bare,
3714                       load, LD1LN_D>;
3715
3716 class NeonI_STN_Lane<bit r, bits<2> op2_1, bit op0, RegisterOperand VList,
3717                      Operand ImmOp, string asmop>
3718     : NeonI_LdStOne_Lane<0, r, op2_1, op0,
3719                          (outs), (ins GPR64xsp:$Rn, VList:$Rt, ImmOp:$lane),
3720                          asmop # "\t$Rt[$lane], [$Rn]",
3721                          [],
3722                          NoItinerary> {
3723   let mayStore = 1;
3724   let neverHasSideEffects = 1;
3725   let hasExtraDefRegAllocReq = 1;
3726 }
3727
3728 multiclass STN_Lane_BHSD<bit r, bit op0, string List, string asmop> {
3729   def _B : NeonI_STN_Lane<r, 0b00, op0,
3730                           !cast<RegisterOperand>(List # "B_operand"),
3731                           neon_uimm4_bare, asmop> {
3732     let Inst{12-10} = lane{2-0};
3733     let Inst{30} = lane{3};
3734   }
3735
3736   def _H : NeonI_STN_Lane<r, 0b01, op0,
3737                           !cast<RegisterOperand>(List # "H_operand"),
3738                           neon_uimm3_bare, asmop> {
3739     let Inst{12-10} = {lane{1}, lane{0}, 0b0};
3740     let Inst{30} = lane{2};
3741   }
3742
3743   def _S : NeonI_STN_Lane<r, 0b10, op0,
3744                           !cast<RegisterOperand>(List # "S_operand"),
3745                            neon_uimm2_bare, asmop> {
3746     let Inst{12-10} = {lane{0}, 0b0, 0b0};
3747     let Inst{30} = lane{1};
3748   }
3749   
3750   def _D : NeonI_STN_Lane<r, 0b10, op0,
3751                           !cast<RegisterOperand>(List # "D_operand"),
3752                           neon_uimm1_bare, asmop>{
3753     let Inst{12-10} = 0b001;
3754     let Inst{30} = lane{0};
3755   }
3756 }
3757
3758 // Store single 1-element structure from one lane of 1 register.
3759 defm ST1LN : STN_Lane_BHSD<0b0, 0b0, "VOne", "st1">;
3760
3761 // Store single N-element structure from one lane of N consecutive registers
3762 // (N = 2,3,4)
3763 defm ST2LN : STN_Lane_BHSD<0b1, 0b0, "VPair", "st2">;
3764 defm ST3LN : STN_Lane_BHSD<0b0, 0b1, "VTriple", "st3">;
3765 defm ST4LN : STN_Lane_BHSD<0b1, 0b1, "VQuad", "st4">;
3766
3767 multiclass ST1LN_patterns<ValueType VTy, ValueType VTy2, ValueType DTy,
3768                           Operand ImmOp, Operand ImmOp2, PatFrag StoreOp,
3769                           Instruction INST> {
3770   def : Pat<(StoreOp (DTy (vector_extract (VTy VPR64:$Rt), ImmOp:$lane)),
3771                      GPR64xsp:$Rn),
3772             (INST GPR64xsp:$Rn,
3773                   (SUBREG_TO_REG (i64 0), VPR64:$Rt, sub_64),
3774                   ImmOp:$lane)>;
3775
3776   def : Pat<(StoreOp (DTy (vector_extract (VTy2 VPR128:$Rt), ImmOp2:$lane)),
3777                      GPR64xsp:$Rn),
3778             (INST GPR64xsp:$Rn, VPR128:$Rt, ImmOp2:$lane)>;
3779 }
3780
3781 // Match all ST1LN instructions
3782 defm : ST1LN_patterns<v8i8, v16i8, i32, neon_uimm3_bare, neon_uimm4_bare,
3783                       truncstorei8, ST1LN_B>;
3784
3785 defm : ST1LN_patterns<v4i16, v8i16, i32, neon_uimm2_bare, neon_uimm3_bare,
3786                       truncstorei16, ST1LN_H>;
3787
3788 defm : ST1LN_patterns<v2i32, v4i32, i32, neon_uimm1_bare, neon_uimm2_bare,
3789                       store, ST1LN_S>;
3790 defm : ST1LN_patterns<v2f32, v4f32, f32, neon_uimm1_bare, neon_uimm2_bare,
3791                       store, ST1LN_S>;
3792
3793 defm : ST1LN_patterns<v1i64, v2i64, i64, neon_uimm0_bare, neon_uimm1_bare,
3794                       store, ST1LN_D>;
3795 defm : ST1LN_patterns<v1f64, v2f64, f64, neon_uimm0_bare, neon_uimm1_bare,
3796                       store, ST1LN_D>;
3797
3798 // End of vector load/store single N-element structure (class SIMD lsone).
3799
3800
3801 // The following are post-index load/store single N-element instructions
3802 // (class SIMD lsone-post)
3803
3804 multiclass NeonI_LDN_WB_Dup<bit q, bit r, bits<3> opcode, bits<2> size,
3805                             RegisterOperand VecList, Operand ImmTy,
3806                             string asmop> {
3807   let mayLoad = 1, neverHasSideEffects = 1, Constraints = "$wb = $Rn",
3808   DecoderMethod = "DecodeVLDSTLanePostInstruction" in {
3809     def _fixed : NeonI_LdOne_Dup_Post<q, r, opcode, size,
3810                       (outs VecList:$Rt, GPR64xsp:$wb),
3811                       (ins GPR64xsp:$Rn, ImmTy:$amt),
3812                       asmop # "\t$Rt, [$Rn], $amt",
3813                       [],
3814                       NoItinerary> {
3815                         let Rm = 0b11111;
3816                       }
3817
3818     def _register : NeonI_LdOne_Dup_Post<q, r, opcode, size,
3819                       (outs VecList:$Rt, GPR64xsp:$wb),
3820                       (ins GPR64xsp:$Rn, GPR64noxzr:$Rm),
3821                       asmop # "\t$Rt, [$Rn], $Rm",
3822                       [],
3823                       NoItinerary>;
3824   }
3825 }
3826
3827 multiclass LDWB_Dup_BHSD<bit r, bits<3> opcode, string List, string asmop,
3828                          Operand uimm_b, Operand uimm_h,
3829                          Operand uimm_s, Operand uimm_d> {
3830   defm _8B : NeonI_LDN_WB_Dup<0, r, opcode, 0b00,
3831                               !cast<RegisterOperand>(List # "8B_operand"),
3832                               uimm_b, asmop>;
3833
3834   defm _4H : NeonI_LDN_WB_Dup<0, r, opcode, 0b01,
3835                               !cast<RegisterOperand>(List # "4H_operand"),
3836                               uimm_h, asmop>;
3837
3838   defm _2S : NeonI_LDN_WB_Dup<0, r, opcode, 0b10,
3839                               !cast<RegisterOperand>(List # "2S_operand"),
3840                               uimm_s, asmop>;
3841
3842   defm _1D : NeonI_LDN_WB_Dup<0, r, opcode, 0b11,
3843                               !cast<RegisterOperand>(List # "1D_operand"),
3844                               uimm_d, asmop>;
3845
3846   defm _16B : NeonI_LDN_WB_Dup<1, r, opcode, 0b00,
3847                                !cast<RegisterOperand>(List # "16B_operand"),
3848                                uimm_b, asmop>;
3849
3850   defm _8H : NeonI_LDN_WB_Dup<1, r, opcode, 0b01,
3851                               !cast<RegisterOperand>(List # "8H_operand"),
3852                               uimm_h, asmop>;
3853
3854   defm _4S : NeonI_LDN_WB_Dup<1, r, opcode, 0b10,
3855                               !cast<RegisterOperand>(List # "4S_operand"),
3856                               uimm_s, asmop>;
3857
3858   defm _2D : NeonI_LDN_WB_Dup<1, r, opcode, 0b11,
3859                               !cast<RegisterOperand>(List # "2D_operand"),
3860                               uimm_d, asmop>;
3861 }
3862
3863 // Post-index load single 1-element structure to all lanes of 1 register
3864 defm LD1R_WB : LDWB_Dup_BHSD<0b0, 0b110, "VOne", "ld1r", uimm_exact1,
3865                              uimm_exact2, uimm_exact4, uimm_exact8>;
3866
3867 // Post-index load single N-element structure to all lanes of N consecutive 
3868 // registers (N = 2,3,4)
3869 defm LD2R_WB : LDWB_Dup_BHSD<0b1, 0b110, "VPair", "ld2r", uimm_exact2,
3870                              uimm_exact4, uimm_exact8, uimm_exact16>;
3871 defm LD3R_WB : LDWB_Dup_BHSD<0b0, 0b111, "VTriple", "ld3r", uimm_exact3,
3872                              uimm_exact6, uimm_exact12, uimm_exact24>;
3873 defm LD4R_WB : LDWB_Dup_BHSD<0b1, 0b111, "VQuad", "ld4r", uimm_exact4,
3874                              uimm_exact8, uimm_exact16, uimm_exact32>;
3875
3876 let mayLoad = 1, neverHasSideEffects = 1, hasExtraDefRegAllocReq = 1, 
3877     Constraints = "$Rn = $wb, $Rt = $src",
3878     DecoderMethod = "DecodeVLDSTLanePostInstruction" in {
3879   class LDN_WBFx_Lane<bit r, bits<2> op2_1, bit op0, RegisterOperand VList,
3880                                 Operand ImmTy, Operand ImmOp, string asmop>
3881       : NeonI_LdStOne_Lane_Post<1, r, op2_1, op0,
3882                                 (outs VList:$Rt, GPR64xsp:$wb),
3883                                 (ins GPR64xsp:$Rn, ImmTy:$amt,
3884                                     VList:$src, ImmOp:$lane),
3885                                 asmop # "\t$Rt[$lane], [$Rn], $amt",
3886                                 [],
3887                                 NoItinerary> {
3888     let Rm = 0b11111;
3889   }
3890
3891   class LDN_WBReg_Lane<bit r, bits<2> op2_1, bit op0, RegisterOperand VList,
3892                                  Operand ImmTy, Operand ImmOp, string asmop>
3893       : NeonI_LdStOne_Lane_Post<1, r, op2_1, op0,
3894                                 (outs VList:$Rt, GPR64xsp:$wb),
3895                                 (ins GPR64xsp:$Rn, GPR64noxzr:$Rm,
3896                                     VList:$src, ImmOp:$lane),
3897                                 asmop # "\t$Rt[$lane], [$Rn], $Rm",
3898                                 [],
3899                                 NoItinerary>;
3900 }
3901
3902 multiclass LD_Lane_WB_BHSD<bit r, bit op0, string List, string asmop,
3903                            Operand uimm_b, Operand uimm_h,
3904                            Operand uimm_s, Operand uimm_d> {
3905   def _B_fixed : LDN_WBFx_Lane<r, 0b00, op0,
3906                                !cast<RegisterOperand>(List # "B_operand"),
3907                                uimm_b, neon_uimm4_bare, asmop> {
3908     let Inst{12-10} = lane{2-0};
3909     let Inst{30} = lane{3};
3910   }
3911
3912   def _B_register : LDN_WBReg_Lane<r, 0b00, op0,
3913                                    !cast<RegisterOperand>(List # "B_operand"),
3914                                    uimm_b, neon_uimm4_bare, asmop> {
3915     let Inst{12-10} = lane{2-0};
3916     let Inst{30} = lane{3};
3917   }
3918   
3919   def _H_fixed : LDN_WBFx_Lane<r, 0b01, op0,
3920                                !cast<RegisterOperand>(List # "H_operand"),
3921                                uimm_h, neon_uimm3_bare, asmop> {
3922     let Inst{12-10} = {lane{1}, lane{0}, 0b0};
3923     let Inst{30} = lane{2};
3924   }
3925   
3926   def _H_register : LDN_WBReg_Lane<r, 0b01, op0,
3927                                    !cast<RegisterOperand>(List # "H_operand"),
3928                                    uimm_h, neon_uimm3_bare, asmop> {
3929     let Inst{12-10} = {lane{1}, lane{0}, 0b0};
3930     let Inst{30} = lane{2};
3931   }
3932
3933   def _S_fixed : LDN_WBFx_Lane<r, 0b10, op0,
3934                                !cast<RegisterOperand>(List # "S_operand"),
3935                                uimm_s, neon_uimm2_bare, asmop> {
3936     let Inst{12-10} = {lane{0}, 0b0, 0b0};
3937     let Inst{30} = lane{1};
3938   }
3939
3940   def _S_register : LDN_WBReg_Lane<r, 0b10, op0,
3941                                    !cast<RegisterOperand>(List # "S_operand"),
3942                                    uimm_s, neon_uimm2_bare, asmop> {
3943     let Inst{12-10} = {lane{0}, 0b0, 0b0};
3944     let Inst{30} = lane{1};
3945   }
3946   
3947   def _D_fixed : LDN_WBFx_Lane<r, 0b10, op0,
3948                                !cast<RegisterOperand>(List # "D_operand"),
3949                                uimm_d, neon_uimm1_bare, asmop> {
3950     let Inst{12-10} = 0b001;
3951     let Inst{30} = lane{0};
3952   }
3953
3954   def _D_register : LDN_WBReg_Lane<r, 0b10, op0,
3955                                    !cast<RegisterOperand>(List # "D_operand"),
3956                                    uimm_d, neon_uimm1_bare, asmop> {
3957     let Inst{12-10} = 0b001;
3958     let Inst{30} = lane{0};
3959   }
3960 }
3961
3962 // Post-index load single 1-element structure to one lane of 1 register.
3963 defm LD1LN_WB : LD_Lane_WB_BHSD<0b0, 0b0, "VOne", "ld1", uimm_exact1,
3964                                 uimm_exact2, uimm_exact4, uimm_exact8>;
3965
3966 // Post-index load single N-element structure to one lane of N consecutive
3967 // registers
3968 // (N = 2,3,4)
3969 defm LD2LN_WB : LD_Lane_WB_BHSD<0b1, 0b0, "VPair", "ld2", uimm_exact2,
3970                                 uimm_exact4, uimm_exact8, uimm_exact16>;
3971 defm LD3LN_WB : LD_Lane_WB_BHSD<0b0, 0b1, "VTriple", "ld3", uimm_exact3,
3972                                 uimm_exact6, uimm_exact12, uimm_exact24>;
3973 defm LD4LN_WB : LD_Lane_WB_BHSD<0b1, 0b1, "VQuad", "ld4", uimm_exact4,
3974                                 uimm_exact8, uimm_exact16, uimm_exact32>;
3975
3976 let mayStore = 1, neverHasSideEffects = 1,
3977     hasExtraDefRegAllocReq = 1, Constraints = "$Rn = $wb",
3978     DecoderMethod = "DecodeVLDSTLanePostInstruction" in {
3979   class STN_WBFx_Lane<bit r, bits<2> op2_1, bit op0, RegisterOperand VList,
3980                       Operand ImmTy, Operand ImmOp, string asmop>
3981       : NeonI_LdStOne_Lane_Post<0, r, op2_1, op0,
3982                                 (outs GPR64xsp:$wb),
3983                                 (ins GPR64xsp:$Rn, ImmTy:$amt,
3984                                     VList:$Rt, ImmOp:$lane),
3985                                 asmop # "\t$Rt[$lane], [$Rn], $amt",
3986                                 [],
3987                                 NoItinerary> {
3988     let Rm = 0b11111;
3989   }
3990
3991   class STN_WBReg_Lane<bit r, bits<2> op2_1, bit op0, RegisterOperand VList,
3992                        Operand ImmTy, Operand ImmOp, string asmop>
3993       : NeonI_LdStOne_Lane_Post<0, r, op2_1, op0,
3994                                 (outs GPR64xsp:$wb),
3995                                 (ins GPR64xsp:$Rn, GPR64noxzr:$Rm, VList:$Rt,
3996                                     ImmOp:$lane),
3997                                 asmop # "\t$Rt[$lane], [$Rn], $Rm",
3998                                 [],
3999                                 NoItinerary>;
4000 }
4001
4002 multiclass ST_Lane_WB_BHSD<bit r, bit op0, string List, string asmop,
4003                            Operand uimm_b, Operand uimm_h,
4004                            Operand uimm_s, Operand uimm_d> {
4005   def _B_fixed : STN_WBFx_Lane<r, 0b00, op0,
4006                                !cast<RegisterOperand>(List # "B_operand"),
4007                                uimm_b, neon_uimm4_bare, asmop> {
4008     let Inst{12-10} = lane{2-0};
4009     let Inst{30} = lane{3};
4010   }
4011
4012   def _B_register : STN_WBReg_Lane<r, 0b00, op0,
4013                                    !cast<RegisterOperand>(List # "B_operand"),
4014                                    uimm_b, neon_uimm4_bare, asmop> {
4015     let Inst{12-10} = lane{2-0};
4016     let Inst{30} = lane{3};
4017   }
4018   
4019   def _H_fixed : STN_WBFx_Lane<r, 0b01, op0,
4020                                !cast<RegisterOperand>(List # "H_operand"),
4021                                uimm_h, neon_uimm3_bare, asmop> {
4022     let Inst{12-10} = {lane{1}, lane{0}, 0b0};
4023     let Inst{30} = lane{2};
4024   }
4025   
4026   def _H_register : STN_WBReg_Lane<r, 0b01, op0,
4027                                    !cast<RegisterOperand>(List # "H_operand"),
4028                                    uimm_h, neon_uimm3_bare, asmop> {
4029     let Inst{12-10} = {lane{1}, lane{0}, 0b0};
4030     let Inst{30} = lane{2};
4031   }
4032
4033   def _S_fixed : STN_WBFx_Lane<r, 0b10, op0,
4034                                !cast<RegisterOperand>(List # "S_operand"),
4035                                uimm_s, neon_uimm2_bare, asmop> {
4036     let Inst{12-10} = {lane{0}, 0b0, 0b0};
4037     let Inst{30} = lane{1};
4038   }
4039
4040   def _S_register : STN_WBReg_Lane<r, 0b10, op0,
4041                                    !cast<RegisterOperand>(List # "S_operand"),
4042                                    uimm_s, neon_uimm2_bare, asmop> {
4043     let Inst{12-10} = {lane{0}, 0b0, 0b0};
4044     let Inst{30} = lane{1};
4045   }
4046   
4047   def _D_fixed : STN_WBFx_Lane<r, 0b10, op0,
4048                                !cast<RegisterOperand>(List # "D_operand"),
4049                                uimm_d, neon_uimm1_bare, asmop> {
4050     let Inst{12-10} = 0b001;
4051     let Inst{30} = lane{0};
4052   }
4053
4054   def _D_register : STN_WBReg_Lane<r, 0b10, op0,
4055                                    !cast<RegisterOperand>(List # "D_operand"),
4056                                    uimm_d, neon_uimm1_bare, asmop> {
4057     let Inst{12-10} = 0b001;
4058     let Inst{30} = lane{0};
4059   }
4060 }
4061
4062 // Post-index store single 1-element structure from one lane of 1 register.
4063 defm ST1LN_WB : ST_Lane_WB_BHSD<0b0, 0b0, "VOne", "st1", uimm_exact1,
4064                                 uimm_exact2, uimm_exact4, uimm_exact8>;
4065
4066 // Post-index store single N-element structure from one lane of N consecutive
4067 // registers (N = 2,3,4)
4068 defm ST2LN_WB : ST_Lane_WB_BHSD<0b1, 0b0, "VPair", "st2", uimm_exact2,
4069                                 uimm_exact4, uimm_exact8, uimm_exact16>;
4070 defm ST3LN_WB : ST_Lane_WB_BHSD<0b0, 0b1, "VTriple", "st3", uimm_exact3,
4071                                 uimm_exact6, uimm_exact12, uimm_exact24>;
4072 defm ST4LN_WB : ST_Lane_WB_BHSD<0b1, 0b1, "VQuad", "st4", uimm_exact4,
4073                                 uimm_exact8, uimm_exact16, uimm_exact32>;
4074
4075 // End of post-index load/store single N-element instructions
4076 // (class SIMD lsone-post)
4077
4078 // Neon Scalar instructions implementation
4079 // Scalar Three Same
4080
4081 class NeonI_Scalar3Same_size<bit u, bits<2> size, bits<5> opcode, string asmop,
4082                              RegisterClass FPRC>
4083   : NeonI_Scalar3Same<u, size, opcode,
4084                       (outs FPRC:$Rd), (ins FPRC:$Rn, FPRC:$Rm),
4085                       !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
4086                       [],
4087                       NoItinerary>;
4088
4089 class NeonI_Scalar3Same_D_size<bit u, bits<5> opcode, string asmop>
4090   : NeonI_Scalar3Same_size<u, 0b11, opcode, asmop, FPR64>;
4091
4092 multiclass NeonI_Scalar3Same_HS_sizes<bit u, bits<5> opcode, string asmop,
4093                                       bit Commutable = 0> {
4094   let isCommutable = Commutable in {
4095     def hhh : NeonI_Scalar3Same_size<u, 0b01, opcode, asmop, FPR16>;
4096     def sss : NeonI_Scalar3Same_size<u, 0b10, opcode, asmop, FPR32>;
4097   }
4098 }
4099
4100 multiclass NeonI_Scalar3Same_SD_sizes<bit u, bit size_high, bits<5> opcode,
4101                                       string asmop, bit Commutable = 0> {
4102   let isCommutable = Commutable in {
4103     def sss : NeonI_Scalar3Same_size<u, {size_high, 0b0}, opcode, asmop, FPR32>;
4104     def ddd : NeonI_Scalar3Same_size<u, {size_high, 0b1}, opcode, asmop, FPR64>;
4105   }
4106 }
4107
4108 multiclass NeonI_Scalar3Same_BHSD_sizes<bit u, bits<5> opcode,
4109                                         string asmop, bit Commutable = 0> {
4110   let isCommutable = Commutable in {
4111     def bbb : NeonI_Scalar3Same_size<u, 0b00, opcode, asmop, FPR8>;
4112     def hhh : NeonI_Scalar3Same_size<u, 0b01, opcode, asmop, FPR16>;
4113     def sss : NeonI_Scalar3Same_size<u, 0b10, opcode, asmop, FPR32>;
4114     def ddd : NeonI_Scalar3Same_size<u, 0b11, opcode, asmop, FPR64>;
4115   }
4116 }
4117
4118 multiclass Neon_Scalar3Same_D_size_patterns<SDPatternOperator opnode,
4119                                             Instruction INSTD> {
4120   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (v1i64 FPR64:$Rm))),
4121             (INSTD FPR64:$Rn, FPR64:$Rm)>;        
4122 }
4123
4124 multiclass Neon_Scalar3Same_BHSD_size_patterns<SDPatternOperator opnode,
4125                                                Instruction INSTB,
4126                                                Instruction INSTH,
4127                                                Instruction INSTS,
4128                                                Instruction INSTD>
4129   : Neon_Scalar3Same_D_size_patterns<opnode, INSTD> {
4130   def: Pat<(v1i8 (opnode (v1i8 FPR8:$Rn), (v1i8 FPR8:$Rm))),
4131            (INSTB FPR8:$Rn, FPR8:$Rm)>;
4132
4133   def: Pat<(v1i16 (opnode (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
4134            (INSTH FPR16:$Rn, FPR16:$Rm)>;
4135
4136   def: Pat<(v1i32 (opnode (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
4137            (INSTS FPR32:$Rn, FPR32:$Rm)>;
4138 }
4139
4140 class Neon_Scalar3Same_cmp_D_size_patterns<SDPatternOperator opnode,
4141                                            Instruction INSTD>
4142   : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (v1i64 FPR64:$Rm))),
4143         (INSTD FPR64:$Rn, FPR64:$Rm)>;
4144
4145 multiclass Neon_Scalar3Same_HS_size_patterns<SDPatternOperator opnode,
4146                                              Instruction INSTH,
4147                                              Instruction INSTS> {
4148   def : Pat<(v1i16 (opnode (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
4149             (INSTH FPR16:$Rn, FPR16:$Rm)>;
4150   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
4151             (INSTS FPR32:$Rn, FPR32:$Rm)>;
4152 }
4153
4154 multiclass Neon_Scalar3Same_SD_size_patterns<SDPatternOperator opnode,
4155                                              Instruction INSTS,
4156                                              Instruction INSTD> {
4157   def : Pat<(v1f32 (opnode (v1f32 FPR32:$Rn), (v1f32 FPR32:$Rm))),
4158             (INSTS FPR32:$Rn, FPR32:$Rm)>;
4159   def : Pat<(v1f64 (opnode (v1f64 FPR64:$Rn), (v1f64 FPR64:$Rm))),
4160             (INSTD FPR64:$Rn, FPR64:$Rm)>;
4161 }
4162
4163 multiclass Neon_Scalar3Same_cmp_SD_size_patterns<SDPatternOperator opnode,
4164                                                  Instruction INSTS,
4165                                                  Instruction INSTD> {
4166   def : Pat<(v1i32 (opnode (v1f32 FPR32:$Rn), (v1f32 FPR32:$Rm))),
4167             (INSTS FPR32:$Rn, FPR32:$Rm)>;
4168   def : Pat<(v1i64 (opnode (v1f64 FPR64:$Rn), (v1f64 FPR64:$Rm))),
4169             (INSTD FPR64:$Rn, FPR64:$Rm)>;
4170 }
4171
4172 // Scalar Three Different
4173
4174 class NeonI_Scalar3Diff_size<bit u, bits<2> size, bits<4> opcode, string asmop,
4175                              RegisterClass FPRCD, RegisterClass FPRCS>
4176   : NeonI_Scalar3Diff<u, size, opcode,
4177                       (outs FPRCD:$Rd), (ins FPRCS:$Rn, FPRCS:$Rm),
4178                       !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
4179                       [],
4180                       NoItinerary>;
4181
4182 multiclass NeonI_Scalar3Diff_HS_size<bit u, bits<4> opcode, string asmop> {
4183   def shh : NeonI_Scalar3Diff_size<u, 0b01, opcode, asmop, FPR32, FPR16>;
4184   def dss : NeonI_Scalar3Diff_size<u, 0b10, opcode, asmop, FPR64, FPR32>;
4185 }
4186
4187 multiclass NeonI_Scalar3Diff_ml_HS_size<bit u, bits<4> opcode, string asmop> {
4188   let Constraints = "$Src = $Rd" in {
4189     def shh : NeonI_Scalar3Diff<u, 0b01, opcode,
4190                        (outs FPR32:$Rd), (ins FPR32:$Src, FPR16:$Rn, FPR16:$Rm),
4191                        !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
4192                        [],
4193                        NoItinerary>;
4194     def dss : NeonI_Scalar3Diff<u, 0b10, opcode,
4195                        (outs FPR64:$Rd), (ins FPR64:$Src, FPR32:$Rn, FPR32:$Rm),
4196                        !strconcat(asmop, "\t$Rd, $Rn, $Rm"),
4197                        [],
4198                        NoItinerary>;
4199   }
4200 }
4201
4202 multiclass Neon_Scalar3Diff_HS_size_patterns<SDPatternOperator opnode,
4203                                              Instruction INSTH,
4204                                              Instruction INSTS> {
4205   def : Pat<(v1i32 (opnode (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
4206             (INSTH FPR16:$Rn, FPR16:$Rm)>;
4207   def : Pat<(v1i64 (opnode (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
4208             (INSTS FPR32:$Rn, FPR32:$Rm)>;
4209 }
4210
4211 multiclass Neon_Scalar3Diff_ml_HS_size_patterns<SDPatternOperator opnode,
4212                                              Instruction INSTH,
4213                                              Instruction INSTS> {
4214   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Src), (v1i16 FPR16:$Rn), (v1i16 FPR16:$Rm))),
4215             (INSTH FPR32:$Src, FPR16:$Rn, FPR16:$Rm)>;
4216   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Src), (v1i32 FPR32:$Rn), (v1i32 FPR32:$Rm))),
4217             (INSTS FPR64:$Src, FPR32:$Rn, FPR32:$Rm)>;
4218 }
4219
4220 // Scalar Two Registers Miscellaneous
4221
4222 class NeonI_Scalar2SameMisc_size<bit u, bits<2> size, bits<5> opcode, string asmop,
4223                              RegisterClass FPRCD, RegisterClass FPRCS>
4224   : NeonI_Scalar2SameMisc<u, size, opcode,
4225                           (outs FPRCD:$Rd), (ins FPRCS:$Rn),
4226                           !strconcat(asmop, "\t$Rd, $Rn"),
4227                           [],
4228                           NoItinerary>;
4229
4230 multiclass NeonI_Scalar2SameMisc_SD_size<bit u, bit size_high, bits<5> opcode,
4231                                          string asmop> {
4232   def ss : NeonI_Scalar2SameMisc_size<u, {size_high, 0b0}, opcode, asmop, FPR32,
4233                                       FPR32>;
4234   def dd : NeonI_Scalar2SameMisc_size<u, {size_high, 0b1}, opcode, asmop, FPR64,
4235                                       FPR64>;
4236 }
4237
4238 multiclass NeonI_Scalar2SameMisc_D_size<bit u, bits<5> opcode, string asmop> {
4239   def dd : NeonI_Scalar2SameMisc_size<u, 0b11, opcode, asmop, FPR64, FPR64>;
4240 }
4241
4242 multiclass NeonI_Scalar2SameMisc_BHSD_size<bit u, bits<5> opcode, string asmop>
4243   : NeonI_Scalar2SameMisc_D_size<u, opcode, asmop> {
4244   def bb : NeonI_Scalar2SameMisc_size<u, 0b00, opcode, asmop, FPR8, FPR8>;
4245   def hh : NeonI_Scalar2SameMisc_size<u, 0b01, opcode, asmop, FPR16, FPR16>;
4246   def ss : NeonI_Scalar2SameMisc_size<u, 0b10, opcode, asmop, FPR32, FPR32>;
4247 }
4248
4249 class NeonI_Scalar2SameMisc_fcvtxn_D_size<bit u, bits<5> opcode, string asmop>
4250   : NeonI_Scalar2SameMisc_size<u, 0b01, opcode, asmop, FPR32, FPR64>;
4251
4252 multiclass NeonI_Scalar2SameMisc_narrow_HSD_size<bit u, bits<5> opcode,
4253                                                  string asmop> {
4254   def bh : NeonI_Scalar2SameMisc_size<u, 0b00, opcode, asmop, FPR8, FPR16>;
4255   def hs : NeonI_Scalar2SameMisc_size<u, 0b01, opcode, asmop, FPR16, FPR32>;
4256   def sd : NeonI_Scalar2SameMisc_size<u, 0b10, opcode, asmop, FPR32, FPR64>;
4257 }
4258
4259 class NeonI_Scalar2SameMisc_accum_size<bit u, bits<2> size, bits<5> opcode,
4260                                        string asmop, RegisterClass FPRC>
4261   : NeonI_Scalar2SameMisc<u, size, opcode,
4262                           (outs FPRC:$Rd), (ins FPRC:$Src, FPRC:$Rn),
4263                           !strconcat(asmop, "\t$Rd, $Rn"),
4264                           [],
4265                           NoItinerary>;
4266
4267 multiclass NeonI_Scalar2SameMisc_accum_BHSD_size<bit u, bits<5> opcode,
4268                                                  string asmop> {
4269
4270   let Constraints = "$Src = $Rd" in {
4271     def bb : NeonI_Scalar2SameMisc_accum_size<u, 0b00, opcode, asmop, FPR8>;
4272     def hh : NeonI_Scalar2SameMisc_accum_size<u, 0b01, opcode, asmop, FPR16>;
4273     def ss : NeonI_Scalar2SameMisc_accum_size<u, 0b10, opcode, asmop, FPR32>;
4274     def dd : NeonI_Scalar2SameMisc_accum_size<u, 0b11, opcode, asmop, FPR64>;
4275   }
4276 }
4277
4278 class Neon_Scalar2SameMisc_fcvtxn_D_size_patterns<SDPatternOperator opnode,
4279                                                   Instruction INSTD>
4280   : Pat<(v1f32 (opnode (v1f64 FPR64:$Rn))),
4281         (INSTD FPR64:$Rn)>;
4282
4283 multiclass Neon_Scalar2SameMisc_fcvt_SD_size_patterns<SDPatternOperator opnode,
4284                                                       Instruction INSTS,
4285                                                       Instruction INSTD> {
4286   def : Pat<(v1i32 (opnode (v1f32 FPR32:$Rn))),
4287             (INSTS FPR32:$Rn)>;
4288   def : Pat<(v1i64 (opnode (v1f64 FPR64:$Rn))),
4289             (INSTD FPR64:$Rn)>;
4290 }
4291
4292 multiclass Neon_Scalar2SameMisc_cvt_SD_size_patterns<SDPatternOperator Sopnode,
4293                                                      SDPatternOperator Dopnode,
4294                                                      Instruction INSTS,
4295                                                      Instruction INSTD> {
4296   def : Pat<(f32 (Sopnode (v1i32 FPR32:$Rn))),
4297             (INSTS FPR32:$Rn)>;
4298   def : Pat<(f64 (Dopnode (v1i64 FPR64:$Rn))),
