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Chris Lattner54cb8fd2005-09-07 23:44:43 +00001//===- DAGISelEmitter.cpp - Generate an instruction selector --------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner30609102007-12-29 20:37:13 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner54cb8fd2005-09-07 23:44:43 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This tablegen backend emits a DAG instruction selector.
11//
12//===----------------------------------------------------------------------===//
13
14#include "DAGISelEmitter.h"
15#include "Record.h"
16#include "llvm/ADT/StringExtras.h"
David Greene8ad4c002008-10-27 21:56:29 +000017#include "llvm/Support/CommandLine.h"
Chris Lattner54cb8fd2005-09-07 23:44:43 +000018#include "llvm/Support/Debug.h"
Chris Lattnerbe8e7212006-10-11 03:35:34 +000019#include "llvm/Support/MathExtras.h"
David Greene8ad4c002008-10-27 21:56:29 +000020#include "llvm/Support/Debug.h"
Jeff Cohena48283b2005-09-25 19:04:43 +000021#include <algorithm>
Dan Gohman95d11092008-07-07 21:00:17 +000022#include <deque>
Daniel Dunbar1a551802009-07-03 00:10:29 +000023#include <iostream>
Chris Lattner54cb8fd2005-09-07 23:44:43 +000024using namespace llvm;
25
Chris Lattner3d4ad292009-08-07 22:27:19 +000026static cl::opt<bool>
27GenDebug("gen-debug", cl::desc("Generate debug code"), cl::init(false));
David Greene8ad4c002008-10-27 21:56:29 +000028
Chris Lattnerca559d02005-09-08 21:03:01 +000029//===----------------------------------------------------------------------===//
Chris Lattnerdc32f982008-01-05 22:43:57 +000030// DAGISelEmitter Helper methods
Chris Lattner54cb8fd2005-09-07 23:44:43 +000031//
32
Dan Gohmaneeb3a002010-01-05 01:24:18 +000033/// getNodeName - The top level Select_* functions have an "SDNode* N"
34/// argument. When expanding the pattern-matching code, the intermediate
35/// variables have type SDValue. This function provides a uniform way to
36/// reference the underlying "SDNode *" for both cases.
37static std::string getNodeName(const std::string &S) {
38 if (S == "N") return S;
39 return S + ".getNode()";
40}
41
42/// getNodeValue - Similar to getNodeName, except it provides a uniform
43/// way to access the SDValue for both cases.
44static std::string getValueName(const std::string &S) {
45 if (S == "N") return "SDValue(N, 0)";
46 return S;
47}
48
Chris Lattner6cefb772008-01-05 22:25:12 +000049/// NodeIsComplexPattern - return true if N is a leaf node and a subclass of
50/// ComplexPattern.
51static bool NodeIsComplexPattern(TreePatternNode *N) {
Evan Cheng0fc71982005-12-08 02:00:36 +000052 return (N->isLeaf() &&
53 dynamic_cast<DefInit*>(N->getLeafValue()) &&
54 static_cast<DefInit*>(N->getLeafValue())->getDef()->
55 isSubClassOf("ComplexPattern"));
56}
57
Evan Cheng0fc71982005-12-08 02:00:36 +000058
Chris Lattner05814af2005-09-28 17:57:56 +000059/// getPatternSize - Return the 'size' of this pattern. We want to match large
60/// patterns before small ones. This is used to determine the size of a
61/// pattern.
Chris Lattnerfe718932008-01-06 01:10:31 +000062static unsigned getPatternSize(TreePatternNode *P, CodeGenDAGPatterns &CGP) {
Owen Andersone50ed302009-08-10 22:56:29 +000063 assert((EEVT::isExtIntegerInVTs(P->getExtTypes()) ||
64 EEVT::isExtFloatingPointInVTs(P->getExtTypes()) ||
Owen Anderson825b72b2009-08-11 20:47:22 +000065 P->getExtTypeNum(0) == MVT::isVoid ||
66 P->getExtTypeNum(0) == MVT::Flag ||
67 P->getExtTypeNum(0) == MVT::iPTR ||
68 P->getExtTypeNum(0) == MVT::iPTRAny) &&
Evan Cheng4a7c2842006-01-06 22:19:44 +000069 "Not a valid pattern node to size!");
Evan Cheng6cec34e2006-09-08 07:26:39 +000070 unsigned Size = 3; // The node itself.
Evan Cheng657416c2006-02-01 06:06:31 +000071 // If the root node is a ConstantSDNode, increases its size.
72 // e.g. (set R32:$dst, 0).
73 if (P->isLeaf() && dynamic_cast<IntInit*>(P->getLeafValue()))
Evan Cheng6cec34e2006-09-08 07:26:39 +000074 Size += 2;
Evan Cheng0fc71982005-12-08 02:00:36 +000075
76 // FIXME: This is a hack to statically increase the priority of patterns
77 // which maps a sub-dag to a complex pattern. e.g. favors LEA over ADD.
78 // Later we can allow complexity / cost for each pattern to be (optionally)
79 // specified. To get best possible pattern match we'll need to dynamically
80 // calculate the complexity of all patterns a dag can potentially map to.
Chris Lattner47661322010-02-14 22:22:58 +000081 const ComplexPattern *AM = P->getComplexPatternInfo(CGP);
Evan Cheng0fc71982005-12-08 02:00:36 +000082 if (AM)
Evan Cheng6cec34e2006-09-08 07:26:39 +000083 Size += AM->getNumOperands() * 3;
Chris Lattner3e179802006-02-03 18:06:02 +000084
85 // If this node has some predicate function that must match, it adds to the
86 // complexity of this node.
Dan Gohman0540e172008-10-15 06:17:21 +000087 if (!P->getPredicateFns().empty())
Chris Lattner3e179802006-02-03 18:06:02 +000088 ++Size;
89
Chris Lattner05814af2005-09-28 17:57:56 +000090 // Count children in the count if they are also nodes.
91 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i) {
92 TreePatternNode *Child = P->getChild(i);
Owen Anderson825b72b2009-08-11 20:47:22 +000093 if (!Child->isLeaf() && Child->getExtTypeNum(0) != MVT::Other)
Chris Lattner6cefb772008-01-05 22:25:12 +000094 Size += getPatternSize(Child, CGP);
Evan Cheng0fc71982005-12-08 02:00:36 +000095 else if (Child->isLeaf()) {
96 if (dynamic_cast<IntInit*>(Child->getLeafValue()))
Evan Cheng6cec34e2006-09-08 07:26:39 +000097 Size += 5; // Matches a ConstantSDNode (+3) and a specific value (+2).
Evan Cheng4a7c2842006-01-06 22:19:44 +000098 else if (NodeIsComplexPattern(Child))
Chris Lattner6cefb772008-01-05 22:25:12 +000099 Size += getPatternSize(Child, CGP);
Dan Gohman0540e172008-10-15 06:17:21 +0000100 else if (!Child->getPredicateFns().empty())
Chris Lattner3e179802006-02-03 18:06:02 +0000101 ++Size;
Chris Lattner2f041d42005-10-19 04:41:05 +0000102 }
Chris Lattner05814af2005-09-28 17:57:56 +0000103 }
104
105 return Size;
106}
107
108/// getResultPatternCost - Compute the number of instructions for this pattern.
109/// This is a temporary hack. We should really include the instruction
110/// latencies in this calculation.
Chris Lattner6cefb772008-01-05 22:25:12 +0000111static unsigned getResultPatternCost(TreePatternNode *P,
Chris Lattnerfe718932008-01-06 01:10:31 +0000112 CodeGenDAGPatterns &CGP) {
Chris Lattner05814af2005-09-28 17:57:56 +0000113 if (P->isLeaf()) return 0;
114
Evan Chengfbad7082006-02-18 02:33:09 +0000115 unsigned Cost = 0;
116 Record *Op = P->getOperator();
117 if (Op->isSubClassOf("Instruction")) {
118 Cost++;
Chris Lattner6cefb772008-01-05 22:25:12 +0000119 CodeGenInstruction &II = CGP.getTargetInfo().getInstruction(Op->getName());
Dan Gohman533297b2009-10-29 18:10:34 +0000120 if (II.usesCustomInserter)
Evan Chengfbad7082006-02-18 02:33:09 +0000121 Cost += 10;
122 }
Chris Lattner05814af2005-09-28 17:57:56 +0000123 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i)
Chris Lattner6cefb772008-01-05 22:25:12 +0000124 Cost += getResultPatternCost(P->getChild(i), CGP);
Chris Lattner05814af2005-09-28 17:57:56 +0000125 return Cost;
126}
127
Evan Chenge6f32032006-07-19 00:24:41 +0000128/// getResultPatternCodeSize - Compute the code size of instructions for this
129/// pattern.
Chris Lattner6cefb772008-01-05 22:25:12 +0000130static unsigned getResultPatternSize(TreePatternNode *P,
Chris Lattnerfe718932008-01-06 01:10:31 +0000131 CodeGenDAGPatterns &CGP) {
Evan Chenge6f32032006-07-19 00:24:41 +0000132 if (P->isLeaf()) return 0;
133
134 unsigned Cost = 0;
135 Record *Op = P->getOperator();
136 if (Op->isSubClassOf("Instruction")) {
137 Cost += Op->getValueAsInt("CodeSize");
138 }
139 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i)
Chris Lattner6cefb772008-01-05 22:25:12 +0000140 Cost += getResultPatternSize(P->getChild(i), CGP);
Evan Chenge6f32032006-07-19 00:24:41 +0000141 return Cost;
142}
143
Chris Lattner05814af2005-09-28 17:57:56 +0000144// PatternSortingPredicate - return true if we prefer to match LHS before RHS.
145// In particular, we want to match maximal patterns first and lowest cost within
146// a particular complexity first.
147struct PatternSortingPredicate {
Chris Lattnerfe718932008-01-06 01:10:31 +0000148 PatternSortingPredicate(CodeGenDAGPatterns &cgp) : CGP(cgp) {}
149 CodeGenDAGPatterns &CGP;
Evan Cheng0fc71982005-12-08 02:00:36 +0000150
Dan Gohman0540e172008-10-15 06:17:21 +0000151 typedef std::pair<unsigned, std::string> CodeLine;
152 typedef std::vector<CodeLine> CodeList;
153 typedef std::vector<std::pair<const PatternToMatch*, CodeList> > PatternList;
154
155 bool operator()(const std::pair<const PatternToMatch*, CodeList> &LHSPair,
156 const std::pair<const PatternToMatch*, CodeList> &RHSPair) {
157 const PatternToMatch *LHS = LHSPair.first;
158 const PatternToMatch *RHS = RHSPair.first;
159
Chris Lattner6cefb772008-01-05 22:25:12 +0000160 unsigned LHSSize = getPatternSize(LHS->getSrcPattern(), CGP);
161 unsigned RHSSize = getPatternSize(RHS->getSrcPattern(), CGP);
Evan Chengc81d2a02006-04-19 20:36:09 +0000162 LHSSize += LHS->getAddedComplexity();
163 RHSSize += RHS->getAddedComplexity();
Chris Lattner05814af2005-09-28 17:57:56 +0000164 if (LHSSize > RHSSize) return true; // LHS -> bigger -> less cost
165 if (LHSSize < RHSSize) return false;
166
167 // If the patterns have equal complexity, compare generated instruction cost
Chris Lattner6cefb772008-01-05 22:25:12 +0000168 unsigned LHSCost = getResultPatternCost(LHS->getDstPattern(), CGP);
169 unsigned RHSCost = getResultPatternCost(RHS->getDstPattern(), CGP);
Evan Chenge6f32032006-07-19 00:24:41 +0000170 if (LHSCost < RHSCost) return true;
171 if (LHSCost > RHSCost) return false;
172
Chris Lattner6cefb772008-01-05 22:25:12 +0000173 return getResultPatternSize(LHS->getDstPattern(), CGP) <
174 getResultPatternSize(RHS->getDstPattern(), CGP);
Chris Lattner05814af2005-09-28 17:57:56 +0000175 }
176};
177
Jim Grosbach54f30222009-03-25 23:28:33 +0000178/// getRegisterValueType - Look up and return the ValueType of the specified
179/// register. If the register is a member of multiple register classes which
Owen Anderson825b72b2009-08-11 20:47:22 +0000180/// have different associated types, return MVT::Other.
181static MVT::SimpleValueType getRegisterValueType(Record *R, const CodeGenTarget &T) {
Jim Grosbach866cc602009-03-26 14:45:34 +0000182 bool FoundRC = false;
Owen Anderson825b72b2009-08-11 20:47:22 +0000183 MVT::SimpleValueType VT = MVT::Other;
Jim Grosbach54f30222009-03-25 23:28:33 +0000184 const std::vector<CodeGenRegisterClass> &RCs = T.getRegisterClasses();
185 std::vector<CodeGenRegisterClass>::const_iterator RC;
186 std::vector<Record*>::const_iterator Element;
187
188 for (RC = RCs.begin() ; RC != RCs.end() ; RC++) {
189 Element = find((*RC).Elements.begin(), (*RC).Elements.end(), R);
190 if (Element != (*RC).Elements.end()) {
191 if (!FoundRC) {
Jim Grosbach866cc602009-03-26 14:45:34 +0000192 FoundRC = true;
Jim Grosbach54f30222009-03-25 23:28:33 +0000193 VT = (*RC).getValueTypeNum(0);
194 } else {
195 // In multiple RC's
196 if (VT != (*RC).getValueTypeNum(0)) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000197 // Types of the RC's do not agree. Return MVT::Other. The
Jim Grosbach54f30222009-03-25 23:28:33 +0000198 // target is responsible for handling this.
Owen Anderson825b72b2009-08-11 20:47:22 +0000199 return MVT::Other;
Jim Grosbach54f30222009-03-25 23:28:33 +0000200 }
201 }
202 }
203 }
204 return VT;
Evan Cheng66a48bb2005-12-01 00:18:45 +0000205}
206
Evan Chengf9d03182008-07-03 08:39:51 +0000207static std::string getOpcodeName(Record *Op, CodeGenDAGPatterns &CGP) {
208 return CGP.getSDNodeInfo(Op).getEnumName();
209}
210
Chris Lattnerdc32f982008-01-05 22:43:57 +0000211//===----------------------------------------------------------------------===//
Chris Lattner443e3f92008-01-05 22:54:53 +0000212// Node Transformation emitter implementation.
213//
Daniel Dunbar1a551802009-07-03 00:10:29 +0000214void DAGISelEmitter::EmitNodeTransforms(raw_ostream &OS) {
Chris Lattner443e3f92008-01-05 22:54:53 +0000215 // Walk the pattern fragments, adding them to a map, which sorts them by
216 // name.
Chris Lattnerfe718932008-01-06 01:10:31 +0000217 typedef std::map<std::string, CodeGenDAGPatterns::NodeXForm> NXsByNameTy;
Chris Lattner443e3f92008-01-05 22:54:53 +0000218 NXsByNameTy NXsByName;
219
Chris Lattnerfe718932008-01-06 01:10:31 +0000220 for (CodeGenDAGPatterns::nx_iterator I = CGP.nx_begin(), E = CGP.nx_end();
Chris Lattner443e3f92008-01-05 22:54:53 +0000221 I != E; ++I)
222 NXsByName.insert(std::make_pair(I->first->getName(), I->second));
223
224 OS << "\n// Node transformations.\n";
225
226 for (NXsByNameTy::iterator I = NXsByName.begin(), E = NXsByName.end();
227 I != E; ++I) {
228 Record *SDNode = I->second.first;
229 std::string Code = I->second.second;
230
231 if (Code.empty()) continue; // Empty code? Skip it.
