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Chris Lattner54cb8fd2005-09-07 23:44:43 +00001//===- DAGISelEmitter.cpp - Generate an instruction selector --------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This tablegen backend emits a DAG instruction selector.
11//
12//===----------------------------------------------------------------------===//
13
14#include "DAGISelEmitter.h"
15#include "Record.h"
16#include "llvm/ADT/StringExtras.h"
17#include "llvm/Support/Debug.h"
Jeff Cohena48283b2005-09-25 19:04:43 +000018#include <algorithm>
Chris Lattner54cb8fd2005-09-07 23:44:43 +000019#include <set>
20using namespace llvm;
21
Chris Lattnerca559d02005-09-08 21:03:01 +000022//===----------------------------------------------------------------------===//
Chris Lattner3c7e18d2005-10-14 06:12:03 +000023// Helpers for working with extended types.
24
25/// FilterVTs - Filter a list of VT's according to a predicate.
26///
27template<typename T>
28static std::vector<MVT::ValueType>
29FilterVTs(const std::vector<MVT::ValueType> &InVTs, T Filter) {
30 std::vector<MVT::ValueType> Result;
31 for (unsigned i = 0, e = InVTs.size(); i != e; ++i)
32 if (Filter(InVTs[i]))
33 Result.push_back(InVTs[i]);
34 return Result;
35}
36
Nate Begemanb73628b2005-12-30 00:12:56 +000037template<typename T>
38static std::vector<unsigned char>
39FilterEVTs(const std::vector<unsigned char> &InVTs, T Filter) {
40 std::vector<unsigned char> Result;
41 for (unsigned i = 0, e = InVTs.size(); i != e; ++i)
42 if (Filter((MVT::ValueType)InVTs[i]))
43 Result.push_back(InVTs[i]);
44 return Result;
Chris Lattner3c7e18d2005-10-14 06:12:03 +000045}
46
Nate Begemanb73628b2005-12-30 00:12:56 +000047static std::vector<unsigned char>
48ConvertVTs(const std::vector<MVT::ValueType> &InVTs) {
49 std::vector<unsigned char> Result;
50 for (unsigned i = 0, e = InVTs.size(); i != e; ++i)
51 Result.push_back(InVTs[i]);
52 return Result;
53}
54
55static bool LHSIsSubsetOfRHS(const std::vector<unsigned char> &LHS,
56 const std::vector<unsigned char> &RHS) {
57 if (LHS.size() > RHS.size()) return false;
58 for (unsigned i = 0, e = LHS.size(); i != e; ++i)
Duraid Madinad47ae092005-12-30 16:41:48 +000059 if (std::find(RHS.begin(), RHS.end(), LHS[i]) == RHS.end())
Nate Begemanb73628b2005-12-30 00:12:56 +000060 return false;
61 return true;
62}
63
64/// isExtIntegerVT - Return true if the specified extended value type vector
65/// contains isInt or an integer value type.
Chris Lattner697f8842006-03-20 05:39:48 +000066static bool isExtIntegerInVTs(const std::vector<unsigned char> &EVTs) {
Nate Begemanb73628b2005-12-30 00:12:56 +000067 assert(!EVTs.empty() && "Cannot check for integer in empty ExtVT list!");
68 return EVTs[0] == MVT::isInt || !(FilterEVTs(EVTs, MVT::isInteger).empty());
69}
70
71/// isExtFloatingPointVT - Return true if the specified extended value type
72/// vector contains isFP or a FP value type.
Chris Lattner697f8842006-03-20 05:39:48 +000073static bool isExtFloatingPointInVTs(const std::vector<unsigned char> &EVTs) {
Nate Begemanb73628b2005-12-30 00:12:56 +000074 assert(!EVTs.empty() && "Cannot check for integer in empty ExtVT list!");
Chris Lattner488580c2006-01-28 19:06:51 +000075 return EVTs[0] == MVT::isFP ||
76 !(FilterEVTs(EVTs, MVT::isFloatingPoint).empty());
Chris Lattner3c7e18d2005-10-14 06:12:03 +000077}
78
79//===----------------------------------------------------------------------===//
Chris Lattner33c92e92005-09-08 21:27:15 +000080// SDTypeConstraint implementation
81//
82
83SDTypeConstraint::SDTypeConstraint(Record *R) {
84 OperandNo = R->getValueAsInt("OperandNum");
85
86 if (R->isSubClassOf("SDTCisVT")) {
87 ConstraintType = SDTCisVT;
88 x.SDTCisVT_Info.VT = getValueType(R->getValueAsDef("VT"));
Chris Lattner5b21be72005-12-09 22:57:42 +000089 } else if (R->isSubClassOf("SDTCisPtrTy")) {
90 ConstraintType = SDTCisPtrTy;
Chris Lattner33c92e92005-09-08 21:27:15 +000091 } else if (R->isSubClassOf("SDTCisInt")) {
92 ConstraintType = SDTCisInt;
93 } else if (R->isSubClassOf("SDTCisFP")) {
94 ConstraintType = SDTCisFP;
95 } else if (R->isSubClassOf("SDTCisSameAs")) {
96 ConstraintType = SDTCisSameAs;
97 x.SDTCisSameAs_Info.OtherOperandNum = R->getValueAsInt("OtherOperandNum");
98 } else if (R->isSubClassOf("SDTCisVTSmallerThanOp")) {
99 ConstraintType = SDTCisVTSmallerThanOp;
100 x.SDTCisVTSmallerThanOp_Info.OtherOperandNum =
101 R->getValueAsInt("OtherOperandNum");
Chris Lattner03ebd802005-10-14 04:53:53 +0000102 } else if (R->isSubClassOf("SDTCisOpSmallerThanOp")) {
103 ConstraintType = SDTCisOpSmallerThanOp;
104 x.SDTCisOpSmallerThanOp_Info.BigOperandNum =
105 R->getValueAsInt("BigOperandNum");
Chris Lattner697f8842006-03-20 05:39:48 +0000106 } else if (R->isSubClassOf("SDTCisIntVectorOfSameSize")) {
107 ConstraintType = SDTCisIntVectorOfSameSize;
108 x.SDTCisIntVectorOfSameSize_Info.OtherOperandNum =
109 R->getValueAsInt("OtherOpNum");
Chris Lattner33c92e92005-09-08 21:27:15 +0000110 } else {
111 std::cerr << "Unrecognized SDTypeConstraint '" << R->getName() << "'!\n";
112 exit(1);
113 }
114}
115
Chris Lattner32707602005-09-08 23:22:48 +0000116/// getOperandNum - Return the node corresponding to operand #OpNo in tree
117/// N, which has NumResults results.
118TreePatternNode *SDTypeConstraint::getOperandNum(unsigned OpNo,
119 TreePatternNode *N,
120 unsigned NumResults) const {
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000121 assert(NumResults <= 1 &&
122 "We only work with nodes with zero or one result so far!");
Chris Lattner32707602005-09-08 23:22:48 +0000123
Evan Cheng50c997e2006-06-13 21:47:27 +0000124 if (OpNo >= (NumResults + N->getNumChildren())) {
125 std::cerr << "Invalid operand number " << OpNo << " ";
126 N->dump();
127 std::cerr << '\n';
128 exit(1);
129 }
130
Chris Lattner32707602005-09-08 23:22:48 +0000131 if (OpNo < NumResults)
132 return N; // FIXME: need value #
133 else
134 return N->getChild(OpNo-NumResults);
135}
136
137/// ApplyTypeConstraint - Given a node in a pattern, apply this type
138/// constraint to the nodes operands. This returns true if it makes a
139/// change, false otherwise. If a type contradiction is found, throw an
140/// exception.
141bool SDTypeConstraint::ApplyTypeConstraint(TreePatternNode *N,
142 const SDNodeInfo &NodeInfo,
143 TreePattern &TP) const {
144 unsigned NumResults = NodeInfo.getNumResults();
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000145 assert(NumResults <= 1 &&
146 "We only work with nodes with zero or one result so far!");
Chris Lattner32707602005-09-08 23:22:48 +0000147
Chris Lattner8f60d542006-06-16 18:25:06 +0000148 // Check that the number of operands is sane. Negative operands -> varargs.
Chris Lattner32707602005-09-08 23:22:48 +0000149 if (NodeInfo.getNumOperands() >= 0) {
150 if (N->getNumChildren() != (unsigned)NodeInfo.getNumOperands())
151 TP.error(N->getOperator()->getName() + " node requires exactly " +
152 itostr(NodeInfo.getNumOperands()) + " operands!");
153 }
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000154
155 const CodeGenTarget &CGT = TP.getDAGISelEmitter().getTargetInfo();
Chris Lattner32707602005-09-08 23:22:48 +0000156
157 TreePatternNode *NodeToApply = getOperandNum(OperandNo, N, NumResults);
158
159 switch (ConstraintType) {
160 default: assert(0 && "Unknown constraint type!");
161 case SDTCisVT:
162 // Operand must be a particular type.
163 return NodeToApply->UpdateNodeType(x.SDTCisVT_Info.VT, TP);
Chris Lattner5b21be72005-12-09 22:57:42 +0000164 case SDTCisPtrTy: {
165 // Operand must be same as target pointer type.
Evan Cheng2618d072006-05-17 20:37:59 +0000166 return NodeToApply->UpdateNodeType(MVT::iPTR, TP);
Chris Lattner5b21be72005-12-09 22:57:42 +0000167 }
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000168 case SDTCisInt: {
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000169 // If there is only one integer type supported, this must be it.
Chris Lattnere0583b12005-10-14 05:08:37 +0000170 std::vector<MVT::ValueType> IntVTs =
171 FilterVTs(CGT.getLegalValueTypes(), MVT::isInteger);
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000172
173 // If we found exactly one supported integer type, apply it.
Chris Lattnere0583b12005-10-14 05:08:37 +0000174 if (IntVTs.size() == 1)
175 return NodeToApply->UpdateNodeType(IntVTs[0], TP);
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000176 return NodeToApply->UpdateNodeType(MVT::isInt, TP);
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000177 }
178 case SDTCisFP: {
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000179 // If there is only one FP type supported, this must be it.
Chris Lattnere0583b12005-10-14 05:08:37 +0000180 std::vector<MVT::ValueType> FPVTs =
181 FilterVTs(CGT.getLegalValueTypes(), MVT::isFloatingPoint);
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000182
183 // If we found exactly one supported FP type, apply it.
Chris Lattnere0583b12005-10-14 05:08:37 +0000184 if (FPVTs.size() == 1)
185 return NodeToApply->UpdateNodeType(FPVTs[0], TP);
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000186 return NodeToApply->UpdateNodeType(MVT::isFP, TP);
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000187 }
Chris Lattner32707602005-09-08 23:22:48 +0000188 case SDTCisSameAs: {
189 TreePatternNode *OtherNode =
190 getOperandNum(x.SDTCisSameAs_Info.OtherOperandNum, N, NumResults);
Nate Begemanb73628b2005-12-30 00:12:56 +0000191 return NodeToApply->UpdateNodeType(OtherNode->getExtTypes(), TP) |
192 OtherNode->UpdateNodeType(NodeToApply->getExtTypes(), TP);
Chris Lattner32707602005-09-08 23:22:48 +0000193 }
194 case SDTCisVTSmallerThanOp: {
195 // The NodeToApply must be a leaf node that is a VT. OtherOperandNum must
196 // have an integer type that is smaller than the VT.
197 if (!NodeToApply->isLeaf() ||
198 !dynamic_cast<DefInit*>(NodeToApply->getLeafValue()) ||
199 !static_cast<DefInit*>(NodeToApply->getLeafValue())->getDef()
200 ->isSubClassOf("ValueType"))
201 TP.error(N->getOperator()->getName() + " expects a VT operand!");
202 MVT::ValueType VT =
203 getValueType(static_cast<DefInit*>(NodeToApply->getLeafValue())->getDef());
204 if (!MVT::isInteger(VT))
205 TP.error(N->getOperator()->getName() + " VT operand must be integer!");
206
207 TreePatternNode *OtherNode =
208 getOperandNum(x.SDTCisVTSmallerThanOp_Info.OtherOperandNum, N,NumResults);
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000209
210 // It must be integer.
211 bool MadeChange = false;
212 MadeChange |= OtherNode->UpdateNodeType(MVT::isInt, TP);
213
Nate Begemanb73628b2005-12-30 00:12:56 +0000214 // This code only handles nodes that have one type set. Assert here so
215 // that we can change this if we ever need to deal with multiple value
216 // types at this point.
217 assert(OtherNode->getExtTypes().size() == 1 && "Node has too many types!");
218 if (OtherNode->hasTypeSet() && OtherNode->getTypeNum(0) <= VT)
Chris Lattner32707602005-09-08 23:22:48 +0000219 OtherNode->UpdateNodeType(MVT::Other, TP); // Throw an error.
220 return false;
221 }
Chris Lattner03ebd802005-10-14 04:53:53 +0000222 case SDTCisOpSmallerThanOp: {
Chris Lattner603d78c2005-10-14 06:25:00 +0000223 TreePatternNode *BigOperand =
224 getOperandNum(x.SDTCisOpSmallerThanOp_Info.BigOperandNum, N, NumResults);
225
226 // Both operands must be integer or FP, but we don't care which.
227 bool MadeChange = false;
228
Nate Begemanb73628b2005-12-30 00:12:56 +0000229 // This code does not currently handle nodes which have multiple types,
230 // where some types are integer, and some are fp. Assert that this is not
231 // the case.
232 assert(!(isExtIntegerInVTs(NodeToApply->getExtTypes()) &&
233 isExtFloatingPointInVTs(NodeToApply->getExtTypes())) &&
234 !(isExtIntegerInVTs(BigOperand->getExtTypes()) &&
235 isExtFloatingPointInVTs(BigOperand->getExtTypes())) &&
236 "SDTCisOpSmallerThanOp does not handle mixed int/fp types!");
237 if (isExtIntegerInVTs(NodeToApply->getExtTypes()))
Chris Lattner603d78c2005-10-14 06:25:00 +0000238 MadeChange |= BigOperand->UpdateNodeType(MVT::isInt, TP);
Nate Begemanb73628b2005-12-30 00:12:56 +0000239 else if (isExtFloatingPointInVTs(NodeToApply->getExtTypes()))
Chris Lattner603d78c2005-10-14 06:25:00 +0000240 MadeChange |= BigOperand->UpdateNodeType(MVT::isFP, TP);
Nate Begemanb73628b2005-12-30 00:12:56 +0000241 if (isExtIntegerInVTs(BigOperand->getExtTypes()))
Chris Lattner603d78c2005-10-14 06:25:00 +0000242 MadeChange |= NodeToApply->UpdateNodeType(MVT::isInt, TP);
Nate Begemanb73628b2005-12-30 00:12:56 +0000243 else if (isExtFloatingPointInVTs(BigOperand->getExtTypes()))
Chris Lattner603d78c2005-10-14 06:25:00 +0000244 MadeChange |= NodeToApply->UpdateNodeType(MVT::isFP, TP);
245
246 std::vector<MVT::ValueType> VTs = CGT.getLegalValueTypes();
247
Nate Begemanb73628b2005-12-30 00:12:56 +0000248 if (isExtIntegerInVTs(NodeToApply->getExtTypes())) {
Chris Lattner603d78c2005-10-14 06:25:00 +0000249 VTs = FilterVTs(VTs, MVT::isInteger);
Nate Begemanb73628b2005-12-30 00:12:56 +0000250 } else if (isExtFloatingPointInVTs(NodeToApply->getExtTypes())) {
Chris Lattner603d78c2005-10-14 06:25:00 +0000251 VTs = FilterVTs(VTs, MVT::isFloatingPoint);
252 } else {
253 VTs.clear();
254 }
255
256 switch (VTs.size()) {
257 default: // Too many VT's to pick from.
258 case 0: break; // No info yet.
259 case 1:
260 // Only one VT of this flavor. Cannot ever satisify the constraints.
261 return NodeToApply->UpdateNodeType(MVT::Other, TP); // throw
262 case 2:
263 // If we have exactly two possible types, the little operand must be the
264 // small one, the big operand should be the big one. Common with
265 // float/double for example.
266 assert(VTs[0] < VTs[1] && "Should be sorted!");
267 MadeChange |= NodeToApply->UpdateNodeType(VTs[0], TP);
268 MadeChange |= BigOperand->UpdateNodeType(VTs[1], TP);
269 break;
270 }
271 return MadeChange;
Chris Lattner03ebd802005-10-14 04:53:53 +0000272 }
Chris Lattner697f8842006-03-20 05:39:48 +0000273 case SDTCisIntVectorOfSameSize: {
274 TreePatternNode *OtherOperand =
275 getOperandNum(x.SDTCisIntVectorOfSameSize_Info.OtherOperandNum,
276 N, NumResults);
277 if (OtherOperand->hasTypeSet()) {
278 if (!MVT::isVector(OtherOperand->getTypeNum(0)))
279 TP.error(N->getOperator()->getName() + " VT operand must be a vector!");
280 MVT::ValueType IVT = OtherOperand->getTypeNum(0);
281 IVT = MVT::getIntVectorWithNumElements(MVT::getVectorNumElements(IVT));
282 return NodeToApply->UpdateNodeType(IVT, TP);
283 }
284 return false;
285 }
Chris Lattner32707602005-09-08 23:22:48 +0000286 }
287 return false;
288}
289
290
Chris Lattner33c92e92005-09-08 21:27:15 +0000291//===----------------------------------------------------------------------===//
Chris Lattnerca559d02005-09-08 21:03:01 +0000292// SDNodeInfo implementation
293//
294SDNodeInfo::SDNodeInfo(Record *R) : Def(R) {
295 EnumName = R->getValueAsString("Opcode");
296 SDClassName = R->getValueAsString("SDClass");
Chris Lattner33c92e92005-09-08 21:27:15 +0000297 Record *TypeProfile = R->getValueAsDef("TypeProfile");
298 NumResults = TypeProfile->getValueAsInt("NumResults");
299 NumOperands = TypeProfile->getValueAsInt("NumOperands");
300
Chris Lattnera1a68ae2005-09-28 18:28:29 +0000301 // Parse the properties.
302 Properties = 0;
Chris Lattnerb0e103d2005-10-28 22:49:02 +0000303 std::vector<Record*> PropList = R->getValueAsListOfDefs("Properties");
Chris Lattner6bc0d742005-10-28 22:43:25 +0000304 for (unsigned i = 0, e = PropList.size(); i != e; ++i) {
305 if (PropList[i]->getName() == "SDNPCommutative") {
Chris Lattnera1a68ae2005-09-28 18:28:29 +0000306 Properties |= 1 << SDNPCommutative;
Chris Lattner6bc0d742005-10-28 22:43:25 +0000307 } else if (PropList[i]->getName() == "SDNPAssociative") {
Chris Lattner7cf2fe62005-09-28 20:58:06 +0000308 Properties |= 1 << SDNPAssociative;
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000309 } else if (PropList[i]->getName() == "SDNPHasChain") {
310 Properties |= 1 << SDNPHasChain;
Evan Cheng51fecc82006-01-09 18:27:06 +0000311 } else if (PropList[i]->getName() == "SDNPOutFlag") {
312 Properties |= 1 << SDNPOutFlag;
313 } else if (PropList[i]->getName() == "SDNPInFlag") {
314 Properties |= 1 << SDNPInFlag;
315 } else if (PropList[i]->getName() == "SDNPOptInFlag") {
316 Properties |= 1 << SDNPOptInFlag;
Chris Lattnera1a68ae2005-09-28 18:28:29 +0000317 } else {
Chris Lattner6bc0d742005-10-28 22:43:25 +0000318 std::cerr << "Unknown SD Node property '" << PropList[i]->getName()
Chris Lattnera1a68ae2005-09-28 18:28:29 +0000319 << "' on node '" << R->getName() << "'!\n";
320 exit(1);
321 }
322 }
323
324
Chris Lattner33c92e92005-09-08 21:27:15 +0000325 // Parse the type constraints.
Chris Lattnerb0e103d2005-10-28 22:49:02 +0000326 std::vector<Record*> ConstraintList =
327 TypeProfile->getValueAsListOfDefs("Constraints");
328 TypeConstraints.assign(ConstraintList.begin(), ConstraintList.end());
Chris Lattnerca559d02005-09-08 21:03:01 +0000329}
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000330
331//===----------------------------------------------------------------------===//
332// TreePatternNode implementation
333//
334
335TreePatternNode::~TreePatternNode() {
336#if 0 // FIXME: implement refcounted tree nodes!
337 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
338 delete getChild(i);
339#endif
340}
341
Chris Lattner32707602005-09-08 23:22:48 +0000342/// UpdateNodeType - Set the node type of N to VT if VT contains
343/// information. If N already contains a conflicting type, then throw an
344/// exception. This returns true if any information was updated.
345///
Nate Begemanb73628b2005-12-30 00:12:56 +0000346bool TreePatternNode::UpdateNodeType(const std::vector<unsigned char> &ExtVTs,
347 TreePattern &TP) {
348 assert(!ExtVTs.empty() && "Cannot update node type with empty type vector!");
349
350 if (ExtVTs[0] == MVT::isUnknown || LHSIsSubsetOfRHS(getExtTypes(), ExtVTs))
351 return false;
352 if (isTypeCompletelyUnknown() || LHSIsSubsetOfRHS(ExtVTs, getExtTypes())) {
353 setTypes(ExtVTs);
Chris Lattner32707602005-09-08 23:22:48 +0000354 return true;
355 }
Evan Cheng2618d072006-05-17 20:37:59 +0000356
357 if (getExtTypeNum(0) == MVT::iPTR) {
358 if (ExtVTs[0] == MVT::iPTR || ExtVTs[0] == MVT::isInt)
359 return false;
360 if (isExtIntegerInVTs(ExtVTs)) {
361 std::vector<unsigned char> FVTs = FilterEVTs(ExtVTs, MVT::isInteger);
362 if (FVTs.size()) {
363 setTypes(ExtVTs);
364 return true;
365 }
366 }
367 }
Chris Lattner32707602005-09-08 23:22:48 +0000368
Nate Begemanb73628b2005-12-30 00:12:56 +0000369 if (ExtVTs[0] == MVT::isInt && isExtIntegerInVTs(getExtTypes())) {
370 assert(hasTypeSet() && "should be handled above!");
371 std::vector<unsigned char> FVTs = FilterEVTs(getExtTypes(), MVT::isInteger);
372 if (getExtTypes() == FVTs)
373 return false;
374 setTypes(FVTs);
375 return true;
376 }
Evan Cheng2618d072006-05-17 20:37:59 +0000377 if (ExtVTs[0] == MVT::iPTR && isExtIntegerInVTs(getExtTypes())) {
378 //assert(hasTypeSet() && "should be handled above!");
379 std::vector<unsigned char> FVTs = FilterEVTs(getExtTypes(), MVT::isInteger);
380 if (getExtTypes() == FVTs)
381 return false;
382 if (FVTs.size()) {
383 setTypes(FVTs);
384 return true;
385 }
386 }
Nate Begemanb73628b2005-12-30 00:12:56 +0000387 if (ExtVTs[0] == MVT::isFP && isExtFloatingPointInVTs(getExtTypes())) {
388 assert(hasTypeSet() && "should be handled above!");
Chris Lattner488580c2006-01-28 19:06:51 +0000389 std::vector<unsigned char> FVTs =
390 FilterEVTs(getExtTypes(), MVT::isFloatingPoint);
Nate Begemanb73628b2005-12-30 00:12:56 +0000391 if (getExtTypes() == FVTs)
392 return false;
393 setTypes(FVTs);
394 return true;
395 }
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000396
397 // If we know this is an int or fp type, and we are told it is a specific one,
398 // take the advice.
Nate Begemanb73628b2005-12-30 00:12:56 +0000399 //
400 // Similarly, we should probably set the type here to the intersection of
401 // {isInt|isFP} and ExtVTs
402 if ((getExtTypeNum(0) == MVT::isInt && isExtIntegerInVTs(ExtVTs)) ||
403 (getExtTypeNum(0) == MVT::isFP && isExtFloatingPointInVTs(ExtVTs))) {
404 setTypes(ExtVTs);
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000405 return true;
Evan Cheng2618d072006-05-17 20:37:59 +0000406 }
407 if (getExtTypeNum(0) == MVT::isInt && ExtVTs[0] == MVT::iPTR) {
408 setTypes(ExtVTs);
409 return true;
410 }
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000411
Chris Lattner1531f202005-10-26 16:59:37 +0000412 if (isLeaf()) {
413 dump();
Evan Chengbcecf332005-12-17 01:19:28 +0000414 std::cerr << " ";
Chris Lattner1531f202005-10-26 16:59:37 +0000415 TP.error("Type inference contradiction found in node!");
416 } else {
417 TP.error("Type inference contradiction found in node " +
418 getOperator()->getName() + "!");
419 }
Chris Lattner32707602005-09-08 23:22:48 +0000420 return true; // unreachable
421}
422
423
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000424void TreePatternNode::print(std::ostream &OS) const {
425 if (isLeaf()) {
426 OS << *getLeafValue();
427 } else {
428 OS << "(" << getOperator()->getName();
429 }
430
Nate Begemanb73628b2005-12-30 00:12:56 +0000431 // FIXME: At some point we should handle printing all the value types for
432 // nodes that are multiply typed.
433 switch (getExtTypeNum(0)) {
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000434 case MVT::Other: OS << ":Other"; break;
435 case MVT::isInt: OS << ":isInt"; break;
436 case MVT::isFP : OS << ":isFP"; break;
437 case MVT::isUnknown: ; /*OS << ":?";*/ break;
Evan Cheng2618d072006-05-17 20:37:59 +0000438 case MVT::iPTR: OS << ":iPTR"; break;
Chris Lattner02cdb372006-06-20 00:56:37 +0000439 default: {
440 std::string VTName = llvm::getName(getTypeNum(0));
441 // Strip off MVT:: prefix if present.
442 if (VTName.substr(0,5) == "MVT::")
443 VTName = VTName.substr(5);
444 OS << ":" << VTName;
445 break;
446 }
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000447 }
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000448
449 if (!isLeaf()) {
450 if (getNumChildren() != 0) {
451 OS << " ";
452 getChild(0)->print(OS);
453 for (unsigned i = 1, e = getNumChildren(); i != e; ++i) {
454 OS << ", ";
455 getChild(i)->print(OS);
456 }
457 }
458 OS << ")";
459 }
460
461 if (!PredicateFn.empty())
Chris Lattner24eeeb82005-09-13 21:51:00 +0000462 OS << "<<P:" << PredicateFn << ">>";
Chris Lattnerb0276202005-09-14 22:55:26 +0000463 if (TransformFn)
464 OS << "<<X:" << TransformFn->getName() << ">>";
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000465 if (!getName().empty())
466 OS << ":$" << getName();
467
468}
469void TreePatternNode::dump() const {
470 print(std::cerr);
471}
472
Chris Lattnere46e17b2005-09-29 19:28:10 +0000473/// isIsomorphicTo - Return true if this node is recursively isomorphic to
474/// the specified node. For this comparison, all of the state of the node
475/// is considered, except for the assigned name. Nodes with differing names
476/// that are otherwise identical are considered isomorphic.
477bool TreePatternNode::isIsomorphicTo(const TreePatternNode *N) const {
478 if (N == this) return true;
Nate Begemanb73628b2005-12-30 00:12:56 +0000479 if (N->isLeaf() != isLeaf() || getExtTypes() != N->getExtTypes() ||
Chris Lattnere46e17b2005-09-29 19:28:10 +0000480 getPredicateFn() != N->getPredicateFn() ||
481 getTransformFn() != N->getTransformFn())
482 return false;
483
484 if (isLeaf()) {
485 if (DefInit *DI = dynamic_cast<DefInit*>(getLeafValue()))
486 if (DefInit *NDI = dynamic_cast<DefInit*>(N->getLeafValue()))
487 return DI->getDef() == NDI->getDef();
488 return getLeafValue() == N->getLeafValue();
489 }
490
491 if (N->getOperator() != getOperator() ||
492 N->getNumChildren() != getNumChildren()) return false;
493 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
494 if (!getChild(i)->isIsomorphicTo(N->getChild(i)))
495 return false;
496 return true;
497}
498
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000499/// clone - Make a copy of this tree and all of its children.
500///
501TreePatternNode *TreePatternNode::clone() const {
502 TreePatternNode *New;
503 if (isLeaf()) {
504 New = new TreePatternNode(getLeafValue());
505 } else {
506 std::vector<TreePatternNode*> CChildren;
507 CChildren.reserve(Children.size());
508 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
509 CChildren.push_back(getChild(i)->clone());
510 New = new TreePatternNode(getOperator(), CChildren);
511 }
512 New->setName(getName());
Nate Begemanb73628b2005-12-30 00:12:56 +0000513 New->setTypes(getExtTypes());
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000514 New->setPredicateFn(getPredicateFn());
Chris Lattner24eeeb82005-09-13 21:51:00 +0000515 New->setTransformFn(getTransformFn());
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000516 return New;
517}
518
Chris Lattner32707602005-09-08 23:22:48 +0000519/// SubstituteFormalArguments - Replace the formal arguments in this tree
520/// with actual values specified by ArgMap.
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000521void TreePatternNode::
522SubstituteFormalArguments(std::map<std::string, TreePatternNode*> &ArgMap) {
523 if (isLeaf()) return;
524
525 for (unsigned i = 0, e = getNumChildren(); i != e; ++i) {
526 TreePatternNode *Child = getChild(i);
527 if (Child->isLeaf()) {
528 Init *Val = Child->getLeafValue();
529 if (dynamic_cast<DefInit*>(Val) &&
530 static_cast<DefInit*>(Val)->getDef()->getName() == "node") {
531 // We found a use of a formal argument, replace it with its value.
532 Child = ArgMap[Child->getName()];
533 assert(Child && "Couldn't find formal argument!");
534 setChild(i, Child);
535 }
536 } else {
537 getChild(i)->SubstituteFormalArguments(ArgMap);
538 }
539 }
540}
541
542
543/// InlinePatternFragments - If this pattern refers to any pattern
544/// fragments, inline them into place, giving us a pattern without any
545/// PatFrag references.
546TreePatternNode *TreePatternNode::InlinePatternFragments(TreePattern &TP) {
547 if (isLeaf()) return this; // nothing to do.