4299             (INSTD FPR64:$Rn)>;
4300 }
4301
4302 multiclass Neon_Scalar2SameMisc_SD_size_patterns<SDPatternOperator opnode,
4303                                                  Instruction INSTS,
4304                                                  Instruction INSTD> {
4305   def : Pat<(v1f32 (opnode (v1f32 FPR32:$Rn))),
4306             (INSTS FPR32:$Rn)>;
4307   def : Pat<(v1f64 (opnode (v1f64 FPR64:$Rn))),
4308             (INSTD FPR64:$Rn)>;
4309 }
4310
4311 class NeonI_Scalar2SameMisc_cmpz_D_size<bit u, bits<5> opcode, string asmop>
4312   : NeonI_Scalar2SameMisc<u, 0b11, opcode,
4313                           (outs FPR64:$Rd), (ins FPR64:$Rn, neon_uimm0:$Imm),
4314                           !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4315                           [],
4316                           NoItinerary>;
4317
4318 multiclass NeonI_Scalar2SameMisc_cmpz_SD_size<bit u, bits<5> opcode,
4319                                               string asmop> {
4320   def ssi : NeonI_Scalar2SameMisc<u, 0b10, opcode,
4321                            (outs FPR32:$Rd), (ins FPR32:$Rn, fpz32:$FPImm),
4322                            !strconcat(asmop, "\t$Rd, $Rn, $FPImm"),
4323                            [],
4324                            NoItinerary>;
4325   def ddi : NeonI_Scalar2SameMisc<u, 0b11, opcode,
4326                            (outs FPR64:$Rd), (ins FPR64:$Rn, fpz64movi:$FPImm),
4327                            !strconcat(asmop, "\t$Rd, $Rn, $FPImm"),
4328                            [],
4329                            NoItinerary>;
4330 }
4331
4332 class Neon_Scalar2SameMisc_cmpz_D_size_patterns<SDPatternOperator opnode,
4333                                                 Instruction INSTD>
4334   : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn),
4335                        (v1i64 (bitconvert (v8i8 Neon_AllZero))))),
4336         (INSTD FPR64:$Rn, 0)>;
4337
4338 multiclass Neon_Scalar2SameMisc_cmpz_SD_size_patterns<SDPatternOperator opnode,
4339                                                       Instruction INSTS,
4340                                                       Instruction INSTD> {
4341   def : Pat<(v1i32 (opnode (v1f32 FPR32:$Rn),
4342                            (v1f32 (scalar_to_vector (f32 fpimm:$FPImm))))),
4343             (INSTS FPR32:$Rn, fpimm:$FPImm)>;
4344   def : Pat<(v1i64 (opnode (v1f64 FPR64:$Rn),
4345                            (v1f64 (bitconvert (v8i8 Neon_AllZero))))),
4346             (INSTD FPR64:$Rn, 0)>;
4347 }
4348
4349 multiclass Neon_Scalar2SameMisc_D_size_patterns<SDPatternOperator opnode,
4350                                                 Instruction INSTD> {
4351   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn))),
4352             (INSTD FPR64:$Rn)>;
4353 }
4354
4355 multiclass Neon_Scalar2SameMisc_BHSD_size_patterns<SDPatternOperator opnode,
4356                                                    Instruction INSTB,
4357                                                    Instruction INSTH,
4358                                                    Instruction INSTS,
4359                                                    Instruction INSTD>
4360   : Neon_Scalar2SameMisc_D_size_patterns<opnode, INSTD> {
4361   def : Pat<(v1i8 (opnode (v1i8 FPR8:$Rn))),
4362             (INSTB FPR8:$Rn)>;
4363   def : Pat<(v1i16 (opnode (v1i16 FPR16:$Rn))),
4364             (INSTH FPR16:$Rn)>;
4365   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Rn))),
4366             (INSTS FPR32:$Rn)>;
4367 }
4368
4369 multiclass Neon_Scalar2SameMisc_narrow_HSD_size_patterns<
4370                                                        SDPatternOperator opnode,
4371                                                        Instruction INSTH,
4372                                                        Instruction INSTS,
4373                                                        Instruction INSTD> {
4374   def : Pat<(v1i8 (opnode (v1i16 FPR16:$Rn))),
4375             (INSTH FPR16:$Rn)>;
4376   def : Pat<(v1i16 (opnode (v1i32 FPR32:$Rn))),
4377             (INSTS FPR32:$Rn)>;
4378   def : Pat<(v1i32 (opnode (v1i64 FPR64:$Rn))),
4379             (INSTD FPR64:$Rn)>;
4380
4381 }
4382
4383 multiclass Neon_Scalar2SameMisc_accum_BHSD_size_patterns<
4384                                                        SDPatternOperator opnode,
4385                                                        Instruction INSTB,
4386                                                        Instruction INSTH,
4387                                                        Instruction INSTS,
4388                                                        Instruction INSTD> {
4389   def : Pat<(v1i8 (opnode (v1i8 FPR8:$Src), (v1i8 FPR8:$Rn))),
4390             (INSTB FPR8:$Src, FPR8:$Rn)>;
4391   def : Pat<(v1i16 (opnode (v1i16 FPR16:$Src), (v1i16 FPR16:$Rn))),
4392             (INSTH FPR16:$Src, FPR16:$Rn)>;
4393   def : Pat<(v1i32 (opnode (v1i32 FPR32:$Src), (v1i32 FPR32:$Rn))),
4394             (INSTS FPR32:$Src, FPR32:$Rn)>;
4395   def : Pat<(v1i64 (opnode (v1i64 FPR64:$Src), (v1i64 FPR64:$Rn))),
4396             (INSTD FPR64:$Src, FPR64:$Rn)>;
4397 }
4398
4399 // Scalar Shift By Immediate
4400
4401 class NeonI_ScalarShiftImm_size<bit u, bits<5> opcode, string asmop,
4402                                 RegisterClass FPRC, Operand ImmTy>
4403   : NeonI_ScalarShiftImm<u, opcode,
4404                          (outs FPRC:$Rd), (ins FPRC:$Rn, ImmTy:$Imm),
4405                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4406                          [], NoItinerary>;
4407
4408 multiclass NeonI_ScalarShiftRightImm_D_size<bit u, bits<5> opcode,
4409                                             string asmop> {
4410   def ddi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR64, shr_imm64> {
4411     bits<6> Imm;
4412     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4413     let Inst{21-16} = Imm;
4414   }
4415 }
4416
4417 multiclass NeonI_ScalarShiftRightImm_BHSD_size<bit u, bits<5> opcode,
4418                                                string asmop>
4419   : NeonI_ScalarShiftRightImm_D_size<u, opcode, asmop> {
4420   def bbi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR8, shr_imm8> {
4421     bits<3> Imm;
4422     let Inst{22-19} = 0b0001; // immh:immb = 0001xxx
4423     let Inst{18-16} = Imm;
4424   }
4425   def hhi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR16, shr_imm16> {
4426     bits<4> Imm;
4427     let Inst{22-20} = 0b001; // immh:immb = 001xxxx
4428     let Inst{19-16} = Imm;
4429   }
4430   def ssi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR32, shr_imm32> {
4431     bits<5> Imm;
4432     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
4433     let Inst{20-16} = Imm;
4434   }
4435 }
4436
4437 multiclass NeonI_ScalarShiftLeftImm_D_size<bit u, bits<5> opcode,
4438                                             string asmop> {
4439   def ddi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR64, shl_imm64> {
4440     bits<6> Imm;
4441     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4442     let Inst{21-16} = Imm;
4443   }
4444 }
4445
4446 multiclass NeonI_ScalarShiftLeftImm_BHSD_size<bit u, bits<5> opcode,
4447                                               string asmop>
4448   : NeonI_ScalarShiftLeftImm_D_size<u, opcode, asmop> {
4449   def bbi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR8, shl_imm8> {
4450     bits<3> Imm;
4451     let Inst{22-19} = 0b0001; // immh:immb = 0001xxx
4452     let Inst{18-16} = Imm;
4453   }
4454   def hhi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR16, shl_imm16> {
4455     bits<4> Imm;
4456     let Inst{22-20} = 0b001; // immh:immb = 001xxxx
4457     let Inst{19-16} = Imm;
4458   }
4459   def ssi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR32, shl_imm32> {
4460     bits<5> Imm;
4461     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
4462     let Inst{20-16} = Imm;
4463   }
4464 }
4465
4466 class NeonI_ScalarShiftRightImm_accum_D_size<bit u, bits<5> opcode, string asmop>
4467   : NeonI_ScalarShiftImm<u, opcode,
4468                          (outs FPR64:$Rd),
4469                          (ins FPR64:$Src, FPR64:$Rn, shr_imm64:$Imm),
4470                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4471                          [], NoItinerary> {
4472     bits<6> Imm;
4473     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4474     let Inst{21-16} = Imm;
4475     let Constraints = "$Src = $Rd";
4476 }
4477
4478 class NeonI_ScalarShiftLeftImm_accum_D_size<bit u, bits<5> opcode, string asmop>
4479   : NeonI_ScalarShiftImm<u, opcode,
4480                          (outs FPR64:$Rd),
4481                          (ins FPR64:$Src, FPR64:$Rn, shl_imm64:$Imm),
4482                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4483                          [], NoItinerary> {
4484     bits<6> Imm;
4485     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4486     let Inst{21-16} = Imm;
4487     let Constraints = "$Src = $Rd";
4488 }
4489
4490 class NeonI_ScalarShiftImm_narrow_size<bit u, bits<5> opcode, string asmop,
4491                                        RegisterClass FPRCD, RegisterClass FPRCS,
4492                                        Operand ImmTy>
4493   : NeonI_ScalarShiftImm<u, opcode,
4494                          (outs FPRCD:$Rd), (ins FPRCS:$Rn, ImmTy:$Imm),
4495                          !strconcat(asmop, "\t$Rd, $Rn, $Imm"),
4496                          [], NoItinerary>;
4497
4498 multiclass NeonI_ScalarShiftImm_narrow_HSD_size<bit u, bits<5> opcode,
4499                                                 string asmop> {
4500   def bhi : NeonI_ScalarShiftImm_narrow_size<u, opcode, asmop, FPR8, FPR16,
4501                                              shr_imm8> {
4502     bits<3> Imm;
4503     let Inst{22-19} = 0b0001; // immh:immb = 0001xxx
4504     let Inst{18-16} = Imm;
4505   }
4506   def hsi : NeonI_ScalarShiftImm_narrow_size<u, opcode, asmop, FPR16, FPR32,
4507                                              shr_imm16> {
4508     bits<4> Imm;
4509     let Inst{22-20} = 0b001; // immh:immb = 001xxxx
4510     let Inst{19-16} = Imm;
4511   }
4512   def sdi : NeonI_ScalarShiftImm_narrow_size<u, opcode, asmop, FPR32, FPR64,
4513                                              shr_imm32> {
4514     bits<5> Imm;
4515     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
4516     let Inst{20-16} = Imm;
4517   }
4518 }
4519
4520 multiclass NeonI_ScalarShiftImm_cvt_SD_size<bit u, bits<5> opcode, string asmop> {
4521   def ssi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR32, shr_imm32> {
4522     bits<5> Imm;
4523     let Inst{22-21} = 0b01; // immh:immb = 01xxxxx
4524     let Inst{20-16} = Imm;
4525   }
4526   def ddi : NeonI_ScalarShiftImm_size<u, opcode, asmop, FPR64, shr_imm64> {
4527     bits<6> Imm;
4528     let Inst{22} = 0b1; // immh:immb = 1xxxxxx
4529     let Inst{21-16} = Imm;
4530   }
4531 }
4532
4533 multiclass Neon_ScalarShiftRImm_D_size_patterns<SDPatternOperator opnode,
4534                                                Instruction INSTD> {
4535   def ddi : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (i32 shr_imm64:$Imm))),
4536                 (INSTD FPR64:$Rn, imm:$Imm)>;
4537 }
4538
4539 multiclass Neon_ScalarShiftLImm_D_size_patterns<SDPatternOperator opnode,
4540                                                Instruction INSTD> {
4541   def ddi : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (i32 shl_imm64:$Imm))),
4542                 (INSTD FPR64:$Rn, imm:$Imm)>;
4543 }
4544
4545 class Neon_ScalarShiftImm_arm_D_size_patterns<SDPatternOperator opnode,
4546                                               Instruction INSTD>
4547   : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn),
4548             (v1i64 (Neon_vdup (i32 shr_imm64:$Imm))))),
4549         (INSTD FPR64:$Rn, imm:$Imm)>;
4550
4551 multiclass Neon_ScalarShiftLImm_BHSD_size_patterns<SDPatternOperator opnode,
4552                                                    Instruction INSTB,
4553                                                    Instruction INSTH,
4554                                                    Instruction INSTS,
4555                                                    Instruction INSTD>
4556   : Neon_ScalarShiftLImm_D_size_patterns<opnode, INSTD> {
4557   def bbi : Pat<(v1i8 (opnode (v1i8 FPR8:$Rn), (i32 shl_imm8:$Imm))),
4558                 (INSTB FPR8:$Rn, imm:$Imm)>;
4559   def hhi : Pat<(v1i16 (opnode (v1i16 FPR16:$Rn), (i32 shl_imm16:$Imm))),
4560                 (INSTH FPR16:$Rn, imm:$Imm)>;
4561   def ssi : Pat<(v1i32 (opnode (v1i32 FPR32:$Rn), (i32 shl_imm32:$Imm))),
4562                 (INSTS FPR32:$Rn, imm:$Imm)>;
4563 }
4564
4565 class Neon_ScalarShiftLImm_accum_D_size_patterns<SDPatternOperator opnode,
4566                                                 Instruction INSTD>
4567   : Pat<(v1i64 (opnode (v1i64 FPR64:$Src), (v1i64 FPR64:$Rn),
4568             (i32 shl_imm64:$Imm))),
4569         (INSTD FPR64:$Src, FPR64:$Rn, imm:$Imm)>;
4570
4571 class Neon_ScalarShiftRImm_accum_D_size_patterns<SDPatternOperator opnode,
4572                                                 Instruction INSTD>
4573   : Pat<(v1i64 (opnode (v1i64 FPR64:$Src), (v1i64 FPR64:$Rn),
4574             (i32 shr_imm64:$Imm))),
4575         (INSTD FPR64:$Src, FPR64:$Rn, imm:$Imm)>;
4576
4577 multiclass Neon_ScalarShiftImm_narrow_HSD_size_patterns<
4578                                                        SDPatternOperator opnode,
4579                                                        Instruction INSTH,
4580                                                        Instruction INSTS,
4581                                                        Instruction INSTD> {
4582   def bhi : Pat<(v1i8 (opnode (v1i16 FPR16:$Rn), (i32 shr_imm16:$Imm))),
4583                 (INSTH FPR16:$Rn, imm:$Imm)>;
4584   def hsi : Pat<(v1i16 (opnode (v1i32 FPR32:$Rn), (i32 shr_imm32:$Imm))),
4585                 (INSTS FPR32:$Rn, imm:$Imm)>;
4586   def sdi : Pat<(v1i32 (opnode (v1i64 FPR64:$Rn), (i32 shr_imm64:$Imm))),
4587                 (INSTD FPR64:$Rn, imm:$Imm)>;
4588 }
4589
4590 multiclass Neon_ScalarShiftImm_scvtf_SD_size_patterns<SDPatternOperator Sopnode,
4591                                                       SDPatternOperator Dopnode,
4592                                                       Instruction INSTS,
4593                                                       Instruction INSTD> {
4594   def ssi : Pat<(f32 (Sopnode (v1i32 FPR32:$Rn), (i32 shr_imm32:$Imm))),
4595                 (INSTS FPR32:$Rn, imm:$Imm)>;
4596   def ddi : Pat<(f64 (Dopnode (v1i64 FPR64:$Rn), (i32 shr_imm64:$Imm))),
4597                 (INSTD FPR64:$Rn, imm:$Imm)>;
4598 }
4599
4600 multiclass Neon_ScalarShiftImm_fcvts_SD_size_patterns<SDPatternOperator Sopnode,
4601                                                       SDPatternOperator Dopnode,
4602                                                       Instruction INSTS,
4603                                                       Instruction INSTD> {
4604   def ssi : Pat<(v1i32 (Sopnode (v1f32 FPR32:$Rn), (i32 shr_imm32:$Imm))),
4605                 (INSTS FPR32:$Rn, imm:$Imm)>;
4606   def ddi : Pat<(v1i64 (Dopnode (v1f64 FPR64:$Rn), (i32 shr_imm64:$Imm))),
4607                 (INSTD FPR64:$Rn, imm:$Imm)>;
4608 }
4609
4610 // Scalar Signed Shift Right (Immediate)
4611 defm SSHR : NeonI_ScalarShiftRightImm_D_size<0b0, 0b00000, "sshr">;
4612 defm : Neon_ScalarShiftRImm_D_size_patterns<int_aarch64_neon_vshrds_n, SSHRddi>;
4613 // Pattern to match llvm.arm.* intrinsic.
4614 def : Neon_ScalarShiftImm_arm_D_size_patterns<sra, SSHRddi>;
4615
4616 // Scalar Unsigned Shift Right (Immediate)
4617 defm USHR : NeonI_ScalarShiftRightImm_D_size<0b1, 0b00000, "ushr">;
4618 defm : Neon_ScalarShiftRImm_D_size_patterns<int_aarch64_neon_vshrdu_n, USHRddi>;
4619 // Pattern to match llvm.arm.* intrinsic.
4620 def : Neon_ScalarShiftImm_arm_D_size_patterns<srl, USHRddi>;
4621
4622 // Scalar Signed Rounding Shift Right (Immediate)
4623 defm SRSHR : NeonI_ScalarShiftRightImm_D_size<0b0, 0b00100, "srshr">;
4624 defm : Neon_ScalarShiftRImm_D_size_patterns<int_aarch64_neon_vsrshr, SRSHRddi>;
4625
4626 // Scalar Unigned Rounding Shift Right (Immediate)
4627 defm URSHR : NeonI_ScalarShiftRightImm_D_size<0b1, 0b00100, "urshr">;
4628 defm : Neon_ScalarShiftRImm_D_size_patterns<int_aarch64_neon_vurshr, URSHRddi>;
4629
4630 // Scalar Signed Shift Right and Accumulate (Immediate)
4631 def SSRA : NeonI_ScalarShiftRightImm_accum_D_size<0b0, 0b00010, "ssra">;
4632 def : Neon_ScalarShiftRImm_accum_D_size_patterns
4633           <int_aarch64_neon_vsrads_n, SSRA>;
4634
4635 // Scalar Unsigned Shift Right and Accumulate (Immediate)
4636 def USRA : NeonI_ScalarShiftRightImm_accum_D_size<0b1, 0b00010, "usra">;
4637 def : Neon_ScalarShiftRImm_accum_D_size_patterns
4638           <int_aarch64_neon_vsradu_n, USRA>;
4639
4640 // Scalar Signed Rounding Shift Right and Accumulate (Immediate)
4641 def SRSRA : NeonI_ScalarShiftRightImm_accum_D_size<0b0, 0b00110, "srsra">;
4642 def : Neon_ScalarShiftRImm_accum_D_size_patterns
4643           <int_aarch64_neon_vrsrads_n, SRSRA>;
4644
4645 // Scalar Unsigned Rounding Shift Right and Accumulate (Immediate)
4646 def URSRA : NeonI_ScalarShiftRightImm_accum_D_size<0b1, 0b00110, "ursra">;
4647 def : Neon_ScalarShiftRImm_accum_D_size_patterns
4648           <int_aarch64_neon_vrsradu_n, URSRA>;
4649
4650 // Scalar Shift Left (Immediate)
4651 defm SHL : NeonI_ScalarShiftLeftImm_D_size<0b0, 0b01010, "shl">;
4652 defm : Neon_ScalarShiftLImm_D_size_patterns<int_aarch64_neon_vshld_n, SHLddi>;
4653 // Pattern to match llvm.arm.* intrinsic.
4654 def : Neon_ScalarShiftImm_arm_D_size_patterns<shl, SHLddi>;
4655
4656 // Signed Saturating Shift Left (Immediate)
4657 defm SQSHL : NeonI_ScalarShiftLeftImm_BHSD_size<0b0, 0b01110, "sqshl">;
4658 defm : Neon_ScalarShiftLImm_BHSD_size_patterns<int_aarch64_neon_vqshls_n,
4659                                                SQSHLbbi, SQSHLhhi,
4660                                                SQSHLssi, SQSHLddi>;
4661 // Pattern to match llvm.arm.* intrinsic.
4662 defm : Neon_ScalarShiftLImm_D_size_patterns<Neon_sqrshlImm, SQSHLddi>;
4663
4664 // Unsigned Saturating Shift Left (Immediate)
4665 defm UQSHL : NeonI_ScalarShiftLeftImm_BHSD_size<0b1, 0b01110, "uqshl">;
4666 defm : Neon_ScalarShiftLImm_BHSD_size_patterns<int_aarch64_neon_vqshlu_n,
4667                                                UQSHLbbi, UQSHLhhi,
4668                                                UQSHLssi, UQSHLddi>;
4669 // Pattern to match llvm.arm.* intrinsic.
4670 defm : Neon_ScalarShiftLImm_D_size_patterns<Neon_uqrshlImm, UQSHLddi>;
4671
4672 // Signed Saturating Shift Left Unsigned (Immediate)
4673 defm SQSHLU : NeonI_ScalarShiftLeftImm_BHSD_size<0b1, 0b01100, "sqshlu">;
4674 defm : Neon_ScalarShiftLImm_BHSD_size_patterns<int_aarch64_neon_vsqshlu,
4675                                                SQSHLUbbi, SQSHLUhhi,
4676                                                SQSHLUssi, SQSHLUddi>;
4677
4678 // Shift Right And Insert (Immediate)
4679 def SRI : NeonI_ScalarShiftRightImm_accum_D_size<0b1, 0b01000, "sri">;
4680 def : Neon_ScalarShiftRImm_accum_D_size_patterns
4681           <int_aarch64_neon_vsri, SRI>;
4682
4683 // Shift Left And Insert (Immediate)
4684 def SLI : NeonI_ScalarShiftLeftImm_accum_D_size<0b1, 0b01010, "sli">;
4685 def : Neon_ScalarShiftLImm_accum_D_size_patterns
4686           <int_aarch64_neon_vsli, SLI>;
4687
4688 // Signed Saturating Shift Right Narrow (Immediate)
4689 defm SQSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b0, 0b10010, "sqshrn">;
4690 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqshrn,
4691                                                     SQSHRNbhi, SQSHRNhsi,
4692                                                     SQSHRNsdi>;
4693
4694 // Unsigned Saturating Shift Right Narrow (Immediate)
4695 defm UQSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10010, "uqshrn">;
4696 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vuqshrn,
4697                                                     UQSHRNbhi, UQSHRNhsi,
4698                                                     UQSHRNsdi>;
4699
4700 // Signed Saturating Rounded Shift Right Narrow (Immediate)
4701 defm SQRSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b0, 0b10011, "sqrshrn">;
4702 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqrshrn,
4703                                                     SQRSHRNbhi, SQRSHRNhsi,
4704                                                     SQRSHRNsdi>;
4705
4706 // Unsigned Saturating Rounded Shift Right Narrow (Immediate)
4707 defm UQRSHRN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10011, "uqrshrn">;
4708 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vuqrshrn,
4709                                                     UQRSHRNbhi, UQRSHRNhsi,
4710                                                     UQRSHRNsdi>;
4711
4712 // Signed Saturating Shift Right Unsigned Narrow (Immediate)
4713 defm SQSHRUN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10000, "sqshrun">;
4714 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqshrun,
4715                                                     SQSHRUNbhi, SQSHRUNhsi,
4716                                                     SQSHRUNsdi>;
4717
4718 // Signed Saturating Rounded Shift Right Unsigned Narrow (Immediate)
4719 defm SQRSHRUN : NeonI_ScalarShiftImm_narrow_HSD_size<0b1, 0b10001, "sqrshrun">;
4720 defm : Neon_ScalarShiftImm_narrow_HSD_size_patterns<int_aarch64_neon_vsqrshrun,
4721                                                     SQRSHRUNbhi, SQRSHRUNhsi,
4722                                                     SQRSHRUNsdi>;
4723
4724 // Scalar Signed Fixed-point Convert To Floating-Point (Immediate)
4725 defm SCVTF_N : NeonI_ScalarShiftImm_cvt_SD_size<0b0, 0b11100, "scvtf">;
4726 defm : Neon_ScalarShiftImm_scvtf_SD_size_patterns<int_aarch64_neon_vcvtf32_n_s32,
4727                                                   int_aarch64_neon_vcvtf64_n_s64,
4728                                                   SCVTF_Nssi, SCVTF_Nddi>;
4729
4730 // Scalar Unsigned Fixed-point Convert To Floating-Point (Immediate)
4731 defm UCVTF_N : NeonI_ScalarShiftImm_cvt_SD_size<0b1, 0b11100, "ucvtf">;
4732 defm : Neon_ScalarShiftImm_scvtf_SD_size_patterns<int_aarch64_neon_vcvtf32_n_u32,
4733                                                   int_aarch64_neon_vcvtf64_n_u64,
4734                                                   UCVTF_Nssi, UCVTF_Nddi>;
4735
4736 // Scalar Floating-point Convert To Signed Fixed-point (Immediate)
4737 defm FCVTZS_N : NeonI_ScalarShiftImm_cvt_SD_size<0b0, 0b11111, "fcvtzs">;
4738 defm : Neon_ScalarShiftImm_fcvts_SD_size_patterns<int_aarch64_neon_vcvts_n_s32_f32,
4739                                                   int_aarch64_neon_vcvtd_n_s64_f64,
4740                                                   FCVTZS_Nssi, FCVTZS_Nddi>;
4741
4742 // Scalar Floating-point Convert To Unsigned Fixed-point (Immediate)
4743 defm FCVTZU_N : NeonI_ScalarShiftImm_cvt_SD_size<0b1, 0b11111, "fcvtzu">;
4744 defm : Neon_ScalarShiftImm_fcvts_SD_size_patterns<int_aarch64_neon_vcvts_n_u32_f32,
4745                                                   int_aarch64_neon_vcvtd_n_u64_f64,
4746                                                   FCVTZU_Nssi, FCVTZU_Nddi>;
4747
4748 // Scalar Integer Add
4749 let isCommutable = 1 in {
4750 def ADDddd : NeonI_Scalar3Same_D_size<0b0, 0b10000, "add">;
4751 }
4752
4753 // Scalar Integer Sub
4754 def SUBddd : NeonI_Scalar3Same_D_size<0b1, 0b10000, "sub">;
4755
4756 // Pattern for Scalar Integer Add and Sub with D register only
4757 defm : Neon_Scalar3Same_D_size_patterns<add, ADDddd>;
4758 defm : Neon_Scalar3Same_D_size_patterns<sub, SUBddd>;
4759
4760 // Patterns to match llvm.aarch64.* intrinsic for Scalar Add, Sub
4761 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vaddds, ADDddd>;
4762 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vadddu, ADDddd>;
4763 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vsubds, SUBddd>;
4764 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vsubdu, SUBddd>;
4765
4766 // Scalar Integer Saturating Add (Signed, Unsigned)
4767 defm SQADD : NeonI_Scalar3Same_BHSD_sizes<0b0, 0b00001, "sqadd", 1>;
4768 defm UQADD : NeonI_Scalar3Same_BHSD_sizes<0b1, 0b00001, "uqadd", 1>;
4769
4770 // Scalar Integer Saturating Sub (Signed, Unsigned)
4771 defm SQSUB : NeonI_Scalar3Same_BHSD_sizes<0b0, 0b00101, "sqsub", 0>;
4772 defm UQSUB : NeonI_Scalar3Same_BHSD_sizes<0b1, 0b00101, "uqsub", 0>;
4773
4774
4775 // Patterns to match llvm.aarch64.* intrinsic for
4776 // Scalar Integer Saturating Add, Sub  (Signed, Unsigned)
4777 defm : Neon_Scalar3Same_BHSD_size_patterns<int_arm_neon_vqadds, SQADDbbb,
4778                                            SQADDhhh, SQADDsss, SQADDddd>;
4779 defm : Neon_Scalar3Same_BHSD_size_patterns<int_arm_neon_vqaddu, UQADDbbb,
4780                                            UQADDhhh, UQADDsss, UQADDddd>;
4781 defm : Neon_Scalar3Same_BHSD_size_patterns<int_arm_neon_vqsubs, SQSUBbbb,
4782                                            SQSUBhhh, SQSUBsss, SQSUBddd>;
4783 defm : Neon_Scalar3Same_BHSD_size_patterns<int_arm_neon_vqsubu, UQSUBbbb,
4784                                            UQSUBhhh, UQSUBsss, UQSUBddd>;
4785
4786 // Scalar Integer Saturating Doubling Multiply Half High
4787 defm SQDMULH : NeonI_Scalar3Same_HS_sizes<0b0, 0b10110, "sqdmulh", 1>;
4788
4789 // Scalar Integer Saturating Rounding Doubling Multiply Half High
4790 defm SQRDMULH : NeonI_Scalar3Same_HS_sizes<0b1, 0b10110, "sqrdmulh", 1>;
4791
4792 // Patterns to match llvm.arm.* intrinsic for
4793 // Scalar Integer Saturating Doubling Multiply Half High and
4794 // Scalar Integer Saturating Rounding Doubling Multiply Half High
4795 defm : Neon_Scalar3Same_HS_size_patterns<int_arm_neon_vqdmulh, SQDMULHhhh,
4796                                                                SQDMULHsss>;
4797 defm : Neon_Scalar3Same_HS_size_patterns<int_arm_neon_vqrdmulh, SQRDMULHhhh,
4798                                                                 SQRDMULHsss>;
4799
4800 // Scalar Floating-point Multiply Extended
4801 defm FMULX : NeonI_Scalar3Same_SD_sizes<0b0, 0b0, 0b11011, "fmulx", 1>;
4802
4803 // Scalar Floating-point Reciprocal Step
4804 defm FRECPS : NeonI_Scalar3Same_SD_sizes<0b0, 0b0, 0b11111, "frecps", 0>;
4805
4806 // Scalar Floating-point Reciprocal Square Root Step
4807 defm FRSQRTS : NeonI_Scalar3Same_SD_sizes<0b0, 0b1, 0b11111, "frsqrts", 0>;
4808
4809 // Patterns to match llvm.arm.* intrinsic for
4810 // Scalar Floating-point Reciprocal Step and
4811 // Scalar Floating-point Reciprocal Square Root Step
4812 defm : Neon_Scalar3Same_SD_size_patterns<int_arm_neon_vrecps, FRECPSsss,
4813                                                               FRECPSddd>;
4814 defm : Neon_Scalar3Same_SD_size_patterns<int_arm_neon_vrsqrts, FRSQRTSsss,
4815                                                                FRSQRTSddd>;
4816
4817 // Patterns to match llvm.aarch64.* intrinsic for
4818 // Scalar Floating-point Multiply Extended,
4819 multiclass Neon_Scalar3Same_MULX_SD_size_patterns<SDPatternOperator opnode,
4820                                                   Instruction INSTS,
4821                                                   Instruction INSTD> {
4822   def : Pat<(f32 (opnode (f32 FPR32:$Rn), (f32 FPR32:$Rm))),
4823             (INSTS FPR32:$Rn, FPR32:$Rm)>;
4824   def : Pat<(f64 (opnode (f64 FPR64:$Rn), (f64 FPR64:$Rm))),
4825             (INSTD FPR64:$Rn, FPR64:$Rm)>;
4826 }
4827
4828 defm : Neon_Scalar3Same_MULX_SD_size_patterns<int_aarch64_neon_vmulx,
4829                                               FMULXsss,FMULXddd>;
4830
4831 // Scalar Integer Shift Left (Signed, Unsigned)
4832 def SSHLddd : NeonI_Scalar3Same_D_size<0b0, 0b01000, "sshl">;
4833 def USHLddd : NeonI_Scalar3Same_D_size<0b1, 0b01000, "ushl">;
4834
4835 // Patterns to match llvm.arm.* intrinsic for
4836 // Scalar Integer Shift Left (Signed, Unsigned)
4837 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vshifts, SSHLddd>;
4838 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vshiftu, USHLddd>;
4839
4840 // Patterns to match llvm.aarch64.* intrinsic for
4841 // Scalar Integer Shift Left (Signed, Unsigned)
4842 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vshlds, SSHLddd>;
