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Chris Lattner76ac0682005-11-15 00:40:23 +00001//===-- X86ISelLowering.h - X86 DAG Lowering Interface ----------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattnerf3ebc3f2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner76ac0682005-11-15 00:40:23 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the interfaces that X86 uses to lower LLVM code into a
11// selection DAG.
12//
13//===----------------------------------------------------------------------===//
14
Benjamin Kramera7c40ef2014-08-13 16:26:38 +000015#ifndef LLVM_LIB_TARGET_X86_X86ISELLOWERING_H
16#define LLVM_LIB_TARGET_X86_X86ISELLOWERING_H
Chris Lattner76ac0682005-11-15 00:40:23 +000017
Chandler Carruth802d7552012-12-04 07:12:27 +000018#include "llvm/CodeGen/CallingConvLower.h"
Chris Lattner76ac0682005-11-15 00:40:23 +000019#include "llvm/CodeGen/SelectionDAG.h"
Chandler Carruth802d7552012-12-04 07:12:27 +000020#include "llvm/Target/TargetLowering.h"
21#include "llvm/Target/TargetOptions.h"
Chris Lattner76ac0682005-11-15 00:40:23 +000022
23namespace llvm {
Eric Christophera08f30b2014-06-09 17:08:19 +000024 class X86Subtarget;
Craig Topperc6d4efa2014-03-19 06:53:25 +000025 class X86TargetMachine;
26
Chris Lattner76ac0682005-11-15 00:40:23 +000027 namespace X86ISD {
Evan Cheng172fce72006-01-06 00:43:03 +000028 // X86 Specific DAG Nodes
Matthias Braund04893f2015-05-07 21:33:59 +000029 enum NodeType : unsigned {
Chris Lattner76ac0682005-11-15 00:40:23 +000030 // Start the numbering where the builtin ops leave off.
Dan Gohmaned1cf1a2008-09-23 18:42:32 +000031 FIRST_NUMBER = ISD::BUILTIN_OP_END,
Chris Lattner76ac0682005-11-15 00:40:23 +000032
Sanjay Patel36a2dc82015-03-03 20:58:35 +000033 /// Bit scan forward.
Evan Chenge9fbc3f2007-12-14 02:13:44 +000034 BSF,
Sanjay Patel36a2dc82015-03-03 20:58:35 +000035 /// Bit scan reverse.
Evan Chenge9fbc3f2007-12-14 02:13:44 +000036 BSR,
37
Sanjay Patel36a2dc82015-03-03 20:58:35 +000038 /// Double shift instructions. These correspond to
Evan Cheng9c249c32006-01-09 18:33:28 +000039 /// X86::SHLDxx and X86::SHRDxx instructions.
40 SHLD,
41 SHRD,
42
Sanjay Patel36a2dc82015-03-03 20:58:35 +000043 /// Bitwise logical AND of floating point values. This corresponds
Evan Cheng2dd217b2006-01-31 03:14:29 +000044 /// to X86::ANDPS or X86::ANDPD.
45 FAND,
46
Sanjay Patel36a2dc82015-03-03 20:58:35 +000047 /// Bitwise logical OR of floating point values. This corresponds
Evan Cheng4363e882007-01-05 07:55:56 +000048 /// to X86::ORPS or X86::ORPD.
49 FOR,
50
Sanjay Patel36a2dc82015-03-03 20:58:35 +000051 /// Bitwise logical XOR of floating point values. This corresponds
Evan Cheng72d5c252006-01-31 22:28:30 +000052 /// to X86::XORPS or X86::XORPD.
53 FXOR,
54
Sanjay Patel36a2dc82015-03-03 20:58:35 +000055 /// Bitwise logical ANDNOT of floating point values. This
Benjamin Kramer5bc180c2013-08-04 12:05:16 +000056 /// corresponds to X86::ANDNPS or X86::ANDNPD.
57 FANDN,
58
Sanjay Patel36a2dc82015-03-03 20:58:35 +000059 /// These operations represent an abstract X86 call
Chris Lattner76ac0682005-11-15 00:40:23 +000060 /// instruction, which includes a bunch of information. In particular the
61 /// operands of these node are:
62 ///
63 /// #0 - The incoming token chain
64 /// #1 - The callee
65 /// #2 - The number of arg bytes the caller pushes on the stack.
66 /// #3 - The number of arg bytes the callee pops off the stack.
67 /// #4 - The value to pass in AL/AX/EAX (optional)
68 /// #5 - The value to pass in DL/DX/EDX (optional)
69 ///
70 /// The result values of these nodes are:
71 ///
72 /// #0 - The outgoing token chain
73 /// #1 - The first register result value (optional)
74 /// #2 - The second register result value (optional)
75 ///
Chris Lattner76ac0682005-11-15 00:40:23 +000076 CALL,
Dan Gohmanf9bbcd12009-08-05 01:29:28 +000077
Sanjay Patel36a2dc82015-03-03 20:58:35 +000078 /// This operation implements the lowering for readcyclecounter
Andrew Lenharth0bf68ae2005-11-20 21:41:10 +000079 RDTSC_DAG,
Evan Cheng225a4d02005-12-17 01:21:05 +000080
Andrea Di Biagiod1ab8662014-04-24 17:18:27 +000081 /// X86 Read Time-Stamp Counter and Processor ID.
82 RDTSCP_DAG,
83
Andrea Di Biagio53b68302014-06-30 17:14:21 +000084 /// X86 Read Performance Monitoring Counters.
85 RDPMC_DAG,
86
Evan Cheng225a4d02005-12-17 01:21:05 +000087 /// X86 compare and logical compare instructions.
Evan Cheng80700992007-09-17 17:42:53 +000088 CMP, COMI, UCOMI,
Evan Cheng225a4d02005-12-17 01:21:05 +000089
Dan Gohman25a767d2008-12-23 22:45:23 +000090 /// X86 bit-test instructions.
91 BT,
92
Chris Lattner846c20d2010-12-20 00:59:46 +000093 /// X86 SetCC. Operand 0 is condition code, and operand 1 is the EFLAGS
94 /// operand, usually produced by a CMP instruction.
Evan Chengc1583db2005-12-21 20:21:51 +000095 SETCC,
96
Elena Demikhovsky47fc44e2013-12-16 13:52:35 +000097 /// X86 Select
98 SELECT,
99
Evan Cheng0e8b9e32009-12-15 00:53:42 +0000100 // Same as SETCC except it's materialized with a sbb and the value is all
101 // one's or all zero's.
Chris Lattner9edf3f52010-12-19 22:08:31 +0000102 SETCC_CARRY, // R = carry_bit ? ~0 : 0
Evan Cheng0e8b9e32009-12-15 00:53:42 +0000103
Stuart Hastingsbe605492011-06-03 23:53:54 +0000104 /// X86 FP SETCC, implemented with CMP{cc}SS/CMP{cc}SD.
105 /// Operands are two FP values to compare; result is a mask of
106 /// 0s or 1s. Generally DTRT for C/C++ with NaNs.
Elena Demikhovsky47fc44e2013-12-16 13:52:35 +0000107 FSETCC,
Stuart Hastingsbe605492011-06-03 23:53:54 +0000108
Stuart Hastings9f208042011-06-01 04:39:42 +0000109 /// X86 MOVMSK{pd|ps}, extracts sign bits of two or four FP values,
110 /// result in an integer GPR. Needs masking for scalar result.
111 FGETSIGNx86,
112
Chris Lattnera492d292009-03-12 06:46:02 +0000113 /// X86 conditional moves. Operand 0 and operand 1 are the two values
114 /// to select from. Operand 2 is the condition code, and operand 3 is the
115 /// flag operand produced by a CMP or TEST instruction. It also writes a
116 /// flag result.
Evan Cheng225a4d02005-12-17 01:21:05 +0000117 CMOV,
Evan Cheng6fc31042005-12-19 23:12:38 +0000118
Dan Gohman4a683472009-03-23 15:40:10 +0000119 /// X86 conditional branches. Operand 0 is the chain operand, operand 1
120 /// is the block to branch if condition is true, operand 2 is the
121 /// condition code, and operand 3 is the flag operand produced by a CMP
Evan Chengc1583db2005-12-21 20:21:51 +0000122 /// or TEST instruction.
Evan Cheng6fc31042005-12-19 23:12:38 +0000123 BRCOND,
Evan Chenga74ce622005-12-21 02:39:21 +0000124
Dan Gohman4a683472009-03-23 15:40:10 +0000125 /// Return with a flag operand. Operand 0 is the chain operand, operand
126 /// 1 is the number of bytes of stack to pop.
Evan Chenga74ce622005-12-21 02:39:21 +0000127 RET_FLAG,
Evan Chengae986f12006-01-11 22:15:48 +0000128
Amjad Aboud60b5e1b2015-12-21 14:07:14 +0000129 /// Return from interrupt. Operand 0 is the number of bytes to pop.
130 IRET,
131
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000132 /// Repeat fill, corresponds to X86::REP_STOSx.
Evan Chengae986f12006-01-11 22:15:48 +0000133 REP_STOS,
134
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000135 /// Repeat move, corresponds to X86::REP_MOVSx.
Evan Chengae986f12006-01-11 22:15:48 +0000136 REP_MOVS,
Evan Cheng72d5c252006-01-31 22:28:30 +0000137
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000138 /// On Darwin, this node represents the result of the popl
Evan Cheng5588de92006-02-18 00:15:05 +0000139 /// at function entry, used for PIC code.
140 GlobalBaseReg,
Evan Cheng1f342c22006-02-23 02:43:52 +0000141
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000142 /// A wrapper node for TargetConstantPool,
Bill Wendling24c79f22008-09-16 21:48:12 +0000143 /// TargetExternalSymbol, and TargetGlobalAddress.
Evan Chenge0ed6ec2006-02-23 20:41:18 +0000144 Wrapper,
Evan Chengd5e905d2006-03-21 23:01:21 +0000145
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000146 /// Special wrapper used under X86-64 PIC mode for RIP
Evan Chengae1cd752006-11-30 21:55:46 +0000147 /// relative displacements.
148 WrapperRIP,
149
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000150 /// Copies a 64-bit value from the low word of an XMM vector
Dale Johannesendd224d22010-09-30 23:57:10 +0000151 /// to an MMX vector. If you think this is too close to the previous
152 /// mnemonic, so do I; blame Intel.
153 MOVDQ2Q,
154
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000155 /// Copies a 32-bit value from the low word of a MMX
Manman Renacb8bec2012-10-30 22:15:38 +0000156 /// vector to a GPR.
157 MMX_MOVD2W,
158
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000159 /// Copies a GPR into the low 32-bit word of a MMX vector
Bruno Cardoso Lopesab9ae872015-02-05 13:23:07 +0000160 /// and zero out the high word.
161 MMX_MOVW2D,
162
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000163 /// Extract an 8-bit value from a vector and zero extend it to
Nate Begeman2d77e8e42008-02-11 04:19:36 +0000164 /// i32, corresponds to X86::PEXTRB.
165 PEXTRB,
166
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000167 /// Extract a 16-bit value from a vector and zero extend it to
Evan Cheng5fd7c692006-03-31 21:55:24 +0000168 /// i32, corresponds to X86::PEXTRW.
