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Chris Lattnerda272d12010-02-15 08:04:42 +00001//===- DAGISelMatcherEmitter.cpp - Matcher Emitter ------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file contains code to generate C++ code a matcher.
11//
12//===----------------------------------------------------------------------===//
13
14#include "DAGISelMatcher.h"
15#include "CodeGenDAGPatterns.h"
Chris Lattner8e946be2010-02-21 03:22:59 +000016#include "Record.h"
Chris Lattnere609a512010-02-17 00:31:50 +000017#include "llvm/ADT/DenseMap.h"
Chris Lattnerda272d12010-02-15 08:04:42 +000018#include "llvm/ADT/SmallString.h"
Chris Lattner050a03d2010-02-16 07:21:10 +000019#include "llvm/ADT/StringMap.h"
Chris Lattnerda272d12010-02-15 08:04:42 +000020#include "llvm/Support/FormattedStream.h"
21using namespace llvm;
22
Chris Lattnerda272d12010-02-15 08:04:42 +000023enum {
Chris Lattner5be6e592010-02-17 00:39:26 +000024 CommentIndent = 30
Chris Lattnerda272d12010-02-15 08:04:42 +000025};
Chris Lattnerda272d12010-02-15 08:04:42 +000026
Chris Lattnerda272d12010-02-15 08:04:42 +000027/// ClassifyInt - Classify an integer by size, return '1','2','4','8' if this
28/// fits in 1, 2, 4, or 8 sign extended bytes.
29static char ClassifyInt(int64_t Val) {
30 if (Val == int8_t(Val)) return '1';
31 if (Val == int16_t(Val)) return '2';
32 if (Val == int32_t(Val)) return '4';
33 return '8';
34}
35
36/// EmitInt - Emit the specified integer, returning the number of bytes emitted.
37static unsigned EmitInt(int64_t Val, formatted_raw_ostream &OS) {
38 unsigned BytesEmitted = 1;
39 OS << (int)(unsigned char)Val << ", ";
40 if (Val == int8_t(Val)) {
Chris Lattner8e946be2010-02-21 03:22:59 +000041 OS << '\n';
Chris Lattnerda272d12010-02-15 08:04:42 +000042 return BytesEmitted;
43 }
44
45 OS << (int)(unsigned char)(Val >> 8) << ", ";
46 ++BytesEmitted;
47
48 if (Val != int16_t(Val)) {
Chris Lattner8e946be2010-02-21 03:22:59 +000049 OS << (int)(unsigned char)(Val >> 16) << ", "
50 << (int)(unsigned char)(Val >> 24) << ", ";
Chris Lattnerda272d12010-02-15 08:04:42 +000051 BytesEmitted += 2;
52
53 if (Val != int32_t(Val)) {
Chris Lattner8e946be2010-02-21 03:22:59 +000054 OS << (int)(unsigned char)(Val >> 32) << ", "
55 << (int)(unsigned char)(Val >> 40) << ", "
56 << (int)(unsigned char)(Val >> 48) << ", "
57 << (int)(unsigned char)(Val >> 56) << ", ";
Chris Lattnerda272d12010-02-15 08:04:42 +000058 BytesEmitted += 4;
59 }
60 }
61
Chris Lattner8e946be2010-02-21 03:22:59 +000062 OS.PadToColumn(CommentIndent) << "// " << Val << " aka 0x";
63 OS.write_hex(Val) << '\n';
Chris Lattnerda272d12010-02-15 08:04:42 +000064 return BytesEmitted;
65}
66
Chris Lattnere02ea542010-02-16 06:52:01 +000067namespace {
68class MatcherTableEmitter {
Chris Lattner050a03d2010-02-16 07:21:10 +000069 StringMap<unsigned> NodePredicateMap, PatternPredicateMap;
70 std::vector<std::string> NodePredicates, PatternPredicates;
Chris Lattnere609a512010-02-17 00:31:50 +000071
72 DenseMap<const ComplexPattern*, unsigned> ComplexPatternMap;
73 std::vector<const ComplexPattern*> ComplexPatterns;
Chris Lattner8e946be2010-02-21 03:22:59 +000074
75
76 DenseMap<Record*, unsigned> NodeXFormMap;
77 std::vector<const Record*> NodeXForms;
78
Chris Lattner09b9f392010-02-24 19:17:12 +000079 // Per opcode frequence count.