4843 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vshldu, USHLddd>;
4844
4845 // Scalar Integer Saturating Shift Left (Signed, Unsigned)
4846 defm SQSHL: NeonI_Scalar3Same_BHSD_sizes<0b0, 0b01001, "sqshl", 0>;
4847 defm UQSHL: NeonI_Scalar3Same_BHSD_sizes<0b1, 0b01001, "uqshl", 0>;
4848
4849 // Patterns to match llvm.aarch64.* intrinsic for
4850 // Scalar  Integer Saturating Shift Letf (Signed, Unsigned)
4851 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqshls, SQSHLbbb,
4852                                            SQSHLhhh, SQSHLsss, SQSHLddd>;
4853 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqshlu, UQSHLbbb,
4854                                            UQSHLhhh, UQSHLsss, UQSHLddd>;
4855
4856 // Patterns to match llvm.arm.* intrinsic for
4857 // Scalar  Integer Saturating Shift Letf (Signed, Unsigned)
4858 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqshifts, SQSHLddd>;
4859 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqshiftu, UQSHLddd>;
4860
4861 // Scalar Integer Rounding Shift Left (Signed, Unsigned)
4862 def SRSHLddd: NeonI_Scalar3Same_D_size<0b0, 0b01010, "srshl">;
4863 def URSHLddd: NeonI_Scalar3Same_D_size<0b1, 0b01010, "urshl">;
4864
4865 // Patterns to match llvm.aarch64.* intrinsic for
4866 // Scalar Integer Rounding Shift Left (Signed, Unsigned)
4867 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vrshlds, SRSHLddd>;
4868 defm : Neon_Scalar3Same_D_size_patterns<int_aarch64_neon_vrshldu, URSHLddd>;
4869
4870 // Patterns to match llvm.arm.* intrinsic for
4871 // Scalar Integer Rounding Shift Left (Signed, Unsigned)
4872 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vrshifts, SRSHLddd>;
4873 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vrshiftu, URSHLddd>;
4874
4875 // Scalar Integer Saturating Rounding Shift Left (Signed, Unsigned)
4876 defm SQRSHL: NeonI_Scalar3Same_BHSD_sizes<0b0, 0b01011, "sqrshl", 0>;
4877 defm UQRSHL: NeonI_Scalar3Same_BHSD_sizes<0b1, 0b01011, "uqrshl", 0>;
4878
4879 // Patterns to match llvm.aarch64.* intrinsic for
4880 // Scalar Integer Saturating Rounding Shift Left (Signed, Unsigned)
4881 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqrshls, SQRSHLbbb,
4882                                            SQRSHLhhh, SQRSHLsss, SQRSHLddd>;
4883 defm : Neon_Scalar3Same_BHSD_size_patterns<int_aarch64_neon_vqrshlu, UQRSHLbbb,
4884                                            UQRSHLhhh, UQRSHLsss, UQRSHLddd>;
4885
4886 // Patterns to match llvm.arm.* intrinsic for
4887 // Scalar Integer Saturating Rounding Shift Left (Signed, Unsigned)
4888 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqrshifts, SQRSHLddd>;
4889 defm : Neon_Scalar3Same_D_size_patterns<int_arm_neon_vqrshiftu, UQRSHLddd>;
4890
4891 // Signed Saturating Doubling Multiply-Add Long
4892 defm SQDMLAL : NeonI_Scalar3Diff_ml_HS_size<0b0, 0b1001, "sqdmlal">;
4893 defm : Neon_Scalar3Diff_ml_HS_size_patterns<int_aarch64_neon_vqdmlal,
4894                                             SQDMLALshh, SQDMLALdss>;
4895
4896 // Signed Saturating Doubling Multiply-Subtract Long
4897 defm SQDMLSL : NeonI_Scalar3Diff_ml_HS_size<0b0, 0b1011, "sqdmlsl">;
4898 defm : Neon_Scalar3Diff_ml_HS_size_patterns<int_aarch64_neon_vqdmlsl,
4899                                             SQDMLSLshh, SQDMLSLdss>;
4900
4901 // Signed Saturating Doubling Multiply Long
4902 defm SQDMULL : NeonI_Scalar3Diff_HS_size<0b0, 0b1101, "sqdmull">;
4903 defm : Neon_Scalar3Diff_HS_size_patterns<int_arm_neon_vqdmull,
4904                                          SQDMULLshh, SQDMULLdss>;
4905
4906 // Scalar Signed Integer Convert To Floating-point
4907 defm SCVTF  : NeonI_Scalar2SameMisc_SD_size<0b0, 0b0, 0b11101, "scvtf">;
4908 defm : Neon_Scalar2SameMisc_cvt_SD_size_patterns<int_aarch64_neon_vcvtf32_s32,
4909                                                  int_aarch64_neon_vcvtf64_s64,
4910                                                  SCVTFss, SCVTFdd>;
4911
4912 // Scalar Unsigned Integer Convert To Floating-point
4913 defm UCVTF  : NeonI_Scalar2SameMisc_SD_size<0b1, 0b0, 0b11101, "ucvtf">;
4914 defm : Neon_Scalar2SameMisc_cvt_SD_size_patterns<int_aarch64_neon_vcvtf32_u32,
4915                                                  int_aarch64_neon_vcvtf64_u64,
4916                                                  UCVTFss, UCVTFdd>;
4917
4918 // Scalar Floating-point Converts
4919 def FCVTXN : NeonI_Scalar2SameMisc_fcvtxn_D_size<0b1, 0b10110, "fcvtxn">;
4920 def : Neon_Scalar2SameMisc_fcvtxn_D_size_patterns<int_aarch64_neon_fcvtxn,
4921                                                   FCVTXN>;
4922
4923 defm FCVTNS : NeonI_Scalar2SameMisc_SD_size<0b0, 0b0, 0b11010, "fcvtns">;
4924 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtns,
4925                                                   FCVTNSss, FCVTNSdd>;
4926
4927 defm FCVTNU : NeonI_Scalar2SameMisc_SD_size<0b1, 0b0, 0b11010, "fcvtnu">;
4928 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtnu,
4929                                                   FCVTNUss, FCVTNUdd>;
4930
4931 defm FCVTMS : NeonI_Scalar2SameMisc_SD_size<0b0, 0b0, 0b11011, "fcvtms">;
4932 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtms,
4933                                                   FCVTMSss, FCVTMSdd>;
4934
4935 defm FCVTMU : NeonI_Scalar2SameMisc_SD_size<0b1, 0b0, 0b11011, "fcvtmu">;
4936 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtmu,
4937                                                   FCVTMUss, FCVTMUdd>;
4938
4939 defm FCVTAS : NeonI_Scalar2SameMisc_SD_size<0b0, 0b0, 0b11100, "fcvtas">;
4940 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtas,
4941                                                   FCVTASss, FCVTASdd>;
4942
4943 defm FCVTAU : NeonI_Scalar2SameMisc_SD_size<0b1, 0b0, 0b11100, "fcvtau">;
4944 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtau,
4945                                                   FCVTAUss, FCVTAUdd>;
4946
4947 defm FCVTPS : NeonI_Scalar2SameMisc_SD_size<0b0, 0b1, 0b11010, "fcvtps">;
4948 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtps,
4949                                                   FCVTPSss, FCVTPSdd>;
4950
4951 defm FCVTPU : NeonI_Scalar2SameMisc_SD_size<0b1, 0b1, 0b11010, "fcvtpu">;
4952 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtpu,
4953                                                   FCVTPUss, FCVTPUdd>;
4954
4955 defm FCVTZS : NeonI_Scalar2SameMisc_SD_size<0b0, 0b1, 0b11011, "fcvtzs">;
4956 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtzs,
4957                                                   FCVTZSss, FCVTZSdd>;
4958
4959 defm FCVTZU : NeonI_Scalar2SameMisc_SD_size<0b1, 0b1, 0b11011, "fcvtzu">;
4960 defm : Neon_Scalar2SameMisc_fcvt_SD_size_patterns<int_aarch64_neon_fcvtzu,
4961                                                   FCVTZUss, FCVTZUdd>;
4962
4963 // Scalar Floating-point Reciprocal Estimate
4964 defm FRECPE : NeonI_Scalar2SameMisc_SD_size<0b0, 0b1, 0b11101, "frecpe">;
4965 defm : Neon_Scalar2SameMisc_SD_size_patterns<int_arm_neon_vrecpe,
4966                                              FRECPEss, FRECPEdd>;
4967
4968 // Scalar Floating-point Reciprocal Exponent
4969 defm FRECPX : NeonI_Scalar2SameMisc_SD_size<0b0, 0b1, 0b11111, "frecpx">;
4970 defm : Neon_Scalar2SameMisc_SD_size_patterns<int_aarch64_neon_vrecpx,
4971                                              FRECPXss, FRECPXdd>;
4972
4973 // Scalar Floating-point Reciprocal Square Root Estimate
4974 defm FRSQRTE: NeonI_Scalar2SameMisc_SD_size<0b1, 0b1, 0b11101, "frsqrte">;
4975 defm : Neon_Scalar2SameMisc_SD_size_patterns<int_arm_neon_vrsqrte,
4976                                              FRSQRTEss, FRSQRTEdd>;
4977
4978 // Scalar Integer Compare
4979
4980 // Scalar Compare Bitwise Equal
4981 def CMEQddd: NeonI_Scalar3Same_D_size<0b1, 0b10001, "cmeq">;
4982 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vceq, CMEQddd>;
4983
4984 class Neon_Scalar3Same_cmp_D_size_v1_patterns<SDPatternOperator opnode,
4985                                               Instruction INSTD,
4986                                               CondCode CC>
4987   : Pat<(v1i64 (opnode (v1i64 FPR64:$Rn), (v1i64 FPR64:$Rm), CC)),
4988         (INSTD FPR64:$Rn, FPR64:$Rm)>;
4989
4990 def : Neon_Scalar3Same_cmp_D_size_v1_patterns<Neon_cmp, CMEQddd, SETEQ>;
4991
4992 // Scalar Compare Signed Greather Than Or Equal
4993 def CMGEddd: NeonI_Scalar3Same_D_size<0b0, 0b00111, "cmge">;
4994 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vcge, CMGEddd>;
4995
4996 // Scalar Compare Unsigned Higher Or Same
4997 def CMHSddd: NeonI_Scalar3Same_D_size<0b1, 0b00111, "cmhs">;
4998 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vchs, CMHSddd>;
4999
5000 // Scalar Compare Unsigned Higher
5001 def CMHIddd: NeonI_Scalar3Same_D_size<0b1, 0b00110, "cmhi">;
5002 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vchi, CMHIddd>;
5003
5004 // Scalar Compare Signed Greater Than
5005 def CMGTddd: NeonI_Scalar3Same_D_size<0b0, 0b00110, "cmgt">;
5006 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vcgt, CMGTddd>;
5007
5008 // Scalar Compare Bitwise Test Bits
5009 def CMTSTddd: NeonI_Scalar3Same_D_size<0b0, 0b10001, "cmtst">;
5010 def : Neon_Scalar3Same_cmp_D_size_patterns<int_aarch64_neon_vtstd, CMTSTddd>;
5011 def : Neon_Scalar3Same_cmp_D_size_patterns<Neon_tst, CMTSTddd>;
5012
5013 // Scalar Compare Bitwise Equal To Zero
5014 def CMEQddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b0, 0b01001, "cmeq">;
5015 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vceq,
5016                                                 CMEQddi>;
5017
5018 // Scalar Compare Signed Greather Than Or Equal To Zero
5019 def CMGEddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b1, 0b01000, "cmge">;
5020 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vcge,
5021                                                 CMGEddi>;
5022
5023 // Scalar Compare Signed Greater Than Zero
5024 def CMGTddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b0, 0b01000, "cmgt">;
5025 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vcgt,
5026                                                 CMGTddi>;
5027
5028 // Scalar Compare Signed Less Than Or Equal To Zero
5029 def CMLEddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b1, 0b01001, "cmle">;
5030 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vclez,
5031                                                 CMLEddi>;
5032
5033 // Scalar Compare Less Than Zero
5034 def CMLTddi: NeonI_Scalar2SameMisc_cmpz_D_size<0b0, 0b01010, "cmlt">;
5035 def : Neon_Scalar2SameMisc_cmpz_D_size_patterns<int_aarch64_neon_vcltz,
5036                                                 CMLTddi>;
5037
5038 // Scalar Floating-point Compare
5039
5040 // Scalar Floating-point Compare Mask Equal
5041 defm FCMEQ: NeonI_Scalar3Same_SD_sizes<0b0, 0b0, 0b11100, "fcmeq">;
5042 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vceq,
5043                                              FCMEQsss, FCMEQddd>;
5044
5045 // Scalar Floating-point Compare Mask Equal To Zero
5046 defm FCMEQZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b0, 0b01101, "fcmeq">;
5047 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vceq,
5048                                                   FCMEQZssi, FCMEQZddi>;
5049
5050 // Scalar Floating-point Compare Mask Greater Than Or Equal
5051 defm FCMGE: NeonI_Scalar3Same_SD_sizes<0b1, 0b0, 0b11100, "fcmge">;
5052 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcge,
5053                                              FCMGEsss, FCMGEddd>;
5054
5055 // Scalar Floating-point Compare Mask Greater Than Or Equal To Zero
5056 defm FCMGEZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b1, 0b01100, "fcmge">;
5057 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vcge,
5058                                                   FCMGEZssi, FCMGEZddi>;
5059
5060 // Scalar Floating-point Compare Mask Greather Than
5061 defm FCMGT: NeonI_Scalar3Same_SD_sizes<0b1, 0b1, 0b11100, "fcmgt">;
5062 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcgt,
5063                                              FCMGTsss, FCMGTddd>;
5064
5065 // Scalar Floating-point Compare Mask Greather Than Zero
5066 defm FCMGTZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b0, 0b01100, "fcmgt">;
5067 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vcgt,
5068                                                   FCMGTZssi, FCMGTZddi>;
5069
5070 // Scalar Floating-point Compare Mask Less Than Or Equal To Zero
5071 defm FCMLEZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b1, 0b01101, "fcmle">;
5072 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vclez,
5073                                                   FCMLEZssi, FCMLEZddi>;
5074
5075 // Scalar Floating-point Compare Mask Less Than Zero
5076 defm FCMLTZ: NeonI_Scalar2SameMisc_cmpz_SD_size<0b0, 0b01110, "fcmlt">;
5077 defm : Neon_Scalar2SameMisc_cmpz_SD_size_patterns<int_aarch64_neon_vcltz,
5078                                                   FCMLTZssi, FCMLTZddi>;
5079
5080 // Scalar Floating-point Absolute Compare Mask Greater Than Or Equal
5081 defm FACGE: NeonI_Scalar3Same_SD_sizes<0b1, 0b0, 0b11101, "facge">;
5082 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcage,
5083                                              FACGEsss, FACGEddd>;
5084
5085 // Scalar Floating-point Absolute Compare Mask Greater Than
5086 defm FACGT: NeonI_Scalar3Same_SD_sizes<0b1, 0b1, 0b11101, "facgt">;
5087 defm : Neon_Scalar3Same_cmp_SD_size_patterns<int_aarch64_neon_vcagt,
5088                                              FACGTsss, FACGTddd>;
5089
5090 // Scakar Floating-point Absolute Difference
5091 defm FABD: NeonI_Scalar3Same_SD_sizes<0b1, 0b1, 0b11010, "fabd">;
5092 defm : Neon_Scalar3Same_SD_size_patterns<int_aarch64_neon_vabd,
5093                                          FABDsss, FABDddd>;
5094
5095 // Scalar Absolute Value
5096 defm ABS : NeonI_Scalar2SameMisc_D_size<0b0, 0b01011, "abs">;
5097 defm : Neon_Scalar2SameMisc_D_size_patterns<int_aarch64_neon_vabs, ABSdd>;
5098
5099 // Scalar Signed Saturating Absolute Value
5100 defm SQABS : NeonI_Scalar2SameMisc_BHSD_size<0b0, 0b00111, "sqabs">;
5101 defm : Neon_Scalar2SameMisc_BHSD_size_patterns<int_arm_neon_vqabs,
5102                                                SQABSbb, SQABShh, SQABSss, SQABSdd>;
5103
5104 // Scalar Negate
5105 defm NEG : NeonI_Scalar2SameMisc_D_size<0b1, 0b01011, "neg">;
5106 defm : Neon_Scalar2SameMisc_D_size_patterns<int_aarch64_neon_vneg, NEGdd>;
5107
5108 // Scalar Signed Saturating Negate
5109 defm SQNEG : NeonI_Scalar2SameMisc_BHSD_size<0b1, 0b00111, "sqneg">;
5110 defm : Neon_Scalar2SameMisc_BHSD_size_patterns<int_arm_neon_vqneg,
5111                                                SQNEGbb, SQNEGhh, SQNEGss, SQNEGdd>;
5112
5113 // Scalar Signed Saturating Accumulated of Unsigned Value
5114 defm SUQADD : NeonI_Scalar2SameMisc_accum_BHSD_size<0b0, 0b00011, "suqadd">;
5115 defm : Neon_Scalar2SameMisc_accum_BHSD_size_patterns<int_aarch64_neon_vuqadd,
5116                                                      SUQADDbb, SUQADDhh,
5117                                                      SUQADDss, SUQADDdd>;
5118
5119 // Scalar Unsigned Saturating Accumulated of Signed Value
5120 defm USQADD : NeonI_Scalar2SameMisc_accum_BHSD_size<0b1, 0b00011, "usqadd">;
5121 defm : Neon_Scalar2SameMisc_accum_BHSD_size_patterns<int_aarch64_neon_vsqadd,
5122                                                      USQADDbb, USQADDhh,
5123                                                      USQADDss, USQADDdd>;
5124
5125 def : Pat<(v1i64 (int_aarch64_neon_suqadd (v1i64 FPR64:$Src),
5126                                           (v1i64 FPR64:$Rn))),
5127           (SUQADDdd FPR64:$Src, FPR64:$Rn)>;
5128
5129 def : Pat<(v1i64 (int_aarch64_neon_usqadd (v1i64 FPR64:$Src),
5130                                           (v1i64 FPR64:$Rn))),
5131           (USQADDdd FPR64:$Src, FPR64:$Rn)>;
5132
5133 def : Pat<(v1i64 (int_arm_neon_vabs (v1i64 FPR64:$Rn))),
5134           (ABSdd FPR64:$Rn)>;
5135
5136 def : Pat<(v1i64 (int_arm_neon_vqabs (v1i64 FPR64:$Rn))),
5137           (SQABSdd FPR64:$Rn)>;
5138
5139 def : Pat<(v1i64 (int_arm_neon_vqneg (v1i64 FPR64:$Rn))),
5140           (SQNEGdd FPR64:$Rn)>;
5141
5142 def : Pat<(v1i64 (sub (v1i64 (bitconvert (v8i8 Neon_AllZero))),
5143                       (v1i64 FPR64:$Rn))),
5144           (NEGdd FPR64:$Rn)>;
5145
5146 // Scalar Signed Saturating Extract Unsigned Narrow
5147 defm SQXTUN : NeonI_Scalar2SameMisc_narrow_HSD_size<0b1, 0b10010, "sqxtun">;
5148 defm : Neon_Scalar2SameMisc_narrow_HSD_size_patterns<int_arm_neon_vqmovnsu,
5149                                                      SQXTUNbh, SQXTUNhs,
5150                                                      SQXTUNsd>;
5151
5152 // Scalar Signed Saturating Extract Narrow
5153 defm SQXTN  : NeonI_Scalar2SameMisc_narrow_HSD_size<0b0, 0b10100, "sqxtn">;
5154 defm : Neon_Scalar2SameMisc_narrow_HSD_size_patterns<int_arm_neon_vqmovns,
5155                                                      SQXTNbh, SQXTNhs,
5156                                                      SQXTNsd>;
5157
5158 // Scalar Unsigned Saturating Extract Narrow
5159 defm UQXTN  : NeonI_Scalar2SameMisc_narrow_HSD_size<0b1, 0b10100, "uqxtn">;
5160 defm : Neon_Scalar2SameMisc_narrow_HSD_size_patterns<int_arm_neon_vqmovnu,
5161                                                      UQXTNbh, UQXTNhs,
5162                                                      UQXTNsd>;
5163
5164 // Scalar Reduce Pairwise
5165
5166 multiclass NeonI_ScalarPair_D_sizes<bit u, bit size, bits<5> opcode,
5167                                      string asmop, bit Commutable = 0> {
5168   let isCommutable = Commutable in {
5169     def _D_2D : NeonI_ScalarPair<u, {size, 0b1}, opcode,
5170                                 (outs FPR64:$Rd), (ins VPR128:$Rn),
5171                                 !strconcat(asmop, "\t$Rd, $Rn.2d"),
5172                                 [],
5173                                 NoItinerary>;
5174   }
5175 }
5176
5177 multiclass NeonI_ScalarPair_SD_sizes<bit u, bit size, bits<5> opcode,
5178                                      string asmop, bit Commutable = 0>
5179   : NeonI_ScalarPair_D_sizes<u, size, opcode, asmop, Commutable> {
5180   let isCommutable = Commutable in {
5181     def _S_2S : NeonI_ScalarPair<u, {size, 0b0}, opcode,
5182                                 (outs FPR32:$Rd), (ins VPR64:$Rn),
5183                                 !strconcat(asmop, "\t$Rd, $Rn.2s"),
5184                                 [],
5185                                 NoItinerary>;
5186   }
5187 }
5188
5189 // Scalar Reduce Addition Pairwise (Integer) with
5190 // Pattern to match llvm.arm.* intrinsic
5191 defm ADDPvv : NeonI_ScalarPair_D_sizes<0b0, 0b1, 0b11011, "addp", 0>;
5192
5193 // Pattern to match llvm.aarch64.* intrinsic for
5194 // Scalar Reduce Addition Pairwise (Integer)
5195 def : Pat<(v1i64 (int_aarch64_neon_vpadd (v2i64 VPR128:$Rn))),
5196           (ADDPvv_D_2D VPR128:$Rn)>;
5197 def : Pat<(v1i64 (int_aarch64_neon_vaddv (v2i64 VPR128:$Rn))),
5198           (ADDPvv_D_2D VPR128:$Rn)>;
5199
5200 // Scalar Reduce Addition Pairwise (Floating Point)
5201 defm FADDPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b0, 0b01101, "faddp", 0>;
5202
5203 // Scalar Reduce Maximum Pairwise (Floating Point)
5204 defm FMAXPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b0, 0b01111, "fmaxp", 0>;
5205
5206 // Scalar Reduce Minimum Pairwise (Floating Point)
5207 defm FMINPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b1, 0b01111, "fminp", 0>;
5208
5209 // Scalar Reduce maxNum Pairwise (Floating Point)
5210 defm FMAXNMPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b0, 0b01100, "fmaxnmp", 0>;
5211
5212 // Scalar Reduce minNum Pairwise (Floating Point)
5213 defm FMINNMPvv : NeonI_ScalarPair_SD_sizes<0b1, 0b1, 0b01100, "fminnmp", 0>;
5214
5215 multiclass Neon_ScalarPair_SD_size_patterns<SDPatternOperator opnodeS,
5216                                             SDPatternOperator opnodeD,
5217                                             Instruction INSTS,
5218                                             Instruction INSTD> {
5219   def : Pat<(v1f32 (opnodeS (v2f32 VPR64:$Rn))),
5220             (INSTS VPR64:$Rn)>;
5221   def : Pat<(v1f64 (opnodeD (v2f64 VPR128:$Rn))),
5222             (INSTD VPR128:$Rn)>;
5223 }
5224
5225 // Patterns to match llvm.aarch64.* intrinsic for
5226 // Scalar Reduce Add, Max, Min, MaxiNum, MinNum Pairwise (Floating Point)
5227 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpfadd,
5228   int_aarch64_neon_vpfaddq, FADDPvv_S_2S, FADDPvv_D_2D>;
5229
5230 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpmax,
5231   int_aarch64_neon_vpmaxq, FMAXPvv_S_2S, FMAXPvv_D_2D>;
5232
5233 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpmin,
5234   int_aarch64_neon_vpminq, FMINPvv_S_2S, FMINPvv_D_2D>;
5235
5236 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpfmaxnm,
5237   int_aarch64_neon_vpfmaxnmq, FMAXNMPvv_S_2S, FMAXNMPvv_D_2D>;
5238
5239 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vpfminnm, 
5240   int_aarch64_neon_vpfminnmq, FMINNMPvv_S_2S, FMINNMPvv_D_2D>;
5241
5242 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vaddv, 
5243     int_aarch64_neon_vaddv, FADDPvv_S_2S, FADDPvv_D_2D>;
5244
5245 def : Pat<(v1f32 (int_aarch64_neon_vaddv (v4f32 VPR128:$Rn))),
5246           (FADDPvv_S_2S (v2f32
5247                (EXTRACT_SUBREG
5248                    (v4f32 (FADDP_4S (v4f32 VPR128:$Rn), (v4f32 VPR128:$Rn))),
5249                    sub_64)))>;
5250
5251 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vmaxv, 
5252     int_aarch64_neon_vmaxv, FMAXPvv_S_2S, FMAXPvv_D_2D>;
5253
5254 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vminv, 
5255     int_aarch64_neon_vminv, FMINPvv_S_2S, FMINPvv_D_2D>;
5256
5257 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vmaxnmv, 
5258     int_aarch64_neon_vmaxnmv, FMAXNMPvv_S_2S, FMAXNMPvv_D_2D>;
5259
5260 defm : Neon_ScalarPair_SD_size_patterns<int_aarch64_neon_vminnmv, 
5261     int_aarch64_neon_vminnmv, FMINNMPvv_S_2S, FMINNMPvv_D_2D>;
5262
5263 // Scalar by element Arithmetic
5264
5265 class NeonI_ScalarXIndexedElemArith<string asmop, bits<4> opcode,
5266                                     string rmlane, bit u, bit szhi, bit szlo,
5267                                     RegisterClass ResFPR, RegisterClass OpFPR,
5268                                     RegisterOperand OpVPR, Operand OpImm>
5269   : NeonI_ScalarXIndexedElem<u, szhi, szlo, opcode,
5270                              (outs ResFPR:$Rd),
5271                              (ins OpFPR:$Rn, OpVPR:$MRm, OpImm:$Imm),
5272                              asmop # "\t$Rd, $Rn, $MRm" # rmlane # "[$Imm]",
5273                              [],
5274                              NoItinerary> {
5275   bits<3> Imm;
5276   bits<5> MRm;
5277 }
5278
5279 class NeonI_ScalarXIndexedElemArith_Constraint_Impl<string asmop, bits<4> opcode,
5280                                                     string rmlane,
5281                                                     bit u, bit szhi, bit szlo,
5282                                                     RegisterClass ResFPR,
5283                                                     RegisterClass OpFPR,
5284                                                     RegisterOperand OpVPR,
5285                                                     Operand OpImm>
5286   : NeonI_ScalarXIndexedElem<u, szhi, szlo, opcode,
5287                              (outs ResFPR:$Rd),
5288                              (ins ResFPR:$src, OpFPR:$Rn, OpVPR:$MRm, OpImm:$Imm),
5289                              asmop # "\t$Rd, $Rn, $MRm" # rmlane # "[$Imm]",
5290                              [],
5291                              NoItinerary> {
5292   let Constraints = "$src = $Rd";
5293   bits<3> Imm;
5294   bits<5> MRm;
5295 }
5296
5297 // Scalar Floating Point  multiply (scalar, by element)
5298 def FMULssv_4S : NeonI_ScalarXIndexedElemArith<"fmul",
5299   0b1001, ".s", 0b0, 0b1, 0b0, FPR32, FPR32, VPR128, neon_uimm2_bare> {
5300   let Inst{11} = Imm{1}; // h
5301   let Inst{21} = Imm{0}; // l
5302   let Inst{20-16} = MRm;
5303 }
5304 def FMULddv_2D : NeonI_ScalarXIndexedElemArith<"fmul",
5305   0b1001, ".d", 0b0, 0b1, 0b1, FPR64, FPR64, VPR128, neon_uimm1_bare> {
5306   let Inst{11} = Imm{0}; // h
5307   let Inst{21} = 0b0;    // l
5308   let Inst{20-16} = MRm;
5309 }
5310
5311 // Scalar Floating Point  multiply extended (scalar, by element)
5312 def FMULXssv_4S : NeonI_ScalarXIndexedElemArith<"fmulx",
5313   0b1001, ".s", 0b1, 0b1, 0b0, FPR32, FPR32, VPR128, neon_uimm2_bare> {
5314   let Inst{11} = Imm{1}; // h
5315   let Inst{21} = Imm{0}; // l
5316   let Inst{20-16} = MRm;
5317 }
5318 def FMULXddv_2D : NeonI_ScalarXIndexedElemArith<"fmulx",
5319   0b1001, ".d", 0b1, 0b1, 0b1, FPR64, FPR64, VPR128, neon_uimm1_bare> {
5320   let Inst{11} = Imm{0}; // h
5321   let Inst{21} = 0b0;    // l
5322   let Inst{20-16} = MRm;
5323 }
5324
5325 multiclass Neon_ScalarXIndexedElem_MUL_MULX_Patterns<
5326   SDPatternOperator opnode,
5327   Instruction INST,
5328   ValueType ResTy, RegisterClass FPRC, ValueType OpTy, Operand OpImm,
5329   ValueType OpNTy, ValueType ExTy, Operand OpNImm> {
5330
5331   def  : Pat<(ResTy (opnode (ResTy FPRC:$Rn),
5332                (ResTy (vector_extract (OpTy VPR128:$MRm), OpImm:$Imm)))),
5333              (ResTy (INST (ResTy FPRC:$Rn), (OpTy VPR128:$MRm), OpImm:$Imm))>;
5334
5335   def  : Pat<(ResTy (opnode (ResTy FPRC:$Rn),
5336                (ResTy (vector_extract (OpNTy VPR64:$MRm), OpNImm:$Imm)))),
5337              (ResTy (INST (ResTy FPRC:$Rn),
5338                (ExTy (SUBREG_TO_REG (i64 0), VPR64:$MRm, sub_64)),
5339                OpNImm:$Imm))>;
5340
5341   // swapped operands
5342   def  : Pat<(ResTy (opnode
5343                (ResTy (vector_extract (OpTy VPR128:$MRm), OpImm:$Imm)),
5344                (ResTy FPRC:$Rn))),
5345              (ResTy (INST (ResTy FPRC:$Rn), (OpTy VPR128:$MRm), OpImm:$Imm))>;
5346
5347   def  : Pat<(ResTy (opnode
5348                (ResTy (vector_extract (OpNTy VPR64:$MRm), OpNImm:$Imm)),
5349                (ResTy FPRC:$Rn))),
5350              (ResTy (INST (ResTy FPRC:$Rn),
5351                (ExTy (SUBREG_TO_REG (i64 0), VPR64:$MRm, sub_64)),
5352                OpNImm:$Imm))>;
5353 }
5354
5355 // Patterns for Scalar Floating Point  multiply (scalar, by element)
5356 defm : Neon_ScalarXIndexedElem_MUL_MULX_Patterns<fmul, FMULssv_4S,
5357   f32, FPR32, v4f32, neon_uimm2_bare, v2f32, v4f32, neon_uimm1_bare>;
5358 defm : Neon_ScalarXIndexedElem_MUL_MULX_Patterns<fmul, FMULddv_2D,
5359   f64, FPR64, v2f64, neon_uimm1_bare, v1f64, v2f64, neon_uimm0_bare>;
5360
5361 // Patterns for Scalar Floating Point  multiply extended (scalar, by element)
5362 defm : Neon_ScalarXIndexedElem_MUL_MULX_Patterns<int_aarch64_neon_vmulx,
5363   FMULXssv_4S, f32, FPR32, v4f32, neon_uimm2_bare,
5364   v2f32, v4f32, neon_uimm1_bare>;
5365 defm : Neon_ScalarXIndexedElem_MUL_MULX_Patterns<int_aarch64_neon_vmulx,
5366   FMULXddv_2D, f64, FPR64, v2f64, neon_uimm1_bare,
5367   v1f64, v2f64, neon_uimm0_bare>;
5368
5369
5370 // Scalar Floating Point fused multiply-add (scalar, by element)
5371 def FMLAssv_4S : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"fmla",
5372   0b0001, ".s", 0b0, 0b1, 0b0, FPR32, FPR32, VPR128, neon_uimm2_bare> {
5373   let Inst{11} = Imm{1}; // h
5374   let Inst{21} = Imm{0}; // l
5375   let Inst{20-16} = MRm;
5376 }
5377 def FMLAddv_2D : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"fmla",
5378   0b0001, ".d", 0b0, 0b1, 0b1, FPR64, FPR64, VPR128, neon_uimm1_bare> {
5379   let Inst{11} = Imm{0}; // h
5380   let Inst{21} = 0b0;    // l
5381   let Inst{20-16} = MRm;
5382 }
5383
5384 // Scalar Floating Point fused multiply-subtract (scalar, by element)
5385 def FMLSssv_4S : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"fmls",
5386   0b0101, ".s", 0b0, 0b1, 0b0, FPR32, FPR32, VPR128, neon_uimm2_bare> {
5387   let Inst{11} = Imm{1}; // h
5388   let Inst{21} = Imm{0}; // l
5389   let Inst{20-16} = MRm;
5390 }
5391 def FMLSddv_2D : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"fmls",
5392   0b0101, ".d", 0b0, 0b1, 0b1, FPR64, FPR64, VPR128, neon_uimm1_bare> {
5393   let Inst{11} = Imm{0}; // h
5394   let Inst{21} = 0b0;    // l
5395   let Inst{20-16} = MRm;
5396 }
5397 // We are allowed to match the fma instruction regardless of compile options.
