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Chris Lattner17f2cf02005-10-10 06:00:30 +00001//===- TargetSelectionDAG.td - Common code for DAG isels ---*- tablegen -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the target-independent interfaces used by SelectionDAG
11// instruction selection generators.
12//
13//===----------------------------------------------------------------------===//
14
15//===----------------------------------------------------------------------===//
16// Selection DAG Type Constraint definitions.
17//
18// Note that the semantics of these constraints are hard coded into tblgen. To
19// modify or add constraints, you have to hack tblgen.
20//
21
22class SDTypeConstraint<int opnum> {
23 int OperandNum = opnum;
24}
25
26// SDTCisVT - The specified operand has exactly this VT.
Chris Lattnerd8fe3b32005-12-09 22:58:42 +000027class SDTCisVT<int OpNum, ValueType vt> : SDTypeConstraint<OpNum> {
Chris Lattner17f2cf02005-10-10 06:00:30 +000028 ValueType VT = vt;
29}
30
Chris Lattnerd8fe3b32005-12-09 22:58:42 +000031class SDTCisPtrTy<int OpNum> : SDTypeConstraint<OpNum>;
32
Chris Lattner17f2cf02005-10-10 06:00:30 +000033// SDTCisInt - The specified operand is has integer type.
34class SDTCisInt<int OpNum> : SDTypeConstraint<OpNum>;
35
36// SDTCisFP - The specified operand is has floating point type.
Chris Lattnerd8fe3b32005-12-09 22:58:42 +000037class SDTCisFP<int OpNum> : SDTypeConstraint<OpNum>;
Chris Lattner17f2cf02005-10-10 06:00:30 +000038
39// SDTCisSameAs - The two specified operands have identical types.
40class SDTCisSameAs<int OpNum, int OtherOp> : SDTypeConstraint<OpNum> {
41 int OtherOperandNum = OtherOp;
42}
43
44// SDTCisVTSmallerThanOp - The specified operand is a VT SDNode, and its type is
45// smaller than the 'Other' operand.
46class SDTCisVTSmallerThanOp<int OpNum, int OtherOp> : SDTypeConstraint<OpNum> {
47 int OtherOperandNum = OtherOp;
48}
49
Chris Lattner13664a62005-10-14 04:55:10 +000050class SDTCisOpSmallerThanOp<int SmallOp, int BigOp> : SDTypeConstraint<SmallOp>{
51 int BigOperandNum = BigOp;
52}
53
Chris Lattner17f2cf02005-10-10 06:00:30 +000054//===----------------------------------------------------------------------===//
55// Selection DAG Type Profile definitions.
56//
57// These use the constraints defined above to describe the type requirements of
58// the various nodes. These are not hard coded into tblgen, allowing targets to
59// add their own if needed.
60//
61
62// SDTypeProfile - This profile describes the type requirements of a Selection
63// DAG node.
64class SDTypeProfile<int numresults, int numoperands,
65 list<SDTypeConstraint> constraints> {
66 int NumResults = numresults;
67 int NumOperands = numoperands;
68 list<SDTypeConstraint> Constraints = constraints;
69}
70
71// Builtin profiles.
Chris Lattner84384542005-12-11 07:45:04 +000072def SDTIntLeaf: SDTypeProfile<1, 0, [SDTCisInt<0>]>; // for 'imm'.
73def SDTPtrLeaf: SDTypeProfile<1, 0, [SDTCisPtrTy<0>]>; // for '&g'.
Evan Chengf8ac8142005-12-04 08:13:17 +000074def SDTOther : SDTypeProfile<1, 0, [SDTCisVT<0, OtherVT>]>; // for 'vt'.
Chris Lattner97898262005-10-25 21:03:14 +000075def SDTUNDEF : SDTypeProfile<1, 0, []>; // for 'undef'.
Chris Lattner17f2cf02005-10-10 06:00:30 +000076def SDTIntBinOp : SDTypeProfile<1, 2, [ // add, and, or, xor, udiv, etc.