Evan Chengcbffa462006-03-31 19:22:53 +0000169 PEXTRW,
Evan Cheng5fd7c692006-03-31 21:55:24 +0000170
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000171 /// Insert any element of a 4 x float vector into any element
Nate Begeman2d77e8e42008-02-11 04:19:36 +0000172 /// of a destination 4 x floatvector.
173 INSERTPS,
174
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000175 /// Insert the lower 8-bits of a 32-bit value to a vector,
Nate Begeman2d77e8e42008-02-11 04:19:36 +0000176 /// corresponds to X86::PINSRB.
177 PINSRB,
178
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000179 /// Insert the lower 16-bits of a 32-bit value to a vector,
Evan Cheng5fd7c692006-03-31 21:55:24 +0000180 /// corresponds to X86::PINSRW.
Chris Lattnera8288502010-02-23 02:07:48 +0000181 PINSRW, MMX_PINSRW,
Evan Cheng49683ba2006-11-10 21:43:37 +0000182
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000183 /// Shuffle 16 8-bit values within a vector.
Nate Begemane684da32009-02-23 08:49:38 +0000184 PSHUFB,
Owen Andersonb2c80da2011-02-25 21:41:48 +0000185
Chandler Carruth6ba97302015-05-30 03:20:59 +0000186 /// Compute Sum of Absolute Differences.
187 PSADBW,
Igor Bregerf3ded812015-08-31 13:09:30 +0000188 /// Compute Double Block Packed Sum-Absolute-Differences
189 DBPSADBW,
Chandler Carruth6ba97302015-05-30 03:20:59 +0000190
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000191 /// Bitwise Logical AND NOT of Packed FP values.
Bruno Cardoso Lopes7ba479d2011-07-13 21:36:47 +0000192 ANDNP,
Owen Andersonb2c80da2011-02-25 21:41:48 +0000193
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000194 /// Blend where the selector is an immediate.
Elena Demikhovskycd3c1c42012-12-05 09:24:57 +0000195 BLENDI,
Nadav Rotem9bc178a2012-04-11 06:40:27 +0000196
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000197 /// Blend where the condition has been shrunk.
Quentin Colombetdbe33e72014-11-06 02:25:03 +0000198 /// This is used to emphasize that the condition mask is
199 /// no more valid for generic VSELECT optimizations.
200 SHRUNKBLEND,
201
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000202 /// Combined add and sub on an FP vector.
Chandler Carruth204ad4c2014-09-15 20:09:47 +0000203 ADDSUB,
Asaf Badouh402ebb32015-06-03 13:41:48 +0000204
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000205 // FP vector ops with rounding mode.
Elena Demikhovsky714f23b2015-02-18 07:59:20 +0000206 FADD_RND,
207 FSUB_RND,
208 FMUL_RND,
209 FDIV_RND,
Elena Demikhovsky0d7e9362015-05-11 06:05:05 +0000210 FMAX_RND,
211 FMIN_RND,
Asaf Badouh402ebb32015-06-03 13:41:48 +0000212 FSQRT_RND,
213
214 // FP vector get exponent
215 FGETEXP_RND,
Igor Breger1e58e8a2015-09-02 11:18:55 +0000216 // Extract Normalized Mantissas
217 VGETMANT,
Asaf Badouh7ec4b7a2015-06-28 14:30:39 +0000218 // FP Scale
219 SCALEF,
Elena Demikhovsky52266382015-05-04 12:35:55 +0000220 // Integer add/sub with unsigned saturation.
221 ADDUS,
Benjamin Kramerb16ccde2012-12-15 16:47:44 +0000222 SUBUS,
Elena Demikhovsky52266382015-05-04 12:35:55 +0000223 // Integer add/sub with signed saturation.
224 ADDS,
225 SUBS,
Asaf Badouh81f03c32015-06-18 12:30:53 +0000226 // Unsigned Integer average
227 AVG,
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000228 /// Integer horizontal add.
Craig Topperf984efb2011-11-19 09:02:40 +0000229 HADD,
230
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000231 /// Integer horizontal sub.
Craig Topperf984efb2011-11-19 09:02:40 +0000232 HSUB,
233
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000234 /// Floating point horizontal add.
Duncan Sands0e4fcb82011-09-22 20:15:48 +0000235 FHADD,
236
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000237 /// Floating point horizontal sub.
Duncan Sands0e4fcb82011-09-22 20:15:48 +0000238 FHSUB,
239
Elena Demikhovsky5e2f8c42015-06-23 08:19:46 +0000240 // Integer absolute value
241 ABS,
242
Igor Breger0dcd8bc2015-09-03 09:05:31 +0000243 // Detect Conflicts Within a Vector
244 CONFLICT,
245
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000246 /// Floating point max and min.
Lauro Ramos Venancio25188892007-04-20 21:38:10 +0000247 FMAX, FMIN,
Dan Gohman57111e72007-07-10 00:05:58 +0000248
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000249 /// Commutative FMIN and FMAX.
Nadav Rotem178250a2012-08-19 13:06:16 +0000250 FMAXC, FMINC,
251
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000252 /// Floating point reciprocal-sqrt and reciprocal approximation.
253 /// Note that these typically require refinement
Dan Gohman57111e72007-07-10 00:05:58 +0000254 /// in order to obtain suitable precision.
255 FRSQRT, FRCP,
256
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000257 // Thread Local Storage.
Rafael Espindola3b2df102009-04-08 21:14:34 +0000258 TLSADDR,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000259
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000260 // Thread Local Storage. A call to get the start address
Hans Wennborg789acfb2012-06-01 16:27:21 +0000261 // of the TLS block for the current module.
262 TLSBASEADDR,
263
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000264 // Thread Local Storage. When calling to an OS provided
Eric Christopherb0e1a452010-06-03 04:07:48 +0000265 // thunk at the address from an earlier relocation.
266 TLSCALL,
Rafael Espindola3b2df102009-04-08 21:14:34 +0000267
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000268 // Exception Handling helpers.
Arnold Schwaighofer9ccea992007-10-11 19:40:01 +0000269 EH_RETURN,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000270
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000271 // SjLj exception handling setjmp.
Michael Liao97bf3632012-10-15 22:39:43 +0000272 EH_SJLJ_SETJMP,
273
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000274 // SjLj exception handling longjmp.
Michael Liao97bf3632012-10-15 22:39:43 +0000275 EH_SJLJ_LONGJMP,
276
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000277 /// Tail call return. See X86TargetLowering::LowerCall for
Eli Benderskya1c66352013-02-14 23:17:03 +0000278 /// the list of operands.
Anton Korobeynikov91460e42007-11-16 01:31:51 +0000279 TC_RETURN,
280
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000281 // Vector move to low scalar and zero higher vector elements.
Evan Cheng961339b2008-05-09 21:53:03 +0000282 VZEXT_MOVL,
283
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000284 // Vector integer zero-extend.
Michael Liao1be96bb2012-10-23 17:34:00 +0000285 VZEXT,
286
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000287 // Vector integer signed-extend.
Michael Liao1be96bb2012-10-23 17:34:00 +0000288 VSEXT,
289
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000290 // Vector integer truncate.
Elena Demikhovsky980c6b02013-08-29 11:56:53 +0000291 VTRUNC,
Igor Breger074a64e2015-07-24 17:24:15 +0000292 // Vector integer truncate with unsigned/signed saturation.
293 VTRUNCUS, VTRUNCS,
Elena Demikhovsky980c6b02013-08-29 11:56:53 +0000294
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000295 // Vector FP extend.
Michael Liao34107b92012-08-14 21:24:47 +0000296 VFPEXT,
297
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000298 // Vector FP round.
Michael Liaoe999b862012-10-10 16:53:28 +0000299 VFPROUND,
300
Elena Demikhovsky0f370932015-07-13 13:26:20 +0000301 // Vector signed/unsigned integer to double.
302 CVTDQ2PD, CVTUDQ2PD,
Simon Pilgrimcae7b942015-06-16 21:40:28 +0000303
Igor Breger756c2892015-12-27 13:56:16 +0000304 // Convert a vector to mask, set bits base on MSB.
305 CVT2MASK,
306
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000307 // 128-bit vector logical left / right shift
Craig Topper09462642012-01-22 19:15:14 +0000308 VSHLDQ, VSRLDQ,
309
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000310 // Vector shift elements
Craig Topper09462642012-01-22 19:15:14 +0000311 VSHL, VSRL, VSRA,
312
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000313 // Vector shift elements by immediate
Craig Topper09462642012-01-22 19:15:14 +0000314 VSHLI, VSRLI, VSRAI,
Nate Begeman8d6d4b92009-04-27 18:41:29 +0000315
Michael Zuckerman2ddcbcf2016-01-12 21:19:17 +0000316 // Bit rotate by immediate
Michael Zuckerman298a6802016-01-13 12:39:33 +0000317 VROTLI, VROTRI,
Michael Zuckerman2ddcbcf2016-01-12 21:19:17 +0000318
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000319 // Vector packed double/float comparison.
Craig Topper0b7ad762012-01-22 23:36:02 +0000320 CMPP,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000321
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000322 // Vector integer comparisons.
Craig Topperbd4884372012-01-22 22:42:16 +0000323 PCMPEQ, PCMPGT,
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000324 // Vector integer comparisons, the result is in a mask vector.
Elena Demikhovsky60b1f282013-08-13 13:24:07 +0000325 PCMPEQM, PCMPGTM,
326
Asaf Badouh5a3a0232016-02-01 15:48:21 +0000327 MULTISHIFT,
328
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000329 /// Vector comparison generating mask bits for fp and
Elena Demikhovsky60b1f282013-08-13 13:24:07 +0000330 /// integer signed and unsigned data types.
331 CMPM,
332 CMPMU,
Elena Demikhovsky29792e92015-05-07 11:24:42 +0000333 // Vector comparison with rounding mode for FP values
334 CMPM_RND,
Bill Wendling1a317672008-12-12 00:56:36 +0000335
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000336 // Arithmetic operations with FLAGS results.
Chris Lattner846c20d2010-12-20 00:59:46 +0000337 ADD, SUB, ADC, SBB, SMUL,
Dan Gohman722b1ee2009-09-18 19:59:53 +0000338 INC, DEC, OR, XOR, AND,
Owen Andersonb2c80da2011-02-25 21:41:48 +0000339
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000340 BEXTR, // Bit field extract
Craig Topper039a7902011-10-21 06:55:01 +0000341
Chris Lattner364bb0a2010-12-05 07:30:36 +0000342 UMUL, // LOW, HI, FLAGS = umul LHS, RHS
Evan Chenga84a3182009-03-30 21:36:47 +0000343
Ahmed Bougacha5175bcf2014-10-23 21:55:31 +0000344 // 8-bit SMUL/UMUL - AX, FLAGS = smul8/umul8 AL, RHS
345 SMUL8, UMUL8,
346
Ahmed Bougacha12eb5582014-11-03 20:26:35 +0000347 // 8-bit divrem that zero-extend the high result (AH).
348 UDIVREM8_ZEXT_HREG,
349 SDIVREM8_SEXT_HREG,
350
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000351 // X86-specific multiply by immediate.
Eric Christopherf7802a32009-07-29 00:28:05 +0000352 MUL_IMM,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000353
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000354 // Vector bitwise comparisons.
