LegalizeDAG.cpp revision de202b3cda00f17ba2c047be7270b51f9585a413
1//===-- LegalizeDAG.cpp - Implement SelectionDAG::Legalize ----------------===//
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 file implements the SelectionDAG::Legalize method.
11//
12//===----------------------------------------------------------------------===//
13
14#include "llvm/CodeGen/SelectionDAG.h"
15#include "llvm/CodeGen/MachineFunction.h"
16#include "llvm/CodeGen/MachineFrameInfo.h"
17#include "llvm/Support/MathExtras.h"
18#include "llvm/Target/TargetLowering.h"
19#include "llvm/Target/TargetData.h"
20#include "llvm/Target/TargetOptions.h"
21#include "llvm/CallingConv.h"
22#include "llvm/Constants.h"
23#include <iostream>
24#include <set>
25using namespace llvm;
26
27//===----------------------------------------------------------------------===//
28/// SelectionDAGLegalize - This takes an arbitrary SelectionDAG as input and
29/// hacks on it until the target machine can handle it.  This involves
30/// eliminating value sizes the machine cannot handle (promoting small sizes to
31/// large sizes or splitting up large values into small values) as well as
32/// eliminating operations the machine cannot handle.
33///
34/// This code also does a small amount of optimization and recognition of idioms
35/// as part of its processing.  For example, if a target does not support a
36/// 'setcc' instruction efficiently, but does support 'brcc' instruction, this
37/// will attempt merge setcc and brc instructions into brcc's.
38///
39namespace {
40class SelectionDAGLegalize {
41  TargetLowering &TLI;
42  SelectionDAG &DAG;
43
44  /// LegalizeAction - This enum indicates what action we should take for each
45  /// value type the can occur in the program.
46  enum LegalizeAction {
47    Legal,            // The target natively supports this value type.
48    Promote,          // This should be promoted to the next larger type.
49    Expand,           // This integer type should be broken into smaller pieces.
50  };
51
52  /// ValueTypeActions - This is a bitvector that contains two bits for each
53  /// value type, where the two bits correspond to the LegalizeAction enum.
54  /// This can be queried with "getTypeAction(VT)".
55  unsigned ValueTypeActions;
56
57  /// NeedsAnotherIteration - This is set when we expand a large integer
58  /// operation into smaller integer operations, but the smaller operations are
59  /// not set.  This occurs only rarely in practice, for targets that don't have
60  /// 32-bit or larger integer registers.
61  bool NeedsAnotherIteration;
62
63  /// LegalizedNodes - For nodes that are of legal width, and that have more
64  /// than one use, this map indicates what regularized operand to use.  This
65  /// allows us to avoid legalizing the same thing more than once.
66  std::map<SDOperand, SDOperand> LegalizedNodes;
67
68  /// PromotedNodes - For nodes that are below legal width, and that have more
69  /// than one use, this map indicates what promoted value to use.  This allows
70  /// us to avoid promoting the same thing more than once.
71  std::map<SDOperand, SDOperand> PromotedNodes;
72
73  /// ExpandedNodes - For nodes that need to be expanded, and which have more
74  /// than one use, this map indicates which which operands are the expanded
75  /// version of the input.  This allows us to avoid expanding the same node
76  /// more than once.
77  std::map<SDOperand, std::pair<SDOperand, SDOperand> > ExpandedNodes;
78
79  void AddLegalizedOperand(SDOperand From, SDOperand To) {
80    bool isNew = LegalizedNodes.insert(std::make_pair(From, To)).second;
81    assert(isNew && "Got into the map somehow?");
82  }
83  void AddPromotedOperand(SDOperand From, SDOperand To) {
84    bool isNew = PromotedNodes.insert(std::make_pair(From, To)).second;
85    assert(isNew && "Got into the map somehow?");
86  }
87
88public:
89
90  SelectionDAGLegalize(SelectionDAG &DAG);
91
92  /// Run - While there is still lowering to do, perform a pass over the DAG.
93  /// Most regularization can be done in a single pass, but targets that require
94  /// large values to be split into registers multiple times (e.g. i64 -> 4x
95  /// i16) require iteration for these values (the first iteration will demote
96  /// to i32, the second will demote to i16).
97  void Run() {
98    do {
99      NeedsAnotherIteration = false;
100      LegalizeDAG();
101    } while (NeedsAnotherIteration);
102  }
103
104  /// getTypeAction - Return how we should legalize values of this type, either
105  /// it is already legal or we need to expand it into multiple registers of
106  /// smaller integer type, or we need to promote it to a larger type.
107  LegalizeAction getTypeAction(MVT::ValueType VT) const {
108    return (LegalizeAction)((ValueTypeActions >> (2*VT)) & 3);
109  }
110
111  /// isTypeLegal - Return true if this type is legal on this target.
112  ///
113  bool isTypeLegal(MVT::ValueType VT) const {
114    return getTypeAction(VT) == Legal;
115  }
116
117private:
118  void LegalizeDAG();
119
120  SDOperand LegalizeOp(SDOperand O);
121  void ExpandOp(SDOperand O, SDOperand &Lo, SDOperand &Hi);
122  SDOperand PromoteOp(SDOperand O);
123
124  SDOperand ExpandLibCall(const char *Name, SDNode *Node,
125                          SDOperand &Hi);
126  SDOperand ExpandIntToFP(bool isSigned, MVT::ValueType DestTy,
127                          SDOperand Source);
128
129  SDOperand ExpandLegalINT_TO_FP(bool isSigned,
130                                 SDOperand LegalOp,
131                                 MVT::ValueType DestVT);
132  SDOperand PromoteLegalINT_TO_FP(SDOperand LegalOp, MVT::ValueType DestVT,
133                                  bool isSigned);
134  SDOperand PromoteLegalFP_TO_INT(SDOperand LegalOp, MVT::ValueType DestVT,
135                                  bool isSigned);
136
137  bool ExpandShift(unsigned Opc, SDOperand Op, SDOperand Amt,
138                   SDOperand &Lo, SDOperand &Hi);
139  void ExpandShiftParts(unsigned NodeOp, SDOperand Op, SDOperand Amt,
140                        SDOperand &Lo, SDOperand &Hi);
141  void ExpandByParts(unsigned NodeOp, SDOperand LHS, SDOperand RHS,
142                     SDOperand &Lo, SDOperand &Hi);
143
144  void SpliceCallInto(const SDOperand &CallResult, SDNode *OutChain);
145
146  SDOperand getIntPtrConstant(uint64_t Val) {
147    return DAG.getConstant(Val, TLI.getPointerTy());
148  }
149};
150}
151
152
153SelectionDAGLegalize::SelectionDAGLegalize(SelectionDAG &dag)
154  : TLI(dag.getTargetLoweringInfo()), DAG(dag),
155    ValueTypeActions(TLI.getValueTypeActions()) {
156  assert(MVT::LAST_VALUETYPE <= 16 &&
157         "Too many value types for ValueTypeActions to hold!");
158}
159
160/// ExpandLegalINT_TO_FP - This function is responsible for legalizing a
161/// INT_TO_FP operation of the specified operand when the target requests that
162/// we expand it.  At this point, we know that the result and operand types are
163/// legal for the target.
164SDOperand SelectionDAGLegalize::ExpandLegalINT_TO_FP(bool isSigned,
165                                                     SDOperand Op0,
166                                                     MVT::ValueType DestVT) {
167  if (Op0.getValueType() == MVT::i32) {
168    // simple 32-bit [signed|unsigned] integer to float/double expansion
169
170    // get the stack frame index of a 8 byte buffer
171    MachineFunction &MF = DAG.getMachineFunction();
172    int SSFI = MF.getFrameInfo()->CreateStackObject(8, 8);
173    // get address of 8 byte buffer
174    SDOperand StackSlot = DAG.getFrameIndex(SSFI, TLI.getPointerTy());
175    // word offset constant for Hi/Lo address computation
176    SDOperand WordOff = DAG.getConstant(sizeof(int), TLI.getPointerTy());
177    // set up Hi and Lo (into buffer) address based on endian
178    SDOperand Hi, Lo;
179    if (TLI.isLittleEndian()) {
180      Hi = DAG.getNode(ISD::ADD, TLI.getPointerTy(), StackSlot, WordOff);
181      Lo = StackSlot;
182    } else {
183      Hi = StackSlot;
184      Lo = DAG.getNode(ISD::ADD, TLI.getPointerTy(), StackSlot, WordOff);
185    }
186    // if signed map to unsigned space
187    SDOperand Op0Mapped;
188    if (isSigned) {
189      // constant used to invert sign bit (signed to unsigned mapping)
190      SDOperand SignBit = DAG.getConstant(0x80000000u, MVT::i32);
191      Op0Mapped = DAG.getNode(ISD::XOR, MVT::i32, Op0, SignBit);
192    } else {
193      Op0Mapped = Op0;
194    }
195    // store the lo of the constructed double - based on integer input
196    SDOperand Store1 = DAG.getNode(ISD::STORE, MVT::Other, DAG.getEntryNode(),
197                                   Op0Mapped, Lo, DAG.getSrcValue(NULL));
198    // initial hi portion of constructed double
199    SDOperand InitialHi = DAG.getConstant(0x43300000u, MVT::i32);
200    // store the hi of the constructed double - biased exponent
201    SDOperand Store2 = DAG.getNode(ISD::STORE, MVT::Other, Store1,
202                                   InitialHi, Hi, DAG.getSrcValue(NULL));
203    // load the constructed double
204    SDOperand Load = DAG.getLoad(MVT::f64, Store2, StackSlot,
205                               DAG.getSrcValue(NULL));
206    // FP constant to bias correct the final result
207    SDOperand Bias = DAG.getConstantFP(isSigned ?
208                                            BitsToDouble(0x4330000080000000ULL)
209                                          : BitsToDouble(0x4330000000000000ULL),
210                                     MVT::f64);
211    // subtract the bias
212    SDOperand Sub = DAG.getNode(ISD::FSUB, MVT::f64, Load, Bias);
213    // final result
214    SDOperand Result;
215    // handle final rounding
216    if (DestVT == MVT::f64) {
217      // do nothing
218      Result = Sub;
219    } else {
220     // if f32 then cast to f32
221      Result = DAG.getNode(ISD::FP_ROUND, MVT::f32, Sub);
222    }
223    NeedsAnotherIteration = true;
224    return Result;
225  }
226  assert(!isSigned && "Legalize cannot Expand SINT_TO_FP for i64 yet");
227  SDOperand Tmp1 = DAG.getNode(ISD::SINT_TO_FP, DestVT, Op0);
228
229  SDOperand SignSet = DAG.getSetCC(TLI.getSetCCResultTy(), Op0,
230                                   DAG.getConstant(0, Op0.getValueType()),
231                                   ISD::SETLT);
232  SDOperand Zero = getIntPtrConstant(0), Four = getIntPtrConstant(4);
233  SDOperand CstOffset = DAG.getNode(ISD::SELECT, Zero.getValueType(),
234                                    SignSet, Four, Zero);
235
236  // If the sign bit of the integer is set, the large number will be treated
237  // as a negative number.  To counteract this, the dynamic code adds an
238  // offset depending on the data type.