80 std::vector<unsigned> Histogram;
Chris Lattnere02ea542010-02-16 06:52:01 +000081public:
Chris Lattner984e1882010-02-21 06:30:04 +000082 MatcherTableEmitter() {}
Chris Lattnere02ea542010-02-16 06:52:01 +000083
Chris Lattner984e1882010-02-21 06:30:04 +000084 unsigned EmitMatcherList(const MatcherNode *N, unsigned Indent,
Chris Lattner8fbad242010-02-21 07:16:41 +000085 unsigned StartIdx, formatted_raw_ostream &OS);
Chris Lattner050a03d2010-02-16 07:21:10 +000086
Chris Lattner984e1882010-02-21 06:30:04 +000087 void EmitPredicateFunctions(formatted_raw_ostream &OS);
Chris Lattner09b9f392010-02-24 19:17:12 +000088
89 void EmitHistogram(formatted_raw_ostream &OS);
Chris Lattnere02ea542010-02-16 06:52:01 +000090private:
Chris Lattner984e1882010-02-21 06:30:04 +000091 unsigned EmitMatcher(const MatcherNode *N, unsigned Indent,
92 formatted_raw_ostream &OS);
Chris Lattner050a03d2010-02-16 07:21:10 +000093
94 unsigned getNodePredicate(StringRef PredName) {
95 unsigned &Entry = NodePredicateMap[PredName];
96 if (Entry == 0) {
97 NodePredicates.push_back(PredName.str());
98 Entry = NodePredicates.size();
99 }
100 return Entry-1;
101 }
102 unsigned getPatternPredicate(StringRef PredName) {
103 unsigned &Entry = PatternPredicateMap[PredName];
104 if (Entry == 0) {
105 PatternPredicates.push_back(PredName.str());
106 Entry = PatternPredicates.size();
107 }
108 return Entry-1;
109 }
Chris Lattnere609a512010-02-17 00:31:50 +0000110
111 unsigned getComplexPat(const ComplexPattern &P) {
112 unsigned &Entry = ComplexPatternMap[&P];
113 if (Entry == 0) {
114 ComplexPatterns.push_back(&P);
115 Entry = ComplexPatterns.size();
116 }
117 return Entry-1;
118 }
Chris Lattner8e946be2010-02-21 03:22:59 +0000119
120 unsigned getNodeXFormID(Record *Rec) {
121 unsigned &Entry = NodeXFormMap[Rec];
122 if (Entry == 0) {
123 NodeXForms.push_back(Rec);
124 Entry = NodeXForms.size();
125 }
126 return Entry-1;
127 }
128
Chris Lattnere02ea542010-02-16 06:52:01 +0000129};
130} // end anonymous namespace.
131
Chris Lattner5007e1e2010-02-23 00:59:59 +0000132/// EmitVBRValue - Emit the specified value as a VBR, returning the number of
133/// bytes emitted.
134static unsigned EmitVBRValue(unsigned Val, raw_ostream &OS) {
135 if (Val <= 127) {
136 OS << Val << ", ";
137 return 1;
138 }
139
140 unsigned InVal = Val;
141 unsigned NumBytes = 0;
Chris Lattner860d4a72010-02-23 01:07:39 +0000142 while (Val >= 128) {
Chris Lattner5007e1e2010-02-23 00:59:59 +0000143 OS << (Val&127) << "|128,";
144 Val >>= 7;
145 ++NumBytes;
146 }
147 OS << Val << "/*" << InVal << "*/, ";
148 return NumBytes+1;
149}
150
Chris Lattnerda272d12010-02-15 08:04:42 +0000151/// EmitMatcherOpcodes - Emit bytes for the specified matcher and return
152/// the number of bytes emitted.
Chris Lattnere02ea542010-02-16 06:52:01 +0000153unsigned MatcherTableEmitter::
Chris Lattner984e1882010-02-21 06:30:04 +0000154EmitMatcher(const MatcherNode *N, unsigned Indent, formatted_raw_ostream &OS) {
Chris Lattnerda272d12010-02-15 08:04:42 +0000155 OS.PadToColumn(Indent*2);
156
157 switch (N->getKind()) {
158 case MatcherNode::Push: assert(0 && "Should be handled by caller");
Chris Lattner845c0422010-02-18 22:03:03 +0000159 case MatcherNode::RecordNode:
160 OS << "OPC_RecordNode,";
Chris Lattnerc96087b2010-02-17 01:03:09 +0000161 OS.PadToColumn(CommentIndent) << "// "
162 << cast<RecordMatcherNode>(N)->getWhatFor() << '\n';
Chris Lattnerda272d12010-02-15 08:04:42 +0000163 return 1;
Chris Lattner19b5a752010-02-24 07:31:45 +0000164
165 case MatcherNode::RecordChild:
166 OS << "OPC_RecordChild" << cast<RecordChildMatcherNode>(N)->getChildNo()
167 << ',';
168 OS.PadToColumn(CommentIndent) << "// "
169 << cast<RecordChildMatcherNode>(N)->getWhatFor() << '\n';
170 return 1;
Chris Lattner8e946be2010-02-21 03:22:59 +0000171
172 case MatcherNode::RecordMemRef:
173 OS << "OPC_RecordMemRef,\n";
174 return 1;
175
176 case MatcherNode::CaptureFlagInput:
177 OS << "OPC_CaptureFlagInput,\n";
178 return 1;
179
Chris Lattnerda272d12010-02-15 08:04:42 +0000180 case MatcherNode::MoveChild:
181 OS << "OPC_MoveChild, "
182 << cast<MoveChildMatcherNode>(N)->getChildNo() << ",\n";
183 return 2;
184
185 case MatcherNode::MoveParent:
186 OS << "OPC_MoveParent,\n";
187 return 1;
188
189 case MatcherNode::CheckSame:
190 OS << "OPC_CheckSame, "
191 << cast<CheckSameMatcherNode>(N)->getMatchNumber() << ",\n";
192 return 2;
193
Chris Lattner050a03d2010-02-16 07:21:10 +0000194 case MatcherNode::CheckPatternPredicate: {
195 StringRef Pred = cast<CheckPatternPredicateMatcherNode>(N)->getPredicate();
196 OS << "OPC_CheckPatternPredicate, " << getPatternPredicate(Pred) << ',';
197 OS.PadToColumn(CommentIndent) << "// " << Pred << '\n';
Chris Lattnerda272d12010-02-15 08:04:42 +0000198 return 2;
Chris Lattner050a03d2010-02-16 07:21:10 +0000199 }
200 case MatcherNode::CheckPredicate: {
201 StringRef Pred = cast<CheckPredicateMatcherNode>(N)->getPredicateName();
202 OS << "OPC_CheckPredicate, " << getNodePredicate(Pred) << ',';
203 OS.PadToColumn(CommentIndent) << "// " << Pred << '\n';
Chris Lattnerda272d12010-02-15 08:04:42 +0000204 return 2;
Chris Lattner050a03d2010-02-16 07:21:10 +0000205 }
206
Chris Lattnerda272d12010-02-15 08:04:42 +0000207 case MatcherNode::CheckOpcode:
208 OS << "OPC_CheckOpcode, "
209 << cast<CheckOpcodeMatcherNode>(N)->getOpcodeName() << ",\n";
210 return 2;
211
Chris Lattner12a667c2010-02-22 22:30:37 +0000212 case MatcherNode::CheckMultiOpcode: {
213 const CheckMultiOpcodeMatcherNode *CMO=cast<CheckMultiOpcodeMatcherNode>(N);
214 OS << "OPC_CheckMultiOpcode, " << CMO->getNumOpcodeNames() << ", ";
215 for (unsigned i = 0, e = CMO->getNumOpcodeNames(); i != e; ++i)
216 OS << CMO->getOpcodeName(i) << ", ";
217 OS << '\n';
218 return 2 + CMO->getNumOpcodeNames();
219 }
220
Chris Lattnerda272d12010-02-15 08:04:42 +0000221 case MatcherNode::CheckType:
222 OS << "OPC_CheckType, "
223 << getEnumName(cast<CheckTypeMatcherNode>(N)->getType()) << ",\n";
224 return 2;
Chris Lattner23cfda72010-02-24 20:15:25 +0000225 case MatcherNode::CheckChildType:
226 OS << "OPC_CheckChild"
227 << cast<CheckChildTypeMatcherNode>(N)->getChildNo() << "Type, "
228 << getEnumName(cast<CheckChildTypeMatcherNode>(N)->getType()) << ",\n";
229 return 2;
230
Chris Lattnerda272d12010-02-15 08:04:42 +0000231 case MatcherNode::CheckInteger: {
232 int64_t Val = cast<CheckIntegerMatcherNode>(N)->getValue();
233 OS << "OPC_CheckInteger" << ClassifyInt(Val) << ", ";
234 return EmitInt(Val, OS)+1;
235 }
236 case MatcherNode::CheckCondCode:
237 OS << "OPC_CheckCondCode, ISD::"
238 << cast<CheckCondCodeMatcherNode>(N)->getCondCodeName() << ",\n";
239 return 2;
240
241 case MatcherNode::CheckValueType:
242 OS << "OPC_CheckValueType, MVT::"
243 << cast<CheckValueTypeMatcherNode>(N)->getTypeName() << ",\n";
244 return 2;
245
Chris Lattner5be6e592010-02-17 00:39:26 +0000246 case MatcherNode::CheckComplexPat: {
247 const ComplexPattern &Pattern =
248 cast<CheckComplexPatMatcherNode>(N)->getPattern();
249 OS << "OPC_CheckComplexPat, " << getComplexPat(Pattern) << ',';
Chris Lattner781f3592010-02-17 06:47:35 +0000250 OS.PadToColumn(CommentIndent) << "// " << Pattern.getSelectFunc();
251 OS << ": " << Pattern.getNumOperands() << " operands";
252 if (Pattern.hasProperty(SDNPHasChain))
253 OS << " + chain result and input";
254 OS << '\n';
Chris Lattnerda272d12010-02-15 08:04:42 +0000255 return 2;
Chris Lattner5be6e592010-02-17 00:39:26 +0000256 }
Chris Lattnerda272d12010-02-15 08:04:42 +0000257
258 case MatcherNode::CheckAndImm: {
259 int64_t Val = cast<CheckAndImmMatcherNode>(N)->getValue();
260 OS << "OPC_CheckAndImm" << ClassifyInt(Val) << ", ";
261 return EmitInt(Val, OS)+1;
