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Chris Lattnerc3aae252005-01-07 07:46:32 +00001//===-- SelectionDAG.cpp - Implement the SelectionDAG data structures -----===//
John Criswellb576c942003-10-20 19:43:21 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattner78ec3112003-08-11 14:57:33 +00009//
Chris Lattnerc3aae252005-01-07 07:46:32 +000010// This implements the SelectionDAG class.
Chris Lattner78ec3112003-08-11 14:57:33 +000011//
12//===----------------------------------------------------------------------===//
13
14#include "llvm/CodeGen/SelectionDAG.h"
Chris Lattnerc3aae252005-01-07 07:46:32 +000015#include "llvm/Constants.h"
16#include "llvm/GlobalValue.h"
17#include "llvm/Assembly/Writer.h"
18#include "llvm/CodeGen/MachineBasicBlock.h"
Reid Spencer954da372004-07-04 12:19:56 +000019#include <iostream>
Chris Lattner0e12e6e2005-01-07 21:09:16 +000020#include <set>
Chris Lattnerc3aae252005-01-07 07:46:32 +000021#include <cmath>
Chris Lattnere25738c2004-06-02 04:28:06 +000022using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000023
Chris Lattnerc3aae252005-01-07 07:46:32 +000024/// getSetCCSwappedOperands - Return the operation corresponding to (Y op X)
25/// when given the operation for (X op Y).
26ISD::CondCode ISD::getSetCCSwappedOperands(ISD::CondCode Operation) {
27 // To perform this operation, we just need to swap the L and G bits of the
28 // operation.
29 unsigned OldL = (Operation >> 2) & 1;
30 unsigned OldG = (Operation >> 1) & 1;
31 return ISD::CondCode((Operation & ~6) | // Keep the N, U, E bits
32 (OldL << 1) | // New G bit
33 (OldG << 2)); // New L bit.
34}
35
36/// getSetCCInverse - Return the operation corresponding to !(X op Y), where
37/// 'op' is a valid SetCC operation.
38ISD::CondCode ISD::getSetCCInverse(ISD::CondCode Op, bool isInteger) {
39 unsigned Operation = Op;
40 if (isInteger)
41 Operation ^= 7; // Flip L, G, E bits, but not U.
42 else
43 Operation ^= 15; // Flip all of the condition bits.
44 if (Operation > ISD::SETTRUE2)
45 Operation &= ~8; // Don't let N and U bits get set.
46 return ISD::CondCode(Operation);
47}
48
49
50/// isSignedOp - For an integer comparison, return 1 if the comparison is a
51/// signed operation and 2 if the result is an unsigned comparison. Return zero
52/// if the operation does not depend on the sign of the input (setne and seteq).
53static int isSignedOp(ISD::CondCode Opcode) {
54 switch (Opcode) {
55 default: assert(0 && "Illegal integer setcc operation!");
56 case ISD::SETEQ:
57 case ISD::SETNE: return 0;
58 case ISD::SETLT:
59 case ISD::SETLE:
60 case ISD::SETGT:
61 case ISD::SETGE: return 1;
62 case ISD::SETULT:
63 case ISD::SETULE:
64 case ISD::SETUGT:
65 case ISD::SETUGE: return 2;
66 }
67}
68
69/// getSetCCOrOperation - Return the result of a logical OR between different
70/// comparisons of identical values: ((X op1 Y) | (X op2 Y)). This function
71/// returns SETCC_INVALID if it is not possible to represent the resultant
72/// comparison.
73ISD::CondCode ISD::getSetCCOrOperation(ISD::CondCode Op1, ISD::CondCode Op2,
74 bool isInteger) {
75 if (isInteger && (isSignedOp(Op1) | isSignedOp(Op2)) == 3)
76 // Cannot fold a signed integer setcc with an unsigned integer setcc.
77 return ISD::SETCC_INVALID;
78
79 unsigned Op = Op1 | Op2; // Combine all of the condition bits.
80
81 // If the N and U bits get set then the resultant comparison DOES suddenly
82 // care about orderedness, and is true when ordered.
83 if (Op > ISD::SETTRUE2)
84 Op &= ~16; // Clear the N bit.
85 return ISD::CondCode(Op);
86}
87
88/// getSetCCAndOperation - Return the result of a logical AND between different
89/// comparisons of identical values: ((X op1 Y) & (X op2 Y)). This
90/// function returns zero if it is not possible to represent the resultant
91/// comparison.
92ISD::CondCode ISD::getSetCCAndOperation(ISD::CondCode Op1, ISD::CondCode Op2,
93 bool isInteger) {
94 if (isInteger && (isSignedOp(Op1) | isSignedOp(Op2)) == 3)
95 // Cannot fold a signed setcc with an unsigned setcc.
96 return ISD::SETCC_INVALID;
97
98 // Combine all of the condition bits.
99 return ISD::CondCode(Op1 & Op2);
100}
101
Chris Lattner0e12e6e2005-01-07 21:09:16 +0000102/// RemoveDeadNodes - This method deletes all unreachable nodes in the
103/// SelectionDAG, including nodes (like loads) that have uses of their token
104/// chain but no other uses and no side effect. If a node is passed in as an
105/// argument, it is used as the seed for node deletion.
106void SelectionDAG::RemoveDeadNodes(SDNode *N) {
107 std::set<SDNode*> AllNodeSet(AllNodes.begin(), AllNodes.end());
108
109 // Create a dummy node (which is not added to allnodes), that adds a reference
110 // to the root node, preventing it from being deleted.