239  uint64_t FF;
240  switch (Op0.getValueType()) {
241  default: assert(0 && "Unsupported integer type!");
242  case MVT::i8 : FF = 0x43800000ULL; break;  // 2^8  (as a float)
243  case MVT::i16: FF = 0x47800000ULL; break;  // 2^16 (as a float)
244  case MVT::i32: FF = 0x4F800000ULL; break;  // 2^32 (as a float)
245  case MVT::i64: FF = 0x5F800000ULL; break;  // 2^64 (as a float)
246  }
247  if (TLI.isLittleEndian()) FF <<= 32;
248  static Constant *FudgeFactor = ConstantUInt::get(Type::ULongTy, FF);
249
250  SDOperand CPIdx = DAG.getConstantPool(FudgeFactor, TLI.getPointerTy());
251  CPIdx = DAG.getNode(ISD::ADD, TLI.getPointerTy(), CPIdx, CstOffset);
252  SDOperand FudgeInReg;
253  if (DestVT == MVT::f32)
254    FudgeInReg = DAG.getLoad(MVT::f32, DAG.getEntryNode(), CPIdx,
255                             DAG.getSrcValue(NULL));
256  else {
257    assert(DestVT == MVT::f64 && "Unexpected conversion");
258    FudgeInReg = LegalizeOp(DAG.getExtLoad(ISD::EXTLOAD, MVT::f64,
259                                           DAG.getEntryNode(), CPIdx,
260                                           DAG.getSrcValue(NULL), MVT::f32));
261  }
262
263  NeedsAnotherIteration = true;
264  return DAG.getNode(ISD::FADD, DestVT, Tmp1, FudgeInReg);
265}
266
267/// PromoteLegalINT_TO_FP - This function is responsible for legalizing a
268/// *INT_TO_FP operation of the specified operand when the target requests that
269/// we promote it.  At this point, we know that the result and operand types are
270/// legal for the target, and that there is a legal UINT_TO_FP or SINT_TO_FP
271/// operation that takes a larger input.
272SDOperand SelectionDAGLegalize::PromoteLegalINT_TO_FP(SDOperand LegalOp,
273                                                      MVT::ValueType DestVT,
274                                                      bool isSigned) {
275  // First step, figure out the appropriate *INT_TO_FP operation to use.
276  MVT::ValueType NewInTy = LegalOp.getValueType();
277
278  unsigned OpToUse = 0;
279
280  // Scan for the appropriate larger type to use.
281  while (1) {
282    NewInTy = (MVT::ValueType)(NewInTy+1);
283    assert(MVT::isInteger(NewInTy) && "Ran out of possibilities!");
284
285    // If the target supports SINT_TO_FP of this type, use it.
286    switch (TLI.getOperationAction(ISD::SINT_TO_FP, NewInTy)) {
287      default: break;
288      case TargetLowering::Legal:
289        if (!TLI.isTypeLegal(NewInTy))
290          break;  // Can't use this datatype.
291        // FALL THROUGH.
292      case TargetLowering::Custom:
293        OpToUse = ISD::SINT_TO_FP;
294        break;
295    }
296    if (OpToUse) break;
297    if (isSigned) continue;
298
299    // If the target supports UINT_TO_FP of this type, use it.
300    switch (TLI.getOperationAction(ISD::UINT_TO_FP, NewInTy)) {
301      default: break;
302      case TargetLowering::Legal:
303        if (!TLI.isTypeLegal(NewInTy))
304          break;  // Can't use this datatype.
305        // FALL THROUGH.
306      case TargetLowering::Custom:
307        OpToUse = ISD::UINT_TO_FP;
308        break;
309    }
310    if (OpToUse) break;
311
312    // Otherwise, try a larger type.
313  }
314
315  // Make sure to legalize any nodes we create here in the next pass.
316  NeedsAnotherIteration = true;
317
318  // Okay, we found the operation and type to use.  Zero extend our input to the
319  // desired type then run the operation on it.
320  return DAG.getNode(OpToUse, DestVT,
321                     DAG.getNode(isSigned ? ISD::SIGN_EXTEND : ISD::ZERO_EXTEND,
322                                 NewInTy, LegalOp));
323}
324
325/// PromoteLegalFP_TO_INT - This function is responsible for legalizing a
326/// FP_TO_*INT operation of the specified operand when the target requests that
327/// we promote it.  At this point, we know that the result and operand types are
328/// legal for the target, and that there is a legal FP_TO_UINT or FP_TO_SINT
329/// operation that returns a larger result.
330SDOperand SelectionDAGLegalize::PromoteLegalFP_TO_INT(SDOperand LegalOp,
331                                                      MVT::ValueType DestVT,
332                                                      bool isSigned) {
333  // First step, figure out the appropriate FP_TO*INT operation to use.
334  MVT::ValueType NewOutTy = DestVT;
335
336  unsigned OpToUse = 0;
337
338  // Scan for the appropriate larger type to use.
339  while (1) {
340    NewOutTy = (MVT::ValueType)(NewOutTy+1);
341    assert(MVT::isInteger(NewOutTy) && "Ran out of possibilities!");
342
343    // If the target supports FP_TO_SINT returning this type, use it.
344    switch (TLI.getOperationAction(ISD::FP_TO_SINT, NewOutTy)) {
345    default: break;
346    case TargetLowering::Legal:
347      if (!TLI.isTypeLegal(NewOutTy))
348        break;  // Can't use this datatype.
349      // FALL THROUGH.
350    case TargetLowering::Custom:
351      OpToUse = ISD::FP_TO_SINT;
352      break;
353    }
354    if (OpToUse) break;
355
356    // If the target supports FP_TO_UINT of this type, use it.
357    switch (TLI.getOperationAction(ISD::FP_TO_UINT, NewOutTy)) {
358    default: break;
359    case TargetLowering::Legal:
360      if (!TLI.isTypeLegal(NewOutTy))
361        break;  // Can't use this datatype.
362      // FALL THROUGH.
363    case TargetLowering::Custom:
364      OpToUse = ISD::FP_TO_UINT;
365      break;
366    }
367    if (OpToUse) break;
368
369    // Otherwise, try a larger type.
370  }
371
372  // Make sure to legalize any nodes we create here in the next pass.
373  NeedsAnotherIteration = true;
374
375  // Okay, we found the operation and type to use.  Truncate the result of the
376  // extended FP_TO_*INT operation to the desired size.
377  return DAG.getNode(ISD::TRUNCATE, DestVT,
378                     DAG.getNode(OpToUse, NewOutTy, LegalOp));
379}
380
381/// ComputeTopDownOrdering - Add the specified node to the Order list if it has
382/// not been visited yet and if all of its operands have already been visited.
383static void ComputeTopDownOrdering(SDNode *N, std::vector<SDNode*> &Order,
384                                   std::map<SDNode*, unsigned> &Visited) {
385  if (++Visited[N] != N->getNumOperands())
386    return;  // Haven't visited all operands yet
387
388  Order.push_back(N);
389
390  if (N->hasOneUse()) { // Tail recurse in common case.
391    ComputeTopDownOrdering(*N->use_begin(), Order, Visited);
392    return;
393  }
394
395  // Now that we have N in, add anything that uses it if all of their operands
396  // are now done.
397  for (SDNode::use_iterator UI = N->use_begin(), E = N->use_end(); UI != E;++UI)
398    ComputeTopDownOrdering(*UI, Order, Visited);
399}
400
401
402void SelectionDAGLegalize::LegalizeDAG() {
403  // The legalize process is inherently a bottom-up recursive process (users
404  // legalize their uses before themselves).  Given infinite stack space, we
405  // could just start legalizing on the root and traverse the whole graph.  In
406  // practice however, this causes us to run out of stack space on large basic
407  // blocks.  To avoid this problem, compute an ordering of the nodes where each
408  // node is only legalized after all of its operands are legalized.
409  std::map<SDNode*, unsigned> Visited;
410  std::vector<SDNode*> Order;
411
412  // Compute ordering from all of the leaves in the graphs, those (like the
413  // entry node) that have no operands.
414  for (SelectionDAG::allnodes_iterator I = DAG.allnodes_begin(),
415       E = DAG.allnodes_end(); I != E; ++I) {
416    if (I->getNumOperands() == 0) {
417      Visited[I] = 0 - 1U;
418      ComputeTopDownOrdering(I, Order, Visited);
419    }
420  }
421
422  assert(Order.size() == Visited.size() &&
423         Order.size() ==
424            (unsigned)std::distance(DAG.allnodes_begin(), DAG.allnodes_end()) &&
425         "Error: DAG is cyclic!");
426  Visited.clear();
427
428  for (unsigned i = 0, e = Order.size(); i != e; ++i) {
429    SDNode *N = Order[i];
430    switch (getTypeAction(N->getValueType(0))) {
431    default: assert(0 && "Bad type action!");
432    case Legal:
433      LegalizeOp(SDOperand(N, 0));
434      break;
435    case Promote:
436      PromoteOp(SDOperand(N, 0));
437      break;
438    case Expand: {
439      SDOperand X, Y;
440      ExpandOp(SDOperand(N, 0), X, Y);
441      break;
442    }
443    }
444  }
445
446  // Finally, it's possible the root changed.  Get the new root.
447  SDOperand OldRoot = DAG.getRoot();
448  assert(LegalizedNodes.count(OldRoot) && "Root didn't get legalized?");
449  DAG.setRoot(LegalizedNodes[OldRoot]);
450
451  ExpandedNodes.clear();
452  LegalizedNodes.clear();
453  PromotedNodes.clear();
454
455  // Remove dead nodes now.
456  DAG.RemoveDeadNodes(OldRoot.Val);
457}
458
459SDOperand SelectionDAGLegalize::LegalizeOp(SDOperand Op) {
460  assert(isTypeLegal(Op.getValueType()) &&
461         "Caller should expand or promote operands that are not legal!");
462  SDNode *Node = Op.Val;
463
464  // If this operation defines any values that cannot be represented in a
465  // register on this target, make sure to expand or promote them.
466  if (Node->getNumValues() > 1) {
467    for (unsigned i = 0, e = Node->getNumValues(); i != e; ++i)
468      switch (getTypeAction(Node->getValueType(i))) {
469      case Legal: break;  // Nothing to do.