262 }
263
264 case MatcherNode::CheckOrImm: {
265 int64_t Val = cast<CheckOrImmMatcherNode>(N)->getValue();
266 OS << "OPC_CheckOrImm" << ClassifyInt(Val) << ", ";
267 return EmitInt(Val, OS)+1;
268 }
Chris Lattner21390d72010-02-16 19:15:55 +0000269 case MatcherNode::CheckFoldableChainNode:
270 OS << "OPC_CheckFoldableChainNode,\n";
Chris Lattnere39650a2010-02-16 06:10:58 +0000271 return 1;
Chris Lattner9a747f12010-02-17 06:23:39 +0000272 case MatcherNode::CheckChainCompatible:
273 OS << "OPC_CheckChainCompatible, "
274 << cast<CheckChainCompatibleMatcherNode>(N)->getPreviousOp() << ",\n";
275 return 2;
Chris Lattner845c0422010-02-18 22:03:03 +0000276
Chris Lattner906b4992010-02-19 07:49:56 +0000277 case MatcherNode::EmitInteger: {
278 int64_t Val = cast<EmitIntegerMatcherNode>(N)->getValue();
279 OS << "OPC_EmitInteger" << ClassifyInt(Val) << ", "
280 << getEnumName(cast<EmitIntegerMatcherNode>(N)->getVT()) << ", ";
281 return EmitInt(Val, OS)+2;
282 }
Chris Lattner8e946be2010-02-21 03:22:59 +0000283 case MatcherNode::EmitStringInteger: {
284 const std::string &Val = cast<EmitStringIntegerMatcherNode>(N)->getValue();
285 // These should always fit into one byte.
286 OS << "OPC_EmitInteger1, "
287 << getEnumName(cast<EmitStringIntegerMatcherNode>(N)->getVT()) << ", "
288 << Val << ",\n";
289 return 3;
290 }
Chris Lattner906b4992010-02-19 07:49:56 +0000291
Chris Lattner845c0422010-02-18 22:03:03 +0000292 case MatcherNode::EmitRegister:
Chris Lattner906b4992010-02-19 07:49:56 +0000293 OS << "OPC_EmitRegister, "
294 << getEnumName(cast<EmitRegisterMatcherNode>(N)->getVT()) << ", ";
295 if (Record *R = cast<EmitRegisterMatcherNode>(N)->getReg())
296 OS << getQualifiedName(R) << ",\n";
297 else
298 OS << "0 /*zero_reg*/,\n";
299 return 3;
Chris Lattner8e946be2010-02-21 03:22:59 +0000300
301 case MatcherNode::EmitConvertToTarget:
302 OS << "OPC_EmitConvertToTarget, "
303 << cast<EmitConvertToTargetMatcherNode>(N)->getSlot() << ",\n";
304 return 2;
305
306 case MatcherNode::EmitMergeInputChains: {
307 const EmitMergeInputChainsMatcherNode *MN =
308 cast<EmitMergeInputChainsMatcherNode>(N);
309 OS << "OPC_EmitMergeInputChains, " << MN->getNumNodes() << ", ";
310 for (unsigned i = 0, e = MN->getNumNodes(); i != e; ++i)
311 OS << MN->getNode(i) << ", ";
312 OS << '\n';
313 return 2+MN->getNumNodes();
314 }
315 case MatcherNode::EmitCopyToReg:
316 OS << "OPC_EmitCopyToReg, "
317 << cast<EmitCopyToRegMatcherNode>(N)->getSrcSlot() << ", "
318 << getQualifiedName(cast<EmitCopyToRegMatcherNode>(N)->getDestPhysReg())
319 << ",\n";
320 return 3;
321 case MatcherNode::EmitNodeXForm: {
322 const EmitNodeXFormMatcherNode *XF = cast<EmitNodeXFormMatcherNode>(N);
323 OS << "OPC_EmitNodeXForm, " << getNodeXFormID(XF->getNodeXForm()) << ", "
324 << XF->getSlot() << ',';
325 OS.PadToColumn(CommentIndent) << "// "<<XF->getNodeXForm()->getName()<<'\n';
326 return 3;
327 }
328
329 case MatcherNode::EmitNode: {
330 const EmitNodeMatcherNode *EN = cast<EmitNodeMatcherNode>(N);
331 OS << "OPC_EmitNode, TARGET_OPCODE(" << EN->getOpcodeName() << "), 0";
332
333 if (EN->hasChain()) OS << "|OPFL_Chain";
334 if (EN->hasFlag()) OS << "|OPFL_Flag";
335 if (EN->hasMemRefs()) OS << "|OPFL_MemRefs";
336 if (EN->getNumFixedArityOperands() != -1)
337 OS << "|OPFL_Variadic" << EN->getNumFixedArityOperands();
338 OS << ",\n";
339
340 OS.PadToColumn(Indent*2+4) << EN->getNumVTs() << "/*#VTs*/, ";
341 for (unsigned i = 0, e = EN->getNumVTs(); i != e; ++i)
342 OS << getEnumName(EN->getVT(i)) << ", ";
343
344 OS << EN->getNumOperands() << "/*#Ops*/, ";
Chris Lattner5007e1e2010-02-23 00:59:59 +0000345 unsigned NumOperandBytes = 0;
346 for (unsigned i = 0, e = EN->getNumOperands(); i != e; ++i) {
347 // We emit the operand numbers in VBR encoded format, in case the number
348 // is too large to represent with a byte.
