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Chris Lattnerfe718932008-01-06 01:10:31 +00001//===- CodeGenDAGPatterns.cpp - Read DAG patterns from .td file -----------===//
Chris Lattner6cefb772008-01-05 22:25:12 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Chris Lattnerfe718932008-01-06 01:10:31 +000010// This file implements the CodeGenDAGPatterns class, which is used to read and
Chris Lattner6cefb772008-01-05 22:25:12 +000011// represent the patterns present in a .td file for instructions.
12//
13//===----------------------------------------------------------------------===//
14
Chris Lattner93c7e412008-01-05 23:37:52 +000015#include "CodeGenDAGPatterns.h"
Chris Lattner6cefb772008-01-05 22:25:12 +000016#include "Record.h"
17#include "llvm/ADT/StringExtras.h"
18#include "llvm/Support/Debug.h"
Chris Lattner6cefb772008-01-05 22:25:12 +000019#include <set>
Chuck Rose III9a79de32008-01-15 21:43:17 +000020#include <algorithm>
Daniel Dunbar1a551802009-07-03 00:10:29 +000021#include <iostream>
Chris Lattner6cefb772008-01-05 22:25:12 +000022using namespace llvm;
23
24//===----------------------------------------------------------------------===//
25// Helpers for working with extended types.
26
27/// FilterVTs - Filter a list of VT's according to a predicate.
28///
29template<typename T>
Owen Anderson825b72b2009-08-11 20:47:22 +000030static std::vector<MVT::SimpleValueType>
31FilterVTs(const std::vector<MVT::SimpleValueType> &InVTs, T Filter) {
32 std::vector<MVT::SimpleValueType> Result;
Chris Lattner6cefb772008-01-05 22:25:12 +000033 for (unsigned i = 0, e = InVTs.size(); i != e; ++i)
34 if (Filter(InVTs[i]))
35 Result.push_back(InVTs[i]);
36 return Result;
37}
38
39template<typename T>
40static std::vector<unsigned char>
41FilterEVTs(const std::vector<unsigned char> &InVTs, T Filter) {
42 std::vector<unsigned char> Result;
43 for (unsigned i = 0, e = InVTs.size(); i != e; ++i)
Owen Anderson825b72b2009-08-11 20:47:22 +000044 if (Filter((MVT::SimpleValueType)InVTs[i]))
Chris Lattner6cefb772008-01-05 22:25:12 +000045 Result.push_back(InVTs[i]);
46 return Result;
47}
48
49static std::vector<unsigned char>
Owen Anderson825b72b2009-08-11 20:47:22 +000050ConvertVTs(const std::vector<MVT::SimpleValueType> &InVTs) {
Chris Lattner6cefb772008-01-05 22:25:12 +000051 std::vector<unsigned char> Result;
52 for (unsigned i = 0, e = InVTs.size(); i != e; ++i)
53 Result.push_back(InVTs[i]);
54 return Result;
55}
56
Owen Anderson825b72b2009-08-11 20:47:22 +000057static inline bool isInteger(MVT::SimpleValueType VT) {
Owen Andersone50ed302009-08-10 22:56:29 +000058 return EVT(VT).isInteger();
Duncan Sands83ec4b62008-06-06 12:08:01 +000059}
60
Owen Anderson825b72b2009-08-11 20:47:22 +000061static inline bool isFloatingPoint(MVT::SimpleValueType VT) {
Owen Andersone50ed302009-08-10 22:56:29 +000062 return EVT(VT).isFloatingPoint();
Duncan Sands83ec4b62008-06-06 12:08:01 +000063}
64
Owen Anderson825b72b2009-08-11 20:47:22 +000065static inline bool isVector(MVT::SimpleValueType VT) {
Owen Andersone50ed302009-08-10 22:56:29 +000066 return EVT(VT).isVector();
Duncan Sands83ec4b62008-06-06 12:08:01 +000067}
68
Chris Lattner6cefb772008-01-05 22:25:12 +000069static bool LHSIsSubsetOfRHS(const std::vector<unsigned char> &LHS,
70 const std::vector<unsigned char> &RHS) {
71 if (LHS.size() > RHS.size()) return false;
72 for (unsigned i = 0, e = LHS.size(); i != e; ++i)
73 if (std::find(RHS.begin(), RHS.end(), LHS[i]) == RHS.end())
74 return false;
75 return true;
76}
77
Chris Lattner6cefb772008-01-05 22:25:12 +000078namespace llvm {
Owen Andersone50ed302009-08-10 22:56:29 +000079namespace EEVT {
Dan Gohman4b6fce42009-03-31 16:48:35 +000080/// isExtIntegerInVTs - Return true if the specified extended value type vector
Bob Wilsoncdfa01b2009-08-29 05:53:25 +000081/// contains iAny or an integer value type.
Chris Lattner6cefb772008-01-05 22:25:12 +000082bool isExtIntegerInVTs(const std::vector<unsigned char> &EVTs) {
83 assert(!EVTs.empty() && "Cannot check for integer in empty ExtVT list!");
Bob Wilsoncdfa01b2009-08-29 05:53:25 +000084 return EVTs[0] == MVT::iAny || !(FilterEVTs(EVTs, isInteger).empty());
Chris Lattner6cefb772008-01-05 22:25:12 +000085}
86
Dan Gohman4b6fce42009-03-31 16:48:35 +000087/// isExtFloatingPointInVTs - Return true if the specified extended value type
Bob Wilsoncdfa01b2009-08-29 05:53:25 +000088/// vector contains fAny or a FP value type.
Chris Lattner6cefb772008-01-05 22:25:12 +000089bool isExtFloatingPointInVTs(const std::vector<unsigned char> &EVTs) {
Bob Wilson61fc4cf2009-08-11 01:14:02 +000090 assert(!EVTs.empty() && "Cannot check for FP in empty ExtVT list!");
Bob Wilsoncdfa01b2009-08-29 05:53:25 +000091 return EVTs[0] == MVT::fAny || !(FilterEVTs(EVTs, isFloatingPoint).empty());
Chris Lattner6cefb772008-01-05 22:25:12 +000092}
Bob Wilson61fc4cf2009-08-11 01:14:02 +000093
94/// isExtVectorInVTs - Return true if the specified extended value type
Bob Wilsoncdfa01b2009-08-29 05:53:25 +000095/// vector contains vAny or a vector value type.
Bob Wilson61fc4cf2009-08-11 01:14:02 +000096bool isExtVectorInVTs(const std::vector<unsigned char> &EVTs) {
97 assert(!EVTs.empty() && "Cannot check for vector in empty ExtVT list!");
Bob Wilsoncdfa01b2009-08-29 05:53:25 +000098 return EVTs[0] == MVT::vAny || !(FilterEVTs(EVTs, isVector).empty());
Bob Wilson61fc4cf2009-08-11 01:14:02 +000099}
Owen Andersone50ed302009-08-10 22:56:29 +0000100} // end namespace EEVT.
Chris Lattner6cefb772008-01-05 22:25:12 +0000101} // end namespace llvm.
102
Daniel Dunbar6f5cc822009-08-23 09:47:37 +0000103bool RecordPtrCmp::operator()(const Record *LHS, const Record *RHS) const {
104 return LHS->getID() < RHS->getID();
105}
Scott Michel327d0652008-03-05 17:49:05 +0000106
107/// Dependent variable map for CodeGenDAGPattern variant generation
108typedef std::map<std::string, int> DepVarMap;
109
110/// Const iterator shorthand for DepVarMap
111typedef DepVarMap::const_iterator DepVarMap_citer;
112
113namespace {
114void FindDepVarsOf(TreePatternNode *N, DepVarMap &DepMap) {
115 if (N->isLeaf()) {
116 if (dynamic_cast<DefInit*>(N->getLeafValue()) != NULL) {
117 DepMap[N->getName()]++;
118 }
119 } else {
120 for (size_t i = 0, e = N->getNumChildren(); i != e; ++i)
121 FindDepVarsOf(N->getChild(i), DepMap);
122 }
123}
124
125//! Find dependent variables within child patterns
126/*!
127 */
128void FindDepVars(TreePatternNode *N, MultipleUseVarSet &DepVars) {
129 DepVarMap depcounts;
130 FindDepVarsOf(N, depcounts);
131 for (DepVarMap_citer i = depcounts.begin(); i != depcounts.end(); ++i) {
132 if (i->second > 1) { // std::pair<std::string, int>
133 DepVars.insert(i->first);
134 }
135 }
136}
137
138//! Dump the dependent variable set:
139void DumpDepVars(MultipleUseVarSet &DepVars) {
140 if (DepVars.empty()) {
Chris Lattner569f1212009-08-23 04:44:11 +0000141 DEBUG(errs() << "<empty set>");
Scott Michel327d0652008-03-05 17:49:05 +0000142 } else {
Chris Lattner569f1212009-08-23 04:44:11 +0000143 DEBUG(errs() << "[ ");
Scott Michel327d0652008-03-05 17:49:05 +0000144 for (MultipleUseVarSet::const_iterator i = DepVars.begin(), e = DepVars.end();
145 i != e; ++i) {
Chris Lattner569f1212009-08-23 04:44:11 +0000146 DEBUG(errs() << (*i) << " ");
Scott Michel327d0652008-03-05 17:49:05 +0000147 }
Chris Lattner569f1212009-08-23 04:44:11 +0000148 DEBUG(errs() << "]");
Scott Michel327d0652008-03-05 17:49:05 +0000149 }
150}
151}
152
Chris Lattner6cefb772008-01-05 22:25:12 +0000153//===----------------------------------------------------------------------===//
Dan Gohman22bb3112008-08-22 00:20:26 +0000154// PatternToMatch implementation
155//
156
157/// getPredicateCheck - Return a single string containing all of this
158/// pattern's predicates concatenated with "&&" operators.
159///
160std::string PatternToMatch::getPredicateCheck() const {
161 std::string PredicateCheck;
162 for (unsigned i = 0, e = Predicates->getSize(); i != e; ++i) {
163 if (DefInit *Pred = dynamic_cast<DefInit*>(Predicates->getElement(i))) {
164 Record *Def = Pred->getDef();
165 if (!Def->isSubClassOf("Predicate")) {
166#ifndef NDEBUG
167 Def->dump();
168#endif
169 assert(0 && "Unknown predicate type!");
170 }
171 if (!PredicateCheck.empty())
172 PredicateCheck += " && ";
173 PredicateCheck += "(" + Def->getValueAsString("CondString") + ")";
174 }
175 }
176
177 return PredicateCheck;
178}
179
180//===----------------------------------------------------------------------===//
Chris Lattner6cefb772008-01-05 22:25:12 +0000181// SDTypeConstraint implementation
182//
183
184SDTypeConstraint::SDTypeConstraint(Record *R) {
185 OperandNo = R->getValueAsInt("OperandNum");
186
187 if (R->isSubClassOf("SDTCisVT")) {
188 ConstraintType = SDTCisVT;
189 x.SDTCisVT_Info.VT = getValueType(R->getValueAsDef("VT"));
190 } else if (R->isSubClassOf("SDTCisPtrTy")) {
191 ConstraintType = SDTCisPtrTy;
192 } else if (R->isSubClassOf("SDTCisInt")) {
193 ConstraintType = SDTCisInt;
194 } else if (R->isSubClassOf("SDTCisFP")) {
195 ConstraintType = SDTCisFP;
Bob Wilson36e3e662009-08-12 22:30:59 +0000196 } else if (R->isSubClassOf("SDTCisVec")) {
197 ConstraintType = SDTCisVec;
Chris Lattner6cefb772008-01-05 22:25:12 +0000198 } else if (R->isSubClassOf("SDTCisSameAs")) {
199 ConstraintType = SDTCisSameAs;
200 x.SDTCisSameAs_Info.OtherOperandNum = R->getValueAsInt("OtherOperandNum");
201 } else if (R->isSubClassOf("SDTCisVTSmallerThanOp")) {
202 ConstraintType = SDTCisVTSmallerThanOp;
203 x.SDTCisVTSmallerThanOp_Info.OtherOperandNum =
204 R->getValueAsInt("OtherOperandNum");
205 } else if (R->isSubClassOf("SDTCisOpSmallerThanOp")) {
206 ConstraintType = SDTCisOpSmallerThanOp;
207 x.SDTCisOpSmallerThanOp_Info.BigOperandNum =
208 R->getValueAsInt("BigOperandNum");
Nate Begemanb5af3342008-02-09 01:37:05 +0000209 } else if (R->isSubClassOf("SDTCisEltOfVec")) {
210 ConstraintType = SDTCisEltOfVec;
211 x.SDTCisEltOfVec_Info.OtherOperandNum =
212 R->getValueAsInt("OtherOpNum");
Chris Lattner6cefb772008-01-05 22:25:12 +0000213 } else {
Daniel Dunbar1a551802009-07-03 00:10:29 +0000214 errs() << "Unrecognized SDTypeConstraint '" << R->getName() << "'!\n";
Chris Lattner6cefb772008-01-05 22:25:12 +0000215 exit(1);
216 }
217}
218
219/// getOperandNum - Return the node corresponding to operand #OpNo in tree
220/// N, which has NumResults results.
221TreePatternNode *SDTypeConstraint::getOperandNum(unsigned OpNo,
222 TreePatternNode *N,
223 unsigned NumResults) const {
224 assert(NumResults <= 1 &&
225 "We only work with nodes with zero or one result so far!");
226
227 if (OpNo >= (NumResults + N->getNumChildren())) {
Daniel Dunbar1a551802009-07-03 00:10:29 +0000228 errs() << "Invalid operand number " << OpNo << " ";
Chris Lattner6cefb772008-01-05 22:25:12 +0000229 N->dump();
Daniel Dunbar1a551802009-07-03 00:10:29 +0000230 errs() << '\n';
Chris Lattner6cefb772008-01-05 22:25:12 +0000231 exit(1);
232 }
233
234 if (OpNo < NumResults)
235 return N; // FIXME: need value #
236 else
237 return N->getChild(OpNo-NumResults);
238}
239
240/// ApplyTypeConstraint - Given a node in a pattern, apply this type
241/// constraint to the nodes operands. This returns true if it makes a
242/// change, false otherwise. If a type contradiction is found, throw an
243/// exception.
244bool SDTypeConstraint::ApplyTypeConstraint(TreePatternNode *N,
245 const SDNodeInfo &NodeInfo,
246 TreePattern &TP) const {
247 unsigned NumResults = NodeInfo.getNumResults();
248 assert(NumResults <= 1 &&
249 "We only work with nodes with zero or one result so far!");
250
251 // Check that the number of operands is sane. Negative operands -> varargs.
252 if (NodeInfo.getNumOperands() >= 0) {
253 if (N->getNumChildren() != (unsigned)NodeInfo.getNumOperands())
254 TP.error(N->getOperator()->getName() + " node requires exactly " +
255 itostr(NodeInfo.getNumOperands()) + " operands!");
256 }
257
258 const CodeGenTarget &CGT = TP.getDAGPatterns().getTargetInfo();
259
260 TreePatternNode *NodeToApply = getOperandNum(OperandNo, N, NumResults);
261
262 switch (ConstraintType) {
263 default: assert(0 && "Unknown constraint type!");
264 case SDTCisVT:
265 // Operand must be a particular type.
266 return NodeToApply->UpdateNodeType(x.SDTCisVT_Info.VT, TP);
267 case SDTCisPtrTy: {
268 // Operand must be same as target pointer type.
Owen Anderson825b72b2009-08-11 20:47:22 +0000269 return NodeToApply->UpdateNodeType(MVT::iPTR, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000270 }
271 case SDTCisInt: {
272 // If there is only one integer type supported, this must be it.
Owen Anderson825b72b2009-08-11 20:47:22 +0000273 std::vector<MVT::SimpleValueType> IntVTs =
Duncan Sands83ec4b62008-06-06 12:08:01 +0000274 FilterVTs(CGT.getLegalValueTypes(), isInteger);
Chris Lattner6cefb772008-01-05 22:25:12 +0000275
276 // If we found exactly one supported integer type, apply it.
277 if (IntVTs.size() == 1)
278 return NodeToApply->UpdateNodeType(IntVTs[0], TP);
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000279 return NodeToApply->UpdateNodeType(MVT::iAny, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000280 }
281 case SDTCisFP: {
282 // If there is only one FP type supported, this must be it.
Owen Anderson825b72b2009-08-11 20:47:22 +0000283 std::vector<MVT::SimpleValueType> FPVTs =
Duncan Sands83ec4b62008-06-06 12:08:01 +0000284 FilterVTs(CGT.getLegalValueTypes(), isFloatingPoint);
Chris Lattner6cefb772008-01-05 22:25:12 +0000285
286 // If we found exactly one supported FP type, apply it.
287 if (FPVTs.size() == 1)
288 return NodeToApply->UpdateNodeType(FPVTs[0], TP);
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000289 return NodeToApply->UpdateNodeType(MVT::fAny, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000290 }
Bob Wilson36e3e662009-08-12 22:30:59 +0000291 case SDTCisVec: {
292 // If there is only one vector type supported, this must be it.
293 std::vector<MVT::SimpleValueType> VecVTs =
294 FilterVTs(CGT.getLegalValueTypes(), isVector);
295
296 // If we found exactly one supported vector type, apply it.
297 if (VecVTs.size() == 1)
298 return NodeToApply->UpdateNodeType(VecVTs[0], TP);
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000299 return NodeToApply->UpdateNodeType(MVT::vAny, TP);
Bob Wilson36e3e662009-08-12 22:30:59 +0000300 }
Chris Lattner6cefb772008-01-05 22:25:12 +0000301 case SDTCisSameAs: {
302 TreePatternNode *OtherNode =
303 getOperandNum(x.SDTCisSameAs_Info.OtherOperandNum, N, NumResults);
304 return NodeToApply->UpdateNodeType(OtherNode->getExtTypes(), TP) |
305 OtherNode->UpdateNodeType(NodeToApply->getExtTypes(), TP);
306 }
307 case SDTCisVTSmallerThanOp: {
308 // The NodeToApply must be a leaf node that is a VT. OtherOperandNum must
309 // have an integer type that is smaller than the VT.
310 if (!NodeToApply->isLeaf() ||
311 !dynamic_cast<DefInit*>(NodeToApply->getLeafValue()) ||
312 !static_cast<DefInit*>(NodeToApply->getLeafValue())->getDef()
313 ->isSubClassOf("ValueType"))
314 TP.error(N->getOperator()->getName() + " expects a VT operand!");
Owen Anderson825b72b2009-08-11 20:47:22 +0000315 MVT::SimpleValueType VT =
Chris Lattner6cefb772008-01-05 22:25:12 +0000316 getValueType(static_cast<DefInit*>(NodeToApply->getLeafValue())->getDef());
Duncan Sands83ec4b62008-06-06 12:08:01 +0000317 if (!isInteger(VT))
Chris Lattner6cefb772008-01-05 22:25:12 +0000318 TP.error(N->getOperator()->getName() + " VT operand must be integer!");
319
320 TreePatternNode *OtherNode =
321 getOperandNum(x.SDTCisVTSmallerThanOp_Info.OtherOperandNum, N,NumResults);
322
323 // It must be integer.