548 Record *Op = getOperator();
549
550 if (!Op->isSubClassOf("PatFrag")) {
551 // Just recursively inline children nodes.
552 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
553 setChild(i, getChild(i)->InlinePatternFragments(TP));
554 return this;
555 }
556
557 // Otherwise, we found a reference to a fragment. First, look up its
558 // TreePattern record.
559 TreePattern *Frag = TP.getDAGISelEmitter().getPatternFragment(Op);
560
561 // Verify that we are passing the right number of operands.
562 if (Frag->getNumArgs() != Children.size())
563 TP.error("'" + Op->getName() + "' fragment requires " +
564 utostr(Frag->getNumArgs()) + " operands!");
565
Chris Lattner37937092005-09-09 01:15:01 +0000566 TreePatternNode *FragTree = Frag->getOnlyTree()->clone();
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000567
568 // Resolve formal arguments to their actual value.
569 if (Frag->getNumArgs()) {
570 // Compute the map of formal to actual arguments.
571 std::map<std::string, TreePatternNode*> ArgMap;
572 for (unsigned i = 0, e = Frag->getNumArgs(); i != e; ++i)
573 ArgMap[Frag->getArgName(i)] = getChild(i)->InlinePatternFragments(TP);
574
575 FragTree->SubstituteFormalArguments(ArgMap);
576 }
577
Chris Lattnerfbf8e572005-09-08 17:45:12 +0000578 FragTree->setName(getName());
Nate Begemanb73628b2005-12-30 00:12:56 +0000579 FragTree->UpdateNodeType(getExtTypes(), TP);
Chris Lattnerfbf8e572005-09-08 17:45:12 +0000580
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000581 // Get a new copy of this fragment to stitch into here.
582 //delete this; // FIXME: implement refcounting!
583 return FragTree;
584}
585
Chris Lattner52793e22006-04-06 20:19:52 +0000586/// getImplicitType - Check to see if the specified record has an implicit
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000587/// type which should be applied to it. This infer the type of register
588/// references from the register file information, for example.
589///
Chris Lattner52793e22006-04-06 20:19:52 +0000590static std::vector<unsigned char> getImplicitType(Record *R, bool NotRegisters,
Chris Lattner3c7e18d2005-10-14 06:12:03 +0000591 TreePattern &TP) {
Nate Begemanb73628b2005-12-30 00:12:56 +0000592 // Some common return values
593 std::vector<unsigned char> Unknown(1, MVT::isUnknown);
594 std::vector<unsigned char> Other(1, MVT::Other);
595
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000596 // Check to see if this is a register or a register class...
597 if (R->isSubClassOf("RegisterClass")) {
Nate Begemanb73628b2005-12-30 00:12:56 +0000598 if (NotRegisters)
599 return Unknown;
Nate Begeman6510b222005-12-01 04:51:06 +0000600 const CodeGenRegisterClass &RC =
601 TP.getDAGISelEmitter().getTargetInfo().getRegisterClass(R);
Nate Begemanb73628b2005-12-30 00:12:56 +0000602 return ConvertVTs(RC.getValueTypes());
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000603 } else if (R->isSubClassOf("PatFrag")) {
604 // Pattern fragment types will be resolved when they are inlined.
Nate Begemanb73628b2005-12-30 00:12:56 +0000605 return Unknown;
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000606 } else if (R->isSubClassOf("Register")) {
Evan Cheng37e90052006-01-15 10:04:45 +0000607 if (NotRegisters)
608 return Unknown;
Chris Lattner22faeab2005-12-05 02:36:37 +0000609 const CodeGenTarget &T = TP.getDAGISelEmitter().getTargetInfo();
Evan Cheng44a65fa2006-05-16 07:05:30 +0000610 return T.getRegisterVTs(R);
Chris Lattner1531f202005-10-26 16:59:37 +0000611 } else if (R->isSubClassOf("ValueType") || R->isSubClassOf("CondCode")) {
612 // Using a VTSDNode or CondCodeSDNode.
Nate Begemanb73628b2005-12-30 00:12:56 +0000613 return Other;
Evan Cheng0fc71982005-12-08 02:00:36 +0000614 } else if (R->isSubClassOf("ComplexPattern")) {
Evan Cheng57c517d2006-01-17 07:36:41 +0000615 if (NotRegisters)
616 return Unknown;
Nate Begemanb73628b2005-12-30 00:12:56 +0000617 std::vector<unsigned char>
618 ComplexPat(1, TP.getDAGISelEmitter().getComplexPattern(R).getValueType());
619 return ComplexPat;
Evan Cheng01f318b2005-12-14 02:21:57 +0000620 } else if (R->getName() == "node" || R->getName() == "srcvalue") {
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000621 // Placeholder.
Nate Begemanb73628b2005-12-30 00:12:56 +0000622 return Unknown;
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000623 }
624
625 TP.error("Unknown node flavor used in pattern: " + R->getName());
Nate Begemanb73628b2005-12-30 00:12:56 +0000626 return Other;
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000627}
628
Chris Lattner32707602005-09-08 23:22:48 +0000629/// ApplyTypeConstraints - Apply all of the type constraints relevent to
630/// this node and its children in the tree. This returns true if it makes a
631/// change, false otherwise. If a type contradiction is found, throw an
632/// exception.
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000633bool TreePatternNode::ApplyTypeConstraints(TreePattern &TP, bool NotRegisters) {
Chris Lattner5a1df382006-03-24 23:10:39 +0000634 DAGISelEmitter &ISE = TP.getDAGISelEmitter();
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000635 if (isLeaf()) {
Chris Lattner465c7372005-11-03 05:46:11 +0000636 if (DefInit *DI = dynamic_cast<DefInit*>(getLeafValue())) {
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000637 // If it's a regclass or something else known, include the type.
Chris Lattner52793e22006-04-06 20:19:52 +0000638 return UpdateNodeType(getImplicitType(DI->getDef(), NotRegisters, TP),TP);
Chris Lattner465c7372005-11-03 05:46:11 +0000639 } else if (IntInit *II = dynamic_cast<IntInit*>(getLeafValue())) {
640 // Int inits are always integers. :)
641 bool MadeChange = UpdateNodeType(MVT::isInt, TP);
642
643 if (hasTypeSet()) {
Nate Begemanb73628b2005-12-30 00:12:56 +0000644 // At some point, it may make sense for this tree pattern to have
645 // multiple types. Assert here that it does not, so we revisit this
646 // code when appropriate.
Evan Cheng2618d072006-05-17 20:37:59 +0000647 assert(getExtTypes().size() >= 1 && "TreePattern doesn't have a type!");
Evan Cheng44a65fa2006-05-16 07:05:30 +0000648 MVT::ValueType VT = getTypeNum(0);
649 for (unsigned i = 1, e = getExtTypes().size(); i != e; ++i)
650 assert(getTypeNum(i) == VT && "TreePattern has too many types!");
Nate Begemanb73628b2005-12-30 00:12:56 +0000651
Evan Cheng2618d072006-05-17 20:37:59 +0000652 VT = getTypeNum(0);
653 if (VT != MVT::iPTR) {
654 unsigned Size = MVT::getSizeInBits(VT);
655 // Make sure that the value is representable for this type.
656 if (Size < 32) {
657 int Val = (II->getValue() << (32-Size)) >> (32-Size);
658 if (Val != II->getValue())
659 TP.error("Sign-extended integer value '" + itostr(II->getValue())+
660 "' is out of range for type '" +
661 getEnumName(getTypeNum(0)) + "'!");
662 }
Chris Lattner465c7372005-11-03 05:46:11 +0000663 }
664 }
665
666 return MadeChange;
667 }
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000668 return false;
669 }
Chris Lattner32707602005-09-08 23:22:48 +0000670
671 // special handling for set, which isn't really an SDNode.
672 if (getOperator()->getName() == "set") {
673 assert (getNumChildren() == 2 && "Only handle 2 operand set's for now!");
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000674 bool MadeChange = getChild(0)->ApplyTypeConstraints(TP, NotRegisters);
675 MadeChange |= getChild(1)->ApplyTypeConstraints(TP, NotRegisters);
Chris Lattner32707602005-09-08 23:22:48 +0000676
677 // Types of operands must match.
Nate Begemanb73628b2005-12-30 00:12:56 +0000678 MadeChange |= getChild(0)->UpdateNodeType(getChild(1)->getExtTypes(), TP);
679 MadeChange |= getChild(1)->UpdateNodeType(getChild(0)->getExtTypes(), TP);
Chris Lattner32707602005-09-08 23:22:48 +0000680 MadeChange |= UpdateNodeType(MVT::isVoid, TP);
681 return MadeChange;
Chris Lattner5a1df382006-03-24 23:10:39 +0000682 } else if (getOperator() == ISE.get_intrinsic_void_sdnode() ||
683 getOperator() == ISE.get_intrinsic_w_chain_sdnode() ||
684 getOperator() == ISE.get_intrinsic_wo_chain_sdnode()) {
685 unsigned IID =
686 dynamic_cast<IntInit*>(getChild(0)->getLeafValue())->getValue();
687 const CodeGenIntrinsic &Int = ISE.getIntrinsicInfo(IID);
688 bool MadeChange = false;
689
690 // Apply the result type to the node.
691 MadeChange = UpdateNodeType(Int.ArgVTs[0], TP);
692
693 if (getNumChildren() != Int.ArgVTs.size())
Chris Lattner2c4e65d2006-03-27 22:21:18 +0000694 TP.error("Intrinsic '" + Int.Name + "' expects " +
Chris Lattner5a1df382006-03-24 23:10:39 +0000695 utostr(Int.ArgVTs.size()-1) + " operands, not " +
696 utostr(getNumChildren()-1) + " operands!");
697
698 // Apply type info to the intrinsic ID.
Evan Cheng2618d072006-05-17 20:37:59 +0000699 MadeChange |= getChild(0)->UpdateNodeType(MVT::iPTR, TP);
Chris Lattner5a1df382006-03-24 23:10:39 +0000700
701 for (unsigned i = 1, e = getNumChildren(); i != e; ++i) {
702 MVT::ValueType OpVT = Int.ArgVTs[i];
703 MadeChange |= getChild(i)->UpdateNodeType(OpVT, TP);
704 MadeChange |= getChild(i)->ApplyTypeConstraints(TP, NotRegisters);
705 }
706 return MadeChange;
Chris Lattnerabbb6052005-09-15 21:42:00 +0000707 } else if (getOperator()->isSubClassOf("SDNode")) {
Chris Lattner5a1df382006-03-24 23:10:39 +0000708 const SDNodeInfo &NI = ISE.getSDNodeInfo(getOperator());
Chris Lattnerabbb6052005-09-15 21:42:00 +0000709
710 bool MadeChange = NI.ApplyTypeConstraints(this, TP);
711 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000712 MadeChange |= getChild(i)->ApplyTypeConstraints(TP, NotRegisters);
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000713 // Branch, etc. do not produce results and top-level forms in instr pattern
714 // must have void types.
715 if (NI.getNumResults() == 0)
716 MadeChange |= UpdateNodeType(MVT::isVoid, TP);
Chris Lattner91ded082006-04-06 20:36:51 +0000717
718 // If this is a vector_shuffle operation, apply types to the build_vector
719 // operation. The types of the integers don't matter, but this ensures they
720 // won't get checked.
721 if (getOperator()->getName() == "vector_shuffle" &&
722 getChild(2)->getOperator()->getName() == "build_vector") {
723 TreePatternNode *BV = getChild(2);
724 const std::vector<MVT::ValueType> &LegalVTs
725 = ISE.getTargetInfo().getLegalValueTypes();
726 MVT::ValueType LegalIntVT = MVT::Other;
727 for (unsigned i = 0, e = LegalVTs.size(); i != e; ++i)
728 if (MVT::isInteger(LegalVTs[i]) && !MVT::isVector(LegalVTs[i])) {
729 LegalIntVT = LegalVTs[i];
730 break;
731 }
732 assert(LegalIntVT != MVT::Other && "No legal integer VT?");
733
734 for (unsigned i = 0, e = BV->getNumChildren(); i != e; ++i)
735 MadeChange |= BV->getChild(i)->UpdateNodeType(LegalIntVT, TP);
736 }
Chris Lattnerabbb6052005-09-15 21:42:00 +0000737 return MadeChange;
Chris Lattnera28aec12005-09-15 22:23:50 +0000738 } else if (getOperator()->isSubClassOf("Instruction")) {
Chris Lattner5a1df382006-03-24 23:10:39 +0000739 const DAGInstruction &Inst = ISE.getInstruction(getOperator());
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000740 bool MadeChange = false;
741 unsigned NumResults = Inst.getNumResults();
Chris Lattnerae5b3502005-09-15 21:57:35 +0000742
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000743 assert(NumResults <= 1 &&
744 "Only supports zero or one result instrs!");
Evan Chengeb1f40d2006-07-20 23:36:20 +0000745
746 CodeGenInstruction &InstInfo =
747 ISE.getTargetInfo().getInstruction(getOperator()->getName());
Chris Lattnera28aec12005-09-15 22:23:50 +0000748 // Apply the result type to the node
Evan Chengeb1f40d2006-07-20 23:36:20 +0000749 if (NumResults == 0 || InstInfo.noResults) { // FIXME: temporary hack...
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000750 MadeChange = UpdateNodeType(MVT::isVoid, TP);
751 } else {
752 Record *ResultNode = Inst.getResult(0);
753 assert(ResultNode->isSubClassOf("RegisterClass") &&
754 "Operands should be register classes!");
Nate Begemanddb39542005-12-01 00:06:14 +0000755
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000756 const CodeGenRegisterClass &RC =
Chris Lattner5a1df382006-03-24 23:10:39 +0000757 ISE.getTargetInfo().getRegisterClass(ResultNode);
Nate Begemanb73628b2005-12-30 00:12:56 +0000758 MadeChange = UpdateNodeType(ConvertVTs(RC.getValueTypes()), TP);
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000759 }
Chris Lattnera28aec12005-09-15 22:23:50 +0000760
761 if (getNumChildren() != Inst.getNumOperands())
762 TP.error("Instruction '" + getOperator()->getName() + " expects " +
763 utostr(Inst.getNumOperands()) + " operands, not " +
764 utostr(getNumChildren()) + " operands!");
765 for (unsigned i = 0, e = getNumChildren(); i != e; ++i) {
Nate Begemanddb39542005-12-01 00:06:14 +0000766 Record *OperandNode = Inst.getOperand(i);
767 MVT::ValueType VT;
768 if (OperandNode->isSubClassOf("RegisterClass")) {
769 const CodeGenRegisterClass &RC =
Chris Lattner5a1df382006-03-24 23:10:39 +0000770 ISE.getTargetInfo().getRegisterClass(OperandNode);
Nate Begemanb73628b2005-12-30 00:12:56 +0000771 MadeChange |=getChild(i)->UpdateNodeType(ConvertVTs(RC.getValueTypes()),
772 TP);
Nate Begemanddb39542005-12-01 00:06:14 +0000773 } else if (OperandNode->isSubClassOf("Operand")) {
774 VT = getValueType(OperandNode->getValueAsDef("Type"));
Nate Begemanb73628b2005-12-30 00:12:56 +0000775 MadeChange |= getChild(i)->UpdateNodeType(VT, TP);
Nate Begemanddb39542005-12-01 00:06:14 +0000776 } else {
777 assert(0 && "Unknown operand type!");
778 abort();
779 }
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000780 MadeChange |= getChild(i)->ApplyTypeConstraints(TP, NotRegisters);
Chris Lattnera28aec12005-09-15 22:23:50 +0000781 }
782 return MadeChange;
783 } else {
784 assert(getOperator()->isSubClassOf("SDNodeXForm") && "Unknown node type!");
785
Evan Chengf26ba692006-03-20 08:09:17 +0000786 // Node transforms always take one operand.
Chris Lattnera28aec12005-09-15 22:23:50 +0000787 if (getNumChildren() != 1)
788 TP.error("Node transform '" + getOperator()->getName() +
789 "' requires one operand!");
Chris Lattner4e2f54d2006-03-21 06:42:58 +0000790
791 // If either the output or input of the xform does not have exact
792 // type info. We assume they must be the same. Otherwise, it is perfectly
793 // legal to transform from one type to a completely different type.
794 if (!hasTypeSet() || !getChild(0)->hasTypeSet()) {
Evan Chengf26ba692006-03-20 08:09:17 +0000795 bool MadeChange = UpdateNodeType(getChild(0)->getExtTypes(), TP);
796 MadeChange |= getChild(0)->UpdateNodeType(getExtTypes(), TP);
797 return MadeChange;
798 }
799 return false;
Chris Lattner32707602005-09-08 23:22:48 +0000800 }
Chris Lattner32707602005-09-08 23:22:48 +0000801}
802
Chris Lattnere97603f2005-09-28 19:27:25 +0000803/// canPatternMatch - If it is impossible for this pattern to match on this
804/// target, fill in Reason and return false. Otherwise, return true. This is
805/// used as a santity check for .td files (to prevent people from writing stuff
806/// that can never possibly work), and to prevent the pattern permuter from
807/// generating stuff that is useless.
Chris Lattner7cf2fe62005-09-28 20:58:06 +0000808bool TreePatternNode::canPatternMatch(std::string &Reason, DAGISelEmitter &ISE){
Chris Lattnere97603f2005-09-28 19:27:25 +0000809 if (isLeaf()) return true;
810
811 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
812 if (!getChild(i)->canPatternMatch(Reason, ISE))
813 return false;
Evan Cheng0fc71982005-12-08 02:00:36 +0000814
Chris Lattner550525e2006-03-24 21:48:51 +0000815 // If this is an intrinsic, handle cases that would make it not match. For
816 // example, if an operand is required to be an immediate.
817 if (getOperator()->isSubClassOf("Intrinsic")) {
818 // TODO:
819 return true;
820 }
821
Chris Lattnere97603f2005-09-28 19:27:25 +0000822 // If this node is a commutative operator, check that the LHS isn't an
823 // immediate.
824 const SDNodeInfo &NodeInfo = ISE.getSDNodeInfo(getOperator());
825 if (NodeInfo.hasProperty(SDNodeInfo::SDNPCommutative)) {
826 // Scan all of the operands of the node and make sure that only the last one
Chris Lattner7905c552006-09-14 23:54:24 +0000827 // is a constant node, unless the RHS also is.
828 if (getChild(getNumChildren()-1)->isLeaf() ||
829 getChild(getNumChildren()-1)->getOperator()->getName() != "imm") {
830 for (unsigned i = 0, e = getNumChildren()-1; i != e; ++i)
831 if (!getChild(i)->isLeaf() &&
832 getChild(i)->getOperator()->getName() == "imm") {
833 Reason = "Immediate value must be on the RHS of commutative operators!";
834 return false;
835 }
836 }
Chris Lattnere97603f2005-09-28 19:27:25 +0000837 }
838
839 return true;
840}
Chris Lattner32707602005-09-08 23:22:48 +0000841
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000842//===----------------------------------------------------------------------===//
843// TreePattern implementation
844//
845
Chris Lattneredbd8712005-10-21 01:19:59 +0000846TreePattern::TreePattern(Record *TheRec, ListInit *RawPat, bool isInput,
Chris Lattneree9f0c32005-09-13 21:20:49 +0000847 DAGISelEmitter &ise) : TheRecord(TheRec), ISE(ise) {
Chris Lattneredbd8712005-10-21 01:19:59 +0000848 isInputPattern = isInput;
Chris Lattnera28aec12005-09-15 22:23:50 +0000849 for (unsigned i = 0, e = RawPat->getSize(); i != e; ++i)
850 Trees.push_back(ParseTreePattern((DagInit*)RawPat->getElement(i)));
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000851}
852
Chris Lattneredbd8712005-10-21 01:19:59 +0000853TreePattern::TreePattern(Record *TheRec, DagInit *Pat, bool isInput,
Chris Lattnera28aec12005-09-15 22:23:50 +0000854 DAGISelEmitter &ise) : TheRecord(TheRec), ISE(ise) {
Chris Lattneredbd8712005-10-21 01:19:59 +0000855 isInputPattern = isInput;
Chris Lattnera28aec12005-09-15 22:23:50 +0000856 Trees.push_back(ParseTreePattern(Pat));
857}
858
Chris Lattneredbd8712005-10-21 01:19:59 +0000859TreePattern::TreePattern(Record *TheRec, TreePatternNode *Pat, bool isInput,
Chris Lattnera28aec12005-09-15 22:23:50 +0000860 DAGISelEmitter &ise) : TheRecord(TheRec), ISE(ise) {
Chris Lattneredbd8712005-10-21 01:19:59 +0000861 isInputPattern = isInput;
Chris Lattnera28aec12005-09-15 22:23:50 +0000862 Trees.push_back(Pat);
863}
864
865
866
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000867void TreePattern::error(const std::string &Msg) const {
Chris Lattnerd8a3bde2005-09-14 20:53:42 +0000868 dump();
Chris Lattneree9f0c32005-09-13 21:20:49 +0000869 throw "In " + TheRecord->getName() + ": " + Msg;
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000870}
871
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000872TreePatternNode *TreePattern::ParseTreePattern(DagInit *Dag) {
Chris Lattner8c063182006-03-30 22:50:40 +0000873 DefInit *OpDef = dynamic_cast<DefInit*>(Dag->getOperator());
874 if (!OpDef) error("Pattern has unexpected operator type!");
875 Record *Operator = OpDef->getDef();
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000876
877 if (Operator->isSubClassOf("ValueType")) {
878 // If the operator is a ValueType, then this must be "type cast" of a leaf
879 // node.
880 if (Dag->getNumArgs() != 1)
Chris Lattner0ee7cff2005-10-14 04:11:13 +0000881 error("Type cast only takes one operand!");
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000882
883 Init *Arg = Dag->getArg(0);
884 TreePatternNode *New;
885 if (DefInit *DI = dynamic_cast<DefInit*>(Arg)) {
Chris Lattner72fe91c2005-09-24 00:40:24 +0000886 Record *R = DI->getDef();
887 if (R->isSubClassOf("SDNode") || R->isSubClassOf("PatFrag")) {
Chris Lattner8c063182006-03-30 22:50:40 +0000888 Dag->setArg(0, new DagInit(DI,
Chris Lattner72fe91c2005-09-24 00:40:24 +0000889 std::vector<std::pair<Init*, std::string> >()));
Chris Lattner12cf9092005-11-16 23:14:54 +0000890 return ParseTreePattern(Dag);
Evan Cheng1c3d19e2005-12-04 08:18:16 +0000891 }
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000892 New = new TreePatternNode(DI);
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000893 } else if (DagInit *DI = dynamic_cast<DagInit*>(Arg)) {
894 New = ParseTreePattern(DI);
Chris Lattner0614b622005-11-02 06:49:14 +0000895 } else if (IntInit *II = dynamic_cast<IntInit*>(Arg)) {
896 New = new TreePatternNode(II);
897 if (!Dag->getArgName(0).empty())
898 error("Constant int argument should not have a name!");
Chris Lattnerffa4fdc2006-03-31 05:25:56 +0000899 } else if (BitsInit *BI = dynamic_cast<BitsInit*>(Arg)) {
900 // Turn this into an IntInit.
901 Init *II = BI->convertInitializerTo(new IntRecTy());
902 if (II == 0 || !dynamic_cast<IntInit*>(II))
903 error("Bits value must be constants!");
904
905 New = new TreePatternNode(dynamic_cast<IntInit*>(II));
906 if (!Dag->getArgName(0).empty())
907 error("Constant int argument should not have a name!");
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000908 } else {
909 Arg->dump();
910 error("Unknown leaf value for tree pattern!");
911 return 0;
912 }
913
Chris Lattner32707602005-09-08 23:22:48 +0000914 // Apply the type cast.
915 New->UpdateNodeType(getValueType(Operator), *this);
Chris Lattner12cf9092005-11-16 23:14:54 +0000916 New->setName(Dag->getArgName(0));
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000917 return New;
918 }
919
920 // Verify that this is something that makes sense for an operator.
921 if (!Operator->isSubClassOf("PatFrag") && !Operator->isSubClassOf("SDNode") &&
Chris Lattnerabbb6052005-09-15 21:42:00 +0000922 !Operator->isSubClassOf("Instruction") &&
923 !Operator->isSubClassOf("SDNodeXForm") &&
Chris Lattner550525e2006-03-24 21:48:51 +0000924 !Operator->isSubClassOf("Intrinsic") &&
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000925 Operator->getName() != "set")
926 error("Unrecognized node '" + Operator->getName() + "'!");
927
Chris Lattneredbd8712005-10-21 01:19:59 +0000928 // Check to see if this is something that is illegal in an input pattern.
929 if (isInputPattern && (Operator->isSubClassOf("Instruction") ||
Chris Lattner5a1df382006-03-24 23:10:39 +0000930 Operator->isSubClassOf("SDNodeXForm")))
Chris Lattneredbd8712005-10-21 01:19:59 +0000931 error("Cannot use '" + Operator->getName() + "' in an input pattern!");
932
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000933 std::vector<TreePatternNode*> Children;
934
935 for (unsigned i = 0, e = Dag->getNumArgs(); i != e; ++i) {
936 Init *Arg = Dag->getArg(i);
937 if (DagInit *DI = dynamic_cast<DagInit*>(Arg)) {
938 Children.push_back(ParseTreePattern(DI));
Chris Lattner12cf9092005-11-16 23:14:54 +0000939 if (Children.back()->getName().empty())
940 Children.back()->setName(Dag->getArgName(i));
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000941 } else if (DefInit *DefI = dynamic_cast<DefInit*>(Arg)) {
942 Record *R = DefI->getDef();
943 // Direct reference to a leaf DagNode or PatFrag? Turn it into a
944 // TreePatternNode if its own.
945 if (R->isSubClassOf("SDNode") || R->isSubClassOf("PatFrag")) {
Chris Lattner8c063182006-03-30 22:50:40 +0000946 Dag->setArg(i, new DagInit(DefI,
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000947 std::vector<std::pair<Init*, std::string> >()));
948 --i; // Revisit this node...
949 } else {
950 TreePatternNode *Node = new TreePatternNode(DefI);
951 Node->setName(Dag->getArgName(i));
952 Children.push_back(Node);
953
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000954 // Input argument?
955 if (R->getName() == "node") {
956 if (Dag->getArgName(i).empty())
957 error("'node' argument requires a name to match with operand list");
958 Args.push_back(Dag->getArgName(i));
959 }
960 }
Chris Lattner5d5a0562005-10-19 04:30:56 +0000961 } else if (IntInit *II = dynamic_cast<IntInit*>(Arg)) {
962 TreePatternNode *Node = new TreePatternNode(II);
963 if (!Dag->getArgName(i).empty())
964 error("Constant int argument should not have a name!");
965 Children.push_back(Node);
Chris Lattnerffa4fdc2006-03-31 05:25:56 +0000966 } else if (BitsInit *BI = dynamic_cast<BitsInit*>(Arg)) {
967 // Turn this into an IntInit.
968 Init *II = BI->convertInitializerTo(new IntRecTy());
969 if (II == 0 || !dynamic_cast<IntInit*>(II))
970 error("Bits value must be constants!");
971
972 TreePatternNode *Node = new TreePatternNode(dynamic_cast<IntInit*>(II));
973 if (!Dag->getArgName(i).empty())
974 error("Constant int argument should not have a name!");
975 Children.push_back(Node);
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000976 } else {
Chris Lattner5d5a0562005-10-19 04:30:56 +0000977 std::cerr << '"';
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000978 Arg->dump();
Chris Lattner5d5a0562005-10-19 04:30:56 +0000979 std::cerr << "\": ";
Chris Lattner54cb8fd2005-09-07 23:44:43 +0000980 error("Unknown leaf value for tree pattern!");
981 }
982 }
983
Chris Lattner5a1df382006-03-24 23:10:39 +0000984 // If the operator is an intrinsic, then this is just syntactic sugar for for
985 // (intrinsic_* <number>, ..children..). Pick the right intrinsic node, and
986 // convert the intrinsic name to a number.
987 if (Operator->isSubClassOf("Intrinsic")) {
988 const CodeGenIntrinsic &Int = getDAGISelEmitter().getIntrinsic(Operator);
989 unsigned IID = getDAGISelEmitter().getIntrinsicID(Operator)+1;
990
991 // If this intrinsic returns void, it must have side-effects and thus a
992 // chain.
993 if (Int.ArgVTs[0] == MVT::isVoid) {
994 Operator = getDAGISelEmitter().get_intrinsic_void_sdnode();
995 } else if (Int.ModRef != CodeGenIntrinsic::NoMem) {
996 // Has side-effects, requires chain.
997 Operator = getDAGISelEmitter().get_intrinsic_w_chain_sdnode();
998 } else {
999 // Otherwise, no chain.
1000 Operator = getDAGISelEmitter().get_intrinsic_wo_chain_sdnode();
1001 }
1002
1003 TreePatternNode *IIDNode = new TreePatternNode(new IntInit(IID));
1004 Children.insert(Children.begin(), IIDNode);
1005 }
1006
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001007 return new TreePatternNode(Operator, Children);
1008}
1009
Chris Lattner32707602005-09-08 23:22:48 +00001010/// InferAllTypes - Infer/propagate as many types throughout the expression
1011/// patterns as possible. Return true if all types are infered, false
1012/// otherwise. Throw an exception if a type contradiction is found.