5398 multiclass Neon_ScalarXIndexedElem_FMA_Patterns<
5399   Instruction FMLAI, Instruction FMLSI,
5400   ValueType ResTy, RegisterClass FPRC, ValueType OpTy, Operand OpImm,
5401   ValueType OpNTy, ValueType ExTy, Operand OpNImm> {
5402   // fmla
5403   def  : Pat<(ResTy (fma (ResTy FPRC:$Rn),
5404                (ResTy (vector_extract (OpTy VPR128:$MRm), OpImm:$Imm)),
5405                (ResTy FPRC:$Ra))),
5406              (ResTy (FMLAI (ResTy FPRC:$Ra),
5407                (ResTy FPRC:$Rn), (OpTy VPR128:$MRm), OpImm:$Imm))>;
5408
5409   def  : Pat<(ResTy (fma (ResTy FPRC:$Rn),
5410                (ResTy (vector_extract (OpNTy VPR64:$MRm), OpNImm:$Imm)),
5411                (ResTy FPRC:$Ra))),
5412              (ResTy (FMLAI (ResTy FPRC:$Ra),
5413                (ResTy FPRC:$Rn),
5414                (ExTy (SUBREG_TO_REG (i64 0), VPR64:$MRm, sub_64)),
5415                OpNImm:$Imm))>;
5416
5417   // swapped fmla operands
5418   def  : Pat<(ResTy (fma
5419                (ResTy (vector_extract (OpTy VPR128:$MRm), OpImm:$Imm)),
5420                (ResTy FPRC:$Rn),
5421                (ResTy FPRC:$Ra))),
5422              (ResTy (FMLAI (ResTy FPRC:$Ra),
5423                (ResTy FPRC:$Rn), (OpTy VPR128:$MRm), OpImm:$Imm))>;
5424
5425   def  : Pat<(ResTy (fma
5426                (ResTy (vector_extract (OpNTy VPR64:$MRm), OpNImm:$Imm)),
5427                (ResTy FPRC:$Rn),
5428                (ResTy FPRC:$Ra))),
5429              (ResTy (FMLAI (ResTy FPRC:$Ra),
5430                (ResTy FPRC:$Rn),
5431                (ExTy (SUBREG_TO_REG (i64 0), VPR64:$MRm, sub_64)),
5432                OpNImm:$Imm))>;
5433
5434   // fmls
5435   def  : Pat<(ResTy (fma (ResTy FPRC:$Rn),
5436                (fneg (ResTy (vector_extract (OpTy VPR128:$MRm), OpImm:$Imm))),
5437                (ResTy FPRC:$Ra))),
5438              (ResTy (FMLSI (ResTy FPRC:$Ra),
5439                (ResTy FPRC:$Rn), (OpTy VPR128:$MRm), OpImm:$Imm))>;
5440
5441   def  : Pat<(ResTy (fma (ResTy FPRC:$Rn),
5442                (fneg (ResTy (vector_extract (OpNTy VPR64:$MRm), OpNImm:$Imm))),
5443                (ResTy FPRC:$Ra))),
5444              (ResTy (FMLSI (ResTy FPRC:$Ra),
5445                (ResTy FPRC:$Rn),
5446                (ExTy (SUBREG_TO_REG (i64 0), VPR64:$MRm, sub_64)),
5447                OpNImm:$Imm))>;
5448
5449   // swapped fmls operands
5450   def  : Pat<(ResTy (fma
5451                (fneg (ResTy (vector_extract (OpTy VPR128:$MRm), OpImm:$Imm))),
5452                (ResTy FPRC:$Rn),
5453                (ResTy FPRC:$Ra))),
5454              (ResTy (FMLSI (ResTy FPRC:$Ra),
5455                (ResTy FPRC:$Rn), (OpTy VPR128:$MRm), OpImm:$Imm))>;
5456
5457   def  : Pat<(ResTy (fma
5458                (fneg (ResTy (vector_extract (OpNTy VPR64:$MRm), OpNImm:$Imm))),
5459                (ResTy FPRC:$Rn),
5460                (ResTy FPRC:$Ra))),
5461              (ResTy (FMLSI (ResTy FPRC:$Ra),
5462                (ResTy FPRC:$Rn),
5463                (ExTy (SUBREG_TO_REG (i64 0), VPR64:$MRm, sub_64)),
5464                OpNImm:$Imm))>;
5465 }
5466
5467 // Scalar Floating Point fused multiply-add and
5468 // multiply-subtract (scalar, by element)
5469 defm : Neon_ScalarXIndexedElem_FMA_Patterns<FMLAssv_4S, FMLSssv_4S,
5470   f32, FPR32, v4f32, neon_uimm2_bare, v2f32, v4f32, neon_uimm1_bare>;
5471 defm : Neon_ScalarXIndexedElem_FMA_Patterns<FMLAddv_2D, FMLSddv_2D,
5472   f64, FPR64, v2f64, neon_uimm1_bare, v1f64, v2f64, neon_uimm0_bare>;
5473 defm : Neon_ScalarXIndexedElem_FMA_Patterns<FMLAddv_2D, FMLSddv_2D,
5474   f64, FPR64, v2f64, neon_uimm1_bare, v1f64, v2f64, neon_uimm0_bare>;
5475
5476 // Scalar Signed saturating doubling multiply long (scalar, by element)
5477 def SQDMULLshv_4H : NeonI_ScalarXIndexedElemArith<"sqdmull",
5478   0b1011, ".h", 0b0, 0b0, 0b1, FPR32, FPR16, VPR64Lo, neon_uimm2_bare> {
5479   let Inst{11} = 0b0; // h
5480   let Inst{21} = Imm{1}; // l
5481   let Inst{20} = Imm{0}; // m
5482   let Inst{19-16} = MRm{3-0};
5483 }
5484 def SQDMULLshv_8H : NeonI_ScalarXIndexedElemArith<"sqdmull",
5485   0b1011, ".h", 0b0, 0b0, 0b1, FPR32, FPR16, VPR128Lo, neon_uimm3_bare> {
5486   let Inst{11} = Imm{2}; // h
5487   let Inst{21} = Imm{1}; // l
5488   let Inst{20} = Imm{0}; // m
5489   let Inst{19-16} = MRm{3-0};
5490 }
5491 def SQDMULLdsv_2S : NeonI_ScalarXIndexedElemArith<"sqdmull",
5492   0b1011, ".s", 0b0, 0b1, 0b0, FPR64, FPR32, VPR64, neon_uimm1_bare> {
5493   let Inst{11} = 0b0;    // h
5494   let Inst{21} = Imm{0}; // l
5495   let Inst{20-16} = MRm;
5496 }
5497 def SQDMULLdsv_4S : NeonI_ScalarXIndexedElemArith<"sqdmull",
5498   0b1011, ".s", 0b0, 0b1, 0b0, FPR64, FPR32, VPR128, neon_uimm2_bare> {
5499   let Inst{11} = Imm{1};    // h
5500   let Inst{21} = Imm{0};    // l
5501   let Inst{20-16} = MRm;
5502 }
5503
5504 multiclass Neon_ScalarXIndexedElem_MUL_Patterns<
5505   SDPatternOperator opnode,
5506   Instruction INST,
5507   ValueType ResTy, RegisterClass FPRC,
5508   ValueType OpVTy, ValueType OpTy,
5509   ValueType VecOpTy, ValueType ExTy, RegisterOperand VPRC, Operand OpImm> {
5510
5511   def  : Pat<(ResTy (opnode (OpVTy FPRC:$Rn),
5512                (OpVTy (scalar_to_vector
5513                  (ExTy (vector_extract (VecOpTy VPRC:$MRm), OpImm:$Imm)))))),
5514              (ResTy (INST (OpVTy FPRC:$Rn), (VecOpTy VPRC:$MRm), OpImm:$Imm))>;
5515
5516   //swapped operands
5517   def  : Pat<(ResTy (opnode
5518                (OpVTy (scalar_to_vector
5519                  (ExTy (vector_extract (VecOpTy VPRC:$MRm), OpImm:$Imm)))),
5520                  (OpVTy FPRC:$Rn))),
5521              (ResTy (INST (OpVTy FPRC:$Rn), (VecOpTy VPRC:$MRm), OpImm:$Imm))>;
5522 }
5523
5524
5525 // Patterns for Scalar Signed saturating doubling
5526 // multiply long (scalar, by element)
5527 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmull,
5528   SQDMULLshv_4H, v1i32, FPR16, v1i16, i16, v4i16,
5529   i32, VPR64Lo, neon_uimm2_bare>;
5530 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmull,
5531   SQDMULLshv_8H, v1i32, FPR16, v1i16, i16, v8i16,
5532   i32, VPR128Lo, neon_uimm3_bare>;
5533 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmull,
5534   SQDMULLdsv_2S, v1i64, FPR32, v1i32, i32, v2i32,
5535   i32, VPR64Lo, neon_uimm1_bare>;
5536 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmull,
5537   SQDMULLdsv_4S, v1i64, FPR32, v1i32, i32, v4i32,
5538   i32, VPR128Lo, neon_uimm2_bare>;
5539
5540 // Scalar Signed saturating doubling multiply-add long (scalar, by element)
5541 def SQDMLALshv_4H : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlal",
5542   0b0011, ".h", 0b0, 0b0, 0b1, FPR32, FPR16, VPR64Lo, neon_uimm2_bare> {
5543   let Inst{11} = 0b0; // h
5544   let Inst{21} = Imm{1}; // l
5545   let Inst{20} = Imm{0}; // m
5546   let Inst{19-16} = MRm{3-0};
5547 }
5548 def SQDMLALshv_8H : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlal",
5549   0b0011, ".h", 0b0, 0b0, 0b1, FPR32, FPR16, VPR128Lo, neon_uimm3_bare> {
5550   let Inst{11} = Imm{2}; // h
5551   let Inst{21} = Imm{1}; // l
5552   let Inst{20} = Imm{0}; // m
5553   let Inst{19-16} = MRm{3-0};
5554 }
5555 def SQDMLALdsv_2S : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlal",
5556   0b0011, ".s", 0b0, 0b1, 0b0, FPR64, FPR32, VPR64, neon_uimm1_bare> {
5557   let Inst{11} = 0b0;    // h
5558   let Inst{21} = Imm{0}; // l
5559   let Inst{20-16} = MRm;
5560 }
5561 def SQDMLALdsv_4S : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlal",
5562   0b0011, ".s", 0b0, 0b1, 0b0, FPR64, FPR32, VPR128, neon_uimm2_bare> {
5563   let Inst{11} = Imm{1};    // h
5564   let Inst{21} = Imm{0};    // l
5565   let Inst{20-16} = MRm;
5566 }
5567
5568 // Scalar Signed saturating doubling
5569 // multiply-subtract long (scalar, by element)
5570 def SQDMLSLshv_4H : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlsl",
5571   0b0111, ".h", 0b0, 0b0, 0b1, FPR32, FPR16, VPR64Lo, neon_uimm2_bare> {
5572   let Inst{11} = 0b0; // h
5573   let Inst{21} = Imm{1}; // l
5574   let Inst{20} = Imm{0}; // m
5575   let Inst{19-16} = MRm{3-0};
5576 }
5577 def SQDMLSLshv_8H : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlsl",
5578   0b0111, ".h", 0b0, 0b0, 0b1, FPR32, FPR16, VPR128Lo, neon_uimm3_bare> {
5579   let Inst{11} = Imm{2}; // h
5580   let Inst{21} = Imm{1}; // l
5581   let Inst{20} = Imm{0}; // m
5582   let Inst{19-16} = MRm{3-0};
5583 }
5584 def SQDMLSLdsv_2S : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlsl",
5585   0b0111, ".s", 0b0, 0b1, 0b0, FPR64, FPR32, VPR64, neon_uimm1_bare> {
5586   let Inst{11} = 0b0;    // h
5587   let Inst{21} = Imm{0}; // l
5588   let Inst{20-16} = MRm;
5589 }
5590 def SQDMLSLdsv_4S : NeonI_ScalarXIndexedElemArith_Constraint_Impl<"sqdmlsl",
5591   0b0111, ".s", 0b0, 0b1, 0b0, FPR64, FPR32, VPR128, neon_uimm2_bare> {
5592   let Inst{11} = Imm{1};    // h
5593   let Inst{21} = Imm{0};    // l
5594   let Inst{20-16} = MRm;
5595 }
5596
5597 multiclass Neon_ScalarXIndexedElem_MLAL_Patterns<
5598   SDPatternOperator opnode,
5599   SDPatternOperator coreopnode,
5600   Instruction INST,
5601   ValueType ResTy, RegisterClass ResFPRC, RegisterClass FPRC,
5602   ValueType OpTy,
5603   ValueType OpVTy, ValueType ExTy, RegisterOperand VPRC, Operand OpImm> {
5604
5605   def  : Pat<(ResTy (opnode
5606                (ResTy ResFPRC:$Ra),
5607                (ResTy (coreopnode (OpTy FPRC:$Rn),
5608                  (OpTy (scalar_to_vector
5609                    (ExTy (vector_extract (OpVTy VPRC:$MRm), OpImm:$Imm)))))))),
5610              (ResTy (INST (ResTy ResFPRC:$Ra),
5611                (OpTy FPRC:$Rn), (OpVTy VPRC:$MRm), OpImm:$Imm))>;
5612
5613   // swapped operands
5614   def  : Pat<(ResTy (opnode
5615                (ResTy ResFPRC:$Ra),
5616                (ResTy (coreopnode
5617                  (OpTy (scalar_to_vector
5618                    (ExTy (vector_extract (OpVTy VPRC:$MRm), OpImm:$Imm)))),
5619                  (OpTy FPRC:$Rn))))),
5620              (ResTy (INST (ResTy ResFPRC:$Ra),
5621                (OpTy FPRC:$Rn), (OpVTy VPRC:$MRm), OpImm:$Imm))>;
5622 }
5623
5624 // Patterns for Scalar Signed saturating
5625 // doubling multiply-add long (scalar, by element)
5626 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqadds,
5627   int_arm_neon_vqdmull, SQDMLALshv_4H, v1i32, FPR32, FPR16, v1i16, v4i16,
5628   i32, VPR64Lo, neon_uimm2_bare>;
5629 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqadds,
5630   int_arm_neon_vqdmull, SQDMLALshv_8H, v1i32, FPR32, FPR16, v1i16, v8i16,
5631   i32, VPR128Lo, neon_uimm3_bare>;
5632 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqadds,
5633   int_arm_neon_vqdmull, SQDMLALdsv_2S, v1i64, FPR64, FPR32, v1i32, v2i32,
5634   i32, VPR64Lo, neon_uimm1_bare>;
5635 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqadds,
5636   int_arm_neon_vqdmull, SQDMLALdsv_4S, v1i64, FPR64, FPR32, v1i32, v4i32,
5637   i32, VPR128Lo, neon_uimm2_bare>;
5638
5639 // Patterns for Scalar Signed saturating
5640 // doubling multiply-sub long (scalar, by element)
5641 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqsubs,
5642   int_arm_neon_vqdmull, SQDMLSLshv_4H, v1i32, FPR32, FPR16, v1i16, v4i16,
5643   i32, VPR64Lo, neon_uimm2_bare>;
5644 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqsubs,
5645   int_arm_neon_vqdmull, SQDMLSLshv_8H, v1i32, FPR32, FPR16, v1i16, v8i16,
5646   i32, VPR128Lo, neon_uimm3_bare>;
5647 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqsubs,
5648   int_arm_neon_vqdmull, SQDMLSLdsv_2S, v1i64, FPR64, FPR32, v1i32, v2i32,
5649   i32, VPR64Lo, neon_uimm1_bare>;
5650 defm : Neon_ScalarXIndexedElem_MLAL_Patterns<int_arm_neon_vqsubs,
5651   int_arm_neon_vqdmull, SQDMLSLdsv_4S, v1i64, FPR64, FPR32, v1i32, v4i32,
5652   i32, VPR128Lo, neon_uimm2_bare>;
5653
5654
5655 // Scalar Signed saturating doubling multiply returning
5656 // high half (scalar, by element)
5657 def SQDMULHhhv_4H : NeonI_ScalarXIndexedElemArith<"sqdmulh",
5658   0b1100, ".h", 0b0, 0b0, 0b1, FPR16, FPR16, VPR64Lo, neon_uimm2_bare> {
5659   let Inst{11} = 0b0; // h
5660   let Inst{21} = Imm{1}; // l
5661   let Inst{20} = Imm{0}; // m
5662   let Inst{19-16} = MRm{3-0};
5663 }
5664 def SQDMULHhhv_8H : NeonI_ScalarXIndexedElemArith<"sqdmulh",
5665   0b1100, ".h", 0b0, 0b0, 0b1, FPR16, FPR16, VPR128Lo, neon_uimm3_bare> {
5666   let Inst{11} = Imm{2}; // h
5667   let Inst{21} = Imm{1}; // l
5668   let Inst{20} = Imm{0}; // m
5669   let Inst{19-16} = MRm{3-0};
5670 }
5671 def SQDMULHssv_2S : NeonI_ScalarXIndexedElemArith<"sqdmulh",
5672   0b1100, ".s", 0b0, 0b1, 0b0, FPR32, FPR32, VPR64, neon_uimm1_bare> {
5673   let Inst{11} = 0b0;    // h
5674   let Inst{21} = Imm{0}; // l
5675   let Inst{20-16} = MRm;
5676 }
5677 def SQDMULHssv_4S : NeonI_ScalarXIndexedElemArith<"sqdmulh",
5678   0b1100, ".s", 0b0, 0b1, 0b0, FPR32, FPR32, VPR128, neon_uimm2_bare> {
5679   let Inst{11} = Imm{1};    // h
5680   let Inst{21} = Imm{0};    // l
5681   let Inst{20-16} = MRm;
5682 }
5683
5684 // Patterns for Scalar Signed saturating doubling multiply returning
5685 // high half (scalar, by element)
5686 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmulh,
5687   SQDMULHhhv_4H, v1i16, FPR16, v1i16, i16, v4i16,
5688   i32, VPR64Lo, neon_uimm2_bare>;
5689 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmulh,
5690   SQDMULHhhv_8H, v1i16, FPR16, v1i16, i16, v8i16,
5691   i32, VPR128Lo, neon_uimm3_bare>;
5692 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmulh,
5693   SQDMULHssv_2S, v1i32, FPR32, v1i32, i32, v2i32,
5694   i32, VPR64Lo, neon_uimm1_bare>;
5695 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqdmulh,
5696   SQDMULHssv_4S, v1i32, FPR32, v1i32, i32, v4i32,
5697   i32, VPR128Lo, neon_uimm2_bare>;
5698
5699 // Scalar Signed saturating rounding doubling multiply
5700 // returning high half (scalar, by element)
5701 def SQRDMULHhhv_4H : NeonI_ScalarXIndexedElemArith<"sqrdmulh",
5702   0b1101, ".h", 0b0, 0b0, 0b1, FPR16, FPR16, VPR64Lo, neon_uimm2_bare> {
5703   let Inst{11} = 0b0; // h
5704   let Inst{21} = Imm{1}; // l
5705   let Inst{20} = Imm{0}; // m
5706   let Inst{19-16} = MRm{3-0};
5707 }
5708 def SQRDMULHhhv_8H : NeonI_ScalarXIndexedElemArith<"sqrdmulh",
5709   0b1101, ".h", 0b0, 0b0, 0b1, FPR16, FPR16, VPR128Lo, neon_uimm3_bare> {
5710   let Inst{11} = Imm{2}; // h
5711   let Inst{21} = Imm{1}; // l
5712   let Inst{20} = Imm{0}; // m
5713   let Inst{19-16} = MRm{3-0};
5714 }
5715 def SQRDMULHssv_2S : NeonI_ScalarXIndexedElemArith<"sqrdmulh",
5716   0b1101, ".s", 0b0, 0b1, 0b0, FPR32, FPR32, VPR64, neon_uimm1_bare> {
5717   let Inst{11} = 0b0;    // h
5718   let Inst{21} = Imm{0}; // l
5719   let Inst{20-16} = MRm;
5720 }
5721 def SQRDMULHssv_4S : NeonI_ScalarXIndexedElemArith<"sqrdmulh",
5722   0b1101, ".s", 0b0, 0b1, 0b0, FPR32, FPR32, VPR128, neon_uimm2_bare> {
5723   let Inst{11} = Imm{1};    // h
5724   let Inst{21} = Imm{0};    // l
5725   let Inst{20-16} = MRm;
5726 }
5727
5728 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqrdmulh,
5729   SQRDMULHhhv_4H, v1i16, FPR16, v1i16, i16, v4i16, i32,
5730   VPR64Lo, neon_uimm2_bare>;
5731 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqrdmulh,
5732   SQRDMULHhhv_8H, v1i16, FPR16, v1i16, i16, v8i16, i32,
5733   VPR128Lo, neon_uimm3_bare>;
5734 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqrdmulh,
5735   SQRDMULHssv_2S, v1i32, FPR32, v1i32, i32, v2i32, i32,
5736   VPR64Lo, neon_uimm1_bare>;
5737 defm : Neon_ScalarXIndexedElem_MUL_Patterns<int_arm_neon_vqrdmulh,
5738   SQRDMULHssv_4S, v1i32, FPR32, v1i32, i32, v4i32, i32,
5739   VPR128Lo, neon_uimm2_bare>;
5740
5741 // Scalar Copy - DUP element to scalar
5742 class NeonI_Scalar_DUP<string asmop, string asmlane,
5743                        RegisterClass ResRC, RegisterOperand VPRC,
5744                        Operand OpImm>
5745   : NeonI_ScalarCopy<(outs ResRC:$Rd), (ins VPRC:$Rn, OpImm:$Imm),
5746                      asmop # "\t$Rd, $Rn." # asmlane # "[$Imm]",
5747                      [],
5748                      NoItinerary> {
5749   bits<4> Imm;
5750 }
5751
5752 def DUPbv_B : NeonI_Scalar_DUP<"dup", "b", FPR8, VPR128, neon_uimm4_bare> {
5753   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
5754 }
5755 def DUPhv_H : NeonI_Scalar_DUP<"dup", "h", FPR16, VPR128, neon_uimm3_bare> {
5756   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
5757 }
5758 def DUPsv_S : NeonI_Scalar_DUP<"dup", "s", FPR32, VPR128, neon_uimm2_bare> {
5759   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
5760 }
5761 def DUPdv_D : NeonI_Scalar_DUP<"dup", "d", FPR64, VPR128, neon_uimm1_bare> {
5762   let Inst{20-16} = {Imm, 0b1, 0b0, 0b0, 0b0};
5763 }
5764
5765 multiclass NeonI_Scalar_DUP_Elt_pattern<Instruction DUPI, ValueType ResTy,
5766   ValueType OpTy, Operand OpImm,
5767   ValueType OpNTy, ValueType ExTy, Operand OpNImm> {
5768   def : Pat<(ResTy (vector_extract (OpTy VPR128:$Rn), OpImm:$Imm)),
5769             (ResTy (DUPI (OpTy VPR128:$Rn), OpImm:$Imm))>;
5770
5771   def : Pat<(ResTy (vector_extract (OpNTy VPR64:$Rn), OpNImm:$Imm)),
5772             (ResTy (DUPI
5773               (ExTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5774                 OpNImm:$Imm))>;
5775 }
5776
5777 // Patterns for vector extract of FP data using scalar DUP instructions
5778 defm : NeonI_Scalar_DUP_Elt_pattern<DUPsv_S, f32,
5779   v4f32, neon_uimm2_bare, v2f32, v4f32, neon_uimm1_bare>;
5780 defm : NeonI_Scalar_DUP_Elt_pattern<DUPdv_D, f64,
5781   v2f64, neon_uimm1_bare, v1f64, v2f64, neon_uimm0_bare>;
5782
5783 multiclass NeonI_Scalar_DUP_Ext_Vec_pattern<Instruction DUPI,
5784   ValueType ResTy, ValueType OpTy,Operand OpLImm,
5785   ValueType NOpTy, ValueType ExTy, Operand OpNImm> {
5786
5787   def : Pat<(ResTy (extract_subvector (OpTy VPR128:$Rn), OpLImm:$Imm)),
5788             (ResTy (DUPI VPR128:$Rn, OpLImm:$Imm))>;
5789
5790   def : Pat<(ResTy (extract_subvector (NOpTy VPR64:$Rn), OpNImm:$Imm)),
5791             (ResTy (DUPI
5792               (ExTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5793                 OpNImm:$Imm))>;
5794 }
5795
5796 // Patterns for extract subvectors of v1ix data using scalar DUP instructions.
5797 defm : NeonI_Scalar_DUP_Ext_Vec_pattern<DUPbv_B, v1i8, v16i8, neon_uimm4_bare,
5798                                         v8i8, v16i8, neon_uimm3_bare>;
5799 defm : NeonI_Scalar_DUP_Ext_Vec_pattern<DUPhv_H, v1i16, v8i16, neon_uimm3_bare,
5800                                         v4i16, v8i16, neon_uimm2_bare>;
5801 defm : NeonI_Scalar_DUP_Ext_Vec_pattern<DUPsv_S, v1i32, v4i32, neon_uimm2_bare,
5802                                         v2i32, v4i32, neon_uimm1_bare>;
5803
5804 multiclass NeonI_Scalar_DUP_Copy_pattern1<Instruction DUPI, ValueType ResTy,
5805                                           ValueType OpTy, ValueType ElemTy,
5806                                           Operand OpImm, ValueType OpNTy,
5807                                           ValueType ExTy, Operand OpNImm> {
5808
5809   def : Pat<(ResTy (vector_insert (ResTy undef),
5810               (ElemTy (vector_extract (OpTy VPR128:$Rn), OpImm:$Imm)),
5811               (neon_uimm0_bare:$Imm))),
5812             (ResTy (DUPI (OpTy VPR128:$Rn), OpImm:$Imm))>;
5813
5814   def : Pat<(ResTy (vector_insert (ResTy undef),
5815               (ElemTy (vector_extract (OpNTy VPR64:$Rn), OpNImm:$Imm)),
5816               (OpNImm:$Imm))),
5817             (ResTy (DUPI
5818               (ExTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5819               OpNImm:$Imm))>;
5820 }
5821
5822 multiclass NeonI_Scalar_DUP_Copy_pattern2<Instruction DUPI, ValueType ResTy,
5823                                           ValueType OpTy, ValueType ElemTy,
5824                                           Operand OpImm, ValueType OpNTy,
5825                                           ValueType ExTy, Operand OpNImm> {
5826
5827   def : Pat<(ResTy (scalar_to_vector
5828               (ElemTy (vector_extract (OpTy VPR128:$Rn), OpImm:$Imm)))),
5829             (ResTy (DUPI (OpTy VPR128:$Rn), OpImm:$Imm))>;
5830
5831   def : Pat<(ResTy (scalar_to_vector
5832               (ElemTy (vector_extract (OpNTy VPR64:$Rn), OpNImm:$Imm)))),
5833             (ResTy (DUPI
5834               (ExTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
5835               OpNImm:$Imm))>;
5836 }
5837
5838 // Patterns for vector copy to v1ix and v1fx vectors using scalar DUP
5839 // instructions.
5840 defm : NeonI_Scalar_DUP_Copy_pattern1<DUPdv_D,
5841   v1i64, v2i64, i64, neon_uimm1_bare,
5842   v1i64, v2i64, neon_uimm0_bare>;
5843 defm : NeonI_Scalar_DUP_Copy_pattern1<DUPsv_S,
5844   v1i32, v4i32, i32, neon_uimm2_bare,
5845   v2i32, v4i32, neon_uimm1_bare>;
5846 defm : NeonI_Scalar_DUP_Copy_pattern1<DUPhv_H,
5847   v1i16, v8i16, i32, neon_uimm3_bare,
5848   v4i16, v8i16, neon_uimm2_bare>;
5849 defm : NeonI_Scalar_DUP_Copy_pattern1<DUPbv_B,
5850   v1i8, v16i8, i32, neon_uimm4_bare,
5851   v8i8, v16i8, neon_uimm3_bare>;
5852 defm : NeonI_Scalar_DUP_Copy_pattern1<DUPdv_D,
5853   v1f64, v2f64, f64, neon_uimm1_bare,
5854   v1f64, v2f64, neon_uimm0_bare>;
5855 defm : NeonI_Scalar_DUP_Copy_pattern1<DUPsv_S,
5856   v1f32, v4f32, f32, neon_uimm2_bare,
5857   v2f32, v4f32, neon_uimm1_bare>;
5858 defm : NeonI_Scalar_DUP_Copy_pattern2<DUPdv_D,
5859   v1i64, v2i64, i64, neon_uimm1_bare,
5860   v1i64, v2i64, neon_uimm0_bare>;
5861 defm : NeonI_Scalar_DUP_Copy_pattern2<DUPsv_S,
5862   v1i32, v4i32, i32, neon_uimm2_bare,
5863   v2i32, v4i32, neon_uimm1_bare>;
5864 defm : NeonI_Scalar_DUP_Copy_pattern2<DUPhv_H,
5865   v1i16, v8i16, i32, neon_uimm3_bare,
5866   v4i16, v8i16, neon_uimm2_bare>;
5867 defm : NeonI_Scalar_DUP_Copy_pattern2<DUPbv_B,
5868   v1i8, v16i8, i32, neon_uimm4_bare,
5869   v8i8, v16i8, neon_uimm3_bare>;
5870 defm : NeonI_Scalar_DUP_Copy_pattern2<DUPdv_D,
5871   v1f64, v2f64, f64, neon_uimm1_bare,
5872   v1f64, v2f64, neon_uimm0_bare>;
5873 defm : NeonI_Scalar_DUP_Copy_pattern2<DUPsv_S,
5874   v1f32, v4f32, f32, neon_uimm2_bare,
5875   v2f32, v4f32, neon_uimm1_bare>;
5876
5877 multiclass NeonI_Scalar_DUP_alias<string asmop, string asmlane,
5878                                   Instruction DUPI, Operand OpImm,
5879                                   RegisterClass ResRC> {
5880   def : NeonInstAlias<!strconcat(asmop, "$Rd, $Rn" # asmlane # "[$Imm]"),
5881           (DUPI ResRC:$Rd, VPR128:$Rn, OpImm:$Imm), 0b0>;
5882 }
5883
5884 // Aliases for Scalar copy - DUP element (scalar)
5885 // FIXME: This is actually the preferred syntax but TableGen can't deal with
5886 // custom printing of aliases.
5887 defm : NeonI_Scalar_DUP_alias<"mov", ".b", DUPbv_B, neon_uimm4_bare, FPR8>;
5888 defm : NeonI_Scalar_DUP_alias<"mov", ".h", DUPhv_H, neon_uimm3_bare, FPR16>;
5889 defm : NeonI_Scalar_DUP_alias<"mov", ".s", DUPsv_S, neon_uimm2_bare, FPR32>;
5890 defm : NeonI_Scalar_DUP_alias<"mov", ".d", DUPdv_D, neon_uimm1_bare, FPR64>;
5891
5892 multiclass NeonI_SDUP<PatFrag GetLow, PatFrag GetHigh, ValueType ResTy,
5893                       ValueType OpTy> {
5894   def : Pat<(ResTy (GetLow VPR128:$Rn)),
5895             (ResTy (EXTRACT_SUBREG (OpTy VPR128:$Rn), sub_64))>;
5896   def : Pat<(ResTy (GetHigh VPR128:$Rn)),
5897             (ResTy (DUPdv_D (OpTy VPR128:$Rn), 1))>;
5898 }
5899
5900 defm : NeonI_SDUP<Neon_Low16B, Neon_High16B, v8i8, v16i8>;
5901 defm : NeonI_SDUP<Neon_Low8H, Neon_High8H, v4i16, v8i16>;
5902 defm : NeonI_SDUP<Neon_Low4S, Neon_High4S, v2i32, v4i32>;
5903 defm : NeonI_SDUP<Neon_Low2D, Neon_High2D, v1i64, v2i64>;
5904 defm : NeonI_SDUP<Neon_Low4float, Neon_High4float, v2f32, v4f32>;
5905 defm : NeonI_SDUP<Neon_Low2double, Neon_High2double, v1f64, v2f64>;
5906
5907 //===----------------------------------------------------------------------===//
5908 // Non-Instruction Patterns
5909 //===----------------------------------------------------------------------===//
5910
5911 // 64-bit vector bitcasts...
5912
5913 def : Pat<(v1i64 (bitconvert (v8i8  VPR64:$src))), (v1i64 VPR64:$src)>;
5914 def : Pat<(v2f32 (bitconvert (v8i8  VPR64:$src))), (v2f32 VPR64:$src)>;
5915 def : Pat<(v2i32 (bitconvert (v8i8  VPR64:$src))), (v2i32 VPR64:$src)>;
5916 def : Pat<(v4i16 (bitconvert (v8i8  VPR64:$src))), (v4i16 VPR64:$src)>;
5917
5918 def : Pat<(v1i64 (bitconvert (v4i16  VPR64:$src))), (v1i64 VPR64:$src)>;
5919 def : Pat<(v2i32 (bitconvert (v4i16  VPR64:$src))), (v2i32 VPR64:$src)>;
5920 def : Pat<(v2f32 (bitconvert (v4i16  VPR64:$src))), (v2f32 VPR64:$src)>;
5921 def : Pat<(v8i8  (bitconvert (v4i16  VPR64:$src))), (v8i8 VPR64:$src)>;
5922
5923 def : Pat<(v1i64 (bitconvert (v2i32  VPR64:$src))), (v1i64 VPR64:$src)>;
5924 def : Pat<(v2f32 (bitconvert (v2i32  VPR64:$src))), (v2f32 VPR64:$src)>;
5925 def : Pat<(v4i16 (bitconvert (v2i32  VPR64:$src))), (v4i16 VPR64:$src)>;
5926 def : Pat<(v8i8  (bitconvert (v2i32  VPR64:$src))), (v8i8 VPR64:$src)>;
5927
5928 def : Pat<(v1i64 (bitconvert (v2f32  VPR64:$src))), (v1i64 VPR64:$src)>;
5929 def : Pat<(v2i32 (bitconvert (v2f32  VPR64:$src))), (v2i32 VPR64:$src)>;
5930 def : Pat<(v4i16 (bitconvert (v2f32  VPR64:$src))), (v4i16 VPR64:$src)>;
5931 def : Pat<(v8i8  (bitconvert (v2f32  VPR64:$src))), (v8i8 VPR64:$src)>;
5932
5933 def : Pat<(v2f32 (bitconvert (v1i64  VPR64:$src))), (v2f32 VPR64:$src)>;
5934 def : Pat<(v2i32 (bitconvert (v1i64  VPR64:$src))), (v2i32 VPR64:$src)>;
5935 def : Pat<(v4i16 (bitconvert (v1i64  VPR64:$src))), (v4i16 VPR64:$src)>;
5936 def : Pat<(v8i8  (bitconvert (v1i64  VPR64:$src))), (v8i8 VPR64:$src)>;
5937
5938 // ..and 128-bit vector bitcasts...
5939
5940 def : Pat<(v2f64 (bitconvert (v16i8  VPR128:$src))), (v2f64 VPR128:$src)>;
5941 def : Pat<(v2i64 (bitconvert (v16i8  VPR128:$src))), (v2i64 VPR128:$src)>;
5942 def : Pat<(v4f32 (bitconvert (v16i8  VPR128:$src))), (v4f32 VPR128:$src)>;
5943 def : Pat<(v4i32 (bitconvert (v16i8  VPR128:$src))), (v4i32 VPR128:$src)>;
5944 def : Pat<(v8i16 (bitconvert (v16i8  VPR128:$src))), (v8i16 VPR128:$src)>;
5945
5946 def : Pat<(v2f64 (bitconvert (v8i16  VPR128:$src))), (v2f64 VPR128:$src)>;
5947 def : Pat<(v2i64 (bitconvert (v8i16  VPR128:$src))), (v2i64 VPR128:$src)>;
5948 def : Pat<(v4i32 (bitconvert (v8i16  VPR128:$src))), (v4i32 VPR128:$src)>;
5949 def : Pat<(v4f32 (bitconvert (v8i16  VPR128:$src))), (v4f32 VPR128:$src)>;
5950 def : Pat<(v16i8 (bitconvert (v8i16  VPR128:$src))), (v16i8 VPR128:$src)>;
5951
5952 def : Pat<(v2f64 (bitconvert (v4i32  VPR128:$src))), (v2f64 VPR128:$src)>;
5953 def : Pat<(v2i64 (bitconvert (v4i32  VPR128:$src))), (v2i64 VPR128:$src)>;
5954 def : Pat<(v4f32 (bitconvert (v4i32  VPR128:$src))), (v4f32 VPR128:$src)>;
5955 def : Pat<(v8i16 (bitconvert (v4i32  VPR128:$src))), (v8i16 VPR128:$src)>;
5956 def : Pat<(v16i8 (bitconvert (v4i32  VPR128:$src))), (v16i8 VPR128:$src)>;
5957
5958 def : Pat<(v2f64 (bitconvert (v4f32  VPR128:$src))), (v2f64 VPR128:$src)>;
5959 def : Pat<(v2i64 (bitconvert (v4f32  VPR128:$src))), (v2i64 VPR128:$src)>;
5960 def : Pat<(v4i32 (bitconvert (v4f32  VPR128:$src))), (v4i32 VPR128:$src)>;
5961 def : Pat<(v8i16 (bitconvert (v4f32  VPR128:$src))), (v8i16 VPR128:$src)>;
5962 def : Pat<(v16i8 (bitconvert (v4f32  VPR128:$src))), (v16i8 VPR128:$src)>;
5963
5964 def : Pat<(v2f64 (bitconvert (v2i64  VPR128:$src))), (v2f64 VPR128:$src)>;
5965 def : Pat<(v4f32 (bitconvert (v2i64  VPR128:$src))), (v4f32 VPR128:$src)>;
5966 def : Pat<(v4i32 (bitconvert (v2i64  VPR128:$src))), (v4i32 VPR128:$src)>;
5967 def : Pat<(v8i16 (bitconvert (v2i64  VPR128:$src))), (v8i16 VPR128:$src)>;
5968 def : Pat<(v16i8 (bitconvert (v2i64  VPR128:$src))), (v16i8 VPR128:$src)>;
5969
5970 def : Pat<(v2i64 (bitconvert (v2f64  VPR128:$src))), (v2i64 VPR128:$src)>;
5971 def : Pat<(v4f32 (bitconvert (v2f64  VPR128:$src))), (v4f32 VPR128:$src)>;
5972 def : Pat<(v4i32 (bitconvert (v2f64  VPR128:$src))), (v4i32 VPR128:$src)>;
5973 def : Pat<(v8i16 (bitconvert (v2f64  VPR128:$src))), (v8i16 VPR128:$src)>;
5974 def : Pat<(v16i8 (bitconvert (v2f64  VPR128:$src))), (v16i8 VPR128:$src)>;
5975
5976
5977 // ...and scalar bitcasts...
