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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
15#ifndef X86ISELLOWERING_H
16#define X86ISELLOWERING_H
17
Evan Chengcde9e302006-01-27 08:10:46 +000018#include "X86Subtarget.h"
Anton Korobeynikov383a3242007-07-14 14:06:15 +000019#include "X86RegisterInfo.h"
Gordon Henriksen92319582008-01-05 16:56:59 +000020#include "X86MachineFunctionInfo.h"
Chris Lattner76ac0682005-11-15 00:40:23 +000021#include "llvm/Target/TargetLowering.h"
22#include "llvm/CodeGen/SelectionDAG.h"
Rafael Espindolae636fc02007-08-31 15:06:30 +000023#include "llvm/CodeGen/CallingConvLower.h"
Chris Lattner76ac0682005-11-15 00:40:23 +000024
25namespace llvm {
Chris Lattner76ac0682005-11-15 00:40:23 +000026 namespace X86ISD {
Evan Cheng172fce72006-01-06 00:43:03 +000027 // X86 Specific DAG Nodes
Chris Lattner76ac0682005-11-15 00:40:23 +000028 enum NodeType {
29 // Start the numbering where the builtin ops leave off.
Evan Cheng225a4d02005-12-17 01:21:05 +000030 FIRST_NUMBER = ISD::BUILTIN_OP_END+X86::INSTRUCTION_LIST_END,
Chris Lattner76ac0682005-11-15 00:40:23 +000031
Evan Chenge9fbc3f2007-12-14 02:13:44 +000032 /// BSF - Bit scan forward.
33 /// BSR - Bit scan reverse.
34 BSF,
35 BSR,
36
Evan Cheng9c249c32006-01-09 18:33:28 +000037 /// SHLD, SHRD - Double shift instructions. These correspond to
38 /// X86::SHLDxx and X86::SHRDxx instructions.
39 SHLD,
40 SHRD,
41
Evan Cheng2dd217b2006-01-31 03:14:29 +000042 /// FAND - Bitwise logical AND of floating point values. This corresponds
43 /// to X86::ANDPS or X86::ANDPD.
44 FAND,
45
Evan Cheng4363e882007-01-05 07:55:56 +000046 /// FOR - Bitwise logical OR of floating point values. This corresponds
47 /// to X86::ORPS or X86::ORPD.
48 FOR,
49
Evan Cheng72d5c252006-01-31 22:28:30 +000050 /// FXOR - Bitwise logical XOR of floating point values. This corresponds
51 /// to X86::XORPS or X86::XORPD.
52 FXOR,
53
Evan Cheng82241c82007-01-05 21:37:56 +000054 /// FSRL - Bitwise logical right shift of floating point values. These
55 /// corresponds to X86::PSRLDQ.
Evan Cheng4363e882007-01-05 07:55:56 +000056 FSRL,
57
Evan Cheng11613a52006-02-04 02:20:30 +000058 /// FILD, FILD_FLAG - This instruction implements SINT_TO_FP with the
59 /// integer source in memory and FP reg result. This corresponds to the
60 /// X86::FILD*m instructions. It has three inputs (token chain, address,
61 /// and source type) and two outputs (FP value and token chain). FILD_FLAG
62 /// also produces a flag).
Evan Cheng6305e502006-01-12 22:54:21 +000063 FILD,
Evan Cheng11613a52006-02-04 02:20:30 +000064 FILD_FLAG,
Chris Lattner76ac0682005-11-15 00:40:23 +000065
66 /// FP_TO_INT*_IN_MEM - This instruction implements FP_TO_SINT with the
67 /// integer destination in memory and a FP reg source. This corresponds
68 /// to the X86::FIST*m instructions and the rounding mode change stuff. It
Chris Lattnerf4aeff02006-10-18 18:26:48 +000069 /// has two inputs (token chain and address) and two outputs (int value
70 /// and token chain).
Chris Lattner76ac0682005-11-15 00:40:23 +000071 FP_TO_INT16_IN_MEM,
72 FP_TO_INT32_IN_MEM,
73 FP_TO_INT64_IN_MEM,
74
Evan Chenga74ce622005-12-21 02:39:21 +000075 /// FLD - This instruction implements an extending load to FP stack slots.
76 /// This corresponds to the X86::FLD32m / X86::FLD64m. It takes a chain
Evan Cheng5c59d492005-12-23 07:31:11 +000077 /// operand, ptr to load from, and a ValueType node indicating the type
78 /// to load to.
Evan Chenga74ce622005-12-21 02:39:21 +000079 FLD,
80
Evan Cheng45e190982006-01-05 00:27:02 +000081 /// FST - This instruction implements a truncating store to FP stack
82 /// slots. This corresponds to the X86::FST32m / X86::FST64m. It takes a
83 /// chain operand, value to store, address, and a ValueType to store it
84 /// as.
85 FST,
86
Chris Lattner76ac0682005-11-15 00:40:23 +000087 /// CALL/TAILCALL - These operations represent an abstract X86 call
88 /// instruction, which includes a bunch of information. In particular the
89 /// operands of these node are:
90 ///
91 /// #0 - The incoming token chain
92 /// #1 - The callee
93 /// #2 - The number of arg bytes the caller pushes on the stack.
