SelectionDAG.cpp revision 7c68ec6b70c765edec1e850331c30a7b65c6ebda
1//===-- SelectionDAG.cpp - Implement the SelectionDAG data structures -----===//
2//
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//===----------------------------------------------------------------------===//
9//
10// This implements the SelectionDAG class.
11//
12//===----------------------------------------------------------------------===//
13
14#include "llvm/CodeGen/SelectionDAG.h"
15#include "llvm/Constants.h"
16#include "llvm/GlobalValue.h"
17#include "llvm/Assembly/Writer.h"
18#include "llvm/CodeGen/MachineBasicBlock.h"
19#include <iostream>
20#include <set>
21#include <cmath>
22using namespace llvm;
23
24/// 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
102/// 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.
194  while (!N->Operands.empty()) {
195    SDNode *O = N->Operands.back().Val;
196    N->Operands.pop_back();
197    O->removeUser(N);
198
199    // Now that we removed this operand, see if there are no uses of it left.
200    DeleteNodeIfDead(O, NodeSet);
201  }
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);
206
207  // Now that the node is gone, check to see if any of the operands of this node
208  // are dead now.
209  delete N;
210}
211
212
213SelectionDAG::~SelectionDAG() {
214  for (unsigned i = 0, e = AllNodes.size(); i != e; ++i)
215    delete AllNodes[i];
216}
217
218SDOperand 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.
221  Val &= (1ULL << MVT::getSizeInBits(VT)) - 1;
222
223  SDNode *&N = Constants[std::make_pair(Val, VT)];
224  if (N) return SDOperand(N, 0);
225  N = new ConstantSDNode(Val, VT);
226  AllNodes.push_back(N);
227  return SDOperand(N, 0);
228}
229
230SDOperand SelectionDAG::getConstantFP(double Val, MVT::ValueType VT) {
231  assert(MVT::isFloatingPoint(VT) && "Cannot create integer FP constant!");
232  if (VT == MVT::f32)
233    Val = (float)Val;  // Mask out extra precision.
234
235  SDNode *&N = ConstantFPs[std::make_pair(Val, VT)];
236  if (N) return SDOperand(N, 0);
237  N = new ConstantFPSDNode(Val, VT);
238  AllNodes.push_back(N);
239  return SDOperand(N, 0);
240}
241
242
243
244SDOperand SelectionDAG::getGlobalAddress(const GlobalValue *GV,
245                                         MVT::ValueType VT) {
246  SDNode *&N = GlobalValues[GV];
247  if (N) return SDOperand(N, 0);
248  N = new GlobalAddressSDNode(GV,VT);
249  AllNodes.push_back(N);
250  return SDOperand(N, 0);
251}
252
253SDOperand SelectionDAG::getFrameIndex(int FI, MVT::ValueType VT) {
254  SDNode *&N = FrameIndices[FI];
255  if (N) return SDOperand(N, 0);
256  N = new FrameIndexSDNode(FI, VT);
257  AllNodes.push_back(N);
258  return SDOperand(N, 0);
259}
260
261SDOperand SelectionDAG::getConstantPool(unsigned CPIdx, MVT::ValueType VT) {
262  SDNode *N = ConstantPoolIndices[CPIdx];
263  if (N) return SDOperand(N, 0);
264  N = new ConstantPoolSDNode(CPIdx, VT);
265  AllNodes.push_back(N);
266  return SDOperand(N, 0);
267}
268
269SDOperand SelectionDAG::getBasicBlock(MachineBasicBlock *MBB) {
270  SDNode *&N = BBNodes[MBB];
271  if (N) return SDOperand(N, 0);
272  N = new BasicBlockSDNode(MBB);
273  AllNodes.push_back(N);
274  return SDOperand(N, 0);
275}
276
277SDOperand SelectionDAG::getExternalSymbol(const char *Sym, MVT::ValueType VT) {
278  SDNode *&N = ExternalSymbols[Sym];
279  if (N) return SDOperand(N, 0);
280  N = new ExternalSymbolSDNode(Sym, VT);
281  AllNodes.push_back(N);
282  return SDOperand(N, 0);
283}
284
285SDOperand SelectionDAG::getSetCC(ISD::CondCode Cond, SDOperand N1,
286                                 SDOperand N2) {
287  // These setcc operations always fold.