232
Chris Lattner200c57e2008-01-05 22:58:54 +0000233 std::string ClassName = CGP.getSDNodeInfo(SDNode).getSDClassName();
Chris Lattner443e3f92008-01-05 22:54:53 +0000234 const char *C2 = ClassName == "SDNode" ? "N" : "inN";
235
Dan Gohman475871a2008-07-27 21:46:04 +0000236 OS << "inline SDValue Transform_" << I->first << "(SDNode *" << C2
Chris Lattner443e3f92008-01-05 22:54:53 +0000237 << ") {\n";
238 if (ClassName != "SDNode")
239 OS << " " << ClassName << " *N = cast<" << ClassName << ">(inN);\n";
240 OS << Code << "\n}\n";
241 }
242}
243
244//===----------------------------------------------------------------------===//
Chris Lattnerdc32f982008-01-05 22:43:57 +0000245// Predicate emitter implementation.
246//
247
Daniel Dunbar1a551802009-07-03 00:10:29 +0000248void DAGISelEmitter::EmitPredicateFunctions(raw_ostream &OS) {
Chris Lattnerdc32f982008-01-05 22:43:57 +0000249 OS << "\n// Predicate functions.\n";
250
251 // Walk the pattern fragments, adding them to a map, which sorts them by
252 // name.
253 typedef std::map<std::string, std::pair<Record*, TreePattern*> > PFsByNameTy;
254 PFsByNameTy PFsByName;
255
Chris Lattnerfe718932008-01-06 01:10:31 +0000256 for (CodeGenDAGPatterns::pf_iterator I = CGP.pf_begin(), E = CGP.pf_end();
Chris Lattnerdc32f982008-01-05 22:43:57 +0000257 I != E; ++I)
258 PFsByName.insert(std::make_pair(I->first->getName(), *I));
259
260
261 for (PFsByNameTy::iterator I = PFsByName.begin(), E = PFsByName.end();
262 I != E; ++I) {
263 Record *PatFragRecord = I->second.first;// Record that derives from PatFrag.
264 TreePattern *P = I->second.second;
265
266 // If there is a code init for this fragment, emit the predicate code.
267 std::string Code = PatFragRecord->getValueAsCode("Predicate");
268 if (Code.empty()) continue;
269
270 if (P->getOnlyTree()->isLeaf())
271 OS << "inline bool Predicate_" << PatFragRecord->getName()
272 << "(SDNode *N) {\n";
273 else {
274 std::string ClassName =
Chris Lattner200c57e2008-01-05 22:58:54 +0000275 CGP.getSDNodeInfo(P->getOnlyTree()->getOperator()).getSDClassName();
Chris Lattnerdc32f982008-01-05 22:43:57 +0000276 const char *C2 = ClassName == "SDNode" ? "N" : "inN";
277
278 OS << "inline bool Predicate_" << PatFragRecord->getName()
279 << "(SDNode *" << C2 << ") {\n";
280 if (ClassName != "SDNode")
281 OS << " " << ClassName << " *N = cast<" << ClassName << ">(inN);\n";
282 }
283 OS << Code << "\n}\n";
284 }
285
286 OS << "\n\n";
287}
288
289
290//===----------------------------------------------------------------------===//
291// PatternCodeEmitter implementation.
292//
Evan Chengb915f312005-12-09 22:45:35 +0000293class PatternCodeEmitter {
294private:
Chris Lattnerfe718932008-01-06 01:10:31 +0000295 CodeGenDAGPatterns &CGP;
Evan Chengb915f312005-12-09 22:45:35 +0000296
Evan Cheng58e84a62005-12-14 22:02:59 +0000297 // Predicates.
Dan Gohman22bb3112008-08-22 00:20:26 +0000298 std::string PredicateCheck;
Evan Cheng59413202006-04-19 18:07:24 +0000299 // Pattern cost.
300 unsigned Cost;
Evan Cheng58e84a62005-12-14 22:02:59 +0000301 // Instruction selector pattern.
302 TreePatternNode *Pattern;
303 // Matched instruction.
304 TreePatternNode *Instruction;
Chris Lattner8a0604b2006-01-28 20:31:24 +0000305
Evan Chengb915f312005-12-09 22:45:35 +0000306 // Node to name mapping
Evan Chengf805c2e2006-01-12 19:35:54 +0000307 std::map<std::string, std::string> VariableMap;
308 // Node to operator mapping
309 std::map<std::string, Record*> OperatorMap;
Evan Chenga58891f2008-02-05 22:50:29 +0000310 // Name of the folded node which produces a flag.
311 std::pair<std::string, unsigned> FoldedFlag;
Evan Chengb915f312005-12-09 22:45:35 +0000312 // Names of all the folded nodes which produce chains.
Evan Cheng1b80f4d2005-12-19 07:18:51 +0000313 std::vector<std::pair<std::string, unsigned> > FoldedChains;
Evan Cheng4326ef52006-10-12 02:08:53 +0000314 // Original input chain(s).
315 std::vector<std::pair<std::string, std::string> > OrigChains;
Evan Chengb4ad33c2006-01-19 01:55:45 +0000316 std::set<std::string> Duplicates;
Evan Chengb915f312005-12-09 22:45:35 +0000317
Dan Gohman69de1932008-02-06 22:27:42 +0000318 /// LSI - Load/Store information.
319 /// Save loads/stores matched by a pattern, and generate a MemOperandSDNode
320 /// for each memory access. This facilitates the use of AliasAnalysis in
321 /// the backend.
322 std::vector<std::string> LSI;
323
Evan Cheng676d7312006-08-26 00:59:04 +0000324 /// GeneratedCode - This is the buffer that we emit code to. The first int
Chris Lattner8a0604b2006-01-28 20:31:24 +0000325 /// indicates whether this is an exit predicate (something that should be
Evan Cheng676d7312006-08-26 00:59:04 +0000326 /// tested, and if true, the match fails) [when 1], or normal code to emit
327 /// [when 0], or initialization code to emit [when 2].
328 std::vector<std::pair<unsigned, std::string> > &GeneratedCode;
Dan Gohman475871a2008-07-27 21:46:04 +0000329 /// GeneratedDecl - This is the set of all SDValue declarations needed for
Evan Cheng21ad3922006-02-07 00:37:41 +0000330 /// the set of patterns for each top-level opcode.
Evan Chengf5493192006-08-26 01:02:19 +0000331 std::set<std::string> &GeneratedDecl;
Evan Chengfceb57a2006-07-15 08:45:20 +0000332 /// TargetOpcodes - The target specific opcodes used by the resulting
333 /// instructions.
334 std::vector<std::string> &TargetOpcodes;
Evan Chengf8729402006-07-16 06:12:52 +0000335 std::vector<std::string> &TargetVTs;
Dan Gohmane4c67cd2008-05-31 02:11:25 +0000336 /// OutputIsVariadic - Records whether the instruction output pattern uses
337 /// variable_ops. This requires that the Emit function be passed an
338 /// additional argument to indicate where the input varargs operands
339 /// begin.
340 bool &OutputIsVariadic;
341 /// NumInputRootOps - Records the number of operands the root node of the
342 /// input pattern has. This information is used in the generated code to
343 /// pass to Emit functions when variable_ops processing is needed.
344 unsigned &NumInputRootOps;
Chris Lattner8a0604b2006-01-28 20:31:24 +0000345
Evan Chenge4a8a6e2006-02-03 06:22:41 +0000346 std::string ChainName;
Chris Lattner8a0604b2006-01-28 20:31:24 +0000347 unsigned TmpNo;
Evan Chengfceb57a2006-07-15 08:45:20 +0000348 unsigned OpcNo;
Evan Chengf8729402006-07-16 06:12:52 +0000349 unsigned VTNo;
Chris Lattner8a0604b2006-01-28 20:31:24 +0000350
351 void emitCheck(const std::string &S) {
352 if (!S.empty())
Evan Cheng676d7312006-08-26 00:59:04 +0000353 GeneratedCode.push_back(std::make_pair(1, S));
Chris Lattner8a0604b2006-01-28 20:31:24 +0000354 }
355 void emitCode(const std::string &S) {
356 if (!S.empty())
Evan Cheng676d7312006-08-26 00:59:04 +0000357 GeneratedCode.push_back(std::make_pair(0, S));
358 }
359 void emitInit(const std::string &S) {
360 if (!S.empty())
361 GeneratedCode.push_back(std::make_pair(2, S));
Chris Lattner8a0604b2006-01-28 20:31:24 +0000362 }
Evan Chengf5493192006-08-26 01:02:19 +0000363 void emitDecl(const std::string &S) {
Evan Cheng21ad3922006-02-07 00:37:41 +0000364 assert(!S.empty() && "Invalid declaration");
Evan Chengf5493192006-08-26 01:02:19 +0000365 GeneratedDecl.insert(S);
Evan Cheng21ad3922006-02-07 00:37:41 +0000366 }
Evan Chengfceb57a2006-07-15 08:45:20 +0000367 void emitOpcode(const std::string &Opc) {
368 TargetOpcodes.push_back(Opc);
369 OpcNo++;
370 }
Evan Chengf8729402006-07-16 06:12:52 +0000371 void emitVT(const std::string &VT) {
372 TargetVTs.push_back(VT);
373 VTNo++;
374 }
Evan Chengb915f312005-12-09 22:45:35 +0000375public:
Dan Gohman22bb3112008-08-22 00:20:26 +0000376 PatternCodeEmitter(CodeGenDAGPatterns &cgp, std::string predcheck,
Evan Cheng58e84a62005-12-14 22:02:59 +0000377 TreePatternNode *pattern, TreePatternNode *instr,
Evan Cheng676d7312006-08-26 00:59:04 +0000378 std::vector<std::pair<unsigned, std::string> > &gc,
Evan Chengf5493192006-08-26 01:02:19 +0000379 std::set<std::string> &gd,
Evan Chengfceb57a2006-07-15 08:45:20 +0000380 std::vector<std::string> &to,
Dan Gohmane4c67cd2008-05-31 02:11:25 +0000381 std::vector<std::string> &tv,
382 bool &oiv,
383 unsigned &niro)
Dan Gohman22bb3112008-08-22 00:20:26 +0000384 : CGP(cgp), PredicateCheck(predcheck), Pattern(pattern), Instruction(instr),
Evan Cheng676d7312006-08-26 00:59:04 +0000385 GeneratedCode(gc), GeneratedDecl(gd),
386 TargetOpcodes(to), TargetVTs(tv),
Dan Gohmane4c67cd2008-05-31 02:11:25 +0000387 OutputIsVariadic(oiv), NumInputRootOps(niro),
Chris Lattner706d2d32006-08-09 16:44:44 +0000388 TmpNo(0), OpcNo(0), VTNo(0) {}
Evan Chengb915f312005-12-09 22:45:35 +0000389
390 /// EmitMatchCode - Emit a matcher for N, going to the label for PatternNo
391 /// if the match fails. At this point, we already know that the opcode for N
392 /// matches, and the SDNode for the result has the RootName specified name.
Evan Cheng13e9e9c2006-10-16 06:33:44 +0000393 void EmitMatchCode(TreePatternNode *N, TreePatternNode *P,
394 const std::string &RootName, const std::string &ChainSuffix,
Chris Lattnera0cdf172010-02-13 20:06:50 +0000395 bool &FoundChain);
Chris Lattner39e73f72006-10-11 04:05:55 +0000396
Evan Cheng13e9e9c2006-10-16 06:33:44 +0000397 void EmitChildMatchCode(TreePatternNode *Child, TreePatternNode *Parent,
Christopher Lamb85356242008-01-31 07:27:46 +0000398 const std::string &RootName,
Chris Lattnera0cdf172010-02-13 20:06:50 +0000399 const std::string &ChainSuffix, bool &FoundChain);
Evan Chengb915f312005-12-09 22:45:35 +0000400
401 /// EmitResultCode - Emit the action for a pattern. Now that it has matched
402 /// we actually have to build a DAG!
Evan Cheng676d7312006-08-26 00:59:04 +0000403 std::vector<std::string>
Evan Cheng85dbe1a2007-09-12 23:30:14 +0000404 EmitResultCode(TreePatternNode *N, std::vector<Record*> DstRegs,
Evan Cheng676d7312006-08-26 00:59:04 +0000405 bool InFlagDecled, bool ResNodeDecled,
Chris Lattnera0cdf172010-02-13 20:06:50 +0000406 bool LikeLeaf = false, bool isRoot = false);
Evan Chengb915f312005-12-09 22:45:35 +0000407
Chris Lattner488580c2006-01-28 19:06:51 +0000408 /// InsertOneTypeCheck - Insert a type-check for an unresolved type in 'Pat'
409 /// and add it to the tree. 'Pat' and 'Other' are isomorphic trees except that
Evan Chengb915f312005-12-09 22:45:35 +0000410 /// 'Pat' may be missing types. If we find an unresolved type to add a check
411 /// for, this returns true otherwise false if Pat has all types.
412 bool InsertOneTypeCheck(TreePatternNode *Pat, TreePatternNode *Other,
Chris Lattner706d2d32006-08-09 16:44:44 +0000413 const std::string &Prefix, bool isRoot = false) {
Evan Chengb915f312005-12-09 22:45:35 +0000414 // Did we find one?
Evan Chengd15531b2006-05-19 07:24:32 +0000415 if (Pat->getExtTypes() != Other->getExtTypes()) {
Evan Chengb915f312005-12-09 22:45:35 +0000416 // Move a type over from 'other' to 'pat'.
Nate Begemanb73628b2005-12-30 00:12:56 +0000417 Pat->setTypes(Other->getExtTypes());
Chris Lattner706d2d32006-08-09 16:44:44 +0000418 // The top level node type is checked outside of the select function.
419 if (!isRoot)
Anton Korobeynikovc2fd9192009-11-08 12:14:54 +0000420 emitCheck(Prefix + ".getValueType() == " +
Chris Lattner706d2d32006-08-09 16:44:44 +0000421 getName(Pat->getTypeNum(0)));
Evan Chengb915f312005-12-09 22:45:35 +0000422 return true;
Evan Chengb915f312005-12-09 22:45:35 +0000423 }
424
Chris Lattner47661322010-02-14 22:22:58 +0000425 unsigned OpNo = (unsigned)Pat->NodeHasProperty(SDNPHasChain, CGP);
Evan Chengb915f312005-12-09 22:45:35 +0000426 for (unsigned i = 0, e = Pat->getNumChildren(); i != e; ++i, ++OpNo)
427 if (InsertOneTypeCheck(Pat->getChild(i), Other->getChild(i),
428 Prefix + utostr(OpNo)))
429 return true;
430 return false;
431 }
432
433private:
Evan Cheng54597732006-01-26 00:22:25 +0000434 /// EmitInFlagSelectCode - Emit the flag operands for the DAG that is
Evan Chengb915f312005-12-09 22:45:35 +0000435 /// being built.
Evan Cheng54597732006-01-26 00:22:25 +0000436 void EmitInFlagSelectCode(TreePatternNode *N, const std::string &RootName,
Evan Cheng676d7312006-08-26 00:59:04 +0000437 bool &ChainEmitted, bool &InFlagDecled,
438 bool &ResNodeDecled, bool isRoot = false) {
Chris Lattner6cefb772008-01-05 22:25:12 +0000439 const CodeGenTarget &T = CGP.getTargetInfo();
Chris Lattner47661322010-02-14 22:22:58 +0000440 unsigned OpNo = (unsigned)N->NodeHasProperty(SDNPHasChain, CGP);
441 bool HasInFlag = N->NodeHasProperty(SDNPInFlag, CGP);
Evan Chengb915f312005-12-09 22:45:35 +0000442 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i, ++OpNo) {
443 TreePatternNode *Child = N->getChild(i);
444 if (!Child->isLeaf()) {
Evan Cheng676d7312006-08-26 00:59:04 +0000445 EmitInFlagSelectCode(Child, RootName + utostr(OpNo), ChainEmitted,
446 InFlagDecled, ResNodeDecled);
Evan Chengb915f312005-12-09 22:45:35 +0000447 } else {
448 if (DefInit *DI = dynamic_cast<DefInit*>(Child->getLeafValue())) {
Evan Chengb4ad33c2006-01-19 01:55:45 +0000449 if (!Child->getName().empty()) {
450 std::string Name = RootName + utostr(OpNo);
451 if (Duplicates.find(Name) != Duplicates.end())
452 // A duplicate! Do not emit a copy for this node.