349 NumOperandBytes += EmitVBRValue(EN->getOperand(i), OS);
350 }
Chris Lattner8e946be2010-02-21 03:22:59 +0000351 OS << '\n';
Chris Lattner5007e1e2010-02-23 00:59:59 +0000352 return 6+EN->getNumVTs()+NumOperandBytes;
Chris Lattner8e946be2010-02-21 03:22:59 +0000353 }
Chris Lattner02f73582010-02-24 05:33:42 +0000354 case MatcherNode::MarkFlagResults: {
355 const MarkFlagResultsMatcherNode *CFR = cast<MarkFlagResultsMatcherNode>(N);
356 OS << "OPC_MarkFlagResults, " << CFR->getNumNodes() << ", ";
357 unsigned NumOperandBytes = 0;
358 for (unsigned i = 0, e = CFR->getNumNodes(); i != e; ++i)
359 NumOperandBytes += EmitVBRValue(CFR->getNode(i), OS);
360 OS << '\n';
361 return 2+NumOperandBytes;
362 }
Chris Lattner77f2e272010-02-21 06:03:07 +0000363 case MatcherNode::CompleteMatch: {
364 const CompleteMatchMatcherNode *CM = cast<CompleteMatchMatcherNode>(N);
365 OS << "OPC_CompleteMatch, " << CM->getNumResults() << ", ";
Chris Lattner5007e1e2010-02-23 00:59:59 +0000366 unsigned NumResultBytes = 0;
Chris Lattner77f2e272010-02-21 06:03:07 +0000367 for (unsigned i = 0, e = CM->getNumResults(); i != e; ++i)
Chris Lattner5007e1e2010-02-23 00:59:59 +0000368 NumResultBytes += EmitVBRValue(CM->getResult(i), OS);
Chris Lattner77f2e272010-02-21 06:03:07 +0000369 OS << '\n';
370 OS.PadToColumn(Indent*2) << "// Src: "
371 << *CM->getPattern().getSrcPattern() << '\n';
372 OS.PadToColumn(Indent*2) << "// Dst: "
373 << *CM->getPattern().getDstPattern() << '\n';
Chris Lattner5007e1e2010-02-23 00:59:59 +0000374 return 2 + NumResultBytes;
Chris Lattnerda272d12010-02-15 08:04:42 +0000375 }
Chris Lattner77f2e272010-02-21 06:03:07 +0000376 }
Chris Lattnerda272d12010-02-15 08:04:42 +0000377 assert(0 && "Unreachable");
378 return 0;
379}
380
Chris Lattnerbd8227f2010-02-18 02:53:41 +0000381/// EmitMatcherList - Emit the bytes for the specified matcher subtree.
Chris Lattnere02ea542010-02-16 06:52:01 +0000382unsigned MatcherTableEmitter::
Chris Lattner8fbad242010-02-21 07:16:41 +0000383EmitMatcherList(const MatcherNode *N, unsigned Indent, unsigned CurrentIdx,
Chris Lattner984e1882010-02-21 06:30:04 +0000384 formatted_raw_ostream &OS) {
Chris Lattnerda272d12010-02-15 08:04:42 +0000385 unsigned Size = 0;
Chris Lattner8ef9c792010-02-18 02:49:24 +0000386 while (N) {
Chris Lattner09b9f392010-02-24 19:17:12 +0000387 if (unsigned(N->getKind()) >= Histogram.size())
388 Histogram.resize(N->getKind()+1);
389 Histogram[N->getKind()]++;
390
Chris Lattnerda272d12010-02-15 08:04:42 +0000391 // Push is a special case since it is binary.