94 /// #3 - The number of arg bytes the callee pops off the stack.
95 /// #4 - The value to pass in AL/AX/EAX (optional)
96 /// #5 - The value to pass in DL/DX/EDX (optional)
97 ///
98 /// The result values of these nodes are:
99 ///
100 /// #0 - The outgoing token chain
101 /// #1 - The first register result value (optional)
102 /// #2 - The second register result value (optional)
103 ///
104 /// The CALL vs TAILCALL distinction boils down to whether the callee is
105 /// known not to modify the caller's stack frame, as is standard with
106 /// LLVM.
107 CALL,
108 TAILCALL,
Andrew Lenharth0bf68ae2005-11-20 21:41:10 +0000109
110 /// RDTSC_DAG - This operation implements the lowering for
111 /// readcyclecounter
112 RDTSC_DAG,
Evan Cheng225a4d02005-12-17 01:21:05 +0000113
114 /// X86 compare and logical compare instructions.
Evan Cheng80700992007-09-17 17:42:53 +0000115 CMP, COMI, UCOMI,
Evan Cheng225a4d02005-12-17 01:21:05 +0000116
Evan Chengc1583db2005-12-21 20:21:51 +0000117 /// X86 SetCC. Operand 1 is condition code, and operand 2 is the flag
118 /// operand produced by a CMP instruction.
119 SETCC,
120
121 /// X86 conditional moves. Operand 1 and operand 2 are the two values
Chris Lattnerf4aeff02006-10-18 18:26:48 +0000122 /// to select from (operand 1 is a R/W operand). Operand 3 is the
123 /// condition code, and operand 4 is the flag operand produced by a CMP
124 /// or TEST instruction. It also writes a flag result.
Evan Cheng225a4d02005-12-17 01:21:05 +0000125 CMOV,
Evan Cheng6fc31042005-12-19 23:12:38 +0000126
Evan Chengc1583db2005-12-21 20:21:51 +0000127 /// X86 conditional branches. Operand 1 is the chain operand, operand 2
128 /// is the block to branch if condition is true, operand 3 is the
129 /// condition code, and operand 4 is the flag operand produced by a CMP
130 /// or TEST instruction.
Evan Cheng6fc31042005-12-19 23:12:38 +0000131 BRCOND,
Evan Chenga74ce622005-12-21 02:39:21 +0000132
Evan Chengae986f12006-01-11 22:15:48 +0000133 /// Return with a flag operand. Operand 1 is the chain operand, operand
134 /// 2 is the number of bytes of stack to pop.
Evan Chenga74ce622005-12-21 02:39:21 +0000135 RET_FLAG,
Evan Chengae986f12006-01-11 22:15:48 +0000136
137 /// REP_STOS - Repeat fill, corresponds to X86::REP_STOSx.
138 REP_STOS,
139
140 /// REP_MOVS - Repeat move, corresponds to X86::REP_MOVSx.
141 REP_MOVS,
Evan Cheng72d5c252006-01-31 22:28:30 +0000142
Evan Cheng5588de92006-02-18 00:15:05 +0000143 /// GlobalBaseReg - On Darwin, this node represents the result of the popl
144 /// at function entry, used for PIC code.
145 GlobalBaseReg,
Evan Cheng1f342c22006-02-23 02:43:52 +0000146
Chris Lattnerd9e4bf52006-09-28 23:33:12 +0000147 /// Wrapper - A wrapper node for TargetConstantPool,
Evan Chenge0ed6ec2006-02-23 20:41:18 +0000148 /// TargetExternalSymbol, and TargetGlobalAddress.
149 Wrapper,
Evan Chengd5e905d2006-03-21 23:01:21 +0000150
Evan Chengae1cd752006-11-30 21:55:46 +0000151 /// WrapperRIP - Special wrapper used under X86-64 PIC mode for RIP
152 /// relative displacements.
153 WrapperRIP,
154
Nate Begeman2d77e8e42008-02-11 04:19:36 +0000155 /// PEXTRB - Extract an 8-bit value from a vector and zero extend it to
156 /// i32, corresponds to X86::PEXTRB.
157 PEXTRB,
158
Evan Chengcbffa462006-03-31 19:22:53 +0000159 /// PEXTRW - Extract a 16-bit value from a vector and zero extend it to
Evan Cheng5fd7c692006-03-31 21:55:24 +0000160 /// i32, corresponds to X86::PEXTRW.
Evan Chengcbffa462006-03-31 19:22:53 +0000161 PEXTRW,
Evan Cheng5fd7c692006-03-31 21:55:24 +0000162
Nate Begeman2d77e8e42008-02-11 04:19:36 +0000163 /// INSERTPS - Insert any element of a 4 x float vector into any element
164 /// of a destination 4 x floatvector.
165 INSERTPS,
166
167 /// PINSRB - Insert the lower 8-bits of a 32-bit value to a vector,
168 /// corresponds to X86::PINSRB.
169 PINSRB,
170
Evan Cheng5fd7c692006-03-31 21:55:24 +0000171 /// PINSRW - Insert the lower 16-bits of a 32-bit value to a vector,
172 /// corresponds to X86::PINSRW.
Evan Cheng49683ba2006-11-10 21:43:37 +0000173 PINSRW,
174
175 /// FMAX, FMIN - Floating point max and min.