Bill Wendling7529ece2009-12-25 13:35:40 +0000324 bool MadeChange = OtherNode->UpdateNodeType(MVT::iAny, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000325
326 // This code only handles nodes that have one type set. Assert here so
327 // that we can change this if we ever need to deal with multiple value
328 // types at this point.
329 assert(OtherNode->getExtTypes().size() == 1 && "Node has too many types!");
330 if (OtherNode->hasTypeSet() && OtherNode->getTypeNum(0) <= VT)
Owen Anderson825b72b2009-08-11 20:47:22 +0000331 OtherNode->UpdateNodeType(MVT::Other, TP); // Throw an error.
Bill Wendling7529ece2009-12-25 13:35:40 +0000332 return MadeChange;
Chris Lattner6cefb772008-01-05 22:25:12 +0000333 }
334 case SDTCisOpSmallerThanOp: {
335 TreePatternNode *BigOperand =
336 getOperandNum(x.SDTCisOpSmallerThanOp_Info.BigOperandNum, N, NumResults);
337
338 // Both operands must be integer or FP, but we don't care which.
339 bool MadeChange = false;
340
341 // This code does not currently handle nodes which have multiple types,
342 // where some types are integer, and some are fp. Assert that this is not
343 // the case.
Owen Andersone50ed302009-08-10 22:56:29 +0000344 assert(!(EEVT::isExtIntegerInVTs(NodeToApply->getExtTypes()) &&
345 EEVT::isExtFloatingPointInVTs(NodeToApply->getExtTypes())) &&
346 !(EEVT::isExtIntegerInVTs(BigOperand->getExtTypes()) &&
347 EEVT::isExtFloatingPointInVTs(BigOperand->getExtTypes())) &&
Chris Lattner6cefb772008-01-05 22:25:12 +0000348 "SDTCisOpSmallerThanOp does not handle mixed int/fp types!");
Owen Andersone50ed302009-08-10 22:56:29 +0000349 if (EEVT::isExtIntegerInVTs(NodeToApply->getExtTypes()))
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000350 MadeChange |= BigOperand->UpdateNodeType(MVT::iAny, TP);
Owen Andersone50ed302009-08-10 22:56:29 +0000351 else if (EEVT::isExtFloatingPointInVTs(NodeToApply->getExtTypes()))
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000352 MadeChange |= BigOperand->UpdateNodeType(MVT::fAny, TP);
Owen Andersone50ed302009-08-10 22:56:29 +0000353 if (EEVT::isExtIntegerInVTs(BigOperand->getExtTypes()))
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000354 MadeChange |= NodeToApply->UpdateNodeType(MVT::iAny, TP);
Owen Andersone50ed302009-08-10 22:56:29 +0000355 else if (EEVT::isExtFloatingPointInVTs(BigOperand->getExtTypes()))
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000356 MadeChange |= NodeToApply->UpdateNodeType(MVT::fAny, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000357
Owen Anderson825b72b2009-08-11 20:47:22 +0000358 std::vector<MVT::SimpleValueType> VTs = CGT.getLegalValueTypes();
Duncan Sands83ec4b62008-06-06 12:08:01 +0000359
Owen Andersone50ed302009-08-10 22:56:29 +0000360 if (EEVT::isExtIntegerInVTs(NodeToApply->getExtTypes())) {
Duncan Sands83ec4b62008-06-06 12:08:01 +0000361 VTs = FilterVTs(VTs, isInteger);
Owen Andersone50ed302009-08-10 22:56:29 +0000362 } else if (EEVT::isExtFloatingPointInVTs(NodeToApply->getExtTypes())) {
Duncan Sands83ec4b62008-06-06 12:08:01 +0000363 VTs = FilterVTs(VTs, isFloatingPoint);
Chris Lattner6cefb772008-01-05 22:25:12 +0000364 } else {
365 VTs.clear();
366 }
367
368 switch (VTs.size()) {
369 default: // Too many VT's to pick from.
370 case 0: break; // No info yet.
371 case 1:
Jim Grosbachda4231f2009-03-26 16:17:51 +0000372 // Only one VT of this flavor. Cannot ever satisfy the constraints.
Owen Anderson825b72b2009-08-11 20:47:22 +0000373 return NodeToApply->UpdateNodeType(MVT::Other, TP); // throw
Chris Lattner6cefb772008-01-05 22:25:12 +0000374 case 2:
375 // If we have exactly two possible types, the little operand must be the
376 // small one, the big operand should be the big one. Common with
377 // float/double for example.
378 assert(VTs[0] < VTs[1] && "Should be sorted!");
379 MadeChange |= NodeToApply->UpdateNodeType(VTs[0], TP);
380 MadeChange |= BigOperand->UpdateNodeType(VTs[1], TP);
381 break;
382 }
383 return MadeChange;
384 }
Nate Begemanb5af3342008-02-09 01:37:05 +0000385 case SDTCisEltOfVec: {
386 TreePatternNode *OtherOperand =
Nate Begeman9008ca62009-04-27 18:41:29 +0000387 getOperandNum(x.SDTCisEltOfVec_Info.OtherOperandNum,
Nate Begemanb5af3342008-02-09 01:37:05 +0000388 N, NumResults);
389 if (OtherOperand->hasTypeSet()) {
Duncan Sands83ec4b62008-06-06 12:08:01 +0000390 if (!isVector(OtherOperand->getTypeNum(0)))
Nate Begemanb5af3342008-02-09 01:37:05 +0000391 TP.error(N->getOperator()->getName() + " VT operand must be a vector!");
Owen Andersone50ed302009-08-10 22:56:29 +0000392 EVT IVT = OtherOperand->getTypeNum(0);
Duncan Sands83ec4b62008-06-06 12:08:01 +0000393 IVT = IVT.getVectorElementType();
Owen Anderson825b72b2009-08-11 20:47:22 +0000394 return NodeToApply->UpdateNodeType(IVT.getSimpleVT().SimpleTy, TP);
Nate Begemanb5af3342008-02-09 01:37:05 +0000395 }
396 return false;
397 }
Chris Lattner6cefb772008-01-05 22:25:12 +0000398 }
399 return false;
400}
401
402//===----------------------------------------------------------------------===//
403// SDNodeInfo implementation
404//
405SDNodeInfo::SDNodeInfo(Record *R) : Def(R) {
406 EnumName = R->getValueAsString("Opcode");
407 SDClassName = R->getValueAsString("SDClass");
408 Record *TypeProfile = R->getValueAsDef("TypeProfile");
409 NumResults = TypeProfile->getValueAsInt("NumResults");
410 NumOperands = TypeProfile->getValueAsInt("NumOperands");
411
412 // Parse the properties.
413 Properties = 0;
414 std::vector<Record*> PropList = R->getValueAsListOfDefs("Properties");
415 for (unsigned i = 0, e = PropList.size(); i != e; ++i) {
416 if (PropList[i]->getName() == "SDNPCommutative") {
417 Properties |= 1 << SDNPCommutative;
418 } else if (PropList[i]->getName() == "SDNPAssociative") {
419 Properties |= 1 << SDNPAssociative;
420 } else if (PropList[i]->getName() == "SDNPHasChain") {
421 Properties |= 1 << SDNPHasChain;
422 } else if (PropList[i]->getName() == "SDNPOutFlag") {
Dale Johannesen874ae252009-06-02 03:12:52 +0000423 Properties |= 1 << SDNPOutFlag;
Chris Lattner6cefb772008-01-05 22:25:12 +0000424 } else if (PropList[i]->getName() == "SDNPInFlag") {
425 Properties |= 1 << SDNPInFlag;
426 } else if (PropList[i]->getName() == "SDNPOptInFlag") {
427 Properties |= 1 << SDNPOptInFlag;
Chris Lattnerc8478d82008-01-06 06:44:58 +0000428 } else if (PropList[i]->getName() == "SDNPMayStore") {
429 Properties |= 1 << SDNPMayStore;
Chris Lattner710e9952008-01-10 04:38:57 +0000430 } else if (PropList[i]->getName() == "SDNPMayLoad") {
431 Properties |= 1 << SDNPMayLoad;
Chris Lattnerbc0b9f72008-01-10 05:39:30 +0000432 } else if (PropList[i]->getName() == "SDNPSideEffect") {
433 Properties |= 1 << SDNPSideEffect;
Mon P Wang28873102008-06-25 08:15:39 +0000434 } else if (PropList[i]->getName() == "SDNPMemOperand") {
435 Properties |= 1 << SDNPMemOperand;
Chris Lattner6cefb772008-01-05 22:25:12 +0000436 } else {
Daniel Dunbar1a551802009-07-03 00:10:29 +0000437 errs() << "Unknown SD Node property '" << PropList[i]->getName()
438 << "' on node '" << R->getName() << "'!\n";
Chris Lattner6cefb772008-01-05 22:25:12 +0000439 exit(1);
440 }
441 }
442
443
444 // Parse the type constraints.
445 std::vector<Record*> ConstraintList =
446 TypeProfile->getValueAsListOfDefs("Constraints");
447 TypeConstraints.assign(ConstraintList.begin(), ConstraintList.end());
448}
449
Chris Lattner22579812010-02-28 00:22:30 +0000450/// getKnownType - If the type constraints on this node imply a fixed type
451/// (e.g. all stores return void, etc), then return it as an
452/// MVT::SimpleValueType. Otherwise, return EEVT::isUnknown.
453unsigned SDNodeInfo::getKnownType() const {
454 unsigned NumResults = getNumResults();
455 assert(NumResults <= 1 &&
456 "We only work with nodes with zero or one result so far!");
457
458 for (unsigned i = 0, e = TypeConstraints.size(); i != e; ++i) {
459 // Make sure that this applies to the correct node result.
460 if (TypeConstraints[i].OperandNo >= NumResults) // FIXME: need value #
461 continue;
462
463 switch (TypeConstraints[i].ConstraintType) {
464 default: break;
465 case SDTypeConstraint::SDTCisVT:
466 return TypeConstraints[i].x.SDTCisVT_Info.VT;
467 case SDTypeConstraint::SDTCisPtrTy:
468 return MVT::iPTR;
469 }
470 }
471 return EEVT::isUnknown;
472}
473
Chris Lattner6cefb772008-01-05 22:25:12 +0000474//===----------------------------------------------------------------------===//
475// TreePatternNode implementation
476//
477
478TreePatternNode::~TreePatternNode() {
479#if 0 // FIXME: implement refcounted tree nodes!
480 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
481 delete getChild(i);
482#endif
483}
484
485/// UpdateNodeType - Set the node type of N to VT if VT contains
486/// information. If N already contains a conflicting type, then throw an
487/// exception. This returns true if any information was updated.
488///
489bool TreePatternNode::UpdateNodeType(const std::vector<unsigned char> &ExtVTs,
490 TreePattern &TP) {
491 assert(!ExtVTs.empty() && "Cannot update node type with empty type vector!");
492
Owen Andersone50ed302009-08-10 22:56:29 +0000493 if (ExtVTs[0] == EEVT::isUnknown || LHSIsSubsetOfRHS(getExtTypes(), ExtVTs))
Chris Lattner6cefb772008-01-05 22:25:12 +0000494 return false;
495 if (isTypeCompletelyUnknown() || LHSIsSubsetOfRHS(ExtVTs, getExtTypes())) {
496 setTypes(ExtVTs);
497 return true;
498 }
499
Owen Anderson825b72b2009-08-11 20:47:22 +0000500 if (getExtTypeNum(0) == MVT::iPTR || getExtTypeNum(0) == MVT::iPTRAny) {
501 if (ExtVTs[0] == MVT::iPTR || ExtVTs[0] == MVT::iPTRAny ||
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000502 ExtVTs[0] == MVT::iAny)
Chris Lattner6cefb772008-01-05 22:25:12 +0000503 return false;
Owen Andersone50ed302009-08-10 22:56:29 +0000504 if (EEVT::isExtIntegerInVTs(ExtVTs)) {
Duncan Sands83ec4b62008-06-06 12:08:01 +0000505 std::vector<unsigned char> FVTs = FilterEVTs(ExtVTs, isInteger);
Chris Lattner6cefb772008-01-05 22:25:12 +0000506 if (FVTs.size()) {
507 setTypes(ExtVTs);
508 return true;
509 }
510 }
511 }
Bob Wilsone035fa52009-01-05 17:52:54 +0000512
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000513 // Merge vAny with iAny/fAny. The latter include vector types so keep them
514 // as the more specific information.
515 if (ExtVTs[0] == MVT::vAny &&
516 (getExtTypeNum(0) == MVT::iAny || getExtTypeNum(0) == MVT::fAny))
517 return false;
518 if (getExtTypeNum(0) == MVT::vAny &&
519 (ExtVTs[0] == MVT::iAny || ExtVTs[0] == MVT::fAny)) {
520 setTypes(ExtVTs);
521 return true;
522 }
523
524 if (ExtVTs[0] == MVT::iAny &&
Owen Andersone50ed302009-08-10 22:56:29 +0000525 EEVT::isExtIntegerInVTs(getExtTypes())) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000526 assert(hasTypeSet() && "should be handled above!");
Duncan Sands83ec4b62008-06-06 12:08:01 +0000527 std::vector<unsigned char> FVTs = FilterEVTs(getExtTypes(), isInteger);
Chris Lattner6cefb772008-01-05 22:25:12 +0000528 if (getExtTypes() == FVTs)
529 return false;
530 setTypes(FVTs);
531 return true;
532 }
Owen Anderson825b72b2009-08-11 20:47:22 +0000533 if ((ExtVTs[0] == MVT::iPTR || ExtVTs[0] == MVT::iPTRAny) &&
Owen Andersone50ed302009-08-10 22:56:29 +0000534 EEVT::isExtIntegerInVTs(getExtTypes())) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000535 //assert(hasTypeSet() && "should be handled above!");
Duncan Sands83ec4b62008-06-06 12:08:01 +0000536 std::vector<unsigned char> FVTs = FilterEVTs(getExtTypes(), isInteger);
Chris Lattner6cefb772008-01-05 22:25:12 +0000537 if (getExtTypes() == FVTs)
538 return false;
539 if (FVTs.size()) {
540 setTypes(FVTs);
541 return true;
542 }
543 }
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000544 if (ExtVTs[0] == MVT::fAny &&
Owen Andersone50ed302009-08-10 22:56:29 +0000545 EEVT::isExtFloatingPointInVTs(getExtTypes())) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000546 assert(hasTypeSet() && "should be handled above!");
547 std::vector<unsigned char> FVTs =
Duncan Sands83ec4b62008-06-06 12:08:01 +0000548 FilterEVTs(getExtTypes(), isFloatingPoint);
Chris Lattner6cefb772008-01-05 22:25:12 +0000549 if (getExtTypes() == FVTs)
550 return false;
551 setTypes(FVTs);
552 return true;
553 }
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000554 if (ExtVTs[0] == MVT::vAny &&
Bob Wilson36e3e662009-08-12 22:30:59 +0000555 EEVT::isExtVectorInVTs(getExtTypes())) {
Bob Wilson61fc4cf2009-08-11 01:14:02 +0000556 assert(hasTypeSet() && "should be handled above!");
557 std::vector<unsigned char> FVTs = FilterEVTs(getExtTypes(), isVector);
558 if (getExtTypes() == FVTs)
559 return false;
560 setTypes(FVTs);
561 return true;
562 }
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000563
Bob Wilson36e3e662009-08-12 22:30:59 +0000564 // If we know this is an int, FP, or vector type, and we are told it is a
565 // specific one, take the advice.
Chris Lattner6cefb772008-01-05 22:25:12 +0000566 //
567 // Similarly, we should probably set the type here to the intersection of
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000568 // {iAny|fAny|vAny} and ExtVTs
569 if ((getExtTypeNum(0) == MVT::iAny &&
Owen Andersone50ed302009-08-10 22:56:29 +0000570 EEVT::isExtIntegerInVTs(ExtVTs)) ||
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000571 (getExtTypeNum(0) == MVT::fAny &&
Bob Wilson61fc4cf2009-08-11 01:14:02 +0000572 EEVT::isExtFloatingPointInVTs(ExtVTs)) ||
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000573 (getExtTypeNum(0) == MVT::vAny &&
Bob Wilson61fc4cf2009-08-11 01:14:02 +0000574 EEVT::isExtVectorInVTs(ExtVTs))) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000575 setTypes(ExtVTs);
576 return true;
577 }
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000578 if (getExtTypeNum(0) == MVT::iAny &&
Owen Anderson825b72b2009-08-11 20:47:22 +0000579 (ExtVTs[0] == MVT::iPTR || ExtVTs[0] == MVT::iPTRAny)) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000580 setTypes(ExtVTs);
581 return true;
582 }
583
584 if (isLeaf()) {
585 dump();
Daniel Dunbar1a551802009-07-03 00:10:29 +0000586 errs() << " ";
Chris Lattner6cefb772008-01-05 22:25:12 +0000587 TP.error("Type inference contradiction found in node!");
588 } else {
589 TP.error("Type inference contradiction found in node " +
590 getOperator()->getName() + "!");
591 }
592 return true; // unreachable
593}
594
Chris Lattnerba1cff42010-02-23 07:50:58 +0000595static std::string GetTypeName(unsigned char TypeID) {
596 switch (TypeID) {
597 case MVT::Other: return "Other";
598 case MVT::iAny: return "iAny";
599 case MVT::fAny: return "fAny";
600 case MVT::vAny: return "vAny";
601 case EEVT::isUnknown: return "isUnknown";
602 case MVT::iPTR: return "iPTR";
603 case MVT::iPTRAny: return "iPTRAny";
604 default:
605 std::string VTName = llvm::getName((MVT::SimpleValueType)TypeID);
606 // Strip off EVT:: prefix if present.
607 if (VTName.substr(0,5) == "MVT::")
608 VTName = VTName.substr(5);
609 return VTName;
610 }
611}
612
Chris Lattner6cefb772008-01-05 22:25:12 +0000613
Daniel Dunbar1a551802009-07-03 00:10:29 +0000614void TreePatternNode::print(raw_ostream &OS) const {
Chris Lattner6cefb772008-01-05 22:25:12 +0000615 if (isLeaf()) {
616 OS << *getLeafValue();
617 } else {
Chris Lattnerba1cff42010-02-23 07:50:58 +0000618 OS << '(' << getOperator()->getName();
Chris Lattner6cefb772008-01-05 22:25:12 +0000619 }
620
621 // FIXME: At some point we should handle printing all the value types for
622 // nodes that are multiply typed.