Dan Gohman0700a562009-08-15 01:38:56 +0000355 PTEST,
356
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000357 // Vector packed fp sign bitwise comparisons.
Bruno Cardoso Lopes91d61df2010-08-10 23:25:42 +0000358 TESTP,
359
Sanjay Patel36a2dc82015-03-03 20:58:35 +0000360 // Vector "test" in AVX-512, the result is in a mask vector.
Elena Demikhovsky33d447a2013-08-21 09:36:02 +0000361 TESTM,
Elena Demikhovskya30e4372014-02-05 07:05:03 +0000362 TESTNM,
Elena Demikhovsky33d447a2013-08-21 09:36:02 +0000363
Elena Demikhovsky40864b62013-08-05 08:52:21 +0000364 // OR/AND test for masks
365 KORTEST,
Igor Breger5ea0a6812015-08-31 13:30:19 +0000366 KTEST,
Elena Demikhovsky40864b62013-08-05 08:52:21 +0000367
Bruno Cardoso Lopes6f3b38a2010-08-20 22:55:05 +0000368 // Several flavors of instructions with vector shuffle behaviors.
Chandler Carruth8366ceb2014-06-20 01:05:28 +0000369 PACKSS,
370 PACKUS,
Adam Nemet2f10cc62014-08-05 17:22:55 +0000371 // Intra-lane alignr
Craig Topper8fb09f02013-01-28 06:48:25 +0000372 PALIGNR,
Adam Nemet2f10cc62014-08-05 17:22:55 +0000373 // AVX512 inter-lane alignr
374 VALIGN,
Bruno Cardoso Lopes6f3b38a2010-08-20 22:55:05 +0000375 PSHUFD,
376 PSHUFHW,
377 PSHUFLW,
Craig Topper6e54ba72011-12-31 23:50:21 +0000378 SHUFP,
Elena Demikhovsky9e380862015-06-03 10:56:40 +0000379 //Shuffle Packed Values at 128-bit granularity
380 SHUF128,
Bruno Cardoso Lopes6f3b38a2010-08-20 22:55:05 +0000381 MOVDDUP,
382 MOVSHDUP,
383 MOVSLDUP,
Bruno Cardoso Lopes6f3b38a2010-08-20 22:55:05 +0000384 MOVLHPS,
Bruno Cardoso Lopes6f3b38a2010-08-20 22:55:05 +0000385 MOVLHPD,
Bruno Cardoso Lopes03e4c352010-08-31 21:15:21 +0000386 MOVHLPS,
Bruno Cardoso Lopesb3825212010-09-01 05:08:25 +0000387 MOVLPS,
388 MOVLPD,
Bruno Cardoso Lopes6f3b38a2010-08-20 22:55:05 +0000389 MOVSD,
390 MOVSS,
Craig Topper8d4ba192011-12-06 08:21:25 +0000391 UNPCKL,
392 UNPCKH,
Chandler Carruth6d5916a2014-09-23 10:08:29 +0000393 VPERMILPV,
Chandler Carruthed5dfff2014-09-22 22:29:42 +0000394 VPERMILPI,
Craig Topperb86fa402012-04-16 00:41:45 +0000395 VPERMI,
Craig Topper0a672ea2011-11-30 07:47:51 +0000396 VPERM2X128,
Ahmed Bougacha671795a2016-03-03 16:53:50 +0000397
398 // Variable Permute (VPERM)
399 // Res = VPERMV MaskV, V0
400 VPERMV,
401
402 // 3-op Variable Permute (VPERMT2)
403 // Res = VPERMV3 V0, MaskV, V1
404 VPERMV3,
405
406 // 3-op Variable Permute overwriting the index (VPERMI2)
407 // Res = VPERMIV3 V0, MaskV, V1
408 VPERMIV3,
409
Igor Bregerb4bb1902015-10-15 12:33:24 +0000410 // Bitwise ternary logic
411 VPTERNLOG,
412 // Fix Up Special Packed Float32/64 values
Elena Demikhovsky42c96d92015-06-01 06:50:49 +0000413 VFIXUPIMM,
Asaf Badouhd4a0d9a2016-01-19 14:21:39 +0000414 VFIXUPIMMS,
Igor Bregerb4bb1902015-10-15 12:33:24 +0000415 // Range Restriction Calculation For Packed Pairs of Float32/64 values
Elena Demikhovsky3582eb32015-06-01 11:05:34 +0000416 VRANGE,
Asaf Badouha5b2e5e2015-07-22 12:00:43 +0000417 // Reduce - Perform Reduction Transformation on scalar\packed FP
418 VREDUCE,
419 // RndScale - Round FP Values To Include A Given Number Of Fraction Bits
420 VRNDSCALE,
Craig Topper00096562015-11-26 19:41:34 +0000421 // VFPCLASS - Tests Types Of a FP Values for packed types.
Asaf Badouh572bbce2015-09-20 08:46:07 +0000422 VFPCLASS,
Craig Topper00096562015-11-26 19:41:34 +0000423 // VFPCLASSS - Tests Types Of a FP Values for scalar types.
424 VFPCLASSS,
Elena Demikhovskyad9c3962015-05-18 06:42:57 +0000425 // Broadcast scalar to vector
Bruno Cardoso Lopesbe5e9872011-08-17 02:29:19 +0000426 VBROADCAST,
Asaf Badouh0d957b82015-11-18 09:42:45 +0000427 // Broadcast mask to vector
428 VBROADCASTM,
Elena Demikhovskyad9c3962015-05-18 06:42:57 +0000429 // Broadcast subvector to vector
430 SUBV_BROADCAST,
Elena Demikhovsky9f423d62014-02-10 07:02:39 +0000431 // Insert/Extract vector element
Elena Demikhovsky89529742013-09-12 08:55:00 +0000432 VINSERT,
Elena Demikhovsky9f423d62014-02-10 07:02:39 +0000433 VEXTRACT,
Bruno Cardoso Lopes6f3b38a2010-08-20 22:55:05 +0000434
Simon Pilgrimd85cae32015-07-06 20:46:41 +0000435 /// SSE4A Extraction and Insertion.
436 EXTRQI, INSERTQI,
437
Simon Pilgrim86c5e852015-10-17 19:04:24 +0000438 // XOP variable/immediate rotations
439 VPROT, VPROTI,
Simon Pilgrim3d11c992015-09-30 08:17:50 +0000440 // XOP arithmetic/logical shifts
441 VPSHA, VPSHL,
Simon Pilgrim52d47e52015-10-11 14:15:17 +0000442 // XOP signed/unsigned integer comparisons
443 VPCOM, VPCOMU,
Simon Pilgrim3d11c992015-09-30 08:17:50 +0000444
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000445 // Vector multiply packed unsigned doubleword integers
Craig Topper1d471e32012-02-05 03:14:49 +0000446 PMULUDQ,
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000447 // Vector multiply packed signed doubleword integers
Benjamin Kramer6d2dff62014-04-26 14:12:19 +0000448 PMULDQ,
Asaf Badouhc6f3c822015-07-06 14:03:40 +0000449 // Vector Multiply Packed UnsignedIntegers with Round and Scale
450 MULHRS,
Igor Bregerf7fd5472015-07-21 07:11:28 +0000451 // Multiply and Add Packed Integers
452 VPMADDUBSW, VPMADDWD,
Asaf Badouh655822a2016-01-25 11:14:24 +0000453 VPMADD52L, VPMADD52H,
Elena Demikhovsky3cb3b002012-08-01 12:06:00 +0000454 // FMA nodes
455 FMADD,
456 FNMADD,
457 FMSUB,
458 FNMSUB,
459 FMADDSUB,
460 FMSUBADD,
Elena Demikhovsky7b0dd392015-01-28 10:21:27 +0000461 // FMA with rounding mode
462 FMADD_RND,
463 FNMADD_RND,
464 FMSUB_RND,
465 FNMSUB_RND,
466 FMADDSUB_RND,
Elena Demikhovsky52e81bc2015-02-23 15:12:31 +0000467 FMSUBADD_RND,
Elena Demikhovsky3cb3b002012-08-01 12:06:00 +0000468
Elena Demikhovsky908dbf42014-12-11 15:02:24 +0000469 // Compress and expand
470 COMPRESS,
471 EXPAND,
472
Igor Bregerabe4a792015-06-14 12:44:55 +0000473 //Convert Unsigned/Integer to Scalar Floating-Point Value
474 //with rounding mode
475 SINT_TO_FP_RND,
476 UINT_TO_FP_RND,
Elena Demikhovsky0f370932015-07-13 13:26:20 +0000477
478 // Vector float/double to signed/unsigned integer.
479 FP_TO_SINT_RND, FP_TO_UINT_RND,
Asaf Badouhad5c3fc2016-02-07 14:59:13 +0000480 // Scalar float/double to signed/unsigned integer.
481 SCALAR_FP_TO_SINT_RND, SCALAR_FP_TO_UINT_RND,
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000482 // Save xmm argument registers to the stack, according to %al. An operator
483 // is needed so that this can be expanded with control flow.
Dan Gohman48b185d2009-09-25 20:36:54 +0000484 VASTART_SAVE_XMM_REGS,
485
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000486 // Windows's _chkstk call to do stack probing.
Michael J. Spencerf509c6c2010-10-21 01:41:01 +0000487 WIN_ALLOCA,
Anton Korobeynikovd5e3fd62010-03-06 19:32:29 +0000488
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000489 // For allocating variable amounts of stack space when using
Rafael Espindola33530172011-08-30 19:43:21 +0000490 // segmented stacks. Check if the current stacklet has enough space, and
Rafael Espindola9d96c942011-09-06 19:29:31 +0000491 // falls back to heap allocation if not.
Rafael Espindola33530172011-08-30 19:43:21 +0000492 SEG_ALLOCA,
493
Duncan Sands7c601de2010-11-20 11:25:00 +0000494 // Memory barrier
495 MEMBARRIER,
496 MFENCE,
497 SFENCE,
498 LFENCE,
499
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000500 // Store FP status word into i16 register.
Benjamin Kramer913da4b2012-04-27 12:07:43 +0000501 FNSTSW16r,
502
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000503 // Store contents of %ah into %eflags.
Benjamin Kramer913da4b2012-04-27 12:07:43 +0000504 SAHF,
505
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000506 // Get a random integer and indicate whether it is valid in CF.
Benjamin Kramer0ab27942012-07-12 09:31:43 +0000507 RDRAND,
508
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000509 // Get a NIST SP800-90B & C compliant random integer and
Michael Liaoa486a112013-03-28 23:41:26 +0000510 // indicate whether it is valid in CF.
511 RDSEED,
512
Craig Topperab47fe42012-08-06 06:22:36 +0000513 PCMPISTRI,
514 PCMPESTRI,
515
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000516 // Test if in transactional execution.
Michael Liao03f9ad02013-03-26 22:47:01 +0000517 XTEST,
518
Elena Demikhovskybe8808d2014-11-12 07:31:03 +0000519 // ERI instructions
520 RSQRT28, RCP28, EXP2,
521
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000522 // Compare and swap.