77 SDTCisSameAs<0, 1>, SDTCisSameAs<0, 2>, SDTCisInt<0>
78]>;
Chris Lattner68bfd9c2005-12-05 02:37:26 +000079def SDTIntShiftOp : SDTypeProfile<1, 2, [ // shl, sra, srl
80 SDTCisSameAs<0, 1>, SDTCisInt<0>, SDTCisInt<2>
81]>;
Chris Lattner17f2cf02005-10-10 06:00:30 +000082def SDTFPBinOp : SDTypeProfile<1, 2, [ // fadd, fmul, etc.
83 SDTCisSameAs<0, 1>, SDTCisSameAs<0, 2>, SDTCisFP<0>
84]>;
Nate Begeman993aeb22005-12-13 22:55:22 +000085def SDTFPTernaryOp : SDTypeProfile<1, 3, [ // fmadd, fnmsub, etc.
86 SDTCisSameAs<0, 1>, SDTCisSameAs<0, 2>, SDTCisSameAs<0, 3>, SDTCisFP<0>
87]>;
Chris Lattner17f2cf02005-10-10 06:00:30 +000088def SDTIntUnaryOp : SDTypeProfile<1, 1, [ // ctlz
89 SDTCisSameAs<0, 1>, SDTCisInt<0>
90]>;
Chris Lattner444215d2005-10-14 06:40:20 +000091def SDTIntExtendOp : SDTypeProfile<1, 1, [ // sext, zext, anyext
92 SDTCisInt<0>, SDTCisInt<1>, SDTCisOpSmallerThanOp<1, 0>
93]>;
94def SDTIntTruncOp : SDTypeProfile<1, 1, [ // trunc
95 SDTCisInt<0>, SDTCisInt<1>, SDTCisOpSmallerThanOp<0, 1>
96]>;
Chris Lattner17f2cf02005-10-10 06:00:30 +000097def SDTFPUnaryOp : SDTypeProfile<1, 1, [ // fneg, fsqrt, etc
98 SDTCisSameAs<0, 1>, SDTCisFP<0>
99]>;
Chris Lattner13664a62005-10-14 04:55:10 +0000100def SDTFPRoundOp : SDTypeProfile<1, 1, [ // fround
101 SDTCisFP<0>, SDTCisFP<1>, SDTCisOpSmallerThanOp<0, 1>
102]>;
103def SDTFPExtendOp : SDTypeProfile<1, 1, [ // fextend
104 SDTCisFP<0>, SDTCisFP<1>, SDTCisOpSmallerThanOp<1, 0>
105]>;
Duraid Madinae2fd9e22005-11-01 03:07:25 +0000106def SDTIntToFPOp : SDTypeProfile<1, 1, [ // [su]int_to_fp
107 SDTCisFP<0>, SDTCisInt<1>
108]>;
109def SDTFPToIntOp : SDTypeProfile<1, 1, [ // fp_to_[su]int
110 SDTCisInt<0>, SDTCisFP<1>
111]>;
Chris Lattner17f2cf02005-10-10 06:00:30 +0000112def SDTExtInreg : SDTypeProfile<1, 2, [ // sext_inreg
113 SDTCisSameAs<0, 1>, SDTCisInt<0>, SDTCisVT<2, OtherVT>,
114 SDTCisVTSmallerThanOp<2, 1>
115]>;
116
Chris Lattner1f426de2005-10-26 17:00:25 +0000117def SDTSetCC : SDTypeProfile<1, 3, [ // setcc
118 SDTCisInt<0>, SDTCisSameAs<1, 2>, SDTCisVT<3, OtherVT>
119]>;
120