176 ///
Lauro Ramos Venancio25188892007-04-20 21:38:10 +0000177 FMAX, FMIN,
Dan Gohman57111e72007-07-10 00:05:58 +0000178
179 /// FRSQRT, FRCP - Floating point reciprocal-sqrt and reciprocal
180 /// approximation. Note that these typically require refinement
181 /// in order to obtain suitable precision.
182 FRSQRT, FRCP,
183
Lauro Ramos Venancio25188892007-04-20 21:38:10 +0000184 // Thread Local Storage
Anton Korobeynikov383a3242007-07-14 14:06:15 +0000185 TLSADDR, THREAD_POINTER,
186
187 // Exception Handling helpers
Arnold Schwaighofer9ccea992007-10-11 19:40:01 +0000188 EH_RETURN,
189
Arnold Schwaighofer7da2bce2008-03-19 16:39:45 +0000190 /// TC_RETURN - Tail call return.
191 /// operand #0 chain
192 /// operand #1 callee (register or absolute)
193 /// operand #2 stack adjustment
194 /// operand #3 optional in flag
Anton Korobeynikov91460e42007-11-16 01:31:51 +0000195 TC_RETURN,
196
Andrew Lenharthd032c332008-03-01 21:52:34 +0000197 // compare and swap
198 LCMPXCHG_DAG,
Andrew Lenharth357061a2008-03-05 01:15:49 +0000199 LCMPXCHG8_DAG,
Andrew Lenharthd032c332008-03-01 21:52:34 +0000200
Anton Korobeynikov91460e42007-11-16 01:31:51 +0000201 // Store FP control world into i16 memory
Chris Lattner3c3fefd2008-01-15 21:58:22 +0000202 FNSTCW16m
Chris Lattner76ac0682005-11-15 00:40:23 +0000203 };
204 }
205
Evan Cheng084a1cd2008-01-29 19:34:22 +0000206 /// Define some predicates that are used for node matching.
207 namespace X86 {
208 /// isPSHUFDMask - Return true if the specified VECTOR_SHUFFLE operand
209 /// specifies a shuffle of elements that is suitable for input to PSHUFD.
210 bool isPSHUFDMask(SDNode *N);
Evan Cheng68ad48b2006-03-22 18:59:22 +0000211
Evan Cheng084a1cd2008-01-29 19:34:22 +0000212 /// isPSHUFHWMask - Return true if the specified VECTOR_SHUFFLE operand
213 /// specifies a shuffle of elements that is suitable for input to PSHUFD.
214 bool isPSHUFHWMask(SDNode *N);
Evan Chengb7fedff2006-03-29 23:07:14 +0000215
Evan Cheng084a1cd2008-01-29 19:34:22 +0000216 /// isPSHUFLWMask - Return true if the specified VECTOR_SHUFFLE operand
217 /// specifies a shuffle of elements that is suitable for input to PSHUFD.
218 bool isPSHUFLWMask(SDNode *N);
Evan Chengb7fedff2006-03-29 23:07:14 +0000219
Evan Cheng084a1cd2008-01-29 19:34:22 +0000220 /// isSHUFPMask - Return true if the specified VECTOR_SHUFFLE operand
221 /// specifies a shuffle of elements that is suitable for input to SHUFP*.
222 bool isSHUFPMask(SDNode *N);
Evan Chengd27fb3e2006-03-24 01:18:28 +0000223
Evan Cheng084a1cd2008-01-29 19:34:22 +0000224 /// isMOVHLPSMask - Return true if the specified VECTOR_SHUFFLE operand
225 /// specifies a shuffle of elements that is suitable for input to MOVHLPS.
226 bool isMOVHLPSMask(SDNode *N);
Evan Cheng2595a682006-03-24 02:58:06 +0000227
Evan Cheng084a1cd2008-01-29 19:34:22 +0000228 /// isMOVHLPS_v_undef_Mask - Special case of isMOVHLPSMask for canonical form
229 /// of vector_shuffle v, v, <2, 3, 2, 3>, i.e. vector_shuffle v, undef,
230 /// <2, 3, 2, 3>
231 bool isMOVHLPS_v_undef_Mask(SDNode *N);
Evan Cheng922e1912006-11-07 22:14:24 +0000232
Evan Cheng084a1cd2008-01-29 19:34:22 +0000233 /// isMOVLPMask - Return true if the specified VECTOR_SHUFFLE operand
234 /// specifies a shuffle of elements that is suitable for input to MOVLP{S|D}.
235 bool isMOVLPMask(SDNode *N);
Evan Chengc995b452006-04-06 23:23:56 +0000236
Evan Cheng084a1cd2008-01-29 19:34:22 +0000237 /// isMOVHPMask - Return true if the specified VECTOR_SHUFFLE operand
238 /// specifies a shuffle of elements that is suitable for input to MOVHP{S|D}
239 /// as well as MOVLHPS.
240 bool isMOVHPMask(SDNode *N);
Evan Chengc995b452006-04-06 23:23:56 +0000241
Evan Cheng084a1cd2008-01-29 19:34:22 +0000242 /// isUNPCKLMask - Return true if the specified VECTOR_SHUFFLE operand
243 /// specifies a shuffle of elements that is suitable for input to UNPCKL.