288  switch (Cond) {
289  default: break;
290  case ISD::SETFALSE:
291  case ISD::SETFALSE2: return getConstant(0, MVT::i1);
292  case ISD::SETTRUE:
293  case ISD::SETTRUE2:  return getConstant(1, MVT::i1);
294  }
295
296  if (ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1.Val))
297    if (ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(N2.Val)) {
298      uint64_t C1 = N1C->getValue(), C2 = N2C->getValue();
299
300      // Sign extend the operands if required
301      if (ISD::isSignedIntSetCC(Cond)) {
302        C1 = N1C->getSignExtended();
303        C2 = N2C->getSignExtended();
304      }
305
306      switch (Cond) {
307      default: assert(0 && "Unknown integer setcc!");
308      case ISD::SETEQ:  return getConstant(C1 == C2, MVT::i1);
309      case ISD::SETNE:  return getConstant(C1 != C2, MVT::i1);
310      case ISD::SETULT: return getConstant(C1 <  C2, MVT::i1);
311      case ISD::SETUGT: return getConstant(C1 >  C2, MVT::i1);
312      case ISD::SETULE: return getConstant(C1 <= C2, MVT::i1);
313      case ISD::SETUGE: return getConstant(C1 >= C2, MVT::i1);
314      case ISD::SETLT:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
315      case ISD::SETGT:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
316      case ISD::SETLE:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
317      case ISD::SETGE:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
318      }
319    } else {
320      // Ensure that the constant occurs on the RHS.
321      Cond = ISD::getSetCCSwappedOperands(Cond);
322      std::swap(N1, N2);
323    }
324
325  if (ConstantFPSDNode *N1C = dyn_cast<ConstantFPSDNode>(N1.Val))
326    if (ConstantFPSDNode *N2C = dyn_cast<ConstantFPSDNode>(N2.Val)) {
327      double C1 = N1C->getValue(), C2 = N2C->getValue();
328
329      switch (Cond) {
330      default: break; // FIXME: Implement the rest of these!
331      case ISD::SETEQ:  return getConstant(C1 == C2, MVT::i1);
332      case ISD::SETNE:  return getConstant(C1 != C2, MVT::i1);
333      case ISD::SETLT:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
334      case ISD::SETGT:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
335      case ISD::SETLE:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
336      case ISD::SETGE:  return getConstant((int64_t)C1 < (int64_t)C2, MVT::i1);
337      }
338    } else {
339      // Ensure that the constant occurs on the RHS.
340      Cond = ISD::getSetCCSwappedOperands(Cond);
341      std::swap(N1, N2);
342    }
343
344  if (N1 == N2) {
345    // We can always fold X == Y for integer setcc's.
346    if (MVT::isInteger(N1.getValueType()))
347      return getConstant(ISD::isTrueWhenEqual(Cond), MVT::i1);
348    unsigned UOF = ISD::getUnorderedFlavor(Cond);
349    if (UOF == 2)   // FP operators that are undefined on NaNs.
350      return getConstant(ISD::isTrueWhenEqual(Cond), MVT::i1);
351    if (UOF == ISD::isTrueWhenEqual(Cond))
352      return getConstant(UOF, MVT::i1);
353    // Otherwise, we can't fold it.  However, we can simplify it to SETUO/SETO
354    // if it is not already.
355    Cond = UOF == 0 ? ISD::SETUO : ISD::SETO;
356  }
357
358
359  SetCCSDNode *&N = SetCCs[std::make_pair(std::make_pair(N1, N2), Cond)];
360  if (N) return SDOperand(N, 0);
361  N = new SetCCSDNode(Cond, N1, N2);
362  AllNodes.push_back(N);
363  return SDOperand(N, 0);
364}
365
366
367
368/// getNode - Gets or creates the specified node.