Chris Lattnerba1cff42010-02-23 07:50:58 +0000623 if (getExtTypeNum(0) != EEVT::isUnknown)
624 OS << ':' << GetTypeName(getExtTypeNum(0));
Chris Lattner6cefb772008-01-05 22:25:12 +0000625
626 if (!isLeaf()) {
627 if (getNumChildren() != 0) {
628 OS << " ";
629 getChild(0)->print(OS);
630 for (unsigned i = 1, e = getNumChildren(); i != e; ++i) {
631 OS << ", ";
632 getChild(i)->print(OS);
633 }
634 }
635 OS << ")";
636 }
637
Dan Gohman0540e172008-10-15 06:17:21 +0000638 for (unsigned i = 0, e = PredicateFns.size(); i != e; ++i)
639 OS << "<<P:" << PredicateFns[i] << ">>";
Chris Lattner6cefb772008-01-05 22:25:12 +0000640 if (TransformFn)
641 OS << "<<X:" << TransformFn->getName() << ">>";
642 if (!getName().empty())
643 OS << ":$" << getName();
644
645}
646void TreePatternNode::dump() const {
Daniel Dunbar1a551802009-07-03 00:10:29 +0000647 print(errs());
Chris Lattner6cefb772008-01-05 22:25:12 +0000648}
649
Scott Michel327d0652008-03-05 17:49:05 +0000650/// isIsomorphicTo - Return true if this node is recursively
651/// isomorphic to the specified node. For this comparison, the node's
652/// entire state is considered. The assigned name is ignored, since
653/// nodes with differing names are considered isomorphic. However, if
654/// the assigned name is present in the dependent variable set, then
655/// the assigned name is considered significant and the node is
656/// isomorphic if the names match.
657bool TreePatternNode::isIsomorphicTo(const TreePatternNode *N,
658 const MultipleUseVarSet &DepVars) const {
Chris Lattner6cefb772008-01-05 22:25:12 +0000659 if (N == this) return true;
660 if (N->isLeaf() != isLeaf() || getExtTypes() != N->getExtTypes() ||
Dan Gohman0540e172008-10-15 06:17:21 +0000661 getPredicateFns() != N->getPredicateFns() ||
Chris Lattner6cefb772008-01-05 22:25:12 +0000662 getTransformFn() != N->getTransformFn())
663 return false;
664
665 if (isLeaf()) {
Scott Michel327d0652008-03-05 17:49:05 +0000666 if (DefInit *DI = dynamic_cast<DefInit*>(getLeafValue())) {
667 if (DefInit *NDI = dynamic_cast<DefInit*>(N->getLeafValue())) {
Chris Lattner71a2cb22008-03-20 01:22:40 +0000668 return ((DI->getDef() == NDI->getDef())
669 && (DepVars.find(getName()) == DepVars.end()
670 || getName() == N->getName()));
Scott Michel327d0652008-03-05 17:49:05 +0000671 }
672 }
Chris Lattner6cefb772008-01-05 22:25:12 +0000673 return getLeafValue() == N->getLeafValue();
674 }
675
676 if (N->getOperator() != getOperator() ||
677 N->getNumChildren() != getNumChildren()) return false;
678 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
Scott Michel327d0652008-03-05 17:49:05 +0000679 if (!getChild(i)->isIsomorphicTo(N->getChild(i), DepVars))
Chris Lattner6cefb772008-01-05 22:25:12 +0000680 return false;
681 return true;
682}
683
684/// clone - Make a copy of this tree and all of its children.
685///
686TreePatternNode *TreePatternNode::clone() const {
687 TreePatternNode *New;
688 if (isLeaf()) {
689 New = new TreePatternNode(getLeafValue());
690 } else {
691 std::vector<TreePatternNode*> CChildren;
692 CChildren.reserve(Children.size());
693 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
694 CChildren.push_back(getChild(i)->clone());
695 New = new TreePatternNode(getOperator(), CChildren);
696 }
697 New->setName(getName());
698 New->setTypes(getExtTypes());
Dan Gohman0540e172008-10-15 06:17:21 +0000699 New->setPredicateFns(getPredicateFns());
Chris Lattner6cefb772008-01-05 22:25:12 +0000700 New->setTransformFn(getTransformFn());
701 return New;
702}
703
Chris Lattner47661322010-02-14 22:22:58 +0000704/// RemoveAllTypes - Recursively strip all the types of this tree.
705void TreePatternNode::RemoveAllTypes() {
706 removeTypes();
707 if (isLeaf()) return;
708 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
709 getChild(i)->RemoveAllTypes();
710}
711
712
Chris Lattner6cefb772008-01-05 22:25:12 +0000713/// SubstituteFormalArguments - Replace the formal arguments in this tree
714/// with actual values specified by ArgMap.
715void TreePatternNode::
716SubstituteFormalArguments(std::map<std::string, TreePatternNode*> &ArgMap) {
717 if (isLeaf()) return;
718
719 for (unsigned i = 0, e = getNumChildren(); i != e; ++i) {
720 TreePatternNode *Child = getChild(i);
721 if (Child->isLeaf()) {
722 Init *Val = Child->getLeafValue();
723 if (dynamic_cast<DefInit*>(Val) &&
724 static_cast<DefInit*>(Val)->getDef()->getName() == "node") {
725 // We found a use of a formal argument, replace it with its value.
Dan Gohman0540e172008-10-15 06:17:21 +0000726 TreePatternNode *NewChild = ArgMap[Child->getName()];
727 assert(NewChild && "Couldn't find formal argument!");
728 assert((Child->getPredicateFns().empty() ||
729 NewChild->getPredicateFns() == Child->getPredicateFns()) &&
730 "Non-empty child predicate clobbered!");
731 setChild(i, NewChild);
Chris Lattner6cefb772008-01-05 22:25:12 +0000732 }
733 } else {
734 getChild(i)->SubstituteFormalArguments(ArgMap);
735 }
736 }
737}
738
739
740/// InlinePatternFragments - If this pattern refers to any pattern
741/// fragments, inline them into place, giving us a pattern without any
742/// PatFrag references.
743TreePatternNode *TreePatternNode::InlinePatternFragments(TreePattern &TP) {
744 if (isLeaf()) return this; // nothing to do.
745 Record *Op = getOperator();
746
747 if (!Op->isSubClassOf("PatFrag")) {
748 // Just recursively inline children nodes.
Dan Gohman0540e172008-10-15 06:17:21 +0000749 for (unsigned i = 0, e = getNumChildren(); i != e; ++i) {
750 TreePatternNode *Child = getChild(i);
751 TreePatternNode *NewChild = Child->InlinePatternFragments(TP);
752
753 assert((Child->getPredicateFns().empty() ||
754 NewChild->getPredicateFns() == Child->getPredicateFns()) &&
755 "Non-empty child predicate clobbered!");
756
757 setChild(i, NewChild);
758 }
Chris Lattner6cefb772008-01-05 22:25:12 +0000759 return this;
760 }
761
762 // Otherwise, we found a reference to a fragment. First, look up its
763 // TreePattern record.
764 TreePattern *Frag = TP.getDAGPatterns().getPatternFragment(Op);
765
766 // Verify that we are passing the right number of operands.
767 if (Frag->getNumArgs() != Children.size())
768 TP.error("'" + Op->getName() + "' fragment requires " +
769 utostr(Frag->getNumArgs()) + " operands!");
770
771 TreePatternNode *FragTree = Frag->getOnlyTree()->clone();
772
Dan Gohman0540e172008-10-15 06:17:21 +0000773 std::string Code = Op->getValueAsCode("Predicate");
774 if (!Code.empty())
775 FragTree->addPredicateFn("Predicate_"+Op->getName());
776
Chris Lattner6cefb772008-01-05 22:25:12 +0000777 // Resolve formal arguments to their actual value.
778 if (Frag->getNumArgs()) {
779 // Compute the map of formal to actual arguments.
780 std::map<std::string, TreePatternNode*> ArgMap;
781 for (unsigned i = 0, e = Frag->getNumArgs(); i != e; ++i)
782 ArgMap[Frag->getArgName(i)] = getChild(i)->InlinePatternFragments(TP);
783
784 FragTree->SubstituteFormalArguments(ArgMap);
785 }
786
787 FragTree->setName(getName());
788 FragTree->UpdateNodeType(getExtTypes(), TP);
Dan Gohman0540e172008-10-15 06:17:21 +0000789
790 // Transfer in the old predicates.
791 for (unsigned i = 0, e = getPredicateFns().size(); i != e; ++i)
792 FragTree->addPredicateFn(getPredicateFns()[i]);
793
Chris Lattner6cefb772008-01-05 22:25:12 +0000794 // Get a new copy of this fragment to stitch into here.
795 //delete this; // FIXME: implement refcounting!
Chris Lattner2ca698d2008-06-30 03:02:03 +0000796
797 // The fragment we inlined could have recursive inlining that is needed. See
798 // if there are any pattern fragments in it and inline them as needed.
799 return FragTree->InlinePatternFragments(TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000800}
801
802/// getImplicitType - Check to see if the specified record has an implicit
Nick Lewyckyfc4c2552009-06-17 04:23:52 +0000803/// type which should be applied to it. This will infer the type of register
Chris Lattner6cefb772008-01-05 22:25:12 +0000804/// references from the register file information, for example.
805///
806static std::vector<unsigned char> getImplicitType(Record *R, bool NotRegisters,
Chris Lattner523f6a52010-02-14 21:10:15 +0000807 TreePattern &TP) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000808 // Some common return values
Owen Andersone50ed302009-08-10 22:56:29 +0000809 std::vector<unsigned char> Unknown(1, EEVT::isUnknown);
Owen Anderson825b72b2009-08-11 20:47:22 +0000810 std::vector<unsigned char> Other(1, MVT::Other);
Chris Lattner6cefb772008-01-05 22:25:12 +0000811
812 // Check to see if this is a register or a register class...
813 if (R->isSubClassOf("RegisterClass")) {
814 if (NotRegisters)
815 return Unknown;
816 const CodeGenRegisterClass &RC =
817 TP.getDAGPatterns().getTargetInfo().getRegisterClass(R);
818 return ConvertVTs(RC.getValueTypes());
819 } else if (R->isSubClassOf("PatFrag")) {
820 // Pattern fragment types will be resolved when they are inlined.
821 return Unknown;
822 } else if (R->isSubClassOf("Register")) {
823 if (NotRegisters)
824 return Unknown;
825 const CodeGenTarget &T = TP.getDAGPatterns().getTargetInfo();
826 return T.getRegisterVTs(R);
827 } else if (R->isSubClassOf("ValueType") || R->isSubClassOf("CondCode")) {
828 // Using a VTSDNode or CondCodeSDNode.
829 return Other;
830 } else if (R->isSubClassOf("ComplexPattern")) {
831 if (NotRegisters)
832 return Unknown;
833 std::vector<unsigned char>
834 ComplexPat(1, TP.getDAGPatterns().getComplexPattern(R).getValueType());
835 return ComplexPat;
Chris Lattnera938ac62009-07-29 20:43:05 +0000836 } else if (R->isSubClassOf("PointerLikeRegClass")) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000837 Other[0] = MVT::iPTR;
Chris Lattner6cefb772008-01-05 22:25:12 +0000838 return Other;
839 } else if (R->getName() == "node" || R->getName() == "srcvalue" ||
840 R->getName() == "zero_reg") {
841 // Placeholder.
842 return Unknown;
843 }
844
845 TP.error("Unknown node flavor used in pattern: " + R->getName());
846 return Other;
847}
848
Chris Lattnere67bde52008-01-06 05:36:50 +0000849
850/// getIntrinsicInfo - If this node corresponds to an intrinsic, return the
851/// CodeGenIntrinsic information for it, otherwise return a null pointer.
852const CodeGenIntrinsic *TreePatternNode::
853getIntrinsicInfo(const CodeGenDAGPatterns &CDP) const {
854 if (getOperator() != CDP.get_intrinsic_void_sdnode() &&
855 getOperator() != CDP.get_intrinsic_w_chain_sdnode() &&
856 getOperator() != CDP.get_intrinsic_wo_chain_sdnode())
857 return 0;
858
859 unsigned IID =
860 dynamic_cast<IntInit*>(getChild(0)->getLeafValue())->getValue();
861 return &CDP.getIntrinsicInfo(IID);
862}
863
Chris Lattner47661322010-02-14 22:22:58 +0000864/// getComplexPatternInfo - If this node corresponds to a ComplexPattern,
865/// return the ComplexPattern information, otherwise return null.
866const ComplexPattern *
867TreePatternNode::getComplexPatternInfo(const CodeGenDAGPatterns &CGP) const {
868 if (!isLeaf()) return 0;
869
870 DefInit *DI = dynamic_cast<DefInit*>(getLeafValue());
871 if (DI && DI->getDef()->isSubClassOf("ComplexPattern"))
872 return &CGP.getComplexPattern(DI->getDef());
873 return 0;
874}
875
876/// NodeHasProperty - Return true if this node has the specified property.
877bool TreePatternNode::NodeHasProperty(SDNP Property,
Chris Lattner751d5aa2010-02-14 22:33:49 +0000878 const CodeGenDAGPatterns &CGP) const {
Chris Lattner47661322010-02-14 22:22:58 +0000879 if (isLeaf()) {
880 if (const ComplexPattern *CP = getComplexPatternInfo(CGP))
881 return CP->hasProperty(Property);
882 return false;
883 }
884
885 Record *Operator = getOperator();
886 if (!Operator->isSubClassOf("SDNode")) return false;
887
888 return CGP.getSDNodeInfo(Operator).hasProperty(Property);
889}
890
891
892
893
894/// TreeHasProperty - Return true if any node in this tree has the specified
895/// property.
896bool TreePatternNode::TreeHasProperty(SDNP Property,
Chris Lattner751d5aa2010-02-14 22:33:49 +0000897 const CodeGenDAGPatterns &CGP) const {
Chris Lattner47661322010-02-14 22:22:58 +0000898 if (NodeHasProperty(Property, CGP))
899 return true;
900 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
901 if (getChild(i)->TreeHasProperty(Property, CGP))
902 return true;
903 return false;
904}
905
Evan Cheng6bd95672008-06-16 20:29:38 +0000906/// isCommutativeIntrinsic - Return true if the node corresponds to a
907/// commutative intrinsic.
908bool
909TreePatternNode::isCommutativeIntrinsic(const CodeGenDAGPatterns &CDP) const {
910 if (const CodeGenIntrinsic *Int = getIntrinsicInfo(CDP))
911 return Int->isCommutative;
912 return false;
913}
914
Chris Lattnere67bde52008-01-06 05:36:50 +0000915
Bob Wilson6c01ca92009-01-05 17:23:09 +0000916/// ApplyTypeConstraints - Apply all of the type constraints relevant to
Chris Lattner6cefb772008-01-05 22:25:12 +0000917/// this node and its children in the tree. This returns true if it makes a
918/// change, false otherwise. If a type contradiction is found, throw an
919/// exception.
920bool TreePatternNode::ApplyTypeConstraints(TreePattern &TP, bool NotRegisters) {
Chris Lattnerfe718932008-01-06 01:10:31 +0000921 CodeGenDAGPatterns &CDP = TP.getDAGPatterns();
Chris Lattner6cefb772008-01-05 22:25:12 +0000922 if (isLeaf()) {
923 if (DefInit *DI = dynamic_cast<DefInit*>(getLeafValue())) {
924 // If it's a regclass or something else known, include the type.
925 return UpdateNodeType(getImplicitType(DI->getDef(), NotRegisters, TP),TP);
Chris Lattner523f6a52010-02-14 21:10:15 +0000926 }
927
928 if (IntInit *II = dynamic_cast<IntInit*>(getLeafValue())) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000929 // Int inits are always integers. :)
Bob Wilsoncdfa01b2009-08-29 05:53:25 +0000930 bool MadeChange = UpdateNodeType(MVT::iAny, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000931
932 if (hasTypeSet()) {
933 // At some point, it may make sense for this tree pattern to have
934 // multiple types. Assert here that it does not, so we revisit this
935 // code when appropriate.
936 assert(getExtTypes().size() >= 1 && "TreePattern doesn't have a type!");
Owen Anderson825b72b2009-08-11 20:47:22 +0000937 MVT::SimpleValueType VT = getTypeNum(0);
Chris Lattner6cefb772008-01-05 22:25:12 +0000938 for (unsigned i = 1, e = getExtTypes().size(); i != e; ++i)
939 assert(getTypeNum(i) == VT && "TreePattern has too many types!");
940
941 VT = getTypeNum(0);
Owen Anderson825b72b2009-08-11 20:47:22 +0000942 if (VT != MVT::iPTR && VT != MVT::iPTRAny) {
Owen Andersone50ed302009-08-10 22:56:29 +0000943 unsigned Size = EVT(VT).getSizeInBits();
Chris Lattner6cefb772008-01-05 22:25:12 +0000944 // Make sure that the value is representable for this type.
945 if (Size < 32) {
946 int Val = (II->getValue() << (32-Size)) >> (32-Size);
Scott Michel0123b7d2008-02-15 23:05:48 +0000947 if (Val != II->getValue()) {
Bill Wendling27926af2008-02-26 10:45:29 +0000948 // If sign-extended doesn't fit, does it fit as unsigned?
Duncan Sands83ec4b62008-06-06 12:08:01 +0000949 unsigned ValueMask;
950 unsigned UnsignedVal;
Duncan Sandsb0d5cdd2009-02-01 18:06:53 +0000951 ValueMask = unsigned(~uint32_t(0UL) >> (32-Size));
Duncan Sands83ec4b62008-06-06 12:08:01 +0000952 UnsignedVal = unsigned(II->getValue());
Scott Michel0123b7d2008-02-15 23:05:48 +0000953
Bill Wendling27926af2008-02-26 10:45:29 +0000954 if ((ValueMask & UnsignedVal) != UnsignedVal) {
955 TP.error("Integer value '" + itostr(II->getValue())+
956 "' is out of range for type '" +
957 getEnumName(getTypeNum(0)) + "'!");
958 }
959 }
Nick Lewyckyfc4c2552009-06-17 04:23:52 +0000960 }
961 }
Chris Lattner6cefb772008-01-05 22:25:12 +0000962 }
963
964 return MadeChange;
965 }
966 return false;
967 }
968
969 // special handling for set, which isn't really an SDNode.
970 if (getOperator()->getName() == "set") {
971 assert (getNumChildren() >= 2 && "Missing RHS of a set?");
972 unsigned NC = getNumChildren();
973 bool MadeChange = false;
974 for (unsigned i = 0; i < NC-1; ++i) {
975 MadeChange = getChild(i)->ApplyTypeConstraints(TP, NotRegisters);
976 MadeChange |= getChild(NC-1)->ApplyTypeConstraints(TP, NotRegisters);
977
978 // Types of operands must match.