Duraid Madina59669552005-11-02 02:37:18 +0000121def SDTSelect : SDTypeProfile<1, 3, [ // select
122 SDTCisInt<1>, SDTCisSameAs<0, 2>, SDTCisSameAs<2, 3>
123]>;
124
Chris Lattnerd2c339c2005-12-11 18:43:13 +0000125def SDTSelectCC : SDTypeProfile<1, 5, [ // select_cc
Chris Lattner3aed79e2005-12-11 08:35:54 +0000126 SDTCisSameAs<1, 2>, SDTCisSameAs<3, 4>, SDTCisSameAs<0, 3>,
127 SDTCisVT<5, OtherVT>
128]>;
129
Evan Chengf8ac8142005-12-04 08:13:17 +0000130def SDTBr : SDTypeProfile<0, 1, [ // br
131 SDTCisVT<0, OtherVT>
132]>;
133
134def SDTBrCond : SDTypeProfile<0, 2, [ // brcond
135 SDTCisInt<0>, SDTCisVT<1, OtherVT>
136]>;
137
138def SDTRet : SDTypeProfile<0, 0, [ // ret
139]>;
140
141def SDTWritePort : SDTypeProfile<0, 2, [ // writeport
142 SDTCisInt<0>, SDTCisInt<1>
143]>;
144
Evan Chengf20da7e2005-12-08 04:28:48 +0000145def SDTLoad : SDTypeProfile<1, 1, [ // load
Chris Lattnerd8fe3b32005-12-09 22:58:42 +0000146 SDTCisPtrTy<1>
Evan Chengf20da7e2005-12-08 04:28:48 +0000147]>;
148
Evan Chengb51a0592005-12-10 00:48:20 +0000149def SDTStore : SDTypeProfile<0, 2, [ // store
Evan Chengb612ff92005-12-10 01:59:36 +0000150 SDTCisPtrTy<1>
Evan Chengb51a0592005-12-10 00:48:20 +0000151]>;
152
Evan Cheng3d2331d2005-12-14 02:21:01 +0000153def SDTIntExtLoad : SDTypeProfile<1, 3, [ // sextload, zextload
154 SDTCisInt<0>, SDTCisPtrTy<1>, SDTCisVT<2, OtherVT>, SDTCisVT<3, OtherVT>,
155 SDTCisVTSmallerThanOp<3, 0>
156]>;
157
158
Chris Lattner17f2cf02005-10-10 06:00:30 +0000159//===----------------------------------------------------------------------===//
160// Selection DAG Node Properties.
161//
162// Note: These are hard coded into tblgen.
163//
164class SDNodeProperty;
165def SDNPCommutative : SDNodeProperty; // X op Y == Y op X
166def SDNPAssociative : SDNodeProperty; // (X op Y) op Z == X op (Y op Z)
Evan Chengf8ac8142005-12-04 08:13:17 +0000167def SDNPHasChain : SDNodeProperty; // R/W chain operand and result
Chris Lattner17f2cf02005-10-10 06:00:30 +0000168
169//===----------------------------------------------------------------------===//
170// Selection DAG Node definitions.