369///
370SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT) {
371  SDNode *N = new SDNode(Opcode, VT);
372  AllNodes.push_back(N);
373  return SDOperand(N, 0);
374}
375
376static const Type *getTypeFor(MVT::ValueType VT) {
377  switch (VT) {
378  default: assert(0 && "Unknown MVT!");
379  case MVT::i1: return Type::BoolTy;
380  case MVT::i8: return Type::UByteTy;
381  case MVT::i16: return Type::UShortTy;
382  case MVT::i32: return Type::UIntTy;
383  case MVT::i64: return Type::ULongTy;
384  case MVT::f32: return Type::FloatTy;
385  case MVT::f64: return Type::DoubleTy;
386  }
387}
388
389SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
390                                SDOperand Operand) {
391  if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Operand.Val)) {
392    uint64_t Val = C->getValue();
393    switch (Opcode) {
394    default: break;
395    case ISD::SIGN_EXTEND: return getConstant(C->getSignExtended(), VT);
396    case ISD::ZERO_EXTEND: return getConstant(Val, VT);
397    case ISD::TRUNCATE:    return getConstant(Val, VT);
398    }
399  }
400
401  if (ConstantFPSDNode *C = dyn_cast<ConstantFPSDNode>(Operand.Val))
402    switch (Opcode) {
403    case ISD::FP_ROUND:
404    case ISD::FP_EXTEND:
405      return getConstantFP(C->getValue(), VT);
406    }
407
408  unsigned OpOpcode = Operand.Val->getOpcode();
409  switch (Opcode) {
410  case ISD::SIGN_EXTEND:
411    if (Operand.getValueType() == VT) return Operand;   // noop extension
412    if (OpOpcode == ISD::SIGN_EXTEND || OpOpcode == ISD::ZERO_EXTEND)
413      return getNode(OpOpcode, VT, Operand.Val->getOperand(0));
414    break;
415  case ISD::ZERO_EXTEND:
416    if (Operand.getValueType() == VT) return Operand;   // noop extension
417    if (OpOpcode == ISD::SIGN_EXTEND || OpOpcode == ISD::ZERO_EXTEND)
418      return getNode(OpOpcode, VT, Operand.Val->getOperand(0));
419    break;
420  case ISD::TRUNCATE:
421    if (Operand.getValueType() == VT) return Operand;   // noop truncate
422    if (OpOpcode == ISD::TRUNCATE)
423      return getNode(ISD::TRUNCATE, VT, Operand.Val->getOperand(0));
424    else if (OpOpcode == ISD::ZERO_EXTEND || OpOpcode == ISD::SIGN_EXTEND) {
425      // If the source is smaller than the dest, we still need an extend.
426      if (Operand.Val->getOperand(0).getValueType() < VT)
427        return getNode(OpOpcode, VT, Operand.Val->getOperand(0));
428      else if (Operand.Val->getOperand(0).getValueType() > VT)
429        return getNode(ISD::TRUNCATE, VT, Operand.Val->getOperand(0));
430      else
431        return Operand.Val->getOperand(0);
432    }
433    break;
434  }
435
436  SDNode *&N = UnaryOps[std::make_pair(Opcode, std::make_pair(Operand, VT))];
437  if (N) return SDOperand(N, 0);
438  N = new SDNode(Opcode, Operand);
439  N->setValueTypes(VT);
440  AllNodes.push_back(N);
441  return SDOperand(N, 0);
442}
443
444static bool isCommutativeBinOp(unsigned Opcode) {
445  switch (Opcode) {
446  case ISD::ADD:
447  case ISD::MUL:
448  case ISD::AND:
449  case ISD::OR:
450  case ISD::XOR: return true;
451  default: return false; // FIXME: Need commutative info for user ops!
452  }
453}
454
455static bool isAssociativeBinOp(unsigned Opcode) {
456  switch (Opcode) {
457  case ISD::ADD:
458  case ISD::MUL:
459  case ISD::AND:
460  case ISD::OR:
461  case ISD::XOR: return true;
462  default: return false; // FIXME: Need associative info for user ops!
463  }
464}
465
466static unsigned ExactLog2(uint64_t Val) {
467  unsigned Count = 0;
468  while (Val != 1) {
469    Val >>= 1;
470    ++Count;
471  }
472  return Count;
473}
474
475// isInvertibleForFree - Return true if there is no cost to emitting the logical
476// inverse of this node.