1013bool TreePattern::InferAllTypes() {
1014 bool MadeChange = true;
1015 while (MadeChange) {
1016 MadeChange = false;
1017 for (unsigned i = 0, e = Trees.size(); i != e; ++i)
Chris Lattner0ee7cff2005-10-14 04:11:13 +00001018 MadeChange |= Trees[i]->ApplyTypeConstraints(*this, false);
Chris Lattner32707602005-09-08 23:22:48 +00001019 }
1020
1021 bool HasUnresolvedTypes = false;
1022 for (unsigned i = 0, e = Trees.size(); i != e; ++i)
1023 HasUnresolvedTypes |= Trees[i]->ContainsUnresolvedType();
1024 return !HasUnresolvedTypes;
1025}
1026
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001027void TreePattern::print(std::ostream &OS) const {
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001028 OS << getRecord()->getName();
1029 if (!Args.empty()) {
1030 OS << "(" << Args[0];
1031 for (unsigned i = 1, e = Args.size(); i != e; ++i)
1032 OS << ", " << Args[i];
1033 OS << ")";
1034 }
1035 OS << ": ";
1036
1037 if (Trees.size() > 1)
1038 OS << "[\n";
1039 for (unsigned i = 0, e = Trees.size(); i != e; ++i) {
1040 OS << "\t";
1041 Trees[i]->print(OS);
1042 OS << "\n";
1043 }
1044
1045 if (Trees.size() > 1)
1046 OS << "]\n";
1047}
1048
1049void TreePattern::dump() const { print(std::cerr); }
1050
1051
1052
1053//===----------------------------------------------------------------------===//
1054// DAGISelEmitter implementation
1055//
1056
Chris Lattnerca559d02005-09-08 21:03:01 +00001057// Parse all of the SDNode definitions for the target, populating SDNodes.
1058void DAGISelEmitter::ParseNodeInfo() {
1059 std::vector<Record*> Nodes = Records.getAllDerivedDefinitions("SDNode");
1060 while (!Nodes.empty()) {
1061 SDNodes.insert(std::make_pair(Nodes.back(), Nodes.back()));
1062 Nodes.pop_back();
1063 }
Chris Lattner5a1df382006-03-24 23:10:39 +00001064
1065 // Get the buildin intrinsic nodes.
1066 intrinsic_void_sdnode = getSDNodeNamed("intrinsic_void");
1067 intrinsic_w_chain_sdnode = getSDNodeNamed("intrinsic_w_chain");
1068 intrinsic_wo_chain_sdnode = getSDNodeNamed("intrinsic_wo_chain");
Chris Lattnerca559d02005-09-08 21:03:01 +00001069}
1070
Chris Lattner24eeeb82005-09-13 21:51:00 +00001071/// ParseNodeTransforms - Parse all SDNodeXForm instances into the SDNodeXForms
1072/// map, and emit them to the file as functions.
1073void DAGISelEmitter::ParseNodeTransforms(std::ostream &OS) {
1074 OS << "\n// Node transformations.\n";
1075 std::vector<Record*> Xforms = Records.getAllDerivedDefinitions("SDNodeXForm");
1076 while (!Xforms.empty()) {
1077 Record *XFormNode = Xforms.back();
1078 Record *SDNode = XFormNode->getValueAsDef("Opcode");
1079 std::string Code = XFormNode->getValueAsCode("XFormFunction");
1080 SDNodeXForms.insert(std::make_pair(XFormNode,
1081 std::make_pair(SDNode, Code)));
1082
Chris Lattner1048b7a2005-09-13 22:03:37 +00001083 if (!Code.empty()) {
Chris Lattner24eeeb82005-09-13 21:51:00 +00001084 std::string ClassName = getSDNodeInfo(SDNode).getSDClassName();
1085 const char *C2 = ClassName == "SDNode" ? "N" : "inN";
1086
Chris Lattner1048b7a2005-09-13 22:03:37 +00001087 OS << "inline SDOperand Transform_" << XFormNode->getName()
Chris Lattner24eeeb82005-09-13 21:51:00 +00001088 << "(SDNode *" << C2 << ") {\n";
1089 if (ClassName != "SDNode")
1090 OS << " " << ClassName << " *N = cast<" << ClassName << ">(inN);\n";
1091 OS << Code << "\n}\n";
1092 }
1093
1094 Xforms.pop_back();
1095 }
1096}
1097
Evan Cheng0fc71982005-12-08 02:00:36 +00001098void DAGISelEmitter::ParseComplexPatterns() {
1099 std::vector<Record*> AMs = Records.getAllDerivedDefinitions("ComplexPattern");
1100 while (!AMs.empty()) {
1101 ComplexPatterns.insert(std::make_pair(AMs.back(), AMs.back()));
1102 AMs.pop_back();
1103 }
1104}
Chris Lattner24eeeb82005-09-13 21:51:00 +00001105
1106
Chris Lattnerb39e4be2005-09-15 02:38:02 +00001107/// ParsePatternFragments - Parse all of the PatFrag definitions in the .td
1108/// file, building up the PatternFragments map. After we've collected them all,
1109/// inline fragments together as necessary, so that there are no references left
1110/// inside a pattern fragment to a pattern fragment.
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001111///
1112/// This also emits all of the predicate functions to the output file.
1113///
Chris Lattnerb39e4be2005-09-15 02:38:02 +00001114void DAGISelEmitter::ParsePatternFragments(std::ostream &OS) {
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001115 std::vector<Record*> Fragments = Records.getAllDerivedDefinitions("PatFrag");
1116
1117 // First step, parse all of the fragments and emit predicate functions.
1118 OS << "\n// Predicate functions.\n";
1119 for (unsigned i = 0, e = Fragments.size(); i != e; ++i) {
Chris Lattnera28aec12005-09-15 22:23:50 +00001120 DagInit *Tree = Fragments[i]->getValueAsDag("Fragment");
Chris Lattneredbd8712005-10-21 01:19:59 +00001121 TreePattern *P = new TreePattern(Fragments[i], Tree, true, *this);
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001122 PatternFragments[Fragments[i]] = P;
Chris Lattneree9f0c32005-09-13 21:20:49 +00001123
1124 // Validate the argument list, converting it to map, to discard duplicates.
1125 std::vector<std::string> &Args = P->getArgList();
1126 std::set<std::string> OperandsMap(Args.begin(), Args.end());
1127
1128 if (OperandsMap.count(""))
1129 P->error("Cannot have unnamed 'node' values in pattern fragment!");
1130
1131 // Parse the operands list.
1132 DagInit *OpsList = Fragments[i]->getValueAsDag("Operands");
Chris Lattner8c063182006-03-30 22:50:40 +00001133 DefInit *OpsOp = dynamic_cast<DefInit*>(OpsList->getOperator());
1134 if (!OpsOp || OpsOp->getDef()->getName() != "ops")
Chris Lattneree9f0c32005-09-13 21:20:49 +00001135 P->error("Operands list should start with '(ops ... '!");
1136
1137 // Copy over the arguments.
1138 Args.clear();
1139 for (unsigned j = 0, e = OpsList->getNumArgs(); j != e; ++j) {
1140 if (!dynamic_cast<DefInit*>(OpsList->getArg(j)) ||
1141 static_cast<DefInit*>(OpsList->getArg(j))->
1142 getDef()->getName() != "node")
1143 P->error("Operands list should all be 'node' values.");
1144 if (OpsList->getArgName(j).empty())
1145 P->error("Operands list should have names for each operand!");
1146 if (!OperandsMap.count(OpsList->getArgName(j)))
1147 P->error("'" + OpsList->getArgName(j) +
1148 "' does not occur in pattern or was multiply specified!");
1149 OperandsMap.erase(OpsList->getArgName(j));
1150 Args.push_back(OpsList->getArgName(j));
1151 }
1152
1153 if (!OperandsMap.empty())
1154 P->error("Operands list does not contain an entry for operand '" +
1155 *OperandsMap.begin() + "'!");
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001156
1157 // If there is a code init for this fragment, emit the predicate code and
1158 // keep track of the fact that this fragment uses it.
Chris Lattner24eeeb82005-09-13 21:51:00 +00001159 std::string Code = Fragments[i]->getValueAsCode("Predicate");
1160 if (!Code.empty()) {
Chris Lattner37937092005-09-09 01:15:01 +00001161 assert(!P->getOnlyTree()->isLeaf() && "Can't be a leaf!");
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001162 std::string ClassName =
Chris Lattner37937092005-09-09 01:15:01 +00001163 getSDNodeInfo(P->getOnlyTree()->getOperator()).getSDClassName();
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001164 const char *C2 = ClassName == "SDNode" ? "N" : "inN";
1165
Chris Lattner1048b7a2005-09-13 22:03:37 +00001166 OS << "inline bool Predicate_" << Fragments[i]->getName()
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001167 << "(SDNode *" << C2 << ") {\n";
1168 if (ClassName != "SDNode")
1169 OS << " " << ClassName << " *N = cast<" << ClassName << ">(inN);\n";
Chris Lattner24eeeb82005-09-13 21:51:00 +00001170 OS << Code << "\n}\n";
Chris Lattner37937092005-09-09 01:15:01 +00001171 P->getOnlyTree()->setPredicateFn("Predicate_"+Fragments[i]->getName());
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001172 }
Chris Lattner6de8b532005-09-13 21:59:15 +00001173
1174 // If there is a node transformation corresponding to this, keep track of
1175 // it.
1176 Record *Transform = Fragments[i]->getValueAsDef("OperandTransform");
1177 if (!getSDNodeTransform(Transform).second.empty()) // not noop xform?
Chris Lattnerb0276202005-09-14 22:55:26 +00001178 P->getOnlyTree()->setTransformFn(Transform);
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001179 }
1180
1181 OS << "\n\n";
1182
1183 // Now that we've parsed all of the tree fragments, do a closure on them so
1184 // that there are not references to PatFrags left inside of them.
1185 for (std::map<Record*, TreePattern*>::iterator I = PatternFragments.begin(),
1186 E = PatternFragments.end(); I != E; ++I) {
Chris Lattner32707602005-09-08 23:22:48 +00001187 TreePattern *ThePat = I->second;
1188 ThePat->InlinePatternFragments();
Chris Lattneree9f0c32005-09-13 21:20:49 +00001189
Chris Lattner32707602005-09-08 23:22:48 +00001190 // Infer as many types as possible. Don't worry about it if we don't infer
1191 // all of them, some may depend on the inputs of the pattern.
1192 try {
1193 ThePat->InferAllTypes();
1194 } catch (...) {
1195 // If this pattern fragment is not supported by this target (no types can
1196 // satisfy its constraints), just ignore it. If the bogus pattern is
1197 // actually used by instructions, the type consistency error will be
1198 // reported there.
1199 }
1200
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001201 // If debugging, print out the pattern fragment result.
Chris Lattner32707602005-09-08 23:22:48 +00001202 DEBUG(ThePat->dump());
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001203 }
1204}
1205
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001206/// HandleUse - Given "Pat" a leaf in the pattern, check to see if it is an
Chris Lattnerf1311842005-09-14 23:05:13 +00001207/// instruction input. Return true if this is a real use.
1208static bool HandleUse(TreePattern *I, TreePatternNode *Pat,
Evan Cheng7b05bd52005-12-23 22:11:47 +00001209 std::map<std::string, TreePatternNode*> &InstInputs,
1210 std::vector<Record*> &InstImpInputs) {
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001211 // No name -> not interesting.
Chris Lattner7da852f2005-09-14 22:06:36 +00001212 if (Pat->getName().empty()) {
1213 if (Pat->isLeaf()) {
1214 DefInit *DI = dynamic_cast<DefInit*>(Pat->getLeafValue());
1215 if (DI && DI->getDef()->isSubClassOf("RegisterClass"))
1216 I->error("Input " + DI->getDef()->getName() + " must be named!");
Evan Cheng7b05bd52005-12-23 22:11:47 +00001217 else if (DI && DI->getDef()->isSubClassOf("Register"))
1218 InstImpInputs.push_back(DI->getDef());
Chris Lattner7da852f2005-09-14 22:06:36 +00001219 }
Chris Lattnerf1311842005-09-14 23:05:13 +00001220 return false;
Chris Lattner7da852f2005-09-14 22:06:36 +00001221 }
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001222
1223 Record *Rec;
1224 if (Pat->isLeaf()) {
1225 DefInit *DI = dynamic_cast<DefInit*>(Pat->getLeafValue());
1226 if (!DI) I->error("Input $" + Pat->getName() + " must be an identifier!");
1227 Rec = DI->getDef();
1228 } else {
1229 assert(Pat->getNumChildren() == 0 && "can't be a use with children!");
1230 Rec = Pat->getOperator();
1231 }
1232
Evan Cheng01f318b2005-12-14 02:21:57 +00001233 // SRCVALUE nodes are ignored.
1234 if (Rec->getName() == "srcvalue")
1235 return false;
1236
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001237 TreePatternNode *&Slot = InstInputs[Pat->getName()];
1238 if (!Slot) {
1239 Slot = Pat;
1240 } else {
1241 Record *SlotRec;
1242 if (Slot->isLeaf()) {
Chris Lattnerb9f01eb2005-09-16 00:29:46 +00001243 SlotRec = dynamic_cast<DefInit*>(Slot->getLeafValue())->getDef();
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001244 } else {
1245 assert(Slot->getNumChildren() == 0 && "can't be a use with children!");
1246 SlotRec = Slot->getOperator();
1247 }
1248
1249 // Ensure that the inputs agree if we've already seen this input.
1250 if (Rec != SlotRec)
1251 I->error("All $" + Pat->getName() + " inputs must agree with each other");
Nate Begemanb73628b2005-12-30 00:12:56 +00001252 if (Slot->getExtTypes() != Pat->getExtTypes())
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001253 I->error("All $" + Pat->getName() + " inputs must agree with each other");
1254 }
Chris Lattnerf1311842005-09-14 23:05:13 +00001255 return true;
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001256}
1257
1258/// FindPatternInputsAndOutputs - Scan the specified TreePatternNode (which is
1259/// part of "I", the instruction), computing the set of inputs and outputs of
1260/// the pattern. Report errors if we see anything naughty.
1261void DAGISelEmitter::
1262FindPatternInputsAndOutputs(TreePattern *I, TreePatternNode *Pat,
1263 std::map<std::string, TreePatternNode*> &InstInputs,
Chris Lattner947604b2006-03-24 21:52:20 +00001264 std::map<std::string, TreePatternNode*>&InstResults,
Evan Cheng7b05bd52005-12-23 22:11:47 +00001265 std::vector<Record*> &InstImpInputs,
Evan Chengbcecf332005-12-17 01:19:28 +00001266 std::vector<Record*> &InstImpResults) {
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001267 if (Pat->isLeaf()) {
Evan Cheng7b05bd52005-12-23 22:11:47 +00001268 bool isUse = HandleUse(I, Pat, InstInputs, InstImpInputs);
Chris Lattnerf1311842005-09-14 23:05:13 +00001269 if (!isUse && Pat->getTransformFn())
1270 I->error("Cannot specify a transform function for a non-input value!");
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001271 return;
1272 } else if (Pat->getOperator()->getName() != "set") {
1273 // If this is not a set, verify that the children nodes are not void typed,
1274 // and recurse.
1275 for (unsigned i = 0, e = Pat->getNumChildren(); i != e; ++i) {
Nate Begemanb73628b2005-12-30 00:12:56 +00001276 if (Pat->getChild(i)->getExtTypeNum(0) == MVT::isVoid)
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001277 I->error("Cannot have void nodes inside of patterns!");
Evan Chengbcecf332005-12-17 01:19:28 +00001278 FindPatternInputsAndOutputs(I, Pat->getChild(i), InstInputs, InstResults,
Evan Cheng7b05bd52005-12-23 22:11:47 +00001279 InstImpInputs, InstImpResults);
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001280 }
1281
1282 // If this is a non-leaf node with no children, treat it basically as if
1283 // it were a leaf. This handles nodes like (imm).
Chris Lattnerf1311842005-09-14 23:05:13 +00001284 bool isUse = false;
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001285 if (Pat->getNumChildren() == 0)
Evan Cheng7b05bd52005-12-23 22:11:47 +00001286 isUse = HandleUse(I, Pat, InstInputs, InstImpInputs);
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001287
Chris Lattnerf1311842005-09-14 23:05:13 +00001288 if (!isUse && Pat->getTransformFn())
1289 I->error("Cannot specify a transform function for a non-input value!");
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001290 return;
1291 }
1292
1293 // Otherwise, this is a set, validate and collect instruction results.
1294 if (Pat->getNumChildren() == 0)
1295 I->error("set requires operands!");
1296 else if (Pat->getNumChildren() & 1)
1297 I->error("set requires an even number of operands");
1298
Chris Lattnerf1311842005-09-14 23:05:13 +00001299 if (Pat->getTransformFn())
1300 I->error("Cannot specify a transform function on a set node!");
1301
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001302 // Check the set destinations.
1303 unsigned NumValues = Pat->getNumChildren()/2;
1304 for (unsigned i = 0; i != NumValues; ++i) {
1305 TreePatternNode *Dest = Pat->getChild(i);
1306 if (!Dest->isLeaf())
Evan Cheng86217892005-12-12 19:37:43 +00001307 I->error("set destination should be a register!");
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001308
1309 DefInit *Val = dynamic_cast<DefInit*>(Dest->getLeafValue());
1310 if (!Val)
Evan Cheng86217892005-12-12 19:37:43 +00001311 I->error("set destination should be a register!");
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001312
Evan Chengbcecf332005-12-17 01:19:28 +00001313 if (Val->getDef()->isSubClassOf("RegisterClass")) {
1314 if (Dest->getName().empty())
1315 I->error("set destination must have a name!");
1316 if (InstResults.count(Dest->getName()))
1317 I->error("cannot set '" + Dest->getName() +"' multiple times");
Evan Cheng420132e2006-03-20 06:04:09 +00001318 InstResults[Dest->getName()] = Dest;
Evan Cheng7b05bd52005-12-23 22:11:47 +00001319 } else if (Val->getDef()->isSubClassOf("Register")) {
Evan Chengbcecf332005-12-17 01:19:28 +00001320 InstImpResults.push_back(Val->getDef());
1321 } else {
1322 I->error("set destination should be a register!");
1323 }
1324
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001325 // Verify and collect info from the computation.
1326 FindPatternInputsAndOutputs(I, Pat->getChild(i+NumValues),
Evan Cheng7b05bd52005-12-23 22:11:47 +00001327 InstInputs, InstResults,
1328 InstImpInputs, InstImpResults);
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001329 }
1330}
1331
Chris Lattnerb39e4be2005-09-15 02:38:02 +00001332/// ParseInstructions - Parse all of the instructions, inlining and resolving
1333/// any fragments involved. This populates the Instructions list with fully
1334/// resolved instructions.
1335void DAGISelEmitter::ParseInstructions() {
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001336 std::vector<Record*> Instrs = Records.getAllDerivedDefinitions("Instruction");
1337
1338 for (unsigned i = 0, e = Instrs.size(); i != e; ++i) {
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001339 ListInit *LI = 0;
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001340
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001341 if (dynamic_cast<ListInit*>(Instrs[i]->getValueInit("Pattern")))
1342 LI = Instrs[i]->getValueAsListInit("Pattern");
1343
1344 // If there is no pattern, only collect minimal information about the
1345 // instruction for its operand list. We have to assume that there is one
1346 // result, as we have no detailed info.
1347 if (!LI || LI->getSize() == 0) {
Nate Begemanddb39542005-12-01 00:06:14 +00001348 std::vector<Record*> Results;
1349 std::vector<Record*> Operands;
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001350
1351 CodeGenInstruction &InstInfo =Target.getInstruction(Instrs[i]->getName());
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001352
Evan Cheng3a217f32005-12-22 02:35:21 +00001353 if (InstInfo.OperandList.size() != 0) {
Evan Cheng3a217f32005-12-22 02:35:21 +00001354 // FIXME: temporary hack...
Evan Cheng2b4ea792005-12-26 09:11:45 +00001355 if (InstInfo.noResults) {
Evan Cheng3a217f32005-12-22 02:35:21 +00001356 // These produce no results
1357 for (unsigned j = 0, e = InstInfo.OperandList.size(); j < e; ++j)
1358 Operands.push_back(InstInfo.OperandList[j].Rec);
1359 } else {
1360 // Assume the first operand is the result.
1361 Results.push_back(InstInfo.OperandList[0].Rec);
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001362
Evan Cheng3a217f32005-12-22 02:35:21 +00001363 // The rest are inputs.
1364 for (unsigned j = 1, e = InstInfo.OperandList.size(); j < e; ++j)
1365 Operands.push_back(InstInfo.OperandList[j].Rec);
1366 }
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001367 }
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001368
1369 // Create and insert the instruction.
Evan Chengbcecf332005-12-17 01:19:28 +00001370 std::vector<Record*> ImpResults;
1371 std::vector<Record*> ImpOperands;
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001372 Instructions.insert(std::make_pair(Instrs[i],
Evan Cheng7b05bd52005-12-23 22:11:47 +00001373 DAGInstruction(0, Results, Operands, ImpResults,
1374 ImpOperands)));
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001375 continue; // no pattern.
1376 }
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001377
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001378 // Parse the instruction.
Chris Lattneredbd8712005-10-21 01:19:59 +00001379 TreePattern *I = new TreePattern(Instrs[i], LI, true, *this);
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001380 // Inline pattern fragments into it.
Chris Lattner32707602005-09-08 23:22:48 +00001381 I->InlinePatternFragments();
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001382
Chris Lattner95f6b762005-09-08 23:26:30 +00001383 // Infer as many types as possible. If we cannot infer all of them, we can
1384 // never do anything with this instruction pattern: report it to the user.
Chris Lattnerabbb6052005-09-15 21:42:00 +00001385 if (!I->InferAllTypes())
Chris Lattner32707602005-09-08 23:22:48 +00001386 I->error("Could not infer all types in pattern!");
Chris Lattnerf2a17a72005-09-09 01:11:44 +00001387
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001388 // InstInputs - Keep track of all of the inputs of the instruction, along
1389 // with the record they are declared as.
1390 std::map<std::string, TreePatternNode*> InstInputs;
1391
1392 // InstResults - Keep track of all the virtual registers that are 'set'
Chris Lattner5f8cb2a2005-09-14 02:11:12 +00001393 // in the instruction, including what reg class they are.
Evan Cheng420132e2006-03-20 06:04:09 +00001394 std::map<std::string, TreePatternNode*> InstResults;
Evan Cheng7b05bd52005-12-23 22:11:47 +00001395
1396 std::vector<Record*> InstImpInputs;
Evan Chengbcecf332005-12-17 01:19:28 +00001397 std::vector<Record*> InstImpResults;
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001398
Chris Lattner1f39e292005-09-14 00:09:24 +00001399 // Verify that the top-level forms in the instruction are of void type, and
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001400 // fill in the InstResults map.
Chris Lattner1f39e292005-09-14 00:09:24 +00001401 for (unsigned j = 0, e = I->getNumTrees(); j != e; ++j) {
1402 TreePatternNode *Pat = I->getTree(j);
Nate Begemanb73628b2005-12-30 00:12:56 +00001403 if (Pat->getExtTypeNum(0) != MVT::isVoid)
Chris Lattnerf2a17a72005-09-09 01:11:44 +00001404 I->error("Top-level forms in instruction pattern should have"
1405 " void types");
Chris Lattner5f8cb2a2005-09-14 02:11:12 +00001406
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001407 // Find inputs and outputs, and verify the structure of the uses/defs.
Evan Chengbcecf332005-12-17 01:19:28 +00001408 FindPatternInputsAndOutputs(I, Pat, InstInputs, InstResults,
Evan Cheng7b05bd52005-12-23 22:11:47 +00001409 InstImpInputs, InstImpResults);
Chris Lattner1f39e292005-09-14 00:09:24 +00001410 }
Chris Lattner5f8cb2a2005-09-14 02:11:12 +00001411
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001412 // Now that we have inputs and outputs of the pattern, inspect the operands
1413 // list for the instruction. This determines the order that operands are
1414 // added to the machine instruction the node corresponds to.
1415 unsigned NumResults = InstResults.size();
Chris Lattner39e8af92005-09-14 18:19:25 +00001416
1417 // Parse the operands list from the (ops) list, validating it.
1418 std::vector<std::string> &Args = I->getArgList();
1419 assert(Args.empty() && "Args list should still be empty here!");
1420 CodeGenInstruction &CGI = Target.getInstruction(Instrs[i]->getName());
1421
1422 // Check that all of the results occur first in the list.
Nate Begemanddb39542005-12-01 00:06:14 +00001423 std::vector<Record*> Results;
Evan Cheng420132e2006-03-20 06:04:09 +00001424 TreePatternNode *Res0Node = NULL;
Chris Lattner39e8af92005-09-14 18:19:25 +00001425 for (unsigned i = 0; i != NumResults; ++i) {
Chris Lattner3a7319d2005-09-14 21:04:12 +00001426 if (i == CGI.OperandList.size())
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001427 I->error("'" + InstResults.begin()->first +
1428 "' set but does not appear in operand list!");
Chris Lattner39e8af92005-09-14 18:19:25 +00001429 const std::string &OpName = CGI.OperandList[i].Name;
Chris Lattner39e8af92005-09-14 18:19:25 +00001430
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001431 // Check that it exists in InstResults.
Evan Cheng420132e2006-03-20 06:04:09 +00001432 TreePatternNode *RNode = InstResults[OpName];
Chris Lattner5c4c7742006-03-25 22:12:44 +00001433 if (RNode == 0)
1434 I->error("Operand $" + OpName + " does not exist in operand list!");
1435
Evan Cheng420132e2006-03-20 06:04:09 +00001436 if (i == 0)
1437 Res0Node = RNode;
1438 Record *R = dynamic_cast<DefInit*>(RNode->getLeafValue())->getDef();
Chris Lattner39e8af92005-09-14 18:19:25 +00001439 if (R == 0)
1440 I->error("Operand $" + OpName + " should be a set destination: all "
1441 "outputs must occur before inputs in operand list!");
1442
1443 if (CGI.OperandList[i].Rec != R)
1444 I->error("Operand $" + OpName + " class mismatch!");
1445
Chris Lattnerae6d8282005-09-15 21:51:12 +00001446 // Remember the return type.
Nate Begemanddb39542005-12-01 00:06:14 +00001447 Results.push_back(CGI.OperandList[i].Rec);
Chris Lattnerae6d8282005-09-15 21:51:12 +00001448
Chris Lattner39e8af92005-09-14 18:19:25 +00001449 // Okay, this one checks out.
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001450 InstResults.erase(OpName);
1451 }
1452
Chris Lattner0b592252005-09-14 21:59:34 +00001453 // Loop over the inputs next. Make a copy of InstInputs so we can destroy
1454 // the copy while we're checking the inputs.
1455 std::map<std::string, TreePatternNode*> InstInputsCheck(InstInputs);
Chris Lattnerb0276202005-09-14 22:55:26 +00001456
1457 std::vector<TreePatternNode*> ResultNodeOperands;
Nate Begemanddb39542005-12-01 00:06:14 +00001458 std::vector<Record*> Operands;
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001459 for (unsigned i = NumResults, e = CGI.OperandList.size(); i != e; ++i) {
1460 const std::string &OpName = CGI.OperandList[i].Name;
1461 if (OpName.empty())
1462 I->error("Operand #" + utostr(i) + " in operands list has no name!");
1463
Chris Lattner0b592252005-09-14 21:59:34 +00001464 if (!InstInputsCheck.count(OpName))
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001465 I->error("Operand $" + OpName +
1466 " does not appear in the instruction pattern");
Chris Lattner0b592252005-09-14 21:59:34 +00001467 TreePatternNode *InVal = InstInputsCheck[OpName];
Chris Lattnerb0276202005-09-14 22:55:26 +00001468 InstInputsCheck.erase(OpName); // It occurred, remove from map.
Nate Begemanddb39542005-12-01 00:06:14 +00001469
1470 if (InVal->isLeaf() &&
1471 dynamic_cast<DefInit*>(InVal->getLeafValue())) {
1472 Record *InRec = static_cast<DefInit*>(InVal->getLeafValue())->getDef();
Evan Cheng0fc71982005-12-08 02:00:36 +00001473 if (CGI.OperandList[i].Rec != InRec &&
1474 !InRec->isSubClassOf("ComplexPattern"))
Chris Lattner488580c2006-01-28 19:06:51 +00001475 I->error("Operand $" + OpName + "'s register class disagrees"
1476 " between the operand and pattern");
Nate Begemanddb39542005-12-01 00:06:14 +00001477 }
1478 Operands.push_back(CGI.OperandList[i].Rec);
Chris Lattnerb0276202005-09-14 22:55:26 +00001479
Chris Lattner2175c182005-09-14 23:01:59 +00001480 // Construct the result for the dest-pattern operand list.
1481 TreePatternNode *OpNode = InVal->clone();
1482
1483 // No predicate is useful on the result.
1484 OpNode->setPredicateFn("");
1485
1486 // Promote the xform function to be an explicit node if set.
1487 if (Record *Xform = OpNode->getTransformFn()) {
1488 OpNode->setTransformFn(0);
1489 std::vector<TreePatternNode*> Children;
1490 Children.push_back(OpNode);
1491 OpNode = new TreePatternNode(Xform, Children);
1492 }
1493
1494 ResultNodeOperands.push_back(OpNode);
Chris Lattner39e8af92005-09-14 18:19:25 +00001495 }
1496
Chris Lattner0b592252005-09-14 21:59:34 +00001497 if (!InstInputsCheck.empty())
1498 I->error("Input operand $" + InstInputsCheck.begin()->first +
1499 " occurs in pattern but not in operands list!");
Chris Lattnerb0276202005-09-14 22:55:26 +00001500
1501 TreePatternNode *ResultPattern =
1502 new TreePatternNode(I->getRecord(), ResultNodeOperands);
Evan Cheng420132e2006-03-20 06:04:09 +00001503 // Copy fully inferred output node type to instruction result pattern.
1504 if (NumResults > 0)
1505 ResultPattern->setTypes(Res0Node->getExtTypes());
Chris Lattnera28aec12005-09-15 22:23:50 +00001506
1507 // Create and insert the instruction.
Evan Cheng7b05bd52005-12-23 22:11:47 +00001508 DAGInstruction TheInst(I, Results, Operands, InstImpResults, InstImpInputs);
Chris Lattnera28aec12005-09-15 22:23:50 +00001509 Instructions.insert(std::make_pair(I->getRecord(), TheInst));
1510
1511 // Use a temporary tree pattern to infer all types and make sure that the
1512 // constructed result is correct. This depends on the instruction already
1513 // being inserted into the Instructions map.