470      case Expand: {
471        SDOperand T1, T2;
472        ExpandOp(Op.getValue(i), T1, T2);
473        assert(LegalizedNodes.count(Op) &&
474               "Expansion didn't add legal operands!");
475        return LegalizedNodes[Op];
476      }
477      case Promote:
478        PromoteOp(Op.getValue(i));
479        assert(LegalizedNodes.count(Op) &&
480               "Expansion didn't add legal operands!");
481        return LegalizedNodes[Op];
482      }
483  }
484
485  // Note that LegalizeOp may be reentered even from single-use nodes, which
486  // means that we always must cache transformed nodes.
487  std::map<SDOperand, SDOperand>::iterator I = LegalizedNodes.find(Op);
488  if (I != LegalizedNodes.end()) return I->second;
489
490  SDOperand Tmp1, Tmp2, Tmp3, Tmp4;
491
492  SDOperand Result = Op;
493
494  switch (Node->getOpcode()) {
495  default:
496    if (Node->getOpcode() >= ISD::BUILTIN_OP_END) {
497      // If this is a target node, legalize it by legalizing the operands then
498      // passing it through.
499      std::vector<SDOperand> Ops;
500      bool Changed = false;
501      for (unsigned i = 0, e = Node->getNumOperands(); i != e; ++i) {
502        Ops.push_back(LegalizeOp(Node->getOperand(i)));
503        Changed = Changed || Node->getOperand(i) != Ops.back();
504      }
505      if (Changed)
506        if (Node->getNumValues() == 1)
507          Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Ops);
508        else {
509          std::vector<MVT::ValueType> VTs(Node->value_begin(),
510                                          Node->value_end());
511          Result = DAG.getNode(Node->getOpcode(), VTs, Ops);
512        }
513
514      for (unsigned i = 0, e = Node->getNumValues(); i != e; ++i)
515        AddLegalizedOperand(Op.getValue(i), Result.getValue(i));
516      return Result.getValue(Op.ResNo);
517    }
518    // Otherwise this is an unhandled builtin node.  splat.
519    std::cerr << "NODE: "; Node->dump(); std::cerr << "\n";
520    assert(0 && "Do not know how to legalize this operator!");
521    abort();
522  case ISD::EntryToken:
523  case ISD::FrameIndex:
524  case ISD::TargetFrameIndex:
525  case ISD::Register:
526  case ISD::TargetConstant:
527  case ISD::GlobalAddress:
528  case ISD::ExternalSymbol:
529  case ISD::ConstantPool:           // Nothing to do.
530  case ISD::BasicBlock:
531  case ISD::CONDCODE:
532  case ISD::VALUETYPE:
533  case ISD::SRCVALUE:
534    assert(isTypeLegal(Node->getValueType(0)) && "This must be legal!");
535    break;
536  case ISD::AssertSext:
537  case ISD::AssertZext:
538    Tmp1 = LegalizeOp(Node->getOperand(0));
539    if (Tmp1 != Node->getOperand(0))
540      Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1,
541                           Node->getOperand(1));
542    break;
543  case ISD::CopyFromReg:
544    Tmp1 = LegalizeOp(Node->getOperand(0));
545    if (Tmp1 != Node->getOperand(0))
546      Result = DAG.getCopyFromReg(Tmp1,
547                            cast<RegisterSDNode>(Node->getOperand(1))->getReg(),
548                                  Node->getValueType(0));
549    else
550      Result = Op.getValue(0);
551
552    // Since CopyFromReg produces two values, make sure to remember that we
553    // legalized both of them.
554    AddLegalizedOperand(Op.getValue(0), Result);
555    AddLegalizedOperand(Op.getValue(1), Result.getValue(1));
556    return Result.getValue(Op.ResNo);
557  case ISD::ImplicitDef:
558    Tmp1 = LegalizeOp(Node->getOperand(0));
559    if (Tmp1 != Node->getOperand(0))
560      Result = DAG.getNode(ISD::ImplicitDef, MVT::Other,
561                           Tmp1, Node->getOperand(1));
562    break;
563  case ISD::UNDEF: {
564    MVT::ValueType VT = Op.getValueType();
565    switch (TLI.getOperationAction(ISD::UNDEF, VT)) {
566    default: assert(0 && "This action is not supported yet!");
567    case TargetLowering::Expand:
568    case TargetLowering::Promote:
569      if (MVT::isInteger(VT))
570        Result = DAG.getConstant(0, VT);
571      else if (MVT::isFloatingPoint(VT))
572        Result = DAG.getConstantFP(0, VT);
573      else
574        assert(0 && "Unknown value type!");
575      break;
576    case TargetLowering::Legal:
577      break;
578    }
579    break;
580  }
581  case ISD::Constant:
582    // We know we don't need to expand constants here, constants only have one
583    // value and we check that it is fine above.
584
585    // FIXME: Maybe we should handle things like targets that don't support full
586    // 32-bit immediates?
587    break;
588  case ISD::ConstantFP: {
589    // Spill FP immediates to the constant pool if the target cannot directly
590    // codegen them.  Targets often have some immediate values that can be
591    // efficiently generated into an FP register without a load.  We explicitly
592    // leave these constants as ConstantFP nodes for the target to deal with.
593
594    ConstantFPSDNode *CFP = cast<ConstantFPSDNode>(Node);
595
596    // Check to see if this FP immediate is already legal.
597    bool isLegal = false;
598    for (TargetLowering::legal_fpimm_iterator I = TLI.legal_fpimm_begin(),
599           E = TLI.legal_fpimm_end(); I != E; ++I)
600      if (CFP->isExactlyValue(*I)) {
601        isLegal = true;
602        break;
603      }
604
605    if (!isLegal) {
606      // Otherwise we need to spill the constant to memory.
607      bool Extend = false;
608
609      // If a FP immediate is precise when represented as a float, we put it
610      // into the constant pool as a float, even if it's is statically typed
611      // as a double.
612      MVT::ValueType VT = CFP->getValueType(0);
613      bool isDouble = VT == MVT::f64;
614      ConstantFP *LLVMC = ConstantFP::get(isDouble ? Type::DoubleTy :
615                                             Type::FloatTy, CFP->getValue());
616      if (isDouble && CFP->isExactlyValue((float)CFP->getValue()) &&
617          // Only do this if the target has a native EXTLOAD instruction from
618          // f32.
619          TLI.isOperationLegal(ISD::EXTLOAD, MVT::f32)) {
620        LLVMC = cast<ConstantFP>(ConstantExpr::getCast(LLVMC, Type::FloatTy));
621        VT = MVT::f32;
622        Extend = true;
623      }
624
625      SDOperand CPIdx = DAG.getConstantPool(LLVMC, TLI.getPointerTy());
626      if (Extend) {
627        Result = DAG.getExtLoad(ISD::EXTLOAD, MVT::f64, DAG.getEntryNode(),
628                                CPIdx, DAG.getSrcValue(NULL), MVT::f32);
629      } else {
630        Result = DAG.getLoad(VT, DAG.getEntryNode(), CPIdx,
631                             DAG.getSrcValue(NULL));
632      }
633    }
634    break;
635  }
636  case ISD::TokenFactor:
637    if (Node->getNumOperands() == 2) {
638      bool Changed = false;
639      SDOperand Op0 = LegalizeOp(Node->getOperand(0));
640      SDOperand Op1 = LegalizeOp(Node->getOperand(1));
641      if (Op0 != Node->getOperand(0) || Op1 != Node->getOperand(1))
642        Result = DAG.getNode(ISD::TokenFactor, MVT::Other, Op0, Op1);
643    } else {
644      std::vector<SDOperand> Ops;
645      bool Changed = false;
646      // Legalize the operands.
647      for (unsigned i = 0, e = Node->getNumOperands(); i != e; ++i) {
648        SDOperand Op = Node->getOperand(i);
649        Ops.push_back(LegalizeOp(Op));
650        Changed |= Ops[i] != Op;
651      }
652      if (Changed)
653        Result = DAG.getNode(ISD::TokenFactor, MVT::Other, Ops);
654    }
655    break;
656
657  case ISD::CALLSEQ_START:
658  case ISD::CALLSEQ_END:
659    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
660    // Do not try to legalize the target-specific arguments (#1+)
661    Tmp2 = Node->getOperand(0);
662    if (Tmp1 != Tmp2)
663      Node->setAdjCallChain(Tmp1);
664
665    // Note that we do not create new CALLSEQ_DOWN/UP nodes here.  These
666    // nodes are treated specially and are mutated in place.  This makes the dag
667    // legalization process more efficient and also makes libcall insertion
668    // easier.
669    break;
670  case ISD::DYNAMIC_STACKALLOC:
671    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
672    Tmp2 = LegalizeOp(Node->getOperand(1));  // Legalize the size.
673    Tmp3 = LegalizeOp(Node->getOperand(2));  // Legalize the alignment.
674    if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) ||
675        Tmp3 != Node->getOperand(2)) {
676      std::vector<MVT::ValueType> VTs(Node->value_begin(), Node->value_end());
677      std::vector<SDOperand> Ops;
678      Ops.push_back(Tmp1); Ops.push_back(Tmp2); Ops.push_back(Tmp3);
679      Result = DAG.getNode(ISD::DYNAMIC_STACKALLOC, VTs, Ops);
680    } else
681      Result = Op.getValue(0);
682
683    // Since this op produces two values, make sure to remember that we
684    // legalized both of them.
685    AddLegalizedOperand(SDOperand(Node, 0), Result);
686    AddLegalizedOperand(SDOperand(Node, 1), Result.getValue(1));
687    return Result.getValue(Op.ResNo);
688
689  case ISD::TAILCALL:
690  case ISD::CALL: {
691    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
692    Tmp2 = LegalizeOp(Node->getOperand(1));  // Legalize the callee.
693
694    bool Changed = false;
695    std::vector<SDOperand> Ops;
696    for (unsigned i = 2, e = Node->getNumOperands(); i != e; ++i) {
697      Ops.push_back(LegalizeOp(Node->getOperand(i)));
698      Changed |= Ops.back() != Node->getOperand(i);
699    }
700
701    if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) || Changed) {
702      std::vector<MVT::ValueType> RetTyVTs;
703      RetTyVTs.reserve(Node->getNumValues());
704      for (unsigned i = 0, e = Node->getNumValues(); i != e; ++i)
705        RetTyVTs.push_back(Node->getValueType(i));
706      Result = SDOperand(DAG.getCall(RetTyVTs, Tmp1, Tmp2, Ops,
707                                     Node->getOpcode() == ISD::TAILCALL), 0);
708    } else {
709      Result = Result.getValue(0);
710    }
711    // Since calls produce multiple values, make sure to remember that we
712    // legalized all of them.