171//
172class SDNode<string opcode, SDTypeProfile typeprof,
173 list<SDNodeProperty> props = [], string sdclass = "SDNode"> {
174 string Opcode = opcode;
175 string SDClass = sdclass;
176 list<SDNodeProperty> Properties = props;
177 SDTypeProfile TypeProfile = typeprof;
178}
179
180def set;
181def node;
Evan Cheng3d2331d2005-12-14 02:21:01 +0000182def srcvalue;
Chris Lattner17f2cf02005-10-10 06:00:30 +0000183
Chris Lattner84384542005-12-11 07:45:04 +0000184def imm : SDNode<"ISD::Constant" , SDTIntLeaf , [], "ConstantSDNode">;
Evan Chengf8ac8142005-12-04 08:13:17 +0000185def vt : SDNode<"ISD::VALUETYPE" , SDTOther , [], "VTSDNode">;
186def bb : SDNode<"ISD::BasicBlock", SDTOther , [], "BasicBlockSDNode">;
187def cond : SDNode<"ISD::CONDCODE" , SDTOther , [], "CondCodeSDNode">;
Chris Lattner97898262005-10-25 21:03:14 +0000188def undef : SDNode<"ISD::UNDEF" , SDTUNDEF , []>;
Chris Lattner84384542005-12-11 07:45:04 +0000189def globaladdr : SDNode<"ISD::GlobalAddress", SDTPtrLeaf, [],
Chris Lattnerdb40dc22005-11-17 07:20:15 +0000190 "GlobalAddressSDNode">;
Chris Lattner84384542005-12-11 07:45:04 +0000191def tglobaladdr : SDNode<"ISD::TargetGlobalAddress", SDTPtrLeaf, [],
Chris Lattnerdb40dc22005-11-17 07:20:15 +0000192 "GlobalAddressSDNode">;
Chris Lattner84384542005-12-11 07:45:04 +0000193def tconstpool : SDNode<"ISD::TargetConstantPool", SDTPtrLeaf, [],
Nate Begeman28a6b022005-12-10 02:36:00 +0000194 "ConstantPoolSDNode">;
Chris Lattner17f2cf02005-10-10 06:00:30 +0000195def add : SDNode<"ISD::ADD" , SDTIntBinOp ,
196 [SDNPCommutative, SDNPAssociative]>;
197def sub : SDNode<"ISD::SUB" , SDTIntBinOp>;
198def mul : SDNode<"ISD::MUL" , SDTIntBinOp,
199 [SDNPCommutative, SDNPAssociative]>;
200def mulhs : SDNode<"ISD::MULHS" , SDTIntBinOp, [SDNPCommutative]>;
201def mulhu : SDNode<"ISD::MULHU" , SDTIntBinOp, [SDNPCommutative]>;
202def sdiv : SDNode<"ISD::SDIV" , SDTIntBinOp>;
203def udiv : SDNode<"ISD::UDIV" , SDTIntBinOp>;
204def srem : SDNode<"ISD::SREM" , SDTIntBinOp>;
205def urem : SDNode<"ISD::UREM" , SDTIntBinOp>;
Chris Lattner68bfd9c2005-12-05 02:37:26 +0000206def srl : SDNode<"ISD::SRL" , SDTIntShiftOp>;
207def sra : SDNode<"ISD::SRA" , SDTIntShiftOp>;
208def shl : SDNode<"ISD::SHL" , SDTIntShiftOp>;
Chris Lattner17f2cf02005-10-10 06:00:30 +0000209def and : SDNode<"ISD::AND" , SDTIntBinOp,
210 [SDNPCommutative, SDNPAssociative]>;
211def or : SDNode<"ISD::OR" , SDTIntBinOp,
212 [SDNPCommutative, SDNPAssociative]>;
213def xor : SDNode<"ISD::XOR" , SDTIntBinOp,
214 [SDNPCommutative, SDNPAssociative]>;
Chris Lattner444215d2005-10-14 06:40:20 +0000215
216def sext_inreg : SDNode<"ISD::SIGN_EXTEND_INREG", SDTExtInreg>;
217def ctlz : SDNode<"ISD::CTLZ" , SDTIntUnaryOp>;
Andrew Lenharthd684e1a2005-10-20 19:38:11 +0000218def cttz : SDNode<"ISD::CTTZ" , SDTIntUnaryOp>;
219def ctpop : SDNode<"ISD::CTPOP" , SDTIntUnaryOp>;
Chris Lattner444215d2005-10-14 06:40:20 +0000220def sext : SDNode<"ISD::SIGN_EXTEND", SDTIntExtendOp>;
221def zext : SDNode<"ISD::ZERO_EXTEND", SDTIntExtendOp>;
222def anyext : SDNode<"ISD::ANY_EXTEND" , SDTIntExtendOp>;