477static bool isInvertibleForFree(SDOperand N) {
478  if (isa<ConstantSDNode>(N.Val)) return true;
479  if (isa<SetCCSDNode>(N.Val) && N.Val->hasOneUse())
480    return true;
481  return false;
482}
483
484
485SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
486                                SDOperand N1, SDOperand N2) {
487  ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1.Val);
488  ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(N2.Val);
489  if (N1C) {
490    if (N2C) {
491      uint64_t C1 = N1C->getValue(), C2 = N2C->getValue();
492      switch (Opcode) {
493      case ISD::ADD: return getConstant(C1 + C2, VT);
494      case ISD::SUB: return getConstant(C1 - C2, VT);
495      case ISD::MUL: return getConstant(C1 * C2, VT);
496      case ISD::UDIV:
497        if (C2) return getConstant(C1 / C2, VT);
498        break;
499      case ISD::UREM :
500        if (C2) return getConstant(C1 % C2, VT);
501        break;
502      case ISD::SDIV :
503        if (C2) return getConstant(N1C->getSignExtended() /
504                                   N2C->getSignExtended(), VT);
505        break;
506      case ISD::SREM :
507        if (C2) return getConstant(N1C->getSignExtended() %
508                                   N2C->getSignExtended(), VT);
509        break;
510      case ISD::AND  : return getConstant(C1 & C2, VT);
511      case ISD::OR   : return getConstant(C1 | C2, VT);
512      case ISD::XOR  : return getConstant(C1 ^ C2, VT);
513      default: break;
514      }
515
516    } else {      // Cannonicalize constant to RHS if commutative
517      if (isCommutativeBinOp(Opcode)) {
518        std::swap(N1C, N2C);
519        std::swap(N1, N2);
520      }
521    }
522  }
523
524  if (N2C) {
525    uint64_t C2 = N2C->getValue();
526
527    switch (Opcode) {
528    case ISD::ADD:
529      if (!C2) return N1;         // add X, 0 -> X
530      break;
531    case ISD::SUB:
532      if (!C2) return N1;         // sub X, 0 -> X
533      break;
534    case ISD::MUL:
535      if (!C2) return N2;         // mul X, 0 -> 0
536      if (N2C->isAllOnesValue()) // mul X, -1 -> 0-X
537        return getNode(ISD::SUB, VT, getConstant(0, VT), N1);
538
539      // FIXME: This should only be done if the target supports shift
540      // operations.
541      if ((C2 & C2-1) == 0) {
542        SDOperand ShAmt = getConstant(ExactLog2(C2), MVT::i8);
543        return getNode(ISD::SHL, VT, N1, ShAmt);
544      }
545      break;
546
547    case ISD::UDIV:
548      // FIXME: This should only be done if the target supports shift
549      // operations.
550      if ((C2 & C2-1) == 0 && C2) {
551        SDOperand ShAmt = getConstant(ExactLog2(C2), MVT::i8);
552        return getNode(ISD::SRL, VT, N1, ShAmt);
553      }
554      break;
555
556    case ISD::AND:
557      if (!C2) return N2;         // X and 0 -> 0
558      if (N2C->isAllOnesValue())
559	return N1;                // X and -1 -> X
560      break;
561    case ISD::OR:
562      if (!C2)return N1;          // X or 0 -> X
563      if (N2C->isAllOnesValue())
564	return N2;                // X or -1 -> -1
565      break;
566    case ISD::XOR:
567      if (!C2) return N1;        // X xor 0 -> X
568      if (N2C->isAllOnesValue()) {
569        if (SetCCSDNode *SetCC = dyn_cast<SetCCSDNode>(N1.Val)){
570          // !(X op Y) -> (X !op Y)
571          bool isInteger = MVT::isInteger(SetCC->getOperand(0).getValueType());
572          return getSetCC(ISD::getSetCCInverse(SetCC->getCondition(),isInteger),
573                          SetCC->getOperand(0), SetCC->getOperand(1));
574        } else if (N1.getOpcode() == ISD::AND || N1.getOpcode() == ISD::OR) {
575          SDNode *Op = N1.Val;
576          // !(X or Y) -> (!X and !Y) iff X or Y are freely invertible
577          // !(X and Y) -> (!X or !Y) iff X or Y are freely invertible
578          SDOperand LHS = Op->getOperand(0), RHS = Op->getOperand(1);
579          if (isInvertibleForFree(RHS) || isInvertibleForFree(LHS)) {
580            LHS = getNode(ISD::XOR, VT, LHS, N2);  // RHS = ~LHS
581            RHS = getNode(ISD::XOR, VT, RHS, N2);  // RHS = ~RHS
582            if (Op->getOpcode() == ISD::AND)
583              return getNode(ISD::OR, VT, LHS, RHS);
584            return getNode(ISD::AND, VT, LHS, RHS);
585          }
586        }
587	// X xor -1 -> not(x)  ?