5978 def : Pat<(f16 (bitconvert (v1i16  FPR16:$src))), (f16 FPR16:$src)>;
5979 def : Pat<(f32 (bitconvert (v1i32  FPR32:$src))), (f32 FPR32:$src)>;
5980 def : Pat<(f64 (bitconvert (v1i64  FPR64:$src))), (f64 FPR64:$src)>;
5981 def : Pat<(f32 (bitconvert (v1f32  FPR32:$src))), (f32 FPR32:$src)>;
5982 def : Pat<(f64 (bitconvert (v1f64  FPR64:$src))), (f64 FPR64:$src)>;
5983
5984 def : Pat<(i64 (bitconvert (v1i64  FPR64:$src))), (FMOVxd $src)>;
5985 def : Pat<(i64 (bitconvert (v1f64  FPR64:$src))), (FMOVxd $src)>;
5986 def : Pat<(i64 (bitconvert (v2i32  FPR64:$src))), (FMOVxd $src)>;
5987 def : Pat<(i64 (bitconvert (v2f32  FPR64:$src))), (FMOVxd $src)>;
5988 def : Pat<(i64 (bitconvert (v4i16  FPR64:$src))), (FMOVxd $src)>;
5989 def : Pat<(i64 (bitconvert (v8i8  FPR64:$src))), (FMOVxd $src)>;
5990
5991 def : Pat<(i32 (bitconvert (v1i32  FPR32:$src))), (FMOVws $src)>;
5992
5993 def : Pat<(v8i8  (bitconvert (v1i64  VPR64:$src))), (v8i8 VPR64:$src)>;
5994 def : Pat<(v4i16 (bitconvert (v1i64  VPR64:$src))), (v4i16 VPR64:$src)>;
5995 def : Pat<(v2i32 (bitconvert (v1i64  VPR64:$src))), (v2i32 VPR64:$src)>;
5996
5997 def : Pat<(f64   (bitconvert (v8i8  VPR64:$src))), (f64 VPR64:$src)>;
5998 def : Pat<(f64   (bitconvert (v4i16  VPR64:$src))), (f64 VPR64:$src)>;
5999 def : Pat<(f64   (bitconvert (v2i32  VPR64:$src))), (f64 VPR64:$src)>;
6000 def : Pat<(f64   (bitconvert (v2f32  VPR64:$src))), (f64 VPR64:$src)>;
6001 def : Pat<(f64   (bitconvert (v1i64  VPR64:$src))), (f64 VPR64:$src)>;
6002
6003 def : Pat<(f128  (bitconvert (v16i8  VPR128:$src))), (f128 VPR128:$src)>;
6004 def : Pat<(f128  (bitconvert (v8i16  VPR128:$src))), (f128 VPR128:$src)>;
6005 def : Pat<(f128  (bitconvert (v4i32  VPR128:$src))), (f128 VPR128:$src)>;
6006 def : Pat<(f128  (bitconvert (v2i64  VPR128:$src))), (f128 VPR128:$src)>;
6007 def : Pat<(f128  (bitconvert (v4f32  VPR128:$src))), (f128 VPR128:$src)>;
6008 def : Pat<(f128  (bitconvert (v2f64  VPR128:$src))), (f128 VPR128:$src)>;
6009
6010 def : Pat<(v1i16 (bitconvert (f16  FPR16:$src))), (v1i16 FPR16:$src)>;
6011 def : Pat<(v1i32 (bitconvert (f32  FPR32:$src))), (v1i32 FPR32:$src)>;
6012 def : Pat<(v1i64 (bitconvert (f64  FPR64:$src))), (v1i64 FPR64:$src)>;
6013 def : Pat<(v1f32 (bitconvert (f32  FPR32:$src))), (v1f32 FPR32:$src)>;
6014 def : Pat<(v1f64 (bitconvert (f64  FPR64:$src))), (v1f64 FPR64:$src)>;
6015
6016 def : Pat<(v1i64 (bitconvert (i64  GPR64:$src))), (FMOVdx $src)>;
6017 def : Pat<(v1f64 (bitconvert (i64  GPR64:$src))), (FMOVdx $src)>;
6018 def : Pat<(v2i32 (bitconvert (i64  GPR64:$src))), (FMOVdx $src)>;
6019 def : Pat<(v2f32 (bitconvert (i64  GPR64:$src))), (FMOVdx $src)>;
6020 def : Pat<(v4i16 (bitconvert (i64  GPR64:$src))), (FMOVdx $src)>;
6021 def : Pat<(v8i8 (bitconvert (i64  GPR64:$src))), (FMOVdx $src)>;
6022
6023 def : Pat<(v1i32 (bitconvert (i32  GPR32:$src))), (FMOVsw $src)>;
6024
6025 def : Pat<(v8i8   (bitconvert (f64   FPR64:$src))), (v8i8 FPR64:$src)>;
6026 def : Pat<(v4i16  (bitconvert (f64   FPR64:$src))), (v4i16 FPR64:$src)>;
6027 def : Pat<(v2i32  (bitconvert (f64   FPR64:$src))), (v2i32 FPR64:$src)>;
6028 def : Pat<(v2f32  (bitconvert (f64   FPR64:$src))), (v2f32 FPR64:$src)>;
6029 def : Pat<(v1i64  (bitconvert (f64   FPR64:$src))), (v1i64 FPR64:$src)>;
6030
6031 def : Pat<(v16i8  (bitconvert (f128   FPR128:$src))), (v16i8 FPR128:$src)>;
6032 def : Pat<(v8i16  (bitconvert (f128   FPR128:$src))), (v8i16 FPR128:$src)>;
6033 def : Pat<(v4i32  (bitconvert (f128   FPR128:$src))), (v4i32 FPR128:$src)>;
6034 def : Pat<(v2i64  (bitconvert (f128   FPR128:$src))), (v2i64 FPR128:$src)>;
6035 def : Pat<(v4f32  (bitconvert (f128   FPR128:$src))), (v4f32 FPR128:$src)>;
6036 def : Pat<(v2f64  (bitconvert (f128   FPR128:$src))), (v2f64 FPR128:$src)>;
6037
6038 // Scalar Three Same
6039
6040 def neon_uimm3 : Operand<i64>,
6041                    ImmLeaf<i64, [{return Imm < 8;}]> {
6042   let ParserMatchClass = uimm3_asmoperand;
6043   let PrintMethod = "printUImmHexOperand";
6044 }
6045
6046 def neon_uimm4 : Operand<i64>,
6047                    ImmLeaf<i64, [{return Imm < 16;}]> {
6048   let ParserMatchClass = uimm4_asmoperand;
6049   let PrintMethod = "printUImmHexOperand";
6050 }
6051
6052 // Bitwise Extract
6053 class NeonI_Extract<bit q, bits<2> op2, string asmop,
6054                     string OpS, RegisterOperand OpVPR, Operand OpImm>
6055   : NeonI_BitExtract<q, op2, (outs OpVPR:$Rd),
6056                      (ins OpVPR:$Rn, OpVPR:$Rm, OpImm:$Index),
6057                      asmop # "\t$Rd." # OpS # ", $Rn." # OpS # 
6058                      ", $Rm." # OpS # ", $Index",
6059                      [],
6060                      NoItinerary>{
6061   bits<4> Index;
6062 }
6063
6064 def EXTvvvi_8b : NeonI_Extract<0b0, 0b00, "ext", "8b",
6065                                VPR64, neon_uimm3> {
6066   let Inst{14-11} = {0b0, Index{2}, Index{1}, Index{0}};
6067 }
6068
6069 def EXTvvvi_16b: NeonI_Extract<0b1, 0b00, "ext", "16b",
6070                                VPR128, neon_uimm4> {
6071   let Inst{14-11} = Index;
6072 }
6073
6074 class NI_Extract<ValueType OpTy, RegisterOperand OpVPR, Instruction INST,
6075                  Operand OpImm> 
6076   : Pat<(OpTy (Neon_vextract (OpTy OpVPR:$Rn), (OpTy OpVPR:$Rm),
6077                                  (i64 OpImm:$Imm))),
6078               (INST OpVPR:$Rn, OpVPR:$Rm, OpImm:$Imm)>;
6079
6080 def : NI_Extract<v8i8,  VPR64,  EXTvvvi_8b,  neon_uimm3>;
6081 def : NI_Extract<v4i16, VPR64,  EXTvvvi_8b,  neon_uimm3>;
6082 def : NI_Extract<v2i32, VPR64,  EXTvvvi_8b,  neon_uimm3>;
6083 def : NI_Extract<v1i64, VPR64,  EXTvvvi_8b,  neon_uimm3>;
6084 def : NI_Extract<v2f32, VPR64,  EXTvvvi_8b,  neon_uimm3>;
6085 def : NI_Extract<v1f64, VPR64,  EXTvvvi_8b,  neon_uimm3>;
6086 def : NI_Extract<v16i8, VPR128, EXTvvvi_16b, neon_uimm4>;
6087 def : NI_Extract<v8i16, VPR128, EXTvvvi_16b, neon_uimm4>;
6088 def : NI_Extract<v4i32, VPR128, EXTvvvi_16b, neon_uimm4>;
6089 def : NI_Extract<v2i64, VPR128, EXTvvvi_16b, neon_uimm4>;
6090 def : NI_Extract<v4f32, VPR128, EXTvvvi_16b, neon_uimm4>;
6091 def : NI_Extract<v2f64, VPR128, EXTvvvi_16b, neon_uimm4>;
6092
6093 // Table lookup
6094 class NI_TBL<bit q, bits<2> op2, bits<2> len, bit op,
6095              string asmop, string OpS, RegisterOperand OpVPR,
6096              RegisterOperand VecList>
6097   : NeonI_TBL<q, op2, len, op,
6098               (outs OpVPR:$Rd), (ins VecList:$Rn, OpVPR:$Rm),
6099               asmop # "\t$Rd." # OpS # ", $Rn, $Rm." # OpS,
6100               [],
6101               NoItinerary>;
6102
6103 // The vectors in look up table are always 16b
6104 multiclass NI_TBL_pat<bits<2> len, bit op, string asmop, string List> {
6105   def _8b  : NI_TBL<0, 0b00, len, op, asmop, "8b", VPR64,
6106                     !cast<RegisterOperand>(List # "16B_operand")>;
6107
6108   def _16b : NI_TBL<1, 0b00, len, op, asmop, "16b", VPR128,
6109                     !cast<RegisterOperand>(List # "16B_operand")>;
6110 }
6111
6112 defm TBL1 : NI_TBL_pat<0b00, 0b0, "tbl", "VOne">;
6113 defm TBL2 : NI_TBL_pat<0b01, 0b0, "tbl", "VPair">;
6114 defm TBL3 : NI_TBL_pat<0b10, 0b0, "tbl", "VTriple">;
6115 defm TBL4 : NI_TBL_pat<0b11, 0b0, "tbl", "VQuad">;
6116
6117 // Table lookup extention
6118 class NI_TBX<bit q, bits<2> op2, bits<2> len, bit op,
6119              string asmop, string OpS, RegisterOperand OpVPR,
6120              RegisterOperand VecList>
6121   : NeonI_TBL<q, op2, len, op,
6122               (outs OpVPR:$Rd), (ins OpVPR:$src, VecList:$Rn, OpVPR:$Rm),
6123               asmop # "\t$Rd." # OpS # ", $Rn, $Rm." # OpS,
6124               [],
6125               NoItinerary> {
6126   let Constraints = "$src = $Rd";
6127 }
6128
6129 // The vectors in look up table are always 16b
6130 multiclass NI_TBX_pat<bits<2> len, bit op, string asmop, string List> {
6131   def _8b  : NI_TBX<0, 0b00, len, op, asmop, "8b", VPR64,
6132                     !cast<RegisterOperand>(List # "16B_operand")>;
6133
6134   def _16b : NI_TBX<1, 0b00, len, op, asmop, "16b", VPR128,
6135                     !cast<RegisterOperand>(List # "16B_operand")>;
6136 }
6137
6138 defm TBX1 : NI_TBX_pat<0b00, 0b1, "tbx", "VOne">;
6139 defm TBX2 : NI_TBX_pat<0b01, 0b1, "tbx", "VPair">;
6140 defm TBX3 : NI_TBX_pat<0b10, 0b1, "tbx", "VTriple">;
6141 defm TBX4 : NI_TBX_pat<0b11, 0b1, "tbx", "VQuad">;
6142
6143 class NeonI_INS_main<string asmop, string Res, ValueType ResTy,
6144                      RegisterClass OpGPR, ValueType OpTy, Operand OpImm>
6145   : NeonI_copy<0b1, 0b0, 0b0011,
6146                (outs VPR128:$Rd), (ins VPR128:$src, OpGPR:$Rn, OpImm:$Imm),
6147                asmop # "\t$Rd." # Res # "[$Imm], $Rn",
6148                [(set (ResTy VPR128:$Rd),
6149                  (ResTy (vector_insert
6150                    (ResTy VPR128:$src),
6151                    (OpTy OpGPR:$Rn),
6152                    (OpImm:$Imm))))],
6153                NoItinerary> {
6154   bits<4> Imm;
6155   let Constraints = "$src = $Rd";
6156 }
6157
6158 //Insert element (vector, from main)
6159 def INSbw : NeonI_INS_main<"ins", "b", v16i8, GPR32, i32,
6160                            neon_uimm4_bare> {
6161   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6162 }
6163 def INShw : NeonI_INS_main<"ins", "h", v8i16, GPR32, i32,
6164                            neon_uimm3_bare> {
6165   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6166 }
6167 def INSsw : NeonI_INS_main<"ins", "s", v4i32, GPR32, i32,
6168                            neon_uimm2_bare> {
6169   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
6170 }
6171 def INSdx : NeonI_INS_main<"ins", "d", v2i64, GPR64, i64,
6172                            neon_uimm1_bare> {
6173   let Inst{20-16} = {Imm, 0b1, 0b0, 0b0, 0b0};
6174 }
6175
6176 def : NeonInstAlias<"mov $Rd.b[$Imm], $Rn",
6177                     (INSbw VPR128:$Rd, GPR32:$Rn, neon_uimm4_bare:$Imm), 0>;
6178 def : NeonInstAlias<"mov $Rd.h[$Imm], $Rn",
6179                     (INShw VPR128:$Rd, GPR32:$Rn, neon_uimm3_bare:$Imm), 0>;
6180 def : NeonInstAlias<"mov $Rd.s[$Imm], $Rn",
6181                     (INSsw VPR128:$Rd, GPR32:$Rn, neon_uimm2_bare:$Imm), 0>;
6182 def : NeonInstAlias<"mov $Rd.d[$Imm], $Rn",
6183                     (INSdx VPR128:$Rd, GPR64:$Rn, neon_uimm1_bare:$Imm), 0>;
6184
6185 class Neon_INS_main_pattern <ValueType ResTy,ValueType ExtResTy,
6186                              RegisterClass OpGPR, ValueType OpTy, 
6187                              Operand OpImm, Instruction INS> 
6188   : Pat<(ResTy (vector_insert
6189               (ResTy VPR64:$src),
6190               (OpTy OpGPR:$Rn),
6191               (OpImm:$Imm))),
6192         (ResTy (EXTRACT_SUBREG 
6193           (ExtResTy (INS (ExtResTy (SUBREG_TO_REG (i64 0), VPR64:$src, sub_64)),
6194             OpGPR:$Rn, OpImm:$Imm)), sub_64))>;
6195
6196 def INSbw_pattern : Neon_INS_main_pattern<v8i8, v16i8, GPR32, i32,
6197                                           neon_uimm3_bare, INSbw>;
6198 def INShw_pattern : Neon_INS_main_pattern<v4i16, v8i16, GPR32, i32,
6199                                           neon_uimm2_bare, INShw>;
6200 def INSsw_pattern : Neon_INS_main_pattern<v2i32, v4i32, GPR32, i32,
6201                                           neon_uimm1_bare, INSsw>;
6202 def INSdx_pattern : Neon_INS_main_pattern<v1i64, v2i64, GPR64, i64,
6203                                           neon_uimm0_bare, INSdx>;
6204
6205 class NeonI_INS_element<string asmop, string Res, Operand ResImm>
6206   : NeonI_insert<0b1, 0b1,
6207                  (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn, 
6208                  ResImm:$Immd, ResImm:$Immn),
6209                  asmop # "\t$Rd." # Res # "[$Immd], $Rn." # Res # "[$Immn]",
6210                  [],
6211                  NoItinerary> {
6212   let Constraints = "$src = $Rd";
6213   bits<4> Immd;
6214   bits<4> Immn;
6215 }
6216
6217 //Insert element (vector, from element)
6218 def INSELb : NeonI_INS_element<"ins", "b", neon_uimm4_bare> {
6219   let Inst{20-16} = {Immd{3}, Immd{2}, Immd{1}, Immd{0}, 0b1};
6220   let Inst{14-11} = {Immn{3}, Immn{2}, Immn{1}, Immn{0}};
6221 }
6222 def INSELh : NeonI_INS_element<"ins", "h", neon_uimm3_bare> {
6223   let Inst{20-16} = {Immd{2}, Immd{1}, Immd{0}, 0b1, 0b0};
6224   let Inst{14-11} = {Immn{2}, Immn{1}, Immn{0}, 0b0};
6225   // bit 11 is unspecified, but should be set to zero.
6226 }
6227 def INSELs : NeonI_INS_element<"ins", "s", neon_uimm2_bare> {
6228   let Inst{20-16} = {Immd{1}, Immd{0}, 0b1, 0b0, 0b0};
6229   let Inst{14-11} = {Immn{1}, Immn{0}, 0b0, 0b0};
6230   // bits 11-12 are unspecified, but should be set to zero.
6231 }
6232 def INSELd : NeonI_INS_element<"ins", "d", neon_uimm1_bare> {
6233   let Inst{20-16} = {Immd, 0b1, 0b0, 0b0, 0b0};
6234   let Inst{14-11} = {Immn{0}, 0b0, 0b0, 0b0};
6235   // bits 11-13 are unspecified, but should be set to zero.
6236 }
6237
6238 def : NeonInstAlias<"mov $Rd.b[$Immd], $Rn.b[$Immn]",
6239                     (INSELb VPR128:$Rd, VPR128:$Rn,
6240                       neon_uimm4_bare:$Immd, neon_uimm4_bare:$Immn), 0>;
6241 def : NeonInstAlias<"mov $Rd.h[$Immd], $Rn.h[$Immn]",
6242                     (INSELh VPR128:$Rd, VPR128:$Rn,
6243                       neon_uimm3_bare:$Immd, neon_uimm3_bare:$Immn), 0>;
6244 def : NeonInstAlias<"mov $Rd.s[$Immd], $Rn.s[$Immn]",
6245                     (INSELs VPR128:$Rd, VPR128:$Rn,
6246                       neon_uimm2_bare:$Immd, neon_uimm2_bare:$Immn), 0>;
6247 def : NeonInstAlias<"mov $Rd.d[$Immd], $Rn.d[$Immn]",
6248                     (INSELd VPR128:$Rd, VPR128:$Rn,
6249                       neon_uimm1_bare:$Immd, neon_uimm1_bare:$Immn), 0>;
6250
6251 multiclass Neon_INS_elt_pattern<ValueType ResTy, ValueType NaTy,
6252                                 ValueType MidTy, Operand StImm, Operand NaImm,
6253                                 Instruction INS> {
6254 def : Pat<(ResTy (vector_insert
6255             (ResTy VPR128:$src),
6256             (MidTy (vector_extract
6257               (ResTy VPR128:$Rn),
6258               (StImm:$Immn))),
6259             (StImm:$Immd))),
6260           (INS (ResTy VPR128:$src), (ResTy VPR128:$Rn),
6261               StImm:$Immd, StImm:$Immn)>;
6262
6263 def : Pat <(ResTy (vector_insert
6264              (ResTy VPR128:$src),
6265              (MidTy (vector_extract
6266                (NaTy VPR64:$Rn),
6267                (NaImm:$Immn))),
6268              (StImm:$Immd))),
6269            (INS (ResTy VPR128:$src),
6270              (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$Rn), sub_64)),
6271              StImm:$Immd, NaImm:$Immn)>;
6272
6273 def : Pat <(NaTy (vector_insert
6274              (NaTy VPR64:$src),
6275              (MidTy (vector_extract
6276                (ResTy VPR128:$Rn),
6277                (StImm:$Immn))),
6278              (NaImm:$Immd))),
6279            (NaTy (EXTRACT_SUBREG
6280              (ResTy (INS
6281                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$src), sub_64)),
6282                (ResTy VPR128:$Rn),
6283                NaImm:$Immd, StImm:$Immn)),
6284              sub_64))>;
6285
6286 def : Pat <(NaTy (vector_insert
6287              (NaTy VPR64:$src),
6288              (MidTy (vector_extract
6289                (NaTy VPR64:$Rn),
6290                (NaImm:$Immn))),
6291              (NaImm:$Immd))),
6292            (NaTy (EXTRACT_SUBREG
6293              (ResTy (INS
6294                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$src), sub_64)),
6295                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$Rn), sub_64)),
6296                NaImm:$Immd, NaImm:$Immn)),
6297              sub_64))>;
6298 }
6299
6300 defm : Neon_INS_elt_pattern<v4f32, v2f32, f32, neon_uimm2_bare,
6301                             neon_uimm1_bare, INSELs>;
6302 defm : Neon_INS_elt_pattern<v2f64, v1f64, f64, neon_uimm1_bare,
6303                             neon_uimm0_bare, INSELd>;
6304 defm : Neon_INS_elt_pattern<v16i8, v8i8, i32, neon_uimm4_bare,
6305                             neon_uimm3_bare, INSELb>;
6306 defm : Neon_INS_elt_pattern<v8i16, v4i16, i32, neon_uimm3_bare,
6307                             neon_uimm2_bare, INSELh>;
6308 defm : Neon_INS_elt_pattern<v4i32, v2i32, i32, neon_uimm2_bare,
6309                             neon_uimm1_bare, INSELs>;
6310 defm : Neon_INS_elt_pattern<v2i64, v1i64, i64, neon_uimm1_bare,
6311                             neon_uimm0_bare, INSELd>;
6312
6313 multiclass Neon_INS_elt_float_pattern<ValueType ResTy, ValueType NaTy,
6314                                       ValueType MidTy,
6315                                       RegisterClass OpFPR, Operand ResImm,
6316                                       SubRegIndex SubIndex, Instruction INS> {
6317 def : Pat <(ResTy (vector_insert
6318              (ResTy VPR128:$src),
6319              (MidTy OpFPR:$Rn),
6320              (ResImm:$Imm))),
6321            (INS (ResTy VPR128:$src),
6322              (ResTy (SUBREG_TO_REG (i64 0), OpFPR:$Rn, SubIndex)),
6323              ResImm:$Imm,
6324              (i64 0))>;
6325
6326 def : Pat <(NaTy (vector_insert
6327              (NaTy VPR64:$src),
6328              (MidTy OpFPR:$Rn),
6329              (ResImm:$Imm))),
6330            (NaTy (EXTRACT_SUBREG 
6331              (ResTy (INS 
6332                (ResTy (SUBREG_TO_REG (i64 0), (NaTy VPR64:$src), sub_64)),
6333                (ResTy (SUBREG_TO_REG (i64 0), (MidTy OpFPR:$Rn), SubIndex)),
6334                ResImm:$Imm,
6335                (i64 0))),
6336              sub_64))>;
6337 }
6338
6339 defm : Neon_INS_elt_float_pattern<v4f32, v2f32, f32, FPR32, neon_uimm2_bare,
6340                                   sub_32, INSELs>;
6341 defm : Neon_INS_elt_float_pattern<v2f64, v1f64, f64, FPR64, neon_uimm1_bare,
6342                                   sub_64, INSELd>;
6343
6344 class NeonI_SMOV<string asmop, string Res, bit Q,
6345                  ValueType OpTy, ValueType eleTy,
6346                  Operand OpImm, RegisterClass ResGPR, ValueType ResTy>
6347   : NeonI_copy<Q, 0b0, 0b0101,
6348                (outs ResGPR:$Rd), (ins VPR128:$Rn, OpImm:$Imm),
6349                asmop # "\t$Rd, $Rn." # Res # "[$Imm]",
6350                [(set (ResTy ResGPR:$Rd),
6351                  (ResTy (sext_inreg
6352                    (ResTy (vector_extract
6353                      (OpTy VPR128:$Rn), (OpImm:$Imm))),
6354                    eleTy)))],
6355                NoItinerary> {
6356   bits<4> Imm;
6357 }
6358
6359 //Signed integer move (main, from element)
6360 def SMOVwb : NeonI_SMOV<"smov", "b", 0b0, v16i8, i8, neon_uimm4_bare,
6361                         GPR32, i32> {
6362   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6363 }
6364 def SMOVwh : NeonI_SMOV<"smov", "h", 0b0, v8i16, i16, neon_uimm3_bare,
6365                         GPR32, i32> {
6366   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6367 }
6368 def SMOVxb : NeonI_SMOV<"smov", "b", 0b1, v16i8, i8, neon_uimm4_bare,
6369                         GPR64, i64> {
6370   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6371 }
6372 def SMOVxh : NeonI_SMOV<"smov", "h", 0b1, v8i16, i16, neon_uimm3_bare,
6373                         GPR64, i64> {
6374   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6375 }
6376 def SMOVxs : NeonI_SMOV<"smov", "s", 0b1, v4i32, i32, neon_uimm2_bare,
6377                         GPR64, i64> {
6378   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
6379 }
6380
6381 multiclass Neon_SMOVx_pattern <ValueType StTy, ValueType NaTy,
6382                                ValueType eleTy, Operand StImm,  Operand NaImm,
6383                                Instruction SMOVI> {
6384   def : Pat<(i64 (sext_inreg
6385               (i64 (anyext
6386                 (i32 (vector_extract
6387                   (StTy VPR128:$Rn), (StImm:$Imm))))),
6388               eleTy)),
6389             (SMOVI VPR128:$Rn, StImm:$Imm)>;
6390   
6391   def : Pat<(i64 (sext
6392               (i32 (vector_extract
6393                 (StTy VPR128:$Rn), (StImm:$Imm))))),
6394             (SMOVI VPR128:$Rn, StImm:$Imm)>;
6395   
6396   def : Pat<(i64 (sext_inreg
6397               (i64 (vector_extract
6398                 (NaTy VPR64:$Rn), (NaImm:$Imm))),
6399               eleTy)),
6400             (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6401               NaImm:$Imm)>;
6402   
6403   def : Pat<(i64 (sext_inreg
6404               (i64 (anyext
6405                 (i32 (vector_extract
6406                   (NaTy VPR64:$Rn), (NaImm:$Imm))))),
6407               eleTy)),
6408             (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6409               NaImm:$Imm)>;
6410   
6411   def : Pat<(i64 (sext
6412               (i32 (vector_extract
6413                 (NaTy VPR64:$Rn), (NaImm:$Imm))))),
6414             (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6415               NaImm:$Imm)>; 
6416 }
6417
6418 defm : Neon_SMOVx_pattern<v16i8, v8i8, i8, neon_uimm4_bare,
6419                           neon_uimm3_bare, SMOVxb>;
6420 defm : Neon_SMOVx_pattern<v8i16, v4i16, i16, neon_uimm3_bare,
6421                           neon_uimm2_bare, SMOVxh>;
6422 defm : Neon_SMOVx_pattern<v4i32, v2i32, i32, neon_uimm2_bare,
6423                           neon_uimm1_bare, SMOVxs>;
6424
6425 class Neon_SMOVw_pattern <ValueType StTy, ValueType NaTy,
6426                           ValueType eleTy, Operand StImm,  Operand NaImm,
6427                           Instruction SMOVI>
6428   : Pat<(i32 (sext_inreg
6429           (i32 (vector_extract
6430             (NaTy VPR64:$Rn), (NaImm:$Imm))),
6431           eleTy)),
6432         (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6433           NaImm:$Imm)>;
6434
6435 def : Neon_SMOVw_pattern<v16i8, v8i8, i8, neon_uimm4_bare,
6436                          neon_uimm3_bare, SMOVwb>;
6437 def : Neon_SMOVw_pattern<v8i16, v4i16, i16, neon_uimm3_bare,
6438                          neon_uimm2_bare, SMOVwh>;
6439
6440 class NeonI_UMOV<string asmop, string Res, bit Q,
6441                  ValueType OpTy, Operand OpImm,
6442                  RegisterClass ResGPR, ValueType ResTy>
6443   : NeonI_copy<Q, 0b0, 0b0111,
6444                (outs ResGPR:$Rd), (ins VPR128:$Rn, OpImm:$Imm),
6445                asmop # "\t$Rd, $Rn." # Res # "[$Imm]",
6446                [(set (ResTy ResGPR:$Rd),
6447                   (ResTy (vector_extract
6448                     (OpTy VPR128:$Rn), (OpImm:$Imm))))],
6449                NoItinerary> {
6450   bits<4> Imm;
6451 }
6452
6453 //Unsigned integer move (main, from element)
6454 def UMOVwb : NeonI_UMOV<"umov", "b", 0b0, v16i8, neon_uimm4_bare,
6455                          GPR32, i32> {
6456   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6457 }
6458 def UMOVwh : NeonI_UMOV<"umov", "h", 0b0, v8i16, neon_uimm3_bare,
6459                          GPR32, i32> {
6460   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6461 }
6462 def UMOVws : NeonI_UMOV<"umov", "s", 0b0, v4i32, neon_uimm2_bare,
6463                          GPR32, i32> {
6464   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
6465 }
6466 def UMOVxd : NeonI_UMOV<"umov", "d", 0b1, v2i64, neon_uimm1_bare,
6467                          GPR64, i64> {
6468   let Inst{20-16} = {Imm, 0b1, 0b0, 0b0, 0b0};
6469 }
6470
6471 def : NeonInstAlias<"mov $Rd, $Rn.s[$Imm]",
6472                     (UMOVws GPR32:$Rd, VPR128:$Rn, neon_uimm2_bare:$Imm), 0>;
6473 def : NeonInstAlias<"mov $Rd, $Rn.d[$Imm]",
6474                     (UMOVxd GPR64:$Rd, VPR128:$Rn, neon_uimm1_bare:$Imm), 0>;
6475
6476 class Neon_UMOV_pattern <ValueType StTy, ValueType NaTy, ValueType ResTy,
6477                          Operand StImm,  Operand NaImm,
6478                          Instruction SMOVI>
6479   : Pat<(ResTy (vector_extract
6480           (NaTy VPR64:$Rn), NaImm:$Imm)),
6481         (SMOVI (StTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6482           NaImm:$Imm)>;
6483
6484 def : Neon_UMOV_pattern<v16i8, v8i8, i32, neon_uimm4_bare,
6485                         neon_uimm3_bare, UMOVwb>;
6486 def : Neon_UMOV_pattern<v8i16, v4i16, i32, neon_uimm3_bare,
6487                         neon_uimm2_bare, UMOVwh>; 
6488 def : Neon_UMOV_pattern<v4i32, v2i32, i32, neon_uimm2_bare,
6489                         neon_uimm1_bare, UMOVws>;
6490
6491 def : Pat<(i32 (and
6492             (i32 (vector_extract
6493               (v16i8 VPR128:$Rn), (neon_uimm4_bare:$Imm))),
6494             255)),
6495           (UMOVwb VPR128:$Rn, neon_uimm4_bare:$Imm)>;
6496
6497 def : Pat<(i32 (and
6498             (i32 (vector_extract
6499               (v8i16 VPR128:$Rn), (neon_uimm3_bare:$Imm))),
6500             65535)),
6501           (UMOVwh VPR128:$Rn, neon_uimm3_bare:$Imm)>;
6502
6503 def : Pat<(i64 (zext
6504             (i32 (vector_extract
6505               (v2i64 VPR128:$Rn), (neon_uimm1_bare:$Imm))))),
6506           (UMOVxd VPR128:$Rn, neon_uimm1_bare:$Imm)>;
6507
6508 def : Pat<(i32 (and
6509             (i32 (vector_extract
6510               (v8i8 VPR64:$Rn), (neon_uimm3_bare:$Imm))),
6511             255)),
6512           (UMOVwb (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64),
6513             neon_uimm3_bare:$Imm)>;
6514
6515 def : Pat<(i32 (and
6516             (i32 (vector_extract
6517               (v4i16 VPR64:$Rn), (neon_uimm2_bare:$Imm))),
6518             65535)),
6519           (UMOVwh (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64),
6520             neon_uimm2_bare:$Imm)>;
6521
6522 def : Pat<(i64 (zext
6523             (i32 (vector_extract
6524               (v1i64 VPR64:$Rn), (neon_uimm0_bare:$Imm))))),
6525           (UMOVxd (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64),
6526             neon_uimm0_bare:$Imm)>;
6527
6528 // Additional copy patterns for scalar types
6529 def : Pat<(i32 (vector_extract (v1i8 FPR8:$Rn), (i64 0))),
6530           (UMOVwb (v16i8
6531             (SUBREG_TO_REG (i64 0), FPR8:$Rn, sub_8)), (i64 0))>;
6532
6533 def : Pat<(i32 (vector_extract (v1i16 FPR16:$Rn), (i64 0))),
6534           (UMOVwh (v8i16
6535             (SUBREG_TO_REG (i64 0), FPR16:$Rn, sub_16)), (i64 0))>;
6536
6537 def : Pat<(i32 (vector_extract (v1i32 FPR32:$Rn), (i64 0))),
6538           (FMOVws FPR32:$Rn)>;
6539
6540 def : Pat<(i64 (vector_extract (v1i64 FPR64:$Rn), (i64 0))),
6541           (FMOVxd FPR64:$Rn)>;
6542                
6543 def : Pat<(f64 (vector_extract (v1f64 FPR64:$Rn), (i64 0))),
6544           (f64 FPR64:$Rn)>;
6545
6546 def : Pat<(f32 (vector_extract (v1f32 FPR32:$Rn), (i64 0))),
6547           (f32 FPR32:$Rn)>;
6548
6549 def : Pat<(v1i8 (scalar_to_vector GPR32:$Rn)),
6550           (v1i8 (EXTRACT_SUBREG (v16i8
6551             (INSbw (v16i8 (IMPLICIT_DEF)), $Rn, (i64 0))),
6552             sub_8))>;
6553
6554 def : Pat<(v1i16 (scalar_to_vector GPR32:$Rn)),
6555           (v1i16 (EXTRACT_SUBREG (v8i16
6556             (INShw (v8i16 (IMPLICIT_DEF)), $Rn, (i64 0))),
6557             sub_16))>;
6558
6559 def : Pat<(v1i32 (scalar_to_vector GPR32:$src)),
6560           (FMOVsw $src)>;
6561
6562 def : Pat<(v1i64 (scalar_to_vector GPR64:$src)),
6563           (FMOVdx $src)>;
6564
6565 def : Pat<(v1f32 (scalar_to_vector (f32 FPR32:$Rn))),
6566           (v1f32 FPR32:$Rn)>;
6567 def : Pat<(v1f64 (scalar_to_vector (f64 FPR64:$Rn))),
6568           (v1f64 FPR64:$Rn)>;
6569
6570 def : Pat<(v1f64 (scalar_to_vector (f64 FPR64:$src))),
6571           (FMOVdd $src)>;
6572
6573 def : Pat<(v2f64 (scalar_to_vector (f64 FPR64:$src))),
6574           (INSERT_SUBREG (v2f64 (IMPLICIT_DEF)),
6575                          (f64 FPR64:$src), sub_64)>;
6576
6577 class NeonI_DUP_Elt<bit Q, string asmop, string rdlane,  string rnlane,
6578                     RegisterOperand ResVPR, Operand OpImm>
6579   : NeonI_copy<Q, 0b0, 0b0000, (outs ResVPR:$Rd),
6580                (ins VPR128:$Rn, OpImm:$Imm),
6581                asmop # "\t$Rd" # rdlane # ", $Rn" # rnlane # "[$Imm]",
6582                [],
6583                NoItinerary> {
6584   bits<4> Imm;
6585 }
6586
6587 def DUPELT16b : NeonI_DUP_Elt<0b1, "dup", ".16b", ".b", VPR128,
6588                               neon_uimm4_bare> {
6589   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6590 }
6591
6592 def DUPELT8h : NeonI_DUP_Elt<0b1, "dup", ".8h", ".h", VPR128,
6593                               neon_uimm3_bare> {
6594   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6595 }
6596
6597 def DUPELT4s : NeonI_DUP_Elt<0b1, "dup", ".4s", ".s", VPR128,
6598                               neon_uimm2_bare> {
6599   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
6600 }
6601
6602 def DUPELT2d : NeonI_DUP_Elt<0b1, "dup", ".2d", ".d", VPR128,
6603                               neon_uimm1_bare> {
6604   let Inst{20-16} = {Imm, 0b1, 0b0, 0b0, 0b0};
6605 }
6606
6607 def DUPELT8b : NeonI_DUP_Elt<0b0, "dup", ".8b", ".b", VPR64,
6608                               neon_uimm4_bare> {
6609   let Inst{20-16} = {Imm{3}, Imm{2}, Imm{1}, Imm{0}, 0b1};
6610 }
6611
6612 def DUPELT4h : NeonI_DUP_Elt<0b0, "dup", ".4h", ".h", VPR64,
6613                               neon_uimm3_bare> {
6614   let Inst{20-16} = {Imm{2}, Imm{1}, Imm{0}, 0b1, 0b0};
6615 }
6616
6617 def DUPELT2s : NeonI_DUP_Elt<0b0, "dup", ".2s", ".s", VPR64,
6618                               neon_uimm2_bare> {
6619   let Inst{20-16} = {Imm{1}, Imm{0}, 0b1, 0b0, 0b0};
6620 }
6621
6622 multiclass NeonI_DUP_Elt_pattern<Instruction DUPELT, ValueType ResTy,
6623                                        ValueType OpTy,ValueType NaTy,
6624                                        ValueType ExTy, Operand OpLImm,
6625                                        Operand OpNImm> {
6626 def  : Pat<(ResTy (Neon_vduplane (OpTy VPR128:$Rn), OpLImm:$Imm)),
6627         (ResTy (DUPELT (OpTy VPR128:$Rn), OpLImm:$Imm))>;
6628
6629 def : Pat<(ResTy (Neon_vduplane
6630             (NaTy VPR64:$Rn), OpNImm:$Imm)),
6631           (ResTy (DUPELT
6632             (ExTy (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)), OpNImm:$Imm))>;
6633 }
6634 defm : NeonI_DUP_Elt_pattern<DUPELT16b, v16i8, v16i8, v8i8, v16i8,
6635                              neon_uimm4_bare, neon_uimm3_bare>;
6636 defm : NeonI_DUP_Elt_pattern<DUPELT8b, v8i8, v16i8, v8i8, v16i8,
6637                              neon_uimm4_bare, neon_uimm3_bare>;
6638 defm : NeonI_DUP_Elt_pattern<DUPELT8h, v8i16, v8i16, v4i16, v8i16,
6639                              neon_uimm3_bare, neon_uimm2_bare>;
6640 defm : NeonI_DUP_Elt_pattern<DUPELT4h, v4i16, v8i16, v4i16, v8i16,
6641                              neon_uimm3_bare, neon_uimm2_bare>;
6642 defm : NeonI_DUP_Elt_pattern<DUPELT4s, v4i32, v4i32, v2i32, v4i32,
6643                              neon_uimm2_bare, neon_uimm1_bare>;
6644 defm : NeonI_DUP_Elt_pattern<DUPELT2s, v2i32, v4i32, v2i32, v4i32,
6645                              neon_uimm2_bare, neon_uimm1_bare>;
6646 defm : NeonI_DUP_Elt_pattern<DUPELT2d, v2i64, v2i64, v1i64, v2i64,
6647                              neon_uimm1_bare, neon_uimm0_bare>;
6648 defm : NeonI_DUP_Elt_pattern<DUPELT4s, v4f32, v4f32, v2f32, v4f32,
6649                              neon_uimm2_bare, neon_uimm1_bare>;
6650 defm : NeonI_DUP_Elt_pattern<DUPELT2s, v2f32, v4f32, v2f32, v4f32,
6651                              neon_uimm2_bare, neon_uimm1_bare>;
6652 defm : NeonI_DUP_Elt_pattern<DUPELT2d, v2f64, v2f64, v1f64, v2f64,
6653                              neon_uimm1_bare, neon_uimm0_bare>;
6654
6655 def : Pat<(v2f32 (Neon_vdup (f32 FPR32:$Rn))),
6656           (v2f32 (DUPELT2s 
6657             (SUBREG_TO_REG (i64 0), FPR32:$Rn, sub_32),
6658             (i64 0)))>;
6659 def : Pat<(v4f32 (Neon_vdup (f32 FPR32:$Rn))),
6660           (v4f32 (DUPELT4s 
6661             (SUBREG_TO_REG (i64 0), FPR32:$Rn, sub_32),
6662             (i64 0)))>;
6663 def : Pat<(v2f64 (Neon_vdup (f64 FPR64:$Rn))),
6664           (v2f64 (DUPELT2d 
6665             (SUBREG_TO_REG (i64 0), FPR64:$Rn, sub_64),
6666             (i64 0)))>;
6667
6668 class NeonI_DUP<bit Q, string asmop, string rdlane,
6669                 RegisterOperand ResVPR, ValueType ResTy,
6670                 RegisterClass OpGPR, ValueType OpTy>
6671   : NeonI_copy<Q, 0b0, 0b0001, (outs ResVPR:$Rd), (ins OpGPR:$Rn),
6672                asmop # "\t$Rd" # rdlane # ", $Rn",
6673                [(set (ResTy ResVPR:$Rd), 
6674                  (ResTy (Neon_vdup (OpTy OpGPR:$Rn))))],
6675                NoItinerary>;
6676
6677 def DUP16b : NeonI_DUP<0b1, "dup", ".16b", VPR128, v16i8, GPR32, i32> {
6678   let Inst{20-16} = 0b00001;
6679   // bits 17-20 are unspecified, but should be set to zero.