392 if (const PushMatcherNode *PMN = dyn_cast<PushMatcherNode>(N)) {
393 // We need to encode the child and the offset of the failure code before
394 // emitting either of them. Handle this by buffering the output into a
395 // string while we get the size.
396 SmallString<128> TmpBuf;
Chris Lattnerbd8227f2010-02-18 02:53:41 +0000397 unsigned NextSize;
Chris Lattnerda272d12010-02-15 08:04:42 +0000398 {
399 raw_svector_ostream OS(TmpBuf);
400 formatted_raw_ostream FOS(OS);
Chris Lattnerbd8227f2010-02-18 02:53:41 +0000401 NextSize = EmitMatcherList(cast<PushMatcherNode>(N)->getNext(),
Chris Lattner8fbad242010-02-21 07:16:41 +0000402 Indent+1, CurrentIdx+2, FOS);
Chris Lattnerda272d12010-02-15 08:04:42 +0000403 }
Chris Lattner3e22f2d2010-02-22 23:55:39 +0000404
405 // In the unlikely event that we have something too big to emit with a
406 // one byte offset, regenerate it with a two-byte one.
Chris Lattnerbd8227f2010-02-18 02:53:41 +0000407 if (NextSize > 255) {
Chris Lattner3e22f2d2010-02-22 23:55:39 +0000408 TmpBuf.clear();
409 raw_svector_ostream OS(TmpBuf);
410 formatted_raw_ostream FOS(OS);
411 NextSize = EmitMatcherList(cast<PushMatcherNode>(N)->getNext(),
412 Indent+1, CurrentIdx+3, FOS);
413 if (NextSize > 65535) {
414 errs() <<
415 "Tblgen internal error: can't handle pattern this complex yet\n";
416 exit(1);
417 }
Chris Lattnerda272d12010-02-15 08:04:42 +0000418 }
419
Chris Lattner8fbad242010-02-21 07:16:41 +0000420 OS << "/*" << CurrentIdx << "*/";
Chris Lattnerda272d12010-02-15 08:04:42 +0000421 OS.PadToColumn(Indent*2);
Chris Lattner3e22f2d2010-02-22 23:55:39 +0000422
423 if (NextSize < 256)
424 OS << "OPC_Push, " << NextSize << ",\n";
425 else
426 OS << "OPC_Push2, " << (NextSize&255) << ", " << (NextSize>>8) << ",\n";
Chris Lattnerda272d12010-02-15 08:04:42 +0000427 OS << TmpBuf.str();
428
Chris Lattner8fbad242010-02-21 07:16:41 +0000429 Size += 2+NextSize;
430 CurrentIdx += 2+NextSize;
Chris Lattnerda272d12010-02-15 08:04:42 +0000431 N = PMN->getFailure();
432 continue;
433 }
434
Chris Lattner8fbad242010-02-21 07:16:41 +0000435 OS << "/*" << CurrentIdx << "*/";
436 unsigned MatcherSize = EmitMatcher(N, Indent, OS);
437 Size += MatcherSize;
438 CurrentIdx += MatcherSize;
Chris Lattnerda272d12010-02-15 08:04:42 +0000439
Chris Lattnerbd8227f2010-02-18 02:53:41 +0000440 // If there are other nodes in this list, iterate to them, otherwise we're
Chris Lattnerda272d12010-02-15 08:04:42 +0000441 // done.
Chris Lattnerbd8227f2010-02-18 02:53:41 +0000442 N = N->getNext();
Chris Lattnerda272d12010-02-15 08:04:42 +0000443 }
Chris Lattner8ef9c792010-02-18 02:49:24 +0000444 return Size;
Chris Lattnerda272d12010-02-15 08:04:42 +0000445}
446
Chris Lattner984e1882010-02-21 06:30:04 +0000447void MatcherTableEmitter::EmitPredicateFunctions(formatted_raw_ostream &OS) {
Chris Lattnerb49985a2010-02-18 06:47:49 +0000448 // FIXME: Don't build off the DAGISelEmitter's predicates, emit them directly
449 // here into the case stmts.
450
Chris Lattnere609a512010-02-17 00:31:50 +0000451 // Emit pattern predicates.
Chris Lattner050a03d2010-02-16 07:21:10 +0000452 OS << "bool CheckPatternPredicate(unsigned PredNo) const {\n";
453 OS << " switch (PredNo) {\n";
454 OS << " default: assert(0 && \"Invalid predicate in table?\");\n";
455 for (unsigned i = 0, e = PatternPredicates.size(); i != e; ++i)
456 OS << " case " << i << ": return " << PatternPredicates[i] << ";\n";
457 OS << " }\n";
458 OS << "}\n\n";
459
Chris Lattnere609a512010-02-17 00:31:50 +0000460 // Emit Node predicates.