588      }
589      break;
590    }
591
592    // Reassociate ((X op C1) op C2) if possible.
593    if (N1.getOpcode() == Opcode && isAssociativeBinOp(Opcode))
594      if (ConstantSDNode *N3C = dyn_cast<ConstantSDNode>(N1.Val->getOperand(1)))
595        return getNode(Opcode, VT, N1.Val->getOperand(0),
596                       getNode(Opcode, VT, N2, N1.Val->getOperand(1)));
597  }
598
599  ConstantFPSDNode *N1CFP = dyn_cast<ConstantFPSDNode>(N1.Val);
600  ConstantFPSDNode *N2CFP = dyn_cast<ConstantFPSDNode>(N2.Val);
601  if (N1CFP)
602    if (N2CFP) {
603      double C1 = N1CFP->getValue(), C2 = N2CFP->getValue();
604      switch (Opcode) {
605      case ISD::ADD: return getConstantFP(C1 + C2, VT);
606      case ISD::SUB: return getConstantFP(C1 - C2, VT);
607      case ISD::MUL: return getConstantFP(C1 * C2, VT);
608      case ISD::SDIV:
609        if (C2) return getConstantFP(C1 / C2, VT);
610        break;
611      case ISD::SREM :
612        if (C2) return getConstantFP(fmod(C1, C2), VT);
613        break;
614      default: break;
615      }
616
617    } else {      // Cannonicalize constant to RHS if commutative
618      if (isCommutativeBinOp(Opcode)) {
619        std::swap(N1CFP, N2CFP);
620        std::swap(N1, N2);
621      }
622    }
623
624  // Finally, fold operations that do not require constants.
625  switch (Opcode) {
626  case ISD::AND:
627  case ISD::OR:
628    if (SetCCSDNode *LHS = dyn_cast<SetCCSDNode>(N1.Val))
629      if (SetCCSDNode *RHS = dyn_cast<SetCCSDNode>(N2.Val)) {
630        SDOperand LL = LHS->getOperand(0), RL = RHS->getOperand(0);
631        SDOperand LR = LHS->getOperand(1), RR = RHS->getOperand(1);
632        ISD::CondCode Op2 = RHS->getCondition();
633
634        // (X op1 Y) | (Y op2 X) -> (X op1 Y) | (X swapop2 Y)
635        if (LL == RR && LR == RL) {
636          Op2 = ISD::getSetCCSwappedOperands(Op2);
637          goto MatchedBackwards;
638        }
639
640        if (LL == RL && LR == RR) {
641        MatchedBackwards:
642          ISD::CondCode Result;
643          bool isInteger = MVT::isInteger(LL.getValueType());
644          if (Opcode == ISD::OR)
645            Result = ISD::getSetCCOrOperation(LHS->getCondition(), Op2,
646                                              isInteger);
647          else
648            Result = ISD::getSetCCAndOperation(LHS->getCondition(), Op2,
649                                               isInteger);
650          if (Result != ISD::SETCC_INVALID)
651            return getSetCC(Result, LL, LR);
652        }
653      }
654    break;
655  case ISD::XOR:
656    if (N1 == N2) return getConstant(0, VT);  // xor X, Y -> 0
657    break;
658  }
659
660  SDNode *&N = BinaryOps[std::make_pair(Opcode, std::make_pair(N1, N2))];
661  if (N) return SDOperand(N, 0);
662  N = new SDNode(Opcode, N1, N2);
663  N->setValueTypes(VT);
664
665  AllNodes.push_back(N);
666  return SDOperand(N, 0);
667}
668
669SDOperand SelectionDAG::getLoad(MVT::ValueType VT,
670                                SDOperand Chain, SDOperand Ptr) {
671  SDNode *&N = Loads[std::make_pair(Ptr, std::make_pair(Chain, VT))];
672  if (N) return SDOperand(N, 0);
673  N = new SDNode(ISD::LOAD, Chain, Ptr);
674
675  // Loads have a token chain.