244 bool isUNPCKLMask(SDNode *N, bool V2IsSplat = false);
Evan Cheng5df75882006-03-28 00:39:58 +0000245
Evan Cheng084a1cd2008-01-29 19:34:22 +0000246 /// isUNPCKHMask - Return true if the specified VECTOR_SHUFFLE operand
247 /// specifies a shuffle of elements that is suitable for input to UNPCKH.
248 bool isUNPCKHMask(SDNode *N, bool V2IsSplat = false);
Evan Cheng2bc32802006-03-28 02:43:26 +0000249
Evan Cheng084a1cd2008-01-29 19:34:22 +0000250 /// isUNPCKL_v_undef_Mask - Special case of isUNPCKLMask for canonical form
251 /// of vector_shuffle v, v, <0, 4, 1, 5>, i.e. vector_shuffle v, undef,
252 /// <0, 0, 1, 1>
253 bool isUNPCKL_v_undef_Mask(SDNode *N);
Evan Chengf3b52c82006-04-05 07:20:06 +0000254
Evan Cheng084a1cd2008-01-29 19:34:22 +0000255 /// isUNPCKH_v_undef_Mask - Special case of isUNPCKHMask for canonical form
256 /// of vector_shuffle v, v, <2, 6, 3, 7>, i.e. vector_shuffle v, undef,
257 /// <2, 2, 3, 3>
258 bool isUNPCKH_v_undef_Mask(SDNode *N);
Bill Wendling591eab82007-04-24 21:16:55 +0000259
Evan Cheng084a1cd2008-01-29 19:34:22 +0000260 /// isMOVLMask - Return true if the specified VECTOR_SHUFFLE operand
261 /// specifies a shuffle of elements that is suitable for input to MOVSS,
262 /// MOVSD, and MOVD, i.e. setting the lowest element.
263 bool isMOVLMask(SDNode *N);
Evan Cheng12ba3e22006-04-11 00:19:04 +0000264
Evan Cheng084a1cd2008-01-29 19:34:22 +0000265 /// isMOVSHDUPMask - Return true if the specified VECTOR_SHUFFLE operand
266 /// specifies a shuffle of elements that is suitable for input to MOVSHDUP.
267 bool isMOVSHDUPMask(SDNode *N);
Evan Cheng5d247f82006-04-14 21:59:03 +0000268
Evan Cheng084a1cd2008-01-29 19:34:22 +0000269 /// isMOVSLDUPMask - Return true if the specified VECTOR_SHUFFLE operand
270 /// specifies a shuffle of elements that is suitable for input to MOVSLDUP.
271 bool isMOVSLDUPMask(SDNode *N);
Evan Cheng5d247f82006-04-14 21:59:03 +0000272
Evan Cheng084a1cd2008-01-29 19:34:22 +0000273 /// isSplatMask - Return true if the specified VECTOR_SHUFFLE operand
274 /// specifies a splat of a single element.
275 bool isSplatMask(SDNode *N);
Evan Chengd097e672006-03-22 02:53:00 +0000276
Evan Cheng084a1cd2008-01-29 19:34:22 +0000277 /// isSplatLoMask - Return true if the specified VECTOR_SHUFFLE operand
278 /// specifies a splat of zero element.
279 bool isSplatLoMask(SDNode *N);
Evan Chenge056dd52006-10-27 21:08:32 +0000280
Evan Cheng084a1cd2008-01-29 19:34:22 +0000281 /// getShuffleSHUFImmediate - Return the appropriate immediate to shuffle
282 /// the specified isShuffleMask VECTOR_SHUFFLE mask with PSHUF* and SHUFP*
283 /// instructions.
284 unsigned getShuffleSHUFImmediate(SDNode *N);
Evan Chengb7fedff2006-03-29 23:07:14 +0000285
Evan Cheng084a1cd2008-01-29 19:34:22 +0000286 /// getShufflePSHUFHWImmediate - Return the appropriate immediate to shuffle
287 /// the specified isShuffleMask VECTOR_SHUFFLE mask with PSHUFHW
288 /// instructions.
289 unsigned getShufflePSHUFHWImmediate(SDNode *N);
Evan Chengb7fedff2006-03-29 23:07:14 +0000290
Evan Cheng084a1cd2008-01-29 19:34:22 +0000291 /// getShufflePSHUFKWImmediate - Return the appropriate immediate to shuffle
292 /// the specified isShuffleMask VECTOR_SHUFFLE mask with PSHUFLW
293 /// instructions.
294 unsigned getShufflePSHUFLWImmediate(SDNode *N);
295 }
296
Chris Lattnerf4aeff02006-10-18 18:26:48 +0000297 //===--------------------------------------------------------------------===//
Chris Lattner76ac0682005-11-15 00:40:23 +0000298 // X86TargetLowering - X86 Implementation of the TargetLowering interface
299 class X86TargetLowering : public TargetLowering {
300 int VarArgsFrameIndex; // FrameIndex for start of varargs area.
Evan Cheng11b0a5d2006-09-08 06:48:29 +0000301 int RegSaveFrameIndex; // X86-64 vararg func register save area.
302 unsigned VarArgsGPOffset; // X86-64 vararg func int reg offset.
303 unsigned VarArgsFPOffset; // X86-64 vararg func fp reg offset.