453 continue;
454 }
455
Evan Chengb915f312005-12-09 22:45:35 +0000456 Record *RR = DI->getDef();
457 if (RR->isSubClassOf("Register")) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000458 MVT::SimpleValueType RVT = getRegisterValueType(RR, T);
459 if (RVT == MVT::Flag) {
Evan Cheng676d7312006-08-26 00:59:04 +0000460 if (!InFlagDecled) {
Dan Gohmaneeb3a002010-01-05 01:24:18 +0000461 emitCode("SDValue InFlag = " +
462 getValueName(RootName + utostr(OpNo)) + ";");
Evan Cheng676d7312006-08-26 00:59:04 +0000463 InFlagDecled = true;
464 } else
Dan Gohmaneeb3a002010-01-05 01:24:18 +0000465 emitCode("InFlag = " +
466 getValueName(RootName + utostr(OpNo)) + ";");
Evan Chengb2c6d492006-01-11 22:16:13 +0000467 } else {
468 if (!ChainEmitted) {
Dan Gohman475871a2008-07-27 21:46:04 +0000469 emitCode("SDValue Chain = CurDAG->getEntryNode();");
Evan Chenge4a8a6e2006-02-03 06:22:41 +0000470 ChainName = "Chain";
Evan Chengb2c6d492006-01-11 22:16:13 +0000471 ChainEmitted = true;
472 }
Evan Cheng676d7312006-08-26 00:59:04 +0000473 if (!InFlagDecled) {
Dan Gohman475871a2008-07-27 21:46:04 +0000474 emitCode("SDValue InFlag(0, 0);");
Evan Cheng676d7312006-08-26 00:59:04 +0000475 InFlagDecled = true;
476 }
Dale Johannesen874ae252009-06-02 03:12:52 +0000477 std::string Decl = (!ResNodeDecled) ? "SDNode *" : "";
478 emitCode(Decl + "ResNode = CurDAG->getCopyToReg(" + ChainName +
Dan Gohmaneeb3a002010-01-05 01:24:18 +0000479 ", " + getNodeName(RootName) + "->getDebugLoc()" +
Chris Lattner6cefb772008-01-05 22:25:12 +0000480 ", " + getQualifiedName(RR) +
Dan Gohmaneeb3a002010-01-05 01:24:18 +0000481 ", " + getValueName(RootName + utostr(OpNo)) +
482 ", InFlag).getNode();");
Dale Johannesen874ae252009-06-02 03:12:52 +0000483 ResNodeDecled = true;
Dan Gohman475871a2008-07-27 21:46:04 +0000484 emitCode(ChainName + " = SDValue(ResNode, 0);");
485 emitCode("InFlag = SDValue(ResNode, 1);");
Evan Chengb915f312005-12-09 22:45:35 +0000486 }
487 }
488 }
489 }
490 }
Evan Cheng54597732006-01-26 00:22:25 +0000491
Dale Johannesen874ae252009-06-02 03:12:52 +0000492 if (HasInFlag) {
Evan Cheng676d7312006-08-26 00:59:04 +0000493 if (!InFlagDecled) {
Dan Gohmaneeb3a002010-01-05 01:24:18 +0000494 emitCode("SDValue InFlag = " + getNodeName(RootName) +
495 "->getOperand(" + utostr(OpNo) + ");");
Evan Cheng676d7312006-08-26 00:59:04 +0000496 InFlagDecled = true;
497 } else
Dan Gohmaneeb3a002010-01-05 01:24:18 +0000498 emitCode("InFlag = " + getNodeName(RootName) +
499 "->getOperand(" + utostr(OpNo) + ");");
Evan Cheng676d7312006-08-26 00:59:04 +0000500 }
Evan Chengb915f312005-12-09 22:45:35 +0000501 }
502};
503
Chris Lattnera0cdf172010-02-13 20:06:50 +0000504
505/// EmitMatchCode - Emit a matcher for N, going to the label for PatternNo
506/// if the match fails. At this point, we already know that the opcode for N
507/// matches, and the SDNode for the result has the RootName specified name.
508void PatternCodeEmitter::EmitMatchCode(TreePatternNode *N, TreePatternNode *P,
509 const std::string &RootName,
510 const std::string &ChainSuffix,
511 bool &FoundChain) {
512
513 // Save loads/stores matched by a pattern.
514 if (!N->isLeaf() && N->getName().empty()) {
Chris Lattner47661322010-02-14 22:22:58 +0000515 if (N->NodeHasProperty(SDNPMemOperand, CGP))
Chris Lattnera0cdf172010-02-13 20:06:50 +0000516 LSI.push_back(getNodeName(RootName));
517 }
518
519 bool isRoot = (P == NULL);
520 // Emit instruction predicates. Each predicate is just a string for now.
521 if (isRoot) {
522 // Record input varargs info.
523 NumInputRootOps = N->getNumChildren();
Chris Lattnera0cdf172010-02-13 20:06:50 +0000524 emitCheck(PredicateCheck);
525 }
526
527 if (N->isLeaf()) {
528 if (IntInit *II = dynamic_cast<IntInit*>(N->getLeafValue())) {
529 emitCheck("cast<ConstantSDNode>(" + getNodeName(RootName) +
530 ")->getSExtValue() == INT64_C(" +
531 itostr(II->getValue()) + ")");
532 return;
533 } else if (!NodeIsComplexPattern(N)) {
534 assert(0 && "Cannot match this as a leaf value!");
535 abort();
536 }
537 }
538
539 // If this node has a name associated with it, capture it in VariableMap. If
540 // we already saw this in the pattern, emit code to verify dagness.
541 if (!N->getName().empty()) {
542 std::string &VarMapEntry = VariableMap[N->getName()];
543 if (VarMapEntry.empty()) {
544 VarMapEntry = RootName;
545 } else {
546 // If we get here, this is a second reference to a specific name. Since
547 // we already have checked that the first reference is valid, we don't
548 // have to recursively match it, just check that it's the same as the
549 // previously named thing.
550 emitCheck(VarMapEntry + " == " + RootName);
551 return;
552 }
553
554 if (!N->isLeaf())
555 OperatorMap[N->getName()] = N->getOperator();
556 }
557
558
559 // Emit code to load the child nodes and match their contents recursively.
560 unsigned OpNo = 0;
Chris Lattner47661322010-02-14 22:22:58 +0000561 bool NodeHasChain = N->NodeHasProperty(SDNPHasChain, CGP);
562 bool HasChain = N->TreeHasProperty(SDNPHasChain, CGP);
Chris Lattnera0cdf172010-02-13 20:06:50 +0000563 bool EmittedUseCheck = false;
564 if (HasChain) {
565 if (NodeHasChain)
566 OpNo = 1;
567 if (!isRoot) {
568 // Multiple uses of actual result?
569 emitCheck(getValueName(RootName) + ".hasOneUse()");
570 EmittedUseCheck = true;
571 if (NodeHasChain) {
572 // If the immediate use can somehow reach this node through another
573 // path, then can't fold it either or it will create a cycle.
574 // e.g. In the following diagram, XX can reach ld through YY. If
575 // ld is folded into XX, then YY is both a predecessor and a successor
576 // of XX.
577 //
578 // [ld]
579 // ^ ^
580 // | |
581 // / \---
582 // / [YY]
583 // | ^
584 // [XX]-------|
585 bool NeedCheck = P != Pattern;
586 if (!NeedCheck) {
587 const SDNodeInfo &PInfo = CGP.getSDNodeInfo(P->getOperator());
588 NeedCheck =
589 P->getOperator() == CGP.get_intrinsic_void_sdnode() ||
590 P->getOperator() == CGP.get_intrinsic_w_chain_sdnode() ||
591 P->getOperator() == CGP.get_intrinsic_wo_chain_sdnode() ||
592 PInfo.getNumOperands() > 1 ||
593 PInfo.hasProperty(SDNPHasChain) ||
594 PInfo.hasProperty(SDNPInFlag) ||
595 PInfo.hasProperty(SDNPOptInFlag);
596 }
597
598 if (NeedCheck) {
599 std::string ParentName(RootName.begin(), RootName.end()-1);
600 emitCheck("IsLegalAndProfitableToFold(" + getNodeName(RootName) +
601 ", " + getNodeName(ParentName) + ", N)");
602 }
603 }
604 }
605
606 if (NodeHasChain) {
607 if (FoundChain) {
608 emitCheck("(" + ChainName + ".getNode() == " +
609 getNodeName(RootName) + " || "
610 "IsChainCompatible(" + ChainName + ".getNode(), " +
611 getNodeName(RootName) + "))");
612 OrigChains.push_back(std::make_pair(ChainName,
613 getValueName(RootName)));
614 } else
615 FoundChain = true;
616 ChainName = "Chain" + ChainSuffix;
617 emitInit("SDValue " + ChainName + " = " + getNodeName(RootName) +
618 "->getOperand(0);");
619 }
620 }
621
622 // Don't fold any node which reads or writes a flag and has multiple uses.
623 // FIXME: We really need to separate the concepts of flag and "glue". Those
624 // real flag results, e.g. X86CMP output, can have multiple uses.
625 // FIXME: If the optional incoming flag does not exist. Then it is ok to
626 // fold it.
627 if (!isRoot &&
Chris Lattner47661322010-02-14 22:22:58 +0000628 (N->TreeHasProperty(SDNPInFlag, CGP) ||
629 N->TreeHasProperty(SDNPOptInFlag, CGP) ||
630 N->TreeHasProperty(SDNPOutFlag, CGP))) {
Chris Lattnera0cdf172010-02-13 20:06:50 +0000631 if (!EmittedUseCheck) {
632 // Multiple uses of actual result?
633 emitCheck(getValueName(RootName) + ".hasOneUse()");
634 }
635 }
636
637 // If there are node predicates for this, emit the calls.
638 for (unsigned i = 0, e = N->getPredicateFns().size(); i != e; ++i)
639 emitCheck(N->getPredicateFns()[i] + "(" + getNodeName(RootName) + ")");
640
641 // If this is an 'and R, 1234' where the operation is AND/OR and the RHS is
642 // a constant without a predicate fn that has more that one bit set, handle
643 // this as a special case. This is usually for targets that have special
644 // handling of certain large constants (e.g. alpha with it's 8/16/32-bit
645 // handling stuff). Using these instructions is often far more efficient
646 // than materializing the constant. Unfortunately, both the instcombiner
647 // and the dag combiner can often infer that bits are dead, and thus drop
648 // them from the mask in the dag. For example, it might turn 'AND X, 255'
649 // into 'AND X, 254' if it knows the low bit is set. Emit code that checks
650 // to handle this.
651 if (!N->isLeaf() &&
652 (N->getOperator()->getName() == "and" ||
653 N->getOperator()->getName() == "or") &&
654 N->getChild(1)->isLeaf() &&
655 N->getChild(1)->getPredicateFns().empty()) {
656 if (IntInit *II = dynamic_cast<IntInit*>(N->getChild(1)->getLeafValue())) {
657 if (!isPowerOf2_32(II->getValue())) { // Don't bother with single bits.
658 emitInit("SDValue " + RootName + "0" + " = " +
659 getNodeName(RootName) + "->getOperand(" + utostr(0) + ");");
660 emitInit("SDValue " + RootName + "1" + " = " +
661 getNodeName(RootName) + "->getOperand(" + utostr(1) + ");");
662
663 unsigned NTmp = TmpNo++;
664 emitCode("ConstantSDNode *Tmp" + utostr(NTmp) +
665 " = dyn_cast<ConstantSDNode>(" +
666 getNodeName(RootName + "1") + ");");
667 emitCheck("Tmp" + utostr(NTmp));
668 const char *MaskPredicate = N->getOperator()->getName() == "or"
669 ? "CheckOrMask(" : "CheckAndMask(";
670 emitCheck(MaskPredicate + getValueName(RootName + "0") +
671 ", Tmp" + utostr(NTmp) +
672 ", INT64_C(" + itostr(II->getValue()) + "))");
673
674 EmitChildMatchCode(N->getChild(0), N, RootName + utostr(0),
675 ChainSuffix + utostr(0), FoundChain);
676 return;
677 }
678 }
679 }
680
681 for (unsigned i = 0, e = N->getNumChildren(); i != e; ++i, ++OpNo) {
682 emitInit("SDValue " + getValueName(RootName + utostr(OpNo)) + " = " +
683 getNodeName(RootName) + "->getOperand(" + utostr(OpNo) + ");");
684
685 EmitChildMatchCode(N->getChild(i), N, RootName + utostr(OpNo),
686 ChainSuffix + utostr(OpNo), FoundChain);
687 }
688
689 // Handle cases when root is a complex pattern.
690 const ComplexPattern *CP;
Chris Lattner47661322010-02-14 22:22:58 +0000691 if (isRoot && N->isLeaf() && (CP = N->getComplexPatternInfo(CGP))) {
Chris Lattnera0cdf172010-02-13 20:06:50 +0000692 std::string Fn = CP->getSelectFunc();
693 unsigned NumOps = CP->getNumOperands();
694 for (unsigned i = 0; i < NumOps; ++i) {
695 emitDecl("CPTmp" + RootName + "_" + utostr(i));
696 emitCode("SDValue CPTmp" + RootName + "_" + utostr(i) + ";");
697 }
698 if (CP->hasProperty(SDNPHasChain)) {
699 emitDecl("CPInChain");
700 emitDecl("Chain" + ChainSuffix);
701 emitCode("SDValue CPInChain;");
702 emitCode("SDValue Chain" + ChainSuffix + ";");
703 }
704
705 std::string Code = Fn + "(" +
706 getNodeName(RootName) + ", " +
707 getValueName(RootName);
708 for (unsigned i = 0; i < NumOps; i++)
709 Code += ", CPTmp" + RootName + "_" + utostr(i);
710 if (CP->hasProperty(SDNPHasChain)) {
711 ChainName = "Chain" + ChainSuffix;
712 Code += ", CPInChain, Chain" + ChainSuffix;
713 }
714 emitCheck(Code + ")");
715 }
716}
717
718void PatternCodeEmitter::EmitChildMatchCode(TreePatternNode *Child,
719 TreePatternNode *Parent,
720 const std::string &RootName,
721 const std::string &ChainSuffix,
722 bool &FoundChain) {
723 if (!Child->isLeaf()) {
724 // If it's not a leaf, recursively match.
725 const SDNodeInfo &CInfo = CGP.getSDNodeInfo(Child->getOperator());
726 emitCheck(getNodeName(RootName) + "->getOpcode() == " +
727 CInfo.getEnumName());
728 EmitMatchCode(Child, Parent, RootName, ChainSuffix, FoundChain);
729 bool HasChain = false;
Chris Lattner47661322010-02-14 22:22:58 +0000730 if (Child->NodeHasProperty(SDNPHasChain, CGP)) {
Chris Lattnera0cdf172010-02-13 20:06:50 +0000731 HasChain = true;
732 FoldedChains.push_back(std::make_pair(getValueName(RootName),
733 CInfo.getNumResults()));
734 }
Chris Lattner47661322010-02-14 22:22:58 +0000735 if (Child->NodeHasProperty(SDNPOutFlag, CGP)) {
Chris Lattnera0cdf172010-02-13 20:06:50 +0000736 assert(FoldedFlag.first == "" && FoldedFlag.second == 0 &&
737 "Pattern folded multiple nodes which produce flags?");
738 FoldedFlag = std::make_pair(getValueName(RootName),
739 CInfo.getNumResults() + (unsigned)HasChain);
740 }
741 } else {
742 // If this child has a name associated with it, capture it in VarMap. If
743 // we already saw this in the pattern, emit code to verify dagness.