979 MadeChange |= getChild(i)->UpdateNodeType(getChild(NC-1)->getExtTypes(),
980 TP);
981 MadeChange |= getChild(NC-1)->UpdateNodeType(getChild(i)->getExtTypes(),
982 TP);
Owen Anderson825b72b2009-08-11 20:47:22 +0000983 MadeChange |= UpdateNodeType(MVT::isVoid, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000984 }
985 return MadeChange;
Chris Lattner6eb30122010-02-23 05:51:07 +0000986 }
987
988 if (getOperator()->getName() == "implicit" ||
989 getOperator()->getName() == "parallel") {
Chris Lattner6cefb772008-01-05 22:25:12 +0000990 bool MadeChange = false;
991 for (unsigned i = 0; i < getNumChildren(); ++i)
992 MadeChange = getChild(i)->ApplyTypeConstraints(TP, NotRegisters);
Owen Anderson825b72b2009-08-11 20:47:22 +0000993 MadeChange |= UpdateNodeType(MVT::isVoid, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +0000994 return MadeChange;
Chris Lattner6eb30122010-02-23 05:51:07 +0000995 }
996
997 if (getOperator()->getName() == "COPY_TO_REGCLASS") {
Dan Gohmanf8c73942009-04-13 15:38:05 +0000998 bool MadeChange = false;
999 MadeChange |= getChild(0)->ApplyTypeConstraints(TP, NotRegisters);
1000 MadeChange |= getChild(1)->ApplyTypeConstraints(TP, NotRegisters);
Dan Gohmanf8c73942009-04-13 15:38:05 +00001001 return MadeChange;
Chris Lattner6eb30122010-02-23 05:51:07 +00001002 }
1003
1004 if (const CodeGenIntrinsic *Int = getIntrinsicInfo(CDP)) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001005 bool MadeChange = false;
Duncan Sands83ec4b62008-06-06 12:08:01 +00001006
Chris Lattner6cefb772008-01-05 22:25:12 +00001007 // Apply the result type to the node.
Bill Wendlingcdcc3e62008-11-13 09:08:33 +00001008 unsigned NumRetVTs = Int->IS.RetVTs.size();
1009 unsigned NumParamVTs = Int->IS.ParamVTs.size();
Duncan Sands83ec4b62008-06-06 12:08:01 +00001010
Bill Wendlingcdcc3e62008-11-13 09:08:33 +00001011 for (unsigned i = 0, e = NumRetVTs; i != e; ++i)
1012 MadeChange |= UpdateNodeType(Int->IS.RetVTs[i], TP);
1013
1014 if (getNumChildren() != NumParamVTs + NumRetVTs)
Chris Lattnere67bde52008-01-06 05:36:50 +00001015 TP.error("Intrinsic '" + Int->Name + "' expects " +
Bill Wendlingcdcc3e62008-11-13 09:08:33 +00001016 utostr(NumParamVTs + NumRetVTs - 1) + " operands, not " +
1017 utostr(getNumChildren() - 1) + " operands!");
Chris Lattner6cefb772008-01-05 22:25:12 +00001018
1019 // Apply type info to the intrinsic ID.
Owen Anderson825b72b2009-08-11 20:47:22 +00001020 MadeChange |= getChild(0)->UpdateNodeType(MVT::iPTR, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +00001021
Bill Wendlingcdcc3e62008-11-13 09:08:33 +00001022 for (unsigned i = NumRetVTs, e = getNumChildren(); i != e; ++i) {
Owen Anderson825b72b2009-08-11 20:47:22 +00001023 MVT::SimpleValueType OpVT = Int->IS.ParamVTs[i - NumRetVTs];
Chris Lattner6cefb772008-01-05 22:25:12 +00001024 MadeChange |= getChild(i)->UpdateNodeType(OpVT, TP);
1025 MadeChange |= getChild(i)->ApplyTypeConstraints(TP, NotRegisters);
1026 }
1027 return MadeChange;
Chris Lattner6eb30122010-02-23 05:51:07 +00001028 }
1029
1030 if (getOperator()->isSubClassOf("SDNode")) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001031 const SDNodeInfo &NI = CDP.getSDNodeInfo(getOperator());
1032
1033 bool MadeChange = NI.ApplyTypeConstraints(this, TP);
1034 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
1035 MadeChange |= getChild(i)->ApplyTypeConstraints(TP, NotRegisters);
1036 // Branch, etc. do not produce results and top-level forms in instr pattern
1037 // must have void types.
1038 if (NI.getNumResults() == 0)
Owen Anderson825b72b2009-08-11 20:47:22 +00001039 MadeChange |= UpdateNodeType(MVT::isVoid, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +00001040
Chris Lattner6cefb772008-01-05 22:25:12 +00001041 return MadeChange;
Chris Lattner6eb30122010-02-23 05:51:07 +00001042 }
1043
1044 if (getOperator()->isSubClassOf("Instruction")) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001045 const DAGInstruction &Inst = CDP.getInstruction(getOperator());
1046 bool MadeChange = false;
1047 unsigned NumResults = Inst.getNumResults();
1048
1049 assert(NumResults <= 1 &&
1050 "Only supports zero or one result instrs!");
1051
1052 CodeGenInstruction &InstInfo =
1053 CDP.getTargetInfo().getInstruction(getOperator()->getName());
1054 // Apply the result type to the node
1055 if (NumResults == 0 || InstInfo.NumDefs == 0) {
Owen Anderson825b72b2009-08-11 20:47:22 +00001056 MadeChange = UpdateNodeType(MVT::isVoid, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +00001057 } else {
1058 Record *ResultNode = Inst.getResult(0);
1059
Chris Lattnera938ac62009-07-29 20:43:05 +00001060 if (ResultNode->isSubClassOf("PointerLikeRegClass")) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001061 std::vector<unsigned char> VT;
Owen Anderson825b72b2009-08-11 20:47:22 +00001062 VT.push_back(MVT::iPTR);
Chris Lattner6cefb772008-01-05 22:25:12 +00001063 MadeChange = UpdateNodeType(VT, TP);
Christopher Lamb5b415372008-03-11 09:33:47 +00001064 } else if (ResultNode->getName() == "unknown") {
1065 std::vector<unsigned char> VT;
Owen Andersone50ed302009-08-10 22:56:29 +00001066 VT.push_back(EEVT::isUnknown);
Christopher Lamb5b415372008-03-11 09:33:47 +00001067 MadeChange = UpdateNodeType(VT, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +00001068 } else {
1069 assert(ResultNode->isSubClassOf("RegisterClass") &&
1070 "Operands should be register classes!");
1071
1072 const CodeGenRegisterClass &RC =
1073 CDP.getTargetInfo().getRegisterClass(ResultNode);
1074 MadeChange = UpdateNodeType(ConvertVTs(RC.getValueTypes()), TP);
1075 }
1076 }
1077
1078 unsigned ChildNo = 0;
1079 for (unsigned i = 0, e = Inst.getNumOperands(); i != e; ++i) {
1080 Record *OperandNode = Inst.getOperand(i);
1081
1082 // If the instruction expects a predicate or optional def operand, we
1083 // codegen this by setting the operand to it's default value if it has a
1084 // non-empty DefaultOps field.
1085 if ((OperandNode->isSubClassOf("PredicateOperand") ||
1086 OperandNode->isSubClassOf("OptionalDefOperand")) &&
1087 !CDP.getDefaultOperand(OperandNode).DefaultOps.empty())
1088 continue;
1089
1090 // Verify that we didn't run out of provided operands.
1091 if (ChildNo >= getNumChildren())
1092 TP.error("Instruction '" + getOperator()->getName() +
1093 "' expects more operands than were provided.");
1094
Owen Anderson825b72b2009-08-11 20:47:22 +00001095 MVT::SimpleValueType VT;
Chris Lattner6cefb772008-01-05 22:25:12 +00001096 TreePatternNode *Child = getChild(ChildNo++);
1097 if (OperandNode->isSubClassOf("RegisterClass")) {
1098 const CodeGenRegisterClass &RC =
1099 CDP.getTargetInfo().getRegisterClass(OperandNode);
1100 MadeChange |= Child->UpdateNodeType(ConvertVTs(RC.getValueTypes()), TP);
1101 } else if (OperandNode->isSubClassOf("Operand")) {
1102 VT = getValueType(OperandNode->getValueAsDef("Type"));
1103 MadeChange |= Child->UpdateNodeType(VT, TP);
Chris Lattnera938ac62009-07-29 20:43:05 +00001104 } else if (OperandNode->isSubClassOf("PointerLikeRegClass")) {
Owen Anderson825b72b2009-08-11 20:47:22 +00001105 MadeChange |= Child->UpdateNodeType(MVT::iPTR, TP);
Christopher Lamb5b415372008-03-11 09:33:47 +00001106 } else if (OperandNode->getName() == "unknown") {
Owen Andersone50ed302009-08-10 22:56:29 +00001107 MadeChange |= Child->UpdateNodeType(EEVT::isUnknown, TP);
Chris Lattner6cefb772008-01-05 22:25:12 +00001108 } else {
1109 assert(0 && "Unknown operand type!");
1110 abort();
1111 }
1112 MadeChange |= Child->ApplyTypeConstraints(TP, NotRegisters);
1113 }
Christopher Lamb5b415372008-03-11 09:33:47 +00001114
Christopher Lamb02f69372008-03-10 04:16:09 +00001115 if (ChildNo != getNumChildren())
Chris Lattner6cefb772008-01-05 22:25:12 +00001116 TP.error("Instruction '" + getOperator()->getName() +
1117 "' was provided too many operands!");
1118
1119 return MadeChange;
Chris Lattner6cefb772008-01-05 22:25:12 +00001120 }
Chris Lattner6eb30122010-02-23 05:51:07 +00001121
1122 assert(getOperator()->isSubClassOf("SDNodeXForm") && "Unknown node type!");
1123
1124 // Node transforms always take one operand.
1125 if (getNumChildren() != 1)
1126 TP.error("Node transform '" + getOperator()->getName() +
1127 "' requires one operand!");
1128
1129 // If either the output or input of the xform does not have exact
1130 // type info. We assume they must be the same. Otherwise, it is perfectly
1131 // legal to transform from one type to a completely different type.
1132 if (!hasTypeSet() || !getChild(0)->hasTypeSet()) {
1133 bool MadeChange = UpdateNodeType(getChild(0)->getExtTypes(), TP);
1134 MadeChange |= getChild(0)->UpdateNodeType(getExtTypes(), TP);
1135 return MadeChange;
1136 }
1137 return false;
Chris Lattner6cefb772008-01-05 22:25:12 +00001138}
1139
1140/// OnlyOnRHSOfCommutative - Return true if this value is only allowed on the
1141/// RHS of a commutative operation, not the on LHS.
1142static bool OnlyOnRHSOfCommutative(TreePatternNode *N) {
1143 if (!N->isLeaf() && N->getOperator()->getName() == "imm")
1144 return true;
1145 if (N->isLeaf() && dynamic_cast<IntInit*>(N->getLeafValue()))
1146 return true;
1147 return false;
1148}
1149
1150
1151/// canPatternMatch - If it is impossible for this pattern to match on this
1152/// target, fill in Reason and return false. Otherwise, return true. This is
Jim Grosbachda4231f2009-03-26 16:17:51 +00001153/// used as a sanity check for .td files (to prevent people from writing stuff
Chris Lattner6cefb772008-01-05 22:25:12 +00001154/// that can never possibly work), and to prevent the pattern permuter from
1155/// generating stuff that is useless.
1156bool TreePatternNode::canPatternMatch(std::string &Reason,
Dan Gohmanee4fa192008-04-03 00:02:49 +00001157 const CodeGenDAGPatterns &CDP) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001158 if (isLeaf()) return true;
1159
1160 for (unsigned i = 0, e = getNumChildren(); i != e; ++i)
1161 if (!getChild(i)->canPatternMatch(Reason, CDP))
1162 return false;
1163
1164 // If this is an intrinsic, handle cases that would make it not match. For
1165 // example, if an operand is required to be an immediate.
1166 if (getOperator()->isSubClassOf("Intrinsic")) {
1167 // TODO:
1168 return true;
1169 }
1170
1171 // If this node is a commutative operator, check that the LHS isn't an
1172 // immediate.
1173 const SDNodeInfo &NodeInfo = CDP.getSDNodeInfo(getOperator());
Evan Cheng6bd95672008-06-16 20:29:38 +00001174 bool isCommIntrinsic = isCommutativeIntrinsic(CDP);
1175 if (NodeInfo.hasProperty(SDNPCommutative) || isCommIntrinsic) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001176 // Scan all of the operands of the node and make sure that only the last one
1177 // is a constant node, unless the RHS also is.
1178 if (!OnlyOnRHSOfCommutative(getChild(getNumChildren()-1))) {
Evan Cheng6bd95672008-06-16 20:29:38 +00001179 bool Skip = isCommIntrinsic ? 1 : 0; // First operand is intrinsic id.
1180 for (unsigned i = Skip, e = getNumChildren()-1; i != e; ++i)
Chris Lattner6cefb772008-01-05 22:25:12 +00001181 if (OnlyOnRHSOfCommutative(getChild(i))) {
1182 Reason="Immediate value must be on the RHS of commutative operators!";
1183 return false;
1184 }
1185 }
1186 }
1187
1188 return true;
1189}
1190
1191//===----------------------------------------------------------------------===//
1192// TreePattern implementation
1193//
1194
1195TreePattern::TreePattern(Record *TheRec, ListInit *RawPat, bool isInput,
Chris Lattnerfe718932008-01-06 01:10:31 +00001196 CodeGenDAGPatterns &cdp) : TheRecord(TheRec), CDP(cdp){
Chris Lattner6cefb772008-01-05 22:25:12 +00001197 isInputPattern = isInput;
1198 for (unsigned i = 0, e = RawPat->getSize(); i != e; ++i)
1199 Trees.push_back(ParseTreePattern((DagInit*)RawPat->getElement(i)));
1200}
1201
1202TreePattern::TreePattern(Record *TheRec, DagInit *Pat, bool isInput,
Chris Lattnerfe718932008-01-06 01:10:31 +00001203 CodeGenDAGPatterns &cdp) : TheRecord(TheRec), CDP(cdp){
Chris Lattner6cefb772008-01-05 22:25:12 +00001204 isInputPattern = isInput;
1205 Trees.push_back(ParseTreePattern(Pat));
1206}
1207
1208TreePattern::TreePattern(Record *TheRec, TreePatternNode *Pat, bool isInput,
Chris Lattnerfe718932008-01-06 01:10:31 +00001209 CodeGenDAGPatterns &cdp) : TheRecord(TheRec), CDP(cdp){
Chris Lattner6cefb772008-01-05 22:25:12 +00001210 isInputPattern = isInput;
1211 Trees.push_back(Pat);
1212}
1213
1214
1215
1216void TreePattern::error(const std::string &Msg) const {
1217 dump();
Chris Lattnera14b1de2009-03-13 16:25:21 +00001218 throw TGError(TheRecord->getLoc(), "In " + TheRecord->getName() + ": " + Msg);
Chris Lattner6cefb772008-01-05 22:25:12 +00001219}
1220
1221TreePatternNode *TreePattern::ParseTreePattern(DagInit *Dag) {
1222 DefInit *OpDef = dynamic_cast<DefInit*>(Dag->getOperator());
1223 if (!OpDef) error("Pattern has unexpected operator type!");
1224 Record *Operator = OpDef->getDef();
1225
1226 if (Operator->isSubClassOf("ValueType")) {
1227 // If the operator is a ValueType, then this must be "type cast" of a leaf
1228 // node.
1229 if (Dag->getNumArgs() != 1)
1230 error("Type cast only takes one operand!");
1231
1232 Init *Arg = Dag->getArg(0);
1233 TreePatternNode *New;
1234 if (DefInit *DI = dynamic_cast<DefInit*>(Arg)) {
1235 Record *R = DI->getDef();
1236 if (R->isSubClassOf("SDNode") || R->isSubClassOf("PatFrag")) {
Nate Begeman7cee8172009-03-19 05:21:56 +00001237 Dag->setArg(0, new DagInit(DI, "",
Chris Lattner6cefb772008-01-05 22:25:12 +00001238 std::vector<std::pair<Init*, std::string> >()));
1239 return ParseTreePattern(Dag);
1240 }
1241 New = new TreePatternNode(DI);
1242 } else if (DagInit *DI = dynamic_cast<DagInit*>(Arg)) {
1243 New = ParseTreePattern(DI);
1244 } else if (IntInit *II = dynamic_cast<IntInit*>(Arg)) {
1245 New = new TreePatternNode(II);
1246 if (!Dag->getArgName(0).empty())
1247 error("Constant int argument should not have a name!");
1248 } else if (BitsInit *BI = dynamic_cast<BitsInit*>(Arg)) {
1249 // Turn this into an IntInit.
1250 Init *II = BI->convertInitializerTo(new IntRecTy());
1251 if (II == 0 || !dynamic_cast<IntInit*>(II))
1252 error("Bits value must be constants!");
1253
1254 New = new TreePatternNode(dynamic_cast<IntInit*>(II));
1255 if (!Dag->getArgName(0).empty())
1256 error("Constant int argument should not have a name!");
1257 } else {
1258 Arg->dump();
1259 error("Unknown leaf value for tree pattern!");
1260 return 0;
1261 }
1262
1263 // Apply the type cast.
1264 New->UpdateNodeType(getValueType(Operator), *this);
Nate Begeman7cee8172009-03-19 05:21:56 +00001265 if (New->getNumChildren() == 0)
1266 New->setName(Dag->getArgName(0));
Chris Lattner6cefb772008-01-05 22:25:12 +00001267 return New;
1268 }
1269
1270 // Verify that this is something that makes sense for an operator.
Nate Begeman7cee8172009-03-19 05:21:56 +00001271 if (!Operator->isSubClassOf("PatFrag") &&
1272 !Operator->isSubClassOf("SDNode") &&
Chris Lattner6cefb772008-01-05 22:25:12 +00001273 !Operator->isSubClassOf("Instruction") &&
1274 !Operator->isSubClassOf("SDNodeXForm") &&
1275 !Operator->isSubClassOf("Intrinsic") &&
1276 Operator->getName() != "set" &&
1277 Operator->getName() != "implicit" &&
1278 Operator->getName() != "parallel")
1279 error("Unrecognized node '" + Operator->getName() + "'!");
1280
1281 // Check to see if this is something that is illegal in an input pattern.
1282 if (isInputPattern && (Operator->isSubClassOf("Instruction") ||
1283 Operator->isSubClassOf("SDNodeXForm")))
1284 error("Cannot use '" + Operator->getName() + "' in an input pattern!");
1285
1286 std::vector<TreePatternNode*> Children;
1287
1288 for (unsigned i = 0, e = Dag->getNumArgs(); i != e; ++i) {
1289 Init *Arg = Dag->getArg(i);
1290 if (DagInit *DI = dynamic_cast<DagInit*>(Arg)) {
1291 Children.push_back(ParseTreePattern(DI));
1292 if (Children.back()->getName().empty())
1293 Children.back()->setName(Dag->getArgName(i));
1294 } else if (DefInit *DefI = dynamic_cast<DefInit*>(Arg)) {
1295 Record *R = DefI->getDef();
1296 // Direct reference to a leaf DagNode or PatFrag? Turn it into a
1297 // TreePatternNode if its own.
1298 if (R->isSubClassOf("SDNode") || R->isSubClassOf("PatFrag")) {
Nate Begeman7cee8172009-03-19 05:21:56 +00001299 Dag->setArg(i, new DagInit(DefI, "",
Chris Lattner6cefb772008-01-05 22:25:12 +00001300 std::vector<std::pair<Init*, std::string> >()));
1301 --i; // Revisit this node...