111 SDNode *DummyNode = new SDNode(ISD::EntryToken, getRoot());
112
113 DeleteNodeIfDead(N, &AllNodeSet);
114
115 Restart:
116 unsigned NumNodes = AllNodeSet.size();
117 for (std::set<SDNode*>::iterator I = AllNodeSet.begin(), E = AllNodeSet.end();
118 I != E; ++I) {
119 // Try to delete this node.
120 DeleteNodeIfDead(*I, &AllNodeSet);
121
122 // If we actually deleted any nodes, do not use invalid iterators in
123 // AllNodeSet.
124 if (AllNodeSet.size() != NumNodes)
125 goto Restart;
126 }
127
128 // Restore AllNodes.
129 if (AllNodes.size() != NumNodes)
130 AllNodes.assign(AllNodeSet.begin(), AllNodeSet.end());
131
132 // If the root changed (e.g. it was a dead load, update the root).
133 setRoot(DummyNode->getOperand(0));
134
135 // Now that we are done with the dummy node, delete it.
136 DummyNode->getOperand(0).Val->removeUser(DummyNode);
137 delete DummyNode;
138}
139
140void SelectionDAG::DeleteNodeIfDead(SDNode *N, void *NodeSet) {
141 if (!N->use_empty())
142 return;
143
144 // Okay, we really are going to delete this node. First take this out of the
145 // appropriate CSE map.
146 switch (N->getOpcode()) {
147 case ISD::Constant:
148 Constants.erase(std::make_pair(cast<ConstantSDNode>(N)->getValue(),
149 N->getValueType(0)));
150 break;
151 case ISD::ConstantFP:
152 ConstantFPs.erase(std::make_pair(cast<ConstantFPSDNode>(N)->getValue(),
153 N->getValueType(0)));
154 break;
155 case ISD::GlobalAddress:
156 GlobalValues.erase(cast<GlobalAddressSDNode>(N)->getGlobal());
157 break;
158 case ISD::FrameIndex:
159 FrameIndices.erase(cast<FrameIndexSDNode>(N)->getIndex());
160 break;
161 case ISD::ConstantPool:
162 ConstantPoolIndices.erase(cast<ConstantPoolSDNode>(N)->getIndex());
163 break;
164 case ISD::BasicBlock:
165 BBNodes.erase(cast<BasicBlockSDNode>(N)->getBasicBlock());
166 break;
167 case ISD::ExternalSymbol:
168 ExternalSymbols.erase(cast<ExternalSymbolSDNode>(N)->getSymbol());
169 break;
170
171 case ISD::LOAD:
172 Loads.erase(std::make_pair(N->getOperand(1),
173 std::make_pair(N->getOperand(0),
174 N->getValueType(0))));
175 break;
176 case ISD::SETCC:
177 SetCCs.erase(std::make_pair(std::make_pair(N->getOperand(0),
178 N->getOperand(1)),
179 cast<SetCCSDNode>(N)->getCondition()));
180 break;
181 default:
182 if (N->getNumOperands() == 1)
183 UnaryOps.erase(std::make_pair(N->getOpcode(),
184 std::make_pair(N->getOperand(0),
185 N->getValueType(0))));
186 else if (N->getNumOperands() == 2)
187 BinaryOps.erase(std::make_pair(N->getOpcode(),
188 std::make_pair(N->getOperand(0),
189 N->getOperand(1))));
190 break;
191 }
192
193 // Next, brutally remove the operand list.
Chris Lattner0e12e6e2005-01-07 21:09:16 +0000194 while (!N->Operands.empty()) {
Chris Lattner7c68ec62005-01-07 23:32:00 +0000195 SDNode *O = N->Operands.back().Val;
Chris Lattner0e12e6e2005-01-07 21:09:16 +0000196 N->Operands.pop_back();
Chris Lattner7c68ec62005-01-07 23:32:00 +0000197 O->removeUser(N);
198
199 // Now that we removed this operand, see if there are no uses of it left.
200 DeleteNodeIfDead(O, NodeSet);
Chris Lattner0e12e6e2005-01-07 21:09:16 +0000201 }
202
203 // Remove the node from the nodes set and delete it.
204 std::set<SDNode*> &AllNodeSet = *(std::set<SDNode*>*)NodeSet;
205 AllNodeSet.erase(N);
Chris Lattner0e12e6e2005-01-07 21:09:16 +0000206
207 // Now that the node is gone, check to see if any of the operands of this node
208 // are dead now.
Chris Lattner7c68ec62005-01-07 23:32:00 +0000209 delete N;
Chris Lattner0e12e6e2005-01-07 21:09:16 +0000210}
211
212
Chris Lattner78ec3112003-08-11 14:57:33 +0000213SelectionDAG::~SelectionDAG() {
214 for (unsigned i = 0, e = AllNodes.size(); i != e; ++i)
215 delete AllNodes[i];
216}
217
Chris Lattnerc3aae252005-01-07 07:46:32 +0000218SDOperand SelectionDAG::getConstant(uint64_t Val, MVT::ValueType VT) {
219 assert(MVT::isInteger(VT) && "Cannot create FP integer constant!");
220 // Mask out any bits that are not valid for this constant.