Chris Lattner76ac0682005-11-15 00:40:23 +0000304 int BytesToPopOnReturn; // Number of arg bytes ret should pop.
305 int BytesCallerReserves; // Number of arg bytes caller makes.
Arnold Schwaighofer9ccea992007-10-11 19:40:01 +0000306
Chris Lattner76ac0682005-11-15 00:40:23 +0000307 public:
Dan Gohman5f6a9da52007-08-02 21:21:54 +0000308 explicit X86TargetLowering(TargetMachine &TM);
Chris Lattner76ac0682005-11-15 00:40:23 +0000309
Evan Cheng797d56f2007-11-09 01:32:10 +0000310 /// getPICJumpTableRelocaBase - Returns relocation base for the given PIC
311 /// jumptable.
312 SDOperand getPICJumpTableRelocBase(SDOperand Table,
313 SelectionDAG &DAG) const;
314
Chris Lattner76ac0682005-11-15 00:40:23 +0000315 // Return the number of bytes that a function should pop when it returns (in
316 // addition to the space used by the return address).
317 //
318 unsigned getBytesToPopOnReturn() const { return BytesToPopOnReturn; }
319
320 // Return the number of bytes that the caller reserves for arguments passed
321 // to this function.
322 unsigned getBytesCallerReserves() const { return BytesCallerReserves; }
323
Chris Lattner74f5bcf2007-02-26 04:01:25 +0000324 /// getStackPtrReg - Return the stack pointer register we are using: either
325 /// ESP or RSP.
326 unsigned getStackPtrReg() const { return X86StackPtr; }
Evan Cheng35abd842008-01-23 23:17:41 +0000327
328 /// getByValTypeAlignment - Return the desired alignment for ByVal aggregate
329 /// function arguments in the caller parameter area. For X86, aggregates
330 /// that contains are placed at 16-byte boundaries while the rest are at
331 /// 4-byte boundaries.
332 virtual unsigned getByValTypeAlignment(const Type *Ty) const;
Chris Lattner74f5bcf2007-02-26 04:01:25 +0000333
Chris Lattner76ac0682005-11-15 00:40:23 +0000334 /// LowerOperation - Provide custom lowering hooks for some operations.
335 ///
336 virtual SDOperand LowerOperation(SDOperand Op, SelectionDAG &DAG);
337
Chris Lattnerf81d5882007-11-24 07:07:01 +0000338 /// ExpandOperation - Custom lower the specified operation, splitting the
339 /// value into two pieces.
340 ///
341 virtual SDNode *ExpandOperationResult(SDNode *N, SelectionDAG &DAG);
342
343
Evan Cheng5987cfb2006-07-07 08:33:52 +0000344 virtual SDOperand PerformDAGCombine(SDNode *N, DAGCombinerInfo &DCI) const;
345
Evan Cheng29cfb672008-01-30 18:18:23 +0000346 virtual MachineBasicBlock *EmitInstrWithCustomInserter(MachineInstr *MI,
347 MachineBasicBlock *MBB);
Evan Cheng339edad2006-01-11 00:33:36 +0000348
Evan Cheng6af02632005-12-20 06:22:03 +0000349 /// getTargetNodeName - This method returns the name of a target specific
350 /// DAG node.
351 virtual const char *getTargetNodeName(unsigned Opcode) const;
352
Scott Michela6729e82008-03-10 15:42:14 +0000353 /// getSetCCResultType - Return the ISD::SETCC ValueType
354 virtual MVT::ValueType getSetCCResultType(const SDOperand &) const;
355
Nate Begeman8a77efe2006-02-16 21:11:51 +0000356 /// computeMaskedBitsForTargetNode - Determine which of the bits specified
357 /// in Mask are known to be either zero or one and return them in the
358 /// KnownZero/KnownOne bitsets.
359 virtual void computeMaskedBitsForTargetNode(const SDOperand Op,
Dan Gohmane1d9ee62008-02-13 22:28:48 +0000360 const APInt &Mask,
Dan Gohmanf990faf2008-02-13 00:35:47 +0000361 APInt &KnownZero,
362 APInt &KnownOne,
Dan Gohman309d3d52007-06-22 14:59:07 +0000363 const SelectionDAG &DAG,
Nate Begeman8a77efe2006-02-16 21:11:51 +0000364 unsigned Depth = 0) const;
365
Chris Lattner76ac0682005-11-15 00:40:23 +0000366 SDOperand getReturnAddressFrameIndex(SelectionDAG &DAG);
367
Chris Lattnerd6855142007-03-25 02:14:49 +0000368 ConstraintType getConstraintType(const std::string &Constraint) const;
Chris Lattner298ef372006-07-11 02:54:03 +0000369
Chris Lattnerc642aa52006-01-31 19:43:35 +0000370 std::vector<unsigned>
Chris Lattner7ad77df2006-02-22 00:56:39 +0000371 getRegClassForInlineAsmConstraint(const std::string &Constraint,
372 MVT::ValueType VT) const;
Chris Lattnerd8c9cb92007-08-25 00:47:38 +0000373
Chris Lattner724539c2008-04-26 23:02:14 +0000374 virtual const char *LowerXConstraint(MVT::ValueType ConstraintVT) const;
Dale Johannesen2b3bc302008-01-29 02:21:21 +0000375
Chris Lattnerd8c9cb92007-08-25 00:47:38 +0000376 /// LowerAsmOperandForConstraint - Lower the specified operand into the Ops
377 /// vector. If it is invalid, don't add anything to Ops.