1302 } else {
1303 TreePatternNode *Node = new TreePatternNode(DefI);
1304 Node->setName(Dag->getArgName(i));
1305 Children.push_back(Node);
1306
1307 // Input argument?
1308 if (R->getName() == "node") {
1309 if (Dag->getArgName(i).empty())
1310 error("'node' argument requires a name to match with operand list");
1311 Args.push_back(Dag->getArgName(i));
1312 }
1313 }
1314 } else if (IntInit *II = dynamic_cast<IntInit*>(Arg)) {
1315 TreePatternNode *Node = new TreePatternNode(II);
1316 if (!Dag->getArgName(i).empty())
1317 error("Constant int argument should not have a name!");
1318 Children.push_back(Node);
1319 } else if (BitsInit *BI = dynamic_cast<BitsInit*>(Arg)) {
1320 // Turn this into an IntInit.
1321 Init *II = BI->convertInitializerTo(new IntRecTy());
1322 if (II == 0 || !dynamic_cast<IntInit*>(II))
1323 error("Bits value must be constants!");
1324
1325 TreePatternNode *Node = new TreePatternNode(dynamic_cast<IntInit*>(II));
1326 if (!Dag->getArgName(i).empty())
1327 error("Constant int argument should not have a name!");
1328 Children.push_back(Node);
1329 } else {
Daniel Dunbar1a551802009-07-03 00:10:29 +00001330 errs() << '"';
Chris Lattner6cefb772008-01-05 22:25:12 +00001331 Arg->dump();
Daniel Dunbar1a551802009-07-03 00:10:29 +00001332 errs() << "\": ";
Chris Lattner6cefb772008-01-05 22:25:12 +00001333 error("Unknown leaf value for tree pattern!");
1334 }
1335 }
1336
1337 // If the operator is an intrinsic, then this is just syntactic sugar for for
1338 // (intrinsic_* <number>, ..children..). Pick the right intrinsic node, and
1339 // convert the intrinsic name to a number.
1340 if (Operator->isSubClassOf("Intrinsic")) {
1341 const CodeGenIntrinsic &Int = getDAGPatterns().getIntrinsic(Operator);
1342 unsigned IID = getDAGPatterns().getIntrinsicID(Operator)+1;
1343
1344 // If this intrinsic returns void, it must have side-effects and thus a
1345 // chain.
Owen Anderson825b72b2009-08-11 20:47:22 +00001346 if (Int.IS.RetVTs[0] == MVT::isVoid) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001347 Operator = getDAGPatterns().get_intrinsic_void_sdnode();
1348 } else if (Int.ModRef != CodeGenIntrinsic::NoMem) {
1349 // Has side-effects, requires chain.
1350 Operator = getDAGPatterns().get_intrinsic_w_chain_sdnode();
1351 } else {
1352 // Otherwise, no chain.
1353 Operator = getDAGPatterns().get_intrinsic_wo_chain_sdnode();
1354 }
1355
1356 TreePatternNode *IIDNode = new TreePatternNode(new IntInit(IID));
1357 Children.insert(Children.begin(), IIDNode);
1358 }
1359
Nate Begeman7cee8172009-03-19 05:21:56 +00001360 TreePatternNode *Result = new TreePatternNode(Operator, Children);
1361 Result->setName(Dag->getName());
1362 return Result;
Chris Lattner6cefb772008-01-05 22:25:12 +00001363}
1364
1365/// InferAllTypes - Infer/propagate as many types throughout the expression
Jim Grosbachda4231f2009-03-26 16:17:51 +00001366/// patterns as possible. Return true if all types are inferred, false
Chris Lattner6cefb772008-01-05 22:25:12 +00001367/// otherwise. Throw an exception if a type contradiction is found.
1368bool TreePattern::InferAllTypes() {
1369 bool MadeChange = true;
1370 while (MadeChange) {
1371 MadeChange = false;
1372 for (unsigned i = 0, e = Trees.size(); i != e; ++i)
1373 MadeChange |= Trees[i]->ApplyTypeConstraints(*this, false);
1374 }
1375
1376 bool HasUnresolvedTypes = false;
1377 for (unsigned i = 0, e = Trees.size(); i != e; ++i)
1378 HasUnresolvedTypes |= Trees[i]->ContainsUnresolvedType();
1379 return !HasUnresolvedTypes;
1380}
1381
Daniel Dunbar1a551802009-07-03 00:10:29 +00001382void TreePattern::print(raw_ostream &OS) const {
Chris Lattner6cefb772008-01-05 22:25:12 +00001383 OS << getRecord()->getName();
1384 if (!Args.empty()) {
1385 OS << "(" << Args[0];
1386 for (unsigned i = 1, e = Args.size(); i != e; ++i)
1387 OS << ", " << Args[i];
1388 OS << ")";
1389 }
1390 OS << ": ";
1391
1392 if (Trees.size() > 1)
1393 OS << "[\n";
1394 for (unsigned i = 0, e = Trees.size(); i != e; ++i) {
1395 OS << "\t";
1396 Trees[i]->print(OS);
1397 OS << "\n";
1398 }
1399
1400 if (Trees.size() > 1)
1401 OS << "]\n";
1402}
1403
Daniel Dunbar1a551802009-07-03 00:10:29 +00001404void TreePattern::dump() const { print(errs()); }
Chris Lattner6cefb772008-01-05 22:25:12 +00001405
1406//===----------------------------------------------------------------------===//
Chris Lattnerfe718932008-01-06 01:10:31 +00001407// CodeGenDAGPatterns implementation
Chris Lattner6cefb772008-01-05 22:25:12 +00001408//
1409
Chris Lattnerfe718932008-01-06 01:10:31 +00001410CodeGenDAGPatterns::CodeGenDAGPatterns(RecordKeeper &R) : Records(R) {
Dale Johannesen49de9822009-02-05 01:49:45 +00001411 Intrinsics = LoadIntrinsics(Records, false);
1412 TgtIntrinsics = LoadIntrinsics(Records, true);
Chris Lattner6cefb772008-01-05 22:25:12 +00001413 ParseNodeInfo();
Chris Lattner443e3f92008-01-05 22:54:53 +00001414 ParseNodeTransforms();
Chris Lattner6cefb772008-01-05 22:25:12 +00001415 ParseComplexPatterns();
Chris Lattnerdc32f982008-01-05 22:43:57 +00001416 ParsePatternFragments();
Chris Lattner6cefb772008-01-05 22:25:12 +00001417 ParseDefaultOperands();
1418 ParseInstructions();
1419 ParsePatterns();
1420
1421 // Generate variants. For example, commutative patterns can match
1422 // multiple ways. Add them to PatternsToMatch as well.
1423 GenerateVariants();
Dan Gohmanee4fa192008-04-03 00:02:49 +00001424
1425 // Infer instruction flags. For example, we can detect loads,
1426 // stores, and side effects in many cases by examining an
1427 // instruction's pattern.
1428 InferInstructionFlags();
Chris Lattner6cefb772008-01-05 22:25:12 +00001429}
1430
Chris Lattnerfe718932008-01-06 01:10:31 +00001431CodeGenDAGPatterns::~CodeGenDAGPatterns() {
Benjamin Kramer5b9e7ef2009-08-23 10:39:21 +00001432 for (pf_iterator I = PatternFragments.begin(),
Chris Lattner6cefb772008-01-05 22:25:12 +00001433 E = PatternFragments.end(); I != E; ++I)
1434 delete I->second;
1435}
1436
1437
Chris Lattnerfe718932008-01-06 01:10:31 +00001438Record *CodeGenDAGPatterns::getSDNodeNamed(const std::string &Name) const {
Chris Lattner6cefb772008-01-05 22:25:12 +00001439 Record *N = Records.getDef(Name);
1440 if (!N || !N->isSubClassOf("SDNode")) {
Daniel Dunbar1a551802009-07-03 00:10:29 +00001441 errs() << "Error getting SDNode '" << Name << "'!\n";
Chris Lattner6cefb772008-01-05 22:25:12 +00001442 exit(1);
1443 }
1444 return N;
1445}
1446
1447// Parse all of the SDNode definitions for the target, populating SDNodes.
Chris Lattnerfe718932008-01-06 01:10:31 +00001448void CodeGenDAGPatterns::ParseNodeInfo() {
Chris Lattner6cefb772008-01-05 22:25:12 +00001449 std::vector<Record*> Nodes = Records.getAllDerivedDefinitions("SDNode");
1450 while (!Nodes.empty()) {
1451 SDNodes.insert(std::make_pair(Nodes.back(), Nodes.back()));
1452 Nodes.pop_back();
1453 }
1454
Jim Grosbachda4231f2009-03-26 16:17:51 +00001455 // Get the builtin intrinsic nodes.
Chris Lattner6cefb772008-01-05 22:25:12 +00001456 intrinsic_void_sdnode = getSDNodeNamed("intrinsic_void");
1457 intrinsic_w_chain_sdnode = getSDNodeNamed("intrinsic_w_chain");
1458 intrinsic_wo_chain_sdnode = getSDNodeNamed("intrinsic_wo_chain");
1459}
1460
1461/// ParseNodeTransforms - Parse all SDNodeXForm instances into the SDNodeXForms
1462/// map, and emit them to the file as functions.
Chris Lattnerfe718932008-01-06 01:10:31 +00001463void CodeGenDAGPatterns::ParseNodeTransforms() {
Chris Lattner6cefb772008-01-05 22:25:12 +00001464 std::vector<Record*> Xforms = Records.getAllDerivedDefinitions("SDNodeXForm");
1465 while (!Xforms.empty()) {
1466 Record *XFormNode = Xforms.back();
1467 Record *SDNode = XFormNode->getValueAsDef("Opcode");
1468 std::string Code = XFormNode->getValueAsCode("XFormFunction");
Chris Lattner443e3f92008-01-05 22:54:53 +00001469 SDNodeXForms.insert(std::make_pair(XFormNode, NodeXForm(SDNode, Code)));
Chris Lattner6cefb772008-01-05 22:25:12 +00001470
1471 Xforms.pop_back();
1472 }
1473}
1474
Chris Lattnerfe718932008-01-06 01:10:31 +00001475void CodeGenDAGPatterns::ParseComplexPatterns() {
Chris Lattner6cefb772008-01-05 22:25:12 +00001476 std::vector<Record*> AMs = Records.getAllDerivedDefinitions("ComplexPattern");
1477 while (!AMs.empty()) {
1478 ComplexPatterns.insert(std::make_pair(AMs.back(), AMs.back()));
1479 AMs.pop_back();
1480 }
1481}
1482
1483
1484/// ParsePatternFragments - Parse all of the PatFrag definitions in the .td
1485/// file, building up the PatternFragments map. After we've collected them all,
1486/// inline fragments together as necessary, so that there are no references left
1487/// inside a pattern fragment to a pattern fragment.
1488///
Chris Lattnerfe718932008-01-06 01:10:31 +00001489void CodeGenDAGPatterns::ParsePatternFragments() {
Chris Lattner6cefb772008-01-05 22:25:12 +00001490 std::vector<Record*> Fragments = Records.getAllDerivedDefinitions("PatFrag");
1491
Chris Lattnerdc32f982008-01-05 22:43:57 +00001492 // First step, parse all of the fragments.
Chris Lattner6cefb772008-01-05 22:25:12 +00001493 for (unsigned i = 0, e = Fragments.size(); i != e; ++i) {
1494 DagInit *Tree = Fragments[i]->getValueAsDag("Fragment");
1495 TreePattern *P = new TreePattern(Fragments[i], Tree, true, *this);
1496 PatternFragments[Fragments[i]] = P;
1497
Chris Lattnerdc32f982008-01-05 22:43:57 +00001498 // Validate the argument list, converting it to set, to discard duplicates.
Chris Lattner6cefb772008-01-05 22:25:12 +00001499 std::vector<std::string> &Args = P->getArgList();
Chris Lattnerdc32f982008-01-05 22:43:57 +00001500 std::set<std::string> OperandsSet(Args.begin(), Args.end());
Chris Lattner6cefb772008-01-05 22:25:12 +00001501
Chris Lattnerdc32f982008-01-05 22:43:57 +00001502 if (OperandsSet.count(""))
Chris Lattner6cefb772008-01-05 22:25:12 +00001503 P->error("Cannot have unnamed 'node' values in pattern fragment!");
1504
1505 // Parse the operands list.
1506 DagInit *OpsList = Fragments[i]->getValueAsDag("Operands");
1507 DefInit *OpsOp = dynamic_cast<DefInit*>(OpsList->getOperator());
1508 // Special cases: ops == outs == ins. Different names are used to
Jim Grosbachda4231f2009-03-26 16:17:51 +00001509 // improve readability.
Chris Lattner6cefb772008-01-05 22:25:12 +00001510 if (!OpsOp ||
1511 (OpsOp->getDef()->getName() != "ops" &&
1512 OpsOp->getDef()->getName() != "outs" &&
1513 OpsOp->getDef()->getName() != "ins"))
1514 P->error("Operands list should start with '(ops ... '!");
1515
1516 // Copy over the arguments.
1517 Args.clear();
1518 for (unsigned j = 0, e = OpsList->getNumArgs(); j != e; ++j) {
1519 if (!dynamic_cast<DefInit*>(OpsList->getArg(j)) ||
1520 static_cast<DefInit*>(OpsList->getArg(j))->
1521 getDef()->getName() != "node")
1522 P->error("Operands list should all be 'node' values.");
1523 if (OpsList->getArgName(j).empty())
1524 P->error("Operands list should have names for each operand!");
Chris Lattnerdc32f982008-01-05 22:43:57 +00001525 if (!OperandsSet.count(OpsList->getArgName(j)))
Chris Lattner6cefb772008-01-05 22:25:12 +00001526 P->error("'" + OpsList->getArgName(j) +
1527 "' does not occur in pattern or was multiply specified!");
Chris Lattnerdc32f982008-01-05 22:43:57 +00001528 OperandsSet.erase(OpsList->getArgName(j));
Chris Lattner6cefb772008-01-05 22:25:12 +00001529 Args.push_back(OpsList->getArgName(j));
1530 }
1531
Chris Lattnerdc32f982008-01-05 22:43:57 +00001532 if (!OperandsSet.empty())
Chris Lattner6cefb772008-01-05 22:25:12 +00001533 P->error("Operands list does not contain an entry for operand '" +
Chris Lattnerdc32f982008-01-05 22:43:57 +00001534 *OperandsSet.begin() + "'!");
Chris Lattner6cefb772008-01-05 22:25:12 +00001535
Chris Lattnerdc32f982008-01-05 22:43:57 +00001536 // If there is a code init for this fragment, keep track of the fact that
1537 // this fragment uses it.
Chris Lattner6cefb772008-01-05 22:25:12 +00001538 std::string Code = Fragments[i]->getValueAsCode("Predicate");
Chris Lattnerdc32f982008-01-05 22:43:57 +00001539 if (!Code.empty())
Dan Gohman0540e172008-10-15 06:17:21 +00001540 P->getOnlyTree()->addPredicateFn("Predicate_"+Fragments[i]->getName());
Chris Lattner6cefb772008-01-05 22:25:12 +00001541
1542 // If there is a node transformation corresponding to this, keep track of
1543 // it.
1544 Record *Transform = Fragments[i]->getValueAsDef("OperandTransform");
1545 if (!getSDNodeTransform(Transform).second.empty()) // not noop xform?
1546 P->getOnlyTree()->setTransformFn(Transform);
1547 }
1548
Chris Lattner6cefb772008-01-05 22:25:12 +00001549 // Now that we've parsed all of the tree fragments, do a closure on them so
1550 // that there are not references to PatFrags left inside of them.
Chris Lattner2ca698d2008-06-30 03:02:03 +00001551 for (unsigned i = 0, e = Fragments.size(); i != e; ++i) {
1552 TreePattern *ThePat = PatternFragments[Fragments[i]];
Chris Lattner6cefb772008-01-05 22:25:12 +00001553 ThePat->InlinePatternFragments();
1554
1555 // Infer as many types as possible. Don't worry about it if we don't infer
1556 // all of them, some may depend on the inputs of the pattern.
1557 try {
1558 ThePat->InferAllTypes();
1559 } catch (...) {
1560 // If this pattern fragment is not supported by this target (no types can
1561 // satisfy its constraints), just ignore it. If the bogus pattern is
1562 // actually used by instructions, the type consistency error will be
1563 // reported there.
1564 }
1565
1566 // If debugging, print out the pattern fragment result.
1567 DEBUG(ThePat->dump());
1568 }
1569}
1570
Chris Lattnerfe718932008-01-06 01:10:31 +00001571void CodeGenDAGPatterns::ParseDefaultOperands() {
Chris Lattner6cefb772008-01-05 22:25:12 +00001572 std::vector<Record*> DefaultOps[2];
1573 DefaultOps[0] = Records.getAllDerivedDefinitions("PredicateOperand");
1574 DefaultOps[1] = Records.getAllDerivedDefinitions("OptionalDefOperand");
1575
1576 // Find some SDNode.
1577 assert(!SDNodes.empty() && "No SDNodes parsed?");
1578 Init *SomeSDNode = new DefInit(SDNodes.begin()->first);
1579
1580 for (unsigned iter = 0; iter != 2; ++iter) {
1581 for (unsigned i = 0, e = DefaultOps[iter].size(); i != e; ++i) {
1582 DagInit *DefaultInfo = DefaultOps[iter][i]->getValueAsDag("DefaultOps");
1583
1584 // Clone the DefaultInfo dag node, changing the operator from 'ops' to
1585 // SomeSDnode so that we can parse this.
1586 std::vector<std::pair<Init*, std::string> > Ops;
1587 for (unsigned op = 0, e = DefaultInfo->getNumArgs(); op != e; ++op)
1588 Ops.push_back(std::make_pair(DefaultInfo->getArg(op),
1589 DefaultInfo->getArgName(op)));
Nate Begeman7cee8172009-03-19 05:21:56 +00001590 DagInit *DI = new DagInit(SomeSDNode, "", Ops);
Chris Lattner6cefb772008-01-05 22:25:12 +00001591
1592 // Create a TreePattern to parse this.
1593 TreePattern P(DefaultOps[iter][i], DI, false, *this);
1594 assert(P.getNumTrees() == 1 && "This ctor can only produce one tree!");
1595
1596 // Copy the operands over into a DAGDefaultOperand.