676  N->setValueTypes(VT, MVT::Other);
677  AllNodes.push_back(N);
678  return SDOperand(N, 0);
679}
680
681
682SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
683                                SDOperand N1, SDOperand N2, SDOperand N3) {
684  // Perform various simplifications.
685  ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1.Val);
686  ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(N2.Val);
687  ConstantSDNode *N3C = dyn_cast<ConstantSDNode>(N3.Val);
688  switch (Opcode) {
689  case ISD::SELECT:
690    if (N1C)
691      if (N1C->getValue())
692        return N2;             // select true, X, Y -> X
693      else
694        return N3;             // select false, X, Y -> Y
695
696    if (N2 == N3) return N2;   // select C, X, X -> X
697
698    if (VT == MVT::i1) {  // Boolean SELECT
699      if (N2C) {
700        if (N3C) {
701          if (N2C->getValue()) // select C, 1, 0 -> C
702            return N1;
703          return getNode(ISD::XOR, VT, N1, N3); // select C, 0, 1 -> ~C
704        }
705
706        if (N2C->getValue())   // select C, 1, X -> C | X
707          return getNode(ISD::OR, VT, N1, N3);
708        else                   // select C, 0, X -> ~C & X
709          return getNode(ISD::AND, VT,
710                         getNode(ISD::XOR, N1.getValueType(), N1,
711                                 getConstant(1, N1.getValueType())), N3);
712      } else if (N3C) {
713        if (N3C->getValue())   // select C, X, 1 -> ~C | X
714          return getNode(ISD::OR, VT,
715                         getNode(ISD::XOR, N1.getValueType(), N1,
716                                 getConstant(1, N1.getValueType())), N2);
717        else                   // select C, X, 0 -> C & X
718          return getNode(ISD::AND, VT, N1, N2);
719      }
720    }
721
722    break;
723  case ISD::BRCOND:
724    if (N2C)
725      if (N2C->getValue()) // Unconditional branch
726        return getNode(ISD::BR, MVT::Other, N1, N3);
727      else
728        return N1;         // Never-taken branch
729    break;
730  }
731
732  SDNode *N = new SDNode(Opcode, N1, N2, N3);
733  switch (Opcode) {
734  default:
735    N->setValueTypes(VT);
736    break;
737  case ISD::DYNAMIC_STACKALLOC: // DYNAMIC_STACKALLOC produces pointer and chain
738    N->setValueTypes(VT, MVT::Other);
739    break;
740  }
741
742  // FIXME: memoize NODES
743  AllNodes.push_back(N);
744  return SDOperand(N, 0);
745}
746
747SDOperand SelectionDAG::getNode(unsigned Opcode, MVT::ValueType VT,
748                                std::vector<SDOperand> &Children) {
749  switch (Children.size()) {
750  case 0: return getNode(Opcode, VT);
751  case 1: return getNode(Opcode, VT, Children[0]);
752  case 2: return getNode(Opcode, VT, Children[0], Children[1]);
753  case 3: return getNode(Opcode, VT, Children[0], Children[1], Children[2]);
754  default:
755    // FIXME: MEMOIZE!!