744 if (!Child->getName().empty()) {
745 std::string &VarMapEntry = VariableMap[Child->getName()];
746 if (VarMapEntry.empty()) {
747 VarMapEntry = getValueName(RootName);
748 } else {
749 // If we get here, this is a second reference to a specific name.
750 // Since we already have checked that the first reference is valid,
751 // we don't have to recursively match it, just check that it's the
752 // same as the previously named thing.
753 emitCheck(VarMapEntry + " == " + getValueName(RootName));
754 Duplicates.insert(getValueName(RootName));
755 return;
756 }
757 }
758
759 // Handle leaves of various types.
760 if (DefInit *DI = dynamic_cast<DefInit*>(Child->getLeafValue())) {
761 Record *LeafRec = DI->getDef();
762 if (LeafRec->isSubClassOf("RegisterClass") ||
763 LeafRec->isSubClassOf("PointerLikeRegClass")) {
764 // Handle register references. Nothing to do here.
765 } else if (LeafRec->isSubClassOf("Register")) {
766 // Handle register references.
767 } else if (LeafRec->isSubClassOf("ComplexPattern")) {
768 // Handle complex pattern.
Chris Lattner47661322010-02-14 22:22:58 +0000769 const ComplexPattern *CP = Child->getComplexPatternInfo(CGP);
Chris Lattnera0cdf172010-02-13 20:06:50 +0000770 std::string Fn = CP->getSelectFunc();
771 unsigned NumOps = CP->getNumOperands();
772 for (unsigned i = 0; i < NumOps; ++i) {
773 emitDecl("CPTmp" + RootName + "_" + utostr(i));
774 emitCode("SDValue CPTmp" + RootName + "_" + utostr(i) + ";");
775 }
776 if (CP->hasProperty(SDNPHasChain)) {
777 const SDNodeInfo &PInfo = CGP.getSDNodeInfo(Parent->getOperator());
778 FoldedChains.push_back(std::make_pair("CPInChain",
779 PInfo.getNumResults()));
780 ChainName = "Chain" + ChainSuffix;
781 emitDecl("CPInChain");
782 emitDecl(ChainName);
783 emitCode("SDValue CPInChain;");
784 emitCode("SDValue " + ChainName + ";");
785 }
786
787 std::string Code = Fn + "(N, ";
788 if (CP->hasProperty(SDNPHasChain)) {
789 std::string ParentName(RootName.begin(), RootName.end()-1);
790 Code += getValueName(ParentName) + ", ";
791 }
792 Code += getValueName(RootName);
793 for (unsigned i = 0; i < NumOps; i++)
794 Code += ", CPTmp" + RootName + "_" + utostr(i);
795 if (CP->hasProperty(SDNPHasChain))
796 Code += ", CPInChain, Chain" + ChainSuffix;
797 emitCheck(Code + ")");
798 } else if (LeafRec->getName() == "srcvalue") {
799 // Place holder for SRCVALUE nodes. Nothing to do here.
800 } else if (LeafRec->isSubClassOf("ValueType")) {
801 // Make sure this is the specified value type.
802 emitCheck("cast<VTSDNode>(" + getNodeName(RootName) +
803 ")->getVT() == MVT::" + LeafRec->getName());
804 } else if (LeafRec->isSubClassOf("CondCode")) {
805 // Make sure this is the specified cond code.
806 emitCheck("cast<CondCodeSDNode>(" + getNodeName(RootName) +
807 ")->get() == ISD::" + LeafRec->getName());
808 } else {
809#ifndef NDEBUG
810 Child->dump();
811 errs() << " ";
812#endif
813 assert(0 && "Unknown leaf type!");
814 }
815
816 // If there are node predicates for this, emit the calls.
817 for (unsigned i = 0, e = Child->getPredicateFns().size(); i != e; ++i)
818 emitCheck(Child->getPredicateFns()[i] + "(" + getNodeName(RootName) +
819 ")");
820 } else if (IntInit *II =
821 dynamic_cast<IntInit*>(Child->getLeafValue())) {
822 unsigned NTmp = TmpNo++;
823 emitCode("ConstantSDNode *Tmp"+ utostr(NTmp) +
824 " = dyn_cast<ConstantSDNode>("+
825 getNodeName(RootName) + ");");
826 emitCheck("Tmp" + utostr(NTmp));
827 unsigned CTmp = TmpNo++;
828 emitCode("int64_t CN"+ utostr(CTmp) +
829 " = Tmp" + utostr(NTmp) + "->getSExtValue();");
830 emitCheck("CN" + utostr(CTmp) + " == "
831 "INT64_C(" +itostr(II->getValue()) + ")");
832 } else {
833#ifndef NDEBUG
834 Child->dump();
835#endif
836 assert(0 && "Unknown leaf type!");
837 }
838 }
839}
840
841/// EmitResultCode - Emit the action for a pattern. Now that it has matched
842/// we actually have to build a DAG!
843std::vector<std::string>
844PatternCodeEmitter::EmitResultCode(TreePatternNode *N,
845 std::vector<Record*> DstRegs,
846 bool InFlagDecled, bool ResNodeDecled,
847 bool LikeLeaf, bool isRoot) {
848 // List of arguments of getMachineNode() or SelectNodeTo().
849 std::vector<std::string> NodeOps;
850 // This is something selected from the pattern we matched.
851 if (!N->getName().empty()) {
852 const std::string &VarName = N->getName();
853 std::string Val = VariableMap[VarName];
854 bool ModifiedVal = false;
855 if (Val.empty()) {
856 errs() << "Variable '" << VarName << " referenced but not defined "
857 << "and not caught earlier!\n";
858 abort();
859 }
860 if (Val[0] == 'T' && Val[1] == 'm' && Val[2] == 'p') {
861 // Already selected this operand, just return the tmpval.
862 NodeOps.push_back(getValueName(Val));
863 return NodeOps;
864 }
865
866 const ComplexPattern *CP;
867 unsigned ResNo = TmpNo++;
868 if (!N->isLeaf() && N->getOperator()->getName() == "imm") {
869 assert(N->getExtTypes().size() == 1 && "Multiple types not handled!");
870 std::string CastType;
871 std::string TmpVar = "Tmp" + utostr(ResNo);
872 switch (N->getTypeNum(0)) {
873 default:
874 errs() << "Cannot handle " << getEnumName(N->getTypeNum(0))
875 << " type as an immediate constant. Aborting\n";
876 abort();
877 case MVT::i1: CastType = "bool"; break;
878 case MVT::i8: CastType = "unsigned char"; break;
879 case MVT::i16: CastType = "unsigned short"; break;
880 case MVT::i32: CastType = "unsigned"; break;
881 case MVT::i64: CastType = "uint64_t"; break;
882 }
883 emitCode("SDValue " + TmpVar +
884 " = CurDAG->getTargetConstant(((" + CastType +
885 ") cast<ConstantSDNode>(" + Val + ")->getZExtValue()), " +
886 getEnumName(N->getTypeNum(0)) + ");");
887 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select this
888 // value if used multiple times by this pattern result.
889 Val = TmpVar;
890 ModifiedVal = true;
891 NodeOps.push_back(getValueName(Val));
892 } else if (!N->isLeaf() && N->getOperator()->getName() == "fpimm") {
893 assert(N->getExtTypes().size() == 1 && "Multiple types not handled!");
894 std::string TmpVar = "Tmp" + utostr(ResNo);
895 emitCode("SDValue " + TmpVar +
896 " = CurDAG->getTargetConstantFP(*cast<ConstantFPSDNode>(" +
897 Val + ")->getConstantFPValue(), cast<ConstantFPSDNode>(" +
898 Val + ")->getValueType(0));");
899 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select this
900 // value if used multiple times by this pattern result.
901 Val = TmpVar;
902 ModifiedVal = true;
903 NodeOps.push_back(getValueName(Val));
904 } else if (!N->isLeaf() && N->getOperator()->getName() == "texternalsym"){
905 Record *Op = OperatorMap[N->getName()];
906 // Transform ExternalSymbol to TargetExternalSymbol
907 if (Op && Op->getName() == "externalsym") {
908 std::string TmpVar = "Tmp"+utostr(ResNo);
909 emitCode("SDValue " + TmpVar + " = CurDAG->getTarget"
910 "ExternalSymbol(cast<ExternalSymbolSDNode>(" +
911 Val + ")->getSymbol(), " +
912 getEnumName(N->getTypeNum(0)) + ");");
913 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select
914 // this value if used multiple times by this pattern result.
915 Val = TmpVar;
916 ModifiedVal = true;
917 }
918 NodeOps.push_back(getValueName(Val));
919 } else if (!N->isLeaf() && (N->getOperator()->getName() == "tglobaladdr"
920 || N->getOperator()->getName() == "tglobaltlsaddr")) {
921 Record *Op = OperatorMap[N->getName()];
922 // Transform GlobalAddress to TargetGlobalAddress
923 if (Op && (Op->getName() == "globaladdr" ||
924 Op->getName() == "globaltlsaddr")) {
925 std::string TmpVar = "Tmp" + utostr(ResNo);
926 emitCode("SDValue " + TmpVar + " = CurDAG->getTarget"
927 "GlobalAddress(cast<GlobalAddressSDNode>(" + Val +
928 ")->getGlobal(), " + getEnumName(N->getTypeNum(0)) +
929 ");");
930 // Add Tmp<ResNo> to VariableMap, so that we don't multiply select
931 // this value if used multiple times by this pattern result.
932 Val = TmpVar;
933 ModifiedVal = true;
934 }
935 NodeOps.push_back(getValueName(Val));
936 } else if (!N->isLeaf()
Chris Lattner47661322010-02-14 22:22:58 +0000937 && (N->getOperator()->getName() == "texternalsym" ||
938 N->getOperator()->getName() == "tconstpool")) {
939 // Do not rewrite the variable name, since we don't generate a new
940 // temporary.
941 NodeOps.push_back(getValueName(Val));
942 } else if (N->isLeaf() && (CP = N->getComplexPatternInfo(CGP))) {
943 for (unsigned i = 0; i < CP->getNumOperands(); ++i) {
944 NodeOps.push_back(getValueName("CPTmp" + Val + "_" + utostr(i)));
945 }
946 } else {
947 // This node, probably wrapped in a SDNodeXForm, behaves like a leaf
948 // node even if it isn't one. Don't select it.
949 if (!LikeLeaf) {
950 if (isRoot && N->isLeaf()) {
951 emitCode("ReplaceUses(SDValue(N, 0), " + Val + ");");
952 emitCode("return NULL;");
953 }
954 }
955 NodeOps.push_back(getValueName(Val));
Chris Lattnera0cdf172010-02-13 20:06:50 +0000956 }
Chris Lattner47661322010-02-14 22:22:58 +0000957
958 if (ModifiedVal)
959 VariableMap[VarName] = Val;
Chris Lattnera0cdf172010-02-13 20:06:50 +0000960 return NodeOps;
961 }
962 if (N->isLeaf()) {
963 // If this is an explicit register reference, handle it.
964 if (DefInit *DI = dynamic_cast<DefInit*>(N->getLeafValue())) {
965 unsigned ResNo = TmpNo++;
966 if (DI->getDef()->isSubClassOf("Register")) {
967 emitCode("SDValue Tmp" + utostr(ResNo) + " = CurDAG->getRegister(" +
968 getQualifiedName(DI->getDef()) + ", " +
969 getEnumName(N->getTypeNum(0)) + ");");
970 NodeOps.push_back(getValueName("Tmp" + utostr(ResNo)));
971 return NodeOps;
972 } else if (DI->getDef()->getName() == "zero_reg") {
973 emitCode("SDValue Tmp" + utostr(ResNo) +
974 " = CurDAG->getRegister(0, " +
975 getEnumName(N->getTypeNum(0)) + ");");
976 NodeOps.push_back(getValueName("Tmp" + utostr(ResNo)));
977 return NodeOps;
978 } else if (DI->getDef()->isSubClassOf("RegisterClass")) {
979 // Handle a reference to a register class. This is used
980 // in COPY_TO_SUBREG instructions.
981 emitCode("SDValue Tmp" + utostr(ResNo) +
982 " = CurDAG->getTargetConstant(" +
983 getQualifiedName(DI->getDef()) + "RegClassID, " +
984 "MVT::i32);");
985 NodeOps.push_back(getValueName("Tmp" + utostr(ResNo)));
986 return NodeOps;
987 }
988 } else if (IntInit *II = dynamic_cast<IntInit*>(N->getLeafValue())) {
989 unsigned ResNo = TmpNo++;
990 assert(N->getExtTypes().size() == 1 && "Multiple types not handled!");
991 emitCode("SDValue Tmp" + utostr(ResNo) +
992 " = CurDAG->getTargetConstant(0x" +
993 utohexstr((uint64_t) II->getValue()) +
994 "ULL, " + getEnumName(N->getTypeNum(0)) + ");");
995 NodeOps.push_back(getValueName("Tmp" + utostr(ResNo)));
996 return NodeOps;
997 }
998
999#ifndef NDEBUG
1000 N->dump();
1001#endif
1002 assert(0 && "Unknown leaf type!");
1003 return NodeOps;
1004 }
1005
1006 Record *Op = N->getOperator();
1007 if (Op->isSubClassOf("Instruction")) {
1008 const CodeGenTarget &CGT = CGP.getTargetInfo();
1009 CodeGenInstruction &II = CGT.getInstruction(Op->getName());
1010 const DAGInstruction &Inst = CGP.getInstruction(Op);
1011 const TreePattern *InstPat = Inst.getPattern();
1012 // FIXME: Assume actual pattern comes before "implicit".
1013 TreePatternNode *InstPatNode =
1014 isRoot ? (InstPat ? InstPat->getTree(0) : Pattern)
1015 : (InstPat ? InstPat->getTree(0) : NULL);
1016 if (InstPatNode && !InstPatNode->isLeaf() &&
1017 InstPatNode->getOperator()->getName() == "set") {
1018 InstPatNode = InstPatNode->getChild(InstPatNode->getNumChildren()-1);
1019 }
1020 bool IsVariadic = isRoot && II.isVariadic;
1021 // FIXME: fix how we deal with physical register operands.
1022 bool HasImpInputs = isRoot && Inst.getNumImpOperands() > 0;
1023 bool HasImpResults = isRoot && DstRegs.size() > 0;
1024 bool NodeHasOptInFlag = isRoot &&
Chris Lattner47661322010-02-14 22:22:58 +00001025 Pattern->TreeHasProperty(SDNPOptInFlag, CGP);
Chris Lattnera0cdf172010-02-13 20:06:50 +00001026 bool NodeHasInFlag = isRoot &&
Chris Lattner47661322010-02-14 22:22:58 +00001027 Pattern->TreeHasProperty(SDNPInFlag, CGP);
Chris Lattnera0cdf172010-02-13 20:06:50 +00001028 bool NodeHasOutFlag = isRoot &&
Chris Lattner47661322010-02-14 22:22:58 +00001029 Pattern->TreeHasProperty(SDNPOutFlag, CGP);
Chris Lattnera0cdf172010-02-13 20:06:50 +00001030 bool NodeHasChain = InstPatNode &&
Chris Lattner47661322010-02-14 22:22:58 +00001031 InstPatNode->TreeHasProperty(SDNPHasChain, CGP);
1032 bool InputHasChain = isRoot && Pattern->NodeHasProperty(SDNPHasChain, CGP);
Chris Lattnera0cdf172010-02-13 20:06:50 +00001033 unsigned NumResults = Inst.getNumResults();
1034 unsigned NumDstRegs = HasImpResults ? DstRegs.size() : 0;
1035
1036 // Record output varargs info.
1037 OutputIsVariadic = IsVariadic;
1038
1039 if (NodeHasOptInFlag) {
1040 emitCode("bool HasInFlag = "
1041 "(N->getOperand(N->getNumOperands()-1).getValueType() == "
1042 "MVT::Flag);");
1043 }
1044 if (IsVariadic)
1045 emitCode("SmallVector<SDValue, 8> Ops" + utostr(OpcNo) + ";");
1046
1047 // How many results is this pattern expected to produce?