Chris Lattner623f70d2005-01-08 06:24:30 +0000221 if (VT != MVT::i64)
222 Val &= ((uint64_t)1 << MVT::getSizeInBits(VT)) - 1;
223
Chris Lattnerc3aae252005-01-07 07:46:32 +0000224 SDNode *&N = Constants[std::make_pair(Val, VT)];
225 if (N) return SDOperand(N, 0);
226 N = new ConstantSDNode(Val, VT);
227 AllNodes.push_back(N);
228 return SDOperand(N, 0);
Chris Lattner78ec3112003-08-11 14:57:33 +0000229}
230
Chris Lattnerc3aae252005-01-07 07:46:32 +0000231SDOperand SelectionDAG::getConstantFP(double Val, MVT::ValueType VT) {
232 assert(MVT::isFloatingPoint(VT) && "Cannot create integer FP constant!");
233 if (VT == MVT::f32)
234 Val = (float)Val; // Mask out extra precision.
235
236 SDNode *&N = ConstantFPs[std::make_pair(Val, VT)];
237 if (N) return SDOperand(N, 0);
238 N = new ConstantFPSDNode(Val, VT);
239 AllNodes.push_back(N);
240 return SDOperand(N, 0);
241}
242
243
244
245SDOperand SelectionDAG::getGlobalAddress(const GlobalValue *GV,
246 MVT::ValueType VT) {
247 SDNode *&N = GlobalValues[GV];
248 if (N) return SDOperand(N, 0);
249 N = new GlobalAddressSDNode(GV,VT);
250 AllNodes.push_back(N);
251 return SDOperand(N, 0);
252}
253
254SDOperand SelectionDAG::getFrameIndex(int FI, MVT::ValueType VT) {
255 SDNode *&N = FrameIndices[FI];
256 if (N) return SDOperand(N, 0);
257 N = new FrameIndexSDNode(FI, VT);
258 AllNodes.push_back(N);
259 return SDOperand(N, 0);
260}
261
262SDOperand SelectionDAG::getConstantPool(unsigned CPIdx, MVT::ValueType VT) {
263 SDNode *N = ConstantPoolIndices[CPIdx];
264 if (N) return SDOperand(N, 0);
265 N = new ConstantPoolSDNode(CPIdx, VT);
266 AllNodes.push_back(N);
267 return SDOperand(N, 0);
268}
269
270SDOperand SelectionDAG::getBasicBlock(MachineBasicBlock *MBB) {
271 SDNode *&N = BBNodes[MBB];
272 if (N) return SDOperand(N, 0);
273 N = new BasicBlockSDNode(MBB);
274 AllNodes.push_back(N);
275 return SDOperand(N, 0);
276}
277
278SDOperand SelectionDAG::getExternalSymbol(const char *Sym, MVT::ValueType VT) {
279 SDNode *&N = ExternalSymbols[Sym];
280 if (N) return SDOperand(N, 0);
281 N = new ExternalSymbolSDNode(Sym, VT);
282 AllNodes.push_back(N);
283 return SDOperand(N, 0);
284}
285
286SDOperand SelectionDAG::getSetCC(ISD::CondCode Cond, SDOperand N1,
287 SDOperand N2) {
288 // These setcc operations always fold.
289 switch (Cond) {
290 default: break;
291 case ISD::SETFALSE:
292 case ISD::SETFALSE2: return getConstant(0, MVT::i1);
293 case ISD::SETTRUE:
294 case ISD::SETTRUE2: return getConstant(1, MVT::i1);
295 }
296
297 if (ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1.Val))
298 if (ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(N2.Val)) {
299 uint64_t C1 = N1C->getValue(), C2 = N2C->getValue();
300
301 // Sign extend the operands if required
302 if (ISD::isSignedIntSetCC(Cond)) {
303 C1 = N1C->getSignExtended();
304 C2 = N2C->getSignExtended();
305 }
306
307 switch (Cond) {
308 default: assert(0 && "Unknown integer setcc!");
309 case ISD::SETEQ: return getConstant(C1 == C2, MVT::i1);
310 case ISD::SETNE: return getConstant(C1 != C2, MVT::i1);
311 case ISD::SETULT: return getConstant(C1 < C2, MVT::i1);
312 case ISD::SETUGT: return getConstant(C1 > C2, MVT::i1);
313 case ISD::SETULE: return getConstant(C1 <= C2, MVT::i1);
314 case ISD::SETUGE: return getConstant(C1 >= C2, MVT::i1);
315 case ISD::SETLT: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
316 case ISD::SETGT: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
317 case ISD::SETLE: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
318 case ISD::SETGE: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
319 }
320 } else {
321 // Ensure that the constant occurs on the RHS.
322 Cond = ISD::getSetCCSwappedOperands(Cond);
323 std::swap(N1, N2);
324 }
325
326 if (ConstantFPSDNode *N1C = dyn_cast<ConstantFPSDNode>(N1.Val))
327 if (ConstantFPSDNode *N2C = dyn_cast<ConstantFPSDNode>(N2.Val)) {
328 double C1 = N1C->getValue(), C2 = N2C->getValue();
329
330 switch (Cond) {
331 default: break; // FIXME: Implement the rest of these!
332 case ISD::SETEQ: return getConstant(C1 == C2, MVT::i1);
333 case ISD::SETNE: return getConstant(C1 != C2, MVT::i1);
334 case ISD::SETLT: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
335 case ISD::SETGT: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
336 case ISD::SETLE: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
337 case ISD::SETGE: return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
338 }
339 } else {
340 // Ensure that the constant occurs on the RHS.
341 Cond = ISD::getSetCCSwappedOperands(Cond);
342 std::swap(N1, N2);
343 }
344
345 if (N1 == N2) {
346 // We can always fold X == Y for integer setcc's.
347 if (MVT::isInteger(N1.getValueType()))
348 return getConstant(ISD::isTrueWhenEqual(Cond), MVT::i1);
349 unsigned UOF = ISD::getUnorderedFlavor(Cond);
350 if (UOF == 2) // FP operators that are undefined on NaNs.