6680 }
6681
6682 def DUP8h : NeonI_DUP<0b1, "dup", ".8h", VPR128, v8i16, GPR32, i32> {
6683   let Inst{20-16} = 0b00010;
6684   // bits 18-20 are unspecified, but should be set to zero.
6685 }
6686
6687 def DUP4s : NeonI_DUP<0b1, "dup", ".4s", VPR128, v4i32, GPR32, i32> {
6688   let Inst{20-16} = 0b00100;
6689   // bits 19-20 are unspecified, but should be set to zero.
6690 }
6691
6692 def DUP2d : NeonI_DUP<0b1, "dup", ".2d", VPR128, v2i64, GPR64, i64> {
6693   let Inst{20-16} = 0b01000;
6694   // bit 20 is unspecified, but should be set to zero.
6695 }
6696
6697 def DUP8b : NeonI_DUP<0b0, "dup", ".8b", VPR64, v8i8, GPR32, i32> {
6698   let Inst{20-16} = 0b00001;
6699   // bits 17-20 are unspecified, but should be set to zero.
6700 }
6701
6702 def DUP4h : NeonI_DUP<0b0, "dup", ".4h", VPR64, v4i16, GPR32, i32> {
6703   let Inst{20-16} = 0b00010;
6704   // bits 18-20 are unspecified, but should be set to zero.
6705 }
6706
6707 def DUP2s : NeonI_DUP<0b0, "dup", ".2s", VPR64, v2i32, GPR32, i32> {
6708   let Inst{20-16} = 0b00100;
6709   // bits 19-20 are unspecified, but should be set to zero.
6710 }
6711
6712 // patterns for CONCAT_VECTORS
6713 multiclass Concat_Vector_Pattern<ValueType ResTy, ValueType OpTy> {
6714 def : Pat<(ResTy (concat_vectors (OpTy VPR64:$Rn), undef)),
6715           (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)>;
6716 def : Pat<(ResTy (concat_vectors (OpTy VPR64:$Rn), (OpTy VPR64:$Rm))),
6717           (INSELd 
6718             (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6719             (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$Rm, sub_64)),
6720             (i64 1),
6721             (i64 0))>;
6722 def : Pat<(ResTy (concat_vectors (OpTy VPR64:$Rn), (OpTy VPR64:$Rn))),
6723           (DUPELT2d 
6724             (v2i64 (SUBREG_TO_REG (i64 0), VPR64:$Rn, sub_64)),
6725             (i64 0))> ;
6726 }
6727
6728 defm : Concat_Vector_Pattern<v16i8, v8i8>;
6729 defm : Concat_Vector_Pattern<v8i16, v4i16>;
6730 defm : Concat_Vector_Pattern<v4i32, v2i32>;
6731 defm : Concat_Vector_Pattern<v2i64, v1i64>;
6732 defm : Concat_Vector_Pattern<v4f32, v2f32>;
6733 defm : Concat_Vector_Pattern<v2f64, v1f64>;
6734
6735 //patterns for EXTRACT_SUBVECTOR
6736 def : Pat<(v8i8 (extract_subvector (v16i8 VPR128:$Rn), (i64 0))),
6737           (v8i8 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6738 def : Pat<(v4i16 (extract_subvector (v8i16 VPR128:$Rn), (i64 0))),
6739           (v4i16 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6740 def : Pat<(v2i32 (extract_subvector (v4i32 VPR128:$Rn), (i64 0))),
6741           (v2i32 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6742 def : Pat<(v1i64 (extract_subvector (v2i64 VPR128:$Rn), (i64 0))),
6743           (v1i64 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6744 def : Pat<(v2f32 (extract_subvector (v4f32 VPR128:$Rn), (i64 0))),
6745           (v2f32 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6746 def : Pat<(v1f64 (extract_subvector (v2f64 VPR128:$Rn), (i64 0))),
6747           (v1f64 (EXTRACT_SUBREG VPR128:$Rn, sub_64))>;
6748
6749 // The followings are for instruction class (3V Elem)
6750
6751 // Variant 1
6752
6753 class NI_2VE<bit q, bit u, bits<2> size, bits<4> opcode,
6754              string asmop, string ResS, string OpS, string EleOpS,
6755              Operand OpImm, RegisterOperand ResVPR,
6756              RegisterOperand OpVPR, RegisterOperand EleOpVPR>
6757   : NeonI_2VElem<q, u, size, opcode, 
6758                  (outs ResVPR:$Rd), (ins ResVPR:$src, OpVPR:$Rn,
6759                                          EleOpVPR:$Re, OpImm:$Index),
6760                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS #
6761                  ", $Re." # EleOpS # "[$Index]",
6762                  [],
6763                  NoItinerary> {
6764   bits<3> Index;
6765   bits<5> Re;
6766
6767   let Constraints = "$src = $Rd";
6768 }
6769
6770 multiclass NI_2VE_v1<bit u, bits<4> opcode, string asmop> {
6771   // vector register class for element is always 128-bit to cover the max index
6772   def _2s4s : NI_2VE<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
6773                      neon_uimm2_bare, VPR64, VPR64, VPR128> {
6774     let Inst{11} = {Index{1}};
6775     let Inst{21} = {Index{0}};
6776     let Inst{20-16} = Re;
6777   }
6778
6779   def _4s4s : NI_2VE<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
6780                      neon_uimm2_bare, VPR128, VPR128, VPR128> {
6781     let Inst{11} = {Index{1}};
6782     let Inst{21} = {Index{0}};
6783     let Inst{20-16} = Re;
6784   }
6785
6786   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
6787   def _4h8h : NI_2VE<0b0, u, 0b01, opcode, asmop, "4h", "4h", "h",
6788                      neon_uimm3_bare, VPR64, VPR64, VPR128Lo> {
6789     let Inst{11} = {Index{2}};
6790     let Inst{21} = {Index{1}};
6791     let Inst{20} = {Index{0}};
6792     let Inst{19-16} = Re{3-0};
6793   }
6794
6795   def _8h8h : NI_2VE<0b1, u, 0b01, opcode, asmop, "8h", "8h", "h",
6796                      neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
6797     let Inst{11} = {Index{2}};
6798     let Inst{21} = {Index{1}};
6799     let Inst{20} = {Index{0}};
6800     let Inst{19-16} = Re{3-0};
6801   }
6802 }
6803
6804 defm MLAvve : NI_2VE_v1<0b1, 0b0000, "mla">;
6805 defm MLSvve : NI_2VE_v1<0b1, 0b0100, "mls">;
6806
6807 // Pattern for lane in 128-bit vector
6808 class NI_2VE_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
6809                    RegisterOperand ResVPR, RegisterOperand OpVPR,
6810                    RegisterOperand EleOpVPR, ValueType ResTy, ValueType OpTy,
6811                    ValueType EleOpTy>
6812   : Pat<(ResTy (op (ResTy ResVPR:$src), (OpTy OpVPR:$Rn),
6813           (OpTy (Neon_vduplane (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
6814         (INST ResVPR:$src, OpVPR:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
6815
6816 // Pattern for lane in 64-bit vector
6817 class NI_2VE_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
6818                   RegisterOperand ResVPR, RegisterOperand OpVPR,
6819                   RegisterOperand EleOpVPR, ValueType ResTy, ValueType OpTy,
6820                   ValueType EleOpTy>
6821   : Pat<(ResTy (op (ResTy ResVPR:$src), (OpTy OpVPR:$Rn),
6822           (OpTy (Neon_vduplane (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
6823         (INST ResVPR:$src, OpVPR:$Rn, 
6824           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
6825
6826 multiclass NI_2VE_v1_pat<string subop, SDPatternOperator op>
6827 {
6828   def : NI_2VE_laneq<!cast<Instruction>(subop # "_2s4s"), neon_uimm2_bare,
6829                      op, VPR64, VPR64, VPR128, v2i32, v2i32, v4i32>;
6830
6831   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4s4s"), neon_uimm2_bare,
6832                      op, VPR128, VPR128, VPR128, v4i32, v4i32, v4i32>;
6833
6834   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4h8h"), neon_uimm3_bare,
6835                      op, VPR64, VPR64, VPR128Lo, v4i16, v4i16, v8i16>;
6836
6837   def : NI_2VE_laneq<!cast<Instruction>(subop # "_8h8h"), neon_uimm3_bare,
6838                      op, VPR128, VPR128, VPR128Lo, v8i16, v8i16, v8i16>;
6839
6840   // Index can only be half of the max value for lane in 64-bit vector
6841
6842   def : NI_2VE_lane<!cast<Instruction>(subop # "_2s4s"), neon_uimm1_bare,
6843                     op, VPR64, VPR64, VPR64, v2i32, v2i32, v2i32>;
6844
6845   def : NI_2VE_lane<!cast<Instruction>(subop # "_4h8h"), neon_uimm2_bare,
6846                     op, VPR64, VPR64, VPR64Lo, v4i16, v4i16, v4i16>;
6847 }
6848
6849 defm MLA_lane_v1 : NI_2VE_v1_pat<"MLAvve", Neon_mla>;
6850 defm MLS_lane_v1 : NI_2VE_v1_pat<"MLSvve", Neon_mls>;
6851
6852 class NI_2VE_2op<bit q, bit u, bits<2> size, bits<4> opcode,
6853                  string asmop, string ResS, string OpS, string EleOpS,
6854                  Operand OpImm, RegisterOperand ResVPR,
6855                  RegisterOperand OpVPR, RegisterOperand EleOpVPR>
6856   : NeonI_2VElem<q, u, size, opcode, 
6857                  (outs ResVPR:$Rd), (ins OpVPR:$Rn,
6858                                          EleOpVPR:$Re, OpImm:$Index),
6859                  asmop # "\t$Rd." # ResS # ", $Rn." # OpS #
6860                  ", $Re." # EleOpS # "[$Index]",
6861                  [],
6862                  NoItinerary> {
6863   bits<3> Index;
6864   bits<5> Re;
6865 }
6866
6867 multiclass NI_2VE_v1_2op<bit u, bits<4> opcode, string asmop> {
6868   // vector register class for element is always 128-bit to cover the max index
6869   def _2s4s : NI_2VE_2op<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
6870                          neon_uimm2_bare, VPR64, VPR64, VPR128> {
6871     let Inst{11} = {Index{1}};
6872     let Inst{21} = {Index{0}};
6873     let Inst{20-16} = Re;
6874   }
6875
6876   def _4s4s : NI_2VE_2op<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
6877                          neon_uimm2_bare, VPR128, VPR128, VPR128> {
6878     let Inst{11} = {Index{1}};
6879     let Inst{21} = {Index{0}};
6880     let Inst{20-16} = Re;
6881   }
6882
6883   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
6884   def _4h8h : NI_2VE_2op<0b0, u, 0b01, opcode, asmop, "4h", "4h", "h",
6885                          neon_uimm3_bare, VPR64, VPR64, VPR128Lo> {
6886     let Inst{11} = {Index{2}};
6887     let Inst{21} = {Index{1}};
6888     let Inst{20} = {Index{0}};
6889     let Inst{19-16} = Re{3-0};
6890   }
6891
6892   def _8h8h : NI_2VE_2op<0b1, u, 0b01, opcode, asmop, "8h", "8h", "h",
6893                          neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
6894     let Inst{11} = {Index{2}};
6895     let Inst{21} = {Index{1}};
6896     let Inst{20} = {Index{0}};
6897     let Inst{19-16} = Re{3-0};
6898   }
6899 }
6900
6901 defm MULve : NI_2VE_v1_2op<0b0, 0b1000, "mul">;
6902 defm SQDMULHve : NI_2VE_v1_2op<0b0, 0b1100, "sqdmulh">;
6903 defm SQRDMULHve : NI_2VE_v1_2op<0b0, 0b1101, "sqrdmulh">;
6904
6905 // Pattern for lane in 128-bit vector
6906 class NI_2VE_mul_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
6907                        RegisterOperand OpVPR, RegisterOperand EleOpVPR,
6908                        ValueType ResTy, ValueType OpTy, ValueType EleOpTy>
6909   : Pat<(ResTy (op (OpTy OpVPR:$Rn),
6910           (OpTy (Neon_vduplane (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
6911         (INST OpVPR:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
6912
6913 // Pattern for lane in 64-bit vector
6914 class NI_2VE_mul_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
6915                       RegisterOperand OpVPR, RegisterOperand EleOpVPR,
6916                       ValueType ResTy, ValueType OpTy, ValueType EleOpTy>
6917   : Pat<(ResTy (op (OpTy OpVPR:$Rn),
6918           (OpTy (Neon_vduplane (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
6919         (INST OpVPR:$Rn, 
6920           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
6921
6922 multiclass NI_2VE_mul_v1_pat<string subop, SDPatternOperator op> {
6923   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2s4s"), neon_uimm2_bare,
6924                          op, VPR64, VPR128, v2i32, v2i32, v4i32>;
6925
6926   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4s4s"), neon_uimm2_bare,
6927                          op, VPR128, VPR128, v4i32, v4i32, v4i32>;
6928
6929   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4h8h"), neon_uimm3_bare,
6930                          op, VPR64, VPR128Lo, v4i16, v4i16, v8i16>;
6931
6932   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_8h8h"), neon_uimm3_bare,
6933                          op, VPR128, VPR128Lo, v8i16, v8i16, v8i16>;
6934
6935   // Index can only be half of the max value for lane in 64-bit vector
6936
6937   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_2s4s"), neon_uimm1_bare,
6938                         op, VPR64, VPR64, v2i32, v2i32, v2i32>;
6939
6940   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_4h8h"), neon_uimm2_bare,
6941                         op, VPR64, VPR64Lo, v4i16, v4i16, v4i16>;
6942 }
6943
6944 defm MUL_lane_v1 : NI_2VE_mul_v1_pat<"MULve", mul>;
6945 defm SQDMULH_lane_v1 : NI_2VE_mul_v1_pat<"SQDMULHve", int_arm_neon_vqdmulh>;
6946 defm SQRDMULH_lane_v1 : NI_2VE_mul_v1_pat<"SQRDMULHve", int_arm_neon_vqrdmulh>;
6947
6948 // Variant 2
6949
6950 multiclass NI_2VE_v2_2op<bit u, bits<4> opcode, string asmop> {
6951   // vector register class for element is always 128-bit to cover the max index
6952   def _2s4s : NI_2VE_2op<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
6953                          neon_uimm2_bare, VPR64, VPR64, VPR128> {
6954     let Inst{11} = {Index{1}};
6955     let Inst{21} = {Index{0}};
6956     let Inst{20-16} = Re;
6957   }
6958
6959   def _4s4s : NI_2VE_2op<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
6960                          neon_uimm2_bare, VPR128, VPR128, VPR128> {
6961     let Inst{11} = {Index{1}};
6962     let Inst{21} = {Index{0}};
6963     let Inst{20-16} = Re;
6964   }
6965
6966   // _1d2d doesn't exist!
6967
6968   def _2d2d : NI_2VE_2op<0b1, u, 0b11, opcode, asmop, "2d", "2d", "d",
6969                          neon_uimm1_bare, VPR128, VPR128, VPR128> {
6970     let Inst{11} = {Index{0}};
6971     let Inst{21} = 0b0;
6972     let Inst{20-16} = Re;
6973   }
6974 }
6975
6976 defm FMULve : NI_2VE_v2_2op<0b0, 0b1001, "fmul">;
6977 defm FMULXve : NI_2VE_v2_2op<0b1, 0b1001, "fmulx">;
6978
6979 class NI_2VE_mul_lane_2d<Instruction INST, Operand OpImm, SDPatternOperator op,
6980                          RegisterOperand OpVPR, RegisterOperand EleOpVPR,
6981                          ValueType ResTy, ValueType OpTy, ValueType EleOpTy,
6982                          SDPatternOperator coreop>
6983   : Pat<(ResTy (op (OpTy OpVPR:$Rn),
6984           (OpTy (coreop (EleOpTy EleOpVPR:$Re), (EleOpTy EleOpVPR:$Re))))),
6985         (INST OpVPR:$Rn, 
6986           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), 0)>;
6987
6988 multiclass NI_2VE_mul_v2_pat<string subop, SDPatternOperator op> {
6989   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2s4s"), neon_uimm2_bare,
6990                          op, VPR64, VPR128, v2f32, v2f32, v4f32>;
6991
6992   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4s4s"), neon_uimm2_bare,
6993                          op, VPR128, VPR128, v4f32, v4f32, v4f32>;
6994
6995   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2d2d"), neon_uimm1_bare,
6996                          op, VPR128, VPR128, v2f64, v2f64, v2f64>;
6997
6998   // Index can only be half of the max value for lane in 64-bit vector
6999
7000   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_2s4s"), neon_uimm1_bare,
7001                         op, VPR64, VPR64, v2f32, v2f32, v2f32>;
7002
7003   def : NI_2VE_mul_lane_2d<!cast<Instruction>(subop # "_2d2d"), neon_uimm1_bare,
7004                            op, VPR128, VPR64, v2f64, v2f64, v1f64,
7005                            BinOpFrag<(Neon_combine_2d node:$LHS, node:$RHS)>>;
7006 }
7007
7008 defm FMUL_lane_v2 : NI_2VE_mul_v2_pat<"FMULve", fmul>;
7009 defm FMULX_lane_v2 : NI_2VE_mul_v2_pat<"FMULXve", int_aarch64_neon_vmulx>;
7010
7011 def : Pat<(v2f32 (fmul (v2f32 (Neon_vdup (f32 FPR32:$Re))),
7012                        (v2f32 VPR64:$Rn))),
7013           (FMULve_2s4s VPR64:$Rn, (SUBREG_TO_REG (i32 0), $Re, sub_32), 0)>;
7014
7015 def : Pat<(v4f32 (fmul (v4f32 (Neon_vdup (f32 FPR32:$Re))),
7016                        (v4f32 VPR128:$Rn))),
7017           (FMULve_4s4s VPR128:$Rn, (SUBREG_TO_REG (i32 0), $Re, sub_32), 0)>;
7018
7019 def : Pat<(v2f64 (fmul (v2f64 (Neon_vdup (f64 FPR64:$Re))),
7020                        (v2f64 VPR128:$Rn))),
7021           (FMULve_2d2d VPR128:$Rn, (SUBREG_TO_REG (i64 0), $Re, sub_64), 0)>;
7022
7023 // The followings are patterns using fma
7024 // -ffp-contract=fast generates fma
7025
7026 multiclass NI_2VE_v2<bit u, bits<4> opcode, string asmop> {
7027   // vector register class for element is always 128-bit to cover the max index
7028   def _2s4s : NI_2VE<0b0, u, 0b10, opcode, asmop, "2s", "2s", "s",
7029                      neon_uimm2_bare, VPR64, VPR64, VPR128> {
7030     let Inst{11} = {Index{1}};
7031     let Inst{21} = {Index{0}};
7032     let Inst{20-16} = Re;
7033   }
7034
7035   def _4s4s : NI_2VE<0b1, u, 0b10, opcode, asmop, "4s", "4s", "s",
7036                      neon_uimm2_bare, VPR128, VPR128, VPR128> {
7037     let Inst{11} = {Index{1}};
7038     let Inst{21} = {Index{0}};
7039     let Inst{20-16} = Re;
7040   }
7041
7042   // _1d2d doesn't exist!
7043   
7044   def _2d2d : NI_2VE<0b1, u, 0b11, opcode, asmop, "2d", "2d", "d",
7045                      neon_uimm1_bare, VPR128, VPR128, VPR128> {
7046     let Inst{11} = {Index{0}};
7047     let Inst{21} = 0b0;
7048     let Inst{20-16} = Re;
7049   }
7050 }
7051
7052 defm FMLAvve : NI_2VE_v2<0b0, 0b0001, "fmla">;
7053 defm FMLSvve : NI_2VE_v2<0b0, 0b0101, "fmls">;
7054
7055 // Pattern for lane in 128-bit vector
7056 class NI_2VEswap_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
7057                        RegisterOperand ResVPR, RegisterOperand OpVPR,
7058                        ValueType ResTy, ValueType OpTy,
7059                        SDPatternOperator coreop>
7060   : Pat<(ResTy (op (ResTy (coreop (OpTy OpVPR:$Re), (i64 OpImm:$Index))),
7061                    (ResTy ResVPR:$src), (ResTy ResVPR:$Rn))),
7062         (INST ResVPR:$src, ResVPR:$Rn, OpVPR:$Re, OpImm:$Index)>;
7063
7064 // Pattern for lane 0
7065 class NI_2VEfma_lane0<Instruction INST, SDPatternOperator op,
7066                       RegisterOperand ResVPR, ValueType ResTy>
7067   : Pat<(ResTy (op (ResTy ResVPR:$Rn), 
7068                    (ResTy (Neon_vdup (f32 FPR32:$Re))),
7069                    (ResTy ResVPR:$src))),
7070         (INST ResVPR:$src, ResVPR:$Rn,
7071               (SUBREG_TO_REG (i32 0), $Re, sub_32), 0)>;
7072
7073 // Pattern for lane in 64-bit vector
7074 class NI_2VEswap_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
7075                       RegisterOperand ResVPR, RegisterOperand OpVPR,
7076                       ValueType ResTy, ValueType OpTy,
7077                       SDPatternOperator coreop>
7078   : Pat<(ResTy (op (ResTy (coreop (OpTy OpVPR:$Re), (i64 OpImm:$Index))),
7079                    (ResTy ResVPR:$Rn), (ResTy ResVPR:$src))),
7080         (INST ResVPR:$src, ResVPR:$Rn, 
7081           (SUBREG_TO_REG (i64 0), OpVPR:$Re, sub_64), OpImm:$Index)>;
7082
7083 // Pattern for lane in 64-bit vector
7084 class NI_2VEswap_lane_2d2d<Instruction INST, Operand OpImm,
7085                            SDPatternOperator op,
7086                            RegisterOperand ResVPR, RegisterOperand OpVPR,
7087                            ValueType ResTy, ValueType OpTy,
7088                            SDPatternOperator coreop>
7089   : Pat<(ResTy (op (ResTy (coreop (OpTy OpVPR:$Re), (OpTy OpVPR:$Re))),
7090                    (ResTy ResVPR:$Rn), (ResTy ResVPR:$src))),
7091         (INST ResVPR:$src, ResVPR:$Rn, 
7092           (SUBREG_TO_REG (i64 0), OpVPR:$Re, sub_64), 0)>;
7093
7094
7095 multiclass NI_2VE_fma_v2_pat<string subop, SDPatternOperator op> {
7096   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2s4s"),
7097                          neon_uimm2_bare, op, VPR64, VPR128, v2f32, v4f32,
7098                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
7099
7100   def : NI_2VEfma_lane0<!cast<Instruction>(subop # "_2s4s"),
7101                         op, VPR64, v2f32>;
7102
7103   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_4s4s"),
7104                          neon_uimm2_bare, op, VPR128, VPR128, v4f32, v4f32,
7105                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
7106
7107   def : NI_2VEfma_lane0<!cast<Instruction>(subop # "_4s4s"),
7108                         op, VPR128, v4f32>;
7109
7110   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2d2d"),
7111                          neon_uimm1_bare, op, VPR128, VPR128, v2f64, v2f64,
7112                          BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
7113
7114   // Index can only be half of the max value for lane in 64-bit vector
7115
7116   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_2s4s"),
7117                         neon_uimm1_bare, op, VPR64, VPR64, v2f32, v2f32,
7118                         BinOpFrag<(Neon_vduplane node:$LHS, node:$RHS)>>;
7119
7120   def : NI_2VEswap_lane_2d2d<!cast<Instruction>(subop # "_2d2d"),
7121                              neon_uimm1_bare, op, VPR128, VPR64, v2f64, v1f64,
7122                              BinOpFrag<(Neon_combine_2d node:$LHS, node:$RHS)>>;
7123 }
7124
7125 defm FMLA_lane_v2_s : NI_2VE_fma_v2_pat<"FMLAvve", fma>;
7126
7127 // Pattern for lane 0
7128 class NI_2VEfms_lane0<Instruction INST, SDPatternOperator op,
7129                       RegisterOperand ResVPR, ValueType ResTy>
7130   : Pat<(ResTy (op (ResTy (fneg ResVPR:$Rn)), 
7131                    (ResTy (Neon_vdup (f32 FPR32:$Re))),
7132                    (ResTy ResVPR:$src))),
7133         (INST ResVPR:$src, ResVPR:$Rn,
7134               (SUBREG_TO_REG (i32 0), $Re, sub_32), 0)>;
7135
7136 multiclass NI_2VE_fms_v2_pat<string subop, SDPatternOperator op>
7137 {
7138   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2s4s"),
7139                          neon_uimm2_bare, op, VPR64, VPR128, v2f32, v4f32,
7140                          BinOpFrag<(fneg (Neon_vduplane node:$LHS, node:$RHS))>>;
7141
7142   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2s4s"),
7143                          neon_uimm2_bare, op, VPR64, VPR128, v2f32, v4f32,
7144                          BinOpFrag<(Neon_vduplane
7145                                      (fneg node:$LHS), node:$RHS)>>;
7146
7147   def : NI_2VEfms_lane0<!cast<Instruction>(subop # "_2s4s"),
7148                         op, VPR64, v2f32>;
7149
7150   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_4s4s"),
7151                          neon_uimm2_bare, op, VPR128, VPR128, v4f32, v4f32,
7152                          BinOpFrag<(fneg (Neon_vduplane
7153                                      node:$LHS, node:$RHS))>>;
7154
7155   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_4s4s"),
7156                          neon_uimm2_bare, op, VPR128, VPR128, v4f32, v4f32,
7157                          BinOpFrag<(Neon_vduplane
7158                                      (fneg node:$LHS), node:$RHS)>>;
7159
7160   def : NI_2VEfms_lane0<!cast<Instruction>(subop # "_4s4s"),
7161                         op, VPR128, v4f32>;
7162
7163   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2d2d"),
7164                          neon_uimm1_bare, op, VPR128, VPR128, v2f64, v2f64,
7165                          BinOpFrag<(fneg (Neon_vduplane
7166                                      node:$LHS, node:$RHS))>>;
7167
7168   def : NI_2VEswap_laneq<!cast<Instruction>(subop # "_2d2d"),
7169                          neon_uimm1_bare, op, VPR128, VPR128, v2f64, v2f64,
7170                          BinOpFrag<(Neon_vduplane
7171                                      (fneg node:$LHS), node:$RHS)>>;
7172
7173   // Index can only be half of the max value for lane in 64-bit vector
7174
7175   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_2s4s"),
7176                         neon_uimm1_bare, op, VPR64, VPR64, v2f32, v2f32,
7177                         BinOpFrag<(fneg (Neon_vduplane
7178                                     node:$LHS, node:$RHS))>>;
7179
7180   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_2s4s"),
7181                         neon_uimm1_bare, op, VPR64, VPR64, v2f32, v2f32,
7182                         BinOpFrag<(Neon_vduplane
7183                                     (fneg node:$LHS), node:$RHS)>>;
7184
7185   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_4s4s"),
7186                         neon_uimm1_bare, op, VPR128, VPR64, v4f32, v2f32,
7187                         BinOpFrag<(fneg (Neon_vduplane node:$LHS, node:$RHS))>>;
7188
7189   def : NI_2VEswap_lane<!cast<Instruction>(subop # "_4s4s"),
7190                         neon_uimm1_bare, op, VPR128, VPR64, v4f32, v2f32,
7191                         BinOpFrag<(Neon_vduplane (fneg node:$LHS), node:$RHS)>>;
7192
7193   def : NI_2VEswap_lane_2d2d<!cast<Instruction>(subop # "_2d2d"),
7194                              neon_uimm1_bare, op, VPR128, VPR64, v2f64, v1f64,
7195                              BinOpFrag<(fneg (Neon_combine_2d
7196                                          node:$LHS, node:$RHS))>>;
7197
7198   def : NI_2VEswap_lane_2d2d<!cast<Instruction>(subop # "_2d2d"),
7199                              neon_uimm1_bare, op, VPR128, VPR64, v2f64, v1f64,
7200                              BinOpFrag<(Neon_combine_2d
7201                                          (fneg node:$LHS), (fneg node:$RHS))>>;
7202 }
7203
7204 defm FMLS_lane_v2_s : NI_2VE_fms_v2_pat<"FMLSvve", fma>;
7205
7206 // Variant 3: Long type
7207 // E.g. SMLAL : 4S/4H/H (v0-v15), 2D/2S/S
7208 //      SMLAL2: 4S/8H/H (v0-v15), 2D/4S/S
7209
7210 multiclass NI_2VE_v3<bit u, bits<4> opcode, string asmop> {
7211   // vector register class for element is always 128-bit to cover the max index
7212   def _2d2s : NI_2VE<0b0, u, 0b10, opcode, asmop, "2d", "2s", "s",
7213                      neon_uimm2_bare, VPR128, VPR64, VPR128> {
7214     let Inst{11} = {Index{1}};
7215     let Inst{21} = {Index{0}};
7216     let Inst{20-16} = Re;
7217   }
7218   
7219   def _2d4s : NI_2VE<0b1, u, 0b10, opcode, asmop # "2", "2d", "4s", "s",
7220                      neon_uimm2_bare, VPR128, VPR128, VPR128> {
7221     let Inst{11} = {Index{1}};
7222     let Inst{21} = {Index{0}};
7223     let Inst{20-16} = Re;
7224   }
7225
7226   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
7227   def _4s8h : NI_2VE<0b1, u, 0b01, opcode, asmop # "2", "4s", "8h", "h",
7228                      neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
7229     let Inst{11} = {Index{2}};
7230     let Inst{21} = {Index{1}};
7231     let Inst{20} = {Index{0}};
7232     let Inst{19-16} = Re{3-0};
7233   }
7234   
7235   def _4s4h : NI_2VE<0b0, u, 0b01, opcode, asmop, "4s", "4h", "h",
7236                      neon_uimm3_bare, VPR128, VPR64, VPR128Lo> {
7237     let Inst{11} = {Index{2}};
7238     let Inst{21} = {Index{1}};
7239     let Inst{20} = {Index{0}};
7240     let Inst{19-16} = Re{3-0};
7241   }
7242 }
7243
7244 defm SMLALvve : NI_2VE_v3<0b0, 0b0010, "smlal">;
7245 defm UMLALvve : NI_2VE_v3<0b1, 0b0010, "umlal">;
7246 defm SMLSLvve : NI_2VE_v3<0b0, 0b0110, "smlsl">;
7247 defm UMLSLvve : NI_2VE_v3<0b1, 0b0110, "umlsl">;
7248 defm SQDMLALvve : NI_2VE_v3<0b0, 0b0011, "sqdmlal">;
7249 defm SQDMLSLvve : NI_2VE_v3<0b0, 0b0111, "sqdmlsl">;
7250
7251 multiclass NI_2VE_v3_2op<bit u, bits<4> opcode, string asmop> {
7252   // vector register class for element is always 128-bit to cover the max index
7253   def _2d2s : NI_2VE_2op<0b0, u, 0b10, opcode, asmop, "2d", "2s", "s",
7254                          neon_uimm2_bare, VPR128, VPR64, VPR128> {
7255     let Inst{11} = {Index{1}};
7256     let Inst{21} = {Index{0}};
7257     let Inst{20-16} = Re;
7258   }
7259   
7260   def _2d4s : NI_2VE_2op<0b1, u, 0b10, opcode, asmop # "2", "2d", "4s", "s",
7261                          neon_uimm2_bare, VPR128, VPR128, VPR128> {
7262     let Inst{11} = {Index{1}};
7263     let Inst{21} = {Index{0}};
7264     let Inst{20-16} = Re;
7265   }
7266
7267   // Index operations on 16-bit(H) elements are restricted to using v0-v15.