1048 unsigned NumPatResults = 0;
1049 for (unsigned i = 0, e = Pattern->getExtTypes().size(); i != e; i++) {
1050 MVT::SimpleValueType VT = Pattern->getTypeNum(i);
1051 if (VT != MVT::isVoid && VT != MVT::Flag)
1052 NumPatResults++;
1053 }
1054
1055 if (OrigChains.size() > 0) {
1056 // The original input chain is being ignored. If it is not just
1057 // pointing to the op that's being folded, we should create a
1058 // TokenFactor with it and the chain of the folded op as the new chain.
1059 // We could potentially be doing multiple levels of folding, in that
1060 // case, the TokenFactor can have more operands.
1061 emitCode("SmallVector<SDValue, 8> InChains;");
1062 for (unsigned i = 0, e = OrigChains.size(); i < e; ++i) {
1063 emitCode("if (" + OrigChains[i].first + ".getNode() != " +
1064 OrigChains[i].second + ".getNode()) {");
1065 emitCode(" InChains.push_back(" + OrigChains[i].first + ");");
1066 emitCode("}");
1067 }
1068 emitCode("InChains.push_back(" + ChainName + ");");
1069 emitCode(ChainName + " = CurDAG->getNode(ISD::TokenFactor, "
1070 "N->getDebugLoc(), MVT::Other, "
1071 "&InChains[0], InChains.size());");
1072 if (GenDebug) {
1073 emitCode("CurDAG->setSubgraphColor(" + ChainName +".getNode(), \"yellow\");");
1074 emitCode("CurDAG->setSubgraphColor(" + ChainName +".getNode(), \"black\");");
1075 }
1076 }
1077
1078 // Loop over all of the operands of the instruction pattern, emitting code
1079 // to fill them all in. The node 'N' usually has number children equal to
1080 // the number of input operands of the instruction. However, in cases
1081 // where there are predicate operands for an instruction, we need to fill
1082 // in the 'execute always' values. Match up the node operands to the
1083 // instruction operands to do this.
1084 std::vector<std::string> AllOps;
1085 for (unsigned ChildNo = 0, InstOpNo = NumResults;
1086 InstOpNo != II.OperandList.size(); ++InstOpNo) {
1087 std::vector<std::string> Ops;
1088
1089 // Determine what to emit for this operand.
1090 Record *OperandNode = II.OperandList[InstOpNo].Rec;
1091 if ((OperandNode->isSubClassOf("PredicateOperand") ||
1092 OperandNode->isSubClassOf("OptionalDefOperand")) &&
1093 !CGP.getDefaultOperand(OperandNode).DefaultOps.empty()) {
1094 // This is a predicate or optional def operand; emit the
1095 // 'default ops' operands.
1096 const DAGDefaultOperand &DefaultOp =
1097 CGP.getDefaultOperand(II.OperandList[InstOpNo].Rec);
1098 for (unsigned i = 0, e = DefaultOp.DefaultOps.size(); i != e; ++i) {
1099 Ops = EmitResultCode(DefaultOp.DefaultOps[i], DstRegs,
1100 InFlagDecled, ResNodeDecled);
1101 AllOps.insert(AllOps.end(), Ops.begin(), Ops.end());
1102 }
1103 } else {
1104 // Otherwise this is a normal operand or a predicate operand without
1105 // 'execute always'; emit it.
1106 Ops = EmitResultCode(N->getChild(ChildNo), DstRegs,
1107 InFlagDecled, ResNodeDecled);
1108 AllOps.insert(AllOps.end(), Ops.begin(), Ops.end());
1109 ++ChildNo;
1110 }
1111 }
1112
1113 // Emit all the chain and CopyToReg stuff.
1114 bool ChainEmitted = NodeHasChain;
1115 if (NodeHasInFlag || HasImpInputs)
1116 EmitInFlagSelectCode(Pattern, "N", ChainEmitted,
1117 InFlagDecled, ResNodeDecled, true);
1118 if (NodeHasOptInFlag || NodeHasInFlag || HasImpInputs) {
1119 if (!InFlagDecled) {
1120 emitCode("SDValue InFlag(0, 0);");
1121 InFlagDecled = true;
1122 }
1123 if (NodeHasOptInFlag) {
1124 emitCode("if (HasInFlag) {");
1125 emitCode(" InFlag = N->getOperand(N->getNumOperands()-1);");
1126 emitCode("}");
1127 }
1128 }
1129
1130 unsigned ResNo = TmpNo++;
1131
1132 unsigned OpsNo = OpcNo;
1133 std::string CodePrefix;
1134 bool ChainAssignmentNeeded = NodeHasChain && !isRoot;
1135 std::deque<std::string> After;
1136 std::string NodeName;
1137 if (!isRoot) {
1138 NodeName = "Tmp" + utostr(ResNo);
1139 CodePrefix = "SDValue " + NodeName + "(";
1140 } else {
1141 NodeName = "ResNode";
1142 if (!ResNodeDecled) {
1143 CodePrefix = "SDNode *" + NodeName + " = ";
1144 ResNodeDecled = true;
1145 } else
1146 CodePrefix = NodeName + " = ";
1147 }
1148
1149 std::string Code = "Opc" + utostr(OpcNo);
1150
1151 if (!isRoot || (InputHasChain && !NodeHasChain))
1152 // For call to "getMachineNode()".
1153 Code += ", N->getDebugLoc()";
1154
1155 emitOpcode(II.Namespace + "::" + II.TheDef->getName());
1156
1157 // Output order: results, chain, flags
1158 // Result types.
1159 if (NumResults > 0 && N->getTypeNum(0) != MVT::isVoid) {
1160 Code += ", VT" + utostr(VTNo);
1161 emitVT(getEnumName(N->getTypeNum(0)));
1162 }
1163 // Add types for implicit results in physical registers, scheduler will
1164 // care of adding copyfromreg nodes.
1165 for (unsigned i = 0; i < NumDstRegs; i++) {
1166 Record *RR = DstRegs[i];
1167 if (RR->isSubClassOf("Register")) {
1168 MVT::SimpleValueType RVT = getRegisterValueType(RR, CGT);
1169 Code += ", " + getEnumName(RVT);
1170 }
1171 }
1172 if (NodeHasChain)
1173 Code += ", MVT::Other";
1174 if (NodeHasOutFlag)
1175 Code += ", MVT::Flag";
1176
1177 // Inputs.
1178 if (IsVariadic) {
1179 for (unsigned i = 0, e = AllOps.size(); i != e; ++i)
1180 emitCode("Ops" + utostr(OpsNo) + ".push_back(" + AllOps[i] + ");");
1181 AllOps.clear();
1182
1183 // Figure out whether any operands at the end of the op list are not
1184 // part of the variable section.
1185 std::string EndAdjust;
1186 if (NodeHasInFlag || HasImpInputs)
1187 EndAdjust = "-1"; // Always has one flag.
1188 else if (NodeHasOptInFlag)
1189 EndAdjust = "-(HasInFlag?1:0)"; // May have a flag.
1190
1191 emitCode("for (unsigned i = NumInputRootOps + " + utostr(NodeHasChain) +
1192 ", e = N->getNumOperands()" + EndAdjust + "; i != e; ++i) {");
1193
1194 emitCode(" Ops" + utostr(OpsNo) + ".push_back(N->getOperand(i));");
1195 emitCode("}");
1196 }
1197
1198 // Populate MemRefs with entries for each memory accesses covered by
1199 // this pattern.
1200 if (isRoot && !LSI.empty()) {
1201 std::string MemRefs = "MemRefs" + utostr(OpsNo);
1202 emitCode("MachineSDNode::mmo_iterator " + MemRefs + " = "
1203 "MF->allocateMemRefsArray(" + utostr(LSI.size()) + ");");
1204 for (unsigned i = 0, e = LSI.size(); i != e; ++i)
1205 emitCode(MemRefs + "[" + utostr(i) + "] = "
1206 "cast<MemSDNode>(" + LSI[i] + ")->getMemOperand();");
1207 After.push_back("cast<MachineSDNode>(ResNode)->setMemRefs(" +
1208 MemRefs + ", " + MemRefs + " + " + utostr(LSI.size()) +
1209 ");");
1210 }
1211
1212 if (NodeHasChain) {
1213 if (IsVariadic)
1214 emitCode("Ops" + utostr(OpsNo) + ".push_back(" + ChainName + ");");
1215 else
1216 AllOps.push_back(ChainName);
1217 }
1218
1219 if (IsVariadic) {
1220 if (NodeHasInFlag || HasImpInputs)
1221 emitCode("Ops" + utostr(OpsNo) + ".push_back(InFlag);");
1222 else if (NodeHasOptInFlag) {
1223 emitCode("if (HasInFlag)");
1224 emitCode(" Ops" + utostr(OpsNo) + ".push_back(InFlag);");
1225 }
1226 Code += ", &Ops" + utostr(OpsNo) + "[0], Ops" + utostr(OpsNo) +
1227 ".size()";
1228 } else if (NodeHasInFlag || NodeHasOptInFlag || HasImpInputs)
1229 AllOps.push_back("InFlag");
1230
1231 unsigned NumOps = AllOps.size();
1232 if (NumOps) {
1233 if (!NodeHasOptInFlag && NumOps < 4) {
1234 for (unsigned i = 0; i != NumOps; ++i)
1235 Code += ", " + AllOps[i];
1236 } else {
1237 std::string OpsCode = "SDValue Ops" + utostr(OpsNo) + "[] = { ";
1238 for (unsigned i = 0; i != NumOps; ++i) {
1239 OpsCode += AllOps[i];
1240 if (i != NumOps-1)
1241 OpsCode += ", ";
1242 }
1243 emitCode(OpsCode + " };");
1244 Code += ", Ops" + utostr(OpsNo) + ", ";
1245 if (NodeHasOptInFlag) {
1246 Code += "HasInFlag ? ";
1247 Code += utostr(NumOps) + " : " + utostr(NumOps-1);
1248 } else
1249 Code += utostr(NumOps);
1250 }
1251 }
1252
1253 if (!isRoot)
1254 Code += "), 0";
1255
1256 std::vector<std::string> ReplaceFroms;
1257 std::vector<std::string> ReplaceTos;
1258 if (!isRoot) {
1259 NodeOps.push_back("Tmp" + utostr(ResNo));
1260 } else {
1261
1262 if (NodeHasOutFlag) {
1263 if (!InFlagDecled) {
1264 After.push_back("SDValue InFlag(ResNode, " +
1265 utostr(NumResults+NumDstRegs+(unsigned)NodeHasChain) +
1266 ");");
1267 InFlagDecled = true;
1268 } else
1269 After.push_back("InFlag = SDValue(ResNode, " +
1270 utostr(NumResults+NumDstRegs+(unsigned)NodeHasChain) +
1271 ");");
1272 }
1273
1274 for (unsigned j = 0, e = FoldedChains.size(); j < e; j++) {
1275 ReplaceFroms.push_back("SDValue(" +
1276 FoldedChains[j].first + ".getNode(), " +
1277 utostr(FoldedChains[j].second) +
1278 ")");
1279 ReplaceTos.push_back("SDValue(ResNode, " +
1280 utostr(NumResults+NumDstRegs) + ")");
1281 }
1282
1283 if (NodeHasOutFlag) {
1284 if (FoldedFlag.first != "") {
1285 ReplaceFroms.push_back("SDValue(" + FoldedFlag.first + ".getNode(), " +
1286 utostr(FoldedFlag.second) + ")");
1287 ReplaceTos.push_back("InFlag");
1288 } else {
Chris Lattner47661322010-02-14 22:22:58 +00001289 assert(Pattern->NodeHasProperty(SDNPOutFlag, CGP));
Chris Lattnera0cdf172010-02-13 20:06:50 +00001290 ReplaceFroms.push_back("SDValue(N, " +
1291 utostr(NumPatResults + (unsigned)InputHasChain)
1292 + ")");
1293 ReplaceTos.push_back("InFlag");
1294 }
1295 }
1296
1297 if (!ReplaceFroms.empty() && InputHasChain) {
1298 ReplaceFroms.push_back("SDValue(N, " +
1299 utostr(NumPatResults) + ")");
1300 ReplaceTos.push_back("SDValue(" + ChainName + ".getNode(), " +
1301 ChainName + ".getResNo()" + ")");
1302 ChainAssignmentNeeded |= NodeHasChain;
1303 }
1304
1305 // User does not expect the instruction would produce a chain!
1306 if ((!InputHasChain && NodeHasChain) && NodeHasOutFlag) {
1307 ;
1308 } else if (InputHasChain && !NodeHasChain) {
1309 // One of the inner node produces a chain.
1310 assert(!NodeHasOutFlag && "Node has flag but not chain!");
1311 ReplaceFroms.push_back("SDValue(N, " +
1312 utostr(NumPatResults) + ")");
1313 ReplaceTos.push_back(ChainName);
1314 }
1315 }
1316
1317 if (ChainAssignmentNeeded) {
1318 // Remember which op produces the chain.
1319 std::string ChainAssign;
1320 if (!isRoot)
1321 ChainAssign = ChainName + " = SDValue(" + NodeName +
1322 ".getNode(), " + utostr(NumResults+NumDstRegs) + ");";
1323 else
1324 ChainAssign = ChainName + " = SDValue(" + NodeName +
1325 ", " + utostr(NumResults+NumDstRegs) + ");";
1326
1327 After.push_front(ChainAssign);
1328 }
1329
1330 if (ReplaceFroms.size() == 1) {
1331 After.push_back("ReplaceUses(" + ReplaceFroms[0] + ", " +
1332 ReplaceTos[0] + ");");
1333 } else if (!ReplaceFroms.empty()) {
1334 After.push_back("const SDValue Froms[] = {");
1335 for (unsigned i = 0, e = ReplaceFroms.size(); i != e; ++i)
1336 After.push_back(" " + ReplaceFroms[i] + (i + 1 != e ? "," : ""));
1337 After.push_back("};");
1338 After.push_back("const SDValue Tos[] = {");
1339 for (unsigned i = 0, e = ReplaceFroms.size(); i != e; ++i)
1340 After.push_back(" " + ReplaceTos[i] + (i + 1 != e ? "," : ""));
1341 After.push_back("};");
1342 After.push_back("ReplaceUses(Froms, Tos, " +
1343 itostr(ReplaceFroms.size()) + ");");
1344 }
1345
1346 // We prefer to use SelectNodeTo since it avoids allocation when
1347 // possible and it avoids CSE map recalculation for the node's
1348 // users, however it's tricky to use in a non-root context.
1349 //
1350 // We also don't use SelectNodeTo if the pattern replacement is being
1351 // used to jettison a chain result, since morphing the node in place
1352 // would leave users of the chain dangling.
1353 //
1354 if (!isRoot || (InputHasChain && !NodeHasChain)) {
1355 Code = "CurDAG->getMachineNode(" + Code;
1356 } else {
1357 Code = "CurDAG->SelectNodeTo(N, " + Code;
1358 }
1359 if (isRoot) {
1360 if (After.empty())
1361 CodePrefix = "return ";
1362 else
1363 After.push_back("return ResNode;");
1364 }
1365
1366 emitCode(CodePrefix + Code + ");");
1367
1368 if (GenDebug) {
1369 if (!isRoot) {
1370 emitCode("CurDAG->setSubgraphColor(" +
1371 NodeName +".getNode(), \"yellow\");");
1372 emitCode("CurDAG->setSubgraphColor(" +
1373 NodeName +".getNode(), \"black\");");
1374 } else {
1375 emitCode("CurDAG->setSubgraphColor(" + NodeName +", \"yellow\");");
1376 emitCode("CurDAG->setSubgraphColor(" + NodeName +", \"black\");");
1377 }
1378 }
1379
1380 for (unsigned i = 0, e = After.size(); i != e; ++i)
1381 emitCode(After[i]);
1382
1383 return NodeOps;
1384 }
1385 if (Op->isSubClassOf("SDNodeXForm")) {
1386 assert(N->getNumChildren() == 1 && "node xform should have one child!");
1387 // PatLeaf node - the operand may or may not be a leaf node. But it should
1388 // behave like one.