Tim Northover277066a2014-07-01 18:53:31 +0000523 LCMPXCHG_DAG = ISD::FIRST_TARGET_MEMORY_OPCODE,
Chris Lattner54e53292010-09-22 00:34:38 +0000524 LCMPXCHG8_DAG,
Eli Friedman5e570422011-08-26 21:21:21 +0000525 LCMPXCHG16_DAG,
Anton Korobeynikovd5e3fd62010-03-06 19:32:29 +0000526
Ahmed Bougachabb5d7d72016-02-29 19:28:07 +0000527 /// LOCK-prefixed arithmetic read-modify-write instructions.
528 /// EFLAGS, OUTCHAIN = LADD(INCHAIN, PTR, RHS)
529 LADD, LSUB, LOR, LXOR, LAND,
530
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000531 // Load, scalar_to_vector, and zero extend.
Chris Lattner78f518b2010-09-22 01:05:16 +0000532 VZEXT_LOAD,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000533
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000534 // Store FP control world into i16 memory.
Chris Lattnered85da52010-09-22 01:11:26 +0000535 FNSTCW16m,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000536
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000537 /// This instruction implements FP_TO_SINT with the
Chris Lattner78f518b2010-09-22 01:05:16 +0000538 /// integer destination in memory and a FP reg source. This corresponds
539 /// to the X86::FIST*m instructions and the rounding mode change stuff. It
540 /// has two inputs (token chain and address) and two outputs (int value
541 /// and token chain).
542 FP_TO_INT16_IN_MEM,
543 FP_TO_INT32_IN_MEM,
Chris Lattnera5156c32010-09-22 01:28:21 +0000544 FP_TO_INT64_IN_MEM,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000545
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000546 /// This instruction implements SINT_TO_FP with the
Chris Lattnera5156c32010-09-22 01:28:21 +0000547 /// integer source in memory and FP reg result. This corresponds to the
548 /// X86::FILD*m instructions. It has three inputs (token chain, address,
549 /// and source type) and two outputs (FP value and token chain). FILD_FLAG
550 /// also produces a flag).
551 FILD,
552 FILD_FLAG,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000553
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000554 /// This instruction implements an extending load to FP stack slots.
Chris Lattnera5156c32010-09-22 01:28:21 +0000555 /// This corresponds to the X86::FLD32m / X86::FLD64m. It takes a chain
556 /// operand, ptr to load from, and a ValueType node indicating the type
557 /// to load to.
558 FLD,
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000559
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000560 /// This instruction implements a truncating store to FP stack
Chris Lattnera5156c32010-09-22 01:28:21 +0000561 /// slots. This corresponds to the X86::FST32m / X86::FST64m. It takes a
562 /// chain operand, value to store, address, and a ValueType to store it
563 /// as.
Dan Gohman395a8982010-10-12 18:00:49 +0000564 FST,
565
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000566 /// This instruction grabs the address of the next argument
Dan Gohman395a8982010-10-12 18:00:49 +0000567 /// from a va_list. (reads and modifies the va_list in memory)
568 VAARG_64
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000569
Anton Korobeynikovd5e3fd62010-03-06 19:32:29 +0000570 // WARNING: Do not add anything in the end unless you want the node to
Ahmed Bougachaffcab7b2016-02-26 22:59:57 +0000571 // have memop! In fact, starting from FIRST_TARGET_MEMORY_OPCODE all
572 // opcodes will be thought as target memory ops!
Chris Lattner76ac0682005-11-15 00:40:23 +0000573 };
Eugene Zelenko6ac3f732016-01-26 18:48:36 +0000574 } // end namespace X86ISD
Chris Lattner76ac0682005-11-15 00:40:23 +0000575
Evan Cheng084a1cd2008-01-29 19:34:22 +0000576 /// Define some predicates that are used for node matching.
577 namespace X86 {
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000578 /// Return true if the specified
David Greenec4da1102011-02-03 15:50:00 +0000579 /// EXTRACT_SUBVECTOR operand specifies a vector extract that is
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000580 /// suitable for input to VEXTRACTF128, VEXTRACTI128 instructions.
581 bool isVEXTRACT128Index(SDNode *N);
David Greenec4da1102011-02-03 15:50:00 +0000582
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000583 /// Return true if the specified
David Greene653f1ee2011-02-04 16:08:29 +0000584 /// INSERT_SUBVECTOR operand specifies a subvector insert that is
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000585 /// suitable for input to VINSERTF128, VINSERTI128 instructions.
586 bool isVINSERT128Index(SDNode *N);
David Greene653f1ee2011-02-04 16:08:29 +0000587
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000588 /// Return true if the specified
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000589 /// EXTRACT_SUBVECTOR operand specifies a vector extract that is
590 /// suitable for input to VEXTRACTF64X4, VEXTRACTI64X4 instructions.
591 bool isVEXTRACT256Index(SDNode *N);
592
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000593 /// Return true if the specified
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000594 /// INSERT_SUBVECTOR operand specifies a subvector insert that is
595 /// suitable for input to VINSERTF64X4, VINSERTI64X4 instructions.
596 bool isVINSERT256Index(SDNode *N);
597
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000598 /// Return the appropriate
David Greenec4da1102011-02-03 15:50:00 +0000599 /// immediate to extract the specified EXTRACT_SUBVECTOR index
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000600 /// with VEXTRACTF128, VEXTRACTI128 instructions.
601 unsigned getExtractVEXTRACT128Immediate(SDNode *N);
David Greenec4da1102011-02-03 15:50:00 +0000602
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000603 /// Return the appropriate
David Greene653f1ee2011-02-04 16:08:29 +0000604 /// immediate to insert at the specified INSERT_SUBVECTOR index
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000605 /// with VINSERTF128, VINSERT128 instructions.
606 unsigned getInsertVINSERT128Immediate(SDNode *N);
607
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000608 /// Return the appropriate
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000609 /// immediate to extract the specified EXTRACT_SUBVECTOR index
610 /// with VEXTRACTF64X4, VEXTRACTI64x4 instructions.
611 unsigned getExtractVEXTRACT256Immediate(SDNode *N);
612
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000613 /// Return the appropriate
Elena Demikhovsky67b05fc2013-07-31 11:35:14 +0000614 /// immediate to insert at the specified INSERT_SUBVECTOR index
615 /// with VINSERTF64x4, VINSERTI64x4 instructions.
616 unsigned getInsertVINSERT256Immediate(SDNode *N);
David Greene653f1ee2011-02-04 16:08:29 +0000617
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000618 /// Returns true if Elt is a constant zero or floating point constant +0.0.
Evan Chenge62288f2009-07-30 08:33:02 +0000619 bool isZeroNode(SDValue Elt);
Anton Korobeynikov741ea0d2009-08-05 23:01:26 +0000620
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000621 /// Returns true of the given offset can be
Anton Korobeynikov741ea0d2009-08-05 23:01:26 +0000622 /// fit into displacement field of the instruction.
623 bool isOffsetSuitableForCodeModel(int64_t Offset, CodeModel::Model M,
624 bool hasSymbolicDisplacement = true);
Evan Cheng3a0c5e52011-06-23 17:54:54 +0000625
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000626 /// Determines whether the callee is required to pop its
Evan Cheng3a0c5e52011-06-23 17:54:54 +0000627 /// own arguments. Callee pop is necessary to support tail calls.
628 bool isCalleePop(CallingConv::ID CallingConv,
Kevin B. Smithc831a082016-01-16 00:08:36 +0000629 bool is64Bit, bool IsVarArg, bool GuaranteeTCO);
Adam Nemet50b83f02014-08-14 17:13:26 +0000630
Eugene Zelenko6ac3f732016-01-26 18:48:36 +0000631 } // end namespace X86
Evan Cheng084a1cd2008-01-29 19:34:22 +0000632
Chris Lattnerf4aeff02006-10-18 18:26:48 +0000633 //===--------------------------------------------------------------------===//
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000634 // X86 Implementation of the TargetLowering interface
Craig Topper26eec092014-03-31 06:22:15 +0000635 class X86TargetLowering final : public TargetLowering {
Chris Lattner76ac0682005-11-15 00:40:23 +0000636 public:
Eric Christopher05b81972015-02-02 17:38:43 +0000637 explicit X86TargetLowering(const X86TargetMachine &TM,
638 const X86Subtarget &STI);
Chris Lattner76ac0682005-11-15 00:40:23 +0000639
Craig Topper2d9361e2014-03-09 07:44:38 +0000640 unsigned getJumpTableEncoding() const override;
Eric Christopher824f42f2015-05-12 01:26:05 +0000641 bool useSoftFloat() const override;
Chris Lattner9c1efcd2010-01-25 23:38:14 +0000642
Mehdi Aminieaabc512015-07-09 15:12:23 +0000643 MVT getScalarShiftAmountTy(const DataLayout &, EVT) const override {
Mehdi Amini9639d652015-07-09 02:09:20 +0000644 return MVT::i8;
645 }
Owen Andersonb2c80da2011-02-25 21:41:48 +0000646
Craig Topper2d9361e2014-03-09 07:44:38 +0000647 const MCExpr *
Chris Lattner4bfbe932010-01-26 05:02:42 +0000648 LowerCustomJumpTableEntry(const MachineJumpTableInfo *MJTI,
649 const MachineBasicBlock *MBB, unsigned uid,
Craig Topper2d9361e2014-03-09 07:44:38 +0000650 MCContext &Ctx) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000651
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000652 /// Returns relocation base for the given PIC jumptable.
Craig Topper2d9361e2014-03-09 07:44:38 +0000653 SDValue getPICJumpTableRelocBase(SDValue Table,
654 SelectionDAG &DAG) const override;
655 const MCExpr *
Chris Lattner8a785d72010-01-26 06:28:43 +0000656 getPICJumpTableRelocBaseExpr(const MachineFunction *MF,
Craig Topper2d9361e2014-03-09 07:44:38 +0000657 unsigned JTI, MCContext &Ctx) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000658
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000659 /// Return the desired alignment for ByVal aggregate
Evan Cheng35abd842008-01-23 23:17:41 +0000660 /// function arguments in the caller parameter area. For X86, aggregates
661 /// that contains are placed at 16-byte boundaries while the rest are at
662 /// 4-byte boundaries.
Mehdi Amini5c183d52015-07-09 02:09:28 +0000663 unsigned getByValTypeAlignment(Type *Ty,
664 const DataLayout &DL) const override;
Evan Chengef377ad2008-05-15 08:39:06 +0000665
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000666 /// Returns the target specific optimal type for load
Evan Cheng61399372010-04-02 19:36:14 +0000667 /// and store operations as a result of memset, memcpy, and memmove
668 /// lowering. If DstAlign is zero that means it's safe to destination
669 /// alignment can satisfy any constraint. Similarly if SrcAlign is zero it
670 /// means there isn't a need to check it against alignment requirement,
Evan Cheng962711e2012-12-12 02:34:41 +0000671 /// probably because the source does not need to be loaded. If 'IsMemset' is
672 /// true, that means it's expanding a memset. If 'ZeroMemset' is true, that
673 /// means it's a memset of zero. 'MemcpyStrSrc' indicates whether the memcpy
674 /// source is constant so it does not need to be loaded.
Dan Gohman148c69a2010-04-16 20:11:05 +0000675 /// It returns EVT::Other if the type should be determined using generic
676 /// target-independent logic.