Chris Lattneredbd8712005-10-21 01:19:59 +00001514 TreePattern Temp(I->getRecord(), ResultPattern, false, *this);
Chris Lattnera28aec12005-09-15 22:23:50 +00001515 Temp.InferAllTypes();
1516
1517 DAGInstruction &TheInsertedInst = Instructions.find(I->getRecord())->second;
1518 TheInsertedInst.setResultPattern(Temp.getOnlyTree());
Chris Lattnerb0276202005-09-14 22:55:26 +00001519
Chris Lattner32707602005-09-08 23:22:48 +00001520 DEBUG(I->dump());
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001521 }
Chris Lattner1f39e292005-09-14 00:09:24 +00001522
Chris Lattnerd8a3bde2005-09-14 20:53:42 +00001523 // If we can, convert the instructions to be patterns that are matched!
Chris Lattnerae5b3502005-09-15 21:57:35 +00001524 for (std::map<Record*, DAGInstruction>::iterator II = Instructions.begin(),
1525 E = Instructions.end(); II != E; ++II) {
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001526 DAGInstruction &TheInst = II->second;
1527 TreePattern *I = TheInst.getPattern();
Chris Lattner0c0cfa72005-10-19 01:27:22 +00001528 if (I == 0) continue; // No pattern.
Evan Chengdd304dd2005-12-05 23:08:55 +00001529
Chris Lattner1f39e292005-09-14 00:09:24 +00001530 if (I->getNumTrees() != 1) {
1531 std::cerr << "CANNOT HANDLE: " << I->getRecord()->getName() << " yet!";
1532 continue;
1533 }
1534 TreePatternNode *Pattern = I->getTree(0);
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001535 TreePatternNode *SrcPattern;
Evan Chengbcecf332005-12-17 01:19:28 +00001536 if (Pattern->getOperator()->getName() == "set") {
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001537 if (Pattern->getNumChildren() != 2)
1538 continue; // Not a set of a single value (not handled so far)
1539
1540 SrcPattern = Pattern->getChild(1)->clone();
Evan Chengbcecf332005-12-17 01:19:28 +00001541 } else{
1542 // Not a set (store or something?)
1543 SrcPattern = Pattern;
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001544 }
Chris Lattnere97603f2005-09-28 19:27:25 +00001545
1546 std::string Reason;
1547 if (!SrcPattern->canPatternMatch(Reason, *this))
1548 I->error("Instruction can never match: " + Reason);
1549
Evan Cheng58e84a62005-12-14 22:02:59 +00001550 Record *Instr = II->first;
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001551 TreePatternNode *DstPattern = TheInst.getResultPattern();
Evan Cheng58e84a62005-12-14 22:02:59 +00001552 PatternsToMatch.
1553 push_back(PatternToMatch(Instr->getValueAsListInit("Predicates"),
Evan Cheng59413202006-04-19 18:07:24 +00001554 SrcPattern, DstPattern,
Evan Chengc81d2a02006-04-19 20:36:09 +00001555 Instr->getValueAsInt("AddedComplexity")));
Chris Lattner1f39e292005-09-14 00:09:24 +00001556 }
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001557}
1558
Chris Lattnerb39e4be2005-09-15 02:38:02 +00001559void DAGISelEmitter::ParsePatterns() {
Chris Lattnerabbb6052005-09-15 21:42:00 +00001560 std::vector<Record*> Patterns = Records.getAllDerivedDefinitions("Pattern");
Chris Lattnerb39e4be2005-09-15 02:38:02 +00001561
Chris Lattnerabbb6052005-09-15 21:42:00 +00001562 for (unsigned i = 0, e = Patterns.size(); i != e; ++i) {
Chris Lattnera28aec12005-09-15 22:23:50 +00001563 DagInit *Tree = Patterns[i]->getValueAsDag("PatternToMatch");
Chris Lattneredbd8712005-10-21 01:19:59 +00001564 TreePattern *Pattern = new TreePattern(Patterns[i], Tree, true, *this);
Chris Lattnerb39e4be2005-09-15 02:38:02 +00001565
Chris Lattnerabbb6052005-09-15 21:42:00 +00001566 // Inline pattern fragments into it.
1567 Pattern->InlinePatternFragments();
1568
Chris Lattnera3548492006-06-20 00:18:02 +00001569 ListInit *LI = Patterns[i]->getValueAsListInit("ResultInstrs");
1570 if (LI->getSize() == 0) continue; // no pattern.
1571
1572 // Parse the instruction.
1573 TreePattern *Result = new TreePattern(Patterns[i], LI, false, *this);
1574
1575 // Inline pattern fragments into it.
1576 Result->InlinePatternFragments();
Chris Lattner09c03392005-11-17 17:43:52 +00001577
Chris Lattnera3548492006-06-20 00:18:02 +00001578 if (Result->getNumTrees() != 1)
1579 Result->error("Cannot handle instructions producing instructions "
1580 "with temporaries yet!");
1581
1582 bool IterateInference;
Chris Lattner186fb7d2006-06-20 00:31:27 +00001583 bool InferredAllPatternTypes, InferredAllResultTypes;
Chris Lattnera3548492006-06-20 00:18:02 +00001584 do {
1585 // Infer as many types as possible. If we cannot infer all of them, we
1586 // can never do anything with this pattern: report it to the user.
Chris Lattner186fb7d2006-06-20 00:31:27 +00001587 InferredAllPatternTypes = Pattern->InferAllTypes();
Chris Lattnera3548492006-06-20 00:18:02 +00001588
1589 // Infer as many types as possible. If we cannot infer all of them, we can
1590 // never do anything with this pattern: report it to the user.
Chris Lattner186fb7d2006-06-20 00:31:27 +00001591 InferredAllResultTypes = Result->InferAllTypes();
1592
Chris Lattnera3548492006-06-20 00:18:02 +00001593 // Apply the type of the result to the source pattern. This helps us
1594 // resolve cases where the input type is known to be a pointer type (which
1595 // is considered resolved), but the result knows it needs to be 32- or
1596 // 64-bits. Infer the other way for good measure.
1597 IterateInference = Pattern->getOnlyTree()->
1598 UpdateNodeType(Result->getOnlyTree()->getExtTypes(), *Result);
1599 IterateInference |= Result->getOnlyTree()->
1600 UpdateNodeType(Pattern->getOnlyTree()->getExtTypes(), *Result);
1601 } while (IterateInference);
Chris Lattner186fb7d2006-06-20 00:31:27 +00001602
1603 // Verify that we inferred enough types that we can do something with the
1604 // pattern and result. If these fire the user has to add type casts.
1605 if (!InferredAllPatternTypes)
1606 Pattern->error("Could not infer all types in pattern!");
1607 if (!InferredAllResultTypes)
1608 Result->error("Could not infer all types in pattern result!");
Chris Lattnera3548492006-06-20 00:18:02 +00001609
Chris Lattner09c03392005-11-17 17:43:52 +00001610 // Validate that the input pattern is correct.
1611 {
1612 std::map<std::string, TreePatternNode*> InstInputs;
Evan Cheng420132e2006-03-20 06:04:09 +00001613 std::map<std::string, TreePatternNode*> InstResults;
Evan Cheng7b05bd52005-12-23 22:11:47 +00001614 std::vector<Record*> InstImpInputs;
Evan Chengbcecf332005-12-17 01:19:28 +00001615 std::vector<Record*> InstImpResults;
Chris Lattner09c03392005-11-17 17:43:52 +00001616 FindPatternInputsAndOutputs(Pattern, Pattern->getOnlyTree(),
Evan Chengbcecf332005-12-17 01:19:28 +00001617 InstInputs, InstResults,
Evan Cheng7b05bd52005-12-23 22:11:47 +00001618 InstImpInputs, InstImpResults);
Chris Lattner09c03392005-11-17 17:43:52 +00001619 }
Chris Lattnere97603f2005-09-28 19:27:25 +00001620
Evan Cheng3a7a14b2006-03-21 20:44:17 +00001621 // Promote the xform function to be an explicit node if set.
1622 std::vector<TreePatternNode*> ResultNodeOperands;
1623 TreePatternNode *DstPattern = Result->getOnlyTree();
1624 for (unsigned ii = 0, ee = DstPattern->getNumChildren(); ii != ee; ++ii) {
1625 TreePatternNode *OpNode = DstPattern->getChild(ii);
1626 if (Record *Xform = OpNode->getTransformFn()) {
1627 OpNode->setTransformFn(0);
1628 std::vector<TreePatternNode*> Children;
1629 Children.push_back(OpNode);
1630 OpNode = new TreePatternNode(Xform, Children);
1631 }
1632 ResultNodeOperands.push_back(OpNode);
1633 }
Evan Cheng83e1a6a2006-03-23 02:35:32 +00001634 DstPattern = Result->getOnlyTree();
1635 if (!DstPattern->isLeaf())
1636 DstPattern = new TreePatternNode(DstPattern->getOperator(),
1637 ResultNodeOperands);
Evan Cheng3a7a14b2006-03-21 20:44:17 +00001638 DstPattern->setTypes(Result->getOnlyTree()->getExtTypes());
1639 TreePattern Temp(Result->getRecord(), DstPattern, false, *this);
1640 Temp.InferAllTypes();
1641
Chris Lattnere97603f2005-09-28 19:27:25 +00001642 std::string Reason;
1643 if (!Pattern->getOnlyTree()->canPatternMatch(Reason, *this))
1644 Pattern->error("Pattern can never match: " + Reason);
1645
Evan Cheng58e84a62005-12-14 22:02:59 +00001646 PatternsToMatch.
1647 push_back(PatternToMatch(Patterns[i]->getValueAsListInit("Predicates"),
1648 Pattern->getOnlyTree(),
Evan Cheng59413202006-04-19 18:07:24 +00001649 Temp.getOnlyTree(),
Evan Chengc81d2a02006-04-19 20:36:09 +00001650 Patterns[i]->getValueAsInt("AddedComplexity")));
Chris Lattnerabbb6052005-09-15 21:42:00 +00001651 }
Chris Lattnerb39e4be2005-09-15 02:38:02 +00001652}
1653
Chris Lattnere46e17b2005-09-29 19:28:10 +00001654/// CombineChildVariants - Given a bunch of permutations of each child of the
1655/// 'operator' node, put them together in all possible ways.
1656static void CombineChildVariants(TreePatternNode *Orig,
Chris Lattneraf302912005-09-29 22:36:54 +00001657 const std::vector<std::vector<TreePatternNode*> > &ChildVariants,
Chris Lattnere46e17b2005-09-29 19:28:10 +00001658 std::vector<TreePatternNode*> &OutVariants,
1659 DAGISelEmitter &ISE) {
Chris Lattneraf302912005-09-29 22:36:54 +00001660 // Make sure that each operand has at least one variant to choose from.
1661 for (unsigned i = 0, e = ChildVariants.size(); i != e; ++i)
1662 if (ChildVariants[i].empty())
1663 return;
1664
Chris Lattnere46e17b2005-09-29 19:28:10 +00001665 // The end result is an all-pairs construction of the resultant pattern.
1666 std::vector<unsigned> Idxs;
1667 Idxs.resize(ChildVariants.size());
1668 bool NotDone = true;
1669 while (NotDone) {
1670 // Create the variant and add it to the output list.
1671 std::vector<TreePatternNode*> NewChildren;
1672 for (unsigned i = 0, e = ChildVariants.size(); i != e; ++i)
1673 NewChildren.push_back(ChildVariants[i][Idxs[i]]);
1674 TreePatternNode *R = new TreePatternNode(Orig->getOperator(), NewChildren);
1675
1676 // Copy over properties.
1677 R->setName(Orig->getName());
1678 R->setPredicateFn(Orig->getPredicateFn());
1679 R->setTransformFn(Orig->getTransformFn());
Nate Begemanb73628b2005-12-30 00:12:56 +00001680 R->setTypes(Orig->getExtTypes());
Chris Lattnere46e17b2005-09-29 19:28:10 +00001681
1682 // If this pattern cannot every match, do not include it as a variant.
1683 std::string ErrString;
1684 if (!R->canPatternMatch(ErrString, ISE)) {
1685 delete R;
1686 } else {
1687 bool AlreadyExists = false;
1688
1689 // Scan to see if this pattern has already been emitted. We can get
1690 // duplication due to things like commuting:
1691 // (and GPRC:$a, GPRC:$b) -> (and GPRC:$b, GPRC:$a)
1692 // which are the same pattern. Ignore the dups.
1693 for (unsigned i = 0, e = OutVariants.size(); i != e; ++i)
1694 if (R->isIsomorphicTo(OutVariants[i])) {
1695 AlreadyExists = true;
1696 break;
1697 }
1698
1699 if (AlreadyExists)
1700 delete R;
1701 else
1702 OutVariants.push_back(R);
1703 }
1704
1705 // Increment indices to the next permutation.
1706 NotDone = false;
1707 // Look for something we can increment without causing a wrap-around.
1708 for (unsigned IdxsIdx = 0; IdxsIdx != Idxs.size(); ++IdxsIdx) {
1709 if (++Idxs[IdxsIdx] < ChildVariants[IdxsIdx].size()) {
1710 NotDone = true; // Found something to increment.
1711 break;
1712 }
1713 Idxs[IdxsIdx] = 0;
1714 }
1715 }
1716}
1717
Chris Lattneraf302912005-09-29 22:36:54 +00001718/// CombineChildVariants - A helper function for binary operators.
1719///
1720static void CombineChildVariants(TreePatternNode *Orig,
1721 const std::vector<TreePatternNode*> &LHS,
1722 const std::vector<TreePatternNode*> &RHS,
1723 std::vector<TreePatternNode*> &OutVariants,
1724 DAGISelEmitter &ISE) {
1725 std::vector<std::vector<TreePatternNode*> > ChildVariants;
1726 ChildVariants.push_back(LHS);
1727 ChildVariants.push_back(RHS);
1728 CombineChildVariants(Orig, ChildVariants, OutVariants, ISE);
1729}
1730
1731
1732static void GatherChildrenOfAssociativeOpcode(TreePatternNode *N,
1733 std::vector<TreePatternNode *> &Children) {
1734 assert(N->getNumChildren()==2 &&"Associative but doesn't have 2 children!");
1735 Record *Operator = N->getOperator();
1736
1737 // Only permit raw nodes.
1738 if (!N->getName().empty() || !N->getPredicateFn().empty() ||
1739 N->getTransformFn()) {
1740 Children.push_back(N);
1741 return;
1742 }
1743
1744 if (N->getChild(0)->isLeaf() || N->getChild(0)->getOperator() != Operator)
1745 Children.push_back(N->getChild(0));
1746 else
1747 GatherChildrenOfAssociativeOpcode(N->getChild(0), Children);
1748
1749 if (N->getChild(1)->isLeaf() || N->getChild(1)->getOperator() != Operator)
1750 Children.push_back(N->getChild(1));
1751 else
1752 GatherChildrenOfAssociativeOpcode(N->getChild(1), Children);
1753}
1754
Chris Lattnere46e17b2005-09-29 19:28:10 +00001755/// GenerateVariantsOf - Given a pattern N, generate all permutations we can of
1756/// the (potentially recursive) pattern by using algebraic laws.
1757///
1758static void GenerateVariantsOf(TreePatternNode *N,
1759 std::vector<TreePatternNode*> &OutVariants,
1760 DAGISelEmitter &ISE) {
1761 // We cannot permute leaves.
1762 if (N->isLeaf()) {
1763 OutVariants.push_back(N);
1764 return;
1765 }
1766
1767 // Look up interesting info about the node.
Chris Lattner5a1df382006-03-24 23:10:39 +00001768 const SDNodeInfo &NodeInfo = ISE.getSDNodeInfo(N->getOperator());
Chris Lattnere46e17b2005-09-29 19:28:10 +00001769
1770 // If this node is associative, reassociate.
Chris Lattner5a1df382006-03-24 23:10:39 +00001771 if (NodeInfo.hasProperty(SDNodeInfo::SDNPAssociative)) {
Chris Lattneraf302912005-09-29 22:36:54 +00001772 // Reassociate by pulling together all of the linked operators
1773 std::vector<TreePatternNode*> MaximalChildren;
1774 GatherChildrenOfAssociativeOpcode(N, MaximalChildren);
1775
1776 // Only handle child sizes of 3. Otherwise we'll end up trying too many
1777 // permutations.
1778 if (MaximalChildren.size() == 3) {
1779 // Find the variants of all of our maximal children.
1780 std::vector<TreePatternNode*> AVariants, BVariants, CVariants;
1781 GenerateVariantsOf(MaximalChildren[0], AVariants, ISE);
1782 GenerateVariantsOf(MaximalChildren[1], BVariants, ISE);
1783 GenerateVariantsOf(MaximalChildren[2], CVariants, ISE);
1784
1785 // There are only two ways we can permute the tree:
1786 // (A op B) op C and A op (B op C)
1787 // Within these forms, we can also permute A/B/C.
1788
1789 // Generate legal pair permutations of A/B/C.
1790 std::vector<TreePatternNode*> ABVariants;
1791 std::vector<TreePatternNode*> BAVariants;
1792 std::vector<TreePatternNode*> ACVariants;
1793 std::vector<TreePatternNode*> CAVariants;
1794 std::vector<TreePatternNode*> BCVariants;
1795 std::vector<TreePatternNode*> CBVariants;
1796 CombineChildVariants(N, AVariants, BVariants, ABVariants, ISE);
1797 CombineChildVariants(N, BVariants, AVariants, BAVariants, ISE);
1798 CombineChildVariants(N, AVariants, CVariants, ACVariants, ISE);
1799 CombineChildVariants(N, CVariants, AVariants, CAVariants, ISE);
1800 CombineChildVariants(N, BVariants, CVariants, BCVariants, ISE);
1801 CombineChildVariants(N, CVariants, BVariants, CBVariants, ISE);
1802
1803 // Combine those into the result: (x op x) op x
1804 CombineChildVariants(N, ABVariants, CVariants, OutVariants, ISE);
1805 CombineChildVariants(N, BAVariants, CVariants, OutVariants, ISE);
1806 CombineChildVariants(N, ACVariants, BVariants, OutVariants, ISE);
1807 CombineChildVariants(N, CAVariants, BVariants, OutVariants, ISE);
1808 CombineChildVariants(N, BCVariants, AVariants, OutVariants, ISE);
1809 CombineChildVariants(N, CBVariants, AVariants, OutVariants, ISE);
1810
1811 // Combine those into the result: x op (x op x)
1812 CombineChildVariants(N, CVariants, ABVariants, OutVariants, ISE);
1813 CombineChildVariants(N, CVariants, BAVariants, OutVariants, ISE);
1814 CombineChildVariants(N, BVariants, ACVariants, OutVariants, ISE);
1815 CombineChildVariants(N, BVariants, CAVariants, OutVariants, ISE);
1816 CombineChildVariants(N, AVariants, BCVariants, OutVariants, ISE);
1817 CombineChildVariants(N, AVariants, CBVariants, OutVariants, ISE);
1818 return;
1819 }
1820 }
Chris Lattnere46e17b2005-09-29 19:28:10 +00001821
1822 // Compute permutations of all children.
1823 std::vector<std::vector<TreePatternNode*> > ChildVariants;
1824 ChildVariants.resize(N->getNumChildren());
1825 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i)
1826 GenerateVariantsOf(N->getChild(i), ChildVariants[i], ISE);
1827
1828 // Build all permutations based on how the children were formed.
1829 CombineChildVariants(N, ChildVariants, OutVariants, ISE);
1830
1831 // If this node is commutative, consider the commuted order.
Chris Lattner5a1df382006-03-24 23:10:39 +00001832 if (NodeInfo.hasProperty(SDNodeInfo::SDNPCommutative)) {
Chris Lattnere46e17b2005-09-29 19:28:10 +00001833 assert(N->getNumChildren()==2 &&"Commutative but doesn't have 2 children!");
Chris Lattner706d2d32006-08-09 16:44:44 +00001834 // Don't count children which are actually register references.
1835 unsigned NC = 0;
1836 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i) {
1837 TreePatternNode *Child = N->getChild(i);
1838 if (Child->isLeaf())
1839 if (DefInit *DI = dynamic_cast<DefInit*>(Child->getLeafValue())) {
1840 Record *RR = DI->getDef();
1841 if (RR->isSubClassOf("Register"))
1842 continue;
1843 }
1844 NC++;
1845 }
Chris Lattneraf302912005-09-29 22:36:54 +00001846 // Consider the commuted order.
Chris Lattner706d2d32006-08-09 16:44:44 +00001847 if (NC == 2)
1848 CombineChildVariants(N, ChildVariants[1], ChildVariants[0],
1849 OutVariants, ISE);
Chris Lattnere46e17b2005-09-29 19:28:10 +00001850 }
1851}
1852
1853
Chris Lattnere97603f2005-09-28 19:27:25 +00001854// GenerateVariants - Generate variants. For example, commutative patterns can
1855// match multiple ways. Add them to PatternsToMatch as well.
1856void DAGISelEmitter::GenerateVariants() {
Chris Lattnere46e17b2005-09-29 19:28:10 +00001857
1858 DEBUG(std::cerr << "Generating instruction variants.\n");
1859
1860 // Loop over all of the patterns we've collected, checking to see if we can
1861 // generate variants of the instruction, through the exploitation of
1862 // identities. This permits the target to provide agressive matching without
1863 // the .td file having to contain tons of variants of instructions.
1864 //
1865 // Note that this loop adds new patterns to the PatternsToMatch list, but we
1866 // intentionally do not reconsider these. Any variants of added patterns have
1867 // already been added.
1868 //
1869 for (unsigned i = 0, e = PatternsToMatch.size(); i != e; ++i) {
1870 std::vector<TreePatternNode*> Variants;
Evan Cheng58e84a62005-12-14 22:02:59 +00001871 GenerateVariantsOf(PatternsToMatch[i].getSrcPattern(), Variants, *this);
Chris Lattnere46e17b2005-09-29 19:28:10 +00001872
1873 assert(!Variants.empty() && "Must create at least original variant!");
Chris Lattnere46e17b2005-09-29 19:28:10 +00001874 Variants.erase(Variants.begin()); // Remove the original pattern.
1875
1876 if (Variants.empty()) // No variants for this pattern.
1877 continue;
1878
1879 DEBUG(std::cerr << "FOUND VARIANTS OF: ";
Evan Cheng58e84a62005-12-14 22:02:59 +00001880 PatternsToMatch[i].getSrcPattern()->dump();
Chris Lattnere46e17b2005-09-29 19:28:10 +00001881 std::cerr << "\n");
1882
1883 for (unsigned v = 0, e = Variants.size(); v != e; ++v) {
1884 TreePatternNode *Variant = Variants[v];
1885
1886 DEBUG(std::cerr << " VAR#" << v << ": ";
1887 Variant->dump();
1888 std::cerr << "\n");
1889
1890 // Scan to see if an instruction or explicit pattern already matches this.
1891 bool AlreadyExists = false;
1892 for (unsigned p = 0, e = PatternsToMatch.size(); p != e; ++p) {
1893 // Check to see if this variant already exists.
Evan Cheng58e84a62005-12-14 22:02:59 +00001894 if (Variant->isIsomorphicTo(PatternsToMatch[p].getSrcPattern())) {
Chris Lattnere46e17b2005-09-29 19:28:10 +00001895 DEBUG(std::cerr << " *** ALREADY EXISTS, ignoring variant.\n");
1896 AlreadyExists = true;
1897 break;
1898 }
1899 }
1900 // If we already have it, ignore the variant.
1901 if (AlreadyExists) continue;
1902
1903 // Otherwise, add it to the list of patterns we have.
Evan Cheng58e84a62005-12-14 22:02:59 +00001904 PatternsToMatch.
1905 push_back(PatternToMatch(PatternsToMatch[i].getPredicates(),
Evan Cheng59413202006-04-19 18:07:24 +00001906 Variant, PatternsToMatch[i].getDstPattern(),
Evan Chengc81d2a02006-04-19 20:36:09 +00001907 PatternsToMatch[i].getAddedComplexity()));
Chris Lattnere46e17b2005-09-29 19:28:10 +00001908 }
1909
1910 DEBUG(std::cerr << "\n");
1911 }
Chris Lattnere97603f2005-09-28 19:27:25 +00001912}
1913
Evan Cheng0fc71982005-12-08 02:00:36 +00001914// NodeIsComplexPattern - return true if N is a leaf node and a subclass of
1915// ComplexPattern.
1916static bool NodeIsComplexPattern(TreePatternNode *N)
1917{
1918 return (N->isLeaf() &&
1919 dynamic_cast<DefInit*>(N->getLeafValue()) &&
1920 static_cast<DefInit*>(N->getLeafValue())->getDef()->
1921 isSubClassOf("ComplexPattern"));
1922}
1923
1924// NodeGetComplexPattern - return the pointer to the ComplexPattern if N
1925// is a leaf node and a subclass of ComplexPattern, else it returns NULL.
1926static const ComplexPattern *NodeGetComplexPattern(TreePatternNode *N,
1927 DAGISelEmitter &ISE)
1928{
1929 if (N->isLeaf() &&
1930 dynamic_cast<DefInit*>(N->getLeafValue()) &&
1931 static_cast<DefInit*>(N->getLeafValue())->getDef()->
1932 isSubClassOf("ComplexPattern")) {
1933 return &ISE.getComplexPattern(static_cast<DefInit*>(N->getLeafValue())
1934 ->getDef());
1935 }
1936 return NULL;
1937}
1938
Chris Lattner05814af2005-09-28 17:57:56 +00001939/// getPatternSize - Return the 'size' of this pattern. We want to match large
1940/// patterns before small ones. This is used to determine the size of a
1941/// pattern.
Evan Cheng0fc71982005-12-08 02:00:36 +00001942static unsigned getPatternSize(TreePatternNode *P, DAGISelEmitter &ISE) {
Evan Cheng2618d072006-05-17 20:37:59 +00001943 assert((isExtIntegerInVTs(P->getExtTypes()) ||
1944 isExtFloatingPointInVTs(P->getExtTypes()) ||
1945 P->getExtTypeNum(0) == MVT::isVoid ||
1946 P->getExtTypeNum(0) == MVT::Flag ||
1947 P->getExtTypeNum(0) == MVT::iPTR) &&
Evan Cheng4a7c2842006-01-06 22:19:44 +00001948 "Not a valid pattern node to size!");
Evan Cheng6cec34e2006-09-08 07:26:39 +00001949 unsigned Size = 3; // The node itself.
Evan Cheng657416c2006-02-01 06:06:31 +00001950 // If the root node is a ConstantSDNode, increases its size.
1951 // e.g. (set R32:$dst, 0).
1952 if (P->isLeaf() && dynamic_cast<IntInit*>(P->getLeafValue()))
Evan Cheng6cec34e2006-09-08 07:26:39 +00001953 Size += 2;
Evan Cheng0fc71982005-12-08 02:00:36 +00001954
1955 // FIXME: This is a hack to statically increase the priority of patterns
1956 // which maps a sub-dag to a complex pattern. e.g. favors LEA over ADD.
1957 // Later we can allow complexity / cost for each pattern to be (optionally)
1958 // specified. To get best possible pattern match we'll need to dynamically
1959 // calculate the complexity of all patterns a dag can potentially map to.
1960 const ComplexPattern *AM = NodeGetComplexPattern(P, ISE);
1961 if (AM)
Evan Cheng6cec34e2006-09-08 07:26:39 +00001962 Size += AM->getNumOperands() * 3;
Chris Lattner3e179802006-02-03 18:06:02 +00001963
1964 // If this node has some predicate function that must match, it adds to the
1965 // complexity of this node.
1966 if (!P->getPredicateFn().empty())
1967 ++Size;
1968
Chris Lattner05814af2005-09-28 17:57:56 +00001969 // Count children in the count if they are also nodes.
1970 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i) {
1971 TreePatternNode *Child = P->getChild(i);
Nate Begemanb73628b2005-12-30 00:12:56 +00001972 if (!Child->isLeaf() && Child->getExtTypeNum(0) != MVT::Other)
Evan Cheng0fc71982005-12-08 02:00:36 +00001973 Size += getPatternSize(Child, ISE);
1974 else if (Child->isLeaf()) {
1975 if (dynamic_cast<IntInit*>(Child->getLeafValue()))
Evan Cheng6cec34e2006-09-08 07:26:39 +00001976 Size += 5; // Matches a ConstantSDNode (+3) and a specific value (+2).
Evan Cheng4a7c2842006-01-06 22:19:44 +00001977 else if (NodeIsComplexPattern(Child))
1978 Size += getPatternSize(Child, ISE);
Chris Lattner3e179802006-02-03 18:06:02 +00001979 else if (!Child->getPredicateFn().empty())
1980 ++Size;
Chris Lattner2f041d42005-10-19 04:41:05 +00001981 }
Chris Lattner05814af2005-09-28 17:57:56 +00001982 }
1983
1984 return Size;
1985}
1986
1987/// getResultPatternCost - Compute the number of instructions for this pattern.
1988/// This is a temporary hack. We should really include the instruction
1989/// latencies in this calculation.
Evan Chengfbad7082006-02-18 02:33:09 +00001990static unsigned getResultPatternCost(TreePatternNode *P, DAGISelEmitter &ISE) {
Chris Lattner05814af2005-09-28 17:57:56 +00001991 if (P->isLeaf()) return 0;
1992
Evan Chengfbad7082006-02-18 02:33:09 +00001993 unsigned Cost = 0;
1994 Record *Op = P->getOperator();
1995 if (Op->isSubClassOf("Instruction")) {
1996 Cost++;
1997 CodeGenInstruction &II = ISE.getTargetInfo().getInstruction(Op->getName());
1998 if (II.usesCustomDAGSchedInserter)
1999 Cost += 10;
2000 }
Chris Lattner05814af2005-09-28 17:57:56 +00002001 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i)
Evan Chengfbad7082006-02-18 02:33:09 +00002002 Cost += getResultPatternCost(P->getChild(i), ISE);
Chris Lattner05814af2005-09-28 17:57:56 +00002003 return Cost;
2004}
2005
Evan Chenge6f32032006-07-19 00:24:41 +00002006/// getResultPatternCodeSize - Compute the code size of instructions for this
2007/// pattern.
2008static unsigned getResultPatternSize(TreePatternNode *P, DAGISelEmitter &ISE) {
2009 if (P->isLeaf()) return 0;
2010
2011 unsigned Cost = 0;
2012 Record *Op = P->getOperator();
2013 if (Op->isSubClassOf("Instruction")) {
2014 Cost += Op->getValueAsInt("CodeSize");
2015 }
2016 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i)
2017 Cost += getResultPatternSize(P->getChild(i), ISE);
2018 return Cost;
2019}
2020
Chris Lattner05814af2005-09-28 17:57:56 +00002021// PatternSortingPredicate - return true if we prefer to match LHS before RHS.