1389 std::vector<std::string> Ops =
1390 EmitResultCode(N->getChild(0), DstRegs, InFlagDecled,
1391 ResNodeDecled, true);
1392 unsigned ResNo = TmpNo++;
1393 emitCode("SDValue Tmp" + utostr(ResNo) + " = Transform_" + Op->getName()
1394 + "(" + Ops.back() + ".getNode());");
1395 NodeOps.push_back("Tmp" + utostr(ResNo));
1396 if (isRoot)
1397 emitCode("return Tmp" + utostr(ResNo) + ".getNode();");
1398 return NodeOps;
1399 }
1400
1401 N->dump();
1402 errs() << "\n";
1403 throw std::string("Unknown node in result pattern!");
1404}
1405
1406
Chris Lattnerd1ff35a2005-09-23 21:33:23 +00001407/// EmitCodeForPattern - Given a pattern to match, emit code to the specified
1408/// stream to match the pattern, and generate the code for the match if it
Chris Lattner355408b2006-01-29 02:43:35 +00001409/// succeeds. Returns true if the pattern is not guaranteed to match.
Chris Lattner60d81392008-01-05 22:30:17 +00001410void DAGISelEmitter::GenerateCodeForPattern(const PatternToMatch &Pattern,
Evan Cheng676d7312006-08-26 00:59:04 +00001411 std::vector<std::pair<unsigned, std::string> > &GeneratedCode,
Evan Chengf5493192006-08-26 01:02:19 +00001412 std::set<std::string> &GeneratedDecl,
Evan Chengfceb57a2006-07-15 08:45:20 +00001413 std::vector<std::string> &TargetOpcodes,
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001414 std::vector<std::string> &TargetVTs,
1415 bool &OutputIsVariadic,
1416 unsigned &NumInputRootOps) {
1417 OutputIsVariadic = false;
1418 NumInputRootOps = 0;
1419
Dan Gohman22bb3112008-08-22 00:20:26 +00001420 PatternCodeEmitter Emitter(CGP, Pattern.getPredicateCheck(),
Evan Cheng58e84a62005-12-14 22:02:59 +00001421 Pattern.getSrcPattern(), Pattern.getDstPattern(),
Evan Chengf8729402006-07-16 06:12:52 +00001422 GeneratedCode, GeneratedDecl,
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001423 TargetOpcodes, TargetVTs,
1424 OutputIsVariadic, NumInputRootOps);
Evan Chengb915f312005-12-09 22:45:35 +00001425
Chris Lattner8fc35682005-09-23 23:16:51 +00001426 // Emit the matcher, capturing named arguments in VariableMap.
Evan Cheng7b05bd52005-12-23 22:11:47 +00001427 bool FoundChain = false;
Evan Cheng13e9e9c2006-10-16 06:33:44 +00001428 Emitter.EmitMatchCode(Pattern.getSrcPattern(), NULL, "N", "", FoundChain);
Evan Chengb915f312005-12-09 22:45:35 +00001429
Chris Lattnerc87bf382010-02-14 21:11:53 +00001430 // TP - Get *SOME* tree pattern, we don't care which. It is only used for
1431 // diagnostics, which we know are impossible at this point.
Chris Lattner200c57e2008-01-05 22:58:54 +00001432 TreePattern &TP = *CGP.pf_begin()->second;
Chris Lattner296dfe32005-09-24 00:50:51 +00001433
Chris Lattner0ee7cff2005-10-14 04:11:13 +00001434 // At this point, we know that we structurally match the pattern, but the
1435 // types of the nodes may not match. Figure out the fewest number of type
1436 // comparisons we need to emit. For example, if there is only one integer
1437 // type supported by a target, there should be no type comparisons at all for
1438 // integer patterns!
1439 //
1440 // To figure out the fewest number of type checks needed, clone the pattern,
1441 // remove the types, then perform type inference on the pattern as a whole.
1442 // If there are unresolved types, emit an explicit check for those types,
1443 // apply the type to the tree, then rerun type inference. Iterate until all
1444 // types are resolved.
1445 //
Evan Cheng58e84a62005-12-14 22:02:59 +00001446 TreePatternNode *Pat = Pattern.getSrcPattern()->clone();
Chris Lattner47661322010-02-14 22:22:58 +00001447 Pat->RemoveAllTypes();
Chris Lattner7e82f132005-10-15 21:34:21 +00001448
1449 do {
1450 // Resolve/propagate as many types as possible.
1451 try {
1452 bool MadeChange = true;
1453 while (MadeChange)
Chris Lattner488580c2006-01-28 19:06:51 +00001454 MadeChange = Pat->ApplyTypeConstraints(TP,
1455 true/*Ignore reg constraints*/);
Chris Lattner7e82f132005-10-15 21:34:21 +00001456 } catch (...) {
1457 assert(0 && "Error: could not find consistent types for something we"
1458 " already decided was ok!");
1459 abort();
1460 }
Chris Lattner0ee7cff2005-10-14 04:11:13 +00001461
Chris Lattner7e82f132005-10-15 21:34:21 +00001462 // Insert a check for an unresolved type and add it to the tree. If we find
1463 // an unresolved type to add a check for, this returns true and we iterate,
1464 // otherwise we are done.
Chris Lattner706d2d32006-08-09 16:44:44 +00001465 } while (Emitter.InsertOneTypeCheck(Pat, Pattern.getSrcPattern(), "N", true));
Evan Cheng1c3d19e2005-12-04 08:18:16 +00001466
Evan Cheng85dbe1a2007-09-12 23:30:14 +00001467 Emitter.EmitResultCode(Pattern.getDstPattern(), Pattern.getDstRegs(),
Evan Cheng30729b42007-09-17 22:26:41 +00001468 false, false, false, true);
Chris Lattner0ee7cff2005-10-14 04:11:13 +00001469 delete Pat;
Chris Lattner3f7e9142005-09-23 20:52:47 +00001470}
1471
Chris Lattner24e00a42006-01-29 04:41:05 +00001472/// EraseCodeLine - Erase one code line from all of the patterns. If removing
1473/// a line causes any of them to be empty, remove them and return true when
1474/// done.
Chris Lattner60d81392008-01-05 22:30:17 +00001475static bool EraseCodeLine(std::vector<std::pair<const PatternToMatch*,
Evan Cheng676d7312006-08-26 00:59:04 +00001476 std::vector<std::pair<unsigned, std::string> > > >
Chris Lattner24e00a42006-01-29 04:41:05 +00001477 &Patterns) {
1478 bool ErasedPatterns = false;
1479 for (unsigned i = 0, e = Patterns.size(); i != e; ++i) {
1480 Patterns[i].second.pop_back();
1481 if (Patterns[i].second.empty()) {
1482 Patterns.erase(Patterns.begin()+i);
1483 --i; --e;
1484 ErasedPatterns = true;
1485 }
1486 }
1487 return ErasedPatterns;
1488}
1489
Chris Lattner8bc74722006-01-29 04:25:26 +00001490/// EmitPatterns - Emit code for at least one pattern, but try to group common
1491/// code together between the patterns.
Chris Lattner60d81392008-01-05 22:30:17 +00001492void DAGISelEmitter::EmitPatterns(std::vector<std::pair<const PatternToMatch*,
Evan Cheng676d7312006-08-26 00:59:04 +00001493 std::vector<std::pair<unsigned, std::string> > > >
Chris Lattner8bc74722006-01-29 04:25:26 +00001494 &Patterns, unsigned Indent,
Daniel Dunbar1a551802009-07-03 00:10:29 +00001495 raw_ostream &OS) {
Evan Cheng676d7312006-08-26 00:59:04 +00001496 typedef std::pair<unsigned, std::string> CodeLine;
Chris Lattner8bc74722006-01-29 04:25:26 +00001497 typedef std::vector<CodeLine> CodeList;
Chris Lattner60d81392008-01-05 22:30:17 +00001498 typedef std::vector<std::pair<const PatternToMatch*, CodeList> > PatternList;
Chris Lattner8bc74722006-01-29 04:25:26 +00001499
1500 if (Patterns.empty()) return;
1501
Chris Lattner24e00a42006-01-29 04:41:05 +00001502 // Figure out how many patterns share the next code line. Explicitly copy
1503 // FirstCodeLine so that we don't invalidate a reference when changing
1504 // Patterns.
1505 const CodeLine FirstCodeLine = Patterns.back().second.back();
Chris Lattner8bc74722006-01-29 04:25:26 +00001506 unsigned LastMatch = Patterns.size()-1;
1507 while (LastMatch != 0 && Patterns[LastMatch-1].second.back() == FirstCodeLine)
1508 --LastMatch;
1509
1510 // If not all patterns share this line, split the list into two pieces. The
1511 // first chunk will use this line, the second chunk won't.
1512 if (LastMatch != 0) {
1513 PatternList Shared(Patterns.begin()+LastMatch, Patterns.end());
1514 PatternList Other(Patterns.begin(), Patterns.begin()+LastMatch);
1515
1516 // FIXME: Emit braces?
1517 if (Shared.size() == 1) {
Chris Lattner60d81392008-01-05 22:30:17 +00001518 const PatternToMatch &Pattern = *Shared.back().first;
Chris Lattner8bc74722006-01-29 04:25:26 +00001519 OS << "\n" << std::string(Indent, ' ') << "// Pattern: ";
1520 Pattern.getSrcPattern()->print(OS);
1521 OS << "\n" << std::string(Indent, ' ') << "// Emits: ";
1522 Pattern.getDstPattern()->print(OS);
1523 OS << "\n";
Evan Chengc81d2a02006-04-19 20:36:09 +00001524 unsigned AddedComplexity = Pattern.getAddedComplexity();
Chris Lattner8bc74722006-01-29 04:25:26 +00001525 OS << std::string(Indent, ' ') << "// Pattern complexity = "
Chris Lattner200c57e2008-01-05 22:58:54 +00001526 << getPatternSize(Pattern.getSrcPattern(), CGP) + AddedComplexity
Evan Cheng59413202006-04-19 18:07:24 +00001527 << " cost = "
Chris Lattner200c57e2008-01-05 22:58:54 +00001528 << getResultPatternCost(Pattern.getDstPattern(), CGP)
Evan Chenge6f32032006-07-19 00:24:41 +00001529 << " size = "
Chris Lattner200c57e2008-01-05 22:58:54 +00001530 << getResultPatternSize(Pattern.getDstPattern(), CGP) << "\n";
Chris Lattner8bc74722006-01-29 04:25:26 +00001531 }
Evan Cheng676d7312006-08-26 00:59:04 +00001532 if (FirstCodeLine.first != 1) {
Chris Lattner8bc74722006-01-29 04:25:26 +00001533 OS << std::string(Indent, ' ') << "{\n";
1534 Indent += 2;
1535 }
1536 EmitPatterns(Shared, Indent, OS);
Evan Cheng676d7312006-08-26 00:59:04 +00001537 if (FirstCodeLine.first != 1) {
Chris Lattner8bc74722006-01-29 04:25:26 +00001538 Indent -= 2;
1539 OS << std::string(Indent, ' ') << "}\n";
1540 }
1541
1542 if (Other.size() == 1) {
Chris Lattner60d81392008-01-05 22:30:17 +00001543 const PatternToMatch &Pattern = *Other.back().first;
Chris Lattner8bc74722006-01-29 04:25:26 +00001544 OS << "\n" << std::string(Indent, ' ') << "// Pattern: ";
1545 Pattern.getSrcPattern()->print(OS);
1546 OS << "\n" << std::string(Indent, ' ') << "// Emits: ";
1547 Pattern.getDstPattern()->print(OS);
1548 OS << "\n";
Evan Chengc81d2a02006-04-19 20:36:09 +00001549 unsigned AddedComplexity = Pattern.getAddedComplexity();
Chris Lattner8bc74722006-01-29 04:25:26 +00001550 OS << std::string(Indent, ' ') << "// Pattern complexity = "
Chris Lattner200c57e2008-01-05 22:58:54 +00001551 << getPatternSize(Pattern.getSrcPattern(), CGP) + AddedComplexity
Evan Cheng59413202006-04-19 18:07:24 +00001552 << " cost = "
Chris Lattner200c57e2008-01-05 22:58:54 +00001553 << getResultPatternCost(Pattern.getDstPattern(), CGP)
Chris Lattner706d2d32006-08-09 16:44:44 +00001554 << " size = "
Chris Lattner200c57e2008-01-05 22:58:54 +00001555 << getResultPatternSize(Pattern.getDstPattern(), CGP) << "\n";
Chris Lattner8bc74722006-01-29 04:25:26 +00001556 }
1557 EmitPatterns(Other, Indent, OS);
1558 return;
1559 }
1560
Chris Lattner24e00a42006-01-29 04:41:05 +00001561 // Remove this code from all of the patterns that share it.
1562 bool ErasedPatterns = EraseCodeLine(Patterns);
1563
Evan Cheng676d7312006-08-26 00:59:04 +00001564 bool isPredicate = FirstCodeLine.first == 1;
Chris Lattner8bc74722006-01-29 04:25:26 +00001565
1566 // Otherwise, every pattern in the list has this line. Emit it.
1567 if (!isPredicate) {
1568 // Normal code.
1569 OS << std::string(Indent, ' ') << FirstCodeLine.second << "\n";
1570 } else {
Chris Lattner24e00a42006-01-29 04:41:05 +00001571 OS << std::string(Indent, ' ') << "if (" << FirstCodeLine.second;
1572
1573 // If the next code line is another predicate, and if all of the pattern
1574 // in this group share the same next line, emit it inline now. Do this
1575 // until we run out of common predicates.
Evan Cheng676d7312006-08-26 00:59:04 +00001576 while (!ErasedPatterns && Patterns.back().second.back().first == 1) {
Jim Grosbachda4231f2009-03-26 16:17:51 +00001577 // Check that all of the patterns in Patterns end with the same predicate.
Chris Lattner24e00a42006-01-29 04:41:05 +00001578 bool AllEndWithSamePredicate = true;
1579 for (unsigned i = 0, e = Patterns.size(); i != e; ++i)
1580 if (Patterns[i].second.back() != Patterns.back().second.back()) {
1581 AllEndWithSamePredicate = false;
1582 break;
1583 }
1584 // If all of the predicates aren't the same, we can't share them.
1585 if (!AllEndWithSamePredicate) break;
1586
1587 // Otherwise we can. Emit it shared now.
1588 OS << " &&\n" << std::string(Indent+4, ' ')
1589 << Patterns.back().second.back().second;
1590 ErasedPatterns = EraseCodeLine(Patterns);
Chris Lattner8bc74722006-01-29 04:25:26 +00001591 }
Chris Lattner24e00a42006-01-29 04:41:05 +00001592
1593 OS << ") {\n";
1594 Indent += 2;
Chris Lattner8bc74722006-01-29 04:25:26 +00001595 }
1596
1597 EmitPatterns(Patterns, Indent, OS);
1598
1599 if (isPredicate)
1600 OS << std::string(Indent-2, ' ') << "}\n";
1601}
1602
Evan Cheng892aaf82006-11-08 23:01:03 +00001603static std::string getLegalCName(std::string OpName) {
1604 std::string::size_type pos = OpName.find("::");
1605 if (pos != std::string::npos)
1606 OpName.replace(pos, 2, "_");
1607 return OpName;
Chris Lattner37481472005-09-26 21:59:35 +00001608}
1609
Daniel Dunbar1a551802009-07-03 00:10:29 +00001610void DAGISelEmitter::EmitInstructionSelector(raw_ostream &OS) {
Chris Lattner200c57e2008-01-05 22:58:54 +00001611 const CodeGenTarget &Target = CGP.getTargetInfo();
Chris Lattner6cefb772008-01-05 22:25:12 +00001612
Dan Gohman1e0ee4b2008-08-20 21:45:57 +00001613 // Get the namespace to insert instructions into.