Craig Topper2d9361e2014-03-09 07:44:38 +0000677 EVT getOptimalMemOpType(uint64_t Size, unsigned DstAlign, unsigned SrcAlign,
678 bool IsMemset, bool ZeroMemset, bool MemcpyStrSrc,
679 MachineFunction &MF) const override;
Bill Wendlingbae6b2c2009-08-15 21:21:19 +0000680
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000681 /// Returns true if it's safe to use load / store of the
Evan Cheng04e55182012-12-12 00:42:09 +0000682 /// specified type to expand memcpy / memset inline. This is mostly true
Evan Chengc3d1aca2012-12-12 01:32:07 +0000683 /// for all types except for some special cases. For example, on X86
Evan Cheng04e55182012-12-12 00:42:09 +0000684 /// targets without SSE2 f64 load / store are done with fldl / fstpl which
Evan Chengc3d1aca2012-12-12 01:32:07 +0000685 /// also does type conversion. Note the specified type doesn't have to be
686 /// legal as the hook is used before type legalization.
Craig Topper2d9361e2014-03-09 07:44:38 +0000687 bool isSafeMemOpType(MVT VT) const override;
Evan Cheng04e55182012-12-12 00:42:09 +0000688
Sanjay Patele4d95c62015-07-01 17:55:07 +0000689 /// Returns true if the target allows unaligned memory accesses of the
690 /// specified type. Returns whether it is "fast" in the last argument.
Matt Arsenault6f2a5262014-07-27 17:46:40 +0000691 bool allowsMisalignedMemoryAccesses(EVT VT, unsigned AS, unsigned Align,
Craig Topper2d9361e2014-03-09 07:44:38 +0000692 bool *Fast) const override;
Bill Wendling31ceb1b2009-06-30 22:38:32 +0000693
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000694 /// Provide custom lowering hooks for some operations.
Chris Lattner76ac0682005-11-15 00:40:23 +0000695 ///
Craig Topper2d9361e2014-03-09 07:44:38 +0000696 SDValue LowerOperation(SDValue Op, SelectionDAG &DAG) const override;
Chris Lattner76ac0682005-11-15 00:40:23 +0000697
Igor Breger1e5bafb2016-01-24 08:04:33 +0000698 /// Places new result values for the node in Results (their number
699 /// and types must exactly match those of the original return values of
700 /// the node), or leaves Results empty, which indicates that the node is not
701 /// to be custom lowered after all.
Eugene Zelenko6ac3f732016-01-26 18:48:36 +0000702 void LowerOperationWrapper(SDNode *N,
703 SmallVectorImpl<SDValue> &Results,
704 SelectionDAG &DAG) const override;
Igor Breger1e5bafb2016-01-24 08:04:33 +0000705
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000706 /// Replace the results of node with an illegal result
Duncan Sands6ed40142008-12-01 11:39:25 +0000707 /// type with new values built out of custom code.
Chris Lattnerf81d5882007-11-24 07:07:01 +0000708 ///
Craig Topper2d9361e2014-03-09 07:44:38 +0000709 void ReplaceNodeResults(SDNode *N, SmallVectorImpl<SDValue>&Results,
710 SelectionDAG &DAG) const override;
Chris Lattnerf81d5882007-11-24 07:07:01 +0000711
Craig Topper2d9361e2014-03-09 07:44:38 +0000712 SDValue PerformDAGCombine(SDNode *N, DAGCombinerInfo &DCI) const override;
Evan Cheng5987cfb2006-07-07 08:33:52 +0000713
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000714 /// Return true if the target has native support for
Evan Chengf1bd5fc2010-04-17 06:13:15 +0000715 /// the specified value type and it is 'desirable' to use the type for the
716 /// given node type. e.g. On x86 i16 is legal, but undesirable since i16
717 /// instruction encodings are longer and some i16 instructions are slow.
Craig Topper2d9361e2014-03-09 07:44:38 +0000718 bool isTypeDesirableForOp(unsigned Opc, EVT VT) const override;
Evan Chengf1bd5fc2010-04-17 06:13:15 +0000719
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000720 /// Return true if the target has native support for the
Evan Chengf1bd5fc2010-04-17 06:13:15 +0000721 /// specified value type and it is 'desirable' to use the type. e.g. On x86
722 /// i16 is legal, but undesirable since i16 instruction encodings are longer
723 /// and some i16 instructions are slow.
Craig Topper2d9361e2014-03-09 07:44:38 +0000724 bool IsDesirableToPromoteOp(SDValue Op, EVT &PVT) const override;
Evan Chengaf56fac2010-04-16 06:14:10 +0000725
David Majnemerca1c9f02016-01-04 04:49:41 +0000726 /// Return true if the MachineFunction contains a COPY which would imply
727 /// HasOpaqueSPAdjustment.
728 bool hasCopyImplyingStackAdjustment(MachineFunction *MF) const override;
729
Craig Topper2d9361e2014-03-09 07:44:38 +0000730 MachineBasicBlock *
Dan Gohman25c16532010-05-01 00:01:06 +0000731 EmitInstrWithCustomInserter(MachineInstr *MI,
Craig Topper2d9361e2014-03-09 07:44:38 +0000732 MachineBasicBlock *MBB) const override;
Evan Cheng339edad2006-01-11 00:33:36 +0000733
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000734
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000735 /// This method returns the name of a target specific DAG node.
Craig Topper2d9361e2014-03-09 07:44:38 +0000736 const char *getTargetNodeName(unsigned Opcode) const override;
Evan Cheng6af02632005-12-20 06:22:03 +0000737
Andrea Di Biagio22ee3f62014-12-28 11:07:35 +0000738 bool isCheapToSpeculateCttz() const override;
739
740 bool isCheapToSpeculateCtlz() const override;
741
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000742 /// Return the value type to use for ISD::SETCC.
Mehdi Amini44ede332015-07-09 02:09:04 +0000743 EVT getSetCCResultType(const DataLayout &DL, LLVMContext &Context,
744 EVT VT) const override;
Scott Michela6729e82008-03-10 15:42:14 +0000745
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000746 /// Determine which of the bits specified in Mask are known to be either
747 /// zero or one and return them in the KnownZero/KnownOne bitsets.
Jay Foada0653a32014-05-14 21:14:37 +0000748 void computeKnownBitsForTargetNode(const SDValue Op,
749 APInt &KnownZero,
750 APInt &KnownOne,
751 const SelectionDAG &DAG,
752 unsigned Depth = 0) const override;
Evan Cheng2609d5e2008-05-12 19:56:52 +0000753
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000754 /// Determine the number of bits in the operation that are sign bits.
Craig Topper2d9361e2014-03-09 07:44:38 +0000755 unsigned ComputeNumSignBitsForTargetNode(SDValue Op,
Matt Arsenaultcf6f6882014-04-04 20:13:13 +0000756 const SelectionDAG &DAG,
Craig Topper2d9361e2014-03-09 07:44:38 +0000757 unsigned Depth) const override;
Owen Anderson5e65dfb2010-09-21 20:42:50 +0000758
Craig Topper2d9361e2014-03-09 07:44:38 +0000759 bool isGAPlusOffset(SDNode *N, const GlobalValue* &GA,
760 int64_t &Offset) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000761
Dan Gohman21cea8a2010-04-17 15:26:15 +0000762 SDValue getReturnAddressFrameIndex(SelectionDAG &DAG) const;
Chris Lattner76ac0682005-11-15 00:40:23 +0000763
Craig Topper2d9361e2014-03-09 07:44:38 +0000764 bool ExpandInlineAsm(CallInst *CI) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000765
Benjamin Kramer9bfb6272015-07-05 19:29:18 +0000766 ConstraintType getConstraintType(StringRef Constraint) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000767
John Thompsone8360b72010-10-29 17:29:13 +0000768 /// Examine constraint string and operand type and determine a weight value.
John Thompson1094c802010-09-13 18:15:37 +0000769 /// The operand object must already have been set up with the operand type.
Craig Topper2d9361e2014-03-09 07:44:38 +0000770 ConstraintWeight
771 getSingleConstraintMatchWeight(AsmOperandInfo &info,
772 const char *constraint) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000773
Craig Topper2d9361e2014-03-09 07:44:38 +0000774 const char *LowerXConstraint(EVT ConstraintVT) const override;
Dale Johannesen2b3bc302008-01-29 02:21:21 +0000775
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000776 /// Lower the specified operand into the Ops vector. If it is invalid, don't
777 /// add anything to Ops. If hasMemory is true it means one of the asm
778 /// constraint of the inline asm instruction being processed is 'm'.
Craig Topper2d9361e2014-03-09 07:44:38 +0000779 void LowerAsmOperandForConstraint(SDValue Op,
780 std::string &Constraint,
781 std::vector<SDValue> &Ops,
782 SelectionDAG &DAG) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000783
Benjamin Kramer9bfb6272015-07-05 19:29:18 +0000784 unsigned
785 getInlineAsmMemConstraint(StringRef ConstraintCode) const override {
Daniel Sandersd0496692015-05-16 12:09:54 +0000786 if (ConstraintCode == "i")
787 return InlineAsm::Constraint_i;
788 else if (ConstraintCode == "o")
789 return InlineAsm::Constraint_o;
790 else if (ConstraintCode == "v")
791 return InlineAsm::Constraint_v;
792 else if (ConstraintCode == "X")
793 return InlineAsm::Constraint_X;
794 return TargetLowering::getInlineAsmMemConstraint(ConstraintCode);
Daniel Sandersbf5b80f2015-03-16 13:13:41 +0000795 }
796
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000797 /// Given a physical register constraint
Chris Lattnerf4aeff02006-10-18 18:26:48 +0000798 /// (e.g. {edx}), return the register number and the register class for the
799 /// register. This should only be used for C_Register constraints. On
800 /// error, this returns a register number of 0.
Eric Christopher11e4df72015-02-26 22:38:43 +0000801 std::pair<unsigned, const TargetRegisterClass *>
802 getRegForInlineAsmConstraint(const TargetRegisterInfo *TRI,
Benjamin Kramer9bfb6272015-07-05 19:29:18 +0000803 StringRef Constraint, MVT VT) const override;
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000804
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000805 /// Return true if the addressing mode represented
Chris Lattner1eb94d92007-03-30 23:15:24 +0000806 /// by AM is legal for this target, for a load/store of the specified type.
Mehdi Amini0cdec1e2015-07-09 02:09:40 +0000807 bool isLegalAddressingMode(const DataLayout &DL, const AddrMode &AM,
808 Type *Ty, unsigned AS) const override;
Chris Lattner1eb94d92007-03-30 23:15:24 +0000809
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000810 /// Return true if the specified immediate is legal
Evan Chengf579bec2012-07-17 06:53:39 +0000811 /// icmp immediate, that is the target has icmp instructions which can
812 /// compare a register against the immediate without having to materialize
813 /// the immediate into a register.
Craig Topper2d9361e2014-03-09 07:44:38 +0000814 bool isLegalICmpImmediate(int64_t Imm) const override;
Evan Chengf579bec2012-07-17 06:53:39 +0000815
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000816 /// Return true if the specified immediate is legal
Evan Chengf579bec2012-07-17 06:53:39 +0000817 /// add immediate, that is the target has add instructions which can
818 /// add a register and the immediate without having to materialize
819 /// the immediate into a register.