756    SDNode *N = new SDNode(Opcode, Children);
757    N->setValueTypes(VT);
758    AllNodes.push_back(N);
759    return SDOperand(N, 0);
760  }
761}
762
763
764
765void SDNode::dump() const {
766  std::cerr << (void*)this << ": ";
767
768  for (unsigned i = 0, e = getNumValues(); i != e; ++i) {
769    if (i) std::cerr << ",";
770    switch (getValueType(i)) {
771    default: assert(0 && "Unknown value type!");
772    case MVT::i1:    std::cerr << "i1"; break;
773    case MVT::i8:    std::cerr << "i8"; break;
774    case MVT::i16:   std::cerr << "i16"; break;
775    case MVT::i32:   std::cerr << "i32"; break;
776    case MVT::i64:   std::cerr << "i64"; break;
777    case MVT::f32:   std::cerr << "f32"; break;
778    case MVT::f64:   std::cerr << "f64"; break;
779    case MVT::Other: std::cerr << "ch"; break;
780    }
781  }
782  std::cerr << " = ";
783
784  switch (getOpcode()) {
785  default: std::cerr << "<<Unknown>>"; break;
786  case ISD::EntryToken:    std::cerr << "EntryToken"; break;
787  case ISD::Constant:      std::cerr << "Constant"; break;
788  case ISD::ConstantFP:    std::cerr << "ConstantFP"; break;
789  case ISD::GlobalAddress: std::cerr << "GlobalAddress"; break;
790  case ISD::FrameIndex:    std::cerr << "FrameIndex"; break;
791  case ISD::BasicBlock:    std::cerr << "BasicBlock"; break;
792  case ISD::ExternalSymbol: std::cerr << "ExternalSymbol"; break;
793  case ISD::ConstantPool:  std::cerr << "ConstantPoolIndex"; break;
794  case ISD::CopyToReg:     std::cerr << "CopyToReg"; break;
795  case ISD::CopyFromReg:   std::cerr << "CopyFromReg"; break;
796
797  case ISD::ADD:    std::cerr << "add"; break;
798  case ISD::SUB:    std::cerr << "sub"; break;
799  case ISD::MUL:    std::cerr << "mul"; break;
800  case ISD::SDIV:   std::cerr << "sdiv"; break;
801  case ISD::UDIV:   std::cerr << "udiv"; break;
802  case ISD::SREM:   std::cerr << "srem"; break;
803  case ISD::UREM:   std::cerr << "urem"; break;
804  case ISD::AND:    std::cerr << "and"; break;
805  case ISD::OR:     std::cerr << "or"; break;
806  case ISD::XOR:    std::cerr << "xor"; break;
807  case ISD::SHL:    std::cerr << "shl"; break;
808  case ISD::SRA:    std::cerr << "sra"; break;
809  case ISD::SRL:    std::cerr << "srl"; break;
810
811  case ISD::SETCC:  std::cerr << "setcc"; break;
812  case ISD::SELECT: std::cerr << "select"; break;
813  case ISD::ADDC:   std::cerr << "addc"; break;
814  case ISD::SUBB:   std::cerr << "subb"; break;
815
816    // Conversion operators.
817  case ISD::SIGN_EXTEND: std::cerr << "sign_extend"; break;
818  case ISD::ZERO_EXTEND: std::cerr << "zero_extend"; break;
819  case ISD::TRUNCATE:    std::cerr << "truncate"; break;
820  case ISD::FP_ROUND:    std::cerr << "fp_round"; break;
821  case ISD::FP_EXTEND:   std::cerr << "fp_extend"; break;
822
823    // Control flow instructions
824  case ISD::BR:      std::cerr << "br"; break;
825  case ISD::BRCOND:  std::cerr << "brcond"; break;
826  case ISD::RET:     std::cerr << "ret"; break;
827  case ISD::CALL:    std::cerr << "call"; break;
828  case ISD::ADJCALLSTACKDOWN:  std::cerr << "adjcallstackdown"; break;
829  case ISD::ADJCALLSTACKUP:    std::cerr << "adjcallstackup"; break;
830
831    // Other operators
832  case ISD::LOAD:    std::cerr << "load"; break;
833  case ISD::STORE:   std::cerr << "store"; break;
834  case ISD::DYNAMIC_STACKALLOC: std::cerr << "dynamic_stackalloc"; break;