351 return getConstant(ISD::isTrueWhenEqual(Cond), MVT::i1);
352 if (UOF == ISD::isTrueWhenEqual(Cond))
353 return getConstant(UOF, MVT::i1);
354 // Otherwise, we can't fold it. However, we can simplify it to SETUO/SETO
355 // if it is not already.
356 Cond = UOF == 0 ? ISD::SETUO : ISD::SETO;
357 }
358
359
360 SetCCSDNode *&N = SetCCs[std::make_pair(std::make_pair(N1, N2), Cond)];
361 if (N) return SDOperand(N, 0);
362 N = new SetCCSDNode(Cond, N1, N2);
363 AllNodes.push_back(N);
364 return SDOperand(N, 0);
365}
366
367
368
369/// getNode - Gets or creates the specified node.
Chris Lattner78ec3112003-08-11 14:57:33 +0000370///
Chris Lattnerc3aae252005-01-07 07:46:32 +0000371SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT) {
372 SDNode *N = new SDNode(Opcode, VT);
373 AllNodes.push_back(N);
374 return SDOperand(N, 0);
375}
376
377static const Type *getTypeFor(MVT::ValueType VT) {
378 switch (VT) {
379 default: assert(0 && "Unknown MVT!");
380 case MVT::i1: return Type::BoolTy;
381 case MVT::i8: return Type::UByteTy;
382 case MVT::i16: return Type::UShortTy;
383 case MVT::i32: return Type::UIntTy;
384 case MVT::i64: return Type::ULongTy;
385 case MVT::f32: return Type::FloatTy;
386 case MVT::f64: return Type::DoubleTy;
Chris Lattner78ec3112003-08-11 14:57:33 +0000387 }
388}
389
Chris Lattnerc3aae252005-01-07 07:46:32 +0000390SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
391 SDOperand Operand) {
392 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Operand.Val)) {
393 uint64_t Val = C->getValue();
394 switch (Opcode) {
395 default: break;
396 case ISD::SIGN_EXTEND: return getConstant(C->getSignExtended(), VT);
397 case ISD::ZERO_EXTEND: return getConstant(Val, VT);
398 case ISD::TRUNCATE: return getConstant(Val, VT);
Chris Lattnerae0aacb2005-01-08 08:08:56 +0000399 case ISD::SINT_TO_FP: return getConstantFP(C->getSignExtended(), VT);
400 case ISD::UINT_TO_FP: return getConstantFP(C->getValue(), VT);
Chris Lattnerc3aae252005-01-07 07:46:32 +0000401 }
402 }
403
404 if (ConstantFPSDNode *C = dyn_cast<ConstantFPSDNode>(Operand.Val))
405 switch (Opcode) {
406 case ISD::FP_ROUND:
407 case ISD::FP_EXTEND:
408 return getConstantFP(C->getValue(), VT);
Chris Lattnerae0aacb2005-01-08 08:08:56 +0000409 case ISD::FP_TO_SINT:
410 return getConstant((int64_t)C->getValue(), VT);
411 case ISD::FP_TO_UINT:
412 return getConstant((uint64_t)C->getValue(), VT);
Chris Lattnerc3aae252005-01-07 07:46:32 +0000413 }
414
415 unsigned OpOpcode = Operand.Val->getOpcode();
416 switch (Opcode) {
417 case ISD::SIGN_EXTEND:
418 if (Operand.getValueType() == VT) return Operand; // noop extension
419 if (OpOpcode == ISD::SIGN_EXTEND || OpOpcode == ISD::ZERO_EXTEND)
420 return getNode(OpOpcode, VT, Operand.Val->getOperand(0));
421 break;
422 case ISD::ZERO_EXTEND:
423 if (Operand.getValueType() == VT) return Operand; // noop extension
424 if (OpOpcode == ISD::SIGN_EXTEND || OpOpcode == ISD::ZERO_EXTEND)
425 return getNode(OpOpcode, VT, Operand.Val->getOperand(0));
426 break;
427 case ISD::TRUNCATE:
428 if (Operand.getValueType() == VT) return Operand; // noop truncate
429 if (OpOpcode == ISD::TRUNCATE)
430 return getNode(ISD::TRUNCATE, VT, Operand.Val->getOperand(0));
Chris Lattnerfd8c39b2005-01-07 21:56:24 +0000431 else if (OpOpcode == ISD::ZERO_EXTEND || OpOpcode == ISD::SIGN_EXTEND) {
432 // If the source is smaller than the dest, we still need an extend.
433 if (Operand.Val->getOperand(0).getValueType() < VT)
434 return getNode(OpOpcode, VT, Operand.Val->getOperand(0));
435 else if (Operand.Val->getOperand(0).getValueType() > VT)
436 return getNode(ISD::TRUNCATE, VT, Operand.Val->getOperand(0));
437 else
438 return Operand.Val->getOperand(0);
439 }
Chris Lattnerc3aae252005-01-07 07:46:32 +0000440 break;
441 }
442
443 SDNode *&N = UnaryOps[std::make_pair(Opcode, std::make_pair(Operand, VT))];
444 if (N) return SDOperand(N, 0);
445 N = new SDNode(Opcode, Operand);
446 N->setValueTypes(VT);
447 AllNodes.push_back(N);
448 return SDOperand(N, 0);
Chris Lattner78ec3112003-08-11 14:57:33 +0000449}
450
Chris Lattnerc3aae252005-01-07 07:46:32 +0000451static bool isCommutativeBinOp(unsigned Opcode) {
452 switch (Opcode) {
453 case ISD::ADD:
454 case ISD::MUL:
455 case ISD::AND:
456 case ISD::OR:
457 case ISD::XOR: return true;
458 default: return false; // FIXME: Need commutative info for user ops!