Craig Topper2d9361e2014-03-09 07:44:38 +0000820 bool isLegalAddImmediate(int64_t Imm) const override;
Evan Chengf579bec2012-07-17 06:53:39 +0000821
Quentin Colombetea189332014-04-26 01:11:26 +0000822 /// \brief Return the cost of the scaling factor used in the addressing
823 /// mode represented by AM for this target, for a load/store
824 /// of the specified type.
825 /// If the AM is supported, the return value must be >= 0.
826 /// If the AM is not supported, it returns a negative value.
Mehdi Amini0cdec1e2015-07-09 02:09:40 +0000827 int getScalingFactorCost(const DataLayout &DL, const AddrMode &AM, Type *Ty,
Matt Arsenaultbd7d80a2015-06-01 05:31:59 +0000828 unsigned AS) const override;
Tim Northoveraeb8e062014-02-19 10:02:43 +0000829
Craig Topper2d9361e2014-03-09 07:44:38 +0000830 bool isVectorShiftByScalarCheap(Type *Ty) const override;
Tim Northoveraeb8e062014-02-19 10:02:43 +0000831
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000832 /// Return true if it's free to truncate a value of
Evan Cheng7f3d0242007-10-26 01:56:11 +0000833 /// type Ty1 to type Ty2. e.g. On x86 it's free to truncate a i32 value in
834 /// register EAX to i16 by referencing its sub-register AX.
Craig Topper2d9361e2014-03-09 07:44:38 +0000835 bool isTruncateFree(Type *Ty1, Type *Ty2) const override;
836 bool isTruncateFree(EVT VT1, EVT VT2) const override;
Dan Gohmanad3e5492009-04-08 00:15:30 +0000837
Craig Topper2d9361e2014-03-09 07:44:38 +0000838 bool allowTruncateForTailCall(Type *Ty1, Type *Ty2) const override;
Tim Northovera4415852013-08-06 09:12:35 +0000839
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000840 /// Return true if any actual instruction that defines a
Dan Gohmanad3e5492009-04-08 00:15:30 +0000841 /// value of type Ty1 implicit zero-extends the value to Ty2 in the result
842 /// register. This does not necessarily include registers defined in
843 /// unknown ways, such as incoming arguments, or copies from unknown
844 /// virtual registers. Also, if isTruncateFree(Ty2, Ty1) is true, this
845 /// does not necessarily apply to truncate instructions. e.g. on x86-64,
846 /// all instructions that define 32-bit values implicit zero-extend the
847 /// result out to 64 bits.
Craig Topper2d9361e2014-03-09 07:44:38 +0000848 bool isZExtFree(Type *Ty1, Type *Ty2) const override;
849 bool isZExtFree(EVT VT1, EVT VT2) const override;
850 bool isZExtFree(SDValue Val, EVT VT2) const override;
Dan Gohmanad3e5492009-04-08 00:15:30 +0000851
Ahmed Bougachae892d132015-02-05 18:31:02 +0000852 /// Return true if folding a vector load into ExtVal (a sign, zero, or any
853 /// extend node) is profitable.
854 bool isVectorLoadExtDesirable(SDValue) const override;
855
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000856 /// Return true if an FMA operation is faster than a pair of fmul and fadd
857 /// instructions. fmuladd intrinsics will be expanded to FMAs when this
858 /// method returns true, otherwise fmuladd is expanded to fmul + fadd.
Craig Topper2d9361e2014-03-09 07:44:38 +0000859 bool isFMAFasterThanFMulAndFAdd(EVT VT) const override;
Elena Demikhovsky3cb3b002012-08-01 12:06:00 +0000860
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000861 /// Return true if it's profitable to narrow
Evan Chenga9cda8a2009-05-28 00:35:15 +0000862 /// operations of type VT1 to VT2. e.g. on x86, it's profitable to narrow
863 /// from i32 to i8 but not from i32 to i16.
Craig Topper2d9361e2014-03-09 07:44:38 +0000864 bool isNarrowingProfitable(EVT VT1, EVT VT2) const override;
Evan Chenga9cda8a2009-05-28 00:35:15 +0000865
Igor Bregerea8e8e92016-01-12 10:02:32 +0000866 /// Given an intrinsic, checks if on the target the intrinsic will need to map
867 /// to a MemIntrinsicNode (touches memory). If this is the case, it returns
868 /// true and stores the intrinsic information into the IntrinsicInfo that was
869 /// passed to the function.
870 bool getTgtMemIntrinsic(IntrinsicInfo &Info, const CallInst &I,
871 unsigned Intrinsic) const override;
872
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000873 /// Returns true if the target can instruction select the
Evan Cheng16993aa2009-10-27 19:56:55 +0000874 /// specified FP immediate natively. If false, the legalizer will
875 /// materialize the FP immediate as a load from a constant pool.
Craig Topper2d9361e2014-03-09 07:44:38 +0000876 bool isFPImmLegal(const APFloat &Imm, EVT VT) const override;
Evan Cheng16993aa2009-10-27 19:56:55 +0000877
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000878 /// Targets can use this to indicate that they only support *some*
879 /// VECTOR_SHUFFLE operations, those with specific masks. By default, if a
880 /// target supports the VECTOR_SHUFFLE node, all mask values are assumed to
881 /// be legal.
Craig Topper2d9361e2014-03-09 07:44:38 +0000882 bool isShuffleMaskLegal(const SmallVectorImpl<int> &Mask,
883 EVT VT) const override;
Evan Cheng60f0b892006-04-20 08:58:49 +0000884
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000885 /// Similar to isShuffleMaskLegal. This is used by Targets can use this to
886 /// indicate if there is a suitable VECTOR_SHUFFLE that can be used to
887 /// replace a VAND with a constant pool entry.
Craig Topper2d9361e2014-03-09 07:44:38 +0000888 bool isVectorClearMaskLegal(const SmallVectorImpl<int> &Mask,
889 EVT VT) const override;
Evan Cheng0a62cb42008-03-05 01:30:59 +0000890
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000891 /// If true, then instruction selection should
Evan Cheng0a62cb42008-03-05 01:30:59 +0000892 /// seek to shrink the FP constant of the specified type to a smaller type
893 /// in order to save space and / or reduce runtime.
Craig Topper2d9361e2014-03-09 07:44:38 +0000894 bool ShouldShrinkFPConstant(EVT VT) const override {
Evan Cheng0a62cb42008-03-05 01:30:59 +0000895 // Don't shrink FP constpool if SSE2 is available since cvtss2sd is more
896 // expensive than a straight movsd. On the other hand, it's important to
897 // shrink long double fp constant since fldt is very slow.
Owen Anderson9f944592009-08-11 20:47:22 +0000898 return !X86ScalarSSEf64 || VT == MVT::f80;
Evan Cheng0a62cb42008-03-05 01:30:59 +0000899 }
Michael J. Spencer9cafc872010-10-20 23:40:27 +0000900
David Majnemer29c52f72015-01-06 07:12:52 +0000901 /// Return true if we believe it is correct and profitable to reduce the
902 /// load node to a smaller type.
903 bool shouldReduceLoadWidth(SDNode *Load, ISD::LoadExtType ExtTy,
904 EVT NewVT) const override;
905
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000906 /// Return true if the specified scalar FP type is computed in an SSE
907 /// register, not on the X87 floating point stack.
Owen Anderson53aa7a92009-08-10 22:56:29 +0000908 bool isScalarFPTypeInSSEReg(EVT VT) const {
Owen Anderson9f944592009-08-11 20:47:22 +0000909 return (VT == MVT::f64 && X86ScalarSSEf64) || // f64 is when SSE2
Craig Topper95ceb5a2015-11-02 05:24:22 +0000910 (VT == MVT::f32 && X86ScalarSSEf32); // f32 is when SSE1
Chris Lattner7dc00e82008-01-18 06:52:41 +0000911 }
Dan Gohman4619e932008-08-19 21:32:53 +0000912
Juergen Ributzka659ce002014-01-28 01:20:14 +0000913 /// \brief Returns true if it is beneficial to convert a load of a constant
914 /// to just the constant itself.
Craig Topper2d9361e2014-03-09 07:44:38 +0000915 bool shouldConvertConstantLoadToIntImm(const APInt &Imm,
916 Type *Ty) const override;
Juergen Ributzka659ce002014-01-28 01:20:14 +0000917
Michael Kuperstein047b1a02014-12-17 12:32:17 +0000918 /// Return true if EXTRACT_SUBVECTOR is cheap for this result type
919 /// with this index.
920 bool isExtractSubvectorCheap(EVT ResVT, unsigned Index) const override;
921
Renato Golinc0a3c1d2014-03-26 12:52:28 +0000922 /// Intel processors have a unified instruction and data cache
Craig Topper9d74a5a2014-04-29 07:58:41 +0000923 const char * getClearCacheBuiltinName() const override {
Craig Toppere73658d2014-04-28 04:05:08 +0000924 return nullptr; // nothing to do, move along.
Renato Golinc0a3c1d2014-03-26 12:52:28 +0000925 }
926
Pat Gavlina717f252015-07-09 17:40:29 +0000927 unsigned getRegisterByName(const char* RegName, EVT VT,
928 SelectionDAG &DAG) const override;
Renato Golinc7aea402014-05-06 16:51:25 +0000929
Joseph Tremouletf748c892015-11-07 01:11:31 +0000930 /// If a physical register, this returns the register that receives the
931 /// exception address on entry to an EH pad.
932 unsigned
933 getExceptionPointerRegister(const Constant *PersonalityFn) const override;
934
935 /// If a physical register, this returns the register that receives the
936 /// exception typeid on entry to a landing pad.
937 unsigned
938 getExceptionSelectorRegister(const Constant *PersonalityFn) const override;
939
David Majnemer1ef65402016-03-03 00:01:25 +0000940 virtual bool needsFixedCatchObjects() const override;
941
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000942 /// This method returns a target specific FastISel object,
Dan Gohman4619e932008-08-19 21:32:53 +0000943 /// or null if the target does not support "fast" ISel.
Craig Topper2d9361e2014-03-09 07:44:38 +0000944 FastISel *createFastISel(FunctionLoweringInfo &funcInfo,
945 const TargetLibraryInfo *libInfo) const override;
Bill Wendling31ceb1b2009-06-30 22:38:32 +0000946
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000947 /// Return true if the target stores stack protector cookies at a fixed
948 /// offset in some non-standard address space, and populates the address
949 /// space and offset as appropriate.
Craig Topper2d9361e2014-03-09 07:44:38 +0000950 bool getStackCookieLocation(unsigned &AddressSpace,
951 unsigned &Offset) const override;
Eric Christopher2ad0c772010-07-06 05:18:56 +0000952
Evgeniy Stepanova2002b02015-09-23 18:07:56 +0000953 /// Return true if the target stores SafeStack pointer at a fixed offset in
954 /// some non-standard address space, and populates the address space and
955 /// offset as appropriate.
Evgeniy Stepanovd1aad262015-10-26 18:28:25 +0000956 Value *getSafeStackPointerLocation(IRBuilder<> &IRB) const override;
Evgeniy Stepanova2002b02015-09-23 18:07:56 +0000957
Stuart Hastingse0d34262011-06-06 23:15:58 +0000958 SDValue BuildFILD(SDValue Op, EVT SrcVT, SDValue Chain, SDValue StackSlot,
959 SelectionDAG &DAG) const;
960
Craig Topper2d9361e2014-03-09 07:44:38 +0000961 bool isNoopAddrSpaceCast(unsigned SrcAS, unsigned DestAS) const override;
Matt Arsenaultb03bd4d2013-11-15 01:34:59 +0000962
Akira Hatanakae5b6e0d2014-07-25 19:31:34 +0000963 bool useLoadStackGuardNode() const override;
Chandler Carruth49a8b102014-07-03 02:11:29 +0000964 /// \brief Customize the preferred legalization strategy for certain types.