223def trunc : SDNode<"ISD::TRUNCATE" , SDTIntTruncOp>;
224
Chris Lattner17f2cf02005-10-10 06:00:30 +0000225def fadd : SDNode<"ISD::FADD" , SDTFPBinOp, [SDNPCommutative]>;
226def fsub : SDNode<"ISD::FSUB" , SDTFPBinOp>;
227def fmul : SDNode<"ISD::FMUL" , SDTFPBinOp, [SDNPCommutative]>;
228def fdiv : SDNode<"ISD::FDIV" , SDTFPBinOp>;
229def frem : SDNode<"ISD::FREM" , SDTFPBinOp>;
230def fabs : SDNode<"ISD::FABS" , SDTFPUnaryOp>;
231def fneg : SDNode<"ISD::FNEG" , SDTFPUnaryOp>;
232def fsqrt : SDNode<"ISD::FSQRT" , SDTFPUnaryOp>;
233
Chris Lattner13664a62005-10-14 04:55:10 +0000234def fround : SDNode<"ISD::FP_ROUND" , SDTFPRoundOp>;
235def fextend : SDNode<"ISD::FP_EXTEND" , SDTFPExtendOp>;
236
Duraid Madinae2fd9e22005-11-01 03:07:25 +0000237def sint_to_fp : SDNode<"ISD::SINT_TO_FP" , SDTIntToFPOp>;
238def uint_to_fp : SDNode<"ISD::UINT_TO_FP" , SDTIntToFPOp>;
239def fp_to_sint : SDNode<"ISD::FP_TO_SINT" , SDTFPToIntOp>;
240def fp_to_uint : SDNode<"ISD::FP_TO_UINT" , SDTFPToIntOp>;
241
Chris Lattner1f426de2005-10-26 17:00:25 +0000242def setcc : SDNode<"ISD::SETCC" , SDTSetCC>;
Duraid Madina59669552005-11-02 02:37:18 +0000243def select : SDNode<"ISD::SELECT" , SDTSelect>;
Chris Lattner3aed79e2005-12-11 08:35:54 +0000244def selectcc : SDNode<"ISD::SELECT_CC" , SDTSelectCC>;
Chris Lattner1f426de2005-10-26 17:00:25 +0000245
Evan Chengf8ac8142005-12-04 08:13:17 +0000246def br : SDNode<"ISD::BR" , SDTBr, [SDNPHasChain]>;
247def brcond : SDNode<"ISD::BRCOND" , SDTBrCond, [SDNPHasChain]>;
248def ret : SDNode<"ISD::RET" , SDTRet, [SDNPHasChain]>;
249
250def writeport : SDNode<"ISD::WRITEPORT" , SDTWritePort, [SDNPHasChain]>;
251
Evan Chengb612ff92005-12-10 01:59:36 +0000252def load : SDNode<"ISD::LOAD" , SDTLoad, [SDNPHasChain]>;
Evan Chengb51a0592005-12-10 00:48:20 +0000253def store : SDNode<"ISD::STORE" , SDTStore, [SDNPHasChain]>;
Evan Chengf20da7e2005-12-08 04:28:48 +0000254
Evan Cheng3d2331d2005-12-14 02:21:01 +0000255// Do not use sextld and zextld directly. Use sextload and zextload (see
256// below) which pass in a dummy srcvalue node which tblgen will skip over.
257def sextld : SDNode<"ISD::SEXTLOAD" , SDTIntExtLoad, [SDNPHasChain]>;
258def zextld : SDNode<"ISD::ZEXTLOAD" , SDTIntExtLoad, [SDNPHasChain]>;
259
Chris Lattner1f426de2005-10-26 17:00:25 +0000260//===----------------------------------------------------------------------===//
261// Selection DAG Condition Codes
262
263class CondCode; // ISD::CondCode enums
264def SETOEQ : CondCode; def SETOGT : CondCode;
265def SETOGE : CondCode; def SETOLT : CondCode; def SETOLE : CondCode;
266def SETONE : CondCode; def SETO : CondCode; def SETUO : CondCode;
267def SETUEQ : CondCode; def SETUGT : CondCode; def SETUGE : CondCode;
268def SETULT : CondCode; def SETULE : CondCode; def SETUNE : CondCode;
269
270def SETEQ : CondCode; def SETGT : CondCode; def SETGE : CondCode;
271def SETLT : CondCode; def SETLE : CondCode; def SETNE : CondCode;
272
273
Chris Lattner17f2cf02005-10-10 06:00:30 +0000274//===----------------------------------------------------------------------===//
275// Selection DAG Node Transformation Functions.