1597 DAGDefaultOperand DefaultOpInfo;
1598
1599 TreePatternNode *T = P.getTree(0);
1600 for (unsigned op = 0, e = T->getNumChildren(); op != e; ++op) {
1601 TreePatternNode *TPN = T->getChild(op);
1602 while (TPN->ApplyTypeConstraints(P, false))
1603 /* Resolve all types */;
1604
Anton Korobeynikovae9f3a32008-02-20 11:08:44 +00001605 if (TPN->ContainsUnresolvedType()) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001606 if (iter == 0)
1607 throw "Value #" + utostr(i) + " of PredicateOperand '" +
Chris Lattner53d09bd2010-02-23 05:59:10 +00001608 DefaultOps[iter][i]->getName() +"' doesn't have a concrete type!";
Chris Lattner6cefb772008-01-05 22:25:12 +00001609 else
1610 throw "Value #" + utostr(i) + " of OptionalDefOperand '" +
Chris Lattner53d09bd2010-02-23 05:59:10 +00001611 DefaultOps[iter][i]->getName() +"' doesn't have a concrete type!";
Anton Korobeynikovae9f3a32008-02-20 11:08:44 +00001612 }
Chris Lattner6cefb772008-01-05 22:25:12 +00001613 DefaultOpInfo.DefaultOps.push_back(TPN);
1614 }
1615
1616 // Insert it into the DefaultOperands map so we can find it later.
1617 DefaultOperands[DefaultOps[iter][i]] = DefaultOpInfo;
1618 }
1619 }
1620}
1621
1622/// HandleUse - Given "Pat" a leaf in the pattern, check to see if it is an
1623/// instruction input. Return true if this is a real use.
1624static bool HandleUse(TreePattern *I, TreePatternNode *Pat,
1625 std::map<std::string, TreePatternNode*> &InstInputs,
1626 std::vector<Record*> &InstImpInputs) {
1627 // No name -> not interesting.
1628 if (Pat->getName().empty()) {
1629 if (Pat->isLeaf()) {
1630 DefInit *DI = dynamic_cast<DefInit*>(Pat->getLeafValue());
1631 if (DI && DI->getDef()->isSubClassOf("RegisterClass"))
1632 I->error("Input " + DI->getDef()->getName() + " must be named!");
1633 else if (DI && DI->getDef()->isSubClassOf("Register"))
1634 InstImpInputs.push_back(DI->getDef());
Chris Lattner6cefb772008-01-05 22:25:12 +00001635 }
1636 return false;
1637 }
1638
1639 Record *Rec;
1640 if (Pat->isLeaf()) {
1641 DefInit *DI = dynamic_cast<DefInit*>(Pat->getLeafValue());
1642 if (!DI) I->error("Input $" + Pat->getName() + " must be an identifier!");
1643 Rec = DI->getDef();
1644 } else {
Chris Lattner6cefb772008-01-05 22:25:12 +00001645 Rec = Pat->getOperator();
1646 }
1647
1648 // SRCVALUE nodes are ignored.
1649 if (Rec->getName() == "srcvalue")
1650 return false;
1651
1652 TreePatternNode *&Slot = InstInputs[Pat->getName()];
1653 if (!Slot) {
1654 Slot = Pat;
Chris Lattner53d09bd2010-02-23 05:59:10 +00001655 return true;
Chris Lattner6cefb772008-01-05 22:25:12 +00001656 }
Chris Lattner53d09bd2010-02-23 05:59:10 +00001657 Record *SlotRec;
1658 if (Slot->isLeaf()) {
1659 SlotRec = dynamic_cast<DefInit*>(Slot->getLeafValue())->getDef();
1660 } else {
1661 assert(Slot->getNumChildren() == 0 && "can't be a use with children!");
1662 SlotRec = Slot->getOperator();
1663 }
1664
1665 // Ensure that the inputs agree if we've already seen this input.
1666 if (Rec != SlotRec)
1667 I->error("All $" + Pat->getName() + " inputs must agree with each other");
1668 if (Slot->getExtTypes() != Pat->getExtTypes())
1669 I->error("All $" + Pat->getName() + " inputs must agree with each other");
Chris Lattner6cefb772008-01-05 22:25:12 +00001670 return true;
1671}
1672
1673/// FindPatternInputsAndOutputs - Scan the specified TreePatternNode (which is
1674/// part of "I", the instruction), computing the set of inputs and outputs of
1675/// the pattern. Report errors if we see anything naughty.
Chris Lattnerfe718932008-01-06 01:10:31 +00001676void CodeGenDAGPatterns::
Chris Lattner6cefb772008-01-05 22:25:12 +00001677FindPatternInputsAndOutputs(TreePattern *I, TreePatternNode *Pat,
1678 std::map<std::string, TreePatternNode*> &InstInputs,
1679 std::map<std::string, TreePatternNode*>&InstResults,
1680 std::vector<Record*> &InstImpInputs,
1681 std::vector<Record*> &InstImpResults) {
1682 if (Pat->isLeaf()) {
1683 bool isUse = HandleUse(I, Pat, InstInputs, InstImpInputs);
1684 if (!isUse && Pat->getTransformFn())
1685 I->error("Cannot specify a transform function for a non-input value!");
1686 return;
Chris Lattner84aa60b2010-02-17 06:53:36 +00001687 }
1688
1689 if (Pat->getOperator()->getName() == "implicit") {
Chris Lattner6cefb772008-01-05 22:25:12 +00001690 for (unsigned i = 0, e = Pat->getNumChildren(); i != e; ++i) {
1691 TreePatternNode *Dest = Pat->getChild(i);
1692 if (!Dest->isLeaf())
1693 I->error("implicitly defined value should be a register!");
1694
1695 DefInit *Val = dynamic_cast<DefInit*>(Dest->getLeafValue());
1696 if (!Val || !Val->getDef()->isSubClassOf("Register"))
1697 I->error("implicitly defined value should be a register!");
1698 InstImpResults.push_back(Val->getDef());
1699 }
1700 return;
Chris Lattner84aa60b2010-02-17 06:53:36 +00001701 }
1702
1703 if (Pat->getOperator()->getName() != "set") {
Chris Lattner6cefb772008-01-05 22:25:12 +00001704 // If this is not a set, verify that the children nodes are not void typed,
1705 // and recurse.
1706 for (unsigned i = 0, e = Pat->getNumChildren(); i != e; ++i) {
Owen Anderson825b72b2009-08-11 20:47:22 +00001707 if (Pat->getChild(i)->getExtTypeNum(0) == MVT::isVoid)
Chris Lattner6cefb772008-01-05 22:25:12 +00001708 I->error("Cannot have void nodes inside of patterns!");
1709 FindPatternInputsAndOutputs(I, Pat->getChild(i), InstInputs, InstResults,
1710 InstImpInputs, InstImpResults);
1711 }
1712
1713 // If this is a non-leaf node with no children, treat it basically as if
1714 // it were a leaf. This handles nodes like (imm).
Nate Begeman7cee8172009-03-19 05:21:56 +00001715 bool isUse = HandleUse(I, Pat, InstInputs, InstImpInputs);
Chris Lattner6cefb772008-01-05 22:25:12 +00001716
1717 if (!isUse && Pat->getTransformFn())
1718 I->error("Cannot specify a transform function for a non-input value!");
1719 return;
Chris Lattner84aa60b2010-02-17 06:53:36 +00001720 }
Chris Lattner6cefb772008-01-05 22:25:12 +00001721
1722 // Otherwise, this is a set, validate and collect instruction results.
1723 if (Pat->getNumChildren() == 0)
1724 I->error("set requires operands!");
1725
1726 if (Pat->getTransformFn())
1727 I->error("Cannot specify a transform function on a set node!");
1728
1729 // Check the set destinations.
1730 unsigned NumDests = Pat->getNumChildren()-1;
1731 for (unsigned i = 0; i != NumDests; ++i) {
1732 TreePatternNode *Dest = Pat->getChild(i);
1733 if (!Dest->isLeaf())
1734 I->error("set destination should be a register!");
1735
1736 DefInit *Val = dynamic_cast<DefInit*>(Dest->getLeafValue());
1737 if (!Val)
1738 I->error("set destination should be a register!");
1739
1740 if (Val->getDef()->isSubClassOf("RegisterClass") ||
Chris Lattnera938ac62009-07-29 20:43:05 +00001741 Val->getDef()->isSubClassOf("PointerLikeRegClass")) {
Chris Lattner6cefb772008-01-05 22:25:12 +00001742 if (Dest->getName().empty())
1743 I->error("set destination must have a name!");
1744 if (InstResults.count(Dest->getName()))
1745 I->error("cannot set '" + Dest->getName() +"' multiple times");
1746 InstResults[Dest->getName()] = Dest;
1747 } else if (Val->getDef()->isSubClassOf("Register")) {
1748 InstImpResults.push_back(Val->getDef());
1749 } else {
1750 I->error("set destination should be a register!");
1751 }
1752 }
1753
1754 // Verify and collect info from the computation.
1755 FindPatternInputsAndOutputs(I, Pat->getChild(NumDests),
1756 InstInputs, InstResults,
1757 InstImpInputs, InstImpResults);
1758}
1759
Dan Gohmanee4fa192008-04-03 00:02:49 +00001760//===----------------------------------------------------------------------===//
1761// Instruction Analysis
1762//===----------------------------------------------------------------------===//
1763
1764class InstAnalyzer {
1765 const CodeGenDAGPatterns &CDP;
1766 bool &mayStore;
1767 bool &mayLoad;
1768 bool &HasSideEffects;
1769public:
1770 InstAnalyzer(const CodeGenDAGPatterns &cdp,
1771 bool &maystore, bool &mayload, bool &hse)
1772 : CDP(cdp), mayStore(maystore), mayLoad(mayload), HasSideEffects(hse){
1773 }
1774
1775 /// Analyze - Analyze the specified instruction, returning true if the
1776 /// instruction had a pattern.
1777 bool Analyze(Record *InstRecord) {
1778 const TreePattern *Pattern = CDP.getInstruction(InstRecord).getPattern();
1779 if (Pattern == 0) {
1780 HasSideEffects = 1;
1781 return false; // No pattern.
1782 }
1783
1784 // FIXME: Assume only the first tree is the pattern. The others are clobber
1785 // nodes.
1786 AnalyzeNode(Pattern->getTree(0));
1787 return true;
1788 }
1789
1790private:
1791 void AnalyzeNode(const TreePatternNode *N) {
1792 if (N->isLeaf()) {
1793 if (DefInit *DI = dynamic_cast<DefInit*>(N->getLeafValue())) {
1794 Record *LeafRec = DI->getDef();
1795 // Handle ComplexPattern leaves.
1796 if (LeafRec->isSubClassOf("ComplexPattern")) {
1797 const ComplexPattern &CP = CDP.getComplexPattern(LeafRec);
1798 if (CP.hasProperty(SDNPMayStore)) mayStore = true;
1799 if (CP.hasProperty(SDNPMayLoad)) mayLoad = true;
1800 if (CP.hasProperty(SDNPSideEffect)) HasSideEffects = true;
1801 }
1802 }
1803 return;
1804 }
1805
1806 // Analyze children.
1807 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i)
1808 AnalyzeNode(N->getChild(i));
1809
1810 // Ignore set nodes, which are not SDNodes.
1811 if (N->getOperator()->getName() == "set")
1812 return;
1813
1814 // Get information about the SDNode for the operator.
1815 const SDNodeInfo &OpInfo = CDP.getSDNodeInfo(N->getOperator());
1816
1817 // Notice properties of the node.
1818 if (OpInfo.hasProperty(SDNPMayStore)) mayStore = true;
1819 if (OpInfo.hasProperty(SDNPMayLoad)) mayLoad = true;
1820 if (OpInfo.hasProperty(SDNPSideEffect)) HasSideEffects = true;
1821
1822 if (const CodeGenIntrinsic *IntInfo = N->getIntrinsicInfo(CDP)) {
1823 // If this is an intrinsic, analyze it.
1824 if (IntInfo->ModRef >= CodeGenIntrinsic::ReadArgMem)
1825 mayLoad = true;// These may load memory.
1826
1827 if (IntInfo->ModRef >= CodeGenIntrinsic::WriteArgMem)
1828 mayStore = true;// Intrinsics that can write to memory are 'mayStore'.
1829
1830 if (IntInfo->ModRef >= CodeGenIntrinsic::WriteMem)
1831 // WriteMem intrinsics can have other strange effects.
1832 HasSideEffects = true;
1833 }
1834 }
1835
1836};
1837
1838static void InferFromPattern(const CodeGenInstruction &Inst,
1839 bool &MayStore, bool &MayLoad,
1840 bool &HasSideEffects,
1841 const CodeGenDAGPatterns &CDP) {
1842 MayStore = MayLoad = HasSideEffects = false;
1843
1844 bool HadPattern =
1845 InstAnalyzer(CDP, MayStore, MayLoad, HasSideEffects).Analyze(Inst.TheDef);
1846
1847 // InstAnalyzer only correctly analyzes mayStore/mayLoad so far.
1848 if (Inst.mayStore) { // If the .td file explicitly sets mayStore, use it.
1849 // If we decided that this is a store from the pattern, then the .td file
1850 // entry is redundant.
1851 if (MayStore)
1852 fprintf(stderr,
1853 "Warning: mayStore flag explicitly set on instruction '%s'"
1854 " but flag already inferred from pattern.\n",
1855 Inst.TheDef->getName().c_str());
1856 MayStore = true;
1857 }
1858
1859 if (Inst.mayLoad) { // If the .td file explicitly sets mayLoad, use it.
1860 // If we decided that this is a load from the pattern, then the .td file
1861 // entry is redundant.
1862 if (MayLoad)
1863 fprintf(stderr,
1864 "Warning: mayLoad flag explicitly set on instruction '%s'"
1865 " but flag already inferred from pattern.\n",
1866 Inst.TheDef->getName().c_str());
1867 MayLoad = true;
1868 }
1869
1870 if (Inst.neverHasSideEffects) {
1871 if (HadPattern)
1872 fprintf(stderr, "Warning: neverHasSideEffects set on instruction '%s' "
1873 "which already has a pattern\n", Inst.TheDef->getName().c_str());
1874 HasSideEffects = false;
1875 }
1876
1877 if (Inst.hasSideEffects) {
1878 if (HasSideEffects)
1879 fprintf(stderr, "Warning: hasSideEffects set on instruction '%s' "
1880 "which already inferred this.\n", Inst.TheDef->getName().c_str());
1881 HasSideEffects = true;
1882 }
1883}
1884
Chris Lattner6cefb772008-01-05 22:25:12 +00001885/// ParseInstructions - Parse all of the instructions, inlining and resolving
1886/// any fragments involved. This populates the Instructions list with fully
1887/// resolved instructions.
Chris Lattnerfe718932008-01-06 01:10:31 +00001888void CodeGenDAGPatterns::ParseInstructions() {
Chris Lattner6cefb772008-01-05 22:25:12 +00001889 std::vector<Record*> Instrs = Records.getAllDerivedDefinitions("Instruction");
1890
1891 for (unsigned i = 0, e = Instrs.size(); i != e; ++i) {
1892 ListInit *LI = 0;
1893
1894 if (dynamic_cast<ListInit*>(Instrs[i]->getValueInit("Pattern")))
1895 LI = Instrs[i]->getValueAsListInit("Pattern");
1896
1897 // If there is no pattern, only collect minimal information about the
1898 // instruction for its operand list. We have to assume that there is one
1899 // result, as we have no detailed info.
1900 if (!LI || LI->getSize() == 0) {
1901 std::vector<Record*> Results;
1902 std::vector<Record*> Operands;
1903
1904 CodeGenInstruction &InstInfo =Target.getInstruction(Instrs[i]->getName());
1905
1906 if (InstInfo.OperandList.size() != 0) {
1907 if (InstInfo.NumDefs == 0) {
1908 // These produce no results
1909 for (unsigned j = 0, e = InstInfo.OperandList.size(); j < e; ++j)
1910 Operands.push_back(InstInfo.OperandList[j].Rec);
1911 } else {
1912 // Assume the first operand is the result.
1913 Results.push_back(InstInfo.OperandList[0].Rec);
1914
1915 // The rest are inputs.
1916 for (unsigned j = 1, e = InstInfo.OperandList.size(); j < e; ++j)
1917 Operands.push_back(InstInfo.OperandList[j].Rec);
1918 }
1919 }
1920
1921 // Create and insert the instruction.
1922 std::vector<Record*> ImpResults;
1923 std::vector<Record*> ImpOperands;
1924 Instructions.insert(std::make_pair(Instrs[i],
1925 DAGInstruction(0, Results, Operands, ImpResults,
1926 ImpOperands)));
1927 continue; // no pattern.
1928 }
1929
1930 // Parse the instruction.
1931 TreePattern *I = new TreePattern(Instrs[i], LI, true, *this);
1932 // Inline pattern fragments into it.
1933 I->InlinePatternFragments();
1934
1935 // Infer as many types as possible. If we cannot infer all of them, we can
1936 // never do anything with this instruction pattern: report it to the user.
1937 if (!I->InferAllTypes())
1938 I->error("Could not infer all types in pattern!");
1939
1940 // InstInputs - Keep track of all of the inputs of the instruction, along
1941 // with the record they are declared as.
1942 std::map<std::string, TreePatternNode*> InstInputs;
1943
1944 // InstResults - Keep track of all the virtual registers that are 'set'
1945 // in the instruction, including what reg class they are.
1946 std::map<std::string, TreePatternNode*> InstResults;
1947
1948 std::vector<Record*> InstImpInputs;
1949 std::vector<Record*> InstImpResults;
1950
1951 // Verify that the top-level forms in the instruction are of void type, and
1952 // fill in the InstResults map.
1953 for (unsigned j = 0, e = I->getNumTrees(); j != e; ++j) {
1954 TreePatternNode *Pat = I->getTree(j);
Owen Anderson825b72b2009-08-11 20:47:22 +00001955 if (Pat->getExtTypeNum(0) != MVT::isVoid)
Chris Lattner6cefb772008-01-05 22:25:12 +00001956 I->error("Top-level forms in instruction pattern should have"
1957 " void types");
1958
1959 // Find inputs and outputs, and verify the structure of the uses/defs.
1960 FindPatternInputsAndOutputs(I, Pat, InstInputs, InstResults,
1961 InstImpInputs, InstImpResults);
1962 }
1963
1964 // Now that we have inputs and outputs of the pattern, inspect the operands
1965 // list for the instruction. This determines the order that operands are
1966 // added to the machine instruction the node corresponds to.
1967 unsigned NumResults = InstResults.size();
1968
1969 // Parse the operands list from the (ops) list, validating it.
1970 assert(I->getArgList().empty() && "Args list should still be empty here!");
1971 CodeGenInstruction &CGI = Target.getInstruction(Instrs[i]->getName());
1972
1973 // Check that all of the results occur first in the list.
1974 std::vector<Record*> Results;
1975 TreePatternNode *Res0Node = NULL;
1976 for (unsigned i = 0; i != NumResults; ++i) {
1977 if (i == CGI.OperandList.size())
1978 I->error("'" + InstResults.begin()->first +
1979 "' set but does not appear in operand list!");
1980 const std::string &OpName = CGI.OperandList[i].Name;
1981
1982 // Check that it exists in InstResults.
1983 TreePatternNode *RNode = InstResults[OpName];
1984 if (RNode == 0)
1985 I->error("Operand $" + OpName + " does not exist in operand list!");
1986
1987 if (i == 0)
1988 Res0Node = RNode;
1989 Record *R = dynamic_cast<DefInit*>(RNode->getLeafValue())->getDef();
1990 if (R == 0)
1991 I->error("Operand $" + OpName + " should be a set destination: all "
1992 "outputs must occur before inputs in operand list!");
1993
1994 if (CGI.OperandList[i].Rec != R)
1995 I->error("Operand $" + OpName + " class mismatch!");
1996
1997 // Remember the return type.