7268   def _4s8h : NI_2VE_2op<0b1, u, 0b01, opcode, asmop # "2", "4s", "8h", "h",
7269                          neon_uimm3_bare, VPR128, VPR128, VPR128Lo> {
7270     let Inst{11} = {Index{2}};
7271     let Inst{21} = {Index{1}};
7272     let Inst{20} = {Index{0}};
7273     let Inst{19-16} = Re{3-0};
7274   }
7275   
7276   def _4s4h : NI_2VE_2op<0b0, u, 0b01, opcode, asmop, "4s", "4h", "h",
7277                          neon_uimm3_bare, VPR128, VPR64, VPR128Lo> {
7278     let Inst{11} = {Index{2}};
7279     let Inst{21} = {Index{1}};
7280     let Inst{20} = {Index{0}};
7281     let Inst{19-16} = Re{3-0};
7282   }
7283 }
7284
7285 defm SMULLve : NI_2VE_v3_2op<0b0, 0b1010, "smull">;
7286 defm UMULLve : NI_2VE_v3_2op<0b1, 0b1010, "umull">;
7287 defm SQDMULLve : NI_2VE_v3_2op<0b0, 0b1011, "sqdmull">;
7288
7289 def : Pat<(v1f64 (scalar_to_vector (f64 FPR64:$src))),
7290           (FMOVdd $src)>;
7291 def : Pat<(v1f32 (scalar_to_vector (f32 FPR32:$src))),
7292           (FMOVss $src)>;
7293
7294 // Pattern for lane in 128-bit vector
7295 class NI_2VEL2_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
7296                      RegisterOperand EleOpVPR, ValueType ResTy,
7297                      ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
7298                      SDPatternOperator hiop>
7299   : Pat<(ResTy (op (ResTy VPR128:$src),
7300           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
7301           (HalfOpTy (Neon_vduplane
7302                       (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
7303         (INST VPR128:$src, VPR128:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
7304
7305 // Pattern for lane in 64-bit vector
7306 class NI_2VEL2_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
7307                     RegisterOperand EleOpVPR, ValueType ResTy,
7308                     ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
7309                     SDPatternOperator hiop>
7310   : Pat<(ResTy (op (ResTy VPR128:$src),
7311           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
7312           (HalfOpTy (Neon_vduplane
7313                       (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
7314         (INST VPR128:$src, VPR128:$Rn, 
7315           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
7316
7317 class NI_2VEL2_lane0<Instruction INST, SDPatternOperator op,
7318                      ValueType ResTy, ValueType OpTy, ValueType HalfOpTy,
7319                      SDPatternOperator hiop, Instruction DupInst>
7320   : Pat<(ResTy (op (ResTy VPR128:$src),
7321           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
7322           (HalfOpTy (Neon_vdup (i32 GPR32:$Re))))),
7323         (INST VPR128:$src, VPR128:$Rn, (DupInst $Re), 0)>;
7324
7325 multiclass NI_2VEL_v3_pat<string subop, SDPatternOperator op> {
7326   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4s4h"), neon_uimm3_bare,
7327                      op, VPR128, VPR64, VPR128Lo, v4i32, v4i16, v8i16>;
7328   
7329   def : NI_2VE_laneq<!cast<Instruction>(subop # "_2d2s"), neon_uimm2_bare,
7330                      op, VPR128, VPR64, VPR128, v2i64, v2i32, v4i32>;
7331   
7332   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_4s8h"), neon_uimm3_bare,
7333                        op, VPR128Lo, v4i32, v8i16, v8i16, v4i16, Neon_High8H>;
7334   
7335   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_2d4s"), neon_uimm2_bare,
7336                        op, VPR128, v2i64, v4i32, v4i32, v2i32, Neon_High4S>;
7337   
7338   def : NI_2VEL2_lane0<!cast<Instruction>(subop # "_4s8h"), 
7339                        op, v4i32, v8i16, v4i16, Neon_High8H, DUP8h>;
7340   
7341   def : NI_2VEL2_lane0<!cast<Instruction>(subop # "_2d4s"),
7342                        op, v2i64, v4i32, v2i32, Neon_High4S, DUP4s>;
7343
7344   // Index can only be half of the max value for lane in 64-bit vector
7345
7346   def : NI_2VE_lane<!cast<Instruction>(subop # "_4s4h"), neon_uimm2_bare,
7347                     op, VPR128, VPR64, VPR64Lo, v4i32, v4i16, v4i16>;
7348   
7349   def : NI_2VE_lane<!cast<Instruction>(subop # "_2d2s"), neon_uimm1_bare,
7350                     op, VPR128, VPR64, VPR64, v2i64, v2i32, v2i32>;
7351
7352   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_4s8h"), neon_uimm2_bare,
7353                       op, VPR64Lo, v4i32, v8i16, v4i16, v4i16, Neon_High8H>;
7354   
7355   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_2d4s"), neon_uimm1_bare,
7356                       op, VPR64, v2i64, v4i32, v2i32, v2i32, Neon_High4S>;
7357 }
7358
7359 defm SMLAL_lane_v3 : NI_2VEL_v3_pat<"SMLALvve", Neon_smlal>;
7360 defm UMLAL_lane_v3 : NI_2VEL_v3_pat<"UMLALvve", Neon_umlal>;
7361 defm SMLSL_lane_v3 : NI_2VEL_v3_pat<"SMLSLvve", Neon_smlsl>;
7362 defm UMLSL_lane_v3 : NI_2VEL_v3_pat<"UMLSLvve", Neon_umlsl>;
7363
7364 // Pattern for lane in 128-bit vector
7365 class NI_2VEL2_mul_laneq<Instruction INST, Operand OpImm, SDPatternOperator op,
7366                          RegisterOperand EleOpVPR, ValueType ResTy,
7367                          ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
7368                          SDPatternOperator hiop>
7369   : Pat<(ResTy (op 
7370           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
7371           (HalfOpTy (Neon_vduplane
7372                       (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
7373         (INST VPR128:$Rn, EleOpVPR:$Re, OpImm:$Index)>;
7374
7375 // Pattern for lane in 64-bit vector
7376 class NI_2VEL2_mul_lane<Instruction INST, Operand OpImm, SDPatternOperator op,
7377                         RegisterOperand EleOpVPR, ValueType ResTy,
7378                         ValueType OpTy, ValueType EleOpTy, ValueType HalfOpTy,
7379                         SDPatternOperator hiop>
7380   : Pat<(ResTy (op
7381           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
7382           (HalfOpTy (Neon_vduplane
7383                       (EleOpTy EleOpVPR:$Re), (i64 OpImm:$Index))))),
7384         (INST VPR128:$Rn, 
7385           (SUBREG_TO_REG (i64 0), EleOpVPR:$Re, sub_64), OpImm:$Index)>;
7386
7387 // Pattern for fixed lane 0
7388 class NI_2VEL2_mul_lane0<Instruction INST, SDPatternOperator op,
7389                          ValueType ResTy, ValueType OpTy, ValueType HalfOpTy,
7390                          SDPatternOperator hiop, Instruction DupInst>
7391   : Pat<(ResTy (op 
7392           (HalfOpTy (hiop (OpTy VPR128:$Rn))),
7393           (HalfOpTy (Neon_vdup (i32 GPR32:$Re))))),
7394         (INST VPR128:$Rn, (DupInst $Re), 0)>;
7395
7396 multiclass NI_2VEL_mul_v3_pat<string subop, SDPatternOperator op> {
7397   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_4s4h"), neon_uimm3_bare,
7398                          op, VPR64, VPR128Lo, v4i32, v4i16, v8i16>;
7399
7400   def : NI_2VE_mul_laneq<!cast<Instruction>(subop # "_2d2s"), neon_uimm2_bare,
7401                          op, VPR64, VPR128, v2i64, v2i32, v4i32>;
7402
7403   def : NI_2VEL2_mul_laneq<!cast<Instruction>(subop # "_4s8h"), neon_uimm3_bare,
7404                          op, VPR128Lo, v4i32, v8i16, v8i16, v4i16, Neon_High8H>;
7405   
7406   def : NI_2VEL2_mul_laneq<!cast<Instruction>(subop # "_2d4s"), neon_uimm2_bare,
7407                            op, VPR128, v2i64, v4i32, v4i32, v2i32, Neon_High4S>;
7408
7409   def : NI_2VEL2_mul_lane0<!cast<Instruction>(subop # "_4s8h"),
7410                            op, v4i32, v8i16, v4i16, Neon_High8H, DUP8h>;
7411   
7412   def : NI_2VEL2_mul_lane0<!cast<Instruction>(subop # "_2d4s"),
7413                            op, v2i64, v4i32, v2i32, Neon_High4S, DUP4s>;
7414
7415   // Index can only be half of the max value for lane in 64-bit vector
7416
7417   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_4s4h"), neon_uimm2_bare,
7418                         op, VPR64, VPR64Lo, v4i32, v4i16, v4i16>;
7419
7420   def : NI_2VE_mul_lane<!cast<Instruction>(subop # "_2d2s"), neon_uimm1_bare,
7421                         op, VPR64, VPR64, v2i64, v2i32, v2i32>;
7422
7423   def : NI_2VEL2_mul_lane<!cast<Instruction>(subop # "_4s8h"), neon_uimm2_bare,
7424                           op, VPR64Lo, v4i32, v8i16, v4i16, v4i16, Neon_High8H>;
7425   
7426   def : NI_2VEL2_mul_lane<!cast<Instruction>(subop # "_2d4s"), neon_uimm1_bare,
7427                           op, VPR64, v2i64, v4i32, v2i32, v2i32, Neon_High4S>;
7428 }
7429
7430 defm SMULL_lane_v3 : NI_2VEL_mul_v3_pat<"SMULLve", int_arm_neon_vmulls>;
7431 defm UMULL_lane_v3 : NI_2VEL_mul_v3_pat<"UMULLve", int_arm_neon_vmullu>;
7432 defm SQDMULL_lane_v3 : NI_2VEL_mul_v3_pat<"SQDMULLve", int_arm_neon_vqdmull>;
7433
7434 multiclass NI_qdma<SDPatternOperator op> {
7435   def _4s : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
7436                     (op node:$Ra,
7437                       (v4i32 (int_arm_neon_vqdmull node:$Rn, node:$Rm)))>;
7438
7439   def _2d : PatFrag<(ops node:$Ra, node:$Rn, node:$Rm),
7440                     (op node:$Ra,
7441                       (v2i64 (int_arm_neon_vqdmull node:$Rn, node:$Rm)))>;
7442 }
7443
7444 defm Neon_qdmlal : NI_qdma<int_arm_neon_vqadds>;
7445 defm Neon_qdmlsl : NI_qdma<int_arm_neon_vqsubs>;
7446
7447 multiclass NI_2VEL_v3_qdma_pat<string subop, string op> {
7448   def : NI_2VE_laneq<!cast<Instruction>(subop # "_4s4h"), neon_uimm3_bare,
7449                      !cast<PatFrag>(op # "_4s"), VPR128, VPR64, VPR128Lo,
7450                      v4i32, v4i16, v8i16>;
7451   
7452   def : NI_2VE_laneq<!cast<Instruction>(subop # "_2d2s"), neon_uimm2_bare,
7453                      !cast<PatFrag>(op # "_2d"), VPR128, VPR64, VPR128,
7454                      v2i64, v2i32, v4i32>;
7455   
7456   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_4s8h"), neon_uimm3_bare,
7457                        !cast<PatFrag>(op # "_4s"), VPR128Lo,
7458                        v4i32, v8i16, v8i16, v4i16, Neon_High8H>;
7459   
7460   def : NI_2VEL2_laneq<!cast<Instruction>(subop # "_2d4s"), neon_uimm2_bare,
7461                        !cast<PatFrag>(op # "_2d"), VPR128,
7462                        v2i64, v4i32, v4i32, v2i32, Neon_High4S>;
7463
7464   def : NI_2VEL2_lane0<!cast<Instruction>(subop # "_4s8h"),
7465                        !cast<PatFrag>(op # "_4s"), 
7466                        v4i32, v8i16, v4i16, Neon_High8H, DUP8h>;
7467   
7468   def : NI_2VEL2_lane0<!cast<Instruction>(subop # "_2d4s"),
7469                        !cast<PatFrag>(op # "_2d"), 
7470                        v2i64, v4i32, v2i32, Neon_High4S, DUP4s>;
7471   
7472   // Index can only be half of the max value for lane in 64-bit vector
7473
7474   def : NI_2VE_lane<!cast<Instruction>(subop # "_4s4h"), neon_uimm2_bare,
7475                     !cast<PatFrag>(op # "_4s"), VPR128, VPR64, VPR64Lo,
7476                     v4i32, v4i16, v4i16>;
7477   
7478   def : NI_2VE_lane<!cast<Instruction>(subop # "_2d2s"), neon_uimm1_bare,
7479                     !cast<PatFrag>(op # "_2d"), VPR128, VPR64, VPR64,
7480                     v2i64, v2i32, v2i32>;
7481
7482   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_4s8h"), neon_uimm2_bare,
7483                       !cast<PatFrag>(op # "_4s"), VPR64Lo,
7484                       v4i32, v8i16, v4i16, v4i16, Neon_High8H>;
7485   
7486   def : NI_2VEL2_lane<!cast<Instruction>(subop # "_2d4s"), neon_uimm1_bare,
7487                       !cast<PatFrag>(op # "_2d"), VPR64,
7488                       v2i64, v4i32, v2i32, v2i32, Neon_High4S>;
7489 }
7490
7491 defm SQDMLAL_lane_v3 : NI_2VEL_v3_qdma_pat<"SQDMLALvve", "Neon_qdmlal">;
7492 defm SQDMLSL_lane_v3 : NI_2VEL_v3_qdma_pat<"SQDMLSLvve", "Neon_qdmlsl">;
7493
7494 // End of implementation for instruction class (3V Elem)
7495
7496 class NeonI_REV<string asmop, string Res, bits<2> size, bit Q, bit U,
7497                 bits<5> opcode, RegisterOperand ResVPR, ValueType ResTy,
7498                 SDPatternOperator Neon_Rev>
7499   : NeonI_2VMisc<Q, U, size, opcode,
7500                (outs ResVPR:$Rd), (ins ResVPR:$Rn),
7501                asmop # "\t$Rd." # Res # ", $Rn." # Res,
7502                [(set (ResTy ResVPR:$Rd),
7503                   (ResTy (Neon_Rev (ResTy ResVPR:$Rn))))],
7504                NoItinerary> ;
7505
7506 def REV64_16b : NeonI_REV<"rev64", "16b", 0b00, 0b1, 0b0, 0b00000, VPR128,
7507                           v16i8, Neon_rev64>;
7508 def REV64_8h : NeonI_REV<"rev64", "8h", 0b01, 0b1, 0b0, 0b00000, VPR128,
7509                          v8i16, Neon_rev64>;
7510 def REV64_4s : NeonI_REV<"rev64", "4s", 0b10, 0b1, 0b0, 0b00000, VPR128,
7511                          v4i32, Neon_rev64>;
7512 def REV64_8b : NeonI_REV<"rev64", "8b", 0b00, 0b0, 0b0, 0b00000, VPR64,
7513                          v8i8, Neon_rev64>;
7514 def REV64_4h : NeonI_REV<"rev64", "4h", 0b01, 0b0, 0b0, 0b00000, VPR64,
7515                          v4i16, Neon_rev64>;
7516 def REV64_2s : NeonI_REV<"rev64", "2s", 0b10, 0b0, 0b0, 0b00000, VPR64,
7517                          v2i32, Neon_rev64>;
7518
7519 def : Pat<(v4f32 (Neon_rev64 (v4f32 VPR128:$Rn))), (REV64_4s VPR128:$Rn)>;
7520 def : Pat<(v2f32 (Neon_rev64 (v2f32 VPR64:$Rn))), (REV64_2s VPR64:$Rn)>;
7521
7522 def REV32_16b : NeonI_REV<"rev32", "16b", 0b00, 0b1, 0b1, 0b00000, VPR128,
7523                           v16i8, Neon_rev32>;
7524 def REV32_8h : NeonI_REV<"rev32", "8h", 0b01, 0b1, 0b1, 0b00000, VPR128,
7525                           v8i16, Neon_rev32>;
7526 def REV32_8b : NeonI_REV<"rev32", "8b", 0b00, 0b0, 0b1, 0b00000, VPR64,
7527                          v8i8, Neon_rev32>;
7528 def REV32_4h : NeonI_REV<"rev32", "4h", 0b01, 0b0, 0b1, 0b00000, VPR64,
7529                          v4i16, Neon_rev32>;
7530
7531 def REV16_16b : NeonI_REV<"rev16", "16b", 0b00, 0b1, 0b0, 0b00001, VPR128,
7532                           v16i8, Neon_rev16>;
7533 def REV16_8b : NeonI_REV<"rev16", "8b", 0b00, 0b0, 0b0, 0b00001, VPR64,
7534                          v8i8, Neon_rev16>;
7535
7536 multiclass NeonI_PairwiseAdd<string asmop, bit U, bits<5> opcode,
7537                              SDPatternOperator Neon_Padd> {
7538   def 16b8h : NeonI_2VMisc<0b1, U, 0b00, opcode,
7539                            (outs VPR128:$Rd), (ins VPR128:$Rn),
7540                            asmop # "\t$Rd.8h, $Rn.16b",
7541                            [(set (v8i16 VPR128:$Rd),
7542                               (v8i16 (Neon_Padd (v16i8 VPR128:$Rn))))],
7543                            NoItinerary>;
7544   
7545   def 8b4h : NeonI_2VMisc<0b0, U, 0b00, opcode,
7546                           (outs VPR64:$Rd), (ins VPR64:$Rn),
7547                           asmop # "\t$Rd.4h, $Rn.8b",
7548                           [(set (v4i16 VPR64:$Rd),
7549                              (v4i16 (Neon_Padd (v8i8 VPR64:$Rn))))],
7550                           NoItinerary>;
7551   
7552   def 8h4s : NeonI_2VMisc<0b1, U, 0b01, opcode,
7553                            (outs VPR128:$Rd), (ins VPR128:$Rn),
7554                            asmop # "\t$Rd.4s, $Rn.8h",
7555                            [(set (v4i32 VPR128:$Rd),
7556                               (v4i32 (Neon_Padd (v8i16 VPR128:$Rn))))],
7557                            NoItinerary>;
7558   
7559   def 4h2s : NeonI_2VMisc<0b0, U, 0b01, opcode,
7560                           (outs VPR64:$Rd), (ins VPR64:$Rn),
7561                           asmop # "\t$Rd.2s, $Rn.4h",
7562                           [(set (v2i32 VPR64:$Rd),
7563                              (v2i32 (Neon_Padd (v4i16 VPR64:$Rn))))],
7564                           NoItinerary>;
7565   
7566   def 4s2d : NeonI_2VMisc<0b1, U, 0b10, opcode,
7567                            (outs VPR128:$Rd), (ins VPR128:$Rn),
7568                            asmop # "\t$Rd.2d, $Rn.4s",
7569                            [(set (v2i64 VPR128:$Rd),
7570                               (v2i64 (Neon_Padd (v4i32 VPR128:$Rn))))],
7571                            NoItinerary>;
7572   
7573   def 2s1d : NeonI_2VMisc<0b0, U, 0b10, opcode,
7574                           (outs VPR64:$Rd), (ins VPR64:$Rn),
7575                           asmop # "\t$Rd.1d, $Rn.2s",
7576                           [(set (v1i64 VPR64:$Rd),
7577                              (v1i64 (Neon_Padd (v2i32 VPR64:$Rn))))],
7578                           NoItinerary>;
7579 }
7580
7581 defm SADDLP : NeonI_PairwiseAdd<"saddlp", 0b0, 0b00010,
7582                                 int_arm_neon_vpaddls>;
7583 defm UADDLP : NeonI_PairwiseAdd<"uaddlp", 0b1, 0b00010,
7584                                 int_arm_neon_vpaddlu>;
7585
7586 multiclass NeonI_PairwiseAddAcc<string asmop, bit U, bits<5> opcode,
7587                              SDPatternOperator Neon_Padd> {
7588   let Constraints = "$src = $Rd" in {
7589     def 16b8h : NeonI_2VMisc<0b1, U, 0b00, opcode,
7590                              (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7591                              asmop # "\t$Rd.8h, $Rn.16b",
7592                              [(set (v8i16 VPR128:$Rd),
7593                                 (v8i16 (Neon_Padd 
7594                                   (v8i16 VPR128:$src), (v16i8 VPR128:$Rn))))],
7595                              NoItinerary>;
7596     
7597     def 8b4h : NeonI_2VMisc<0b0, U, 0b00, opcode,
7598                             (outs VPR64:$Rd), (ins VPR64:$src, VPR64:$Rn),
7599                             asmop # "\t$Rd.4h, $Rn.8b",
7600                             [(set (v4i16 VPR64:$Rd),
7601                                (v4i16 (Neon_Padd 
7602                                  (v4i16 VPR64:$src), (v8i8 VPR64:$Rn))))],
7603                             NoItinerary>;
7604     
7605     def 8h4s : NeonI_2VMisc<0b1, U, 0b01, opcode,
7606                             (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7607                             asmop # "\t$Rd.4s, $Rn.8h",
7608                             [(set (v4i32 VPR128:$Rd),
7609                                (v4i32 (Neon_Padd
7610                                  (v4i32 VPR128:$src), (v8i16 VPR128:$Rn))))],
7611                             NoItinerary>;
7612     
7613     def 4h2s : NeonI_2VMisc<0b0, U, 0b01, opcode,
7614                             (outs VPR64:$Rd), (ins VPR64:$src, VPR64:$Rn),
7615                             asmop # "\t$Rd.2s, $Rn.4h",
7616                             [(set (v2i32 VPR64:$Rd),
7617                                (v2i32 (Neon_Padd
7618                                  (v2i32 VPR64:$src), (v4i16 VPR64:$Rn))))],
7619                             NoItinerary>;
7620     
7621     def 4s2d : NeonI_2VMisc<0b1, U, 0b10, opcode,
7622                             (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7623                             asmop # "\t$Rd.2d, $Rn.4s",
7624                             [(set (v2i64 VPR128:$Rd),
7625                                (v2i64 (Neon_Padd
7626                                  (v2i64 VPR128:$src), (v4i32 VPR128:$Rn))))],
7627                             NoItinerary>;
7628     
7629     def 2s1d : NeonI_2VMisc<0b0, U, 0b10, opcode,
7630                             (outs VPR64:$Rd), (ins VPR64:$src, VPR64:$Rn),
7631                             asmop # "\t$Rd.1d, $Rn.2s",
7632                             [(set (v1i64 VPR64:$Rd),
7633                                (v1i64 (Neon_Padd
7634                                  (v1i64 VPR64:$src), (v2i32 VPR64:$Rn))))],
7635                             NoItinerary>;
7636   }
7637 }
7638
7639 defm SADALP : NeonI_PairwiseAddAcc<"sadalp", 0b0, 0b00110,
7640                                    int_arm_neon_vpadals>;
7641 defm UADALP : NeonI_PairwiseAddAcc<"uadalp", 0b1, 0b00110,
7642                                    int_arm_neon_vpadalu>;
7643
7644 multiclass NeonI_2VMisc_BHSDsize_1Arg<string asmop, bit U, bits<5> opcode> {
7645   def 16b : NeonI_2VMisc<0b1, U, 0b00, opcode,
7646                          (outs VPR128:$Rd), (ins VPR128:$Rn),
7647                          asmop # "\t$Rd.16b, $Rn.16b",
7648                          [], NoItinerary>;
7649   
7650   def 8h : NeonI_2VMisc<0b1, U, 0b01, opcode,
7651                         (outs VPR128:$Rd), (ins VPR128:$Rn),
7652                         asmop # "\t$Rd.8h, $Rn.8h",
7653                         [], NoItinerary>;
7654   
7655   def 4s : NeonI_2VMisc<0b1, U, 0b10, opcode,
7656                         (outs VPR128:$Rd), (ins VPR128:$Rn),
7657                         asmop # "\t$Rd.4s, $Rn.4s",
7658                         [], NoItinerary>;
7659   
7660   def 2d : NeonI_2VMisc<0b1, U, 0b11, opcode,
7661                         (outs VPR128:$Rd), (ins VPR128:$Rn),
7662                         asmop # "\t$Rd.2d, $Rn.2d",
7663                         [], NoItinerary>;
7664   
7665   def 8b : NeonI_2VMisc<0b0, U, 0b00, opcode,
7666                          (outs VPR64:$Rd), (ins VPR64:$Rn),
7667                          asmop # "\t$Rd.8b, $Rn.8b",
7668                          [], NoItinerary>;
7669   
7670   def 4h : NeonI_2VMisc<0b0, U, 0b01, opcode,
7671                         (outs VPR64:$Rd), (ins VPR64:$Rn),
7672                         asmop # "\t$Rd.4h, $Rn.4h",
7673                         [], NoItinerary>;
7674   
7675   def 2s : NeonI_2VMisc<0b0, U, 0b10, opcode,
7676                         (outs VPR64:$Rd), (ins VPR64:$Rn),
7677                         asmop # "\t$Rd.2s, $Rn.2s",
7678                         [], NoItinerary>;
7679 }
7680
7681 defm SQABS : NeonI_2VMisc_BHSDsize_1Arg<"sqabs", 0b0, 0b00111>;
7682 defm SQNEG : NeonI_2VMisc_BHSDsize_1Arg<"sqneg", 0b1, 0b00111>;
7683 defm ABS : NeonI_2VMisc_BHSDsize_1Arg<"abs", 0b0, 0b01011>;
7684 defm NEG : NeonI_2VMisc_BHSDsize_1Arg<"neg", 0b1, 0b01011>;
7685
7686 multiclass NeonI_2VMisc_BHSD_1Arg_Pattern<string Prefix,
7687                                           SDPatternOperator Neon_Op> {
7688   def : Pat<(v16i8 (Neon_Op (v16i8 VPR128:$Rn))),
7689             (v16i8 (!cast<Instruction>(Prefix # 16b) (v16i8 VPR128:$Rn)))>;
7690
7691   def : Pat<(v8i16 (Neon_Op (v8i16 VPR128:$Rn))),
7692             (v8i16 (!cast<Instruction>(Prefix # 8h) (v8i16 VPR128:$Rn)))>;
7693
7694   def : Pat<(v4i32 (Neon_Op (v4i32 VPR128:$Rn))),
7695             (v4i32 (!cast<Instruction>(Prefix # 4s) (v4i32 VPR128:$Rn)))>;
7696
7697   def : Pat<(v2i64 (Neon_Op (v2i64 VPR128:$Rn))),
7698             (v2i64 (!cast<Instruction>(Prefix # 2d) (v2i64 VPR128:$Rn)))>;
7699
7700   def : Pat<(v8i8 (Neon_Op (v8i8 VPR64:$Rn))),
7701             (v8i8 (!cast<Instruction>(Prefix # 8b) (v8i8 VPR64:$Rn)))>;
7702
7703   def : Pat<(v4i16 (Neon_Op (v4i16 VPR64:$Rn))),
7704             (v4i16 (!cast<Instruction>(Prefix # 4h) (v4i16 VPR64:$Rn)))>;
7705
7706   def : Pat<(v2i32 (Neon_Op (v2i32 VPR64:$Rn))),
7707             (v2i32 (!cast<Instruction>(Prefix # 2s) (v2i32 VPR64:$Rn)))>;
7708 }
7709
7710 defm : NeonI_2VMisc_BHSD_1Arg_Pattern<"SQABS", int_arm_neon_vqabs>;
7711 defm : NeonI_2VMisc_BHSD_1Arg_Pattern<"SQNEG", int_arm_neon_vqneg>;
7712 defm : NeonI_2VMisc_BHSD_1Arg_Pattern<"ABS", int_arm_neon_vabs>;
7713
7714 def : Pat<(v16i8 (sub 
7715             (v16i8 Neon_AllZero),
7716             (v16i8 VPR128:$Rn))),
7717           (v16i8 (NEG16b (v16i8 VPR128:$Rn)))>;
7718 def : Pat<(v8i8 (sub 
7719             (v8i8 Neon_AllZero),
7720             (v8i8 VPR64:$Rn))),
7721           (v8i8 (NEG8b (v8i8 VPR64:$Rn)))>;
7722 def : Pat<(v8i16 (sub 
7723             (v8i16 (bitconvert (v16i8 Neon_AllZero))),
7724             (v8i16 VPR128:$Rn))),
7725           (v8i16 (NEG8h (v8i16 VPR128:$Rn)))>;
7726 def : Pat<(v4i16 (sub 
7727             (v4i16 (bitconvert (v8i8 Neon_AllZero))),
7728             (v4i16 VPR64:$Rn))),
7729           (v4i16 (NEG4h (v4i16 VPR64:$Rn)))>;
7730 def : Pat<(v4i32 (sub 
7731             (v4i32 (bitconvert (v16i8 Neon_AllZero))),
7732             (v4i32 VPR128:$Rn))),
7733           (v4i32 (NEG4s (v4i32 VPR128:$Rn)))>;
7734 def : Pat<(v2i32 (sub 
7735             (v2i32 (bitconvert (v8i8 Neon_AllZero))),
7736             (v2i32 VPR64:$Rn))),
7737           (v2i32 (NEG2s (v2i32 VPR64:$Rn)))>;
7738 def : Pat<(v2i64 (sub 
7739             (v2i64 (bitconvert (v16i8 Neon_AllZero))),
7740             (v2i64 VPR128:$Rn))),
7741           (v2i64 (NEG2d (v2i64 VPR128:$Rn)))>;
7742
7743 multiclass NeonI_2VMisc_BHSDsize_2Args<string asmop, bit U, bits<5> opcode> {
7744   let Constraints = "$src = $Rd" in {
7745     def 16b : NeonI_2VMisc<0b1, U, 0b00, opcode,
7746                            (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7747                            asmop # "\t$Rd.16b, $Rn.16b",
7748                            [], NoItinerary>;
7749     
7750     def 8h : NeonI_2VMisc<0b1, U, 0b01, opcode,
7751                           (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7752                           asmop # "\t$Rd.8h, $Rn.8h",
7753                           [], NoItinerary>;
7754     
7755     def 4s : NeonI_2VMisc<0b1, U, 0b10, opcode,
7756                           (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7757                           asmop # "\t$Rd.4s, $Rn.4s",
7758                           [], NoItinerary>;
7759     
7760     def 2d : NeonI_2VMisc<0b1, U, 0b11, opcode,
7761                           (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7762                           asmop # "\t$Rd.2d, $Rn.2d",
7763                           [], NoItinerary>;
7764     
7765     def 8b : NeonI_2VMisc<0b0, U, 0b00, opcode,
7766                           (outs VPR64:$Rd), (ins VPR64:$src, VPR64:$Rn),
7767                           asmop # "\t$Rd.8b, $Rn.8b",
7768                           [], NoItinerary>;
7769     
7770     def 4h : NeonI_2VMisc<0b0, U, 0b01, opcode,
7771                           (outs VPR64:$Rd), (ins VPR64:$src, VPR64:$Rn),
7772                           asmop # "\t$Rd.4h, $Rn.4h",
7773                           [], NoItinerary>;
7774     
7775     def 2s : NeonI_2VMisc<0b0, U, 0b10, opcode,
7776                           (outs VPR64:$Rd), (ins VPR64:$src, VPR64:$Rn),
7777                           asmop # "\t$Rd.2s, $Rn.2s",
7778                           [], NoItinerary>;
7779   }
7780 }
7781
7782 defm SUQADD : NeonI_2VMisc_BHSDsize_2Args<"suqadd", 0b0, 0b00011>;
7783 defm USQADD : NeonI_2VMisc_BHSDsize_2Args<"usqadd", 0b1, 0b00011>;
7784
7785 multiclass NeonI_2VMisc_BHSD_2Args_Pattern<string Prefix,
7786                                            SDPatternOperator Neon_Op> {
7787   def : Pat<(v16i8 (Neon_Op (v16i8 VPR128:$src), (v16i8 VPR128:$Rn))),
7788             (v16i8 (!cast<Instruction>(Prefix # 16b)
7789               (v16i8 VPR128:$src), (v16i8 VPR128:$Rn)))>;
7790
7791   def : Pat<(v8i16 (Neon_Op (v8i16 VPR128:$src), (v8i16 VPR128:$Rn))),
7792             (v8i16 (!cast<Instruction>(Prefix # 8h)
7793               (v8i16 VPR128:$src), (v8i16 VPR128:$Rn)))>;
7794
7795   def : Pat<(v4i32 (Neon_Op (v4i32 VPR128:$src), (v4i32 VPR128:$Rn))),
7796             (v4i32 (!cast<Instruction>(Prefix # 4s)
7797               (v4i32 VPR128:$src), (v4i32 VPR128:$Rn)))>;
7798
7799   def : Pat<(v2i64 (Neon_Op (v2i64 VPR128:$src), (v2i64 VPR128:$Rn))),
7800             (v2i64 (!cast<Instruction>(Prefix # 2d)
7801               (v2i64 VPR128:$src), (v2i64 VPR128:$Rn)))>;
7802
7803   def : Pat<(v8i8 (Neon_Op (v8i8 VPR64:$src), (v8i8 VPR64:$Rn))),
7804             (v8i8 (!cast<Instruction>(Prefix # 8b)
7805               (v8i8 VPR64:$src), (v8i8 VPR64:$Rn)))>;
7806
7807   def : Pat<(v4i16 (Neon_Op (v4i16 VPR64:$src), (v4i16 VPR64:$Rn))),
7808             (v4i16 (!cast<Instruction>(Prefix # 4h)
7809               (v4i16 VPR64:$src), (v4i16 VPR64:$Rn)))>;
7810
7811   def : Pat<(v2i32 (Neon_Op (v2i32 VPR64:$src), (v2i32 VPR64:$Rn))),
7812             (v2i32 (!cast<Instruction>(Prefix # 2s)
7813               (v2i32 VPR64:$src), (v2i32 VPR64:$Rn)))>;
7814 }
7815
7816 defm : NeonI_2VMisc_BHSD_2Args_Pattern<"SUQADD", int_aarch64_neon_suqadd>;
7817 defm : NeonI_2VMisc_BHSD_2Args_Pattern<"USQADD", int_aarch64_neon_usqadd>;
7818
7819 multiclass NeonI_2VMisc_BHSsizes<string asmop, bit U,
7820                           SDPatternOperator Neon_Op> {
7821   def 16b : NeonI_2VMisc<0b1, U, 0b00, 0b00100,
7822                          (outs VPR128:$Rd), (ins VPR128:$Rn),
7823                          asmop # "\t$Rd.16b, $Rn.16b",
7824                          [(set (v16i8 VPR128:$Rd),
7825                             (v16i8 (Neon_Op (v16i8 VPR128:$Rn))))],
7826                          NoItinerary>;
7827   
7828   def 8h : NeonI_2VMisc<0b1, U, 0b01, 0b00100,
7829                         (outs VPR128:$Rd), (ins VPR128:$Rn),
7830                         asmop # "\t$Rd.8h, $Rn.8h",
7831                         [(set (v8i16 VPR128:$Rd),
7832                            (v8i16 (Neon_Op (v8i16 VPR128:$Rn))))],
7833                         NoItinerary>;
7834   
7835   def 4s : NeonI_2VMisc<0b1, U, 0b10, 0b00100,
7836                         (outs VPR128:$Rd), (ins VPR128:$Rn),
7837                         asmop # "\t$Rd.4s, $Rn.4s",
7838                         [(set (v4i32 VPR128:$Rd),
7839                            (v4i32 (Neon_Op (v4i32 VPR128:$Rn))))],
7840                         NoItinerary>;
7841   
7842   def 8b : NeonI_2VMisc<0b0, U, 0b00, 0b00100,
7843                         (outs VPR64:$Rd), (ins VPR64:$Rn),
7844                         asmop # "\t$Rd.8b, $Rn.8b",
7845                         [(set (v8i8 VPR64:$Rd),
7846                            (v8i8 (Neon_Op (v8i8 VPR64:$Rn))))],
7847                         NoItinerary>;
7848   
7849   def 4h : NeonI_2VMisc<0b0, U, 0b01, 0b00100,
7850                         (outs VPR64:$Rd), (ins VPR64:$Rn),
7851                         asmop # "\t$Rd.4h, $Rn.4h",
7852                         [(set (v4i16 VPR64:$Rd),
7853                            (v4i16 (Neon_Op (v4i16 VPR64:$Rn))))],
7854                         NoItinerary>;
7855   