378 virtual void LowerAsmOperandForConstraint(SDOperand Op,
379 char ConstraintLetter,
380 std::vector<SDOperand> &Ops,
Chris Lattner724539c2008-04-26 23:02:14 +0000381 SelectionDAG &DAG) const;
Chris Lattner44daa502006-10-31 20:13:11 +0000382
Chris Lattnerf4aeff02006-10-18 18:26:48 +0000383 /// getRegForInlineAsmConstraint - Given a physical register constraint
384 /// (e.g. {edx}), return the register number and the register class for the
385 /// register. This should only be used for C_Register constraints. On
386 /// error, this returns a register number of 0.
Chris Lattner524129d2006-07-31 23:26:50 +0000387 std::pair<unsigned, const TargetRegisterClass*>
388 getRegForInlineAsmConstraint(const std::string &Constraint,
389 MVT::ValueType VT) const;
390
Chris Lattner1eb94d92007-03-30 23:15:24 +0000391 /// isLegalAddressingMode - Return true if the addressing mode represented
392 /// by AM is legal for this target, for a load/store of the specified type.
393 virtual bool isLegalAddressingMode(const AddrMode &AM, const Type *Ty)const;
394
Evan Cheng7f3d0242007-10-26 01:56:11 +0000395 /// isTruncateFree - Return true if it's free to truncate a value of
396 /// type Ty1 to type Ty2. e.g. On x86 it's free to truncate a i32 value in
397 /// register EAX to i16 by referencing its sub-register AX.
398 virtual bool isTruncateFree(const Type *Ty1, const Type *Ty2) const;
Evan Chenge106e2f2007-10-29 19:58:20 +0000399 virtual bool isTruncateFree(MVT::ValueType VT1, MVT::ValueType VT2) const;
Evan Cheng7f3d0242007-10-26 01:56:11 +0000400
Evan Cheng68ad48b2006-03-22 18:59:22 +0000401 /// isShuffleMaskLegal - Targets can use this to indicate that they only
402 /// support *some* VECTOR_SHUFFLE operations, those with specific masks.
Chris Lattnerf4aeff02006-10-18 18:26:48 +0000403 /// By default, if a target supports the VECTOR_SHUFFLE node, all mask
404 /// values are assumed to be legal.
Evan Cheng021bb7c2006-03-22 22:07:06 +0000405 virtual bool isShuffleMaskLegal(SDOperand Mask, MVT::ValueType VT) const;
Evan Cheng60f0b892006-04-20 08:58:49 +0000406
407 /// isVectorClearMaskLegal - Similar to isShuffleMaskLegal. This is
408 /// used by Targets can use this to indicate if there is a suitable
409 /// VECTOR_SHUFFLE that can be used to replace a VAND with a constant
410 /// pool entry.
Dan Gohman33b33002008-04-09 20:09:42 +0000411 virtual bool isVectorClearMaskLegal(const std::vector<SDOperand> &BVOps,
Evan Cheng60f0b892006-04-20 08:58:49 +0000412 MVT::ValueType EVT,
413 SelectionDAG &DAG) const;
Evan Cheng0a62cb42008-03-05 01:30:59 +0000414
415 /// ShouldShrinkFPConstant - If true, then instruction selection should
416 /// seek to shrink the FP constant of the specified type to a smaller type
417 /// in order to save space and / or reduce runtime.
418 virtual bool ShouldShrinkFPConstant(MVT::ValueType VT) const {
419 // Don't shrink FP constpool if SSE2 is available since cvtss2sd is more
420 // expensive than a straight movsd. On the other hand, it's important to
421 // shrink long double fp constant since fldt is very slow.
422 return !X86ScalarSSEf64 || VT == MVT::f80;
423 }
Arnold Schwaighofer9ccea992007-10-11 19:40:01 +0000424
425 /// IsEligibleForTailCallOptimization - Check whether the call is eligible
426 /// for tail call optimization. Target which want to do tail call
427 /// optimization should implement this function.
428 virtual bool IsEligibleForTailCallOptimization(SDOperand Call,
429 SDOperand Ret,
430 SelectionDAG &DAG) const;
431
Dan Gohman544ab2c2008-04-12 04:36:06 +0000432 virtual const X86Subtarget* getSubtarget() {
433 return Subtarget;
Rafael Espindolafa0df552007-11-05 23:12:20 +0000434 }
435
Chris Lattner7dc00e82008-01-18 06:52:41 +0000436 /// isScalarFPTypeInSSEReg - Return true if the specified scalar FP type is
437 /// computed in an SSE register, not on the X87 floating point stack.
438 bool isScalarFPTypeInSSEReg(MVT::ValueType VT) const {
439 return (VT == MVT::f64 && X86ScalarSSEf64) || // f64 is when SSE2
440 (VT == MVT::f32 && X86ScalarSSEf32); // f32 is when SSE1
441 }
442
Chris Lattner76ac0682005-11-15 00:40:23 +0000443 private:
Evan Chenga9467aa2006-04-25 20:13:52 +0000444 /// Subtarget - Keep a pointer to the X86Subtarget around so that we can
445 /// make the right decision when generating code for different targets.