Chris Lattner050a03d2010-02-16 07:21:10 +0000461 OS << "bool CheckNodePredicate(SDNode *N, unsigned PredNo) const {\n";
462 OS << " switch (PredNo) {\n";
463 OS << " default: assert(0 && \"Invalid predicate in table?\");\n";
464 for (unsigned i = 0, e = NodePredicates.size(); i != e; ++i)
465 OS << " case " << i << ": return " << NodePredicates[i] << "(N);\n";
466 OS << " }\n";
467 OS << "}\n\n";
Chris Lattnere609a512010-02-17 00:31:50 +0000468
469 // Emit CompletePattern matchers.
Chris Lattner8e946be2010-02-21 03:22:59 +0000470 // FIXME: This should be const.
Chris Lattnere609a512010-02-17 00:31:50 +0000471 OS << "bool CheckComplexPattern(SDNode *Root, SDValue N,\n";
472 OS << " unsigned PatternNo, SmallVectorImpl<SDValue> &Result) {\n";
473 OS << " switch (PatternNo) {\n";
474 OS << " default: assert(0 && \"Invalid pattern # in table?\");\n";
475 for (unsigned i = 0, e = ComplexPatterns.size(); i != e; ++i) {
476 const ComplexPattern &P = *ComplexPatterns[i];
477 unsigned NumOps = P.getNumOperands();
Chris Lattner8e946be2010-02-21 03:22:59 +0000478
Chris Lattnere609a512010-02-17 00:31:50 +0000479 if (P.hasProperty(SDNPHasChain))
Chris Lattner8e946be2010-02-21 03:22:59 +0000480 ++NumOps; // Get the chained node too.
481
Chris Lattnere609a512010-02-17 00:31:50 +0000482 OS << " case " << i << ":\n";
483 OS << " Result.resize(Result.size()+" << NumOps << ");\n";
Chris Lattner8e946be2010-02-21 03:22:59 +0000484 OS << " return " << P.getSelectFunc();
485
486 // FIXME: Temporary hack until old isel dies.
487 if (P.hasProperty(SDNPHasChain))
488 OS << "XXX";
489
490 OS << "(Root, N";
Chris Lattnere609a512010-02-17 00:31:50 +0000491 for (unsigned i = 0; i != NumOps; ++i)
492 OS << ", Result[Result.size()-" << (NumOps-i) << ']';
493 OS << ");\n";
494 }
495 OS << " }\n";
496 OS << "}\n\n";
Chris Lattner8e946be2010-02-21 03:22:59 +0000497
498 // Emit SDNodeXForm handlers.
499 // FIXME: This should be const.
500 OS << "SDValue RunSDNodeXForm(SDValue V, unsigned XFormNo) {\n";
501 OS << " switch (XFormNo) {\n";
502 OS << " default: assert(0 && \"Invalid xform # in table?\");\n";
503
504 // FIXME: The node xform could take SDValue's instead of SDNode*'s.
505 for (unsigned i = 0, e = NodeXForms.size(); i != e; ++i)
506 OS << " case " << i << ": return Transform_" << NodeXForms[i]->getName()
507 << "(V.getNode());\n";
508 OS << " }\n";
509 OS << "}\n\n";
Chris Lattner050a03d2010-02-16 07:21:10 +0000510}
511
Chris Lattner09b9f392010-02-24 19:17:12 +0000512void MatcherTableEmitter::EmitHistogram(formatted_raw_ostream &OS) {
513 OS << " // Opcode Histogram:\n";
514 for (unsigned i = 0, e = Histogram.size(); i != e; ++i) {
515 OS << " // #";
516 switch ((MatcherNode::KindTy)i) {
517 case MatcherNode::Push: OS << "OPC_Push"; break;
518 case MatcherNode::RecordNode: OS << "OPC_RecordNode"; break;
519 case MatcherNode::RecordChild: OS << "OPC_RecordChild"; break;
520 case MatcherNode::RecordMemRef: OS << "OPC_RecordMemRef"; break;
521 case MatcherNode::CaptureFlagInput: OS << "OPC_CaptureFlagInput"; break;
522 case MatcherNode::MoveChild: OS << "OPC_MoveChild"; break;
523 case MatcherNode::MoveParent: OS << "OPC_MoveParent"; break;
524 case MatcherNode::CheckSame: OS << "OPC_CheckSame"; break;
525 case MatcherNode::CheckPatternPredicate:
526 OS << "OPC_CheckPatternPredicate"; break;
527 case MatcherNode::CheckPredicate: OS << "OPC_CheckPredicate"; break;