2022// In particular, we want to match maximal patterns first and lowest cost within
2023// a particular complexity first.
2024struct PatternSortingPredicate {
Evan Cheng0fc71982005-12-08 02:00:36 +00002025 PatternSortingPredicate(DAGISelEmitter &ise) : ISE(ise) {};
2026 DAGISelEmitter &ISE;
2027
Evan Cheng58e84a62005-12-14 22:02:59 +00002028 bool operator()(PatternToMatch *LHS,
2029 PatternToMatch *RHS) {
2030 unsigned LHSSize = getPatternSize(LHS->getSrcPattern(), ISE);
2031 unsigned RHSSize = getPatternSize(RHS->getSrcPattern(), ISE);
Evan Chengc81d2a02006-04-19 20:36:09 +00002032 LHSSize += LHS->getAddedComplexity();
2033 RHSSize += RHS->getAddedComplexity();
Chris Lattner05814af2005-09-28 17:57:56 +00002034 if (LHSSize > RHSSize) return true; // LHS -> bigger -> less cost
2035 if (LHSSize < RHSSize) return false;
2036
2037 // If the patterns have equal complexity, compare generated instruction cost
Evan Chenge6f32032006-07-19 00:24:41 +00002038 unsigned LHSCost = getResultPatternCost(LHS->getDstPattern(), ISE);
2039 unsigned RHSCost = getResultPatternCost(RHS->getDstPattern(), ISE);
2040 if (LHSCost < RHSCost) return true;
2041 if (LHSCost > RHSCost) return false;
2042
2043 return getResultPatternSize(LHS->getDstPattern(), ISE) <
2044 getResultPatternSize(RHS->getDstPattern(), ISE);
Chris Lattner05814af2005-09-28 17:57:56 +00002045 }
2046};
2047
Nate Begeman6510b222005-12-01 04:51:06 +00002048/// getRegisterValueType - Look up and return the first ValueType of specified
2049/// RegisterClass record
Evan Cheng66a48bb2005-12-01 00:18:45 +00002050static MVT::ValueType getRegisterValueType(Record *R, const CodeGenTarget &T) {
Chris Lattner22faeab2005-12-05 02:36:37 +00002051 if (const CodeGenRegisterClass *RC = T.getRegisterClassForRegister(R))
2052 return RC->getValueTypeNum(0);
Evan Cheng66a48bb2005-12-01 00:18:45 +00002053 return MVT::Other;
2054}
2055
Chris Lattner72fe91c2005-09-24 00:40:24 +00002056
Chris Lattner0ee7cff2005-10-14 04:11:13 +00002057/// RemoveAllTypes - A quick recursive walk over a pattern which removes all
2058/// type information from it.
2059static void RemoveAllTypes(TreePatternNode *N) {
Nate Begemanb73628b2005-12-30 00:12:56 +00002060 N->removeTypes();
Chris Lattner0ee7cff2005-10-14 04:11:13 +00002061 if (!N->isLeaf())
2062 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i)
2063 RemoveAllTypes(N->getChild(i));
2064}
Chris Lattner72fe91c2005-09-24 00:40:24 +00002065
Chris Lattner0614b622005-11-02 06:49:14 +00002066Record *DAGISelEmitter::getSDNodeNamed(const std::string &Name) const {
2067 Record *N = Records.getDef(Name);
Chris Lattner5a1df382006-03-24 23:10:39 +00002068 if (!N || !N->isSubClassOf("SDNode")) {
2069 std::cerr << "Error getting SDNode '" << Name << "'!\n";
2070 exit(1);
2071 }
Chris Lattner0614b622005-11-02 06:49:14 +00002072 return N;
2073}
2074
Evan Cheng51fecc82006-01-09 18:27:06 +00002075/// NodeHasProperty - return true if TreePatternNode has the specified
2076/// property.
2077static bool NodeHasProperty(TreePatternNode *N, SDNodeInfo::SDNP Property,
2078 DAGISelEmitter &ISE)
Evan Cheng7b05bd52005-12-23 22:11:47 +00002079{
2080 if (N->isLeaf()) return false;
2081 Record *Operator = N->getOperator();
2082 if (!Operator->isSubClassOf("SDNode")) return false;
2083
2084 const SDNodeInfo &NodeInfo = ISE.getSDNodeInfo(Operator);
Evan Cheng51fecc82006-01-09 18:27:06 +00002085 return NodeInfo.hasProperty(Property);
Evan Cheng7b05bd52005-12-23 22:11:47 +00002086}
2087
Evan Cheng51fecc82006-01-09 18:27:06 +00002088static bool PatternHasProperty(TreePatternNode *N, SDNodeInfo::SDNP Property,
2089 DAGISelEmitter &ISE)
Evan Cheng7b05bd52005-12-23 22:11:47 +00002090{
Evan Cheng51fecc82006-01-09 18:27:06 +00002091 if (NodeHasProperty(N, Property, ISE))
Evan Cheng7b05bd52005-12-23 22:11:47 +00002092 return true;
Evan Cheng51fecc82006-01-09 18:27:06 +00002093
2094 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i) {
2095 TreePatternNode *Child = N->getChild(i);
2096 if (PatternHasProperty(Child, Property, ISE))
2097 return true;
Evan Cheng7b05bd52005-12-23 22:11:47 +00002098 }
2099
2100 return false;
2101}
2102
Evan Chengb915f312005-12-09 22:45:35 +00002103class PatternCodeEmitter {
2104private:
2105 DAGISelEmitter &ISE;
2106
Evan Cheng58e84a62005-12-14 22:02:59 +00002107 // Predicates.
2108 ListInit *Predicates;
Evan Cheng59413202006-04-19 18:07:24 +00002109 // Pattern cost.
2110 unsigned Cost;
Evan Cheng58e84a62005-12-14 22:02:59 +00002111 // Instruction selector pattern.
2112 TreePatternNode *Pattern;
2113 // Matched instruction.
2114 TreePatternNode *Instruction;
Chris Lattner8a0604b2006-01-28 20:31:24 +00002115
Evan Chengb915f312005-12-09 22:45:35 +00002116 // Node to name mapping
Evan Chengf805c2e2006-01-12 19:35:54 +00002117 std::map<std::string, std::string> VariableMap;
2118 // Node to operator mapping
2119 std::map<std::string, Record*> OperatorMap;
Evan Chengb915f312005-12-09 22:45:35 +00002120 // Names of all the folded nodes which produce chains.
Evan Cheng1b80f4d2005-12-19 07:18:51 +00002121 std::vector<std::pair<std::string, unsigned> > FoldedChains;
Evan Chengb4ad33c2006-01-19 01:55:45 +00002122 std::set<std::string> Duplicates;
Evan Chengb915f312005-12-09 22:45:35 +00002123
Evan Cheng676d7312006-08-26 00:59:04 +00002124 /// GeneratedCode - This is the buffer that we emit code to. The first int
Chris Lattner8a0604b2006-01-28 20:31:24 +00002125 /// indicates whether this is an exit predicate (something that should be
Evan Cheng676d7312006-08-26 00:59:04 +00002126 /// tested, and if true, the match fails) [when 1], or normal code to emit
2127 /// [when 0], or initialization code to emit [when 2].
2128 std::vector<std::pair<unsigned, std::string> > &GeneratedCode;
Evan Cheng21ad3922006-02-07 00:37:41 +00002129 /// GeneratedDecl - This is the set of all SDOperand declarations needed for
2130 /// the set of patterns for each top-level opcode.
Evan Chengf5493192006-08-26 01:02:19 +00002131 std::set<std::string> &GeneratedDecl;
Evan Chengfceb57a2006-07-15 08:45:20 +00002132 /// TargetOpcodes - The target specific opcodes used by the resulting
2133 /// instructions.
2134 std::vector<std::string> &TargetOpcodes;
Evan Chengf8729402006-07-16 06:12:52 +00002135 std::vector<std::string> &TargetVTs;
Chris Lattner8a0604b2006-01-28 20:31:24 +00002136
Evan Chenge4a8a6e2006-02-03 06:22:41 +00002137 std::string ChainName;
Chris Lattner8a0604b2006-01-28 20:31:24 +00002138 unsigned TmpNo;
Evan Chengfceb57a2006-07-15 08:45:20 +00002139 unsigned OpcNo;
Evan Chengf8729402006-07-16 06:12:52 +00002140 unsigned VTNo;
Chris Lattner8a0604b2006-01-28 20:31:24 +00002141
2142 void emitCheck(const std::string &S) {
2143 if (!S.empty())
Evan Cheng676d7312006-08-26 00:59:04 +00002144 GeneratedCode.push_back(std::make_pair(1, S));
Chris Lattner8a0604b2006-01-28 20:31:24 +00002145 }
2146 void emitCode(const std::string &S) {
2147 if (!S.empty())
Evan Cheng676d7312006-08-26 00:59:04 +00002148 GeneratedCode.push_back(std::make_pair(0, S));
2149 }
2150 void emitInit(const std::string &S) {
2151 if (!S.empty())
2152 GeneratedCode.push_back(std::make_pair(2, S));
Chris Lattner8a0604b2006-01-28 20:31:24 +00002153 }
Evan Chengf5493192006-08-26 01:02:19 +00002154 void emitDecl(const std::string &S) {
Evan Cheng21ad3922006-02-07 00:37:41 +00002155 assert(!S.empty() && "Invalid declaration");
Evan Chengf5493192006-08-26 01:02:19 +00002156 GeneratedDecl.insert(S);
Evan Cheng21ad3922006-02-07 00:37:41 +00002157 }
Evan Chengfceb57a2006-07-15 08:45:20 +00002158 void emitOpcode(const std::string &Opc) {
2159 TargetOpcodes.push_back(Opc);
2160 OpcNo++;
2161 }
Evan Chengf8729402006-07-16 06:12:52 +00002162 void emitVT(const std::string &VT) {
2163 TargetVTs.push_back(VT);
2164 VTNo++;
2165 }
Evan Chengb915f312005-12-09 22:45:35 +00002166public:
Evan Cheng58e84a62005-12-14 22:02:59 +00002167 PatternCodeEmitter(DAGISelEmitter &ise, ListInit *preds,
2168 TreePatternNode *pattern, TreePatternNode *instr,
Evan Cheng676d7312006-08-26 00:59:04 +00002169 std::vector<std::pair<unsigned, std::string> > &gc,
Evan Chengf5493192006-08-26 01:02:19 +00002170 std::set<std::string> &gd,
Evan Chengfceb57a2006-07-15 08:45:20 +00002171 std::vector<std::string> &to,
Chris Lattner706d2d32006-08-09 16:44:44 +00002172 std::vector<std::string> &tv)
Chris Lattner8a0604b2006-01-28 20:31:24 +00002173 : ISE(ise), Predicates(preds), Pattern(pattern), Instruction(instr),
Evan Cheng676d7312006-08-26 00:59:04 +00002174 GeneratedCode(gc), GeneratedDecl(gd),
2175 TargetOpcodes(to), TargetVTs(tv),
Chris Lattner706d2d32006-08-09 16:44:44 +00002176 TmpNo(0), OpcNo(0), VTNo(0) {}
Evan Chengb915f312005-12-09 22:45:35 +00002177
2178 /// EmitMatchCode - Emit a matcher for N, going to the label for PatternNo
2179 /// if the match fails. At this point, we already know that the opcode for N
2180 /// matches, and the SDNode for the result has the RootName specified name.
Evan Chenge41bf822006-02-05 06:43:12 +00002181 void EmitMatchCode(TreePatternNode *N, TreePatternNode *P,
2182 const std::string &RootName, const std::string &ParentName,
2183 const std::string &ChainSuffix, bool &FoundChain) {
2184 bool isRoot = (P == NULL);
Evan Cheng58e84a62005-12-14 22:02:59 +00002185 // Emit instruction predicates. Each predicate is just a string for now.
2186 if (isRoot) {
Chris Lattner8a0604b2006-01-28 20:31:24 +00002187 std::string PredicateCheck;
Evan Cheng58e84a62005-12-14 22:02:59 +00002188 for (unsigned i = 0, e = Predicates->getSize(); i != e; ++i) {
2189 if (DefInit *Pred = dynamic_cast<DefInit*>(Predicates->getElement(i))) {
2190 Record *Def = Pred->getDef();
Chris Lattner8a0604b2006-01-28 20:31:24 +00002191 if (!Def->isSubClassOf("Predicate")) {
Jim Laskey16d42c62006-07-11 18:25:13 +00002192#ifndef NDEBUG
2193 Def->dump();
2194#endif
Evan Cheng58e84a62005-12-14 22:02:59 +00002195 assert(0 && "Unknown predicate type!");
2196 }
Chris Lattner8a0604b2006-01-28 20:31:24 +00002197 if (!PredicateCheck.empty())
Chris Lattnerbc7fa522006-09-19 00:41:36 +00002198 PredicateCheck += " && ";
Chris Lattner67a202b2006-01-28 20:43:52 +00002199 PredicateCheck += "(" + Def->getValueAsString("CondString") + ")";
Evan Cheng58e84a62005-12-14 22:02:59 +00002200 }
2201 }
Chris Lattner8a0604b2006-01-28 20:31:24 +00002202
2203 emitCheck(PredicateCheck);
Evan Cheng58e84a62005-12-14 22:02:59 +00002204 }
2205
Evan Chengb915f312005-12-09 22:45:35 +00002206 if (N->isLeaf()) {
2207 if (IntInit *II = dynamic_cast<IntInit*>(N->getLeafValue())) {
Chris Lattner8a0604b2006-01-28 20:31:24 +00002208 emitCheck("cast<ConstantSDNode>(" + RootName +
Chris Lattner67a202b2006-01-28 20:43:52 +00002209 ")->getSignExtended() == " + itostr(II->getValue()));
Evan Chengb915f312005-12-09 22:45:35 +00002210 return;
2211 } else if (!NodeIsComplexPattern(N)) {
2212 assert(0 && "Cannot match this as a leaf value!");
2213 abort();
2214 }
2215 }
2216
Chris Lattner488580c2006-01-28 19:06:51 +00002217 // If this node has a name associated with it, capture it in VariableMap. If
Evan Chengb915f312005-12-09 22:45:35 +00002218 // we already saw this in the pattern, emit code to verify dagness.
2219 if (!N->getName().empty()) {
2220 std::string &VarMapEntry = VariableMap[N->getName()];
2221 if (VarMapEntry.empty()) {
2222 VarMapEntry = RootName;
2223 } else {
2224 // If we get here, this is a second reference to a specific name. Since
2225 // we already have checked that the first reference is valid, we don't
2226 // have to recursively match it, just check that it's the same as the
2227 // previously named thing.
Chris Lattner67a202b2006-01-28 20:43:52 +00002228 emitCheck(VarMapEntry + " == " + RootName);
Evan Chengb915f312005-12-09 22:45:35 +00002229 return;
2230 }
Evan Chengf805c2e2006-01-12 19:35:54 +00002231
2232 if (!N->isLeaf())
2233 OperatorMap[N->getName()] = N->getOperator();
Evan Chengb915f312005-12-09 22:45:35 +00002234 }
2235
2236
2237 // Emit code to load the child nodes and match their contents recursively.
2238 unsigned OpNo = 0;
Evan Chenge41bf822006-02-05 06:43:12 +00002239 bool NodeHasChain = NodeHasProperty (N, SDNodeInfo::SDNPHasChain, ISE);
2240 bool HasChain = PatternHasProperty(N, SDNodeInfo::SDNPHasChain, ISE);
2241 bool HasOutFlag = PatternHasProperty(N, SDNodeInfo::SDNPOutFlag, ISE);
Evan Cheng1feeeec2006-01-26 19:13:45 +00002242 bool EmittedUseCheck = false;
Evan Cheng86217892005-12-12 19:37:43 +00002243 if (HasChain) {
Evan Cheng76356d92006-01-20 01:11:03 +00002244 if (NodeHasChain)
2245 OpNo = 1;
Evan Chengb915f312005-12-09 22:45:35 +00002246 if (!isRoot) {
Evan Cheng1129e872005-12-10 00:09:17 +00002247 const SDNodeInfo &CInfo = ISE.getSDNodeInfo(N->getOperator());
Chris Lattner8a0604b2006-01-28 20:31:24 +00002248 // Multiple uses of actual result?
Chris Lattner67a202b2006-01-28 20:43:52 +00002249 emitCheck(RootName + ".hasOneUse()");
Evan Cheng1feeeec2006-01-26 19:13:45 +00002250 EmittedUseCheck = true;
Evan Chenge41bf822006-02-05 06:43:12 +00002251 if (NodeHasChain) {
Evan Chenge41bf822006-02-05 06:43:12 +00002252 // If the immediate use can somehow reach this node through another
2253 // path, then can't fold it either or it will create a cycle.
2254 // e.g. In the following diagram, XX can reach ld through YY. If
2255 // ld is folded into XX, then YY is both a predecessor and a successor
2256 // of XX.
2257 //
2258 // [ld]
2259 // ^ ^
2260 // | |
2261 // / \---
2262 // / [YY]
2263 // | ^
2264 // [XX]-------|
2265 const SDNodeInfo &PInfo = ISE.getSDNodeInfo(P->getOperator());
2266 if (PInfo.getNumOperands() > 1 ||
2267 PInfo.hasProperty(SDNodeInfo::SDNPHasChain) ||
2268 PInfo.hasProperty(SDNodeInfo::SDNPInFlag) ||
2269 PInfo.hasProperty(SDNodeInfo::SDNPOptInFlag))
Chris Lattner706d2d32006-08-09 16:44:44 +00002270 emitCheck("CanBeFoldedBy(" + RootName + ".Val, " + ParentName +
2271 ".Val)");
Evan Chenge41bf822006-02-05 06:43:12 +00002272 }
Evan Chengb915f312005-12-09 22:45:35 +00002273 }
Evan Chenge41bf822006-02-05 06:43:12 +00002274
Evan Chengc15d18c2006-01-27 22:13:45 +00002275 if (NodeHasChain) {
Evan Chenge6389932006-07-21 22:19:51 +00002276 if (FoundChain)
2277 emitCheck("Chain.Val == " + RootName + ".Val");
2278 else
2279 FoundChain = true;
Evan Chenge4a8a6e2006-02-03 06:22:41 +00002280 ChainName = "Chain" + ChainSuffix;
Evan Cheng676d7312006-08-26 00:59:04 +00002281 emitInit("SDOperand " + ChainName + " = " + RootName +
Evan Chenge6389932006-07-21 22:19:51 +00002282 ".getOperand(0);");
Evan Cheng1cf6db22006-01-06 00:41:12 +00002283 }
Evan Chengb915f312005-12-09 22:45:35 +00002284 }
2285
Evan Cheng54597732006-01-26 00:22:25 +00002286 // Don't fold any node which reads or writes a flag and has multiple uses.
Evan Chenge41bf822006-02-05 06:43:12 +00002287 // FIXME: We really need to separate the concepts of flag and "glue". Those
Evan Cheng54597732006-01-26 00:22:25 +00002288 // real flag results, e.g. X86CMP output, can have multiple uses.
Evan Chenge41bf822006-02-05 06:43:12 +00002289 // FIXME: If the optional incoming flag does not exist. Then it is ok to
2290 // fold it.
Evan Cheng1feeeec2006-01-26 19:13:45 +00002291 if (!isRoot &&
Evan Cheng54597732006-01-26 00:22:25 +00002292 (PatternHasProperty(N, SDNodeInfo::SDNPInFlag, ISE) ||
2293 PatternHasProperty(N, SDNodeInfo::SDNPOptInFlag, ISE) ||
2294 PatternHasProperty(N, SDNodeInfo::SDNPOutFlag, ISE))) {
Evan Cheng1feeeec2006-01-26 19:13:45 +00002295 const SDNodeInfo &CInfo = ISE.getSDNodeInfo(N->getOperator());
2296 if (!EmittedUseCheck) {
Chris Lattner8a0604b2006-01-28 20:31:24 +00002297 // Multiple uses of actual result?
Chris Lattner67a202b2006-01-28 20:43:52 +00002298 emitCheck(RootName + ".hasOneUse()");
Evan Cheng54597732006-01-26 00:22:25 +00002299 }
2300 }
2301
Evan Cheng676d7312006-08-26 00:59:04 +00002302 const ComplexPattern *CP;
Evan Chengb915f312005-12-09 22:45:35 +00002303 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i, ++OpNo) {
Evan Cheng676d7312006-08-26 00:59:04 +00002304 emitInit("SDOperand " + RootName + utostr(OpNo) + " = " +
Chris Lattner8a0604b2006-01-28 20:31:24 +00002305 RootName + ".getOperand(" +utostr(OpNo) + ");");
Evan Cheng676d7312006-08-26 00:59:04 +00002306
2307 TreePatternNode *Child = N->getChild(i);
Evan Chengb915f312005-12-09 22:45:35 +00002308 if (!Child->isLeaf()) {
2309 // If it's not a leaf, recursively match.
2310 const SDNodeInfo &CInfo = ISE.getSDNodeInfo(Child->getOperator());
Chris Lattner67a202b2006-01-28 20:43:52 +00002311 emitCheck(RootName + utostr(OpNo) + ".getOpcode() == " +
Chris Lattner8a0604b2006-01-28 20:31:24 +00002312 CInfo.getEnumName());
Evan Chenge41bf822006-02-05 06:43:12 +00002313 EmitMatchCode(Child, N, RootName + utostr(OpNo), RootName,
2314 ChainSuffix + utostr(OpNo), FoundChain);
Chris Lattner8a0604b2006-01-28 20:31:24 +00002315 if (NodeHasProperty(Child, SDNodeInfo::SDNPHasChain, ISE))
Evan Cheng1b80f4d2005-12-19 07:18:51 +00002316 FoldedChains.push_back(std::make_pair(RootName + utostr(OpNo),
2317 CInfo.getNumResults()));
Evan Chengb915f312005-12-09 22:45:35 +00002318 } else {
Chris Lattner488580c2006-01-28 19:06:51 +00002319 // If this child has a name associated with it, capture it in VarMap. If
Evan Chengb915f312005-12-09 22:45:35 +00002320 // we already saw this in the pattern, emit code to verify dagness.
2321 if (!Child->getName().empty()) {
2322 std::string &VarMapEntry = VariableMap[Child->getName()];
2323 if (VarMapEntry.empty()) {
2324 VarMapEntry = RootName + utostr(OpNo);
2325 } else {
Jeff Cohen9b0ffca2006-01-27 22:22:28 +00002326 // If we get here, this is a second reference to a specific name.
2327 // Since we already have checked that the first reference is valid,
2328 // we don't have to recursively match it, just check that it's the
2329 // same as the previously named thing.
Chris Lattner67a202b2006-01-28 20:43:52 +00002330 emitCheck(VarMapEntry + " == " + RootName + utostr(OpNo));
Evan Chengb4ad33c2006-01-19 01:55:45 +00002331 Duplicates.insert(RootName + utostr(OpNo));
Evan Chengb915f312005-12-09 22:45:35 +00002332 continue;
2333 }
2334 }
2335
2336 // Handle leaves of various types.
2337 if (DefInit *DI = dynamic_cast<DefInit*>(Child->getLeafValue())) {
2338 Record *LeafRec = DI->getDef();
2339 if (LeafRec->isSubClassOf("RegisterClass")) {
2340 // Handle register references. Nothing to do here.
2341 } else if (LeafRec->isSubClassOf("Register")) {
Evan Cheng97938882005-12-22 02:24:50 +00002342 // Handle register references.
Evan Chengb915f312005-12-09 22:45:35 +00002343 } else if (LeafRec->isSubClassOf("ComplexPattern")) {
Evan Cheng676d7312006-08-26 00:59:04 +00002344 // Handle complex pattern.
2345 CP = NodeGetComplexPattern(Child, ISE);
2346 std::string Fn = CP->getSelectFunc();
2347 unsigned NumOps = CP->getNumOperands();
2348 for (unsigned i = 0; i < NumOps; ++i) {
2349 emitDecl("CPTmp" + utostr(i));
2350 emitCode("SDOperand CPTmp" + utostr(i) + ";");
2351 }
2352
2353 std::string Code = Fn + "(" + RootName + utostr(OpNo);
2354 for (unsigned i = 0; i < NumOps; i++)
2355 Code += ", CPTmp" + utostr(i);
2356 emitCheck(Code + ")");
Evan Cheng01f318b2005-12-14 02:21:57 +00002357 } else if (LeafRec->getName() == "srcvalue") {
2358 // Place holder for SRCVALUE nodes. Nothing to do here.
Evan Chengb915f312005-12-09 22:45:35 +00002359 } else if (LeafRec->isSubClassOf("ValueType")) {
2360 // Make sure this is the specified value type.
Chris Lattner8a0604b2006-01-28 20:31:24 +00002361 emitCheck("cast<VTSDNode>(" + RootName + utostr(OpNo) +
Chris Lattner67a202b2006-01-28 20:43:52 +00002362 ")->getVT() == MVT::" + LeafRec->getName());
Evan Chengb915f312005-12-09 22:45:35 +00002363 } else if (LeafRec->isSubClassOf("CondCode")) {
2364 // Make sure this is the specified cond code.
Chris Lattner8a0604b2006-01-28 20:31:24 +00002365 emitCheck("cast<CondCodeSDNode>(" + RootName + utostr(OpNo) +
Chris Lattner67a202b2006-01-28 20:43:52 +00002366 ")->get() == ISD::" + LeafRec->getName());
Evan Chengb915f312005-12-09 22:45:35 +00002367 } else {
Jim Laskey16d42c62006-07-11 18:25:13 +00002368#ifndef NDEBUG
2369 Child->dump();
Evan Cheng97938882005-12-22 02:24:50 +00002370 std::cerr << " ";
Jim Laskey16d42c62006-07-11 18:25:13 +00002371#endif
Evan Chengb915f312005-12-09 22:45:35 +00002372 assert(0 && "Unknown leaf type!");
2373 }
Chris Lattner488580c2006-01-28 19:06:51 +00002374 } else if (IntInit *II =
2375 dynamic_cast<IntInit*>(Child->getLeafValue())) {
Chris Lattner8bc74722006-01-29 04:25:26 +00002376 emitCheck("isa<ConstantSDNode>(" + RootName + utostr(OpNo) + ")");
2377 unsigned CTmp = TmpNo++;
Andrew Lenharth8e517732006-01-29 05:22:37 +00002378 emitCode("int64_t CN"+utostr(CTmp)+" = cast<ConstantSDNode>("+
Chris Lattner8bc74722006-01-29 04:25:26 +00002379 RootName + utostr(OpNo) + ")->getSignExtended();");
2380
2381 emitCheck("CN" + utostr(CTmp) + " == " +itostr(II->getValue()));
Evan Chengb915f312005-12-09 22:45:35 +00002382 } else {
Jim Laskey16d42c62006-07-11 18:25:13 +00002383#ifndef NDEBUG
2384 Child->dump();
2385#endif
Evan Chengb915f312005-12-09 22:45:35 +00002386 assert(0 && "Unknown leaf type!");
2387 }
2388 }
2389 }
2390
Evan Cheng676d7312006-08-26 00:59:04 +00002391 // Handle cases when root is a complex pattern.
2392 if (isRoot && N->isLeaf() && (CP = NodeGetComplexPattern(N, ISE))) {
2393 std::string Fn = CP->getSelectFunc();
2394 unsigned NumOps = CP->getNumOperands();
2395 for (unsigned i = 0; i < NumOps; ++i) {
2396 emitDecl("CPTmp" + utostr(i));
2397 emitCode("SDOperand CPTmp" + utostr(i) + ";");
2398 }
2399
2400 std::string Code = Fn + "(" + RootName;
2401 for (unsigned i = 0; i < NumOps; i++)
2402 Code += ", CPTmp" + utostr(i);
2403 emitCheck(Code + ")");
2404 }
2405
Evan Chengb915f312005-12-09 22:45:35 +00002406 // If there is a node predicate for this, emit the call.
Chris Lattner8a0604b2006-01-28 20:31:24 +00002407 if (!N->getPredicateFn().empty())
Chris Lattner67a202b2006-01-28 20:43:52 +00002408 emitCheck(N->getPredicateFn() + "(" + RootName + ".Val)");
Evan Chengb915f312005-12-09 22:45:35 +00002409 }
2410
2411 /// EmitResultCode - Emit the action for a pattern. Now that it has matched
2412 /// we actually have to build a DAG!
Evan Cheng676d7312006-08-26 00:59:04 +00002413 std::vector<std::string>
2414 EmitResultCode(TreePatternNode *N, bool RetSelected,
2415 bool InFlagDecled, bool ResNodeDecled,
2416 bool LikeLeaf = false, bool isRoot = false) {
2417 // List of arguments of getTargetNode() or SelectNodeTo().
2418 std::vector<std::string> NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002419 // This is something selected from the pattern we matched.
2420 if (!N->getName().empty()) {
Evan Chengb915f312005-12-09 22:45:35 +00002421 std::string &Val = VariableMap[N->getName()];
2422 assert(!Val.empty() &&
2423 "Variable referenced but not defined and not caught earlier!");
2424 if (Val[0] == 'T' && Val[1] == 'm' && Val[2] == 'p') {
2425 // Already selected this operand, just return the tmpval.