713    for (unsigned i = 0, e = Node->getNumValues(); i != e; ++i)
714      AddLegalizedOperand(SDOperand(Node, i), Result.getValue(i));
715    return Result.getValue(Op.ResNo);
716  }
717  case ISD::BR:
718    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
719    if (Tmp1 != Node->getOperand(0))
720      Result = DAG.getNode(ISD::BR, MVT::Other, Tmp1, Node->getOperand(1));
721    break;
722
723  case ISD::BRCOND:
724    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
725
726    switch (getTypeAction(Node->getOperand(1).getValueType())) {
727    case Expand: assert(0 && "It's impossible to expand bools");
728    case Legal:
729      Tmp2 = LegalizeOp(Node->getOperand(1)); // Legalize the condition.
730      break;
731    case Promote:
732      Tmp2 = PromoteOp(Node->getOperand(1));  // Promote the condition.
733      break;
734    }
735
736    switch (TLI.getOperationAction(ISD::BRCOND, MVT::Other)) {
737    default: assert(0 && "This action is not supported yet!");
738    case TargetLowering::Expand:
739      // Expand brcond's setcc into its constituent parts and create a BR_CC
740      // Node.
741      if (Tmp2.getOpcode() == ISD::SETCC) {
742        Result = DAG.getNode(ISD::BR_CC, MVT::Other, Tmp1, Tmp2.getOperand(2),
743                             Tmp2.getOperand(0), Tmp2.getOperand(1),
744                             Node->getOperand(2));
745      } else {
746        // Make sure the condition is either zero or one.  It may have been
747        // promoted from something else.
748        Tmp2 = DAG.getZeroExtendInReg(Tmp2, MVT::i1);
749
750        Result = DAG.getNode(ISD::BR_CC, MVT::Other, Tmp1,
751                             DAG.getCondCode(ISD::SETNE), Tmp2,
752                             DAG.getConstant(0, Tmp2.getValueType()),
753                             Node->getOperand(2));
754      }
755      break;
756    case TargetLowering::Legal:
757      // Basic block destination (Op#2) is always legal.
758      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1))
759        Result = DAG.getNode(ISD::BRCOND, MVT::Other, Tmp1, Tmp2,
760                             Node->getOperand(2));
761        break;
762    }
763    break;
764  case ISD::BR_CC:
765    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
766
767    if (isTypeLegal(Node->getOperand(2).getValueType())) {
768      Tmp2 = LegalizeOp(Node->getOperand(2));   // LHS
769      Tmp3 = LegalizeOp(Node->getOperand(3));   // RHS
770      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(2) ||
771          Tmp3 != Node->getOperand(3)) {
772        Result = DAG.getNode(ISD::BR_CC, MVT::Other, Tmp1, Node->getOperand(1),
773                             Tmp2, Tmp3, Node->getOperand(4));
774      }
775      break;
776    } else {
777      Tmp2 = LegalizeOp(DAG.getNode(ISD::SETCC, TLI.getSetCCResultTy(),
778                                    Node->getOperand(2),  // LHS
779                                    Node->getOperand(3),  // RHS
780                                    Node->getOperand(1)));
781      // If we get a SETCC back from legalizing the SETCC node we just
782      // created, then use its LHS, RHS, and CC directly in creating a new
783      // node.  Otherwise, select between the true and false value based on
784      // comparing the result of the legalized with zero.
785      if (Tmp2.getOpcode() == ISD::SETCC) {
786        Result = DAG.getNode(ISD::BR_CC, MVT::Other, Tmp1, Tmp2.getOperand(2),
787                             Tmp2.getOperand(0), Tmp2.getOperand(1),
788                             Node->getOperand(4));
789      } else {
790        Result = DAG.getNode(ISD::BR_CC, MVT::Other, Tmp1,
791                             DAG.getCondCode(ISD::SETNE),
792                             Tmp2, DAG.getConstant(0, Tmp2.getValueType()),
793                             Node->getOperand(4));
794      }
795    }
796    break;
797  case ISD::BRCONDTWOWAY:
798    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
799    switch (getTypeAction(Node->getOperand(1).getValueType())) {
800    case Expand: assert(0 && "It's impossible to expand bools");
801    case Legal:
802      Tmp2 = LegalizeOp(Node->getOperand(1)); // Legalize the condition.
803      break;
804    case Promote:
805      Tmp2 = PromoteOp(Node->getOperand(1));  // Promote the condition.
806      break;
807    }
808    // If this target does not support BRCONDTWOWAY, lower it to a BRCOND/BR
809    // pair.
810    switch (TLI.getOperationAction(ISD::BRCONDTWOWAY, MVT::Other)) {
811    case TargetLowering::Promote:
812    default: assert(0 && "This action is not supported yet!");
813    case TargetLowering::Legal:
814      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1)) {
815        std::vector<SDOperand> Ops;
816        Ops.push_back(Tmp1);
817        Ops.push_back(Tmp2);
818        Ops.push_back(Node->getOperand(2));
819        Ops.push_back(Node->getOperand(3));
820        Result = DAG.getNode(ISD::BRCONDTWOWAY, MVT::Other, Ops);
821      }
822      break;
823    case TargetLowering::Expand:
824      // If BRTWOWAY_CC is legal for this target, then simply expand this node
825      // to that.  Otherwise, skip BRTWOWAY_CC and expand directly to a
826      // BRCOND/BR pair.
827      if (TLI.isOperationLegal(ISD::BRTWOWAY_CC, MVT::Other)) {
828        if (Tmp2.getOpcode() == ISD::SETCC) {
829          Result = DAG.getBR2Way_CC(Tmp1, Tmp2.getOperand(2),
830                                    Tmp2.getOperand(0), Tmp2.getOperand(1),
831                                    Node->getOperand(2), Node->getOperand(3));
832        } else {
833          Result = DAG.getBR2Way_CC(Tmp1, DAG.getCondCode(ISD::SETNE), Tmp2,
834                                    DAG.getConstant(0, Tmp2.getValueType()),
835                                    Node->getOperand(2), Node->getOperand(3));
836        }
837      } else {
838        Result = DAG.getNode(ISD::BRCOND, MVT::Other, Tmp1, Tmp2,
839                           Node->getOperand(2));
840        Result = DAG.getNode(ISD::BR, MVT::Other, Result, Node->getOperand(3));
841      }
842      break;
843    }
844    break;
845  case ISD::BRTWOWAY_CC:
846    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
847    if (isTypeLegal(Node->getOperand(2).getValueType())) {
848      Tmp2 = LegalizeOp(Node->getOperand(2));   // LHS
849      Tmp3 = LegalizeOp(Node->getOperand(3));   // RHS
850      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(2) ||
851          Tmp3 != Node->getOperand(3)) {
852        Result = DAG.getBR2Way_CC(Tmp1, Node->getOperand(1), Tmp2, Tmp3,
853                                  Node->getOperand(4), Node->getOperand(5));
854      }
855      break;
856    } else {
857      Tmp2 = LegalizeOp(DAG.getNode(ISD::SETCC, TLI.getSetCCResultTy(),
858                                    Node->getOperand(2),  // LHS
859                                    Node->getOperand(3),  // RHS
860                                    Node->getOperand(1)));
861      // If this target does not support BRTWOWAY_CC, lower it to a BRCOND/BR
862      // pair.
863      switch (TLI.getOperationAction(ISD::BRTWOWAY_CC, MVT::Other)) {
864      default: assert(0 && "This action is not supported yet!");
865      case TargetLowering::Legal:
866        // If we get a SETCC back from legalizing the SETCC node we just
867        // created, then use its LHS, RHS, and CC directly in creating a new
868        // node.  Otherwise, select between the true and false value based on
869        // comparing the result of the legalized with zero.
870        if (Tmp2.getOpcode() == ISD::SETCC) {
871          Result = DAG.getBR2Way_CC(Tmp1, Tmp2.getOperand(2),
872                                    Tmp2.getOperand(0), Tmp2.getOperand(1),
873                                    Node->getOperand(4), Node->getOperand(5));
874        } else {
875          Result = DAG.getBR2Way_CC(Tmp1, DAG.getCondCode(ISD::SETNE), Tmp2,
876                                    DAG.getConstant(0, Tmp2.getValueType()),
877                                    Node->getOperand(4), Node->getOperand(5));
878        }
879        break;
880      case TargetLowering::Expand:
881        Result = DAG.getNode(ISD::BRCOND, MVT::Other, Tmp1, Tmp2,
882                             Node->getOperand(4));
883        Result = DAG.getNode(ISD::BR, MVT::Other, Result, Node->getOperand(5));
884        break;
885      }
886    }
887    break;
888  case ISD::LOAD:
889    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
890    Tmp2 = LegalizeOp(Node->getOperand(1));  // Legalize the pointer.
891
892    if (Tmp1 != Node->getOperand(0) ||
893        Tmp2 != Node->getOperand(1))
894      Result = DAG.getLoad(Node->getValueType(0), Tmp1, Tmp2,
895                           Node->getOperand(2));
896    else
897      Result = SDOperand(Node, 0);
898
899    // Since loads produce two values, make sure to remember that we legalized
900    // both of them.
901    AddLegalizedOperand(SDOperand(Node, 0), Result);
902    AddLegalizedOperand(SDOperand(Node, 1), Result.getValue(1));
903    return Result.getValue(Op.ResNo);
904
905  case ISD::EXTLOAD:
906  case ISD::SEXTLOAD:
907  case ISD::ZEXTLOAD: {
908    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
909    Tmp2 = LegalizeOp(Node->getOperand(1));  // Legalize the pointer.
910
911    MVT::ValueType SrcVT = cast<VTSDNode>(Node->getOperand(3))->getVT();
912    switch (TLI.getOperationAction(Node->getOpcode(), SrcVT)) {
913    default: assert(0 && "This action is not supported yet!");
914    case TargetLowering::Promote:
915      assert(SrcVT == MVT::i1 && "Can only promote EXTLOAD from i1 -> i8!");
916      Result = DAG.getExtLoad(Node->getOpcode(), Node->getValueType(0),
917                              Tmp1, Tmp2, Node->getOperand(2), MVT::i8);
918      // Since loads produce two values, make sure to remember that we legalized
919      // both of them.
920      AddLegalizedOperand(SDOperand(Node, 0), Result);
921      AddLegalizedOperand(SDOperand(Node, 1), Result.getValue(1));
922      return Result.getValue(Op.ResNo);
923
924    case TargetLowering::Legal:
925      if (Tmp1 != Node->getOperand(0) ||
926          Tmp2 != Node->getOperand(1))
927        Result = DAG.getExtLoad(Node->getOpcode(), Node->getValueType(0),
928                                Tmp1, Tmp2, Node->getOperand(2), SrcVT);
929      else
930        Result = SDOperand(Node, 0);
931
932      // Since loads produce two values, make sure to remember that we legalized
933      // both of them.