1998 Results.push_back(CGI.OperandList[i].Rec);
1999
2000 // Okay, this one checks out.
2001 InstResults.erase(OpName);
2002 }
2003
2004 // Loop over the inputs next. Make a copy of InstInputs so we can destroy
2005 // the copy while we're checking the inputs.
2006 std::map<std::string, TreePatternNode*> InstInputsCheck(InstInputs);
2007
2008 std::vector<TreePatternNode*> ResultNodeOperands;
2009 std::vector<Record*> Operands;
2010 for (unsigned i = NumResults, e = CGI.OperandList.size(); i != e; ++i) {
2011 CodeGenInstruction::OperandInfo &Op = CGI.OperandList[i];
2012 const std::string &OpName = Op.Name;
2013 if (OpName.empty())
2014 I->error("Operand #" + utostr(i) + " in operands list has no name!");
2015
2016 if (!InstInputsCheck.count(OpName)) {
2017 // If this is an predicate operand or optional def operand with an
2018 // DefaultOps set filled in, we can ignore this. When we codegen it,
2019 // we will do so as always executed.
2020 if (Op.Rec->isSubClassOf("PredicateOperand") ||
2021 Op.Rec->isSubClassOf("OptionalDefOperand")) {
2022 // Does it have a non-empty DefaultOps field? If so, ignore this
2023 // operand.
2024 if (!getDefaultOperand(Op.Rec).DefaultOps.empty())
2025 continue;
2026 }
2027 I->error("Operand $" + OpName +
2028 " does not appear in the instruction pattern");
2029 }
2030 TreePatternNode *InVal = InstInputsCheck[OpName];
2031 InstInputsCheck.erase(OpName); // It occurred, remove from map.
2032
2033 if (InVal->isLeaf() &&
2034 dynamic_cast<DefInit*>(InVal->getLeafValue())) {
2035 Record *InRec = static_cast<DefInit*>(InVal->getLeafValue())->getDef();
2036 if (Op.Rec != InRec && !InRec->isSubClassOf("ComplexPattern"))
2037 I->error("Operand $" + OpName + "'s register class disagrees"
2038 " between the operand and pattern");
2039 }
2040 Operands.push_back(Op.Rec);
2041
2042 // Construct the result for the dest-pattern operand list.
2043 TreePatternNode *OpNode = InVal->clone();
2044
2045 // No predicate is useful on the result.
Dan Gohman0540e172008-10-15 06:17:21 +00002046 OpNode->clearPredicateFns();
Chris Lattner6cefb772008-01-05 22:25:12 +00002047
2048 // Promote the xform function to be an explicit node if set.
2049 if (Record *Xform = OpNode->getTransformFn()) {
2050 OpNode->setTransformFn(0);
2051 std::vector<TreePatternNode*> Children;
2052 Children.push_back(OpNode);
2053 OpNode = new TreePatternNode(Xform, Children);
2054 }
2055
2056 ResultNodeOperands.push_back(OpNode);
2057 }
2058
2059 if (!InstInputsCheck.empty())
2060 I->error("Input operand $" + InstInputsCheck.begin()->first +
2061 " occurs in pattern but not in operands list!");
2062
2063 TreePatternNode *ResultPattern =
2064 new TreePatternNode(I->getRecord(), ResultNodeOperands);
2065 // Copy fully inferred output node type to instruction result pattern.
2066 if (NumResults > 0)
2067 ResultPattern->setTypes(Res0Node->getExtTypes());
2068
2069 // Create and insert the instruction.
2070 // FIXME: InstImpResults and InstImpInputs should not be part of
2071 // DAGInstruction.
2072 DAGInstruction TheInst(I, Results, Operands, InstImpResults, InstImpInputs);
2073 Instructions.insert(std::make_pair(I->getRecord(), TheInst));
2074
2075 // Use a temporary tree pattern to infer all types and make sure that the
2076 // constructed result is correct. This depends on the instruction already
2077 // being inserted into the Instructions map.
2078 TreePattern Temp(I->getRecord(), ResultPattern, false, *this);
2079 Temp.InferAllTypes();
2080
2081 DAGInstruction &TheInsertedInst = Instructions.find(I->getRecord())->second;
2082 TheInsertedInst.setResultPattern(Temp.getOnlyTree());
2083
2084 DEBUG(I->dump());
2085 }
2086
2087 // If we can, convert the instructions to be patterns that are matched!
Benjamin Kramer5b9e7ef2009-08-23 10:39:21 +00002088 for (std::map<Record*, DAGInstruction, RecordPtrCmp>::iterator II =
2089 Instructions.begin(),
Chris Lattner6cefb772008-01-05 22:25:12 +00002090 E = Instructions.end(); II != E; ++II) {
2091 DAGInstruction &TheInst = II->second;
Chris Lattnerf1ab4f12008-01-06 01:52:22 +00002092 const TreePattern *I = TheInst.getPattern();
Chris Lattner6cefb772008-01-05 22:25:12 +00002093 if (I == 0) continue; // No pattern.
2094
2095 // FIXME: Assume only the first tree is the pattern. The others are clobber
2096 // nodes.
2097 TreePatternNode *Pattern = I->getTree(0);
2098 TreePatternNode *SrcPattern;
2099 if (Pattern->getOperator()->getName() == "set") {
2100 SrcPattern = Pattern->getChild(Pattern->getNumChildren()-1)->clone();
2101 } else{
2102 // Not a set (store or something?)
2103 SrcPattern = Pattern;
2104 }
2105
Chris Lattner6cefb772008-01-05 22:25:12 +00002106 Record *Instr = II->first;
Chris Lattner25b6f912010-02-23 06:16:51 +00002107 AddPatternToMatch(I,
2108 PatternToMatch(Instr->getValueAsListInit("Predicates"),
Chris Lattner967d54a2010-02-23 06:35:45 +00002109 SrcPattern,
2110 TheInst.getResultPattern(),
Chris Lattner25b6f912010-02-23 06:16:51 +00002111 TheInst.getImpResults(),
Chris Lattner117ccb72010-03-01 22:09:11 +00002112 Instr->getValueAsInt("AddedComplexity"),
2113 Instr->getID()));
Chris Lattner6cefb772008-01-05 22:25:12 +00002114 }
2115}
2116
Chris Lattner4ac7a0c2010-02-23 06:55:24 +00002117
2118typedef std::pair<const TreePatternNode*, unsigned> NameRecord;
2119
Chris Lattner967d54a2010-02-23 06:35:45 +00002120static void FindNames(const TreePatternNode *P,
Chris Lattnera27234e2010-02-23 07:22:28 +00002121 std::map<std::string, NameRecord> &Names,
2122 const TreePattern *PatternTop) {
Chris Lattner4ac7a0c2010-02-23 06:55:24 +00002123 if (!P->getName().empty()) {
2124 NameRecord &Rec = Names[P->getName()];
2125 // If this is the first instance of the name, remember the node.
2126 if (Rec.second++ == 0)
2127 Rec.first = P;
Chris Lattnera27234e2010-02-23 07:22:28 +00002128 else if (Rec.first->getExtTypes() != P->getExtTypes())
2129 PatternTop->error("repetition of value: $" + P->getName() +
2130 " where different uses have different types!");
Chris Lattner4ac7a0c2010-02-23 06:55:24 +00002131 }
Chris Lattner967d54a2010-02-23 06:35:45 +00002132
2133 if (!P->isLeaf()) {
2134 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i)
Chris Lattnera27234e2010-02-23 07:22:28 +00002135 FindNames(P->getChild(i), Names, PatternTop);
Chris Lattner967d54a2010-02-23 06:35:45 +00002136 }
2137}
2138
Chris Lattner25b6f912010-02-23 06:16:51 +00002139void CodeGenDAGPatterns::AddPatternToMatch(const TreePattern *Pattern,
2140 const PatternToMatch &PTM) {
Chris Lattner967d54a2010-02-23 06:35:45 +00002141 // Do some sanity checking on the pattern we're about to match.
Chris Lattner25b6f912010-02-23 06:16:51 +00002142 std::string Reason;
2143 if (!PTM.getSrcPattern()->canPatternMatch(Reason, *this))
Chris Lattner967d54a2010-02-23 06:35:45 +00002144 Pattern->error("Pattern can never match: " + Reason);
Chris Lattner25b6f912010-02-23 06:16:51 +00002145
Chris Lattner405f1252010-03-01 22:29:19 +00002146 // If the source pattern's root is a complex pattern, that complex pattern
2147 // must specify the nodes it can potentially match.
2148 if (const ComplexPattern *CP =
2149 PTM.getSrcPattern()->getComplexPatternInfo(*this))
2150 if (CP->getRootNodes().empty())
2151 Pattern->error("ComplexPattern at root must specify list of opcodes it"
2152 " could match");
2153
2154
Chris Lattner967d54a2010-02-23 06:35:45 +00002155 // Find all of the named values in the input and output, ensure they have the
2156 // same type.
Chris Lattner4ac7a0c2010-02-23 06:55:24 +00002157 std::map<std::string, NameRecord> SrcNames, DstNames;
Chris Lattnera27234e2010-02-23 07:22:28 +00002158 FindNames(PTM.getSrcPattern(), SrcNames, Pattern);
2159 FindNames(PTM.getDstPattern(), DstNames, Pattern);
Chris Lattner967d54a2010-02-23 06:35:45 +00002160
2161 // Scan all of the named values in the destination pattern, rejecting them if
2162 // they don't exist in the input pattern.
Chris Lattner4ac7a0c2010-02-23 06:55:24 +00002163 for (std::map<std::string, NameRecord>::iterator
Chris Lattnerba1cff42010-02-23 07:50:58 +00002164 I = DstNames.begin(), E = DstNames.end(); I != E; ++I) {
Chris Lattner4ac7a0c2010-02-23 06:55:24 +00002165 if (SrcNames[I->first].first == 0)
Chris Lattner967d54a2010-02-23 06:35:45 +00002166 Pattern->error("Pattern has input without matching name in output: $" +
2167 I->first);
Chris Lattnerba1cff42010-02-23 07:50:58 +00002168
2169#if 0
2170 const std::vector<unsigned char> &SrcTypeVec =
2171 SrcNames[I->first].first->getExtTypes();
2172 const std::vector<unsigned char> &DstTypeVec =
2173 I->second.first->getExtTypes();
2174 if (SrcTypeVec == DstTypeVec) continue;
2175
2176 std::string SrcType, DstType;
2177 for (unsigned i = 0, e = SrcTypeVec.size(); i != e; ++i)
2178 SrcType += ":" + GetTypeName(SrcTypeVec[i]);
2179 for (unsigned i = 0, e = DstTypeVec.size(); i != e; ++i)
2180 DstType += ":" + GetTypeName(DstTypeVec[i]);
2181
2182 Pattern->error("Variable $" + I->first +
2183 " has different types in source (" + SrcType +
2184 ") and dest (" + DstType + ") pattern!");
2185#endif
2186 }
Chris Lattner4ac7a0c2010-02-23 06:55:24 +00002187
2188 // Scan all of the named values in the source pattern, rejecting them if the
2189 // name isn't used in the dest, and isn't used to tie two values together.
2190 for (std::map<std::string, NameRecord>::iterator
2191 I = SrcNames.begin(), E = SrcNames.end(); I != E; ++I)
2192 if (DstNames[I->first].first == 0 && SrcNames[I->first].second == 1)
2193 Pattern->error("Pattern has dead named input: $" + I->first);
2194
Chris Lattner25b6f912010-02-23 06:16:51 +00002195 PatternsToMatch.push_back(PTM);
2196}
2197
2198
Dan Gohmanee4fa192008-04-03 00:02:49 +00002199
2200void CodeGenDAGPatterns::InferInstructionFlags() {
2201 std::map<std::string, CodeGenInstruction> &InstrDescs =
2202 Target.getInstructions();
2203 for (std::map<std::string, CodeGenInstruction>::iterator
2204 II = InstrDescs.begin(), E = InstrDescs.end(); II != E; ++II) {
2205 CodeGenInstruction &InstInfo = II->second;
2206 // Determine properties of the instruction from its pattern.
2207 bool MayStore, MayLoad, HasSideEffects;
2208 InferFromPattern(InstInfo, MayStore, MayLoad, HasSideEffects, *this);
2209 InstInfo.mayStore = MayStore;
2210 InstInfo.mayLoad = MayLoad;
2211 InstInfo.hasSideEffects = HasSideEffects;
2212 }
2213}
2214
Chris Lattnerfe718932008-01-06 01:10:31 +00002215void CodeGenDAGPatterns::ParsePatterns() {
Chris Lattner6cefb772008-01-05 22:25:12 +00002216 std::vector<Record*> Patterns = Records.getAllDerivedDefinitions("Pattern");
2217
2218 for (unsigned i = 0, e = Patterns.size(); i != e; ++i) {
2219 DagInit *Tree = Patterns[i]->getValueAsDag("PatternToMatch");
2220 DefInit *OpDef = dynamic_cast<DefInit*>(Tree->getOperator());
2221 Record *Operator = OpDef->getDef();
2222 TreePattern *Pattern;
2223 if (Operator->getName() != "parallel")
2224 Pattern = new TreePattern(Patterns[i], Tree, true, *this);
2225 else {
2226 std::vector<Init*> Values;
David Greenee1b46912009-06-08 20:23:18 +00002227 RecTy *ListTy = 0;
2228 for (unsigned j = 0, ee = Tree->getNumArgs(); j != ee; ++j) {
Chris Lattner6cefb772008-01-05 22:25:12 +00002229 Values.push_back(Tree->getArg(j));
David Greenee1b46912009-06-08 20:23:18 +00002230 TypedInit *TArg = dynamic_cast<TypedInit*>(Tree->getArg(j));
2231 if (TArg == 0) {
Daniel Dunbar1a551802009-07-03 00:10:29 +00002232 errs() << "In dag: " << Tree->getAsString();
2233 errs() << " -- Untyped argument in pattern\n";
David Greenee1b46912009-06-08 20:23:18 +00002234 assert(0 && "Untyped argument in pattern");
2235 }
2236 if (ListTy != 0) {
2237 ListTy = resolveTypes(ListTy, TArg->getType());
2238 if (ListTy == 0) {
Daniel Dunbar1a551802009-07-03 00:10:29 +00002239 errs() << "In dag: " << Tree->getAsString();
2240 errs() << " -- Incompatible types in pattern arguments\n";
David Greenee1b46912009-06-08 20:23:18 +00002241 assert(0 && "Incompatible types in pattern arguments");
2242 }
2243 }
2244 else {
Bill Wendlingee1f6b02009-06-09 18:49:42 +00002245 ListTy = TArg->getType();
David Greenee1b46912009-06-08 20:23:18 +00002246 }
2247 }
2248 ListInit *LI = new ListInit(Values, new ListRecTy(ListTy));
Chris Lattner6cefb772008-01-05 22:25:12 +00002249 Pattern = new TreePattern(Patterns[i], LI, true, *this);
2250 }
2251
2252 // Inline pattern fragments into it.
2253 Pattern->InlinePatternFragments();
2254
2255 ListInit *LI = Patterns[i]->getValueAsListInit("ResultInstrs");
2256 if (LI->getSize() == 0) continue; // no pattern.
2257
2258 // Parse the instruction.
2259 TreePattern *Result = new TreePattern(Patterns[i], LI, false, *this);
2260
2261 // Inline pattern fragments into it.
2262 Result->InlinePatternFragments();
2263
2264 if (Result->getNumTrees() != 1)
2265 Result->error("Cannot handle instructions producing instructions "
2266 "with temporaries yet!");
2267
2268 bool IterateInference;
2269 bool InferredAllPatternTypes, InferredAllResultTypes;
2270 do {
2271 // Infer as many types as possible. If we cannot infer all of them, we
2272 // can never do anything with this pattern: report it to the user.
2273 InferredAllPatternTypes = Pattern->InferAllTypes();
2274
2275 // Infer as many types as possible. If we cannot infer all of them, we
2276 // can never do anything with this pattern: report it to the user.
2277 InferredAllResultTypes = Result->InferAllTypes();
2278
2279 // Apply the type of the result to the source pattern. This helps us
2280 // resolve cases where the input type is known to be a pointer type (which
2281 // is considered resolved), but the result knows it needs to be 32- or
2282 // 64-bits. Infer the other way for good measure.
2283 IterateInference = Pattern->getTree(0)->
2284 UpdateNodeType(Result->getTree(0)->getExtTypes(), *Result);
2285 IterateInference |= Result->getTree(0)->
2286 UpdateNodeType(Pattern->getTree(0)->getExtTypes(), *Result);
2287 } while (IterateInference);
Nate Begeman9008ca62009-04-27 18:41:29 +00002288
Chris Lattner6cefb772008-01-05 22:25:12 +00002289 // Verify that we inferred enough types that we can do something with the
2290 // pattern and result. If these fire the user has to add type casts.
2291 if (!InferredAllPatternTypes)
2292 Pattern->error("Could not infer all types in pattern!");
2293 if (!InferredAllResultTypes)
2294 Result->error("Could not infer all types in pattern result!");
2295
2296 // Validate that the input pattern is correct.
2297 std::map<std::string, TreePatternNode*> InstInputs;
2298 std::map<std::string, TreePatternNode*> InstResults;
2299 std::vector<Record*> InstImpInputs;
2300 std::vector<Record*> InstImpResults;
2301 for (unsigned j = 0, ee = Pattern->getNumTrees(); j != ee; ++j)
2302 FindPatternInputsAndOutputs(Pattern, Pattern->getTree(j),
2303 InstInputs, InstResults,
2304 InstImpInputs, InstImpResults);
2305
2306 // Promote the xform function to be an explicit node if set.
2307 TreePatternNode *DstPattern = Result->getOnlyTree();
2308 std::vector<TreePatternNode*> ResultNodeOperands;
2309 for (unsigned ii = 0, ee = DstPattern->getNumChildren(); ii != ee; ++ii) {
2310 TreePatternNode *OpNode = DstPattern->getChild(ii);
2311 if (Record *Xform = OpNode->getTransformFn()) {
2312 OpNode->setTransformFn(0);
2313 std::vector<TreePatternNode*> Children;
2314 Children.push_back(OpNode);
2315 OpNode = new TreePatternNode(Xform, Children);
2316 }
2317 ResultNodeOperands.push_back(OpNode);
2318 }
2319 DstPattern = Result->getOnlyTree();
2320 if (!DstPattern->isLeaf())
2321 DstPattern = new TreePatternNode(DstPattern->getOperator(),
2322 ResultNodeOperands);
2323 DstPattern->setTypes(Result->getOnlyTree()->getExtTypes());
2324 TreePattern Temp(Result->getRecord(), DstPattern, false, *this);
2325 Temp.InferAllTypes();
2326
Chris Lattner6cefb772008-01-05 22:25:12 +00002327
Chris Lattner25b6f912010-02-23 06:16:51 +00002328 AddPatternToMatch(Pattern,
2329 PatternToMatch(Patterns[i]->getValueAsListInit("Predicates"),
2330 Pattern->getTree(0),
2331 Temp.getOnlyTree(), InstImpResults,
Chris Lattner117ccb72010-03-01 22:09:11 +00002332 Patterns[i]->getValueAsInt("AddedComplexity"),
2333 Patterns[i]->getID()));
Chris Lattner6cefb772008-01-05 22:25:12 +00002334 }
2335}
2336
2337/// CombineChildVariants - Given a bunch of permutations of each child of the
2338/// 'operator' node, put them together in all possible ways.