Evan Cheng676d7312006-08-26 00:59:04 +00002426 NodeOps.push_back(Val);
2427 return NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002428 }
2429
2430 const ComplexPattern *CP;
2431 unsigned ResNo = TmpNo++;
Evan Chengb915f312005-12-09 22:45:35 +00002432 if (!N->isLeaf() && N->getOperator()->getName() == "imm") {
Nate Begemanb73628b2005-12-30 00:12:56 +00002433 assert(N->getExtTypes().size() == 1 && "Multiple types not handled!");
Chris Lattner78593132006-01-29 20:01:35 +00002434 std::string CastType;
Nate Begemanb73628b2005-12-30 00:12:56 +00002435 switch (N->getTypeNum(0)) {
Chris Lattner8a0604b2006-01-28 20:31:24 +00002436 default: assert(0 && "Unknown type for constant node!");
Chris Lattner78593132006-01-29 20:01:35 +00002437 case MVT::i1: CastType = "bool"; break;
2438 case MVT::i8: CastType = "unsigned char"; break;
2439 case MVT::i16: CastType = "unsigned short"; break;
2440 case MVT::i32: CastType = "unsigned"; break;
2441 case MVT::i64: CastType = "uint64_t"; break;
Evan Chengb915f312005-12-09 22:45:35 +00002442 }
Evan Cheng676d7312006-08-26 00:59:04 +00002443 emitCode("SDOperand Tmp" + utostr(ResNo) +
Evan Chengfceb57a2006-07-15 08:45:20 +00002444 " = CurDAG->getTargetConstant(((" + CastType +
2445 ") cast<ConstantSDNode>(" + Val + ")->getValue()), " +
2446 getEnumName(N->getTypeNum(0)) + ");");
Evan Cheng676d7312006-08-26 00:59:04 +00002447 NodeOps.push_back("Tmp" + utostr(ResNo));
2448 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select this
2449 // value if used multiple times by this pattern result.
2450 Val = "Tmp"+utostr(ResNo);
Evan Chengbb48e332006-01-12 07:54:57 +00002451 } else if (!N->isLeaf() && N->getOperator()->getName() == "texternalsym"){
Evan Chengf805c2e2006-01-12 19:35:54 +00002452 Record *Op = OperatorMap[N->getName()];
2453 // Transform ExternalSymbol to TargetExternalSymbol
2454 if (Op && Op->getName() == "externalsym") {
Evan Cheng676d7312006-08-26 00:59:04 +00002455 emitCode("SDOperand Tmp" + utostr(ResNo) + " = CurDAG->getTarget"
Chris Lattner8a0604b2006-01-28 20:31:24 +00002456 "ExternalSymbol(cast<ExternalSymbolSDNode>(" +
Evan Cheng2618d072006-05-17 20:37:59 +00002457 Val + ")->getSymbol(), " +
Chris Lattner8a0604b2006-01-28 20:31:24 +00002458 getEnumName(N->getTypeNum(0)) + ");");
Evan Cheng676d7312006-08-26 00:59:04 +00002459 NodeOps.push_back("Tmp" + utostr(ResNo));
2460 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select this
2461 // value if used multiple times by this pattern result.
2462 Val = "Tmp"+utostr(ResNo);
Chris Lattner8a0604b2006-01-28 20:31:24 +00002463 } else {
Evan Cheng676d7312006-08-26 00:59:04 +00002464 NodeOps.push_back(Val);
Chris Lattner8a0604b2006-01-28 20:31:24 +00002465 }
Evan Chengb915f312005-12-09 22:45:35 +00002466 } else if (!N->isLeaf() && N->getOperator()->getName() == "tglobaladdr") {
Evan Chengf805c2e2006-01-12 19:35:54 +00002467 Record *Op = OperatorMap[N->getName()];
2468 // Transform GlobalAddress to TargetGlobalAddress
2469 if (Op && Op->getName() == "globaladdr") {
Evan Cheng676d7312006-08-26 00:59:04 +00002470 emitCode("SDOperand Tmp" + utostr(ResNo) + " = CurDAG->getTarget"
Chris Lattner8a0604b2006-01-28 20:31:24 +00002471 "GlobalAddress(cast<GlobalAddressSDNode>(" + Val +
Evan Cheng2618d072006-05-17 20:37:59 +00002472 ")->getGlobal(), " + getEnumName(N->getTypeNum(0)) +
Chris Lattner8a0604b2006-01-28 20:31:24 +00002473 ");");
Evan Cheng676d7312006-08-26 00:59:04 +00002474 NodeOps.push_back("Tmp" + utostr(ResNo));
2475 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select this
2476 // value if used multiple times by this pattern result.
2477 Val = "Tmp"+utostr(ResNo);
Chris Lattner8a0604b2006-01-28 20:31:24 +00002478 } else {
Evan Cheng676d7312006-08-26 00:59:04 +00002479 NodeOps.push_back(Val);
Chris Lattner8a0604b2006-01-28 20:31:24 +00002480 }
Chris Lattner4e3c8e512006-01-03 22:55:16 +00002481 } else if (!N->isLeaf() && N->getOperator()->getName() == "texternalsym"){
Evan Cheng676d7312006-08-26 00:59:04 +00002482 NodeOps.push_back(Val);
2483 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select this
2484 // value if used multiple times by this pattern result.
2485 Val = "Tmp"+utostr(ResNo);
Evan Chengbb48e332006-01-12 07:54:57 +00002486 } else if (!N->isLeaf() && N->getOperator()->getName() == "tconstpool") {
Evan Cheng676d7312006-08-26 00:59:04 +00002487 NodeOps.push_back(Val);
2488 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select this
2489 // value if used multiple times by this pattern result.
2490 Val = "Tmp"+utostr(ResNo);
Evan Chengb915f312005-12-09 22:45:35 +00002491 } else if (N->isLeaf() && (CP = NodeGetComplexPattern(N, ISE))) {
2492 std::string Fn = CP->getSelectFunc();
Evan Cheng676d7312006-08-26 00:59:04 +00002493 for (unsigned i = 0; i < CP->getNumOperands(); ++i) {
2494 emitCode("AddToISelQueue(CPTmp" + utostr(i) + ");");
2495 NodeOps.push_back("CPTmp" + utostr(i));
Evan Chengb0793f92006-05-25 00:21:44 +00002496 }
Evan Chengb915f312005-12-09 22:45:35 +00002497 } else {
Evan Cheng676d7312006-08-26 00:59:04 +00002498 // This node, probably wrapped in a SDNodeXForm, behaves like a leaf
Evan Cheng863bf5a2006-03-20 22:53:06 +00002499 // node even if it isn't one. Don't select it.
Evan Cheng676d7312006-08-26 00:59:04 +00002500 if (!LikeLeaf) {
2501 emitCode("AddToISelQueue(" + Val + ");");
Chris Lattner706d2d32006-08-09 16:44:44 +00002502 if (isRoot && N->isLeaf()) {
Evan Cheng676d7312006-08-26 00:59:04 +00002503 emitCode("ReplaceUses(N, " + Val + ");");
Evan Cheng06d64702006-08-11 08:59:35 +00002504 emitCode("return NULL;");
Chris Lattner706d2d32006-08-09 16:44:44 +00002505 }
Evan Cheng83e1a6a2006-03-23 02:35:32 +00002506 }
Evan Cheng676d7312006-08-26 00:59:04 +00002507 NodeOps.push_back(Val);
Evan Chengb915f312005-12-09 22:45:35 +00002508 }
Evan Cheng676d7312006-08-26 00:59:04 +00002509 return NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002510 }
Evan Chengb915f312005-12-09 22:45:35 +00002511 if (N->isLeaf()) {
2512 // If this is an explicit register reference, handle it.
2513 if (DefInit *DI = dynamic_cast<DefInit*>(N->getLeafValue())) {
2514 unsigned ResNo = TmpNo++;
2515 if (DI->getDef()->isSubClassOf("Register")) {
Evan Cheng676d7312006-08-26 00:59:04 +00002516 emitCode("SDOperand Tmp" + utostr(ResNo) + " = CurDAG->getRegister(" +
Evan Cheng2618d072006-05-17 20:37:59 +00002517 ISE.getQualifiedName(DI->getDef()) + ", " +
Chris Lattner8a0604b2006-01-28 20:31:24 +00002518 getEnumName(N->getTypeNum(0)) + ");");
Evan Cheng676d7312006-08-26 00:59:04 +00002519 NodeOps.push_back("Tmp" + utostr(ResNo));
2520 return NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002521 }
2522 } else if (IntInit *II = dynamic_cast<IntInit*>(N->getLeafValue())) {
2523 unsigned ResNo = TmpNo++;
Nate Begemanb73628b2005-12-30 00:12:56 +00002524 assert(N->getExtTypes().size() == 1 && "Multiple types not handled!");
Evan Cheng676d7312006-08-26 00:59:04 +00002525 emitCode("SDOperand Tmp" + utostr(ResNo) +
Chris Lattner8a0604b2006-01-28 20:31:24 +00002526 " = CurDAG->getTargetConstant(" + itostr(II->getValue()) +
Evan Cheng2618d072006-05-17 20:37:59 +00002527 ", " + getEnumName(N->getTypeNum(0)) + ");");
Evan Cheng676d7312006-08-26 00:59:04 +00002528 NodeOps.push_back("Tmp" + utostr(ResNo));
2529 return NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002530 }
2531
Jim Laskey16d42c62006-07-11 18:25:13 +00002532#ifndef NDEBUG
2533 N->dump();
2534#endif
Evan Chengb915f312005-12-09 22:45:35 +00002535 assert(0 && "Unknown leaf type!");
Evan Cheng676d7312006-08-26 00:59:04 +00002536 return NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002537 }
2538
2539 Record *Op = N->getOperator();
2540 if (Op->isSubClassOf("Instruction")) {
Evan Cheng7b05bd52005-12-23 22:11:47 +00002541 const CodeGenTarget &CGT = ISE.getTargetInfo();
2542 CodeGenInstruction &II = CGT.getInstruction(Op->getName());
Evan Cheng4fba2812005-12-20 07:37:41 +00002543 const DAGInstruction &Inst = ISE.getInstruction(Op);
Evan Cheng045953c2006-05-10 00:05:46 +00002544 TreePattern *InstPat = Inst.getPattern();
2545 TreePatternNode *InstPatNode =
2546 isRoot ? (InstPat ? InstPat->getOnlyTree() : Pattern)
2547 : (InstPat ? InstPat->getOnlyTree() : NULL);
2548 if (InstPatNode && InstPatNode->getOperator()->getName() == "set") {
2549 InstPatNode = InstPatNode->getChild(1);
2550 }
Evan Chenge945f4d2006-06-14 22:22:20 +00002551 bool HasVarOps = isRoot && II.hasVariableNumberOfOperands;
Evan Cheng045953c2006-05-10 00:05:46 +00002552 bool HasImpInputs = isRoot && Inst.getNumImpOperands() > 0;
2553 bool HasImpResults = isRoot && Inst.getNumImpResults() > 0;
2554 bool NodeHasOptInFlag = isRoot &&
Evan Cheng54597732006-01-26 00:22:25 +00002555 PatternHasProperty(Pattern, SDNodeInfo::SDNPOptInFlag, ISE);
Evan Cheng045953c2006-05-10 00:05:46 +00002556 bool NodeHasInFlag = isRoot &&
Evan Cheng54597732006-01-26 00:22:25 +00002557 PatternHasProperty(Pattern, SDNodeInfo::SDNPInFlag, ISE);
Evan Cheng045953c2006-05-10 00:05:46 +00002558 bool NodeHasOutFlag = HasImpResults || (isRoot &&
2559 PatternHasProperty(Pattern, SDNodeInfo::SDNPOutFlag, ISE));
2560 bool NodeHasChain = InstPatNode &&
2561 PatternHasProperty(InstPatNode, SDNodeInfo::SDNPHasChain, ISE);
Evan Cheng3eff89b2006-05-10 02:47:57 +00002562 bool InputHasChain = isRoot &&
2563 NodeHasProperty(Pattern, SDNodeInfo::SDNPHasChain, ISE);
Evan Cheng4fba2812005-12-20 07:37:41 +00002564
Evan Chengfceb57a2006-07-15 08:45:20 +00002565 if (NodeHasOptInFlag) {
Evan Cheng676d7312006-08-26 00:59:04 +00002566 emitCode("bool HasInFlag = "
Evan Chengf8729402006-07-16 06:12:52 +00002567 "(N.getOperand(N.getNumOperands()-1).getValueType() == MVT::Flag);");
Evan Chengfceb57a2006-07-15 08:45:20 +00002568 }
Evan Chenge945f4d2006-06-14 22:22:20 +00002569 if (HasVarOps)
Evan Chengf037ca62006-08-27 08:11:28 +00002570 emitCode("SmallVector<SDOperand, 8> Ops" + utostr(OpcNo) + ";");
Evan Cheng4fba2812005-12-20 07:37:41 +00002571
Evan Cheng823b7522006-01-19 21:57:10 +00002572 // How many results is this pattern expected to produce?
Evan Chenged66e852006-03-09 08:19:11 +00002573 unsigned PatResults = 0;
Evan Cheng823b7522006-01-19 21:57:10 +00002574 for (unsigned i = 0, e = Pattern->getExtTypes().size(); i != e; i++) {
2575 MVT::ValueType VT = Pattern->getTypeNum(i);
2576 if (VT != MVT::isVoid && VT != MVT::Flag)
Evan Chenged66e852006-03-09 08:19:11 +00002577 PatResults++;
Evan Cheng823b7522006-01-19 21:57:10 +00002578 }
2579
Evan Cheng676d7312006-08-26 00:59:04 +00002580 std::vector<std::string> AllOps;
Evan Chengb915f312005-12-09 22:45:35 +00002581 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i) {
Evan Cheng676d7312006-08-26 00:59:04 +00002582 std::vector<std::string> Ops = EmitResultCode(N->getChild(i),
2583 RetSelected, InFlagDecled, ResNodeDecled);
2584 AllOps.insert(AllOps.end(), Ops.begin(), Ops.end());
Evan Chengb915f312005-12-09 22:45:35 +00002585 }
2586
Evan Chengb915f312005-12-09 22:45:35 +00002587 // Emit all the chain and CopyToReg stuff.
Evan Cheng045953c2006-05-10 00:05:46 +00002588 bool ChainEmitted = NodeHasChain;
2589 if (NodeHasChain)
Evan Cheng676d7312006-08-26 00:59:04 +00002590 emitCode("AddToISelQueue(" + ChainName + ");");
Evan Chengbc6b86a2006-06-14 19:27:50 +00002591 if (NodeHasInFlag || HasImpInputs)
Evan Cheng676d7312006-08-26 00:59:04 +00002592 EmitInFlagSelectCode(Pattern, "N", ChainEmitted,
2593 InFlagDecled, ResNodeDecled, true);
Evan Chengf037ca62006-08-27 08:11:28 +00002594 if (NodeHasOptInFlag || NodeHasInFlag || HasImpInputs) {
Evan Cheng676d7312006-08-26 00:59:04 +00002595 if (!InFlagDecled) {
2596 emitCode("SDOperand InFlag(0, 0);");
2597 InFlagDecled = true;
2598 }
Evan Chengf037ca62006-08-27 08:11:28 +00002599 if (NodeHasOptInFlag) {
2600 emitCode("if (HasInFlag) {");
2601 emitCode(" InFlag = N.getOperand(N.getNumOperands()-1);");
2602 emitCode(" AddToISelQueue(InFlag);");
2603 emitCode("}");
2604 }
Evan Chengbc6b86a2006-06-14 19:27:50 +00002605 }
Evan Chengb915f312005-12-09 22:45:35 +00002606
Evan Chengb915f312005-12-09 22:45:35 +00002607 unsigned NumResults = Inst.getNumResults();
2608 unsigned ResNo = TmpNo++;
Evan Cheng3eff89b2006-05-10 02:47:57 +00002609 if (!isRoot || InputHasChain || NodeHasChain || NodeHasOutFlag ||
2610 NodeHasOptInFlag) {
Evan Chenge945f4d2006-06-14 22:22:20 +00002611 std::string Code;
2612 std::string Code2;
2613 std::string NodeName;
2614 if (!isRoot) {
2615 NodeName = "Tmp" + utostr(ResNo);
Evan Cheng676d7312006-08-26 00:59:04 +00002616 Code2 = "SDOperand " + NodeName + " = SDOperand(";
Evan Cheng9789aaa2006-01-24 20:46:50 +00002617 } else {
Evan Chenge945f4d2006-06-14 22:22:20 +00002618 NodeName = "ResNode";
Evan Cheng676d7312006-08-26 00:59:04 +00002619 if (!ResNodeDecled)
2620 Code2 = "SDNode *" + NodeName + " = ";
2621 else
2622 Code2 = NodeName + " = ";
Evan Chengbcecf332005-12-17 01:19:28 +00002623 }
Evan Chengf037ca62006-08-27 08:11:28 +00002624
Evan Chengfceb57a2006-07-15 08:45:20 +00002625 Code = "CurDAG->getTargetNode(Opc" + utostr(OpcNo);
Evan Chengf037ca62006-08-27 08:11:28 +00002626 unsigned OpsNo = OpcNo;
Evan Chengfceb57a2006-07-15 08:45:20 +00002627 emitOpcode(II.Namespace + "::" + II.TheDef->getName());
Evan Chenge945f4d2006-06-14 22:22:20 +00002628
2629 // Output order: results, chain, flags
2630 // Result types.
Evan Chengf8729402006-07-16 06:12:52 +00002631 if (NumResults > 0 && N->getTypeNum(0) != MVT::isVoid) {
2632 Code += ", VT" + utostr(VTNo);
2633 emitVT(getEnumName(N->getTypeNum(0)));
2634 }
Evan Chenge945f4d2006-06-14 22:22:20 +00002635 if (NodeHasChain)
2636 Code += ", MVT::Other";
2637 if (NodeHasOutFlag)
2638 Code += ", MVT::Flag";
2639
2640 // Inputs.
Evan Chengf037ca62006-08-27 08:11:28 +00002641 if (HasVarOps) {
2642 for (unsigned i = 0, e = AllOps.size(); i != e; ++i)
2643 emitCode("Ops" + utostr(OpsNo) + ".push_back(" + AllOps[i] + ");");
2644 AllOps.clear();
Evan Chenge945f4d2006-06-14 22:22:20 +00002645 }
2646
2647 if (HasVarOps) {
2648 if (NodeHasInFlag || HasImpInputs)
2649 emitCode("for (unsigned i = 2, e = N.getNumOperands()-1; "
2650 "i != e; ++i) {");
2651 else if (NodeHasOptInFlag)
Evan Chengfceb57a2006-07-15 08:45:20 +00002652 emitCode("for (unsigned i = 2, e = N.getNumOperands()-"
2653 "(HasInFlag?1:0); i != e; ++i) {");
Evan Chenge945f4d2006-06-14 22:22:20 +00002654 else
2655 emitCode("for (unsigned i = 2, e = N.getNumOperands(); "
2656 "i != e; ++i) {");
Evan Cheng676d7312006-08-26 00:59:04 +00002657 emitCode(" AddToISelQueue(N.getOperand(i));");
Evan Chengf037ca62006-08-27 08:11:28 +00002658 emitCode(" Ops" + utostr(OpsNo) + ".push_back(N.getOperand(i));");
Evan Chenge945f4d2006-06-14 22:22:20 +00002659 emitCode("}");
2660 }
2661
2662 if (NodeHasChain) {
2663 if (HasVarOps)
Evan Chengf037ca62006-08-27 08:11:28 +00002664 emitCode("Ops" + utostr(OpsNo) + ".push_back(" + ChainName + ");");
Evan Chenge945f4d2006-06-14 22:22:20 +00002665 else
Evan Chengf037ca62006-08-27 08:11:28 +00002666 AllOps.push_back(ChainName);
Evan Chenge945f4d2006-06-14 22:22:20 +00002667 }
2668
Evan Chengf037ca62006-08-27 08:11:28 +00002669 if (HasVarOps) {
2670 if (NodeHasInFlag || HasImpInputs)
2671 emitCode("Ops" + utostr(OpsNo) + ".push_back(InFlag);");
2672 else if (NodeHasOptInFlag) {
2673 emitCode("if (HasInFlag)");
2674 emitCode(" Ops" + utostr(OpsNo) + ".push_back(InFlag);");
2675 }
2676 Code += ", &Ops" + utostr(OpsNo) + "[0], Ops" + utostr(OpsNo) +
2677 ".size()";
2678 } else if (NodeHasInFlag || NodeHasOptInFlag || HasImpInputs)
2679 AllOps.push_back("InFlag");
Evan Chenge945f4d2006-06-14 22:22:20 +00002680
Evan Chengf037ca62006-08-27 08:11:28 +00002681 unsigned NumOps = AllOps.size();
2682 if (NumOps) {
2683 if (!NodeHasOptInFlag && NumOps < 4) {
2684 for (unsigned i = 0; i != NumOps; ++i)
2685 Code += ", " + AllOps[i];
2686 } else {
2687 std::string OpsCode = "SDOperand Ops" + utostr(OpsNo) + "[] = { ";
2688 for (unsigned i = 0; i != NumOps; ++i) {
2689 OpsCode += AllOps[i];
2690 if (i != NumOps-1)
2691 OpsCode += ", ";
2692 }
2693 emitCode(OpsCode + " };");
2694 Code += ", Ops" + utostr(OpsNo) + ", ";
2695 if (NodeHasOptInFlag) {
2696 Code += "HasInFlag ? ";
2697 Code += utostr(NumOps) + " : " + utostr(NumOps-1);
2698 } else
2699 Code += utostr(NumOps);
2700 }
2701 }
2702
Evan Chenge945f4d2006-06-14 22:22:20 +00002703 if (!isRoot)
2704 Code += "), 0";
2705 emitCode(Code2 + Code + ");");
2706
2707 if (NodeHasChain)
2708 // Remember which op produces the chain.
2709 if (!isRoot)
2710 emitCode(ChainName + " = SDOperand(" + NodeName +
2711 ".Val, " + utostr(PatResults) + ");");
2712 else
2713 emitCode(ChainName + " = SDOperand(" + NodeName +
2714 ", " + utostr(PatResults) + ");");
Evan Cheng1b80f4d2005-12-19 07:18:51 +00002715
Evan Cheng676d7312006-08-26 00:59:04 +00002716 if (!isRoot) {
2717 NodeOps.push_back("Tmp" + utostr(ResNo));
2718 return NodeOps;
2719 }
Evan Cheng045953c2006-05-10 00:05:46 +00002720
Evan Cheng06d64702006-08-11 08:59:35 +00002721 bool NeedReplace = false;
Evan Cheng676d7312006-08-26 00:59:04 +00002722 if (NodeHasOutFlag) {
2723 if (!InFlagDecled) {
2724 emitCode("SDOperand InFlag = SDOperand(ResNode, " +
2725 utostr(NumResults + (unsigned)NodeHasChain) + ");");
2726 InFlagDecled = true;
2727 } else
2728 emitCode("InFlag = SDOperand(ResNode, " +
2729 utostr(NumResults + (unsigned)NodeHasChain) + ");");
2730 }
Evan Cheng4fba2812005-12-20 07:37:41 +00002731
Evan Cheng676d7312006-08-26 00:59:04 +00002732 if (HasImpResults && EmitCopyFromRegs(N, ResNodeDecled, ChainEmitted)) {
Chris Lattner706d2d32006-08-09 16:44:44 +00002733 emitCode("ReplaceUses(SDOperand(N.Val, 0), SDOperand(ResNode, 0));");
Evan Chenged66e852006-03-09 08:19:11 +00002734 NumResults = 1;
Evan Cheng97938882005-12-22 02:24:50 +00002735 }
Evan Cheng4fba2812005-12-20 07:37:41 +00002736
Evan Cheng97938882005-12-22 02:24:50 +00002737 if (FoldedChains.size() > 0) {
Chris Lattner8a0604b2006-01-28 20:31:24 +00002738 std::string Code;
Evan Cheng1b80f4d2005-12-19 07:18:51 +00002739 for (unsigned j = 0, e = FoldedChains.size(); j < e; j++)
Chris Lattner706d2d32006-08-09 16:44:44 +00002740 emitCode("ReplaceUses(SDOperand(" +
Evan Cheng67212a02006-02-09 22:12:27 +00002741 FoldedChains[j].first + ".Val, " +
Chris Lattner706d2d32006-08-09 16:44:44 +00002742 utostr(FoldedChains[j].second) + "), SDOperand(ResNode, " +
2743 utostr(NumResults) + "));");
Evan Cheng06d64702006-08-11 08:59:35 +00002744 NeedReplace = true;
Evan Chengb915f312005-12-09 22:45:35 +00002745 }
Evan Chengf9fc25d2005-12-19 22:40:04 +00002746
Evan Cheng06d64702006-08-11 08:59:35 +00002747 if (NodeHasOutFlag) {
Chris Lattner706d2d32006-08-09 16:44:44 +00002748 emitCode("ReplaceUses(SDOperand(N.Val, " +
2749 utostr(PatResults + (unsigned)InputHasChain) +"), InFlag);");
Evan Cheng06d64702006-08-11 08:59:35 +00002750 NeedReplace = true;
2751 }
2752
2753 if (NeedReplace) {
2754 for (unsigned i = 0; i < NumResults; i++)
2755 emitCode("ReplaceUses(SDOperand(N.Val, " +
2756 utostr(i) + "), SDOperand(ResNode, " + utostr(i) + "));");
2757 if (InputHasChain)
2758 emitCode("ReplaceUses(SDOperand(N.Val, " +
2759 utostr(PatResults) + "), SDOperand(" + ChainName + ".Val, " +
2760 ChainName + ".ResNo" + "));");
Evan Chengf037ca62006-08-27 08:11:28 +00002761 } else
Evan Cheng06d64702006-08-11 08:59:35 +00002762 RetSelected = true;
Evan Cheng97938882005-12-22 02:24:50 +00002763
Evan Chenged66e852006-03-09 08:19:11 +00002764 // User does not expect the instruction would produce a chain!
Evan Cheng06d64702006-08-11 08:59:35 +00002765 if ((!InputHasChain && NodeHasChain) && NodeHasOutFlag) {
Evan Cheng9ade2182006-08-26 05:34:46 +00002766 ;
Evan Cheng3eff89b2006-05-10 02:47:57 +00002767 } else if (InputHasChain && !NodeHasChain) {
2768 // One of the inner node produces a chain.
Evan Cheng9ade2182006-08-26 05:34:46 +00002769 if (NodeHasOutFlag)
Evan Cheng06d64702006-08-11 08:59:35 +00002770 emitCode("ReplaceUses(SDOperand(N.Val, " + utostr(PatResults+1) +
2771 "), SDOperand(ResNode, N.ResNo-1));");
Evan Cheng06d64702006-08-11 08:59:35 +00002772 for (unsigned i = 0; i < PatResults; ++i)
2773 emitCode("ReplaceUses(SDOperand(N.Val, " + utostr(i) +
2774 "), SDOperand(ResNode, " + utostr(i) + "));");
2775 emitCode("ReplaceUses(SDOperand(N.Val, " + utostr(PatResults) +
2776 "), " + ChainName + ");");
2777 RetSelected = false;
Evan Cheng4fba2812005-12-20 07:37:41 +00002778 }
Evan Cheng06d64702006-08-11 08:59:35 +00002779
2780 if (RetSelected)
Evan Cheng9ade2182006-08-26 05:34:46 +00002781 emitCode("return ResNode;");
Evan Cheng06d64702006-08-11 08:59:35 +00002782 else
2783 emitCode("return NULL;");
Evan Chengb915f312005-12-09 22:45:35 +00002784 } else {
Evan Cheng9ade2182006-08-26 05:34:46 +00002785 std::string Code = "return CurDAG->SelectNodeTo(N.Val, Opc" +
Evan Chengfceb57a2006-07-15 08:45:20 +00002786 utostr(OpcNo);
Nate Begemanb73628b2005-12-30 00:12:56 +00002787 if (N->getTypeNum(0) != MVT::isVoid)
Evan Chengf8729402006-07-16 06:12:52 +00002788 Code += ", VT" + utostr(VTNo);
Evan Cheng54597732006-01-26 00:22:25 +00002789 if (NodeHasOutFlag)
Chris Lattner8a0604b2006-01-28 20:31:24 +00002790 Code += ", MVT::Flag";
Evan Chengf037ca62006-08-27 08:11:28 +00002791
2792 if (NodeHasInFlag || NodeHasOptInFlag || HasImpInputs)
2793 AllOps.push_back("InFlag");
2794
2795 unsigned NumOps = AllOps.size();
2796 if (NumOps) {
2797 if (!NodeHasOptInFlag && NumOps < 4) {
2798 for (unsigned i = 0; i != NumOps; ++i)
2799 Code += ", " + AllOps[i];
2800 } else {
2801 std::string OpsCode = "SDOperand Ops" + utostr(OpcNo) + "[] = { ";
2802 for (unsigned i = 0; i != NumOps; ++i) {
2803 OpsCode += AllOps[i];
2804 if (i != NumOps-1)
2805 OpsCode += ", ";
2806 }
2807 emitCode(OpsCode + " };");
2808 Code += ", Ops" + utostr(OpcNo) + ", ";
2809 Code += utostr(NumOps);
2810 }
2811 }
Evan Cheng95514ba2006-08-26 08:00:10 +00002812 emitCode(Code + ");");
Evan Cheng676d7312006-08-26 00:59:04 +00002813 emitOpcode(II.Namespace + "::" + II.TheDef->getName());
2814 if (N->getTypeNum(0) != MVT::isVoid)
2815 emitVT(getEnumName(N->getTypeNum(0)));
Evan Chengb915f312005-12-09 22:45:35 +00002816 }
Evan Cheng4fba2812005-12-20 07:37:41 +00002817
Evan Cheng676d7312006-08-26 00:59:04 +00002818 return NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002819 } else if (Op->isSubClassOf("SDNodeXForm")) {
2820 assert(N->getNumChildren() == 1 && "node xform should have one child!");
Evan Cheng863bf5a2006-03-20 22:53:06 +00002821 // PatLeaf node - the operand may or may not be a leaf node. But it should
2822 // behave like one.
Evan Cheng676d7312006-08-26 00:59:04 +00002823 std::vector<std::string> Ops =
2824 EmitResultCode(N->getChild(0), RetSelected, InFlagDecled,
2825 ResNodeDecled, true);
Evan Chengb915f312005-12-09 22:45:35 +00002826 unsigned ResNo = TmpNo++;
Evan Cheng676d7312006-08-26 00:59:04 +00002827 emitCode("SDOperand Tmp" + utostr(ResNo) + " = Transform_" + Op->getName()
2828 + "(" + Ops.back() + ".Val);");
2829 NodeOps.push_back("Tmp" + utostr(ResNo));
Evan Cheng9ade2182006-08-26 05:34:46 +00002830 if (isRoot)
2831 emitCode("return Tmp" + utostr(ResNo) + ".Val;");
Evan Cheng676d7312006-08-26 00:59:04 +00002832 return NodeOps;
Evan Chengb915f312005-12-09 22:45:35 +00002833 } else {
2834 N->dump();
Chris Lattner7893f132006-01-11 01:33:49 +00002835 std::cerr << "\n";
2836 throw std::string("Unknown node in result pattern!");
Evan Chengb915f312005-12-09 22:45:35 +00002837 }
2838 }
2839
Chris Lattner488580c2006-01-28 19:06:51 +00002840 /// InsertOneTypeCheck - Insert a type-check for an unresolved type in 'Pat'
2841 /// and add it to the tree. 'Pat' and 'Other' are isomorphic trees except that
Evan Chengb915f312005-12-09 22:45:35 +00002842 /// 'Pat' may be missing types. If we find an unresolved type to add a check
2843 /// for, this returns true otherwise false if Pat has all types.