835  case ISD::EXTRACT_ELEMENT: std::cerr << "extract_element"; break;
836  case ISD::BUILD_PAIR: std::cerr << "build_pair"; break;
837  }
838
839  std::cerr << " ";
840  for (unsigned i = 0, e = getNumOperands(); i != e; ++i) {
841    if (i) std::cerr << ", ";
842    std::cerr << (void*)getOperand(i).Val;
843    if (unsigned RN = getOperand(i).ResNo)
844      std::cerr << ":" << RN;
845  }
846
847  if (const ConstantSDNode *CSDN = dyn_cast<ConstantSDNode>(this)) {
848    std::cerr << "<" << CSDN->getValue() << ">";
849  } else if (const ConstantFPSDNode *CSDN = dyn_cast<ConstantFPSDNode>(this)) {
850    std::cerr << "<" << CSDN->getValue() << ">";
851  } else if (const GlobalAddressSDNode *GADN =
852             dyn_cast<GlobalAddressSDNode>(this)) {
853    std::cerr << "<";
854    WriteAsOperand(std::cerr, GADN->getGlobal()) << ">";
855  } else if (const FrameIndexSDNode *FIDN =
856	     dyn_cast<FrameIndexSDNode>(this)) {
857    std::cerr << "<" << FIDN->getIndex() << ">";
858  } else if (const ConstantPoolSDNode *CP = dyn_cast<ConstantPoolSDNode>(this)){
859    std::cerr << "<" << CP->getIndex() << ">";
860  } else if (const BasicBlockSDNode *BBDN =
861	     dyn_cast<BasicBlockSDNode>(this)) {
862    std::cerr << "<";
863    const Value *LBB = (const Value*)BBDN->getBasicBlock()->getBasicBlock();
864    if (LBB)
865      std::cerr << LBB->getName() << " ";
866    std::cerr << (const void*)BBDN->getBasicBlock() << ">";
867  } else if (const CopyRegSDNode *C2V = dyn_cast<CopyRegSDNode>(this)) {
868    std::cerr << "<reg #" << C2V->getReg() << ">";
869  } else if (const ExternalSymbolSDNode *ES =
870             dyn_cast<ExternalSymbolSDNode>(this)) {
871    std::cerr << "'" << ES->getSymbol() << "'";
872  } else if (const SetCCSDNode *SetCC = dyn_cast<SetCCSDNode>(this)) {
873    std::cerr << " - condition = ";
874    switch (SetCC->getCondition()) {
875    default: assert(0 && "Unknown setcc condition!");
876    case ISD::SETOEQ:  std::cerr << "setoeq"; break;
877    case ISD::SETOGT:  std::cerr << "setogt"; break;
878    case ISD::SETOGE:  std::cerr << "setoge"; break;
879    case ISD::SETOLT:  std::cerr << "setolt"; break;
880    case ISD::SETOLE:  std::cerr << "setole"; break;
881    case ISD::SETONE:  std::cerr << "setone"; break;
882
883    case ISD::SETO:    std::cerr << "seto";  break;
884    case ISD::SETUO:   std::cerr << "setuo"; break;
885    case ISD::SETUEQ:  std::cerr << "setue"; break;
886    case ISD::SETUGT:  std::cerr << "setugt"; break;
887    case ISD::SETUGE:  std::cerr << "setuge"; break;
888    case ISD::SETULT:  std::cerr << "setult"; break;
889    case ISD::SETULE:  std::cerr << "setule"; break;
890    case ISD::SETUNE:  std::cerr << "setune"; break;
891
892    case ISD::SETEQ:   std::cerr << "seteq"; break;
893    case ISD::SETGT:   std::cerr << "setgt"; break;
894    case ISD::SETGE:   std::cerr << "setge"; break;
895    case ISD::SETLT:   std::cerr << "setlt"; break;
896    case ISD::SETLE:   std::cerr << "setle"; break;
897    case ISD::SETNE:   std::cerr << "setne"; break;
898    }
899  }
900
901}
902
903void SelectionDAG::dump() const {
904  std::cerr << "SelectionDAG has " << AllNodes.size() << " nodes:";
905  for (unsigned i = 0, e = AllNodes.size(); i != e; ++i) {
906    std::cerr << "\n  ";
907    AllNodes[i]->dump();
908  }
909  std::cerr << "\n\n";
910}
911
912