7856   def 2s : NeonI_2VMisc<0b0, U, 0b10, 0b00100,
7857                         (outs VPR64:$Rd), (ins VPR64:$Rn),
7858                         asmop # "\t$Rd.2s, $Rn.2s",
7859                         [(set (v2i32 VPR64:$Rd),
7860                            (v2i32 (Neon_Op (v2i32 VPR64:$Rn))))],
7861                         NoItinerary>;
7862 }
7863
7864 defm CLS : NeonI_2VMisc_BHSsizes<"cls", 0b0, int_arm_neon_vcls>;
7865 defm CLZ : NeonI_2VMisc_BHSsizes<"clz", 0b1, ctlz>;
7866
7867 multiclass NeonI_2VMisc_Bsize<string asmop, bit U, bits<2> size,
7868                               bits<5> Opcode> {
7869   def 16b : NeonI_2VMisc<0b1, U, size, Opcode,
7870                          (outs VPR128:$Rd), (ins VPR128:$Rn),
7871                          asmop # "\t$Rd.16b, $Rn.16b",
7872                          [], NoItinerary>;
7873   
7874   def 8b : NeonI_2VMisc<0b0, U, size, Opcode,
7875                         (outs VPR64:$Rd), (ins VPR64:$Rn),
7876                         asmop # "\t$Rd.8b, $Rn.8b",
7877                         [], NoItinerary>;
7878 }
7879
7880 defm CNT : NeonI_2VMisc_Bsize<"cnt", 0b0, 0b00, 0b00101>;
7881 defm NOT : NeonI_2VMisc_Bsize<"not", 0b1, 0b00, 0b00101>;
7882 defm RBIT : NeonI_2VMisc_Bsize<"rbit", 0b1, 0b01, 0b00101>;
7883
7884 def : NeonInstAlias<"mvn $Rd.16b, $Rn.16b",
7885                     (NOT16b VPR128:$Rd, VPR128:$Rn), 0>;
7886 def : NeonInstAlias<"mvn $Rd.8b, $Rn.8b",
7887                     (NOT8b VPR64:$Rd, VPR64:$Rn), 0>;
7888
7889 def : Pat<(v16i8 (ctpop (v16i8 VPR128:$Rn))),
7890           (v16i8 (CNT16b (v16i8 VPR128:$Rn)))>;
7891 def : Pat<(v8i8 (ctpop (v8i8 VPR64:$Rn))),
7892           (v8i8 (CNT8b (v8i8 VPR64:$Rn)))>;
7893
7894 def : Pat<(v16i8 (xor 
7895             (v16i8 VPR128:$Rn),
7896             (v16i8 Neon_AllOne))),
7897           (v16i8 (NOT16b (v16i8 VPR128:$Rn)))>;
7898 def : Pat<(v8i8 (xor 
7899             (v8i8 VPR64:$Rn),
7900             (v8i8 Neon_AllOne))),
7901           (v8i8 (NOT8b (v8i8 VPR64:$Rn)))>;
7902 def : Pat<(v8i16 (xor 
7903             (v8i16 VPR128:$Rn),
7904             (v8i16 (bitconvert (v16i8 Neon_AllOne))))),
7905           (NOT16b VPR128:$Rn)>;
7906 def : Pat<(v4i16 (xor 
7907             (v4i16 VPR64:$Rn),
7908             (v4i16 (bitconvert (v8i8 Neon_AllOne))))),
7909           (NOT8b VPR64:$Rn)>;
7910 def : Pat<(v4i32 (xor 
7911             (v4i32 VPR128:$Rn),
7912             (v4i32 (bitconvert (v16i8 Neon_AllOne))))),
7913           (NOT16b VPR128:$Rn)>;
7914 def : Pat<(v2i32 (xor 
7915             (v2i32 VPR64:$Rn),
7916             (v2i32 (bitconvert (v8i8 Neon_AllOne))))),
7917           (NOT8b VPR64:$Rn)>;
7918 def : Pat<(v2i64 (xor 
7919             (v2i64 VPR128:$Rn),
7920             (v2i64 (bitconvert (v16i8 Neon_AllOne))))),
7921           (NOT16b VPR128:$Rn)>;
7922
7923 def : Pat<(v16i8 (int_aarch64_neon_rbit (v16i8 VPR128:$Rn))),
7924           (v16i8 (RBIT16b (v16i8 VPR128:$Rn)))>;
7925 def : Pat<(v8i8 (int_aarch64_neon_rbit (v8i8 VPR64:$Rn))),
7926           (v8i8 (RBIT8b (v8i8 VPR64:$Rn)))>;
7927
7928 multiclass NeonI_2VMisc_SDsizes<string asmop, bit U, bits<5> opcode,
7929                                 SDPatternOperator Neon_Op> {
7930   def 4s : NeonI_2VMisc<0b1, U, 0b10, opcode,
7931                         (outs VPR128:$Rd), (ins VPR128:$Rn),
7932                         asmop # "\t$Rd.4s, $Rn.4s",
7933                         [(set (v4f32 VPR128:$Rd),
7934                            (v4f32 (Neon_Op (v4f32 VPR128:$Rn))))],
7935                         NoItinerary>;
7936   
7937   def 2d : NeonI_2VMisc<0b1, U, 0b11, opcode,
7938                         (outs VPR128:$Rd), (ins VPR128:$Rn),
7939                         asmop # "\t$Rd.2d, $Rn.2d",
7940                         [(set (v2f64 VPR128:$Rd),
7941                            (v2f64 (Neon_Op (v2f64 VPR128:$Rn))))],
7942                         NoItinerary>;
7943   
7944   def 2s : NeonI_2VMisc<0b0, U, 0b10, opcode,
7945                         (outs VPR64:$Rd), (ins VPR64:$Rn),
7946                         asmop # "\t$Rd.2s, $Rn.2s",
7947                         [(set (v2f32 VPR64:$Rd),
7948                            (v2f32 (Neon_Op (v2f32 VPR64:$Rn))))],
7949                         NoItinerary>;
7950 }
7951
7952 defm FABS : NeonI_2VMisc_SDsizes<"fabs", 0b0, 0b01111, fabs>;
7953 defm FNEG : NeonI_2VMisc_SDsizes<"fneg", 0b1, 0b01111, fneg>;
7954
7955 multiclass NeonI_2VMisc_HSD_Narrow<string asmop, bit U, bits<5> opcode> {
7956   def 8h8b : NeonI_2VMisc<0b0, U, 0b00, opcode,
7957                           (outs VPR64:$Rd), (ins VPR128:$Rn),
7958                           asmop # "\t$Rd.8b, $Rn.8h",
7959                           [], NoItinerary>;
7960
7961   def 4s4h : NeonI_2VMisc<0b0, U, 0b01, opcode,
7962                           (outs VPR64:$Rd), (ins VPR128:$Rn),
7963                           asmop # "\t$Rd.4h, $Rn.4s",
7964                           [], NoItinerary>;
7965
7966   def 2d2s : NeonI_2VMisc<0b0, U, 0b10, opcode,
7967                           (outs VPR64:$Rd), (ins VPR128:$Rn),
7968                           asmop # "\t$Rd.2s, $Rn.2d",
7969                           [], NoItinerary>;
7970
7971   let Constraints = "$Rd = $src" in {
7972     def 8h16b : NeonI_2VMisc<0b1, U, 0b00, opcode,
7973                              (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7974                              asmop # "2\t$Rd.16b, $Rn.8h",
7975                              [], NoItinerary>;
7976   
7977     def 4s8h : NeonI_2VMisc<0b1, U, 0b01, opcode,
7978                             (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7979                             asmop # "2\t$Rd.8h, $Rn.4s",
7980                             [], NoItinerary>;
7981   
7982     def 2d4s : NeonI_2VMisc<0b1, U, 0b10, opcode,
7983                             (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
7984                             asmop # "2\t$Rd.4s, $Rn.2d",
7985                             [], NoItinerary>;
7986   }
7987 }
7988
7989 defm XTN : NeonI_2VMisc_HSD_Narrow<"xtn", 0b0, 0b10010>;
7990 defm SQXTUN : NeonI_2VMisc_HSD_Narrow<"sqxtun", 0b1, 0b10010>;
7991 defm SQXTN : NeonI_2VMisc_HSD_Narrow<"sqxtn", 0b0, 0b10100>;
7992 defm UQXTN : NeonI_2VMisc_HSD_Narrow<"uqxtn", 0b1, 0b10100>;
7993
7994 multiclass NeonI_2VMisc_Narrow_Patterns<string Prefix, 
7995                                         SDPatternOperator Neon_Op> {
7996   def : Pat<(v8i8 (Neon_Op (v8i16 VPR128:$Rn))),
7997             (v8i8 (!cast<Instruction>(Prefix # 8h8b) (v8i16 VPR128:$Rn)))>;
7998
7999   def : Pat<(v4i16 (Neon_Op (v4i32 VPR128:$Rn))),
8000             (v4i16 (!cast<Instruction>(Prefix # 4s4h) (v4i32 VPR128:$Rn)))>;
8001
8002   def : Pat<(v2i32 (Neon_Op (v2i64 VPR128:$Rn))),
8003             (v2i32 (!cast<Instruction>(Prefix # 2d2s) (v2i64 VPR128:$Rn)))>;
8004   
8005   def : Pat<(v16i8 (concat_vectors
8006               (v8i8 VPR64:$src),
8007               (v8i8 (Neon_Op (v8i16 VPR128:$Rn))))),
8008             (!cast<Instruction>(Prefix # 8h16b) 
8009               (SUBREG_TO_REG (i32 0), VPR64:$src, sub_64),
8010               VPR128:$Rn)>;
8011
8012   def : Pat<(v8i16 (concat_vectors
8013               (v4i16 VPR64:$src),
8014               (v4i16 (Neon_Op (v4i32 VPR128:$Rn))))),
8015             (!cast<Instruction>(Prefix # 4s8h)
8016               (SUBREG_TO_REG (i32 0), VPR64:$src, sub_64),
8017               VPR128:$Rn)>;
8018
8019   def : Pat<(v4i32 (concat_vectors
8020               (v2i32 VPR64:$src),
8021               (v2i32 (Neon_Op (v2i64 VPR128:$Rn))))),
8022             (!cast<Instruction>(Prefix # 2d4s)
8023               (SUBREG_TO_REG (i32 0), VPR64:$src, sub_64),
8024               VPR128:$Rn)>;
8025 }
8026
8027 defm : NeonI_2VMisc_Narrow_Patterns<"XTN", trunc>;
8028 defm : NeonI_2VMisc_Narrow_Patterns<"SQXTUN", int_arm_neon_vqmovnsu>;
8029 defm : NeonI_2VMisc_Narrow_Patterns<"SQXTN", int_arm_neon_vqmovns>;
8030 defm : NeonI_2VMisc_Narrow_Patterns<"UQXTN", int_arm_neon_vqmovnu>;
8031
8032 multiclass NeonI_2VMisc_SHIFT<string asmop, bit U, bits<5> opcode> {
8033   let DecoderMethod = "DecodeSHLLInstruction" in {
8034     def 8b8h : NeonI_2VMisc<0b0, U, 0b00, opcode,
8035                             (outs VPR128:$Rd),
8036                             (ins VPR64:$Rn, uimm_exact8:$Imm),
8037                             asmop # "\t$Rd.8h, $Rn.8b, $Imm",
8038                             [], NoItinerary>;
8039     
8040     def 4h4s : NeonI_2VMisc<0b0, U, 0b01, opcode,
8041                             (outs VPR128:$Rd),
8042                             (ins VPR64:$Rn, uimm_exact16:$Imm),
8043                             asmop # "\t$Rd.4s, $Rn.4h, $Imm",
8044                             [], NoItinerary>;
8045     
8046     def 2s2d : NeonI_2VMisc<0b0, U, 0b10, opcode,
8047                             (outs VPR128:$Rd),
8048                             (ins VPR64:$Rn, uimm_exact32:$Imm),
8049                             asmop # "\t$Rd.2d, $Rn.2s, $Imm",
8050                             [], NoItinerary>;
8051     
8052     def 16b8h : NeonI_2VMisc<0b1, U, 0b00, opcode,
8053                             (outs VPR128:$Rd),
8054                             (ins VPR128:$Rn, uimm_exact8:$Imm),
8055                             asmop # "2\t$Rd.8h, $Rn.16b, $Imm",
8056                             [], NoItinerary>;
8057     
8058     def 8h4s : NeonI_2VMisc<0b1, U, 0b01, opcode,
8059                             (outs VPR128:$Rd),
8060                             (ins VPR128:$Rn, uimm_exact16:$Imm),
8061                             asmop # "2\t$Rd.4s, $Rn.8h, $Imm",
8062                             [], NoItinerary>;
8063     
8064     def 4s2d : NeonI_2VMisc<0b1, U, 0b10, opcode,
8065                             (outs VPR128:$Rd),
8066                             (ins VPR128:$Rn, uimm_exact32:$Imm),
8067                             asmop # "2\t$Rd.2d, $Rn.4s, $Imm",
8068                             [], NoItinerary>;
8069   }
8070 }
8071
8072 defm SHLL : NeonI_2VMisc_SHIFT<"shll", 0b1, 0b10011>;
8073
8074 class NeonI_SHLL_Patterns<ValueType OpTy, ValueType DesTy,
8075                           SDPatternOperator ExtOp, Operand Neon_Imm,
8076                           string suffix> 
8077   : Pat<(DesTy (shl
8078           (DesTy (ExtOp (OpTy VPR64:$Rn))),
8079             (DesTy (Neon_vdup
8080               (i32 Neon_Imm:$Imm))))),
8081         (!cast<Instruction>("SHLL" # suffix) VPR64:$Rn, Neon_Imm:$Imm)>;
8082     
8083 class NeonI_SHLL_High_Patterns<ValueType OpTy, ValueType DesTy,
8084                                SDPatternOperator ExtOp, Operand Neon_Imm,
8085                                string suffix, PatFrag GetHigh> 
8086   : Pat<(DesTy (shl
8087           (DesTy (ExtOp
8088             (OpTy (GetHigh VPR128:$Rn)))),
8089               (DesTy (Neon_vdup
8090                 (i32 Neon_Imm:$Imm))))),
8091         (!cast<Instruction>("SHLL" # suffix) VPR128:$Rn, Neon_Imm:$Imm)>;
8092
8093 def : NeonI_SHLL_Patterns<v8i8, v8i16, zext, uimm_exact8, "8b8h">;
8094 def : NeonI_SHLL_Patterns<v8i8, v8i16, sext, uimm_exact8, "8b8h">;
8095 def : NeonI_SHLL_Patterns<v4i16, v4i32, zext, uimm_exact16, "4h4s">;
8096 def : NeonI_SHLL_Patterns<v4i16, v4i32, sext, uimm_exact16, "4h4s">;
8097 def : NeonI_SHLL_Patterns<v2i32, v2i64, zext, uimm_exact32, "2s2d">;
8098 def : NeonI_SHLL_Patterns<v2i32, v2i64, sext, uimm_exact32, "2s2d">;
8099 def : NeonI_SHLL_High_Patterns<v8i8, v8i16, zext, uimm_exact8, "16b8h",
8100                                Neon_High16B>;
8101 def : NeonI_SHLL_High_Patterns<v8i8, v8i16, sext, uimm_exact8, "16b8h",
8102                                Neon_High16B>;
8103 def : NeonI_SHLL_High_Patterns<v4i16, v4i32, zext, uimm_exact16, "8h4s",
8104                                Neon_High8H>;
8105 def : NeonI_SHLL_High_Patterns<v4i16, v4i32, sext, uimm_exact16, "8h4s",
8106                                Neon_High8H>;
8107 def : NeonI_SHLL_High_Patterns<v2i32, v2i64, zext, uimm_exact32, "4s2d",
8108                                Neon_High4S>;
8109 def : NeonI_SHLL_High_Patterns<v2i32, v2i64, sext, uimm_exact32, "4s2d",
8110                                Neon_High4S>;
8111
8112 multiclass NeonI_2VMisc_SD_Narrow<string asmop, bit U, bits<5> opcode> {
8113   def 4s4h : NeonI_2VMisc<0b0, U, 0b00, opcode,
8114                           (outs VPR64:$Rd), (ins VPR128:$Rn),
8115                           asmop # "\t$Rd.4h, $Rn.4s",
8116                           [], NoItinerary>;
8117
8118   def 2d2s : NeonI_2VMisc<0b0, U, 0b01, opcode,
8119                           (outs VPR64:$Rd), (ins VPR128:$Rn),
8120                           asmop # "\t$Rd.2s, $Rn.2d",
8121                           [], NoItinerary>;
8122   
8123   let Constraints = "$src = $Rd" in {
8124     def 4s8h : NeonI_2VMisc<0b1, U, 0b00, opcode,
8125                             (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
8126                             asmop # "2\t$Rd.8h, $Rn.4s",
8127                             [], NoItinerary>;
8128   
8129     def 2d4s : NeonI_2VMisc<0b1, U, 0b01, opcode,
8130                             (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
8131                             asmop # "2\t$Rd.4s, $Rn.2d",
8132                             [], NoItinerary>;
8133   }
8134 }
8135
8136 defm FCVTN : NeonI_2VMisc_SD_Narrow<"fcvtn", 0b0, 0b10110>;
8137
8138 multiclass NeonI_2VMisc_Narrow_Pattern<string prefix,
8139                                        SDPatternOperator f32_to_f16_Op,
8140                                        SDPatternOperator f64_to_f32_Op> {
8141   
8142   def : Pat<(v4i16 (f32_to_f16_Op (v4f32 VPR128:$Rn))),
8143               (!cast<Instruction>(prefix # "4s4h") (v4f32 VPR128:$Rn))>;
8144   
8145   def : Pat<(v8i16 (concat_vectors
8146                 (v4i16 VPR64:$src),
8147                 (v4i16 (f32_to_f16_Op (v4f32 VPR128:$Rn))))),
8148                   (!cast<Instruction>(prefix # "4s8h")
8149                     (v4f32 (SUBREG_TO_REG (i32 0), VPR64:$src, sub_64)),
8150                     (v4f32 VPR128:$Rn))>;  
8151     
8152   def : Pat<(v2f32 (f64_to_f32_Op (v2f64 VPR128:$Rn))),
8153             (!cast<Instruction>(prefix # "2d2s") (v2f64 VPR128:$Rn))>;
8154   
8155   def : Pat<(v4f32 (concat_vectors
8156               (v2f32 VPR64:$src),
8157               (v2f32 (f64_to_f32_Op (v2f64 VPR128:$Rn))))),
8158                 (!cast<Instruction>(prefix # "2d4s")
8159                   (v4f32 (SUBREG_TO_REG (i32 0), VPR64:$src, sub_64)),
8160                   (v2f64 VPR128:$Rn))>;
8161 }
8162
8163 defm : NeonI_2VMisc_Narrow_Pattern<"FCVTN", int_arm_neon_vcvtfp2hf, fround>;
8164
8165 multiclass NeonI_2VMisc_D_Narrow<string asmop, string prefix, bit U,
8166                                  bits<5> opcode> {
8167   def 2d2s : NeonI_2VMisc<0b0, U, 0b01, opcode,
8168                           (outs VPR64:$Rd), (ins VPR128:$Rn),
8169                           asmop # "\t$Rd.2s, $Rn.2d",
8170                           [], NoItinerary>;
8171
8172   def 2d4s : NeonI_2VMisc<0b1, U, 0b01, opcode,
8173                           (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
8174                           asmop # "2\t$Rd.4s, $Rn.2d",
8175                           [], NoItinerary> {
8176     let Constraints = "$src = $Rd";
8177   }
8178   
8179   def : Pat<(v2f32 (int_aarch64_neon_fcvtxn (v2f64 VPR128:$Rn))),
8180             (!cast<Instruction>(prefix # "2d2s") VPR128:$Rn)>;
8181
8182   def : Pat<(v4f32 (concat_vectors
8183               (v2f32 VPR64:$src),
8184               (v2f32 (int_aarch64_neon_fcvtxn (v2f64 VPR128:$Rn))))),
8185             (!cast<Instruction>(prefix # "2d4s")
8186                (v4f32 (SUBREG_TO_REG (i32 0), VPR64:$src, sub_64)),
8187                VPR128:$Rn)>;
8188 }
8189
8190 defm FCVTXN : NeonI_2VMisc_D_Narrow<"fcvtxn","FCVTXN", 0b1, 0b10110>;
8191
8192 def Neon_High4Float : PatFrag<(ops node:$in),
8193                               (extract_subvector (v4f32 node:$in), (iPTR 2))>;
8194
8195 multiclass NeonI_2VMisc_HS_Extend<string asmop, bit U, bits<5> opcode> {
8196   def 4h4s : NeonI_2VMisc<0b0, U, 0b00, opcode,
8197                           (outs VPR128:$Rd), (ins VPR64:$Rn),
8198                           asmop # "\t$Rd.4s, $Rn.4h",
8199                           [], NoItinerary>;
8200
8201   def 2s2d : NeonI_2VMisc<0b0, U, 0b01, opcode,
8202                           (outs VPR128:$Rd), (ins VPR64:$Rn),
8203                           asmop # "\t$Rd.2d, $Rn.2s",
8204                           [], NoItinerary>;
8205
8206   def 8h4s : NeonI_2VMisc<0b1, U, 0b00, opcode,
8207                           (outs VPR128:$Rd), (ins VPR128:$Rn),
8208                           asmop # "2\t$Rd.4s, $Rn.8h",
8209                           [], NoItinerary>;
8210
8211   def 4s2d : NeonI_2VMisc<0b1, U, 0b01, opcode,
8212                           (outs VPR128:$Rd), (ins VPR128:$Rn),
8213                           asmop # "2\t$Rd.2d, $Rn.4s",
8214                           [], NoItinerary>;
8215 }
8216
8217 defm FCVTL : NeonI_2VMisc_HS_Extend<"fcvtl", 0b0, 0b10111>;
8218
8219 multiclass NeonI_2VMisc_Extend_Pattern<string prefix> {
8220   def : Pat<(v4f32 (int_arm_neon_vcvthf2fp (v4i16 VPR64:$Rn))),
8221             (!cast<Instruction>(prefix # "4h4s") VPR64:$Rn)>;
8222   
8223   def : Pat<(v4f32 (int_arm_neon_vcvthf2fp
8224               (v4i16 (Neon_High8H
8225                 (v8i16 VPR128:$Rn))))),
8226             (!cast<Instruction>(prefix # "8h4s") VPR128:$Rn)>;
8227   
8228   def : Pat<(v2f64 (fextend (v2f32 VPR64:$Rn))),
8229             (!cast<Instruction>(prefix # "2s2d") VPR64:$Rn)>;
8230   
8231   def : Pat<(v2f64 (fextend
8232               (v2f32 (Neon_High4Float
8233                 (v4f32 VPR128:$Rn))))),
8234             (!cast<Instruction>(prefix # "4s2d") VPR128:$Rn)>;
8235 }
8236
8237 defm : NeonI_2VMisc_Extend_Pattern<"FCVTL">;
8238
8239 multiclass NeonI_2VMisc_SD_Conv<string asmop, bit Size, bit U, bits<5> opcode,
8240                                 ValueType ResTy4s, ValueType OpTy4s,
8241                                 ValueType ResTy2d, ValueType OpTy2d,
8242                                 ValueType ResTy2s, ValueType OpTy2s,
8243                                 SDPatternOperator Neon_Op> {
8244   
8245   def 4s : NeonI_2VMisc<0b1, U, {Size, 0b0}, opcode,
8246                         (outs VPR128:$Rd), (ins VPR128:$Rn),
8247                         asmop # "\t$Rd.4s, $Rn.4s",
8248                         [(set (ResTy4s VPR128:$Rd),
8249                            (ResTy4s (Neon_Op (OpTy4s VPR128:$Rn))))],
8250                         NoItinerary>;
8251
8252   def 2d : NeonI_2VMisc<0b1, U, {Size, 0b1}, opcode,
8253                         (outs VPR128:$Rd), (ins VPR128:$Rn),
8254                         asmop # "\t$Rd.2d, $Rn.2d",
8255                         [(set (ResTy2d VPR128:$Rd),
8256                            (ResTy2d (Neon_Op (OpTy2d VPR128:$Rn))))],
8257                         NoItinerary>;
8258   
8259   def 2s : NeonI_2VMisc<0b0, U, {Size, 0b0}, opcode,
8260                         (outs VPR64:$Rd), (ins VPR64:$Rn),
8261                         asmop # "\t$Rd.2s, $Rn.2s",
8262                         [(set (ResTy2s VPR64:$Rd),
8263                            (ResTy2s (Neon_Op (OpTy2s VPR64:$Rn))))],
8264                         NoItinerary>;
8265 }
8266
8267 multiclass NeonI_2VMisc_fp_to_int<string asmop, bit Size, bit U,
8268                                   bits<5> opcode, SDPatternOperator Neon_Op> {
8269   defm _ : NeonI_2VMisc_SD_Conv<asmop, Size, U, opcode, v4i32, v4f32, v2i64,
8270                                 v2f64, v2i32, v2f32, Neon_Op>;
8271 }
8272
8273 defm FCVTNS : NeonI_2VMisc_fp_to_int<"fcvtns", 0b0, 0b0, 0b11010,
8274                                      int_aarch64_neon_fcvtns>;
8275 defm FCVTNU : NeonI_2VMisc_fp_to_int<"fcvtnu", 0b0, 0b1, 0b11010,
8276                                      int_aarch64_neon_fcvtnu>;
8277 defm FCVTPS : NeonI_2VMisc_fp_to_int<"fcvtps", 0b1, 0b0, 0b11010,
8278                                      int_aarch64_neon_fcvtps>;
8279 defm FCVTPU : NeonI_2VMisc_fp_to_int<"fcvtpu", 0b1, 0b1, 0b11010,
8280                                      int_aarch64_neon_fcvtpu>;
8281 defm FCVTMS : NeonI_2VMisc_fp_to_int<"fcvtms", 0b0, 0b0, 0b11011,
8282                                      int_aarch64_neon_fcvtms>;
8283 defm FCVTMU : NeonI_2VMisc_fp_to_int<"fcvtmu", 0b0, 0b1, 0b11011,
8284                                      int_aarch64_neon_fcvtmu>;
8285 defm FCVTZS : NeonI_2VMisc_fp_to_int<"fcvtzs", 0b1, 0b0, 0b11011, fp_to_sint>;
8286 defm FCVTZU : NeonI_2VMisc_fp_to_int<"fcvtzu", 0b1, 0b1, 0b11011, fp_to_uint>;
8287 defm FCVTAS : NeonI_2VMisc_fp_to_int<"fcvtas", 0b0, 0b0, 0b11100,
8288                                      int_aarch64_neon_fcvtas>;
8289 defm FCVTAU : NeonI_2VMisc_fp_to_int<"fcvtau", 0b0, 0b1, 0b11100,
8290                                      int_aarch64_neon_fcvtau>;
8291
8292 multiclass NeonI_2VMisc_int_to_fp<string asmop, bit Size, bit U,
8293                                   bits<5> opcode, SDPatternOperator Neon_Op> {
8294   defm _ : NeonI_2VMisc_SD_Conv<asmop, Size, U, opcode, v4f32, v4i32, v2f64,
8295                                 v2i64, v2f32, v2i32, Neon_Op>;
8296 }
8297
8298 defm SCVTF : NeonI_2VMisc_int_to_fp<"scvtf", 0b0, 0b0, 0b11101, sint_to_fp>;
8299 defm UCVTF : NeonI_2VMisc_int_to_fp<"ucvtf", 0b0, 0b1, 0b11101, uint_to_fp>;
8300
8301 multiclass NeonI_2VMisc_fp_to_fp<string asmop, bit Size, bit U,
8302                                  bits<5> opcode, SDPatternOperator Neon_Op> {
8303   defm _ : NeonI_2VMisc_SD_Conv<asmop, Size, U, opcode, v4f32, v4f32, v2f64,
8304                                 v2f64, v2f32, v2f32, Neon_Op>;
8305 }
8306
8307 defm FRINTN : NeonI_2VMisc_fp_to_fp<"frintn", 0b0, 0b0, 0b11000,
8308                                      int_aarch64_neon_frintn>;
8309 defm FRINTA : NeonI_2VMisc_fp_to_fp<"frinta", 0b0, 0b1, 0b11000, frnd>;
8310 defm FRINTP : NeonI_2VMisc_fp_to_fp<"frintp", 0b1, 0b0, 0b11000, fceil>;
8311 defm FRINTM : NeonI_2VMisc_fp_to_fp<"frintm", 0b0, 0b0, 0b11001, ffloor>;
8312 defm FRINTX : NeonI_2VMisc_fp_to_fp<"frintx", 0b0, 0b1, 0b11001, frint>;
8313 defm FRINTZ : NeonI_2VMisc_fp_to_fp<"frintz", 0b1, 0b0, 0b11001, ftrunc>;
8314 defm FRINTI : NeonI_2VMisc_fp_to_fp<"frinti", 0b1, 0b1, 0b11001, fnearbyint>;
8315 defm FRECPE : NeonI_2VMisc_fp_to_fp<"frecpe", 0b1, 0b0, 0b11101,
8316                                     int_arm_neon_vrecpe>;
8317 defm FRSQRTE : NeonI_2VMisc_fp_to_fp<"frsqrte", 0b1, 0b1, 0b11101,
8318                                      int_arm_neon_vrsqrte>;
8319 defm FSQRT : NeonI_2VMisc_fp_to_fp<"fsqrt", 0b1, 0b1, 0b11111,
8320                                    int_aarch64_neon_fsqrt>;
8321
8322 multiclass NeonI_2VMisc_S_Conv<string asmop, bit Size, bit U,
8323                                bits<5> opcode, SDPatternOperator Neon_Op> {
8324   def 4s : NeonI_2VMisc<0b1, U, {Size, 0b0}, opcode,
8325                         (outs VPR128:$Rd), (ins VPR128:$Rn),
8326                         asmop # "\t$Rd.4s, $Rn.4s",
8327                         [(set (v4i32 VPR128:$Rd),
8328                            (v4i32 (Neon_Op (v4i32 VPR128:$Rn))))],
8329                         NoItinerary>;
8330   
8331   def 2s : NeonI_2VMisc<0b0, U, {Size, 0b0}, opcode,
8332                         (outs VPR64:$Rd), (ins VPR64:$Rn),
8333                         asmop # "\t$Rd.2s, $Rn.2s",
8334                         [(set (v2i32 VPR64:$Rd),
8335                            (v2i32 (Neon_Op (v2i32 VPR64:$Rn))))],
8336                         NoItinerary>;
8337 }
8338
8339 defm URECPE : NeonI_2VMisc_S_Conv<"urecpe", 0b1, 0b0, 0b11100,
8340                                   int_arm_neon_vrecpe>;
8341 defm URSQRTE : NeonI_2VMisc_S_Conv<"ursqrte", 0b1, 0b1, 0b11100,
8342                                    int_arm_neon_vrsqrte>;
8343
8344 // Crypto Class
8345 class NeonI_Cryptoaes_2v<bits<2> size, bits<5> opcode,
8346                          string asmop, SDPatternOperator opnode>
8347   : NeonI_Crypto_AES<size, opcode,
8348                      (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
8349                      asmop # "\t$Rd.16b, $Rn.16b",
8350                      [(set (v16i8 VPR128:$Rd),
8351                         (v16i8 (opnode (v16i8 VPR128:$src),
8352                                        (v16i8 VPR128:$Rn))))],
8353                      NoItinerary>{
8354   let Constraints = "$src = $Rd";
8355   let Predicates = [HasNEON, HasCrypto];
8356 }
8357
8358 def AESE : NeonI_Cryptoaes_2v<0b00, 0b00100, "aese", int_arm_neon_aese>;
8359 def AESD : NeonI_Cryptoaes_2v<0b00, 0b00101, "aesd", int_arm_neon_aesd>;
8360
8361 class NeonI_Cryptoaes<bits<2> size, bits<5> opcode,
8362                       string asmop, SDPatternOperator opnode>
8363   : NeonI_Crypto_AES<size, opcode,
8364                      (outs VPR128:$Rd), (ins VPR128:$Rn),
8365                      asmop # "\t$Rd.16b, $Rn.16b",
8366                      [(set (v16i8 VPR128:$Rd),
8367                         (v16i8 (opnode (v16i8 VPR128:$Rn))))],
8368                      NoItinerary>;
8369
8370 def AESMC : NeonI_Cryptoaes<0b00, 0b00110, "aesmc", int_arm_neon_aesmc>;
8371 def AESIMC : NeonI_Cryptoaes<0b00, 0b00111, "aesimc", int_arm_neon_aesimc>;
8372
8373 class NeonI_Cryptosha_vv<bits<2> size, bits<5> opcode,
8374                          string asmop, SDPatternOperator opnode>
8375   : NeonI_Crypto_SHA<size, opcode,
8376                      (outs VPR128:$Rd), (ins VPR128:$src, VPR128:$Rn),
8377                      asmop # "\t$Rd.4s, $Rn.4s",
8378                      [(set (v4i32 VPR128:$Rd),
8379                         (v4i32 (opnode (v4i32 VPR128:$src),
8380                                        (v4i32 VPR128:$Rn))))],
8381                      NoItinerary> {
8382   let Constraints = "$src = $Rd";
8383   let Predicates = [HasNEON, HasCrypto];
8384 }
8385
8386 def SHA1SU1 : NeonI_Cryptosha_vv<0b00, 0b00001, "sha1su1",
8387                                  int_arm_neon_sha1su1>;
8388 def SHA256SU0 : NeonI_Cryptosha_vv<0b00, 0b00010, "sha256su0",
8389                                    int_arm_neon_sha256su0>;
8390
8391 class NeonI_Cryptosha_ss<bits<2> size, bits<5> opcode,
8392                          string asmop, SDPatternOperator opnode>
8393   : NeonI_Crypto_SHA<size, opcode,
8394                      (outs FPR32:$Rd), (ins FPR32:$Rn),
8395                      asmop # "\t$Rd, $Rn",
8396                      [(set (v1i32 FPR32:$Rd),
8397                         (v1i32 (opnode (v1i32 FPR32:$Rn))))],
8398                      NoItinerary> {
8399   let Predicates = [HasNEON, HasCrypto];
8400 }
8401
8402 def SHA1H : NeonI_Cryptosha_ss<0b00, 0b00000, "sha1h", int_arm_neon_sha1h>;
8403
8404 class NeonI_Cryptosha3_vvv<bits<2> size, bits<3> opcode, string asmop,
8405                            SDPatternOperator opnode>
8406   : NeonI_Crypto_3VSHA<size, opcode,
8407                        (outs VPR128:$Rd),
8408                        (ins VPR128:$src, VPR128:$Rn, VPR128:$Rm),
8409                        asmop # "\t$Rd.4s, $Rn.4s, $Rm.4s",
8410                        [(set (v4i32 VPR128:$Rd),
8411                           (v4i32 (opnode (v4i32 VPR128:$src),
8412                                          (v4i32 VPR128:$Rn),
8413                                          (v4i32 VPR128:$Rm))))],
8414                        NoItinerary> {
8415   let Constraints = "$src = $Rd";
8416   let Predicates = [HasNEON, HasCrypto];
8417 }
8418
8419 def SHA1SU0 : NeonI_Cryptosha3_vvv<0b00, 0b011, "sha1su0",
8420                                    int_arm_neon_sha1su0>;
8421 def SHA256SU1 : NeonI_Cryptosha3_vvv<0b00, 0b110, "sha256su1",
8422                                      int_arm_neon_sha256su1>;
8423
8424 class NeonI_Cryptosha3_qqv<bits<2> size, bits<3> opcode, string asmop,
8425                            SDPatternOperator opnode>
8426   : NeonI_Crypto_3VSHA<size, opcode,
8427                        (outs FPR128:$Rd),
8428                        (ins FPR128:$src, FPR128:$Rn, VPR128:$Rm),
8429                        asmop # "\t$Rd, $Rn, $Rm.4s",
8430                        [(set (v4i32 FPR128:$Rd),
8431                           (v4i32 (opnode (v4i32 FPR128:$src),
8432                                          (v4i32 FPR128:$Rn),
8433                                          (v4i32 VPR128:$Rm))))],
8434                        NoItinerary> {
8435   let Constraints = "$src = $Rd";
8436   let Predicates = [HasNEON, HasCrypto];
8437 }
8438
8439 def SHA256H : NeonI_Cryptosha3_qqv<0b00, 0b100, "sha256h",
8440                                    int_arm_neon_sha256h>;
8441 def SHA256H2 : NeonI_Cryptosha3_qqv<0b00, 0b101, "sha256h2",
8442                                     int_arm_neon_sha256h2>;
8443
8444 class NeonI_Cryptosha3_qsv<bits<2> size, bits<3> opcode, string asmop,
8445                            SDPatternOperator opnode>
8446   : NeonI_Crypto_3VSHA<size, opcode,
8447                        (outs FPR128:$Rd),
8448                        (ins FPR128:$src, FPR32:$Rn, VPR128:$Rm),
8449                        asmop # "\t$Rd, $Rn, $Rm.4s",
8450                        [(set (v4i32 FPR128:$Rd),
8451                           (v4i32 (opnode (v4i32 FPR128:$src),
8452                                          (v1i32 FPR32:$Rn),
8453                                          (v4i32 VPR128:$Rm))))],
8454                        NoItinerary> {
8455   let Constraints = "$src = $Rd";
8456   let Predicates = [HasNEON, HasCrypto];
8457 }
8458
8459 def SHA1C : NeonI_Cryptosha3_qsv<0b00, 0b000, "sha1c", int_aarch64_neon_sha1c>;
8460 def SHA1P : NeonI_Cryptosha3_qsv<0b00, 0b001, "sha1p", int_aarch64_neon_sha1p>;
8461 def SHA1M : NeonI_Cryptosha3_qsv<0b00, 0b010, "sha1m", int_aarch64_neon_sha1m>;
8462