2844 bool InsertOneTypeCheck(TreePatternNode *Pat, TreePatternNode *Other,
Chris Lattner706d2d32006-08-09 16:44:44 +00002845 const std::string &Prefix, bool isRoot = false) {
Evan Chengb915f312005-12-09 22:45:35 +00002846 // Did we find one?
Evan Chengd15531b2006-05-19 07:24:32 +00002847 if (Pat->getExtTypes() != Other->getExtTypes()) {
Evan Chengb915f312005-12-09 22:45:35 +00002848 // Move a type over from 'other' to 'pat'.
Nate Begemanb73628b2005-12-30 00:12:56 +00002849 Pat->setTypes(Other->getExtTypes());
Chris Lattner706d2d32006-08-09 16:44:44 +00002850 // The top level node type is checked outside of the select function.
2851 if (!isRoot)
2852 emitCheck(Prefix + ".Val->getValueType(0) == " +
2853 getName(Pat->getTypeNum(0)));
Evan Chengb915f312005-12-09 22:45:35 +00002854 return true;
Evan Chengb915f312005-12-09 22:45:35 +00002855 }
2856
Evan Cheng51fecc82006-01-09 18:27:06 +00002857 unsigned OpNo =
2858 (unsigned) NodeHasProperty(Pat, SDNodeInfo::SDNPHasChain, ISE);
Evan Chengb915f312005-12-09 22:45:35 +00002859 for (unsigned i = 0, e = Pat->getNumChildren(); i != e; ++i, ++OpNo)
2860 if (InsertOneTypeCheck(Pat->getChild(i), Other->getChild(i),
2861 Prefix + utostr(OpNo)))
2862 return true;
2863 return false;
2864 }
2865
2866private:
Evan Cheng54597732006-01-26 00:22:25 +00002867 /// EmitInFlagSelectCode - Emit the flag operands for the DAG that is
Evan Chengb915f312005-12-09 22:45:35 +00002868 /// being built.
Evan Cheng54597732006-01-26 00:22:25 +00002869 void EmitInFlagSelectCode(TreePatternNode *N, const std::string &RootName,
Evan Cheng676d7312006-08-26 00:59:04 +00002870 bool &ChainEmitted, bool &InFlagDecled,
2871 bool &ResNodeDecled, bool isRoot = false) {
Evan Chengb915f312005-12-09 22:45:35 +00002872 const CodeGenTarget &T = ISE.getTargetInfo();
Evan Cheng51fecc82006-01-09 18:27:06 +00002873 unsigned OpNo =
2874 (unsigned) NodeHasProperty(N, SDNodeInfo::SDNPHasChain, ISE);
Evan Cheng54597732006-01-26 00:22:25 +00002875 bool HasInFlag = NodeHasProperty(N, SDNodeInfo::SDNPInFlag, ISE);
Evan Chengb915f312005-12-09 22:45:35 +00002876 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i, ++OpNo) {
2877 TreePatternNode *Child = N->getChild(i);
2878 if (!Child->isLeaf()) {
Evan Cheng676d7312006-08-26 00:59:04 +00002879 EmitInFlagSelectCode(Child, RootName + utostr(OpNo), ChainEmitted,
2880 InFlagDecled, ResNodeDecled);
Evan Chengb915f312005-12-09 22:45:35 +00002881 } else {
2882 if (DefInit *DI = dynamic_cast<DefInit*>(Child->getLeafValue())) {
Evan Chengb4ad33c2006-01-19 01:55:45 +00002883 if (!Child->getName().empty()) {
2884 std::string Name = RootName + utostr(OpNo);
2885 if (Duplicates.find(Name) != Duplicates.end())
2886 // A duplicate! Do not emit a copy for this node.
2887 continue;
2888 }
2889
Evan Chengb915f312005-12-09 22:45:35 +00002890 Record *RR = DI->getDef();
2891 if (RR->isSubClassOf("Register")) {
2892 MVT::ValueType RVT = getRegisterValueType(RR, T);
Evan Chengbcecf332005-12-17 01:19:28 +00002893 if (RVT == MVT::Flag) {
Evan Cheng676d7312006-08-26 00:59:04 +00002894 if (!InFlagDecled) {
2895 emitCode("SDOperand InFlag = " + RootName + utostr(OpNo) + ";");
2896 InFlagDecled = true;
2897 } else
2898 emitCode("InFlag = " + RootName + utostr(OpNo) + ";");
2899 emitCode("AddToISelQueue(InFlag);");
Evan Chengb2c6d492006-01-11 22:16:13 +00002900 } else {
2901 if (!ChainEmitted) {
Evan Cheng676d7312006-08-26 00:59:04 +00002902 emitCode("SDOperand Chain = CurDAG->getEntryNode();");
Evan Chenge4a8a6e2006-02-03 06:22:41 +00002903 ChainName = "Chain";
Evan Chengb2c6d492006-01-11 22:16:13 +00002904 ChainEmitted = true;
2905 }
Evan Cheng676d7312006-08-26 00:59:04 +00002906 emitCode("AddToISelQueue(" + RootName + utostr(OpNo) + ");");
2907 if (!InFlagDecled) {
2908 emitCode("SDOperand InFlag(0, 0);");
2909 InFlagDecled = true;
2910 }
2911 std::string Decl = (!ResNodeDecled) ? "SDNode *" : "";
2912 emitCode(Decl + "ResNode = CurDAG->getCopyToReg(" + ChainName +
Evan Cheng7a33db02006-08-26 07:39:28 +00002913 ", " + ISE.getQualifiedName(RR) +
2914 ", " + RootName + utostr(OpNo) + ", InFlag).Val;");
Evan Cheng676d7312006-08-26 00:59:04 +00002915 ResNodeDecled = true;
Evan Cheng67212a02006-02-09 22:12:27 +00002916 emitCode(ChainName + " = SDOperand(ResNode, 0);");
2917 emitCode("InFlag = SDOperand(ResNode, 1);");
Evan Chengb915f312005-12-09 22:45:35 +00002918 }
2919 }
2920 }
2921 }
2922 }
Evan Cheng54597732006-01-26 00:22:25 +00002923
Evan Cheng676d7312006-08-26 00:59:04 +00002924 if (HasInFlag) {
2925 if (!InFlagDecled) {
2926 emitCode("SDOperand InFlag = " + RootName +
2927 ".getOperand(" + utostr(OpNo) + ");");
2928 InFlagDecled = true;
2929 } else
2930 emitCode("InFlag = " + RootName +
2931 ".getOperand(" + utostr(OpNo) + ");");
2932 emitCode("AddToISelQueue(InFlag);");
2933 }
Evan Chengb915f312005-12-09 22:45:35 +00002934 }
Evan Cheng4fba2812005-12-20 07:37:41 +00002935
2936 /// EmitCopyFromRegs - Emit code to copy result to physical registers
Evan Cheng7b05bd52005-12-23 22:11:47 +00002937 /// as specified by the instruction. It returns true if any copy is
2938 /// emitted.
Evan Cheng676d7312006-08-26 00:59:04 +00002939 bool EmitCopyFromRegs(TreePatternNode *N, bool &ResNodeDecled,
2940 bool &ChainEmitted) {
Evan Cheng7b05bd52005-12-23 22:11:47 +00002941 bool RetVal = false;
Evan Cheng4fba2812005-12-20 07:37:41 +00002942 Record *Op = N->getOperator();
2943 if (Op->isSubClassOf("Instruction")) {
2944 const DAGInstruction &Inst = ISE.getInstruction(Op);
2945 const CodeGenTarget &CGT = ISE.getTargetInfo();
Evan Cheng4fba2812005-12-20 07:37:41 +00002946 unsigned NumImpResults = Inst.getNumImpResults();
2947 for (unsigned i = 0; i < NumImpResults; i++) {
2948 Record *RR = Inst.getImpResult(i);
2949 if (RR->isSubClassOf("Register")) {
2950 MVT::ValueType RVT = getRegisterValueType(RR, CGT);
2951 if (RVT != MVT::Flag) {
Evan Chengb2c6d492006-01-11 22:16:13 +00002952 if (!ChainEmitted) {
Evan Cheng676d7312006-08-26 00:59:04 +00002953 emitCode("SDOperand Chain = CurDAG->getEntryNode();");
Evan Chengb2c6d492006-01-11 22:16:13 +00002954 ChainEmitted = true;
Evan Chenge4a8a6e2006-02-03 06:22:41 +00002955 ChainName = "Chain";
Evan Cheng4fba2812005-12-20 07:37:41 +00002956 }
Evan Cheng676d7312006-08-26 00:59:04 +00002957 std::string Decl = (!ResNodeDecled) ? "SDNode *" : "";
2958 emitCode(Decl + "ResNode = CurDAG->getCopyFromReg(" + ChainName +
Evan Chengfceb57a2006-07-15 08:45:20 +00002959 ", " + ISE.getQualifiedName(RR) + ", " + getEnumName(RVT) +
Evan Chengd7805a72006-02-09 07:16:09 +00002960 ", InFlag).Val;");
Evan Cheng676d7312006-08-26 00:59:04 +00002961 ResNodeDecled = true;
Evan Chengd7805a72006-02-09 07:16:09 +00002962 emitCode(ChainName + " = SDOperand(ResNode, 1);");
2963 emitCode("InFlag = SDOperand(ResNode, 2);");
Evan Cheng7b05bd52005-12-23 22:11:47 +00002964 RetVal = true;
Evan Cheng4fba2812005-12-20 07:37:41 +00002965 }
2966 }
2967 }
2968 }
Evan Cheng7b05bd52005-12-23 22:11:47 +00002969 return RetVal;
Evan Cheng4fba2812005-12-20 07:37:41 +00002970 }
Evan Chengb915f312005-12-09 22:45:35 +00002971};
2972
Chris Lattnerd1ff35a2005-09-23 21:33:23 +00002973/// EmitCodeForPattern - Given a pattern to match, emit code to the specified
2974/// stream to match the pattern, and generate the code for the match if it
Chris Lattner355408b2006-01-29 02:43:35 +00002975/// succeeds. Returns true if the pattern is not guaranteed to match.
Chris Lattner8bc74722006-01-29 04:25:26 +00002976void DAGISelEmitter::GenerateCodeForPattern(PatternToMatch &Pattern,
Evan Cheng676d7312006-08-26 00:59:04 +00002977 std::vector<std::pair<unsigned, std::string> > &GeneratedCode,
Evan Chengf5493192006-08-26 01:02:19 +00002978 std::set<std::string> &GeneratedDecl,
Evan Chengfceb57a2006-07-15 08:45:20 +00002979 std::vector<std::string> &TargetOpcodes,
Evan Chengf5493192006-08-26 01:02:19 +00002980 std::vector<std::string> &TargetVTs) {
Evan Cheng58e84a62005-12-14 22:02:59 +00002981 PatternCodeEmitter Emitter(*this, Pattern.getPredicates(),
2982 Pattern.getSrcPattern(), Pattern.getDstPattern(),
Evan Chengf8729402006-07-16 06:12:52 +00002983 GeneratedCode, GeneratedDecl,
Chris Lattner706d2d32006-08-09 16:44:44 +00002984 TargetOpcodes, TargetVTs);
Evan Chengb915f312005-12-09 22:45:35 +00002985
Chris Lattner8fc35682005-09-23 23:16:51 +00002986 // Emit the matcher, capturing named arguments in VariableMap.
Evan Cheng7b05bd52005-12-23 22:11:47 +00002987 bool FoundChain = false;
Evan Cheng06d64702006-08-11 08:59:35 +00002988 Emitter.EmitMatchCode(Pattern.getSrcPattern(), NULL, "N", "", "",
2989 FoundChain);
Evan Chengb915f312005-12-09 22:45:35 +00002990
Chris Lattner0ee7cff2005-10-14 04:11:13 +00002991 // TP - Get *SOME* tree pattern, we don't care which.
2992 TreePattern &TP = *PatternFragments.begin()->second;
Chris Lattner296dfe32005-09-24 00:50:51 +00002993
Chris Lattner0ee7cff2005-10-14 04:11:13 +00002994 // At this point, we know that we structurally match the pattern, but the
2995 // types of the nodes may not match. Figure out the fewest number of type
2996 // comparisons we need to emit. For example, if there is only one integer
2997 // type supported by a target, there should be no type comparisons at all for
2998 // integer patterns!
2999 //
3000 // To figure out the fewest number of type checks needed, clone the pattern,
3001 // remove the types, then perform type inference on the pattern as a whole.
3002 // If there are unresolved types, emit an explicit check for those types,
3003 // apply the type to the tree, then rerun type inference. Iterate until all
3004 // types are resolved.
3005 //
Evan Cheng58e84a62005-12-14 22:02:59 +00003006 TreePatternNode *Pat = Pattern.getSrcPattern()->clone();
Chris Lattner0ee7cff2005-10-14 04:11:13 +00003007 RemoveAllTypes(Pat);
Chris Lattner7e82f132005-10-15 21:34:21 +00003008
3009 do {
3010 // Resolve/propagate as many types as possible.
3011 try {
3012 bool MadeChange = true;
3013 while (MadeChange)
Chris Lattner488580c2006-01-28 19:06:51 +00003014 MadeChange = Pat->ApplyTypeConstraints(TP,
3015 true/*Ignore reg constraints*/);
Chris Lattner7e82f132005-10-15 21:34:21 +00003016 } catch (...) {
3017 assert(0 && "Error: could not find consistent types for something we"
3018 " already decided was ok!");
3019 abort();
3020 }
Chris Lattner0ee7cff2005-10-14 04:11:13 +00003021
Chris Lattner7e82f132005-10-15 21:34:21 +00003022 // Insert a check for an unresolved type and add it to the tree. If we find
3023 // an unresolved type to add a check for, this returns true and we iterate,
3024 // otherwise we are done.
Chris Lattner706d2d32006-08-09 16:44:44 +00003025 } while (Emitter.InsertOneTypeCheck(Pat, Pattern.getSrcPattern(), "N", true));
Evan Cheng1c3d19e2005-12-04 08:18:16 +00003026
Evan Cheng676d7312006-08-26 00:59:04 +00003027 Emitter.EmitResultCode(Pattern.getDstPattern(),
3028 false, false, false, false, true);
Chris Lattner0ee7cff2005-10-14 04:11:13 +00003029 delete Pat;
Chris Lattner3f7e9142005-09-23 20:52:47 +00003030}
3031
Chris Lattner24e00a42006-01-29 04:41:05 +00003032/// EraseCodeLine - Erase one code line from all of the patterns. If removing
3033/// a line causes any of them to be empty, remove them and return true when
3034/// done.
3035static bool EraseCodeLine(std::vector<std::pair<PatternToMatch*,
Evan Cheng676d7312006-08-26 00:59:04 +00003036 std::vector<std::pair<unsigned, std::string> > > >
Chris Lattner24e00a42006-01-29 04:41:05 +00003037 &Patterns) {
3038 bool ErasedPatterns = false;
3039 for (unsigned i = 0, e = Patterns.size(); i != e; ++i) {
3040 Patterns[i].second.pop_back();
3041 if (Patterns[i].second.empty()) {
3042 Patterns.erase(Patterns.begin()+i);
3043 --i; --e;
3044 ErasedPatterns = true;
3045 }
3046 }
3047 return ErasedPatterns;
3048}
3049
Chris Lattner8bc74722006-01-29 04:25:26 +00003050/// EmitPatterns - Emit code for at least one pattern, but try to group common
3051/// code together between the patterns.
3052void DAGISelEmitter::EmitPatterns(std::vector<std::pair<PatternToMatch*,
Evan Cheng676d7312006-08-26 00:59:04 +00003053 std::vector<std::pair<unsigned, std::string> > > >
Chris Lattner8bc74722006-01-29 04:25:26 +00003054 &Patterns, unsigned Indent,
3055 std::ostream &OS) {
Evan Cheng676d7312006-08-26 00:59:04 +00003056 typedef std::pair<unsigned, std::string> CodeLine;
Chris Lattner8bc74722006-01-29 04:25:26 +00003057 typedef std::vector<CodeLine> CodeList;
3058 typedef std::vector<std::pair<PatternToMatch*, CodeList> > PatternList;
3059
3060 if (Patterns.empty()) return;
3061
Chris Lattner24e00a42006-01-29 04:41:05 +00003062 // Figure out how many patterns share the next code line. Explicitly copy
3063 // FirstCodeLine so that we don't invalidate a reference when changing
3064 // Patterns.
3065 const CodeLine FirstCodeLine = Patterns.back().second.back();
Chris Lattner8bc74722006-01-29 04:25:26 +00003066 unsigned LastMatch = Patterns.size()-1;
3067 while (LastMatch != 0 && Patterns[LastMatch-1].second.back() == FirstCodeLine)
3068 --LastMatch;
3069
3070 // If not all patterns share this line, split the list into two pieces. The
3071 // first chunk will use this line, the second chunk won't.
3072 if (LastMatch != 0) {
3073 PatternList Shared(Patterns.begin()+LastMatch, Patterns.end());
3074 PatternList Other(Patterns.begin(), Patterns.begin()+LastMatch);
3075
3076 // FIXME: Emit braces?
3077 if (Shared.size() == 1) {
3078 PatternToMatch &Pattern = *Shared.back().first;
3079 OS << "\n" << std::string(Indent, ' ') << "// Pattern: ";
3080 Pattern.getSrcPattern()->print(OS);
3081 OS << "\n" << std::string(Indent, ' ') << "// Emits: ";
3082 Pattern.getDstPattern()->print(OS);
3083 OS << "\n";
Evan Chengc81d2a02006-04-19 20:36:09 +00003084 unsigned AddedComplexity = Pattern.getAddedComplexity();
Chris Lattner8bc74722006-01-29 04:25:26 +00003085 OS << std::string(Indent, ' ') << "// Pattern complexity = "
Evan Chengc81d2a02006-04-19 20:36:09 +00003086 << getPatternSize(Pattern.getSrcPattern(), *this) + AddedComplexity
Evan Cheng59413202006-04-19 18:07:24 +00003087 << " cost = "
Evan Chenge6f32032006-07-19 00:24:41 +00003088 << getResultPatternCost(Pattern.getDstPattern(), *this)
3089 << " size = "
3090 << getResultPatternSize(Pattern.getDstPattern(), *this) << "\n";
Chris Lattner8bc74722006-01-29 04:25:26 +00003091 }
Evan Cheng676d7312006-08-26 00:59:04 +00003092 if (FirstCodeLine.first != 1) {
Chris Lattner8bc74722006-01-29 04:25:26 +00003093 OS << std::string(Indent, ' ') << "{\n";
3094 Indent += 2;
3095 }
3096 EmitPatterns(Shared, Indent, OS);
Evan Cheng676d7312006-08-26 00:59:04 +00003097 if (FirstCodeLine.first != 1) {
Chris Lattner8bc74722006-01-29 04:25:26 +00003098 Indent -= 2;
3099 OS << std::string(Indent, ' ') << "}\n";
3100 }
3101
3102 if (Other.size() == 1) {
3103 PatternToMatch &Pattern = *Other.back().first;
3104 OS << "\n" << std::string(Indent, ' ') << "// Pattern: ";
3105 Pattern.getSrcPattern()->print(OS);
3106 OS << "\n" << std::string(Indent, ' ') << "// Emits: ";
3107 Pattern.getDstPattern()->print(OS);
3108 OS << "\n";
Evan Chengc81d2a02006-04-19 20:36:09 +00003109 unsigned AddedComplexity = Pattern.getAddedComplexity();
Chris Lattner8bc74722006-01-29 04:25:26 +00003110 OS << std::string(Indent, ' ') << "// Pattern complexity = "
Evan Chengc81d2a02006-04-19 20:36:09 +00003111 << getPatternSize(Pattern.getSrcPattern(), *this) + AddedComplexity
Evan Cheng59413202006-04-19 18:07:24 +00003112 << " cost = "
Chris Lattner706d2d32006-08-09 16:44:44 +00003113 << getResultPatternCost(Pattern.getDstPattern(), *this)
3114 << " size = "
3115 << getResultPatternSize(Pattern.getDstPattern(), *this) << "\n";
Chris Lattner8bc74722006-01-29 04:25:26 +00003116 }
3117 EmitPatterns(Other, Indent, OS);
3118 return;
3119 }
3120
Chris Lattner24e00a42006-01-29 04:41:05 +00003121 // Remove this code from all of the patterns that share it.
3122 bool ErasedPatterns = EraseCodeLine(Patterns);
3123
Evan Cheng676d7312006-08-26 00:59:04 +00003124 bool isPredicate = FirstCodeLine.first == 1;
Chris Lattner8bc74722006-01-29 04:25:26 +00003125
3126 // Otherwise, every pattern in the list has this line. Emit it.
3127 if (!isPredicate) {
3128 // Normal code.
3129 OS << std::string(Indent, ' ') << FirstCodeLine.second << "\n";
3130 } else {
Chris Lattner24e00a42006-01-29 04:41:05 +00003131 OS << std::string(Indent, ' ') << "if (" << FirstCodeLine.second;
3132
3133 // If the next code line is another predicate, and if all of the pattern
3134 // in this group share the same next line, emit it inline now. Do this
3135 // until we run out of common predicates.
Evan Cheng676d7312006-08-26 00:59:04 +00003136 while (!ErasedPatterns && Patterns.back().second.back().first == 1) {
Chris Lattner24e00a42006-01-29 04:41:05 +00003137 // Check that all of fhe patterns in Patterns end with the same predicate.
3138 bool AllEndWithSamePredicate = true;
3139 for (unsigned i = 0, e = Patterns.size(); i != e; ++i)
3140 if (Patterns[i].second.back() != Patterns.back().second.back()) {
3141 AllEndWithSamePredicate = false;
3142 break;
3143 }
3144 // If all of the predicates aren't the same, we can't share them.
3145 if (!AllEndWithSamePredicate) break;
3146
3147 // Otherwise we can. Emit it shared now.
3148 OS << " &&\n" << std::string(Indent+4, ' ')
3149 << Patterns.back().second.back().second;
3150 ErasedPatterns = EraseCodeLine(Patterns);
Chris Lattner8bc74722006-01-29 04:25:26 +00003151 }
Chris Lattner24e00a42006-01-29 04:41:05 +00003152
3153 OS << ") {\n";
3154 Indent += 2;
Chris Lattner8bc74722006-01-29 04:25:26 +00003155 }
3156
3157 EmitPatterns(Patterns, Indent, OS);
3158
3159 if (isPredicate)
3160 OS << std::string(Indent-2, ' ') << "}\n";
3161}
3162
3163
Chris Lattner37481472005-09-26 21:59:35 +00003164
3165namespace {
3166 /// CompareByRecordName - An ordering predicate that implements less-than by
3167 /// comparing the names records.
3168 struct CompareByRecordName {
3169 bool operator()(const Record *LHS, const Record *RHS) const {
3170 // Sort by name first.
3171 if (LHS->getName() < RHS->getName()) return true;
3172 // If both names are equal, sort by pointer.
3173 return LHS->getName() == RHS->getName() && LHS < RHS;
3174 }
3175 };
3176}
3177
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003178void DAGISelEmitter::EmitInstructionSelector(std::ostream &OS) {
Chris Lattnerb277cbc2005-10-18 04:41:01 +00003179 std::string InstNS = Target.inst_begin()->second.Namespace;
3180 if (!InstNS.empty()) InstNS += "::";
3181
Chris Lattner602f6922006-01-04 00:25:00 +00003182 // Group the patterns by their top-level opcodes.
3183 std::map<Record*, std::vector<PatternToMatch*>,
3184 CompareByRecordName> PatternsByOpcode;
Evan Chengfceb57a2006-07-15 08:45:20 +00003185 // All unique target node emission functions.
3186 std::map<std::string, unsigned> EmitFunctions;
Chris Lattner602f6922006-01-04 00:25:00 +00003187 for (unsigned i = 0, e = PatternsToMatch.size(); i != e; ++i) {
3188 TreePatternNode *Node = PatternsToMatch[i].getSrcPattern();
3189 if (!Node->isLeaf()) {
3190 PatternsByOpcode[Node->getOperator()].push_back(&PatternsToMatch[i]);
3191 } else {
3192 const ComplexPattern *CP;
3193 if (IntInit *II =
3194 dynamic_cast<IntInit*>(Node->getLeafValue())) {
3195 PatternsByOpcode[getSDNodeNamed("imm")].push_back(&PatternsToMatch[i]);
3196 } else if ((CP = NodeGetComplexPattern(Node, *this))) {
3197 std::vector<Record*> OpNodes = CP->getRootNodes();
3198 for (unsigned j = 0, e = OpNodes.size(); j != e; j++) {
Chris Lattner488580c2006-01-28 19:06:51 +00003199 PatternsByOpcode[OpNodes[j]]
3200 .insert(PatternsByOpcode[OpNodes[j]].begin(), &PatternsToMatch[i]);
Chris Lattner602f6922006-01-04 00:25:00 +00003201 }
3202 } else {
3203 std::cerr << "Unrecognized opcode '";
3204 Node->dump();
3205 std::cerr << "' on tree pattern '";
Chris Lattner488580c2006-01-28 19:06:51 +00003206 std::cerr <<
3207 PatternsToMatch[i].getDstPattern()->getOperator()->getName();
Chris Lattner602f6922006-01-04 00:25:00 +00003208 std::cerr << "'!\n";
3209 exit(1);
3210 }
3211 }
3212 }
Chris Lattner706d2d32006-08-09 16:44:44 +00003213
3214 // For each opcode, there might be multiple select functions, one per
3215 // ValueType of the node (or its first operand if it doesn't produce a
3216 // non-chain result.
3217 std::map<std::string, std::vector<std::string> > OpcodeVTMap;
3218
Chris Lattner602f6922006-01-04 00:25:00 +00003219 // Emit one Select_* method for each top-level opcode. We do this instead of
3220 // emitting one giant switch statement to support compilers where this will
3221 // result in the recursive functions taking less stack space.
3222 for (std::map<Record*, std::vector<PatternToMatch*>,
3223 CompareByRecordName>::iterator PBOI = PatternsByOpcode.begin(),
3224 E = PatternsByOpcode.end(); PBOI != E; ++PBOI) {
Evan Chenge41bf822006-02-05 06:43:12 +00003225 const std::string &OpName = PBOI->first->getName();
Chris Lattner602f6922006-01-04 00:25:00 +00003226 const SDNodeInfo &OpcodeInfo = getSDNodeInfo(PBOI->first);
Chris Lattner706d2d32006-08-09 16:44:44 +00003227 std::vector<PatternToMatch*> &PatternsOfOp = PBOI->second;
3228 assert(!PatternsOfOp.empty() && "No patterns but map has entry?");
3229
Chris Lattner602f6922006-01-04 00:25:00 +00003230 // We want to emit all of the matching code now. However, we want to emit
3231 // the matches in order of minimal cost. Sort the patterns so the least
3232 // cost one is at the start.
Chris Lattner706d2d32006-08-09 16:44:44 +00003233 std::stable_sort(PatternsOfOp.begin(), PatternsOfOp.end(),
Chris Lattner602f6922006-01-04 00:25:00 +00003234 PatternSortingPredicate(*this));
Evan Cheng21ad3922006-02-07 00:37:41 +00003235
Chris Lattner706d2d32006-08-09 16:44:44 +00003236 // Split them into groups by type.
3237 std::map<MVT::ValueType, std::vector<PatternToMatch*> > PatternsByType;
3238 for (unsigned i = 0, e = PatternsOfOp.size(); i != e; ++i) {
3239 PatternToMatch *Pat = PatternsOfOp[i];
3240 TreePatternNode *SrcPat = Pat->getSrcPattern();
3241 if (OpcodeInfo.getNumResults() == 0 && SrcPat->getNumChildren() > 0)
3242 SrcPat = SrcPat->getChild(0);
3243 MVT::ValueType VT = SrcPat->getTypeNum(0);
3244 std::map<MVT::ValueType, std::vector<PatternToMatch*> >::iterator TI =
3245 PatternsByType.find(VT);
3246 if (TI != PatternsByType.end())
3247 TI->second.push_back(Pat);
3248 else {
3249 std::vector<PatternToMatch*> PVec;
3250 PVec.push_back(Pat);
3251 PatternsByType.insert(std::make_pair(VT, PVec));
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003252 }
Chris Lattner706d2d32006-08-09 16:44:44 +00003253 }
3254
3255 for (std::map<MVT::ValueType, std::vector<PatternToMatch*> >::iterator
3256 II = PatternsByType.begin(), EE = PatternsByType.end(); II != EE;
3257 ++II) {
3258 MVT::ValueType OpVT = II->first;
3259 std::vector<PatternToMatch*> &Patterns = II->second;
Evan Cheng676d7312006-08-26 00:59:04 +00003260 typedef std::vector<std::pair<unsigned, std::string> > CodeList;
3261 typedef std::vector<std::pair<unsigned, std::string> >::iterator CodeListI;
Chris Lattner706d2d32006-08-09 16:44:44 +00003262
3263 std::vector<std::pair<PatternToMatch*, CodeList> > CodeForPatterns;
3264 std::vector<std::vector<std::string> > PatternOpcodes;
3265 std::vector<std::vector<std::string> > PatternVTs;
Evan Chengf5493192006-08-26 01:02:19 +00003266 std::vector<std::set<std::string> > PatternDecls;
Chris Lattner706d2d32006-08-09 16:44:44 +00003267 for (unsigned i = 0, e = Patterns.size(); i != e; ++i) {
3268 CodeList GeneratedCode;
Evan Chengf5493192006-08-26 01:02:19 +00003269 std::set<std::string> GeneratedDecl;
Chris Lattner706d2d32006-08-09 16:44:44 +00003270 std::vector<std::string> TargetOpcodes;
3271 std::vector<std::string> TargetVTs;
3272 GenerateCodeForPattern(*Patterns[i], GeneratedCode, GeneratedDecl,
3273 TargetOpcodes, TargetVTs);
Chris Lattner706d2d32006-08-09 16:44:44 +00003274 CodeForPatterns.push_back(std::make_pair(Patterns[i], GeneratedCode));
3275 PatternDecls.push_back(GeneratedDecl);
3276 PatternOpcodes.push_back(TargetOpcodes);
3277 PatternVTs.push_back(TargetVTs);
3278 }
3279
3280 // Scan the code to see if all of the patterns are reachable and if it is
3281 // possible that the last one might not match.