934      AddLegalizedOperand(SDOperand(Node, 0), Result);
935      AddLegalizedOperand(SDOperand(Node, 1), Result.getValue(1));
936      return Result.getValue(Op.ResNo);
937    case TargetLowering::Expand:
938      //f64 = EXTLOAD f32 should expand to LOAD, FP_EXTEND
939      if (SrcVT == MVT::f32 && Node->getValueType(0) == MVT::f64) {
940        SDOperand Load = DAG.getLoad(SrcVT, Tmp1, Tmp2, Node->getOperand(2));
941        Result = DAG.getNode(ISD::FP_EXTEND, Node->getValueType(0), Load);
942        if (Op.ResNo)
943          return Load.getValue(1);
944        return Result;
945      }
946      assert(Node->getOpcode() != ISD::EXTLOAD &&
947             "EXTLOAD should always be supported!");
948      // Turn the unsupported load into an EXTLOAD followed by an explicit
949      // zero/sign extend inreg.
950      Result = DAG.getExtLoad(ISD::EXTLOAD, Node->getValueType(0),
951                              Tmp1, Tmp2, Node->getOperand(2), SrcVT);
952      SDOperand ValRes;
953      if (Node->getOpcode() == ISD::SEXTLOAD)
954        ValRes = DAG.getNode(ISD::SIGN_EXTEND_INREG, Result.getValueType(),
955                             Result, DAG.getValueType(SrcVT));
956      else
957        ValRes = DAG.getZeroExtendInReg(Result, SrcVT);
958      AddLegalizedOperand(SDOperand(Node, 0), ValRes);
959      AddLegalizedOperand(SDOperand(Node, 1), Result.getValue(1));
960      if (Op.ResNo)
961        return Result.getValue(1);
962      return ValRes;
963    }
964    assert(0 && "Unreachable");
965  }
966  case ISD::EXTRACT_ELEMENT: {
967    MVT::ValueType OpTy = Node->getOperand(0).getValueType();
968    switch (getTypeAction(OpTy)) {
969    default:
970      assert(0 && "EXTRACT_ELEMENT action for type unimplemented!");
971      break;
972    case Legal:
973      if (cast<ConstantSDNode>(Node->getOperand(1))->getValue()) {
974        // 1 -> Hi
975        Result = DAG.getNode(ISD::SRL, OpTy, Node->getOperand(0),
976                             DAG.getConstant(MVT::getSizeInBits(OpTy)/2,
977                                             TLI.getShiftAmountTy()));
978        Result = DAG.getNode(ISD::TRUNCATE, Node->getValueType(0), Result);
979      } else {
980        // 0 -> Lo
981        Result = DAG.getNode(ISD::TRUNCATE, Node->getValueType(0),
982                             Node->getOperand(0));
983      }
984      Result = LegalizeOp(Result);
985      break;
986    case Expand:
987      // Get both the low and high parts.
988      ExpandOp(Node->getOperand(0), Tmp1, Tmp2);
989      if (cast<ConstantSDNode>(Node->getOperand(1))->getValue())
990        Result = Tmp2;  // 1 -> Hi
991      else
992        Result = Tmp1;  // 0 -> Lo
993      break;
994    }
995    break;
996  }
997
998  case ISD::CopyToReg:
999    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
1000
1001    assert(isTypeLegal(Node->getOperand(2).getValueType()) &&
1002           "Register type must be legal!");
1003    // Legalize the incoming value (must be legal).
1004    Tmp2 = LegalizeOp(Node->getOperand(2));
1005    if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(2))
1006      Result = DAG.getNode(ISD::CopyToReg, MVT::Other, Tmp1,
1007                           Node->getOperand(1), Tmp2);
1008    break;
1009
1010  case ISD::RET:
1011    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
1012    switch (Node->getNumOperands()) {
1013    case 2:  // ret val
1014      switch (getTypeAction(Node->getOperand(1).getValueType())) {
1015      case Legal:
1016        Tmp2 = LegalizeOp(Node->getOperand(1));
1017        if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1))
1018          Result = DAG.getNode(ISD::RET, MVT::Other, Tmp1, Tmp2);
1019        break;
1020      case Expand: {
1021        SDOperand Lo, Hi;
1022        ExpandOp(Node->getOperand(1), Lo, Hi);
1023        Result = DAG.getNode(ISD::RET, MVT::Other, Tmp1, Lo, Hi);
1024        break;
1025      }
1026      case Promote:
1027        Tmp2 = PromoteOp(Node->getOperand(1));
1028        Result = DAG.getNode(ISD::RET, MVT::Other, Tmp1, Tmp2);
1029        break;
1030      }
1031      break;
1032    case 1:  // ret void
1033      if (Tmp1 != Node->getOperand(0))
1034        Result = DAG.getNode(ISD::RET, MVT::Other, Tmp1);
1035      break;
1036    default: { // ret <values>
1037      std::vector<SDOperand> NewValues;
1038      NewValues.push_back(Tmp1);
1039      for (unsigned i = 1, e = Node->getNumOperands(); i != e; ++i)
1040        switch (getTypeAction(Node->getOperand(i).getValueType())) {
1041        case Legal:
1042          NewValues.push_back(LegalizeOp(Node->getOperand(i)));
1043          break;
1044        case Expand: {
1045          SDOperand Lo, Hi;
1046          ExpandOp(Node->getOperand(i), Lo, Hi);
1047          NewValues.push_back(Lo);
1048          NewValues.push_back(Hi);
1049          break;
1050        }
1051        case Promote:
1052          assert(0 && "Can't promote multiple return value yet!");
1053        }
1054      Result = DAG.getNode(ISD::RET, MVT::Other, NewValues);
1055      break;
1056    }
1057    }
1058    break;
1059  case ISD::STORE:
1060    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
1061    Tmp2 = LegalizeOp(Node->getOperand(2));  // Legalize the pointer.
1062
1063    // Turn 'store float 1.0, Ptr' -> 'store int 0x12345678, Ptr'
1064    if (ConstantFPSDNode *CFP =dyn_cast<ConstantFPSDNode>(Node->getOperand(1))){
1065      if (CFP->getValueType(0) == MVT::f32) {
1066        Result = DAG.getNode(ISD::STORE, MVT::Other, Tmp1,
1067                             DAG.getConstant(FloatToBits(CFP->getValue()),
1068                                             MVT::i32),
1069                             Tmp2,
1070                             Node->getOperand(3));
1071      } else {
1072        assert(CFP->getValueType(0) == MVT::f64 && "Unknown FP type!");
1073        Result = DAG.getNode(ISD::STORE, MVT::Other, Tmp1,
1074                             DAG.getConstant(DoubleToBits(CFP->getValue()),
1075                                             MVT::i64),
1076                             Tmp2,
1077                             Node->getOperand(3));
1078      }
1079      Node = Result.Val;
1080    }
1081
1082    switch (getTypeAction(Node->getOperand(1).getValueType())) {
1083    case Legal: {
1084      SDOperand Val = LegalizeOp(Node->getOperand(1));
1085      if (Val != Node->getOperand(1) || Tmp1 != Node->getOperand(0) ||
1086          Tmp2 != Node->getOperand(2))
1087        Result = DAG.getNode(ISD::STORE, MVT::Other, Tmp1, Val, Tmp2,
1088                             Node->getOperand(3));
1089      break;
1090    }
1091    case Promote:
1092      // Truncate the value and store the result.
1093      Tmp3 = PromoteOp(Node->getOperand(1));
1094      Result = DAG.getNode(ISD::TRUNCSTORE, MVT::Other, Tmp1, Tmp3, Tmp2,
1095                           Node->getOperand(3),
1096                          DAG.getValueType(Node->getOperand(1).getValueType()));
1097      break;
1098
1099    case Expand:
1100      SDOperand Lo, Hi;
1101      ExpandOp(Node->getOperand(1), Lo, Hi);
1102
1103      if (!TLI.isLittleEndian())
1104        std::swap(Lo, Hi);
1105
1106      Lo = DAG.getNode(ISD::STORE, MVT::Other, Tmp1, Lo, Tmp2,
1107                       Node->getOperand(3));
1108      unsigned IncrementSize = MVT::getSizeInBits(Hi.getValueType())/8;
1109      Tmp2 = DAG.getNode(ISD::ADD, Tmp2.getValueType(), Tmp2,
1110                         getIntPtrConstant(IncrementSize));
1111      assert(isTypeLegal(Tmp2.getValueType()) &&
1112             "Pointers must be legal!");
1113      //Again, claiming both parts of the store came form the same Instr
1114      Hi = DAG.getNode(ISD::STORE, MVT::Other, Tmp1, Hi, Tmp2,
1115                       Node->getOperand(3));
1116      Result = DAG.getNode(ISD::TokenFactor, MVT::Other, Lo, Hi);
1117      break;
1118    }
1119    break;
1120  case ISD::PCMARKER:
1121    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
1122    if (Tmp1 != Node->getOperand(0))
1123      Result = DAG.getNode(ISD::PCMARKER, MVT::Other, Tmp1,Node->getOperand(1));
1124    break;
1125  case ISD::TRUNCSTORE:
1126    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
1127    Tmp3 = LegalizeOp(Node->getOperand(2));  // Legalize the pointer.
1128
1129    switch (getTypeAction(Node->getOperand(1).getValueType())) {
1130    case Legal:
1131      Tmp2 = LegalizeOp(Node->getOperand(1));
1132
1133      // The only promote case we handle is TRUNCSTORE:i1 X into
1134      //   -> TRUNCSTORE:i8 (and X, 1)
1135      if (cast<VTSDNode>(Node->getOperand(4))->getVT() == MVT::i1 &&
1136          TLI.getOperationAction(ISD::TRUNCSTORE, MVT::i1) ==
1137                TargetLowering::Promote) {
1138        // Promote the bool to a mask then store.
1139        Tmp2 = DAG.getNode(ISD::AND, Tmp2.getValueType(), Tmp2,
1140                           DAG.getConstant(1, Tmp2.getValueType()));
1141        Result = DAG.getNode(ISD::TRUNCSTORE, MVT::Other, Tmp1, Tmp2, Tmp3,
1142                             Node->getOperand(3), DAG.getValueType(MVT::i8));
1143
1144      } else if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) ||
1145                 Tmp3 != Node->getOperand(2)) {
1146        Result = DAG.getNode(ISD::TRUNCSTORE, MVT::Other, Tmp1, Tmp2, Tmp3,
1147                             Node->getOperand(3), Node->getOperand(4));
1148      }
1149      break;
1150    case Promote:
1151    case Expand:
1152      assert(0 && "Cannot handle illegal TRUNCSTORE yet!");
1153    }
1154    break;
1155  case ISD::SELECT:
1156    switch (getTypeAction(Node->getOperand(0).getValueType())) {
1157    case Expand: assert(0 && "It's impossible to expand bools");
1158    case Legal:
1159      Tmp1 = LegalizeOp(Node->getOperand(0)); // Legalize the condition.
1160      break;
1161    case Promote:
1162      Tmp1 = PromoteOp(Node->getOperand(0));  // Promote the condition.
1163      break;
1164    }
1165    Tmp2 = LegalizeOp(Node->getOperand(1));   // TrueVal
1166    Tmp3 = LegalizeOp(Node->getOperand(2));   // FalseVal
1167
1168    switch (TLI.getOperationAction(ISD::SELECT, Tmp2.getValueType())) {
1169    default: assert(0 && "This action is not supported yet!");
1170    case TargetLowering::Expand:
1171      if (Tmp1.getOpcode() == ISD::SETCC) {
1172        Result = DAG.getSelectCC(Tmp1.getOperand(0), Tmp1.getOperand(1),
1173                              Tmp2, Tmp3,
1174                              cast<CondCodeSDNode>(Tmp1.getOperand(2))->get());
1175      } else {
1176        // Make sure the condition is either zero or one.  It may have been
1177        // promoted from something else.