446 const X86Subtarget *Subtarget;
Dan Gohman3a4be0f2008-02-10 18:45:23 +0000447 const TargetRegisterInfo *RegInfo;
Evan Chenga9467aa2006-04-25 20:13:52 +0000448
Evan Cheng11b0a5d2006-09-08 06:48:29 +0000449 /// X86StackPtr - X86 physical register used as stack ptr.
450 unsigned X86StackPtr;
Arnold Schwaighofer9ccea992007-10-11 19:40:01 +0000451
Dale Johannesene36c4002007-09-23 14:52:20 +0000452 /// X86ScalarSSEf32, X86ScalarSSEf64 - Select between SSE or x87
453 /// floating point ops.
454 /// When SSE is available, use it for f32 operations.
455 /// When SSE2 is available, use it for f64 operations.
456 bool X86ScalarSSEf32;
457 bool X86ScalarSSEf64;
Evan Cheng084a1cd2008-01-29 19:34:22 +0000458
Chris Lattner0cd99602007-02-25 08:59:22 +0000459 SDNode *LowerCallResult(SDOperand Chain, SDOperand InFlag, SDNode*TheCall,
460 unsigned CallingConv, SelectionDAG &DAG);
Evan Cheng084a1cd2008-01-29 19:34:22 +0000461
Rafael Espindola272f7302007-09-14 15:48:13 +0000462 SDOperand LowerMemArgument(SDOperand Op, SelectionDAG &DAG,
463 const CCValAssign &VA, MachineFrameInfo *MFI,
Arnold Schwaighoferb01b99e2008-02-26 09:19:59 +0000464 unsigned CC, SDOperand Root, unsigned i);
Rafael Espindola272f7302007-09-14 15:48:13 +0000465
Rafael Espindolae636fc02007-08-31 15:06:30 +0000466 SDOperand LowerMemOpCallTo(SDOperand Op, SelectionDAG &DAG,
467 const SDOperand &StackPtr,
468 const CCValAssign &VA, SDOperand Chain,
469 SDOperand Arg);
470
Gordon Henriksen92319582008-01-05 16:56:59 +0000471 // Call lowering helpers.
472 bool IsCalleePop(SDOperand Op);
Arnold Schwaighofer3bfca3e2008-02-26 22:21:54 +0000473 bool CallRequiresGOTPtrInReg(bool Is64Bit, bool IsTailCall);
474 bool CallRequiresFnAddressInReg(bool Is64Bit, bool IsTailCall);
Arnold Schwaighofer634fc9a2008-04-12 18:11:06 +0000475 SDOperand EmitTailCallLoadRetAddr(SelectionDAG &DAG, SDOperand &OutRetAddr,
476 SDOperand Chain, bool IsTailCall, bool Is64Bit,
477 int FPDiff);
478
479 bool CopyTailCallByValClobberedRegToVirtReg(bool containsByValArg,
480 SmallVector< std::pair<unsigned, unsigned>,8> &TailCallByValClobberedVRegs,
481 SmallVector<MVT::ValueType, 8> &TailCallByValClobberedVRegTypes,
482 std::pair<unsigned, SDOperand> &RegToPass,
483 SDOperand &OutChain,
484 SDOperand &OutFlag,
485 MachineFunction &MF,
486 SelectionDAG & DAG);
487
Gordon Henriksen92319582008-01-05 16:56:59 +0000488 CCAssignFn *CCAssignFnForNode(SDOperand Op) const;
489 NameDecorationStyle NameDecorationForFORMAL_ARGUMENTS(SDOperand Op);
Arnold Schwaighofer9ccea992007-10-11 19:40:01 +0000490 unsigned GetAlignedArgumentStackSize(unsigned StackSize, SelectionDAG &DAG);
Evan Chengcde9e302006-01-27 08:10:46 +0000491
Chris Lattnerf81d5882007-11-24 07:07:01 +0000492 std::pair<SDOperand,SDOperand> FP_TO_SINTHelper(SDOperand Op,
493 SelectionDAG &DAG);
494
Evan Chenga9467aa2006-04-25 20:13:52 +0000495 SDOperand LowerBUILD_VECTOR(SDOperand Op, SelectionDAG &DAG);
496 SDOperand LowerVECTOR_SHUFFLE(SDOperand Op, SelectionDAG &DAG);
497 SDOperand LowerEXTRACT_VECTOR_ELT(SDOperand Op, SelectionDAG &DAG);
Nate Begeman2d77e8e42008-02-11 04:19:36 +0000498 SDOperand LowerEXTRACT_VECTOR_ELT_SSE4(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000499 SDOperand LowerINSERT_VECTOR_ELT(SDOperand Op, SelectionDAG &DAG);
Nate Begeman2d77e8e42008-02-11 04:19:36 +0000500 SDOperand LowerINSERT_VECTOR_ELT_SSE4(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000501 SDOperand LowerSCALAR_TO_VECTOR(SDOperand Op, SelectionDAG &DAG);
502 SDOperand LowerConstantPool(SDOperand Op, SelectionDAG &DAG);
503 SDOperand LowerGlobalAddress(SDOperand Op, SelectionDAG &DAG);