Chris Lattner78ec3112003-08-11 14:57:33 +0000459 }
Chris Lattner78ec3112003-08-11 14:57:33 +0000460}
Chris Lattnerc3aae252005-01-07 07:46:32 +0000461
462static bool isAssociativeBinOp(unsigned Opcode) {
463 switch (Opcode) {
464 case ISD::ADD:
465 case ISD::MUL:
466 case ISD::AND:
467 case ISD::OR:
468 case ISD::XOR: return true;
469 default: return false; // FIXME: Need associative info for user ops!
470 }
471}
472
473static unsigned ExactLog2(uint64_t Val) {
474 unsigned Count = 0;
475 while (Val != 1) {
476 Val >>= 1;
477 ++Count;
478 }
479 return Count;
480}
481
482// isInvertibleForFree - Return true if there is no cost to emitting the logical
483// inverse of this node.
484static bool isInvertibleForFree(SDOperand N) {
485 if (isa<ConstantSDNode>(N.Val)) return true;
486 if (isa<SetCCSDNode>(N.Val) && N.Val->hasOneUse())
487 return true;
488 return false;
489}
490
491
492SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
493 SDOperand N1, SDOperand N2) {
494 ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1.Val);
495 ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(N2.Val);
496 if (N1C) {
497 if (N2C) {
498 uint64_t C1 = N1C->getValue(), C2 = N2C->getValue();
499 switch (Opcode) {
500 case ISD::ADD: return getConstant(C1 + C2, VT);
501 case ISD::SUB: return getConstant(C1 - C2, VT);
502 case ISD::MUL: return getConstant(C1 * C2, VT);
503 case ISD::UDIV:
504 if (C2) return getConstant(C1 / C2, VT);
505 break;
506 case ISD::UREM :
507 if (C2) return getConstant(C1 % C2, VT);
508 break;
509 case ISD::SDIV :
510 if (C2) return getConstant(N1C->getSignExtended() /
511 N2C->getSignExtended(), VT);
512 break;
513 case ISD::SREM :
514 if (C2) return getConstant(N1C->getSignExtended() %
515 N2C->getSignExtended(), VT);
516 break;
517 case ISD::AND : return getConstant(C1 & C2, VT);
518 case ISD::OR : return getConstant(C1 | C2, VT);
519 case ISD::XOR : return getConstant(C1 ^ C2, VT);
520 default: break;
521 }
522
523 } else { // Cannonicalize constant to RHS if commutative
524 if (isCommutativeBinOp(Opcode)) {
525 std::swap(N1C, N2C);
526 std::swap(N1, N2);
527 }
528 }
529 }
530
531 if (N2C) {
532 uint64_t C2 = N2C->getValue();
533
534 switch (Opcode) {
535 case ISD::ADD:
536 if (!C2) return N1; // add X, 0 -> X
537 break;
538 case ISD::SUB:
539 if (!C2) return N1; // sub X, 0 -> X
540 break;
541 case ISD::MUL:
542 if (!C2) return N2; // mul X, 0 -> 0
543 if (N2C->isAllOnesValue()) // mul X, -1 -> 0-X
544 return getNode(ISD::SUB, VT, getConstant(0, VT), N1);
545
546 // FIXME: This should only be done if the target supports shift
547 // operations.
548 if ((C2 & C2-1) == 0) {
549 SDOperand ShAmt = getConstant(ExactLog2(C2), MVT::i8);
550 return getNode(ISD::SHL, VT, N1, ShAmt);
551 }
552 break;
553
554 case ISD::UDIV:
555 // FIXME: This should only be done if the target supports shift
556 // operations.
557 if ((C2 & C2-1) == 0 && C2) {
558 SDOperand ShAmt = getConstant(ExactLog2(C2), MVT::i8);
559 return getNode(ISD::SRL, VT, N1, ShAmt);
560 }
561 break;
562
563 case ISD::AND:
564 if (!C2) return N2; // X and 0 -> 0
565 if (N2C->isAllOnesValue())
566 return N1; // X and -1 -> X
567 break;
568 case ISD::OR:
569 if (!C2)return N1; // X or 0 -> X
570 if (N2C->isAllOnesValue())
571 return N2; // X or -1 -> -1
572 break;
573 case ISD::XOR:
574 if (!C2) return N1; // X xor 0 -> X
575 if (N2C->isAllOnesValue()) {
576 if (SetCCSDNode *SetCC = dyn_cast<SetCCSDNode>(N1.Val)){
577 // !(X op Y) -> (X !op Y)
578 bool isInteger = MVT::isInteger(SetCC->getOperand(0).getValueType());
579 return getSetCC(ISD::getSetCCInverse(SetCC->getCondition(),isInteger),
580 SetCC->getOperand(0), SetCC->getOperand(1));
581 } else if (N1.getOpcode() == ISD::AND || N1.getOpcode() == ISD::OR) {
582 SDNode *Op = N1.Val;
583 // !(X or Y) -> (!X and !Y) iff X or Y are freely invertible
584 // !(X and Y) -> (!X or !Y) iff X or Y are freely invertible
585 SDOperand LHS = Op->getOperand(0), RHS = Op->getOperand(1);
586 if (isInvertibleForFree(RHS) || isInvertibleForFree(LHS)) {
587 LHS = getNode(ISD::XOR, VT, LHS, N2); // RHS = ~LHS
588 RHS = getNode(ISD::XOR, VT, RHS, N2); // RHS = ~RHS
589 if (Op->getOpcode() == ISD::AND)
590 return getNode(ISD::OR, VT, LHS, RHS);
591 return getNode(ISD::AND, VT, LHS, RHS);
592 }
593 }
594 // X xor -1 -> not(x) ?