1178        Tmp1 = DAG.getZeroExtendInReg(Tmp1, MVT::i1);
1179        Result = DAG.getSelectCC(Tmp1,
1180                                 DAG.getConstant(0, Tmp1.getValueType()),
1181                                 Tmp2, Tmp3, ISD::SETNE);
1182      }
1183      break;
1184    case TargetLowering::Legal:
1185      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) ||
1186          Tmp3 != Node->getOperand(2))
1187        Result = DAG.getNode(ISD::SELECT, Node->getValueType(0),
1188                             Tmp1, Tmp2, Tmp3);
1189      break;
1190    case TargetLowering::Promote: {
1191      MVT::ValueType NVT =
1192        TLI.getTypeToPromoteTo(ISD::SELECT, Tmp2.getValueType());
1193      unsigned ExtOp, TruncOp;
1194      if (MVT::isInteger(Tmp2.getValueType())) {
1195        ExtOp = ISD::ANY_EXTEND;
1196        TruncOp  = ISD::TRUNCATE;
1197      } else {
1198        ExtOp = ISD::FP_EXTEND;
1199        TruncOp  = ISD::FP_ROUND;
1200      }
1201      // Promote each of the values to the new type.
1202      Tmp2 = DAG.getNode(ExtOp, NVT, Tmp2);
1203      Tmp3 = DAG.getNode(ExtOp, NVT, Tmp3);
1204      // Perform the larger operation, then round down.
1205      Result = DAG.getNode(ISD::SELECT, NVT, Tmp1, Tmp2,Tmp3);
1206      Result = DAG.getNode(TruncOp, Node->getValueType(0), Result);
1207      break;
1208    }
1209    }
1210    break;
1211  case ISD::SELECT_CC:
1212    Tmp3 = LegalizeOp(Node->getOperand(2));   // True
1213    Tmp4 = LegalizeOp(Node->getOperand(3));   // False
1214
1215    if (isTypeLegal(Node->getOperand(0).getValueType())) {
1216      // Everything is legal, see if we should expand this op or something.
1217      switch (TLI.getOperationAction(ISD::SELECT_CC,
1218                                     Node->getOperand(0).getValueType())) {
1219      default: assert(0 && "This action is not supported yet!");
1220      case TargetLowering::Custom: {
1221        SDOperand Tmp =
1222          TLI.LowerOperation(DAG.getNode(ISD::SELECT_CC, Node->getValueType(0),
1223                                         Node->getOperand(0),
1224                                         Node->getOperand(1), Tmp3, Tmp4,
1225                                         Node->getOperand(4)), DAG);
1226        if (Tmp.Val) {
1227          Result = LegalizeOp(Tmp);
1228          break;
1229        }
1230      } // FALLTHROUGH if the target can't lower this operation after all.
1231      case TargetLowering::Legal:
1232        Tmp1 = LegalizeOp(Node->getOperand(0));   // LHS
1233        Tmp2 = LegalizeOp(Node->getOperand(1));   // RHS
1234        if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) ||
1235            Tmp3 != Node->getOperand(2) || Tmp4 != Node->getOperand(3)) {
1236          Result = DAG.getNode(ISD::SELECT_CC, Node->getValueType(0), Tmp1, Tmp2,
1237                               Tmp3, Tmp4, Node->getOperand(4));
1238        }
1239        break;
1240      }
1241      break;
1242    } else {
1243      Tmp1 = LegalizeOp(DAG.getNode(ISD::SETCC, TLI.getSetCCResultTy(),
1244                                    Node->getOperand(0),  // LHS
1245                                    Node->getOperand(1),  // RHS
1246                                    Node->getOperand(4)));
1247      // If we get a SETCC back from legalizing the SETCC node we just
1248      // created, then use its LHS, RHS, and CC directly in creating a new
1249      // node.  Otherwise, select between the true and false value based on
1250      // comparing the result of the legalized with zero.
1251      if (Tmp1.getOpcode() == ISD::SETCC) {
1252        Result = DAG.getNode(ISD::SELECT_CC, Tmp3.getValueType(),
1253                             Tmp1.getOperand(0), Tmp1.getOperand(1),
1254                             Tmp3, Tmp4, Tmp1.getOperand(2));
1255      } else {
1256        Result = DAG.getSelectCC(Tmp1,
1257                                 DAG.getConstant(0, Tmp1.getValueType()),
1258                                 Tmp3, Tmp4, ISD::SETNE);
1259      }
1260    }
1261    break;
1262  case ISD::SETCC:
1263    switch (getTypeAction(Node->getOperand(0).getValueType())) {
1264    case Legal:
1265      Tmp1 = LegalizeOp(Node->getOperand(0));   // LHS
1266      Tmp2 = LegalizeOp(Node->getOperand(1));   // RHS
1267      break;
1268    case Promote:
1269      Tmp1 = PromoteOp(Node->getOperand(0));   // LHS
1270      Tmp2 = PromoteOp(Node->getOperand(1));   // RHS
1271
1272      // If this is an FP compare, the operands have already been extended.
1273      if (MVT::isInteger(Node->getOperand(0).getValueType())) {
1274        MVT::ValueType VT = Node->getOperand(0).getValueType();
1275        MVT::ValueType NVT = TLI.getTypeToTransformTo(VT);
1276
1277        // Otherwise, we have to insert explicit sign or zero extends.  Note
1278        // that we could insert sign extends for ALL conditions, but zero extend
1279        // is cheaper on many machines (an AND instead of two shifts), so prefer
1280        // it.
1281        switch (cast<CondCodeSDNode>(Node->getOperand(2))->get()) {
1282        default: assert(0 && "Unknown integer comparison!");
1283        case ISD::SETEQ:
1284        case ISD::SETNE:
1285        case ISD::SETUGE:
1286        case ISD::SETUGT:
1287        case ISD::SETULE:
1288        case ISD::SETULT:
1289          // ALL of these operations will work if we either sign or zero extend
1290          // the operands (including the unsigned comparisons!).  Zero extend is
1291          // usually a simpler/cheaper operation, so prefer it.
1292          Tmp1 = DAG.getZeroExtendInReg(Tmp1, VT);
1293          Tmp2 = DAG.getZeroExtendInReg(Tmp2, VT);
1294          break;
1295        case ISD::SETGE:
1296        case ISD::SETGT:
1297        case ISD::SETLT:
1298        case ISD::SETLE:
1299          Tmp1 = DAG.getNode(ISD::SIGN_EXTEND_INREG, NVT, Tmp1,
1300                             DAG.getValueType(VT));
1301          Tmp2 = DAG.getNode(ISD::SIGN_EXTEND_INREG, NVT, Tmp2,
1302                             DAG.getValueType(VT));
1303          break;
1304        }
1305      }
1306      break;
1307    case Expand:
1308      SDOperand LHSLo, LHSHi, RHSLo, RHSHi;
1309      ExpandOp(Node->getOperand(0), LHSLo, LHSHi);
1310      ExpandOp(Node->getOperand(1), RHSLo, RHSHi);
1311      switch (cast<CondCodeSDNode>(Node->getOperand(2))->get()) {
1312      case ISD::SETEQ:
1313      case ISD::SETNE:
1314        if (RHSLo == RHSHi)
1315          if (ConstantSDNode *RHSCST = dyn_cast<ConstantSDNode>(RHSLo))
1316            if (RHSCST->isAllOnesValue()) {
1317              // Comparison to -1.
1318              Tmp1 = DAG.getNode(ISD::AND, LHSLo.getValueType(), LHSLo, LHSHi);
1319              Tmp2 = RHSLo;
1320              break;
1321            }
1322
1323        Tmp1 = DAG.getNode(ISD::XOR, LHSLo.getValueType(), LHSLo, RHSLo);
1324        Tmp2 = DAG.getNode(ISD::XOR, LHSLo.getValueType(), LHSHi, RHSHi);
1325        Tmp1 = DAG.getNode(ISD::OR, Tmp1.getValueType(), Tmp1, Tmp2);
1326        Tmp2 = DAG.getConstant(0, Tmp1.getValueType());
1327        break;
1328      default:
1329        // If this is a comparison of the sign bit, just look at the top part.
1330        // X > -1,  x < 0
1331        if (ConstantSDNode *CST = dyn_cast<ConstantSDNode>(Node->getOperand(1)))
1332          if ((cast<CondCodeSDNode>(Node->getOperand(2))->get() == ISD::SETLT &&
1333               CST->getValue() == 0) ||              // X < 0
1334              (cast<CondCodeSDNode>(Node->getOperand(2))->get() == ISD::SETGT &&
1335               (CST->isAllOnesValue()))) {            // X > -1
1336            Tmp1 = LHSHi;
1337            Tmp2 = RHSHi;
1338            break;
1339          }
1340
1341        // FIXME: This generated code sucks.
1342        ISD::CondCode LowCC;
1343        switch (cast<CondCodeSDNode>(Node->getOperand(2))->get()) {
1344        default: assert(0 && "Unknown integer setcc!");
1345        case ISD::SETLT:
1346        case ISD::SETULT: LowCC = ISD::SETULT; break;
1347        case ISD::SETGT:
1348        case ISD::SETUGT: LowCC = ISD::SETUGT; break;
1349        case ISD::SETLE:
1350        case ISD::SETULE: LowCC = ISD::SETULE; break;
1351        case ISD::SETGE:
1352        case ISD::SETUGE: LowCC = ISD::SETUGE; break;
1353        }
1354
1355        // Tmp1 = lo(op1) < lo(op2)   // Always unsigned comparison
1356        // Tmp2 = hi(op1) < hi(op2)   // Signedness depends on operands
1357        // dest = hi(op1) == hi(op2) ? Tmp1 : Tmp2;
1358
1359        // NOTE: on targets without efficient SELECT of bools, we can always use
1360        // this identity: (B1 ? B2 : B3) --> (B1 & B2)|(!B1&B3)
1361        Tmp1 = DAG.getSetCC(Node->getValueType(0), LHSLo, RHSLo, LowCC);
1362        Tmp2 = DAG.getNode(ISD::SETCC, Node->getValueType(0), LHSHi, RHSHi,
1363                           Node->getOperand(2));
1364        Result = DAG.getSetCC(Node->getValueType(0), LHSHi, RHSHi, ISD::SETEQ);
1365        Result = LegalizeOp(DAG.getNode(ISD::SELECT, Tmp1.getValueType(),
1366                                        Result, Tmp1, Tmp2));
1367        return Result;
1368      }
1369    }
1370
1371    switch(TLI.getOperationAction(ISD::SETCC, Node->getOperand(0).getValueType())) {
1372    default:
1373      assert(0 && "Cannot handle this action for SETCC yet!");
1374      break;
1375    case TargetLowering::Promote:
1376      Result = DAG.getNode(ISD::SETCC, Node->getValueType(0), Tmp1, Tmp2,
1377                           Node->getOperand(2));
1378      break;
1379    case TargetLowering::Legal:
1380      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1))
1381        Result = DAG.getNode(ISD::SETCC, Node->getValueType(0), Tmp1, Tmp2,
1382                             Node->getOperand(2));
1383      break;
1384    case TargetLowering::Expand:
1385      // Expand a setcc node into a select_cc of the same condition, lhs, and
1386      // rhs that selects between const 1 (true) and const 0 (false).