276//
277// This mechanism allows targets to manipulate nodes in the output DAG once a
278// match has been formed. This is typically used to manipulate immediate
279// values.
280//
281class SDNodeXForm<SDNode opc, code xformFunction> {
282 SDNode Opcode = opc;
283 code XFormFunction = xformFunction;
284}
285
286def NOOP_SDNodeXForm : SDNodeXForm<imm, [{}]>;
287
288
289//===----------------------------------------------------------------------===//
290// Selection DAG Pattern Fragments.
291//
292// Pattern fragments are reusable chunks of dags that match specific things.
293// They can take arguments and have C++ predicates that control whether they
294// match. They are intended to make the patterns for common instructions more
295// compact and readable.
296//
297
298/// PatFrag - Represents a pattern fragment. This can match something on the
299/// DAG, frame a single node to multiply nested other fragments.
300///
301class PatFrag<dag ops, dag frag, code pred = [{}],
302 SDNodeXForm xform = NOOP_SDNodeXForm> {
303 dag Operands = ops;
304 dag Fragment = frag;
305 code Predicate = pred;
306 SDNodeXForm OperandTransform = xform;
307}
308
309// PatLeaf's are pattern fragments that have no operands. This is just a helper
310// to define immediates and other common things concisely.
311class PatLeaf<dag frag, code pred = [{}], SDNodeXForm xform = NOOP_SDNodeXForm>
312 : PatFrag<(ops), frag, pred, xform>;
313
314// Leaf fragments.
315
316def immAllOnes : PatLeaf<(imm), [{ return N->isAllOnesValue(); }]>;
Chris Lattner17f2cf02005-10-10 06:00:30 +0000317
318def vtInt : PatLeaf<(vt), [{ return MVT::isInteger(N->getVT()); }]>;
319def vtFP : PatLeaf<(vt), [{ return MVT::isFloatingPoint(N->getVT()); }]>;
320
321// Other helper fragments.
322
323def not : PatFrag<(ops node:$in), (xor node:$in, immAllOnes)>;
Chris Lattnereae6d642005-10-20 23:30:37 +0000324def ineg : PatFrag<(ops node:$in), (sub 0, node:$in)>;
Chris Lattner17f2cf02005-10-10 06:00:30 +0000325
Evan Cheng3d2331d2005-12-14 02:21:01 +0000326// extending load fragments.
327def sextload : PatFrag<(ops node:$ptr, node:$vt),
328 (sextld node:$ptr, srcvalue:$dummy, node:$vt)>;
329def zextload : PatFrag<(ops node:$ptr, node:$vt),
330 (zextld node:$ptr, srcvalue:$dummy, node:$vt)>;
Chris Lattner1f426de2005-10-26 17:00:25 +0000331
332// setcc convenience fragments.