595 }
596 break;
597 }
598
599 // Reassociate ((X op C1) op C2) if possible.
600 if (N1.getOpcode() == Opcode && isAssociativeBinOp(Opcode))
601 if (ConstantSDNode *N3C = dyn_cast<ConstantSDNode>(N1.Val->getOperand(1)))
Chris Lattner4287d5e2005-01-07 22:44:09 +0000602 return getNode(Opcode, VT, N1.Val->getOperand(0),
Chris Lattnerc3aae252005-01-07 07:46:32 +0000603 getNode(Opcode, VT, N2, N1.Val->getOperand(1)));
604 }
605
606 ConstantFPSDNode *N1CFP = dyn_cast<ConstantFPSDNode>(N1.Val);
607 ConstantFPSDNode *N2CFP = dyn_cast<ConstantFPSDNode>(N2.Val);
608 if (N1CFP)
609 if (N2CFP) {
610 double C1 = N1CFP->getValue(), C2 = N2CFP->getValue();
611 switch (Opcode) {
612 case ISD::ADD: return getConstantFP(C1 + C2, VT);
613 case ISD::SUB: return getConstantFP(C1 - C2, VT);
614 case ISD::MUL: return getConstantFP(C1 * C2, VT);
615 case ISD::SDIV:
616 if (C2) return getConstantFP(C1 / C2, VT);
617 break;
618 case ISD::SREM :
619 if (C2) return getConstantFP(fmod(C1, C2), VT);
620 break;
621 default: break;
622 }
623
624 } else { // Cannonicalize constant to RHS if commutative
625 if (isCommutativeBinOp(Opcode)) {
626 std::swap(N1CFP, N2CFP);
627 std::swap(N1, N2);
628 }
629 }
630
631 // Finally, fold operations that do not require constants.
632 switch (Opcode) {
633 case ISD::AND:
634 case ISD::OR:
635 if (SetCCSDNode *LHS = dyn_cast<SetCCSDNode>(N1.Val))
636 if (SetCCSDNode *RHS = dyn_cast<SetCCSDNode>(N2.Val)) {
637 SDOperand LL = LHS->getOperand(0), RL = RHS->getOperand(0);
638 SDOperand LR = LHS->getOperand(1), RR = RHS->getOperand(1);
639 ISD::CondCode Op2 = RHS->getCondition();
640
641 // (X op1 Y) | (Y op2 X) -> (X op1 Y) | (X swapop2 Y)
642 if (LL == RR && LR == RL) {
643 Op2 = ISD::getSetCCSwappedOperands(Op2);
644 goto MatchedBackwards;
645 }
646
647 if (LL == RL && LR == RR) {
648 MatchedBackwards:
649 ISD::CondCode Result;
650 bool isInteger = MVT::isInteger(LL.getValueType());
651 if (Opcode == ISD::OR)
652 Result = ISD::getSetCCOrOperation(LHS->getCondition(), Op2,
653 isInteger);
654 else
655 Result = ISD::getSetCCAndOperation(LHS->getCondition(), Op2,
656 isInteger);
657 if (Result != ISD::SETCC_INVALID)
658 return getSetCC(Result, LL, LR);
659 }
660 }
661 break;
662 case ISD::XOR:
663 if (N1 == N2) return getConstant(0, VT); // xor X, Y -> 0
664 break;
665 }
666
667 SDNode *&N = BinaryOps[std::make_pair(Opcode, std::make_pair(N1, N2))];
668 if (N) return SDOperand(N, 0);
669 N = new SDNode(Opcode, N1, N2);
670 N->setValueTypes(VT);
671
672 AllNodes.push_back(N);
673 return SDOperand(N, 0);
674}
675
676SDOperand SelectionDAG::getLoad(MVT::ValueType VT,
677 SDOperand Chain, SDOperand Ptr) {
678 SDNode *&N = Loads[std::make_pair(Ptr, std::make_pair(Chain, VT))];
679 if (N) return SDOperand(N, 0);
680 N = new SDNode(ISD::LOAD, Chain, Ptr);
681
682 // Loads have a token chain.
683 N->setValueTypes(VT, MVT::Other);
684 AllNodes.push_back(N);
685 return SDOperand(N, 0);
686}
687
688
689SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
690 SDOperand N1, SDOperand N2, SDOperand N3) {
691 // Perform various simplifications.