528 case MatcherNode::CheckOpcode: OS << "OPC_CheckOpcode"; break;
529 case MatcherNode::CheckMultiOpcode: OS << "OPC_CheckMultiOpcode"; break;
530 case MatcherNode::CheckType: OS << "OPC_CheckType"; break;
Chris Lattner23cfda72010-02-24 20:15:25 +0000531 case MatcherNode::CheckChildType: OS << "OPC_CheckChildType"; break;
Chris Lattner09b9f392010-02-24 19:17:12 +0000532 case MatcherNode::CheckInteger: OS << "OPC_CheckInteger"; break;
533 case MatcherNode::CheckCondCode: OS << "OPC_CheckCondCode"; break;
534 case MatcherNode::CheckValueType: OS << "OPC_CheckValueType"; break;
535 case MatcherNode::CheckComplexPat: OS << "OPC_CheckComplexPat"; break;
536 case MatcherNode::CheckAndImm: OS << "OPC_CheckAndImm"; break;
537 case MatcherNode::CheckOrImm: OS << "OPC_CheckOrImm"; break;
538 case MatcherNode::CheckFoldableChainNode:
539 OS << "OPC_CheckFoldableChainNode"; break;
540 case MatcherNode::CheckChainCompatible:
541 OS << "OPC_CheckChainCompatible"; break;
542 case MatcherNode::EmitInteger: OS << "OPC_EmitInteger"; break;
543 case MatcherNode::EmitStringInteger: OS << "OPC_EmitStringInteger"; break;
544 case MatcherNode::EmitRegister: OS << "OPC_EmitRegister"; break;
545 case MatcherNode::EmitConvertToTarget:
546 OS << "OPC_EmitConvertToTarget"; break;
547 case MatcherNode::EmitMergeInputChains:
548 OS << "OPC_EmitMergeInputChains"; break;
549 case MatcherNode::EmitCopyToReg: OS << "OPC_EmitCopyToReg"; break;
550 case MatcherNode::EmitNode: OS << "OPC_EmitNode"; break;
551 case MatcherNode::EmitNodeXForm: OS << "OPC_EmitNodeXForm"; break;
552 case MatcherNode::MarkFlagResults: OS << "OPC_MarkFlagResults"; break;
553 case MatcherNode::CompleteMatch: OS << "OPC_CompleteMatch"; break;
554 }
555
556 OS.PadToColumn(40) << " = " << Histogram[i] << '\n';
557 }
558 OS << '\n';
559}
560
Chris Lattner050a03d2010-02-16 07:21:10 +0000561
Chris Lattnerda272d12010-02-15 08:04:42 +0000562void llvm::EmitMatcherTable(const MatcherNode *Matcher, raw_ostream &O) {
563 formatted_raw_ostream OS(O);
564
565 OS << "// The main instruction selector code.\n";
Chris Lattnerc84edb72010-02-24 07:35:09 +0000566 OS << "SDNode *SelectCode(SDNode *N) {\n";
Chris Lattnerda272d12010-02-15 08:04:42 +0000567
Chris Lattner984e1882010-02-21 06:30:04 +0000568 MatcherTableEmitter MatcherEmitter;
Chris Lattnere02ea542010-02-16 06:52:01 +0000569
Chris Lattner8e946be2010-02-21 03:22:59 +0000570 OS << " // Opcodes are emitted as 2 bytes, TARGET_OPCODE handles this.\n";
571 OS << " #define TARGET_OPCODE(X) X & 255, unsigned(X) >> 8\n";
Chris Lattnerda272d12010-02-15 08:04:42 +0000572 OS << " static const unsigned char MatcherTable[] = {\n";
Chris Lattner8fbad242010-02-21 07:16:41 +0000573 unsigned TotalSize = MatcherEmitter.EmitMatcherList(Matcher, 5, 0, OS);
Chris Lattnerda272d12010-02-15 08:04:42 +0000574 OS << " 0\n }; // Total Array size is " << (TotalSize+1) << " bytes\n\n";
Chris Lattner09b9f392010-02-24 19:17:12 +0000575
576 MatcherEmitter.EmitHistogram(OS);
577
Chris Lattner8e946be2010-02-21 03:22:59 +0000578 OS << " #undef TARGET_OPCODE\n";
Chris Lattnere02ea542010-02-16 06:52:01 +0000579 OS << " return SelectCodeCommon(N, MatcherTable,sizeof(MatcherTable));\n}\n";
Chris Lattner050a03d2010-02-16 07:21:10 +0000580 OS << "\n";
581
582 // Next up, emit the function for node and pattern predicates:
Chris Lattner984e1882010-02-21 06:30:04 +0000583 MatcherEmitter.EmitPredicateFunctions(OS);
Chris Lattnerda272d12010-02-15 08:04:42 +0000584}