1387      MVT::ValueType VT = Node->getValueType(0);
1388      Result = DAG.getNode(ISD::SELECT_CC, VT, Tmp1, Tmp2,
1389                           DAG.getConstant(1, VT), DAG.getConstant(0, VT),
1390                           Node->getOperand(2));
1391      Result = LegalizeOp(Result);
1392      break;
1393    }
1394    break;
1395
1396  case ISD::MEMSET:
1397  case ISD::MEMCPY:
1398  case ISD::MEMMOVE: {
1399    Tmp1 = LegalizeOp(Node->getOperand(0));      // Chain
1400    Tmp2 = LegalizeOp(Node->getOperand(1));      // Pointer
1401
1402    if (Node->getOpcode() == ISD::MEMSET) {      // memset = ubyte
1403      switch (getTypeAction(Node->getOperand(2).getValueType())) {
1404      case Expand: assert(0 && "Cannot expand a byte!");
1405      case Legal:
1406        Tmp3 = LegalizeOp(Node->getOperand(2));
1407        break;
1408      case Promote:
1409        Tmp3 = PromoteOp(Node->getOperand(2));
1410        break;
1411      }
1412    } else {
1413      Tmp3 = LegalizeOp(Node->getOperand(2));    // memcpy/move = pointer,
1414    }
1415
1416    SDOperand Tmp4;
1417    switch (getTypeAction(Node->getOperand(3).getValueType())) {
1418    case Expand: {
1419      // Length is too big, just take the lo-part of the length.
1420      SDOperand HiPart;
1421      ExpandOp(Node->getOperand(3), HiPart, Tmp4);
1422      break;
1423    }
1424    case Legal:
1425      Tmp4 = LegalizeOp(Node->getOperand(3));
1426      break;
1427    case Promote:
1428      Tmp4 = PromoteOp(Node->getOperand(3));
1429      break;
1430    }
1431
1432    SDOperand Tmp5;
1433    switch (getTypeAction(Node->getOperand(4).getValueType())) {  // uint
1434    case Expand: assert(0 && "Cannot expand this yet!");
1435    case Legal:
1436      Tmp5 = LegalizeOp(Node->getOperand(4));
1437      break;
1438    case Promote:
1439      Tmp5 = PromoteOp(Node->getOperand(4));
1440      break;
1441    }
1442
1443    switch (TLI.getOperationAction(Node->getOpcode(), MVT::Other)) {
1444    default: assert(0 && "This action not implemented for this operation!");
1445    case TargetLowering::Custom: {
1446      SDOperand Tmp =
1447        TLI.LowerOperation(DAG.getNode(Node->getOpcode(), MVT::Other, Tmp1,
1448                                       Tmp2, Tmp3, Tmp4, Tmp5), DAG);
1449      if (Tmp.Val) {
1450        Result = LegalizeOp(Tmp);
1451        break;
1452      }
1453      // FALLTHROUGH if the target thinks it is legal.
1454    }
1455    case TargetLowering::Legal:
1456      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) ||
1457          Tmp3 != Node->getOperand(2) || Tmp4 != Node->getOperand(3) ||
1458          Tmp5 != Node->getOperand(4)) {
1459        std::vector<SDOperand> Ops;
1460        Ops.push_back(Tmp1); Ops.push_back(Tmp2); Ops.push_back(Tmp3);
1461        Ops.push_back(Tmp4); Ops.push_back(Tmp5);
1462        Result = DAG.getNode(Node->getOpcode(), MVT::Other, Ops);
1463      }
1464      break;
1465    case TargetLowering::Expand: {
1466      // Otherwise, the target does not support this operation.  Lower the
1467      // operation to an explicit libcall as appropriate.
1468      MVT::ValueType IntPtr = TLI.getPointerTy();
1469      const Type *IntPtrTy = TLI.getTargetData().getIntPtrType();
1470      std::vector<std::pair<SDOperand, const Type*> > Args;
1471
1472      const char *FnName = 0;
1473      if (Node->getOpcode() == ISD::MEMSET) {
1474        Args.push_back(std::make_pair(Tmp2, IntPtrTy));
1475        // Extend the ubyte argument to be an int value for the call.
1476        Tmp3 = DAG.getNode(ISD::ZERO_EXTEND, MVT::i32, Tmp3);
1477        Args.push_back(std::make_pair(Tmp3, Type::IntTy));
1478        Args.push_back(std::make_pair(Tmp4, IntPtrTy));
1479
1480        FnName = "memset";
1481      } else if (Node->getOpcode() == ISD::MEMCPY ||
1482                 Node->getOpcode() == ISD::MEMMOVE) {
1483        Args.push_back(std::make_pair(Tmp2, IntPtrTy));
1484        Args.push_back(std::make_pair(Tmp3, IntPtrTy));
1485        Args.push_back(std::make_pair(Tmp4, IntPtrTy));
1486        FnName = Node->getOpcode() == ISD::MEMMOVE ? "memmove" : "memcpy";
1487      } else {
1488        assert(0 && "Unknown op!");
1489      }
1490
1491      std::pair<SDOperand,SDOperand> CallResult =
1492        TLI.LowerCallTo(Tmp1, Type::VoidTy, false, CallingConv::C, false,
1493                        DAG.getExternalSymbol(FnName, IntPtr), Args, DAG);
1494      Result = CallResult.second;
1495      NeedsAnotherIteration = true;
1496      break;
1497    }
1498    }
1499    break;
1500  }
1501
1502  case ISD::READPORT:
1503    Tmp1 = LegalizeOp(Node->getOperand(0));
1504    Tmp2 = LegalizeOp(Node->getOperand(1));
1505
1506    if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1)) {
1507      std::vector<MVT::ValueType> VTs(Node->value_begin(), Node->value_end());
1508      std::vector<SDOperand> Ops;
1509      Ops.push_back(Tmp1);
1510      Ops.push_back(Tmp2);
1511      Result = DAG.getNode(ISD::READPORT, VTs, Ops);
1512    } else
1513      Result = SDOperand(Node, 0);
1514    // Since these produce two values, make sure to remember that we legalized
1515    // both of them.
1516    AddLegalizedOperand(SDOperand(Node, 0), Result);
1517    AddLegalizedOperand(SDOperand(Node, 1), Result.getValue(1));
1518    return Result.getValue(Op.ResNo);
1519  case ISD::WRITEPORT:
1520    Tmp1 = LegalizeOp(Node->getOperand(0));
1521    Tmp2 = LegalizeOp(Node->getOperand(1));
1522    Tmp3 = LegalizeOp(Node->getOperand(2));
1523    if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) ||
1524        Tmp3 != Node->getOperand(2))
1525      Result = DAG.getNode(Node->getOpcode(), MVT::Other, Tmp1, Tmp2, Tmp3);
1526    break;
1527
1528  case ISD::READIO:
1529    Tmp1 = LegalizeOp(Node->getOperand(0));
1530    Tmp2 = LegalizeOp(Node->getOperand(1));
1531
1532    switch (TLI.getOperationAction(Node->getOpcode(), Node->getValueType(0))) {
1533    case TargetLowering::Custom:
1534    default: assert(0 && "This action not implemented for this operation!");
1535    case TargetLowering::Legal:
1536      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1)) {
1537        std::vector<MVT::ValueType> VTs(Node->value_begin(), Node->value_end());
1538        std::vector<SDOperand> Ops;
1539        Ops.push_back(Tmp1);
1540        Ops.push_back(Tmp2);
1541        Result = DAG.getNode(ISD::READPORT, VTs, Ops);
1542      } else
1543        Result = SDOperand(Node, 0);
1544      break;
1545    case TargetLowering::Expand:
1546      // Replace this with a load from memory.
1547      Result = DAG.getLoad(Node->getValueType(0), Node->getOperand(0),
1548                           Node->getOperand(1), DAG.getSrcValue(NULL));
1549      Result = LegalizeOp(Result);
1550      break;
1551    }
1552
1553    // Since these produce two values, make sure to remember that we legalized
1554    // both of them.
1555    AddLegalizedOperand(SDOperand(Node, 0), Result);
1556    AddLegalizedOperand(SDOperand(Node, 1), Result.getValue(1));
1557    return Result.getValue(Op.ResNo);
1558
1559  case ISD::WRITEIO:
1560    Tmp1 = LegalizeOp(Node->getOperand(0));
1561    Tmp2 = LegalizeOp(Node->getOperand(1));
1562    Tmp3 = LegalizeOp(Node->getOperand(2));
1563
1564    switch (TLI.getOperationAction(Node->getOpcode(),
1565                                   Node->getOperand(1).getValueType())) {
1566    case TargetLowering::Custom:
1567    default: assert(0 && "This action not implemented for this operation!");
1568    case TargetLowering::Legal:
1569      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1) ||
1570          Tmp3 != Node->getOperand(2))
1571        Result = DAG.getNode(Node->getOpcode(), MVT::Other, Tmp1, Tmp2, Tmp3);
1572      break;
1573    case TargetLowering::Expand:
1574      // Replace this with a store to memory.
1575      Result = DAG.getNode(ISD::STORE, MVT::Other, Node->getOperand(0),
1576                           Node->getOperand(1), Node->getOperand(2),
1577                           DAG.getSrcValue(NULL));
1578      Result = LegalizeOp(Result);
1579      break;
1580    }
1581    break;
1582
1583  case ISD::ADD_PARTS:
1584  case ISD::SUB_PARTS:
1585  case ISD::SHL_PARTS:
1586  case ISD::SRA_PARTS:
1587  case ISD::SRL_PARTS: {
1588    std::vector<SDOperand> Ops;
1589    bool Changed = false;
1590    for (unsigned i = 0, e = Node->getNumOperands(); i != e; ++i) {
1591      Ops.push_back(LegalizeOp(Node->getOperand(i)));
1592      Changed |= Ops.back() != Node->getOperand(i);
1593    }
1594    if (Changed) {
1595      std::vector<MVT::ValueType> VTs(Node->value_begin(), Node->value_end());
1596      Result = DAG.getNode(Node->getOpcode(), VTs, Ops);
1597    }
1598
1599    // Since these produce multiple values, make sure to remember that we
1600    // legalized all of them.