692 ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1.Val);
693 ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(N2.Val);
694 ConstantSDNode *N3C = dyn_cast<ConstantSDNode>(N3.Val);
695 switch (Opcode) {
696 case ISD::SELECT:
697 if (N1C)
698 if (N1C->getValue())
699 return N2; // select true, X, Y -> X
700 else
701 return N3; // select false, X, Y -> Y
702
703 if (N2 == N3) return N2; // select C, X, X -> X
704
705 if (VT == MVT::i1) { // Boolean SELECT
706 if (N2C) {
707 if (N3C) {
708 if (N2C->getValue()) // select C, 1, 0 -> C
709 return N1;
710 return getNode(ISD::XOR, VT, N1, N3); // select C, 0, 1 -> ~C
711 }
712
713 if (N2C->getValue()) // select C, 1, X -> C | X
714 return getNode(ISD::OR, VT, N1, N3);
715 else // select C, 0, X -> ~C & X
716 return getNode(ISD::AND, VT,
717 getNode(ISD::XOR, N1.getValueType(), N1,
718 getConstant(1, N1.getValueType())), N3);
719 } else if (N3C) {
720 if (N3C->getValue()) // select C, X, 1 -> ~C | X
721 return getNode(ISD::OR, VT,
722 getNode(ISD::XOR, N1.getValueType(), N1,
723 getConstant(1, N1.getValueType())), N2);
724 else // select C, X, 0 -> C & X
725 return getNode(ISD::AND, VT, N1, N2);
726 }
727 }
728
729 break;
Chris Lattner5351e9b2005-01-07 22:49:57 +0000730 case ISD::BRCOND:
731 if (N2C)
732 if (N2C->getValue()) // Unconditional branch
733 return getNode(ISD::BR, MVT::Other, N1, N3);
734 else
735 return N1; // Never-taken branch
Chris Lattner7c68ec62005-01-07 23:32:00 +0000736 break;
Chris Lattnerc3aae252005-01-07 07:46:32 +0000737 }
738
739 SDNode *N = new SDNode(Opcode, N1, N2, N3);
740 switch (Opcode) {
741 default:
742 N->setValueTypes(VT);
743 break;
744 case ISD::DYNAMIC_STACKALLOC: // DYNAMIC_STACKALLOC produces pointer and chain
745 N->setValueTypes(VT, MVT::Other);
746 break;
747 }
748
749 // FIXME: memoize NODES
750 AllNodes.push_back(N);
751 return SDOperand(N, 0);
752}
753
754SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
755 std::vector<SDOperand> &Children) {
756 switch (Children.size()) {
757 case 0: return getNode(Opcode, VT);
758 case 1: return getNode(Opcode, VT, Children[0]);
759 case 2: return getNode(Opcode, VT, Children[0], Children[1]);
760 case 3: return getNode(Opcode, VT, Children[0], Children[1], Children[2]);
761 default:
762 // FIXME: MEMOIZE!!
763 SDNode *N = new SDNode(Opcode, Children);
764 N->setValueTypes(VT);
765 AllNodes.push_back(N);
766 return SDOperand(N, 0);
767 }
768}
769
770
771
772void SDNode::dump() const {
773 std::cerr << (void*)this << ": ";
774
775 for (unsigned i = 0, e = getNumValues(); i != e; ++i) {
776 if (i) std::cerr << ",";
777 switch (getValueType(i)) {
778 default: assert(0 && "Unknown value type!");
779 case MVT::i1: std::cerr << "i1"; break;
780 case MVT::i8: std::cerr << "i8"; break;
781 case MVT::i16: std::cerr << "i16"; break;
782 case MVT::i32: std::cerr << "i32"; break;
783 case MVT::i64: std::cerr << "i64"; break;
784 case MVT::f32: std::cerr << "f32"; break;
785 case MVT::f64: std::cerr << "f64"; break;
786 case MVT::Other: std::cerr << "ch"; break;
787 }
788 }
789 std::cerr << " = ";
790
791 switch (getOpcode()) {
792 default: std::cerr << "<<Unknown>>"; break;
793 case ISD::EntryToken: std::cerr << "EntryToken"; break;
794 case ISD::Constant: std::cerr << "Constant"; break;
795 case ISD::ConstantFP: std::cerr << "ConstantFP"; break;
796 case ISD::GlobalAddress: std::cerr << "GlobalAddress"; break;
797 case ISD::FrameIndex: std::cerr << "FrameIndex"; break;
798 case ISD::BasicBlock: std::cerr << "BasicBlock"; break;
799 case ISD::ExternalSymbol: std::cerr << "ExternalSymbol"; break;
800 case ISD::ConstantPool: std::cerr << "ConstantPoolIndex"; break;
801 case ISD::CopyToReg: std::cerr << "CopyToReg"; break;
802 case ISD::CopyFromReg: std::cerr << "CopyFromReg"; break;
803
804 case ISD::ADD: std::cerr << "add"; break;
805 case ISD::SUB: std::cerr << "sub"; break;
806 case ISD::MUL: std::cerr << "mul"; break;
807 case ISD::SDIV: std::cerr << "sdiv"; break;
808 case ISD::UDIV: std::cerr << "udiv"; break;
809 case ISD::SREM: std::cerr << "srem"; break;
810 case ISD::UREM: std::cerr << "urem"; break;
811 case ISD::AND: std::cerr << "and"; break;
812 case ISD::OR: std::cerr << "or"; break;
813 case ISD::XOR: std::cerr << "xor"; break;
814 case ISD::SHL: std::cerr << "shl"; break;
815 case ISD::SRA: std::cerr << "sra"; break;
816 case ISD::SRL: std::cerr << "srl"; break;
817
818 case ISD::SETCC: std::cerr << "setcc"; break;
819 case ISD::SELECT: std::cerr << "select"; break;
820 case ISD::ADDC: std::cerr << "addc"; break;
821 case ISD::SUBB: std::cerr << "subb"; break;
822
823 // Conversion operators.