Lauro Ramos Venancio25188892007-04-20 21:38:10 +0000504 SDOperand LowerGlobalTLSAddress(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000505 SDOperand LowerExternalSymbol(SDOperand Op, SelectionDAG &DAG);
506 SDOperand LowerShift(SDOperand Op, SelectionDAG &DAG);
507 SDOperand LowerSINT_TO_FP(SDOperand Op, SelectionDAG &DAG);
508 SDOperand LowerFP_TO_SINT(SDOperand Op, SelectionDAG &DAG);
509 SDOperand LowerFABS(SDOperand Op, SelectionDAG &DAG);
510 SDOperand LowerFNEG(SDOperand Op, SelectionDAG &DAG);
Evan Cheng4363e882007-01-05 07:55:56 +0000511 SDOperand LowerFCOPYSIGN(SDOperand Op, SelectionDAG &DAG);
Evan Cheng5fb5a1f2007-09-29 00:00:36 +0000512 SDOperand LowerSETCC(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000513 SDOperand LowerSELECT(SDOperand Op, SelectionDAG &DAG);
514 SDOperand LowerBRCOND(SDOperand Op, SelectionDAG &DAG);
515 SDOperand LowerMEMSET(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000516 SDOperand LowerJumpTable(SDOperand Op, SelectionDAG &DAG);
Evan Cheng2a330942006-05-25 00:59:30 +0000517 SDOperand LowerCALL(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000518 SDOperand LowerRET(SDOperand Op, SelectionDAG &DAG);
Anton Korobeynikov8b7aab02007-04-17 09:20:00 +0000519 SDOperand LowerDYNAMIC_STACKALLOC(SDOperand Op, SelectionDAG &DAG);
Evan Chenge0bcfbe2006-04-26 01:20:17 +0000520 SDOperand LowerFORMAL_ARGUMENTS(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000521 SDOperand LowerVASTART(SDOperand Op, SelectionDAG &DAG);
Evan Chengdeaea252007-03-02 23:16:35 +0000522 SDOperand LowerVACOPY(SDOperand Op, SelectionDAG &DAG);
Evan Chenga9467aa2006-04-25 20:13:52 +0000523 SDOperand LowerINTRINSIC_WO_CHAIN(SDOperand Op, SelectionDAG &DAG);
Nate Begemaneda59972007-01-29 22:58:52 +0000524 SDOperand LowerRETURNADDR(SDOperand Op, SelectionDAG &DAG);
525 SDOperand LowerFRAMEADDR(SDOperand Op, SelectionDAG &DAG);
Anton Korobeynikov383a3242007-07-14 14:06:15 +0000526 SDOperand LowerFRAME_TO_ARGS_OFFSET(SDOperand Op, SelectionDAG &DAG);
527 SDOperand LowerEH_RETURN(SDOperand Op, SelectionDAG &DAG);
Duncan Sandsce388532007-07-27 20:02:49 +0000528 SDOperand LowerTRAMPOLINE(SDOperand Op, SelectionDAG &DAG);
Dan Gohman9ba4d762008-01-31 00:41:03 +0000529 SDOperand LowerFLT_ROUNDS_(SDOperand Op, SelectionDAG &DAG);
Evan Chenge9fbc3f2007-12-14 02:13:44 +0000530 SDOperand LowerCTLZ(SDOperand Op, SelectionDAG &DAG);
531 SDOperand LowerCTTZ(SDOperand Op, SelectionDAG &DAG);
Andrew Lenharth357061a2008-03-05 01:15:49 +0000532 SDOperand LowerLCS(SDOperand Op, SelectionDAG &DAG);
Chris Lattnerf81d5882007-11-24 07:07:01 +0000533 SDNode *ExpandFP_TO_SINT(SDNode *N, SelectionDAG &DAG);
534 SDNode *ExpandREADCYCLECOUNTER(SDNode *N, SelectionDAG &DAG);
Andrew Lenharth357061a2008-03-05 01:15:49 +0000535 SDNode *ExpandATOMIC_LCS(SDNode *N, SelectionDAG &DAG);
Dan Gohman544ab2c2008-04-12 04:36:06 +0000536
537 SDOperand EmitTargetCodeForMemset(SelectionDAG &DAG,
538 SDOperand Chain,
539 SDOperand Dst, SDOperand Src,
540 SDOperand Size, unsigned Align,
Dan Gohmanda440542008-04-28 17:15:20 +0000541 const Value *DstSV, uint64_t DstSVOff);
Dan Gohman544ab2c2008-04-12 04:36:06 +0000542 SDOperand EmitTargetCodeForMemcpy(SelectionDAG &DAG,
543 SDOperand Chain,
544 SDOperand Dst, SDOperand Src,
545 SDOperand Size, unsigned Align,
546 bool AlwaysInline,
Dan Gohmanda440542008-04-28 17:15:20 +0000547 const Value *DstSV, uint64_t DstSVOff,
548 const Value *SrcSV, uint64_t SrcSVOff);
Chris Lattner76ac0682005-11-15 00:40:23 +0000549 };
550}
551
Chris Lattner76ac0682005-11-15 00:40:23 +0000552#endif // X86ISELLOWERING_H