1614 std::string InstNS = Target.getInstNamespace();
Chris Lattnerb277cbc2005-10-18 04:41:01 +00001615 if (!InstNS.empty()) InstNS += "::";
1616
Chris Lattner602f6922006-01-04 00:25:00 +00001617 // Group the patterns by their top-level opcodes.
Chris Lattner60d81392008-01-05 22:30:17 +00001618 std::map<std::string, std::vector<const PatternToMatch*> > PatternsByOpcode;
Evan Chengfceb57a2006-07-15 08:45:20 +00001619 // All unique target node emission functions.
1620 std::map<std::string, unsigned> EmitFunctions;
Chris Lattnerfe718932008-01-06 01:10:31 +00001621 for (CodeGenDAGPatterns::ptm_iterator I = CGP.ptm_begin(),
Chris Lattner200c57e2008-01-05 22:58:54 +00001622 E = CGP.ptm_end(); I != E; ++I) {
Chris Lattner60d81392008-01-05 22:30:17 +00001623 const PatternToMatch &Pattern = *I;
Chris Lattnerc87bf382010-02-14 21:11:53 +00001624
Chris Lattner6cefb772008-01-05 22:25:12 +00001625 TreePatternNode *Node = Pattern.getSrcPattern();
Chris Lattner602f6922006-01-04 00:25:00 +00001626 if (!Node->isLeaf()) {
Chris Lattner200c57e2008-01-05 22:58:54 +00001627 PatternsByOpcode[getOpcodeName(Node->getOperator(), CGP)].
Chris Lattner6cefb772008-01-05 22:25:12 +00001628 push_back(&Pattern);
Chris Lattner602f6922006-01-04 00:25:00 +00001629 } else {
1630 const ComplexPattern *CP;
Chris Lattner9c5d4de2006-11-03 01:11:05 +00001631 if (dynamic_cast<IntInit*>(Node->getLeafValue())) {
Chris Lattner200c57e2008-01-05 22:58:54 +00001632 PatternsByOpcode[getOpcodeName(CGP.getSDNodeNamed("imm"), CGP)].
Chris Lattner6cefb772008-01-05 22:25:12 +00001633 push_back(&Pattern);
Chris Lattner47661322010-02-14 22:22:58 +00001634 } else if ((CP = Node->getComplexPatternInfo(CGP))) {
Chris Lattner602f6922006-01-04 00:25:00 +00001635 std::vector<Record*> OpNodes = CP->getRootNodes();
1636 for (unsigned j = 0, e = OpNodes.size(); j != e; j++) {
Chris Lattner200c57e2008-01-05 22:58:54 +00001637 PatternsByOpcode[getOpcodeName(OpNodes[j], CGP)]
1638 .insert(PatternsByOpcode[getOpcodeName(OpNodes[j], CGP)].begin(),
Chris Lattner6cefb772008-01-05 22:25:12 +00001639 &Pattern);
Chris Lattner602f6922006-01-04 00:25:00 +00001640 }
1641 } else {
Daniel Dunbar1a551802009-07-03 00:10:29 +00001642 errs() << "Unrecognized opcode '";
Chris Lattner602f6922006-01-04 00:25:00 +00001643 Node->dump();
Daniel Dunbar1a551802009-07-03 00:10:29 +00001644 errs() << "' on tree pattern '";
1645 errs() << Pattern.getDstPattern()->getOperator()->getName() << "'!\n";
Chris Lattner602f6922006-01-04 00:25:00 +00001646 exit(1);
1647 }
1648 }
1649 }
Chris Lattner706d2d32006-08-09 16:44:44 +00001650
1651 // For each opcode, there might be multiple select functions, one per
1652 // ValueType of the node (or its first operand if it doesn't produce a
1653 // non-chain result.
1654 std::map<std::string, std::vector<std::string> > OpcodeVTMap;
1655
Chris Lattner602f6922006-01-04 00:25:00 +00001656 // Emit one Select_* method for each top-level opcode. We do this instead of
1657 // emitting one giant switch statement to support compilers where this will
1658 // result in the recursive functions taking less stack space.
Chris Lattner60d81392008-01-05 22:30:17 +00001659 for (std::map<std::string, std::vector<const PatternToMatch*> >::iterator
Evan Cheng892aaf82006-11-08 23:01:03 +00001660 PBOI = PatternsByOpcode.begin(), E = PatternsByOpcode.end();
1661 PBOI != E; ++PBOI) {
1662 const std::string &OpName = PBOI->first;
Chris Lattner60d81392008-01-05 22:30:17 +00001663 std::vector<const PatternToMatch*> &PatternsOfOp = PBOI->second;
Chris Lattner706d2d32006-08-09 16:44:44 +00001664 assert(!PatternsOfOp.empty() && "No patterns but map has entry?");
1665
Chris Lattner706d2d32006-08-09 16:44:44 +00001666 // Split them into groups by type.
Owen Anderson825b72b2009-08-11 20:47:22 +00001667 std::map<MVT::SimpleValueType,
Duncan Sands83ec4b62008-06-06 12:08:01 +00001668 std::vector<const PatternToMatch*> > PatternsByType;
Chris Lattner706d2d32006-08-09 16:44:44 +00001669 for (unsigned i = 0, e = PatternsOfOp.size(); i != e; ++i) {
Chris Lattner60d81392008-01-05 22:30:17 +00001670 const PatternToMatch *Pat = PatternsOfOp[i];
Chris Lattner706d2d32006-08-09 16:44:44 +00001671 TreePatternNode *SrcPat = Pat->getSrcPattern();
Chris Lattner9783d622008-08-26 07:01:28 +00001672 PatternsByType[SrcPat->getTypeNum(0)].push_back(Pat);
Chris Lattner706d2d32006-08-09 16:44:44 +00001673 }
1674
Owen Anderson825b72b2009-08-11 20:47:22 +00001675 for (std::map<MVT::SimpleValueType,
Duncan Sands83ec4b62008-06-06 12:08:01 +00001676 std::vector<const PatternToMatch*> >::iterator
Chris Lattner706d2d32006-08-09 16:44:44 +00001677 II = PatternsByType.begin(), EE = PatternsByType.end(); II != EE;
1678 ++II) {
Owen Anderson825b72b2009-08-11 20:47:22 +00001679 MVT::SimpleValueType OpVT = II->first;
Chris Lattner60d81392008-01-05 22:30:17 +00001680 std::vector<const PatternToMatch*> &Patterns = II->second;
Dan Gohman0540e172008-10-15 06:17:21 +00001681 typedef std::pair<unsigned, std::string> CodeLine;
1682 typedef std::vector<CodeLine> CodeList;
1683 typedef CodeList::iterator CodeListI;
Chris Lattner706d2d32006-08-09 16:44:44 +00001684
Chris Lattner60d81392008-01-05 22:30:17 +00001685 std::vector<std::pair<const PatternToMatch*, CodeList> > CodeForPatterns;
Chris Lattner706d2d32006-08-09 16:44:44 +00001686 std::vector<std::vector<std::string> > PatternOpcodes;
1687 std::vector<std::vector<std::string> > PatternVTs;
Evan Chengf5493192006-08-26 01:02:19 +00001688 std::vector<std::set<std::string> > PatternDecls;
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001689 std::vector<bool> OutputIsVariadicFlags;
1690 std::vector<unsigned> NumInputRootOpsCounts;
Chris Lattner706d2d32006-08-09 16:44:44 +00001691 for (unsigned i = 0, e = Patterns.size(); i != e; ++i) {
1692 CodeList GeneratedCode;
Evan Chengf5493192006-08-26 01:02:19 +00001693 std::set<std::string> GeneratedDecl;
Chris Lattner706d2d32006-08-09 16:44:44 +00001694 std::vector<std::string> TargetOpcodes;
1695 std::vector<std::string> TargetVTs;
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001696 bool OutputIsVariadic;
1697 unsigned NumInputRootOps;
Chris Lattner706d2d32006-08-09 16:44:44 +00001698 GenerateCodeForPattern(*Patterns[i], GeneratedCode, GeneratedDecl,
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001699 TargetOpcodes, TargetVTs,
1700 OutputIsVariadic, NumInputRootOps);
Chris Lattner706d2d32006-08-09 16:44:44 +00001701 CodeForPatterns.push_back(std::make_pair(Patterns[i], GeneratedCode));
1702 PatternDecls.push_back(GeneratedDecl);
1703 PatternOpcodes.push_back(TargetOpcodes);
1704 PatternVTs.push_back(TargetVTs);
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001705 OutputIsVariadicFlags.push_back(OutputIsVariadic);
1706 NumInputRootOpsCounts.push_back(NumInputRootOps);
Chris Lattner706d2d32006-08-09 16:44:44 +00001707 }
1708
Chris Lattner706d2d32006-08-09 16:44:44 +00001709 // Factor target node emission code (emitted by EmitResultCode) into
1710 // separate functions. Uniquing and share them among all instruction
1711 // selection routines.
1712 for (unsigned i = 0, e = CodeForPatterns.size(); i != e; ++i) {
1713 CodeList &GeneratedCode = CodeForPatterns[i].second;
1714 std::vector<std::string> &TargetOpcodes = PatternOpcodes[i];
1715 std::vector<std::string> &TargetVTs = PatternVTs[i];
Evan Chengf5493192006-08-26 01:02:19 +00001716 std::set<std::string> Decls = PatternDecls[i];
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001717 bool OutputIsVariadic = OutputIsVariadicFlags[i];
1718 unsigned NumInputRootOps = NumInputRootOpsCounts[i];
Evan Cheng676d7312006-08-26 00:59:04 +00001719 std::vector<std::string> AddedInits;
Chris Lattner706d2d32006-08-09 16:44:44 +00001720 int CodeSize = (int)GeneratedCode.size();
1721 int LastPred = -1;
1722 for (int j = CodeSize-1; j >= 0; --j) {
Evan Cheng676d7312006-08-26 00:59:04 +00001723 if (LastPred == -1 && GeneratedCode[j].first == 1)
Chris Lattner706d2d32006-08-09 16:44:44 +00001724 LastPred = j;
Evan Cheng676d7312006-08-26 00:59:04 +00001725 else if (LastPred != -1 && GeneratedCode[j].first == 2)
1726 AddedInits.push_back(GeneratedCode[j].second);
Chris Lattner706d2d32006-08-09 16:44:44 +00001727 }
1728
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001729 std::string CalleeCode = "(SDNode *N";
Evan Cheng9ade2182006-08-26 05:34:46 +00001730 std::string CallerCode = "(N";
Chris Lattner706d2d32006-08-09 16:44:44 +00001731 for (unsigned j = 0, e = TargetOpcodes.size(); j != e; ++j) {
1732 CalleeCode += ", unsigned Opc" + utostr(j);
1733 CallerCode += ", " + TargetOpcodes[j];
1734 }
1735 for (unsigned j = 0, e = TargetVTs.size(); j != e; ++j) {
Owen Anderson69110c92009-09-11 09:01:57 +00001736 CalleeCode += ", MVT::SimpleValueType VT" + utostr(j);
Chris Lattner706d2d32006-08-09 16:44:44 +00001737 CallerCode += ", " + TargetVTs[j];
1738 }
Evan Chengf5493192006-08-26 01:02:19 +00001739 for (std::set<std::string>::iterator
Chris Lattner706d2d32006-08-09 16:44:44 +00001740 I = Decls.begin(), E = Decls.end(); I != E; ++I) {
Evan Chengf5493192006-08-26 01:02:19 +00001741 std::string Name = *I;
Dan Gohman475871a2008-07-27 21:46:04 +00001742 CalleeCode += ", SDValue &" + Name;
Evan Cheng676d7312006-08-26 00:59:04 +00001743 CallerCode += ", " + Name;
Chris Lattner706d2d32006-08-09 16:44:44 +00001744 }
Dan Gohmane4c67cd2008-05-31 02:11:25 +00001745
1746 if (OutputIsVariadic) {
1747 CalleeCode += ", unsigned NumInputRootOps";
1748 CallerCode += ", " + utostr(NumInputRootOps);
1749 }
1750
Chris Lattner706d2d32006-08-09 16:44:44 +00001751 CallerCode += ");";
Benjamin Kramerf2a39bd2009-11-14 16:37:18 +00001752 CalleeCode += ") {\n";
Evan Cheng676d7312006-08-26 00:59:04 +00001753
1754 for (std::vector<std::string>::const_reverse_iterator
1755 I = AddedInits.rbegin(), E = AddedInits.rend(); I != E; ++I)
1756 CalleeCode += " " + *I + "\n";
1757
Evan Chengf5493192006-08-26 01:02:19 +00001758 for (int j = LastPred+1; j < CodeSize; ++j)
1759 CalleeCode += " " + GeneratedCode[j].second + "\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00001760 for (int j = LastPred+1; j < CodeSize; ++j)
1761 GeneratedCode.pop_back();
1762 CalleeCode += "}\n";
1763
1764 // Uniquing the emission routines.
1765 unsigned EmitFuncNum;
1766 std::map<std::string, unsigned>::iterator EFI =
1767 EmitFunctions.find(CalleeCode);
1768 if (EFI != EmitFunctions.end()) {
1769 EmitFuncNum = EFI->second;
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00001770 } else {
Chris Lattner706d2d32006-08-09 16:44:44 +00001771 EmitFuncNum = EmitFunctions.size();
1772 EmitFunctions.insert(std::make_pair(CalleeCode, EmitFuncNum));
Benjamin Kramerf2a39bd2009-11-14 16:37:18 +00001773 // Prevent emission routines from being inlined to reduce selection
1774 // routines stack frame sizes.
1775 OS << "DISABLE_INLINE ";
Evan Cheng06d64702006-08-11 08:59:35 +00001776 OS << "SDNode *Emit_" << utostr(EmitFuncNum) << CalleeCode;
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00001777 }
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00001778
Chris Lattner706d2d32006-08-09 16:44:44 +00001779 // Replace the emission code within selection routines with calls to the
1780 // emission functions.
Chris Lattnera0cdf172010-02-13 20:06:50 +00001781 if (GenDebug)
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001782 GeneratedCode.push_back(std::make_pair(0, "CurDAG->setSubgraphColor(N, \"red\");"));
David Greene8ad4c002008-10-27 21:56:29 +00001783 CallerCode = "SDNode *Result = Emit_" + utostr(EmitFuncNum) + CallerCode;
1784 GeneratedCode.push_back(std::make_pair(3, CallerCode));
1785 if (GenDebug) {
1786 GeneratedCode.push_back(std::make_pair(0, "if(Result) {"));
1787 GeneratedCode.push_back(std::make_pair(0, " CurDAG->setSubgraphColor(Result, \"yellow\");"));
1788 GeneratedCode.push_back(std::make_pair(0, " CurDAG->setSubgraphColor(Result, \"black\");"));
1789 GeneratedCode.push_back(std::make_pair(0, "}"));
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001790 //GeneratedCode.push_back(std::make_pair(0, "CurDAG->setSubgraphColor(N, \"black\");"));
David Greene8ad4c002008-10-27 21:56:29 +00001791 }
1792 GeneratedCode.push_back(std::make_pair(0, "return Result;"));
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00001793 }
1794
Chris Lattner706d2d32006-08-09 16:44:44 +00001795 // Print function.