824 case ISD::SIGN_EXTEND: std::cerr << "sign_extend"; break;
825 case ISD::ZERO_EXTEND: std::cerr << "zero_extend"; break;
826 case ISD::TRUNCATE: std::cerr << "truncate"; break;
827 case ISD::FP_ROUND: std::cerr << "fp_round"; break;
828 case ISD::FP_EXTEND: std::cerr << "fp_extend"; break;
829
Chris Lattnerae0aacb2005-01-08 08:08:56 +0000830 case ISD::SINT_TO_FP: std::cerr << "sint_to_fp"; break;
831 case ISD::UINT_TO_FP: std::cerr << "uint_to_fp"; break;
832 case ISD::FP_TO_SINT: std::cerr << "fp_to_sint"; break;
833 case ISD::FP_TO_UINT: std::cerr << "fp_to_uint"; break;
834
Chris Lattnerc3aae252005-01-07 07:46:32 +0000835 // Control flow instructions
836 case ISD::BR: std::cerr << "br"; break;
837 case ISD::BRCOND: std::cerr << "brcond"; break;
838 case ISD::RET: std::cerr << "ret"; break;
839 case ISD::CALL: std::cerr << "call"; break;
840 case ISD::ADJCALLSTACKDOWN: std::cerr << "adjcallstackdown"; break;
841 case ISD::ADJCALLSTACKUP: std::cerr << "adjcallstackup"; break;
842
843 // Other operators
844 case ISD::LOAD: std::cerr << "load"; break;
845 case ISD::STORE: std::cerr << "store"; break;
846 case ISD::DYNAMIC_STACKALLOC: std::cerr << "dynamic_stackalloc"; break;
847 case ISD::EXTRACT_ELEMENT: std::cerr << "extract_element"; break;
848 case ISD::BUILD_PAIR: std::cerr << "build_pair"; break;
849 }
850
851 std::cerr << " ";
852 for (unsigned i = 0, e = getNumOperands(); i != e; ++i) {
853 if (i) std::cerr << ", ";
854 std::cerr << (void*)getOperand(i).Val;
855 if (unsigned RN = getOperand(i).ResNo)
856 std::cerr << ":" << RN;
857 }
858
859 if (const ConstantSDNode *CSDN = dyn_cast<ConstantSDNode>(this)) {
860 std::cerr << "<" << CSDN->getValue() << ">";
861 } else if (const ConstantFPSDNode *CSDN = dyn_cast<ConstantFPSDNode>(this)) {
862 std::cerr << "<" << CSDN->getValue() << ">";
863 } else if (const GlobalAddressSDNode *GADN =
864 dyn_cast<GlobalAddressSDNode>(this)) {
865 std::cerr << "<";
866 WriteAsOperand(std::cerr, GADN->getGlobal()) << ">";
867 } else if (const FrameIndexSDNode *FIDN =
868 dyn_cast<FrameIndexSDNode>(this)) {
869 std::cerr << "<" << FIDN->getIndex() << ">";
870 } else if (const ConstantPoolSDNode *CP = dyn_cast<ConstantPoolSDNode>(this)){
871 std::cerr << "<" << CP->getIndex() << ">";
872 } else if (const BasicBlockSDNode *BBDN =
873 dyn_cast<BasicBlockSDNode>(this)) {
874 std::cerr << "<";
875 const Value *LBB = (const Value*)BBDN->getBasicBlock()->getBasicBlock();
876 if (LBB)
877 std::cerr << LBB->getName() << " ";
878 std::cerr << (const void*)BBDN->getBasicBlock() << ">";
879 } else if (const CopyRegSDNode *C2V = dyn_cast<CopyRegSDNode>(this)) {
880 std::cerr << "<reg #" << C2V->getReg() << ">";
881 } else if (const ExternalSymbolSDNode *ES =
882 dyn_cast<ExternalSymbolSDNode>(this)) {
883 std::cerr << "'" << ES->getSymbol() << "'";
884 } else if (const SetCCSDNode *SetCC = dyn_cast<SetCCSDNode>(this)) {
885 std::cerr << " - condition = ";
886 switch (SetCC->getCondition()) {
887 default: assert(0 && "Unknown setcc condition!");
888 case ISD::SETOEQ: std::cerr << "setoeq"; break;
889 case ISD::SETOGT: std::cerr << "setogt"; break;
890 case ISD::SETOGE: std::cerr << "setoge"; break;
891 case ISD::SETOLT: std::cerr << "setolt"; break;
892 case ISD::SETOLE: std::cerr << "setole"; break;
893 case ISD::SETONE: std::cerr << "setone"; break;
894
895 case ISD::SETO: std::cerr << "seto"; break;
896 case ISD::SETUO: std::cerr << "setuo"; break;
897 case ISD::SETUEQ: std::cerr << "setue"; break;
898 case ISD::SETUGT: std::cerr << "setugt"; break;
899 case ISD::SETUGE: std::cerr << "setuge"; break;
900 case ISD::SETULT: std::cerr << "setult"; break;
901 case ISD::SETULE: std::cerr << "setule"; break;
902 case ISD::SETUNE: std::cerr << "setune"; break;
903
904 case ISD::SETEQ: std::cerr << "seteq"; break;
905 case ISD::SETGT: std::cerr << "setgt"; break;
906 case ISD::SETGE: std::cerr << "setge"; break;
907 case ISD::SETLT: std::cerr << "setlt"; break;
908 case ISD::SETLE: std::cerr << "setle"; break;
909 case ISD::SETNE: std::cerr << "setne"; break;
910 }
911 }
912
913}
914
915void SelectionDAG::dump() const {
916 std::cerr << "SelectionDAG has " << AllNodes.size() << " nodes:";
917 for (unsigned i = 0, e = AllNodes.size(); i != e; ++i) {
918 std::cerr << "\n ";
919 AllNodes[i]->dump();
920 }
921 std::cerr << "\n\n";
922}
923