2339static void CombineChildVariants(TreePatternNode *Orig,
2340 const std::vector<std::vector<TreePatternNode*> > &ChildVariants,
2341 std::vector<TreePatternNode*> &OutVariants,
Scott Michel327d0652008-03-05 17:49:05 +00002342 CodeGenDAGPatterns &CDP,
2343 const MultipleUseVarSet &DepVars) {
Chris Lattner6cefb772008-01-05 22:25:12 +00002344 // Make sure that each operand has at least one variant to choose from.
2345 for (unsigned i = 0, e = ChildVariants.size(); i != e; ++i)
2346 if (ChildVariants[i].empty())
2347 return;
2348
2349 // The end result is an all-pairs construction of the resultant pattern.
2350 std::vector<unsigned> Idxs;
2351 Idxs.resize(ChildVariants.size());
Scott Michel327d0652008-03-05 17:49:05 +00002352 bool NotDone;
2353 do {
2354#ifndef NDEBUG
Chris Lattneraaf54862010-02-27 06:51:44 +00002355 DEBUG(if (!Idxs.empty()) {
2356 errs() << Orig->getOperator()->getName() << ": Idxs = [ ";
2357 for (unsigned i = 0; i < Idxs.size(); ++i) {
2358 errs() << Idxs[i] << " ";
2359 }
2360 errs() << "]\n";
2361 });
Scott Michel327d0652008-03-05 17:49:05 +00002362#endif
Chris Lattner6cefb772008-01-05 22:25:12 +00002363 // Create the variant and add it to the output list.
2364 std::vector<TreePatternNode*> NewChildren;
2365 for (unsigned i = 0, e = ChildVariants.size(); i != e; ++i)
2366 NewChildren.push_back(ChildVariants[i][Idxs[i]]);
2367 TreePatternNode *R = new TreePatternNode(Orig->getOperator(), NewChildren);
2368
2369 // Copy over properties.
2370 R->setName(Orig->getName());
Dan Gohman0540e172008-10-15 06:17:21 +00002371 R->setPredicateFns(Orig->getPredicateFns());
Chris Lattner6cefb772008-01-05 22:25:12 +00002372 R->setTransformFn(Orig->getTransformFn());
2373 R->setTypes(Orig->getExtTypes());
2374
Scott Michel327d0652008-03-05 17:49:05 +00002375 // If this pattern cannot match, do not include it as a variant.
Chris Lattner6cefb772008-01-05 22:25:12 +00002376 std::string ErrString;
2377 if (!R->canPatternMatch(ErrString, CDP)) {
2378 delete R;
2379 } else {
2380 bool AlreadyExists = false;
2381
2382 // Scan to see if this pattern has already been emitted. We can get
2383 // duplication due to things like commuting:
2384 // (and GPRC:$a, GPRC:$b) -> (and GPRC:$b, GPRC:$a)
2385 // which are the same pattern. Ignore the dups.
2386 for (unsigned i = 0, e = OutVariants.size(); i != e; ++i)
Scott Michel327d0652008-03-05 17:49:05 +00002387 if (R->isIsomorphicTo(OutVariants[i], DepVars)) {
Chris Lattner6cefb772008-01-05 22:25:12 +00002388 AlreadyExists = true;
2389 break;
2390 }
2391
2392 if (AlreadyExists)
2393 delete R;
2394 else
2395 OutVariants.push_back(R);
2396 }
2397
Scott Michel327d0652008-03-05 17:49:05 +00002398 // Increment indices to the next permutation by incrementing the
2399 // indicies from last index backward, e.g., generate the sequence
2400 // [0, 0], [0, 1], [1, 0], [1, 1].
2401 int IdxsIdx;
2402 for (IdxsIdx = Idxs.size() - 1; IdxsIdx >= 0; --IdxsIdx) {
2403 if (++Idxs[IdxsIdx] == ChildVariants[IdxsIdx].size())
2404 Idxs[IdxsIdx] = 0;
2405 else
Chris Lattner6cefb772008-01-05 22:25:12 +00002406 break;
Chris Lattner6cefb772008-01-05 22:25:12 +00002407 }
Scott Michel327d0652008-03-05 17:49:05 +00002408 NotDone = (IdxsIdx >= 0);
2409 } while (NotDone);
Chris Lattner6cefb772008-01-05 22:25:12 +00002410}
2411
2412/// CombineChildVariants - A helper function for binary operators.
2413///
2414static void CombineChildVariants(TreePatternNode *Orig,
2415 const std::vector<TreePatternNode*> &LHS,
2416 const std::vector<TreePatternNode*> &RHS,
2417 std::vector<TreePatternNode*> &OutVariants,
Scott Michel327d0652008-03-05 17:49:05 +00002418 CodeGenDAGPatterns &CDP,
2419 const MultipleUseVarSet &DepVars) {
Chris Lattner6cefb772008-01-05 22:25:12 +00002420 std::vector<std::vector<TreePatternNode*> > ChildVariants;
2421 ChildVariants.push_back(LHS);
2422 ChildVariants.push_back(RHS);
Scott Michel327d0652008-03-05 17:49:05 +00002423 CombineChildVariants(Orig, ChildVariants, OutVariants, CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002424}
2425
2426
2427static void GatherChildrenOfAssociativeOpcode(TreePatternNode *N,
2428 std::vector<TreePatternNode *> &Children) {
2429 assert(N->getNumChildren()==2 &&"Associative but doesn't have 2 children!");
2430 Record *Operator = N->getOperator();
2431
2432 // Only permit raw nodes.
Dan Gohman0540e172008-10-15 06:17:21 +00002433 if (!N->getName().empty() || !N->getPredicateFns().empty() ||
Chris Lattner6cefb772008-01-05 22:25:12 +00002434 N->getTransformFn()) {
2435 Children.push_back(N);
2436 return;
2437 }
2438
2439 if (N->getChild(0)->isLeaf() || N->getChild(0)->getOperator() != Operator)
2440 Children.push_back(N->getChild(0));
2441 else
2442 GatherChildrenOfAssociativeOpcode(N->getChild(0), Children);
2443
2444 if (N->getChild(1)->isLeaf() || N->getChild(1)->getOperator() != Operator)
2445 Children.push_back(N->getChild(1));
2446 else
2447 GatherChildrenOfAssociativeOpcode(N->getChild(1), Children);
2448}
2449
2450/// GenerateVariantsOf - Given a pattern N, generate all permutations we can of
2451/// the (potentially recursive) pattern by using algebraic laws.
2452///
2453static void GenerateVariantsOf(TreePatternNode *N,
2454 std::vector<TreePatternNode*> &OutVariants,
Scott Michel327d0652008-03-05 17:49:05 +00002455 CodeGenDAGPatterns &CDP,
2456 const MultipleUseVarSet &DepVars) {
Chris Lattner6cefb772008-01-05 22:25:12 +00002457 // We cannot permute leaves.
2458 if (N->isLeaf()) {
2459 OutVariants.push_back(N);
2460 return;
2461 }
2462
2463 // Look up interesting info about the node.
2464 const SDNodeInfo &NodeInfo = CDP.getSDNodeInfo(N->getOperator());
2465
Jim Grosbachda4231f2009-03-26 16:17:51 +00002466 // If this node is associative, re-associate.
Chris Lattner6cefb772008-01-05 22:25:12 +00002467 if (NodeInfo.hasProperty(SDNPAssociative)) {
Jim Grosbachda4231f2009-03-26 16:17:51 +00002468 // Re-associate by pulling together all of the linked operators
Chris Lattner6cefb772008-01-05 22:25:12 +00002469 std::vector<TreePatternNode*> MaximalChildren;
2470 GatherChildrenOfAssociativeOpcode(N, MaximalChildren);
2471
2472 // Only handle child sizes of 3. Otherwise we'll end up trying too many
2473 // permutations.
2474 if (MaximalChildren.size() == 3) {
2475 // Find the variants of all of our maximal children.
2476 std::vector<TreePatternNode*> AVariants, BVariants, CVariants;
Scott Michel327d0652008-03-05 17:49:05 +00002477 GenerateVariantsOf(MaximalChildren[0], AVariants, CDP, DepVars);
2478 GenerateVariantsOf(MaximalChildren[1], BVariants, CDP, DepVars);
2479 GenerateVariantsOf(MaximalChildren[2], CVariants, CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002480
2481 // There are only two ways we can permute the tree:
2482 // (A op B) op C and A op (B op C)
2483 // Within these forms, we can also permute A/B/C.
2484
2485 // Generate legal pair permutations of A/B/C.
2486 std::vector<TreePatternNode*> ABVariants;
2487 std::vector<TreePatternNode*> BAVariants;
2488 std::vector<TreePatternNode*> ACVariants;
2489 std::vector<TreePatternNode*> CAVariants;
2490 std::vector<TreePatternNode*> BCVariants;
2491 std::vector<TreePatternNode*> CBVariants;
Scott Michel327d0652008-03-05 17:49:05 +00002492 CombineChildVariants(N, AVariants, BVariants, ABVariants, CDP, DepVars);
2493 CombineChildVariants(N, BVariants, AVariants, BAVariants, CDP, DepVars);
2494 CombineChildVariants(N, AVariants, CVariants, ACVariants, CDP, DepVars);
2495 CombineChildVariants(N, CVariants, AVariants, CAVariants, CDP, DepVars);
2496 CombineChildVariants(N, BVariants, CVariants, BCVariants, CDP, DepVars);
2497 CombineChildVariants(N, CVariants, BVariants, CBVariants, CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002498
2499 // Combine those into the result: (x op x) op x
Scott Michel327d0652008-03-05 17:49:05 +00002500 CombineChildVariants(N, ABVariants, CVariants, OutVariants, CDP, DepVars);
2501 CombineChildVariants(N, BAVariants, CVariants, OutVariants, CDP, DepVars);
2502 CombineChildVariants(N, ACVariants, BVariants, OutVariants, CDP, DepVars);
2503 CombineChildVariants(N, CAVariants, BVariants, OutVariants, CDP, DepVars);
2504 CombineChildVariants(N, BCVariants, AVariants, OutVariants, CDP, DepVars);
2505 CombineChildVariants(N, CBVariants, AVariants, OutVariants, CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002506
2507 // Combine those into the result: x op (x op x)
Scott Michel327d0652008-03-05 17:49:05 +00002508 CombineChildVariants(N, CVariants, ABVariants, OutVariants, CDP, DepVars);
2509 CombineChildVariants(N, CVariants, BAVariants, OutVariants, CDP, DepVars);
2510 CombineChildVariants(N, BVariants, ACVariants, OutVariants, CDP, DepVars);
2511 CombineChildVariants(N, BVariants, CAVariants, OutVariants, CDP, DepVars);
2512 CombineChildVariants(N, AVariants, BCVariants, OutVariants, CDP, DepVars);
2513 CombineChildVariants(N, AVariants, CBVariants, OutVariants, CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002514 return;
2515 }
2516 }
2517
2518 // Compute permutations of all children.
2519 std::vector<std::vector<TreePatternNode*> > ChildVariants;
2520 ChildVariants.resize(N->getNumChildren());
2521 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i)
Scott Michel327d0652008-03-05 17:49:05 +00002522 GenerateVariantsOf(N->getChild(i), ChildVariants[i], CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002523
2524 // Build all permutations based on how the children were formed.
Scott Michel327d0652008-03-05 17:49:05 +00002525 CombineChildVariants(N, ChildVariants, OutVariants, CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002526
2527 // If this node is commutative, consider the commuted order.
Evan Cheng6bd95672008-06-16 20:29:38 +00002528 bool isCommIntrinsic = N->isCommutativeIntrinsic(CDP);
2529 if (NodeInfo.hasProperty(SDNPCommutative) || isCommIntrinsic) {
2530 assert((N->getNumChildren()==2 || isCommIntrinsic) &&
2531 "Commutative but doesn't have 2 children!");
Chris Lattner6cefb772008-01-05 22:25:12 +00002532 // Don't count children which are actually register references.
2533 unsigned NC = 0;
2534 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i) {
2535 TreePatternNode *Child = N->getChild(i);
2536 if (Child->isLeaf())
2537 if (DefInit *DI = dynamic_cast<DefInit*>(Child->getLeafValue())) {
2538 Record *RR = DI->getDef();
2539 if (RR->isSubClassOf("Register"))
2540 continue;
2541 }
2542 NC++;
2543 }
2544 // Consider the commuted order.
Evan Cheng6bd95672008-06-16 20:29:38 +00002545 if (isCommIntrinsic) {
2546 // Commutative intrinsic. First operand is the intrinsic id, 2nd and 3rd
2547 // operands are the commutative operands, and there might be more operands
2548 // after those.
2549 assert(NC >= 3 &&
2550 "Commutative intrinsic should have at least 3 childrean!");
2551 std::vector<std::vector<TreePatternNode*> > Variants;
2552 Variants.push_back(ChildVariants[0]); // Intrinsic id.
2553 Variants.push_back(ChildVariants[2]);
2554 Variants.push_back(ChildVariants[1]);
2555 for (unsigned i = 3; i != NC; ++i)
2556 Variants.push_back(ChildVariants[i]);
2557 CombineChildVariants(N, Variants, OutVariants, CDP, DepVars);
2558 } else if (NC == 2)
Chris Lattner6cefb772008-01-05 22:25:12 +00002559 CombineChildVariants(N, ChildVariants[1], ChildVariants[0],
Scott Michel327d0652008-03-05 17:49:05 +00002560 OutVariants, CDP, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002561 }
2562}
2563
2564
2565// GenerateVariants - Generate variants. For example, commutative patterns can
2566// match multiple ways. Add them to PatternsToMatch as well.
Chris Lattnerfe718932008-01-06 01:10:31 +00002567void CodeGenDAGPatterns::GenerateVariants() {
Chris Lattner569f1212009-08-23 04:44:11 +00002568 DEBUG(errs() << "Generating instruction variants.\n");
Chris Lattner6cefb772008-01-05 22:25:12 +00002569
2570 // Loop over all of the patterns we've collected, checking to see if we can
2571 // generate variants of the instruction, through the exploitation of
Jim Grosbachda4231f2009-03-26 16:17:51 +00002572 // identities. This permits the target to provide aggressive matching without
Chris Lattner6cefb772008-01-05 22:25:12 +00002573 // the .td file having to contain tons of variants of instructions.
2574 //
2575 // Note that this loop adds new patterns to the PatternsToMatch list, but we
2576 // intentionally do not reconsider these. Any variants of added patterns have
2577 // already been added.
2578 //
2579 for (unsigned i = 0, e = PatternsToMatch.size(); i != e; ++i) {
Scott Michel327d0652008-03-05 17:49:05 +00002580 MultipleUseVarSet DepVars;
Chris Lattner6cefb772008-01-05 22:25:12 +00002581 std::vector<TreePatternNode*> Variants;
Scott Michel327d0652008-03-05 17:49:05 +00002582 FindDepVars(PatternsToMatch[i].getSrcPattern(), DepVars);
Chris Lattner569f1212009-08-23 04:44:11 +00002583 DEBUG(errs() << "Dependent/multiply used variables: ");
Scott Michel327d0652008-03-05 17:49:05 +00002584 DEBUG(DumpDepVars(DepVars));
Chris Lattner569f1212009-08-23 04:44:11 +00002585 DEBUG(errs() << "\n");
Scott Michel327d0652008-03-05 17:49:05 +00002586 GenerateVariantsOf(PatternsToMatch[i].getSrcPattern(), Variants, *this, DepVars);
Chris Lattner6cefb772008-01-05 22:25:12 +00002587
2588 assert(!Variants.empty() && "Must create at least original variant!");
2589 Variants.erase(Variants.begin()); // Remove the original pattern.
2590
2591 if (Variants.empty()) // No variants for this pattern.
2592 continue;
2593
Chris Lattner569f1212009-08-23 04:44:11 +00002594 DEBUG(errs() << "FOUND VARIANTS OF: ";
2595 PatternsToMatch[i].getSrcPattern()->dump();
2596 errs() << "\n");
Chris Lattner6cefb772008-01-05 22:25:12 +00002597
2598 for (unsigned v = 0, e = Variants.size(); v != e; ++v) {
2599 TreePatternNode *Variant = Variants[v];
2600
Chris Lattner569f1212009-08-23 04:44:11 +00002601 DEBUG(errs() << " VAR#" << v << ": ";
2602 Variant->dump();
2603 errs() << "\n");
Chris Lattner6cefb772008-01-05 22:25:12 +00002604
2605 // Scan to see if an instruction or explicit pattern already matches this.
2606 bool AlreadyExists = false;
2607 for (unsigned p = 0, e = PatternsToMatch.size(); p != e; ++p) {
Evan Chengc0ad80f2009-06-26 05:59:16 +00002608 // Skip if the top level predicates do not match.
2609 if (PatternsToMatch[i].getPredicates() !=
2610 PatternsToMatch[p].getPredicates())
2611 continue;
Chris Lattner6cefb772008-01-05 22:25:12 +00002612 // Check to see if this variant already exists.
Scott Michel327d0652008-03-05 17:49:05 +00002613 if (Variant->isIsomorphicTo(PatternsToMatch[p].getSrcPattern(), DepVars)) {
Chris Lattner569f1212009-08-23 04:44:11 +00002614 DEBUG(errs() << " *** ALREADY EXISTS, ignoring variant.\n");
Chris Lattner6cefb772008-01-05 22:25:12 +00002615 AlreadyExists = true;
2616 break;
2617 }
2618 }
2619 // If we already have it, ignore the variant.
2620 if (AlreadyExists) continue;
2621
2622 // Otherwise, add it to the list of patterns we have.
2623 PatternsToMatch.
2624 push_back(PatternToMatch(PatternsToMatch[i].getPredicates(),
2625 Variant, PatternsToMatch[i].getDstPattern(),
2626 PatternsToMatch[i].getDstRegs(),
Chris Lattner117ccb72010-03-01 22:09:11 +00002627 PatternsToMatch[i].getAddedComplexity(),
2628 Record::getNewUID()));
Chris Lattner6cefb772008-01-05 22:25:12 +00002629 }
2630
Chris Lattner569f1212009-08-23 04:44:11 +00002631 DEBUG(errs() << "\n");
Chris Lattner6cefb772008-01-05 22:25:12 +00002632 }
2633}
2634