3282 bool mightNotMatch = true;
3283 for (unsigned i = 0, e = CodeForPatterns.size(); i != e; ++i) {
3284 CodeList &GeneratedCode = CodeForPatterns[i].second;
3285 mightNotMatch = false;
3286
3287 for (unsigned j = 0, e = GeneratedCode.size(); j != e; ++j) {
Evan Cheng676d7312006-08-26 00:59:04 +00003288 if (GeneratedCode[j].first == 1) { // predicate.
Chris Lattner706d2d32006-08-09 16:44:44 +00003289 mightNotMatch = true;
3290 break;
3291 }
3292 }
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003293
Chris Lattner706d2d32006-08-09 16:44:44 +00003294 // If this pattern definitely matches, and if it isn't the last one, the
3295 // patterns after it CANNOT ever match. Error out.
3296 if (mightNotMatch == false && i != CodeForPatterns.size()-1) {
3297 std::cerr << "Pattern '";
Evan Cheng676d7312006-08-26 00:59:04 +00003298 CodeForPatterns[i].first->getSrcPattern()->print(std::cerr);
Chris Lattner706d2d32006-08-09 16:44:44 +00003299 std::cerr << "' is impossible to select!\n";
3300 exit(1);
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003301 }
3302 }
3303
Chris Lattner706d2d32006-08-09 16:44:44 +00003304 // Factor target node emission code (emitted by EmitResultCode) into
3305 // separate functions. Uniquing and share them among all instruction
3306 // selection routines.
3307 for (unsigned i = 0, e = CodeForPatterns.size(); i != e; ++i) {
3308 CodeList &GeneratedCode = CodeForPatterns[i].second;
3309 std::vector<std::string> &TargetOpcodes = PatternOpcodes[i];
3310 std::vector<std::string> &TargetVTs = PatternVTs[i];
Evan Chengf5493192006-08-26 01:02:19 +00003311 std::set<std::string> Decls = PatternDecls[i];
Evan Cheng676d7312006-08-26 00:59:04 +00003312 std::vector<std::string> AddedInits;
Chris Lattner706d2d32006-08-09 16:44:44 +00003313 int CodeSize = (int)GeneratedCode.size();
3314 int LastPred = -1;
3315 for (int j = CodeSize-1; j >= 0; --j) {
Evan Cheng676d7312006-08-26 00:59:04 +00003316 if (LastPred == -1 && GeneratedCode[j].first == 1)
Chris Lattner706d2d32006-08-09 16:44:44 +00003317 LastPred = j;
Evan Cheng676d7312006-08-26 00:59:04 +00003318 else if (LastPred != -1 && GeneratedCode[j].first == 2)
3319 AddedInits.push_back(GeneratedCode[j].second);
Chris Lattner706d2d32006-08-09 16:44:44 +00003320 }
3321
Evan Cheng9ade2182006-08-26 05:34:46 +00003322 std::string CalleeCode = "(const SDOperand &N";
3323 std::string CallerCode = "(N";
Chris Lattner706d2d32006-08-09 16:44:44 +00003324 for (unsigned j = 0, e = TargetOpcodes.size(); j != e; ++j) {
3325 CalleeCode += ", unsigned Opc" + utostr(j);
3326 CallerCode += ", " + TargetOpcodes[j];
3327 }
3328 for (unsigned j = 0, e = TargetVTs.size(); j != e; ++j) {
3329 CalleeCode += ", MVT::ValueType VT" + utostr(j);
3330 CallerCode += ", " + TargetVTs[j];
3331 }
Evan Chengf5493192006-08-26 01:02:19 +00003332 for (std::set<std::string>::iterator
Chris Lattner706d2d32006-08-09 16:44:44 +00003333 I = Decls.begin(), E = Decls.end(); I != E; ++I) {
Evan Chengf5493192006-08-26 01:02:19 +00003334 std::string Name = *I;
Evan Cheng676d7312006-08-26 00:59:04 +00003335 CalleeCode += ", SDOperand &" + Name;
3336 CallerCode += ", " + Name;
Chris Lattner706d2d32006-08-09 16:44:44 +00003337 }
3338 CallerCode += ");";
3339 CalleeCode += ") ";
3340 // Prevent emission routines from being inlined to reduce selection
3341 // routines stack frame sizes.
Chris Lattner8dc728e2006-08-27 13:16:24 +00003342 CalleeCode += "DISABLE_INLINE ";
Evan Cheng676d7312006-08-26 00:59:04 +00003343 CalleeCode += "{\n";
3344
3345 for (std::vector<std::string>::const_reverse_iterator
3346 I = AddedInits.rbegin(), E = AddedInits.rend(); I != E; ++I)
3347 CalleeCode += " " + *I + "\n";
3348
Evan Chengf5493192006-08-26 01:02:19 +00003349 for (int j = LastPred+1; j < CodeSize; ++j)
3350 CalleeCode += " " + GeneratedCode[j].second + "\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003351 for (int j = LastPred+1; j < CodeSize; ++j)
3352 GeneratedCode.pop_back();
3353 CalleeCode += "}\n";
3354
3355 // Uniquing the emission routines.
3356 unsigned EmitFuncNum;
3357 std::map<std::string, unsigned>::iterator EFI =
3358 EmitFunctions.find(CalleeCode);
3359 if (EFI != EmitFunctions.end()) {
3360 EmitFuncNum = EFI->second;
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003361 } else {
Chris Lattner706d2d32006-08-09 16:44:44 +00003362 EmitFuncNum = EmitFunctions.size();
3363 EmitFunctions.insert(std::make_pair(CalleeCode, EmitFuncNum));
Evan Cheng06d64702006-08-11 08:59:35 +00003364 OS << "SDNode *Emit_" << utostr(EmitFuncNum) << CalleeCode;
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003365 }
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003366
Chris Lattner706d2d32006-08-09 16:44:44 +00003367 // Replace the emission code within selection routines with calls to the
3368 // emission functions.
Evan Cheng06d64702006-08-11 08:59:35 +00003369 CallerCode = "return Emit_" + utostr(EmitFuncNum) + CallerCode;
Chris Lattner706d2d32006-08-09 16:44:44 +00003370 GeneratedCode.push_back(std::make_pair(false, CallerCode));
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003371 }
3372
Chris Lattner706d2d32006-08-09 16:44:44 +00003373 // Print function.
3374 std::string OpVTStr = (OpVT != MVT::isVoid && OpVT != MVT::iPTR)
3375 ? getEnumName(OpVT).substr(5) : "" ;
3376 std::map<std::string, std::vector<std::string> >::iterator OpVTI =
3377 OpcodeVTMap.find(OpName);
3378 if (OpVTI == OpcodeVTMap.end()) {
3379 std::vector<std::string> VTSet;
3380 VTSet.push_back(OpVTStr);
3381 OpcodeVTMap.insert(std::make_pair(OpName, VTSet));
3382 } else
3383 OpVTI->second.push_back(OpVTStr);
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003384
Evan Cheng06d64702006-08-11 08:59:35 +00003385 OS << "SDNode *Select_" << OpName << (OpVTStr != "" ? "_" : "")
Evan Cheng9ade2182006-08-26 05:34:46 +00003386 << OpVTStr << "(const SDOperand &N) {\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003387
Chris Lattner706d2d32006-08-09 16:44:44 +00003388 // Loop through and reverse all of the CodeList vectors, as we will be
3389 // accessing them from their logical front, but accessing the end of a
3390 // vector is more efficient.
3391 for (unsigned i = 0, e = CodeForPatterns.size(); i != e; ++i) {
3392 CodeList &GeneratedCode = CodeForPatterns[i].second;
3393 std::reverse(GeneratedCode.begin(), GeneratedCode.end());
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003394 }
Chris Lattner706d2d32006-08-09 16:44:44 +00003395
3396 // Next, reverse the list of patterns itself for the same reason.
3397 std::reverse(CodeForPatterns.begin(), CodeForPatterns.end());
3398
3399 // Emit all of the patterns now, grouped together to share code.
3400 EmitPatterns(CodeForPatterns, 2, OS);
3401
3402 // If the last pattern has predicates (which could fail) emit code to catch
3403 // the case where nothing handles a pattern.
3404 if (mightNotMatch) {
3405 OS << " std::cerr << \"Cannot yet select: \";\n";
3406 if (OpcodeInfo.getEnumName() != "ISD::INTRINSIC_W_CHAIN" &&
3407 OpcodeInfo.getEnumName() != "ISD::INTRINSIC_WO_CHAIN" &&
3408 OpcodeInfo.getEnumName() != "ISD::INTRINSIC_VOID") {
3409 OS << " N.Val->dump(CurDAG);\n";
3410 } else {
3411 OS << " unsigned iid = cast<ConstantSDNode>(N.getOperand("
3412 "N.getOperand(0).getValueType() == MVT::Other))->getValue();\n"
3413 << " std::cerr << \"intrinsic %\"<< "
3414 "Intrinsic::getName((Intrinsic::ID)iid);\n";
3415 }
3416 OS << " std::cerr << '\\n';\n"
Evan Cheng06d64702006-08-11 08:59:35 +00003417 << " abort();\n"
3418 << " return NULL;\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003419 }
3420 OS << "}\n\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003421 }
Chris Lattner602f6922006-01-04 00:25:00 +00003422 }
3423
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003424 // Emit boilerplate.
Evan Cheng9ade2182006-08-26 05:34:46 +00003425 OS << "SDNode *Select_INLINEASM(SDOperand N) {\n"
Chris Lattnerfabcb7a2006-01-26 23:08:55 +00003426 << " std::vector<SDOperand> Ops(N.Val->op_begin(), N.Val->op_end());\n"
Evan Cheng676d7312006-08-26 00:59:04 +00003427 << " AddToISelQueue(N.getOperand(0)); // Select the chain.\n\n"
Chris Lattnerfabcb7a2006-01-26 23:08:55 +00003428 << " // Select the flag operand.\n"
3429 << " if (Ops.back().getValueType() == MVT::Flag)\n"
Evan Cheng676d7312006-08-26 00:59:04 +00003430 << " AddToISelQueue(Ops.back());\n"
Chris Lattnerfd105d42006-02-24 02:13:31 +00003431 << " SelectInlineAsmMemoryOperands(Ops, *CurDAG);\n"
Chris Lattnerfabcb7a2006-01-26 23:08:55 +00003432 << " std::vector<MVT::ValueType> VTs;\n"
3433 << " VTs.push_back(MVT::Other);\n"
3434 << " VTs.push_back(MVT::Flag);\n"
Chris Lattner706d2d32006-08-09 16:44:44 +00003435 << " SDOperand New = CurDAG->getNode(ISD::INLINEASM, VTs, &Ops[0], "
3436 "Ops.size());\n"
Evan Cheng9ade2182006-08-26 05:34:46 +00003437 << " return New.Val;\n"
Chris Lattnerfabcb7a2006-01-26 23:08:55 +00003438 << "}\n\n";
3439
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003440 OS << "// The main instruction selector code.\n"
Evan Cheng9ade2182006-08-26 05:34:46 +00003441 << "SDNode *SelectCode(SDOperand N) {\n"
Chris Lattner547394c2005-09-23 21:53:45 +00003442 << " if (N.getOpcode() >= ISD::BUILTIN_OP_END &&\n"
Chris Lattnerb277cbc2005-10-18 04:41:01 +00003443 << " N.getOpcode() < (ISD::BUILTIN_OP_END+" << InstNS
Evan Cheng34167212006-02-09 00:37:58 +00003444 << "INSTRUCTION_LIST_END)) {\n"
Evan Cheng06d64702006-08-11 08:59:35 +00003445 << " return NULL; // Already selected.\n"
Evan Cheng34167212006-02-09 00:37:58 +00003446 << " }\n\n"
Chris Lattner547394c2005-09-23 21:53:45 +00003447 << " switch (N.getOpcode()) {\n"
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003448 << " default: break;\n"
3449 << " case ISD::EntryToken: // These leaves remain the same.\n"
Chris Lattner5216c692005-12-18 21:05:44 +00003450 << " case ISD::BasicBlock:\n"
Chris Lattner8020a522006-01-11 19:52:27 +00003451 << " case ISD::Register:\n"
Evan Cheng0a83ed52006-02-05 08:46:14 +00003452 << " case ISD::HANDLENODE:\n"
Evan Cheng2216d8a2006-02-05 05:22:18 +00003453 << " case ISD::TargetConstant:\n"
3454 << " case ISD::TargetConstantPool:\n"
3455 << " case ISD::TargetFrameIndex:\n"
Nate Begeman37efe672006-04-22 18:53:45 +00003456 << " case ISD::TargetJumpTable:\n"
Evan Cheng34167212006-02-09 00:37:58 +00003457 << " case ISD::TargetGlobalAddress: {\n"
Evan Cheng06d64702006-08-11 08:59:35 +00003458 << " return NULL;\n"
Evan Cheng34167212006-02-09 00:37:58 +00003459 << " }\n"
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003460 << " case ISD::AssertSext:\n"
Chris Lattnerfab37282005-09-26 22:10:24 +00003461 << " case ISD::AssertZext: {\n"
Evan Cheng676d7312006-08-26 00:59:04 +00003462 << " AddToISelQueue(N.getOperand(0));\n"
3463 << " ReplaceUses(N, N.getOperand(0));\n"
Evan Cheng06d64702006-08-11 08:59:35 +00003464 << " return NULL;\n"
Chris Lattnerf071bb52005-10-25 20:35:14 +00003465 << " }\n"
3466 << " case ISD::TokenFactor:\n"
Chris Lattner706d2d32006-08-09 16:44:44 +00003467 << " case ISD::CopyFromReg:\n"
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003468 << " case ISD::CopyToReg: {\n"
Evan Cheng676d7312006-08-26 00:59:04 +00003469 << " for (unsigned i = 0, e = N.getNumOperands(); i != e; ++i)\n"
3470 << " AddToISelQueue(N.getOperand(i));\n"
Evan Cheng06d64702006-08-11 08:59:35 +00003471 << " return NULL;\n"
Chris Lattnerfabcb7a2006-01-26 23:08:55 +00003472 << " }\n"
Evan Cheng9ade2182006-08-26 05:34:46 +00003473 << " case ISD::INLINEASM: return Select_INLINEASM(N);\n";
Chris Lattnerfabcb7a2006-01-26 23:08:55 +00003474
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003475
Chris Lattner602f6922006-01-04 00:25:00 +00003476 // Loop over all of the case statements, emiting a call to each method we
3477 // emitted above.
Chris Lattner37481472005-09-26 21:59:35 +00003478 for (std::map<Record*, std::vector<PatternToMatch*>,
3479 CompareByRecordName>::iterator PBOI = PatternsByOpcode.begin(),
3480 E = PatternsByOpcode.end(); PBOI != E; ++PBOI) {
Chris Lattner81303322005-09-23 19:36:15 +00003481 const SDNodeInfo &OpcodeInfo = getSDNodeInfo(PBOI->first);
Chris Lattner706d2d32006-08-09 16:44:44 +00003482 const std::string &OpName = PBOI->first->getName();
3483 // Potentially multiple versions of select for this opcode. One for each
3484 // ValueType of the node (or its first true operand if it doesn't produce a
3485 // result.
3486 std::map<std::string, std::vector<std::string> >::iterator OpVTI =
3487 OpcodeVTMap.find(OpName);
3488 std::vector<std::string> &OpVTs = OpVTI->second;
3489 OS << " case " << OpcodeInfo.getEnumName() << ": {\n";
3490 if (OpVTs.size() == 1) {
3491 std::string &VTStr = OpVTs[0];
Evan Cheng06d64702006-08-11 08:59:35 +00003492 OS << " return Select_" << OpName
Evan Cheng9ade2182006-08-26 05:34:46 +00003493 << (VTStr != "" ? "_" : "") << VTStr << "(N);\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003494 } else {
3495 if (OpcodeInfo.getNumResults())
3496 OS << " MVT::ValueType NVT = N.Val->getValueType(0);\n";
3497 else if (OpcodeInfo.hasProperty(SDNodeInfo::SDNPHasChain))
3498 OS << " MVT::ValueType NVT = (N.getNumOperands() > 1) ?"
3499 << " N.getOperand(1).Val->getValueType(0) : MVT::isVoid;\n";
3500 else
3501 OS << " MVT::ValueType NVT = (N.getNumOperands() > 0) ?"
3502 << " N.getOperand(0).Val->getValueType(0) : MVT::isVoid;\n";
Evan Cheng06d64702006-08-11 08:59:35 +00003503 int Default = -1;
3504 OS << " switch (NVT) {\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003505 for (unsigned i = 0, e = OpVTs.size(); i < e; ++i) {
3506 std::string &VTStr = OpVTs[i];
3507 if (VTStr == "") {
Evan Cheng06d64702006-08-11 08:59:35 +00003508 Default = i;
Chris Lattner706d2d32006-08-09 16:44:44 +00003509 continue;
3510 }
Evan Cheng06d64702006-08-11 08:59:35 +00003511 OS << " case MVT::" << VTStr << ":\n"
3512 << " return Select_" << OpName
Evan Cheng9ade2182006-08-26 05:34:46 +00003513 << "_" << VTStr << "(N);\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003514 }
Evan Cheng06d64702006-08-11 08:59:35 +00003515 OS << " default:\n";
3516 if (Default != -1)
Evan Cheng9ade2182006-08-26 05:34:46 +00003517 OS << " return Select_" << OpName << "(N);\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003518 else
Evan Cheng06d64702006-08-11 08:59:35 +00003519 OS << " break;\n";
3520 OS << " }\n";
3521 OS << " break;\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003522 }
Chris Lattner706d2d32006-08-09 16:44:44 +00003523 OS << " }\n";
Chris Lattner81303322005-09-23 19:36:15 +00003524 }
Chris Lattner81303322005-09-23 19:36:15 +00003525
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003526 OS << " } // end of big switch.\n\n"
3527 << " std::cerr << \"Cannot yet select: \";\n"
Chris Lattnerb026e702006-03-28 00:41:33 +00003528 << " if (N.getOpcode() != ISD::INTRINSIC_W_CHAIN &&\n"
3529 << " N.getOpcode() != ISD::INTRINSIC_WO_CHAIN &&\n"
3530 << " N.getOpcode() != ISD::INTRINSIC_VOID) {\n"
Chris Lattner9bf2d3e2006-03-25 06:47:53 +00003531 << " N.Val->dump(CurDAG);\n"
3532 << " } else {\n"
3533 << " unsigned iid = cast<ConstantSDNode>(N.getOperand("
3534 "N.getOperand(0).getValueType() == MVT::Other))->getValue();\n"
3535 << " std::cerr << \"intrinsic %\"<< "
3536 "Intrinsic::getName((Intrinsic::ID)iid);\n"
3537 << " }\n"
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003538 << " std::cerr << '\\n';\n"
3539 << " abort();\n"
Evan Cheng06d64702006-08-11 08:59:35 +00003540 << " return NULL;\n"
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003541 << "}\n";
3542}
3543
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003544void DAGISelEmitter::run(std::ostream &OS) {
3545 EmitSourceFileHeader("DAG Instruction Selector for the " + Target.getName() +
3546 " target", OS);
3547
Chris Lattner1f39e292005-09-14 00:09:24 +00003548 OS << "// *** NOTE: This file is #included into the middle of the target\n"
3549 << "// *** instruction selector class. These functions are really "
3550 << "methods.\n\n";
Chris Lattnerb9f01eb2005-09-16 00:29:46 +00003551
Chris Lattner8dc728e2006-08-27 13:16:24 +00003552 OS << "#include \"llvm/Support/Compiler.h\"\n";
Evan Cheng233baf12006-07-26 23:06:27 +00003553
Chris Lattner706d2d32006-08-09 16:44:44 +00003554 OS << "// Instruction selector priority queue:\n"
3555 << "std::vector<SDNode*> ISelQueue;\n";
3556 OS << "/// Keep track of nodes which have already been added to queue.\n"
3557 << "unsigned char *ISelQueued;\n";
3558 OS << "/// Keep track of nodes which have already been selected.\n"
3559 << "unsigned char *ISelSelected;\n";
3560 OS << "/// Dummy parameter to ReplaceAllUsesOfValueWith().\n"
3561 << "std::vector<SDNode*> ISelKilled;\n\n";
Evan Chenge41bf822006-02-05 06:43:12 +00003562
Chris Lattner706d2d32006-08-09 16:44:44 +00003563 OS << "/// Sorting functions for the selection queue.\n"
3564 << "struct isel_sort : public std::binary_function"
3565 << "<SDNode*, SDNode*, bool> {\n"
3566 << " bool operator()(const SDNode* left, const SDNode* right) "
3567 << "const {\n"
3568 << " return (left->getNodeId() > right->getNodeId());\n"
3569 << " }\n"
3570 << "};\n\n";
Evan Chenge41bf822006-02-05 06:43:12 +00003571
Chris Lattner706d2d32006-08-09 16:44:44 +00003572 OS << "inline void setQueued(int Id) {\n";
3573 OS << " ISelQueued[Id / 8] |= 1 << (Id % 8);\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003574 OS << "}\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003575 OS << "inline bool isQueued(int Id) {\n";
3576 OS << " return ISelQueued[Id / 8] & (1 << (Id % 8));\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003577 OS << "}\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003578 OS << "inline void setSelected(int Id) {\n";
3579 OS << " ISelSelected[Id / 8] |= 1 << (Id % 8);\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003580 OS << "}\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003581 OS << "inline bool isSelected(int Id) {\n";
3582 OS << " return ISelSelected[Id / 8] & (1 << (Id % 8));\n";
3583 OS << "}\n\n";
Evan Cheng9bdca032006-08-07 22:17:58 +00003584
Chris Lattner8dc728e2006-08-27 13:16:24 +00003585 OS << "void AddToISelQueue(SDOperand N) DISABLE_INLINE {\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003586 OS << " int Id = N.Val->getNodeId();\n";
3587 OS << " if (Id != -1 && !isQueued(Id)) {\n";
3588 OS << " ISelQueue.push_back(N.Val);\n";
3589 OS << " std::push_heap(ISelQueue.begin(), ISelQueue.end(), isel_sort());\n";
3590 OS << " setQueued(Id);\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003591 OS << " }\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003592 OS << "}\n\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00003593
Chris Lattner706d2d32006-08-09 16:44:44 +00003594 OS << "inline void RemoveKilled() {\n";
3595OS << " unsigned NumKilled = ISelKilled.size();\n";
3596 OS << " if (NumKilled) {\n";
3597 OS << " for (unsigned i = 0; i != NumKilled; ++i) {\n";
3598 OS << " SDNode *Temp = ISelKilled[i];\n";
3599 OS << " std::remove(ISelQueue.begin(), ISelQueue.end(), Temp);\n";
3600 OS << " };\n";
3601 OS << " std::make_heap(ISelQueue.begin(), ISelQueue.end(), isel_sort());\n";
3602 OS << " ISelKilled.clear();\n";
3603 OS << " }\n";
3604 OS << "}\n\n";
3605
Chris Lattner8dc728e2006-08-27 13:16:24 +00003606 OS << "void ReplaceUses(SDOperand F, SDOperand T) DISABLE_INLINE {\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003607 OS << " CurDAG->ReplaceAllUsesOfValueWith(F, T, ISelKilled);\n";
3608 OS << " setSelected(F.Val->getNodeId());\n";
3609 OS << " RemoveKilled();\n";
Evan Cheng06d64702006-08-11 08:59:35 +00003610 OS << "}\n";
3611 OS << "inline void ReplaceUses(SDNode *F, SDNode *T) {\n";
3612 OS << " CurDAG->ReplaceAllUsesWith(F, T, &ISelKilled);\n";
3613 OS << " setSelected(F->getNodeId());\n";
3614 OS << " RemoveKilled();\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003615 OS << "}\n\n";
3616
Evan Cheng966fd372006-09-11 02:24:43 +00003617 OS << "void DeleteNode(SDNode *N) {\n";
3618 OS << " CurDAG->DeleteNode(N);\n";
3619 OS << " for (SDNode::op_iterator I = N->op_begin(), E = N->op_end(); "
3620 << "I != E; ++I) {\n";
3621 OS << " SDNode *Operand = I->Val;\n";
3622 OS << " if (Operand->use_empty())\n";
3623 OS << " DeleteNode(Operand);\n";
3624 OS << " }\n";
3625 OS << "}\n";
3626
Evan Chenge41bf822006-02-05 06:43:12 +00003627 OS << "// SelectRoot - Top level entry to DAG isel.\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003628 OS << "SDOperand SelectRoot(SDOperand Root) {\n";
3629 OS << " SelectRootInit();\n";
3630 OS << " unsigned NumBytes = (DAGSize + 7) / 8;\n";
3631 OS << " ISelQueued = new unsigned char[NumBytes];\n";
3632 OS << " ISelSelected = new unsigned char[NumBytes];\n";
3633 OS << " memset(ISelQueued, 0, NumBytes);\n";
3634 OS << " memset(ISelSelected, 0, NumBytes);\n";
3635 OS << "\n";
Chris Lattnerdfb86072006-08-15 23:42:26 +00003636 OS << " // Create a dummy node (which is not added to allnodes), that adds\n"
3637 << " // a reference to the root node, preventing it from being deleted,\n"
3638 << " // and tracking any changes of the root.\n"
3639 << " HandleSDNode Dummy(CurDAG->getRoot());\n"
3640 << " ISelQueue.push_back(CurDAG->getRoot().Val);\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003641 OS << " while (!ISelQueue.empty()) {\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003642 OS << " SDNode *Node = ISelQueue.front();\n";
3643 OS << " std::pop_heap(ISelQueue.begin(), ISelQueue.end(), isel_sort());\n";
3644 OS << " ISelQueue.pop_back();\n";
Evan Cheng06d64702006-08-11 08:59:35 +00003645 OS << " if (!isSelected(Node->getNodeId())) {\n";
Evan Cheng9ade2182006-08-26 05:34:46 +00003646 OS << " SDNode *ResNode = Select(SDOperand(Node, 0));\n";
Evan Cheng966fd372006-09-11 02:24:43 +00003647 OS << " if (ResNode != Node) {\n";
3648 OS << " if (ResNode)\n";
3649 OS << " ReplaceUses(Node, ResNode);\n";
3650 OS << " if (Node->use_empty()) // Don't delete EntryToken, etc.\n";
3651 OS << " DeleteNode(Node);\n";
3652 OS << " }\n";
Evan Cheng06d64702006-08-11 08:59:35 +00003653 OS << " }\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00003654 OS << " }\n";
3655 OS << "\n";
3656 OS << " delete[] ISelQueued;\n";
3657 OS << " ISelQueued = NULL;\n";
3658 OS << " delete[] ISelSelected;\n";
3659 OS << " ISelSelected = NULL;\n";
Chris Lattnerdfb86072006-08-15 23:42:26 +00003660 OS << " return Dummy.getValue();\n";
Evan Chenge41bf822006-02-05 06:43:12 +00003661 OS << "}\n";
Chris Lattner296dfe32005-09-24 00:50:51 +00003662
Chris Lattner550525e2006-03-24 21:48:51 +00003663 Intrinsics = LoadIntrinsics(Records);
Chris Lattnerca559d02005-09-08 21:03:01 +00003664 ParseNodeInfo();
Chris Lattner24eeeb82005-09-13 21:51:00 +00003665 ParseNodeTransforms(OS);
Evan Cheng0fc71982005-12-08 02:00:36 +00003666 ParseComplexPatterns();
Chris Lattnerb39e4be2005-09-15 02:38:02 +00003667 ParsePatternFragments(OS);
3668 ParseInstructions();
3669 ParsePatterns();
Chris Lattner3f7e9142005-09-23 20:52:47 +00003670
Chris Lattnere97603f2005-09-28 19:27:25 +00003671 // Generate variants. For example, commutative patterns can match
Chris Lattner3f7e9142005-09-23 20:52:47 +00003672 // multiple ways. Add them to PatternsToMatch as well.
Chris Lattnere97603f2005-09-28 19:27:25 +00003673 GenerateVariants();
Chris Lattnerb39e4be2005-09-15 02:38:02 +00003674
Chris Lattnere46e17b2005-09-29 19:28:10 +00003675
3676 DEBUG(std::cerr << "\n\nALL PATTERNS TO MATCH:\n\n";
3677 for (unsigned i = 0, e = PatternsToMatch.size(); i != e; ++i) {
Evan Cheng58e84a62005-12-14 22:02:59 +00003678 std::cerr << "PATTERN: "; PatternsToMatch[i].getSrcPattern()->dump();
3679 std::cerr << "\nRESULT: ";PatternsToMatch[i].getDstPattern()->dump();
Chris Lattnere46e17b2005-09-29 19:28:10 +00003680 std::cerr << "\n";
3681 });
3682
Chris Lattnerb9f01eb2005-09-16 00:29:46 +00003683 // At this point, we have full information about the 'Patterns' we need to
3684 // parse, both implicitly from instructions as well as from explicit pattern
Chris Lattnere97603f2005-09-28 19:27:25 +00003685 // definitions. Emit the resultant instruction selector.
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003686 EmitInstructionSelector(OS);
3687
3688 for (std::map<Record*, TreePattern*>::iterator I = PatternFragments.begin(),
3689 E = PatternFragments.end(); I != E; ++I)
3690 delete I->second;
3691 PatternFragments.clear();
3692
Chris Lattner54cb8fd2005-09-07 23:44:43 +00003693 Instructions.clear();
3694}