Chris Lattnerab51ddd2006-11-14 21:32:01 +00001796 std::string OpVTStr;
Owen Anderson825b72b2009-08-11 20:47:22 +00001797 if (OpVT == MVT::iPTR) {
Chris Lattner33a40042006-11-14 22:17:10 +00001798 OpVTStr = "_iPTR";
Owen Anderson825b72b2009-08-11 20:47:22 +00001799 } else if (OpVT == MVT::iPTRAny) {
Mon P Wange3b3a722008-07-30 04:36:53 +00001800 OpVTStr = "_iPTRAny";
Owen Anderson825b72b2009-08-11 20:47:22 +00001801 } else if (OpVT == MVT::isVoid) {
Chris Lattner33a40042006-11-14 22:17:10 +00001802 // Nodes with a void result actually have a first result type of either
1803 // Other (a chain) or Flag. Since there is no one-to-one mapping from
1804 // void to this case, we handle it specially here.
1805 } else {
Owen Anderson825b72b2009-08-11 20:47:22 +00001806 OpVTStr = "_" + getEnumName(OpVT).substr(5); // Skip 'MVT::'
Chris Lattner33a40042006-11-14 22:17:10 +00001807 }
Chris Lattner706d2d32006-08-09 16:44:44 +00001808 std::map<std::string, std::vector<std::string> >::iterator OpVTI =
1809 OpcodeVTMap.find(OpName);
1810 if (OpVTI == OpcodeVTMap.end()) {
1811 std::vector<std::string> VTSet;
1812 VTSet.push_back(OpVTStr);
1813 OpcodeVTMap.insert(std::make_pair(OpName, VTSet));
1814 } else
1815 OpVTI->second.push_back(OpVTStr);
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00001816
Dan Gohman0540e172008-10-15 06:17:21 +00001817 // We want to emit all of the matching code now. However, we want to emit
1818 // the matches in order of minimal cost. Sort the patterns so the least
1819 // cost one is at the start.
1820 std::stable_sort(CodeForPatterns.begin(), CodeForPatterns.end(),
1821 PatternSortingPredicate(CGP));
1822
1823 // Scan the code to see if all of the patterns are reachable and if it is
1824 // possible that the last one might not match.
1825 bool mightNotMatch = true;
1826 for (unsigned i = 0, e = CodeForPatterns.size(); i != e; ++i) {
1827 CodeList &GeneratedCode = CodeForPatterns[i].second;
1828 mightNotMatch = false;
1829
1830 for (unsigned j = 0, e = GeneratedCode.size(); j != e; ++j) {
1831 if (GeneratedCode[j].first == 1) { // predicate.
1832 mightNotMatch = true;
1833 break;
1834 }
1835 }
1836
1837 // If this pattern definitely matches, and if it isn't the last one, the
1838 // patterns after it CANNOT ever match. Error out.
1839 if (mightNotMatch == false && i != CodeForPatterns.size()-1) {
Daniel Dunbar1a551802009-07-03 00:10:29 +00001840 errs() << "Pattern '";
1841 CodeForPatterns[i].first->getSrcPattern()->print(errs());
1842 errs() << "' is impossible to select!\n";
Dan Gohman0540e172008-10-15 06:17:21 +00001843 exit(1);
1844 }
1845 }
1846
Chris Lattner706d2d32006-08-09 16:44:44 +00001847 // Loop through and reverse all of the CodeList vectors, as we will be
1848 // accessing them from their logical front, but accessing the end of a
1849 // vector is more efficient.
1850 for (unsigned i = 0, e = CodeForPatterns.size(); i != e; ++i) {
1851 CodeList &GeneratedCode = CodeForPatterns[i].second;
1852 std::reverse(GeneratedCode.begin(), GeneratedCode.end());
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00001853 }
Chris Lattner706d2d32006-08-09 16:44:44 +00001854
1855 // Next, reverse the list of patterns itself for the same reason.
1856 std::reverse(CodeForPatterns.begin(), CodeForPatterns.end());
1857
Dan Gohman63e3e632009-01-29 01:37:18 +00001858 OS << "SDNode *Select_" << getLegalCName(OpName)
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001859 << OpVTStr << "(SDNode *N) {\n";
Dan Gohman63e3e632009-01-29 01:37:18 +00001860
Chris Lattner706d2d32006-08-09 16:44:44 +00001861 // Emit all of the patterns now, grouped together to share code.
1862 EmitPatterns(CodeForPatterns, 2, OS);
1863
Chris Lattner64906972006-09-21 18:28:27 +00001864 // If the last pattern has predicates (which could fail) emit code to
1865 // catch the case where nothing handles a pattern.
Chris Lattner706d2d32006-08-09 16:44:44 +00001866 if (mightNotMatch) {
Dan Gohman31bd42b2008-09-27 23:53:14 +00001867 OS << "\n";
Evan Cheng892aaf82006-11-08 23:01:03 +00001868 if (OpName != "ISD::INTRINSIC_W_CHAIN" &&
1869 OpName != "ISD::INTRINSIC_WO_CHAIN" &&
Dan Gohman31bd42b2008-09-27 23:53:14 +00001870 OpName != "ISD::INTRINSIC_VOID")
1871 OS << " CannotYetSelect(N);\n";
1872 else
1873 OS << " CannotYetSelectIntrinsic(N);\n";
1874
1875 OS << " return NULL;\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00001876 }
1877 OS << "}\n\n";
Tanya Lattner8d4ccf02006-08-09 16:41:21 +00001878 }
Chris Lattner602f6922006-01-04 00:25:00 +00001879 }
1880
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001881 OS << "// The main instruction selector code.\n"
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001882 << "SDNode *SelectCode(SDNode *N) {\n"
1883 << " MVT::SimpleValueType NVT = N->getValueType(0).getSimpleVT().SimpleTy;\n"
1884 << " switch (N->getOpcode()) {\n"
Dan Gohman28c04da2008-11-05 18:30:52 +00001885 << " default:\n"
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001886 << " assert(!N->isMachineOpcode() && \"Node already selected!\");\n"
Dan Gohman28c04da2008-11-05 18:30:52 +00001887 << " break;\n"
1888 << " case ISD::EntryToken: // These nodes remain the same.\n"
Chris Lattner5216c692005-12-18 21:05:44 +00001889 << " case ISD::BasicBlock:\n"
Chris Lattner8020a522006-01-11 19:52:27 +00001890 << " case ISD::Register:\n"
Evan Cheng0a83ed52006-02-05 08:46:14 +00001891 << " case ISD::HANDLENODE:\n"
Evan Cheng2216d8a2006-02-05 05:22:18 +00001892 << " case ISD::TargetConstant:\n"
Nate Begemane1795842008-02-14 08:57:00 +00001893 << " case ISD::TargetConstantFP:\n"
Evan Cheng2216d8a2006-02-05 05:22:18 +00001894 << " case ISD::TargetConstantPool:\n"
1895 << " case ISD::TargetFrameIndex:\n"
Bill Wendling056292f2008-09-16 21:48:12 +00001896 << " case ISD::TargetExternalSymbol:\n"
Dan Gohman8c2b5252009-10-30 01:27:03 +00001897 << " case ISD::TargetBlockAddress:\n"
Nate Begeman37efe672006-04-22 18:53:45 +00001898 << " case ISD::TargetJumpTable:\n"
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00001899 << " case ISD::TargetGlobalTLSAddress:\n"
Dan Gohman8be6bbe2008-11-05 04:14:16 +00001900 << " case ISD::TargetGlobalAddress:\n"
1901 << " case ISD::TokenFactor:\n"
1902 << " case ISD::CopyFromReg:\n"
1903 << " case ISD::CopyToReg: {\n"
Evan Cheng06d64702006-08-11 08:59:35 +00001904 << " return NULL;\n"
Evan Cheng34167212006-02-09 00:37:58 +00001905 << " }\n"
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001906 << " case ISD::AssertSext:\n"
Chris Lattnerfab37282005-09-26 22:10:24 +00001907 << " case ISD::AssertZext: {\n"
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001908 << " ReplaceUses(SDValue(N, 0), N->getOperand(0));\n"
Evan Cheng06d64702006-08-11 08:59:35 +00001909 << " return NULL;\n"
Chris Lattnerf071bb52005-10-25 20:35:14 +00001910 << " }\n"
Jim Laskeya683f9b2007-01-26 17:29:20 +00001911 << " case ISD::INLINEASM: return Select_INLINEASM(N);\n"
Dan Gohmancd920d92008-07-02 23:23:19 +00001912 << " case ISD::EH_LABEL: return Select_EH_LABEL(N);\n"
Evan Chengda47e6e2008-03-15 00:03:38 +00001913 << " case ISD::UNDEF: return Select_UNDEF(N);\n";
Chris Lattnerfabcb7a2006-01-26 23:08:55 +00001914
Chris Lattner602f6922006-01-04 00:25:00 +00001915 // Loop over all of the case statements, emiting a call to each method we
1916 // emitted above.
Chris Lattner60d81392008-01-05 22:30:17 +00001917 for (std::map<std::string, std::vector<const PatternToMatch*> >::iterator
Evan Cheng892aaf82006-11-08 23:01:03 +00001918 PBOI = PatternsByOpcode.begin(), E = PatternsByOpcode.end();
1919 PBOI != E; ++PBOI) {
1920 const std::string &OpName = PBOI->first;
Chris Lattner706d2d32006-08-09 16:44:44 +00001921 // Potentially multiple versions of select for this opcode. One for each
1922 // ValueType of the node (or its first true operand if it doesn't produce a
1923 // result.
1924 std::map<std::string, std::vector<std::string> >::iterator OpVTI =
1925 OpcodeVTMap.find(OpName);
1926 std::vector<std::string> &OpVTs = OpVTI->second;
Evan Cheng892aaf82006-11-08 23:01:03 +00001927 OS << " case " << OpName << ": {\n";
Dale Johannesen3b895cf2009-05-12 22:32:29 +00001928 // If we have only one variant and it's the default, elide the
1929 // switch. Marginally faster, and makes MSVC happier.
1930 if (OpVTs.size()==1 && OpVTs[0].empty()) {
1931 OS << " return Select_" << getLegalCName(OpName) << "(N);\n";
1932 OS << " break;\n";
1933 OS << " }\n";
1934 continue;
1935 }
Evan Cheng425e8c72007-09-04 20:18:28 +00001936 // Keep track of whether we see a pattern that has an iPtr result.
1937 bool HasPtrPattern = false;
1938 bool HasDefaultPattern = false;
Chris Lattner717a6112006-11-14 21:50:27 +00001939
Evan Cheng425e8c72007-09-04 20:18:28 +00001940 OS << " switch (NVT) {\n";
1941 for (unsigned i = 0, e = OpVTs.size(); i < e; ++i) {
1942 std::string &VTStr = OpVTs[i];
1943 if (VTStr.empty()) {
1944 HasDefaultPattern = true;
1945 continue;
1946 }
Chris Lattner717a6112006-11-14 21:50:27 +00001947
Evan Cheng425e8c72007-09-04 20:18:28 +00001948 // If this is a match on iPTR: don't emit it directly, we need special
1949 // code.
1950 if (VTStr == "_iPTR") {
1951 HasPtrPattern = true;
1952 continue;
Chris Lattner706d2d32006-08-09 16:44:44 +00001953 }
Owen Anderson825b72b2009-08-11 20:47:22 +00001954 OS << " case MVT::" << VTStr.substr(1) << ":\n"
Evan Cheng425e8c72007-09-04 20:18:28 +00001955 << " return Select_" << getLegalCName(OpName)
1956 << VTStr << "(N);\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00001957 }
Evan Cheng425e8c72007-09-04 20:18:28 +00001958 OS << " default:\n";
1959
1960 // If there is an iPTR result version of this pattern, emit it here.
1961 if (HasPtrPattern) {
Duncan Sands83ec4b62008-06-06 12:08:01 +00001962 OS << " if (TLI.getPointerTy() == NVT)\n";
Evan Cheng425e8c72007-09-04 20:18:28 +00001963 OS << " return Select_" << getLegalCName(OpName) <<"_iPTR(N);\n";
1964 }
1965 if (HasDefaultPattern) {
1966 OS << " return Select_" << getLegalCName(OpName) << "(N);\n";
1967 }
1968 OS << " break;\n";
1969 OS << " }\n";
1970 OS << " break;\n";
Chris Lattner706d2d32006-08-09 16:44:44 +00001971 OS << " }\n";
Chris Lattner81303322005-09-23 19:36:15 +00001972 }
Chris Lattner81303322005-09-23 19:36:15 +00001973
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001974 OS << " } // end of big switch.\n\n"
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001975 << " if (N->getOpcode() != ISD::INTRINSIC_W_CHAIN &&\n"
1976 << " N->getOpcode() != ISD::INTRINSIC_WO_CHAIN &&\n"
1977 << " N->getOpcode() != ISD::INTRINSIC_VOID) {\n"
Dan Gohman31bd42b2008-09-27 23:53:14 +00001978 << " CannotYetSelect(N);\n"
Chris Lattner9bf2d3e2006-03-25 06:47:53 +00001979 << " } else {\n"
Dan Gohman31bd42b2008-09-27 23:53:14 +00001980 << " CannotYetSelectIntrinsic(N);\n"
Chris Lattner9bf2d3e2006-03-25 06:47:53 +00001981 << " }\n"
Dan Gohman31bd42b2008-09-27 23:53:14 +00001982 << " return NULL;\n"
1983 << "}\n\n";
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001984}
1985
Daniel Dunbar1a551802009-07-03 00:10:29 +00001986void DAGISelEmitter::run(raw_ostream &OS) {
Chris Lattner200c57e2008-01-05 22:58:54 +00001987 EmitSourceFileHeader("DAG Instruction Selector for the " +
1988 CGP.getTargetInfo().getName() + " target", OS);
Chris Lattner54cb8fd2005-09-07 23:44:43 +00001989
Chris Lattner1f39e292005-09-14 00:09:24 +00001990 OS << "// *** NOTE: This file is #included into the middle of the target\n"
1991 << "// *** instruction selector class. These functions are really "
1992 << "methods.\n\n";
Chris Lattnerf8dc0612008-02-03 06:49:24 +00001993
Roman Levenstein6422e8a2008-05-14 10:17:11 +00001994 OS << "// Include standard, target-independent definitions and methods used\n"
1995 << "// by the instruction selector.\n";
Mike Stumpfe095f32009-05-04 18:40:41 +00001996 OS << "#include \"llvm/CodeGen/DAGISelHeader.h\"\n\n";
Chris Lattner296dfe32005-09-24 00:50:51 +00001997
Chris Lattner443e3f92008-01-05 22:54:53 +00001998 EmitNodeTransforms(OS);
Chris Lattnerdc32f982008-01-05 22:43:57 +00001999 EmitPredicateFunctions(OS);
2000
Chris Lattner569f1212009-08-23 04:44:11 +00002001 DEBUG(errs() << "\n\nALL PATTERNS TO MATCH:\n\n");
Chris Lattnerfe718932008-01-06 01:10:31 +00002002 for (CodeGenDAGPatterns::ptm_iterator I = CGP.ptm_begin(), E = CGP.ptm_end();
Chris Lattner6cefb772008-01-05 22:25:12 +00002003 I != E; ++I) {
Chris Lattner569f1212009-08-23 04:44:11 +00002004 DEBUG(errs() << "PATTERN: "; I->getSrcPattern()->dump());
2005 DEBUG(errs() << "\nRESULT: "; I->getDstPattern()->dump());
2006 DEBUG(errs() << "\n");
Bill Wendlingf5da1332006-12-07 22:21:48 +00002007 }
Chris Lattnere46e17b2005-09-29 19:28:10 +00002008
Chris Lattnerb9f01eb2005-09-16 00:29:46 +00002009 // At this point, we have full information about the 'Patterns' we need to
2010 // parse, both implicitly from instructions as well as from explicit pattern
Chris Lattnere97603f2005-09-28 19:27:25 +00002011 // definitions. Emit the resultant instruction selector.
Chris Lattner54cb8fd2005-09-07 23:44:43 +00002012 EmitInstructionSelector(OS);
2013
Chris Lattner54cb8fd2005-09-07 23:44:43 +00002014}