333def setoeq : PatFrag<(ops node:$lhs, node:$rhs),
334 (setcc node:$lhs, node:$rhs, SETOEQ)>;
335def setogt : PatFrag<(ops node:$lhs, node:$rhs),
336 (setcc node:$lhs, node:$rhs, SETOGT)>;
337def setoge : PatFrag<(ops node:$lhs, node:$rhs),
338 (setcc node:$lhs, node:$rhs, SETOGE)>;
339def setolt : PatFrag<(ops node:$lhs, node:$rhs),
340 (setcc node:$lhs, node:$rhs, SETOLT)>;
341def setole : PatFrag<(ops node:$lhs, node:$rhs),
342 (setcc node:$lhs, node:$rhs, SETOLE)>;
343def setone : PatFrag<(ops node:$lhs, node:$rhs),
344 (setcc node:$lhs, node:$rhs, SETONE)>;
345def seto : PatFrag<(ops node:$lhs, node:$rhs),
346 (setcc node:$lhs, node:$rhs, SETO)>;
347def setuo : PatFrag<(ops node:$lhs, node:$rhs),
348 (setcc node:$lhs, node:$rhs, SETUO)>;
349def setueq : PatFrag<(ops node:$lhs, node:$rhs),
350 (setcc node:$lhs, node:$rhs, SETUEQ)>;
351def setugt : PatFrag<(ops node:$lhs, node:$rhs),
352 (setcc node:$lhs, node:$rhs, SETUGT)>;
353def setuge : PatFrag<(ops node:$lhs, node:$rhs),
354 (setcc node:$lhs, node:$rhs, SETUGE)>;
355def setult : PatFrag<(ops node:$lhs, node:$rhs),
356 (setcc node:$lhs, node:$rhs, SETULT)>;
357def setule : PatFrag<(ops node:$lhs, node:$rhs),
358 (setcc node:$lhs, node:$rhs, SETULE)>;
359def setune : PatFrag<(ops node:$lhs, node:$rhs),
360 (setcc node:$lhs, node:$rhs, SETUNE)>;
361def seteq : PatFrag<(ops node:$lhs, node:$rhs),
362 (setcc node:$lhs, node:$rhs, SETEQ)>;
363def setgt : PatFrag<(ops node:$lhs, node:$rhs),
364 (setcc node:$lhs, node:$rhs, SETGT)>;
365def setge : PatFrag<(ops node:$lhs, node:$rhs),
366 (setcc node:$lhs, node:$rhs, SETGE)>;
367def setlt : PatFrag<(ops node:$lhs, node:$rhs),
368 (setcc node:$lhs, node:$rhs, SETLT)>;
369def setle : PatFrag<(ops node:$lhs, node:$rhs),
370 (setcc node:$lhs, node:$rhs, SETLE)>;
371def setne : PatFrag<(ops node:$lhs, node:$rhs),
372 (setcc node:$lhs, node:$rhs, SETNE)>;
373
Chris Lattner17f2cf02005-10-10 06:00:30 +0000374//===----------------------------------------------------------------------===//
375// Selection DAG Pattern Support.
376//
377// Patterns are what are actually matched against the target-flavored
378// instruction selection DAG. Instructions defined by the target implicitly
379// define patterns in most cases, but patterns can also be explicitly added when
380// an operation is defined by a sequence of instructions (e.g. loading a large
381// immediate value on RISC targets that do not support immediates as large as
382// their GPRs).
383//
384
385class Pattern<dag patternToMatch, list<dag> resultInstrs> {
386 dag PatternToMatch = patternToMatch;
387 list<dag> ResultInstrs = resultInstrs;
388}
389
390// Pat - A simple (but common) form of a pattern, which produces a simple result
391// not needing a full list.
392class Pat<dag pattern, dag result> : Pattern<pattern, [result]>;
393
Evan Chengf20da7e2005-12-08 04:28:48 +0000394//===----------------------------------------------------------------------===//
395// Complex pattern definitions.
396//
397// Complex patterns, e.g. X86 addressing mode, requires pattern matching code
398// in C++. NumOperands is the number of operands returned by the select function;
399// SelectFunc is the name of the function used to pattern match the max. pattern;
400// RootNodes are the list of possible root nodes of the sub-dags to match.
401// e.g. X86 addressing mode - def addr : ComplexPattern<4, "SelectAddr", [add]>;
402//
403class ComplexPattern<ValueType ty, int numops, string fn, list<SDNode> roots = []> {
404 ValueType Ty = ty;
405 int NumOperands = numops;
406 string SelectFunc = fn;
407 list<SDNode> RootNodes = roots;
408}