965 LegalizeTypeAction getPreferredVectorAction(EVT VT) const override;
966
Steve King5cdbd202015-08-25 02:31:21 +0000967 bool isIntDivCheap(EVT VT, AttributeSet Attr) const override;
Michael Kuperstein9fe42602015-08-19 11:21:43 +0000968
Evan Chengd4218b82010-07-26 21:50:05 +0000969 protected:
Eric Christopher23a3a7c2015-02-26 00:00:24 +0000970 std::pair<const TargetRegisterClass *, uint8_t>
971 findRepresentativeClass(const TargetRegisterInfo *TRI,
972 MVT VT) const override;
Evan Chengd4218b82010-07-26 21:50:05 +0000973
Chris Lattner76ac0682005-11-15 00:40:23 +0000974 private:
Sanjay Patel06fe9182016-01-26 22:08:58 +0000975 /// Keep a reference to the X86Subtarget around so that we can
Evan Chenga9467aa2006-04-25 20:13:52 +0000976 /// make the right decision when generating code for different targets.
Sanjay Patel06fe9182016-01-26 22:08:58 +0000977 const X86Subtarget &Subtarget;
Evan Chenga9467aa2006-04-25 20:13:52 +0000978
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000979 /// Select between SSE or x87 floating point ops.
Dale Johannesene36c4002007-09-23 14:52:20 +0000980 /// When SSE is available, use it for f32 operations.
981 /// When SSE2 is available, use it for f64 operations.
982 bool X86ScalarSSEf32;
983 bool X86ScalarSSEf64;
Evan Cheng084a1cd2008-01-29 19:34:22 +0000984
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000985 /// A list of legal FP immediates.
Evan Cheng16993aa2009-10-27 19:56:55 +0000986 std::vector<APFloat> LegalFPImmediates;
987
Sanjay Patel0e4a83e2014-10-01 19:39:32 +0000988 /// Indicate that this x86 target can instruction
Evan Cheng16993aa2009-10-27 19:56:55 +0000989 /// select the specified FP immediate natively.
990 void addLegalFPImmediate(const APFloat& Imm) {
991 LegalFPImmediates.push_back(Imm);
992 }
993
Dan Gohmanf9bbcd12009-08-05 01:29:28 +0000994 SDValue LowerCallResult(SDValue Chain, SDValue InFlag,
Sandeep Patel68c5f472009-09-02 08:44:58 +0000995 CallingConv::ID CallConv, bool isVarArg,
Dan Gohmanf9bbcd12009-08-05 01:29:28 +0000996 const SmallVectorImpl<ISD::InputArg> &Ins,
Andrew Trickef9de2a2013-05-25 02:42:55 +0000997 SDLoc dl, SelectionDAG &DAG,
Dan Gohman21cea8a2010-04-17 15:26:15 +0000998 SmallVectorImpl<SDValue> &InVals) const;
Dan Gohmanf9bbcd12009-08-05 01:29:28 +0000999 SDValue LowerMemArgument(SDValue Chain,
Sandeep Patel68c5f472009-09-02 08:44:58 +00001000 CallingConv::ID CallConv,
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001001 const SmallVectorImpl<ISD::InputArg> &ArgInfo,
Andrew Trickef9de2a2013-05-25 02:42:55 +00001002 SDLoc dl, SelectionDAG &DAG,
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001003 const CCValAssign &VA, MachineFrameInfo *MFI,
Dan Gohman21cea8a2010-04-17 15:26:15 +00001004 unsigned i) const;
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001005 SDValue LowerMemOpCallTo(SDValue Chain, SDValue StackPtr, SDValue Arg,
Andrew Trickef9de2a2013-05-25 02:42:55 +00001006 SDLoc dl, SelectionDAG &DAG,
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001007 const CCValAssign &VA,
Dan Gohman21cea8a2010-04-17 15:26:15 +00001008 ISD::ArgFlagsTy Flags) const;
Rafael Espindolae636fc02007-08-31 15:06:30 +00001009
Gordon Henriksen92319582008-01-05 16:56:59 +00001010 // Call lowering helpers.
Evan Cheng67a69dd2010-01-27 00:07:07 +00001011
Sanjay Patel0e4a83e2014-10-01 19:39:32 +00001012 /// Check whether the call is eligible for tail call optimization. Targets
1013 /// that want to do tail call optimization should implement this function.
Evan Cheng6f36a082010-02-02 23:55:14 +00001014 bool IsEligibleForTailCallOptimization(SDValue Callee,
Evan Cheng67a69dd2010-01-27 00:07:07 +00001015 CallingConv::ID CalleeCC,
1016 bool isVarArg,
Evan Chengae5edee2010-03-15 18:54:48 +00001017 bool isCalleeStructRet,
1018 bool isCallerStructRet,
Evan Cheng446ff282012-09-25 05:32:34 +00001019 Type *RetTy,
Evan Cheng85476f32010-01-27 06:25:16 +00001020 const SmallVectorImpl<ISD::OutputArg> &Outs,
Dan Gohmanfe7532a2010-07-07 15:54:55 +00001021 const SmallVectorImpl<SDValue> &OutVals,
Evan Cheng85476f32010-01-27 06:25:16 +00001022 const SmallVectorImpl<ISD::InputArg> &Ins,
Evan Cheng67a69dd2010-01-27 00:07:07 +00001023 SelectionDAG& DAG) const;
Dan Gohman2ce6f2a2008-07-27 21:46:04 +00001024 SDValue EmitTailCallLoadRetAddr(SelectionDAG &DAG, SDValue &OutRetAddr,
1025 SDValue Chain, bool IsTailCall, bool Is64Bit,
Andrew Trickef9de2a2013-05-25 02:42:55 +00001026 int FPDiff, SDLoc dl) const;
Arnold Schwaighofer634fc9a2008-04-12 18:11:06 +00001027
Dan Gohman21cea8a2010-04-17 15:26:15 +00001028 unsigned GetAlignedArgumentStackSize(unsigned StackSize,
1029 SelectionDAG &DAG) const;
Evan Chengcde9e302006-01-27 08:10:46 +00001030
Davide Italiano2ec47172016-02-22 21:06:46 +00001031 unsigned getAddressSpace(void) const;
1032
Eli Friedmandfe4f252009-05-23 09:59:16 +00001033 std::pair<SDValue,SDValue> FP_TO_INTHelper(SDValue Op, SelectionDAG &DAG,
NAKAMURA Takumibdf94872012-02-25 03:37:25 +00001034 bool isSigned,
1035 bool isReplace) const;
Evan Cheng493b8822009-12-09 21:00:30 +00001036
Dan Gohman21cea8a2010-04-17 15:26:15 +00001037 SDValue LowerBUILD_VECTOR(SDValue Op, SelectionDAG &DAG) const;
Elena Demikhovsky40864b62013-08-05 08:52:21 +00001038 SDValue LowerBUILD_VECTORvXi1(SDValue Op, SelectionDAG &DAG) const;
Filipe Cabecinhas17254aa2014-05-16 22:47:43 +00001039 SDValue LowerVSELECT(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001040 SDValue LowerEXTRACT_VECTOR_ELT(SDValue Op, SelectionDAG &DAG) const;
Elena Demikhovsky9737e382014-03-02 09:19:44 +00001041 SDValue ExtractBitFromMaskVector(SDValue Op, SelectionDAG &DAG) const;
Elena Demikhovskycf0b9ba2014-04-09 12:37:50 +00001042 SDValue InsertBitToMaskVector(SDValue Op, SelectionDAG &DAG) const;
1043
Dan Gohman21cea8a2010-04-17 15:26:15 +00001044 SDValue LowerINSERT_VECTOR_ELT(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001045 SDValue LowerConstantPool(SDValue Op, SelectionDAG &DAG) const;
1046 SDValue LowerBlockAddress(SDValue Op, SelectionDAG &DAG) const;
Andrew Trickef9de2a2013-05-25 02:42:55 +00001047 SDValue LowerGlobalAddress(const GlobalValue *GV, SDLoc dl,
Dale Johannesen021052a2009-02-04 20:06:27 +00001048 int64_t Offset, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001049 SDValue LowerGlobalAddress(SDValue Op, SelectionDAG &DAG) const;
1050 SDValue LowerGlobalTLSAddress(SDValue Op, SelectionDAG &DAG) const;
1051 SDValue LowerExternalSymbol(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001052 SDValue LowerSINT_TO_FP(SDValue Op, SelectionDAG &DAG) const;
1053 SDValue LowerUINT_TO_FP(SDValue Op, SelectionDAG &DAG) const;
1054 SDValue LowerUINT_TO_FP_i64(SDValue Op, SelectionDAG &DAG) const;
1055 SDValue LowerUINT_TO_FP_i32(SDValue Op, SelectionDAG &DAG) const;
Michael Liaoc03c03d2012-10-23 17:36:08 +00001056 SDValue lowerUINT_TO_FP_vec(SDValue Op, SelectionDAG &DAG) const;
Craig Toppere65a08b2013-01-20 21:34:37 +00001057 SDValue LowerTRUNCATE(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001058 SDValue LowerFP_TO_SINT(SDValue Op, SelectionDAG &DAG) const;
1059 SDValue LowerFP_TO_UINT(SDValue Op, SelectionDAG &DAG) const;
Evan Cheng9c8cd8c2010-04-21 01:47:12 +00001060 SDValue LowerToBT(SDValue And, ISD::CondCode CC,
Andrew Trickef9de2a2013-05-25 02:42:55 +00001061 SDLoc dl, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001062 SDValue LowerSETCC(SDValue Op, SelectionDAG &DAG) const;
Hans Wennborgdcc25002015-11-19 16:35:08 +00001063 SDValue LowerSETCCE(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001064 SDValue LowerSELECT(SDValue Op, SelectionDAG &DAG) const;
1065 SDValue LowerBRCOND(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001066 SDValue LowerJumpTable(SDValue Op, SelectionDAG &DAG) const;
1067 SDValue LowerDYNAMIC_STACKALLOC(SDValue Op, SelectionDAG &DAG) const;
1068 SDValue LowerVASTART(SDValue Op, SelectionDAG &DAG) const;
1069 SDValue LowerVAARG(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001070 SDValue LowerRETURNADDR(SDValue Op, SelectionDAG &DAG) const;
1071 SDValue LowerFRAMEADDR(SDValue Op, SelectionDAG &DAG) const;
1072 SDValue LowerFRAME_TO_ARGS_OFFSET(SDValue Op, SelectionDAG &DAG) const;
1073 SDValue LowerEH_RETURN(SDValue Op, SelectionDAG &DAG) const;
Michael Liao97bf3632012-10-15 22:39:43 +00001074 SDValue lowerEH_SJLJ_SETJMP(SDValue Op, SelectionDAG &DAG) const;
1075 SDValue lowerEH_SJLJ_LONGJMP(SDValue Op, SelectionDAG &DAG) const;
Duncan Sandsa0984362011-09-06 13:37:06 +00001076 SDValue LowerINIT_TRAMPOLINE(SDValue Op, SelectionDAG &DAG) const;
Dan Gohman21cea8a2010-04-17 15:26:15 +00001077 SDValue LowerFLT_ROUNDS_(SDValue Op, SelectionDAG &DAG) const;
Reid Kleckner4a406d32014-05-06 01:20:42 +00001078 SDValue LowerWin64_i128OP(SDValue Op, SelectionDAG &DAG) const;
Pat Gavlincc0431d2015-05-08 18:07:42 +00001079 SDValue LowerGC_TRANSITION_START(SDValue Op, SelectionDAG &DAG) const;
1080 SDValue LowerGC_TRANSITION_END(SDValue Op, SelectionDAG &DAG) const;
Duncan Sands6ed40142008-12-01 11:39:25 +00001081
Craig Topper2d9361e2014-03-09 07:44:38 +00001082 SDValue
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001083 LowerFormalArguments(SDValue Chain,
Sandeep Patel68c5f472009-09-02 08:44:58 +00001084 CallingConv::ID CallConv, bool isVarArg,
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001085 const SmallVectorImpl<ISD::InputArg> &Ins,
Andrew Trickef9de2a2013-05-25 02:42:55 +00001086 SDLoc dl, SelectionDAG &DAG,
Craig Topper2d9361e2014-03-09 07:44:38 +00001087 SmallVectorImpl<SDValue> &InVals) const override;
1088 SDValue LowerCall(CallLoweringInfo &CLI,
1089 SmallVectorImpl<SDValue> &InVals) const override;
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001090
Craig Topper2d9361e2014-03-09 07:44:38 +00001091 SDValue LowerReturn(SDValue Chain,
1092 CallingConv::ID CallConv, bool isVarArg,
1093 const SmallVectorImpl<ISD::OutputArg> &Outs,
1094 const SmallVectorImpl<SDValue> &OutVals,
1095 SDLoc dl, SelectionDAG &DAG) const override;
Dan Gohmanf9bbcd12009-08-05 01:29:28 +00001096
Manman Rened967f32016-01-12 01:08:46 +00001097 bool supportSplitCSR(MachineFunction *MF) const override {
1098 return MF->getFunction()->getCallingConv() == CallingConv::CXX_FAST_TLS &&
1099 MF->getFunction()->hasFnAttribute(Attribute::NoUnwind);
1100 }
1101 void initializeSplitCSR(MachineBasicBlock *Entry) const override;
1102 void insertCopiesSplitCSR(
1103 MachineBasicBlock *Entry,
1104 const SmallVectorImpl<MachineBasicBlock *> &Exits) const override;
1105
Craig Topper2d9361e2014-03-09 07:44:38 +00001106 bool isUsedByReturnOnly(SDNode *N, SDValue &Chain) const override;
Evan Chengd4b08732010-11-30 23:55:39 +00001107
Craig Topper2d9361e2014-03-09 07:44:38 +00001108 bool mayBeEmittedAsTailCall(CallInst *CI) const override;
Evan Cheng0663f232011-03-21 01:19:09 +00001109
Hans Wennborg850ec6c2016-02-08 19:34:30 +00001110 EVT getTypeForExtReturn(LLVMContext &Context, EVT VT,
1111 ISD::NodeType ExtendKind) const override;
Cameron Zwarichac106272011-03-16 22:20:18 +00001112
Craig Topper2d9361e2014-03-09 07:44:38 +00001113 bool CanLowerReturn(CallingConv::ID CallConv, MachineFunction &MF,
1114 bool isVarArg,
1115 const SmallVectorImpl<ISD::OutputArg> &Outs,
1116 LLVMContext &Context) const override;
Kenneth Uildriks07119732009-11-07 02:11:54 +00001117
Craig Topper840beec2014-04-04 05:16:06 +00001118 const MCPhysReg *getScratchRegisters(CallingConv::ID CC) const override;
Juergen Ributzka87ed9062013-11-09 01:51:33 +00001119
Ahmed Bougacha52468672015-09-11 17:08:28 +00001120 TargetLoweringBase::AtomicExpansionKind
1121 shouldExpandAtomicLoadInIR(LoadInst *SI) const override;
Robin Morisset25c8e312014-09-17 00:06:58 +00001122 bool shouldExpandAtomicStoreInIR(StoreInst *SI) const override;
Ahmed Bougacha9d677132015-09-11 17:08:17 +00001123 TargetLoweringBase::AtomicExpansionKind
JF Bastienf14889e2015-03-04 15:47:57 +00001124 shouldExpandAtomicRMWInIR(AtomicRMWInst *AI) const override;
Robin Morisset25c8e312014-09-17 00:06:58 +00001125
Robin Morisset810739d2014-09-25 17:27:43 +00001126 LoadInst *
1127 lowerIdempotentRMWIntoFencedLoad(AtomicRMWInst *AI) const override;
1128
Craig Toppere3dcce92015-08-01 22:20:21 +00001129 bool needsCmpXchgNb(Type *MemType) const;
Robin Morisset25c8e312014-09-17 00:06:58 +00001130
Dan Gohman395a8982010-10-12 18:00:49 +00001131 // Utility function to emit the low-level va_arg code for X86-64.
1132 MachineBasicBlock *EmitVAARG64WithCustomInserter(
1133 MachineInstr *MI,
1134 MachineBasicBlock *MBB) const;
1135
Dan Gohman0700a562009-08-15 01:38:56 +00001136 /// Utility function to emit the xmm reg save portion of va_start.
1137 MachineBasicBlock *EmitVAStartSaveXMMRegsWithCustomInserter(
1138 MachineInstr *BInstr,
1139 MachineBasicBlock *BB) const;
1140
Chris Lattnerd5f4fcc2009-09-02 05:57:00 +00001141 MachineBasicBlock *EmitLoweredSelect(MachineInstr *I,
Dan Gohman25c16532010-05-01 00:01:06 +00001142 MachineBasicBlock *BB) const;
Anton Korobeynikovd5e3fd62010-03-06 19:32:29 +00001143
JF Bastien86620832015-08-05 21:04:59 +00001144 MachineBasicBlock *EmitLoweredAtomicFP(MachineInstr *I,
1145 MachineBasicBlock *BB) const;
1146
Michael J. Spencerf509c6c2010-10-21 01:41:01 +00001147 MachineBasicBlock *EmitLoweredWinAlloca(MachineInstr *MI,
Dan Gohman25c16532010-05-01 00:01:06 +00001148 MachineBasicBlock *BB) const;
Michael J. Spencer9cafc872010-10-20 23:40:27 +00001149
Reid Kleckner51460c12015-11-06 01:49:05 +00001150 MachineBasicBlock *EmitLoweredCatchRet(MachineInstr *MI,
1151 MachineBasicBlock *BB) const;
1152
David Majnemer2652b752015-11-09 23:07:48 +00001153 MachineBasicBlock *EmitLoweredCatchPad(MachineInstr *MI,
1154 MachineBasicBlock *BB) const;
1155
Rafael Espindola94d32532011-08-30 19:47:04 +00001156 MachineBasicBlock *EmitLoweredSegAlloca(MachineInstr *MI,
Pavel Chupinbe9f1212014-09-22 13:11:35 +00001157 MachineBasicBlock *BB) const;
Rafael Espindola94d32532011-08-30 19:47:04 +00001158
Davide Italiano228978c2016-02-20 00:44:47 +00001159 MachineBasicBlock *EmitLoweredTLSAddr(MachineInstr *MI,
1160 MachineBasicBlock *BB) const;
1161
Eric Christopherb0e1a452010-06-03 04:07:48 +00001162 MachineBasicBlock *EmitLoweredTLSCall(MachineInstr *MI,
1163 MachineBasicBlock *BB) const;
Anton Korobeynikovd5e3fd62010-03-06 19:32:29 +00001164
Michael Liao97bf3632012-10-15 22:39:43 +00001165 MachineBasicBlock *emitEHSjLjSetJmp(MachineInstr *MI,
1166 MachineBasicBlock *MBB) const;
1167
1168 MachineBasicBlock *emitEHSjLjLongJmp(MachineInstr *MI,
1169 MachineBasicBlock *MBB) const;
1170
Lang Hames23de2112014-01-23 20:23:36 +00001171 MachineBasicBlock *emitFMA3Instr(MachineInstr *MI,
1172 MachineBasicBlock *MBB) const;
1173
Dan Gohman55d7b2a2009-03-04 19:44:21 +00001174 /// Emit nodes that will be selected as "test Op0,Op0", or something
Dan Gohmanff659b52009-03-07 01:58:32 +00001175 /// equivalent, for use with the given x86 condition code.
David Blaikie9027aba2014-04-14 22:23:06 +00001176 SDValue EmitTest(SDValue Op0, unsigned X86CC, SDLoc dl,
David Blaikie269e0fb2014-04-13 06:39:55 +00001177 SelectionDAG &DAG) const;
Dan Gohman55d7b2a2009-03-04 19:44:21 +00001178
1179 /// Emit nodes that will be selected as "cmp Op0,Op1", or something
Tim Northover7b9f86d2014-06-10 10:50:11 +00001180 /// equivalent, for use with the given x86 condition code.
1181 SDValue EmitCmp(SDValue Op0, SDValue Op1, unsigned X86CC, SDLoc dl,
1182 SelectionDAG &DAG) const;
Benjamin Kramer913da4b2012-04-27 12:07:43 +00001183
1184 /// Convert a comparison if required by the subtarget.
1185 SDValue ConvertCmpIfNecessary(SDValue Cmp, SelectionDAG &DAG) const;
Sanjay Patel957efc232014-10-24 17:02:16 +00001186
1187 /// Use rsqrt* to speed up sqrt calculations.
1188 SDValue getRsqrtEstimate(SDValue Operand, DAGCombinerInfo &DCI,
1189 unsigned &RefinementSteps,
1190 bool &UseOneConstNR) const override;
Sanjay Patele2e58922014-11-11 20:51:00 +00001191
1192 /// Use rcp* to speed up fdiv calculations.
1193 SDValue getRecipEstimate(SDValue Operand, DAGCombinerInfo &DCI,
1194 unsigned &RefinementSteps) const override;
Sanjay Patel7024b812015-04-15 15:22:55 +00001195
1196 /// Reassociate floating point divisions into multiply by reciprocal.
Sanjay Patel1dd15592015-07-28 23:05:48 +00001197 unsigned combineRepeatedFPDivisors() const override;
Chris Lattner76ac0682005-11-15 00:40:23 +00001198 };
Evan Cheng24422d42008-09-03 00:03:49 +00001199
1200 namespace X86 {
Bob Wilson3e6fa462012-08-03 04:06:28 +00001201 FastISel *createFastISel(FunctionLoweringInfo &funcInfo,
1202 const TargetLibraryInfo *libInfo);
Eugene Zelenko6ac3f732016-01-26 18:48:36 +00001203 } // end namespace X86
1204} // end namespace llvm
Chris Lattner76ac0682005-11-15 00:40:23 +00001205
Eugene Zelenko6ac3f732016-01-26 18:48:36 +00001206#endif // LLVM_LIB_TARGET_X86_X86ISELLOWERING_H