1601    for (unsigned i = 0, e = Node->getNumValues(); i != e; ++i)
1602      AddLegalizedOperand(SDOperand(Node, i), Result.getValue(i));
1603    return Result.getValue(Op.ResNo);
1604  }
1605
1606    // Binary operators
1607  case ISD::ADD:
1608  case ISD::SUB:
1609  case ISD::MUL:
1610  case ISD::MULHS:
1611  case ISD::MULHU:
1612  case ISD::UDIV:
1613  case ISD::SDIV:
1614  case ISD::AND:
1615  case ISD::OR:
1616  case ISD::XOR:
1617  case ISD::SHL:
1618  case ISD::SRL:
1619  case ISD::SRA:
1620  case ISD::FADD:
1621  case ISD::FSUB:
1622  case ISD::FMUL:
1623  case ISD::FDIV:
1624    Tmp1 = LegalizeOp(Node->getOperand(0));   // LHS
1625    switch (getTypeAction(Node->getOperand(1).getValueType())) {
1626    case Expand: assert(0 && "Not possible");
1627    case Legal:
1628      Tmp2 = LegalizeOp(Node->getOperand(1)); // Legalize the RHS.
1629      break;
1630    case Promote:
1631      Tmp2 = PromoteOp(Node->getOperand(1));  // Promote the RHS.
1632      break;
1633    }
1634    if (Tmp1 != Node->getOperand(0) ||
1635        Tmp2 != Node->getOperand(1))
1636      Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1,Tmp2);
1637    break;
1638
1639  case ISD::BUILD_PAIR: {
1640    MVT::ValueType PairTy = Node->getValueType(0);
1641    // TODO: handle the case where the Lo and Hi operands are not of legal type
1642    Tmp1 = LegalizeOp(Node->getOperand(0));   // Lo
1643    Tmp2 = LegalizeOp(Node->getOperand(1));   // Hi
1644    switch (TLI.getOperationAction(ISD::BUILD_PAIR, PairTy)) {
1645    case TargetLowering::Legal:
1646      if (Tmp1 != Node->getOperand(0) || Tmp2 != Node->getOperand(1))
1647        Result = DAG.getNode(ISD::BUILD_PAIR, PairTy, Tmp1, Tmp2);
1648      break;
1649    case TargetLowering::Promote:
1650    case TargetLowering::Custom:
1651      assert(0 && "Cannot promote/custom this yet!");
1652    case TargetLowering::Expand:
1653      Tmp1 = DAG.getNode(ISD::ZERO_EXTEND, PairTy, Tmp1);
1654      Tmp2 = DAG.getNode(ISD::ANY_EXTEND, PairTy, Tmp2);
1655      Tmp2 = DAG.getNode(ISD::SHL, PairTy, Tmp2,
1656                         DAG.getConstant(MVT::getSizeInBits(PairTy)/2,
1657                                         TLI.getShiftAmountTy()));
1658      Result = LegalizeOp(DAG.getNode(ISD::OR, PairTy, Tmp1, Tmp2));
1659      break;
1660    }
1661    break;
1662  }
1663
1664  case ISD::UREM:
1665  case ISD::SREM:
1666  case ISD::FREM:
1667    Tmp1 = LegalizeOp(Node->getOperand(0));   // LHS
1668    Tmp2 = LegalizeOp(Node->getOperand(1));   // RHS
1669    switch (TLI.getOperationAction(Node->getOpcode(), Node->getValueType(0))) {
1670    case TargetLowering::Legal:
1671      if (Tmp1 != Node->getOperand(0) ||
1672          Tmp2 != Node->getOperand(1))
1673        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1,
1674                             Tmp2);
1675      break;
1676    case TargetLowering::Promote:
1677    case TargetLowering::Custom:
1678      assert(0 && "Cannot promote/custom handle this yet!");
1679    case TargetLowering::Expand:
1680      if (MVT::isInteger(Node->getValueType(0))) {
1681        MVT::ValueType VT = Node->getValueType(0);
1682        unsigned Opc = (Node->getOpcode() == ISD::UREM) ? ISD::UDIV : ISD::SDIV;
1683        Result = DAG.getNode(Opc, VT, Tmp1, Tmp2);
1684        Result = DAG.getNode(ISD::MUL, VT, Result, Tmp2);
1685        Result = DAG.getNode(ISD::SUB, VT, Tmp1, Result);
1686      } else {
1687        // Floating point mod -> fmod libcall.
1688        const char *FnName = Node->getValueType(0) == MVT::f32 ? "fmodf":"fmod";
1689        SDOperand Dummy;
1690        Result = ExpandLibCall(FnName, Node, Dummy);
1691      }
1692      break;
1693    }
1694    break;
1695
1696  case ISD::CTPOP:
1697  case ISD::CTTZ:
1698  case ISD::CTLZ:
1699    Tmp1 = LegalizeOp(Node->getOperand(0));   // Op
1700    switch (TLI.getOperationAction(Node->getOpcode(), Node->getValueType(0))) {
1701    case TargetLowering::Legal:
1702      if (Tmp1 != Node->getOperand(0))
1703        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
1704      break;
1705    case TargetLowering::Promote: {
1706      MVT::ValueType OVT = Tmp1.getValueType();
1707      MVT::ValueType NVT = TLI.getTypeToPromoteTo(Node->getOpcode(), OVT);
1708
1709      // Zero extend the argument.
1710      Tmp1 = DAG.getNode(ISD::ZERO_EXTEND, NVT, Tmp1);
1711      // Perform the larger operation, then subtract if needed.
1712      Tmp1 = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
1713      switch(Node->getOpcode())
1714      {
1715      case ISD::CTPOP:
1716        Result = Tmp1;
1717        break;
1718      case ISD::CTTZ:
1719        //if Tmp1 == sizeinbits(NVT) then Tmp1 = sizeinbits(Old VT)
1720        Tmp2 = DAG.getSetCC(TLI.getSetCCResultTy(), Tmp1,
1721                            DAG.getConstant(getSizeInBits(NVT), NVT),
1722                            ISD::SETEQ);
1723        Result = DAG.getNode(ISD::SELECT, NVT, Tmp2,
1724                           DAG.getConstant(getSizeInBits(OVT),NVT), Tmp1);
1725        break;
1726      case ISD::CTLZ:
1727        //Tmp1 = Tmp1 - (sizeinbits(NVT) - sizeinbits(Old VT))
1728        Result = DAG.getNode(ISD::SUB, NVT, Tmp1,
1729                             DAG.getConstant(getSizeInBits(NVT) -
1730                                             getSizeInBits(OVT), NVT));
1731        break;
1732      }
1733      break;
1734    }
1735    case TargetLowering::Custom:
1736      assert(0 && "Cannot custom handle this yet!");
1737    case TargetLowering::Expand:
1738      switch(Node->getOpcode())
1739      {
1740      case ISD::CTPOP: {
1741        static const uint64_t mask[6] = {
1742          0x5555555555555555ULL, 0x3333333333333333ULL,
1743          0x0F0F0F0F0F0F0F0FULL, 0x00FF00FF00FF00FFULL,
1744          0x0000FFFF0000FFFFULL, 0x00000000FFFFFFFFULL
1745        };
1746        MVT::ValueType VT = Tmp1.getValueType();
1747        MVT::ValueType ShVT = TLI.getShiftAmountTy();
1748        unsigned len = getSizeInBits(VT);
1749        for (unsigned i = 0; (1U << i) <= (len / 2); ++i) {
1750          //x = (x & mask[i][len/8]) + (x >> (1 << i) & mask[i][len/8])
1751          Tmp2 = DAG.getConstant(mask[i], VT);
1752          Tmp3 = DAG.getConstant(1ULL << i, ShVT);
1753          Tmp1 = DAG.getNode(ISD::ADD, VT,
1754                             DAG.getNode(ISD::AND, VT, Tmp1, Tmp2),
1755                             DAG.getNode(ISD::AND, VT,
1756                                         DAG.getNode(ISD::SRL, VT, Tmp1, Tmp3),
1757                                         Tmp2));
1758        }
1759        Result = Tmp1;
1760        break;
1761      }
1762      case ISD::CTLZ: {
1763        /* for now, we do this:
1764           x = x | (x >> 1);
1765           x = x | (x >> 2);
1766           ...
1767           x = x | (x >>16);
1768           x = x | (x >>32); // for 64-bit input
1769           return popcount(~x);
1770
1771           but see also: http://www.hackersdelight.org/HDcode/nlz.cc */
1772        MVT::ValueType VT = Tmp1.getValueType();
1773        MVT::ValueType ShVT = TLI.getShiftAmountTy();
1774        unsigned len = getSizeInBits(VT);
1775        for (unsigned i = 0; (1U << i) <= (len / 2); ++i) {
1776          Tmp3 = DAG.getConstant(1ULL << i, ShVT);
1777          Tmp1 = DAG.getNode(ISD::OR, VT, Tmp1,
1778                             DAG.getNode(ISD::SRL, VT, Tmp1, Tmp3));
1779        }
1780        Tmp3 = DAG.getNode(ISD::XOR, VT, Tmp1, DAG.getConstant(~0ULL, VT));
1781        Result = LegalizeOp(DAG.getNode(ISD::CTPOP, VT, Tmp3));
1782        break;
1783      }
1784      case ISD::CTTZ: {
1785        // for now, we use: { return popcount(~x & (x - 1)); }
1786        // unless the target has ctlz but not ctpop, in which case we use:
1787        // { return 32 - nlz(~x & (x-1)); }
1788        // see also http://www.hackersdelight.org/HDcode/ntz.cc
1789        MVT::ValueType VT = Tmp1.getValueType();
1790        Tmp2 = DAG.getConstant(~0ULL, VT);
1791        Tmp3 = DAG.getNode(ISD::AND, VT,
1792                           DAG.getNode(ISD::XOR, VT, Tmp1, Tmp2),
1793                           DAG.getNode(ISD::SUB, VT, Tmp1,
1794                                       DAG.getConstant(1, VT)));
1795        // If ISD::CTLZ is legal and CTPOP isn't, then do that instead
1796        if (!TLI.isOperationLegal(ISD::CTPOP, VT) &&
1797            TLI.isOperationLegal(ISD::CTLZ, VT)) {
1798          Result = LegalizeOp(DAG.getNode(ISD::SUB, VT,
1799                                        DAG.getConstant(getSizeInBits(VT), VT),
1800                                        DAG.getNode(ISD::CTLZ, VT, Tmp3)));
1801        } else {
1802          Result = LegalizeOp(DAG.getNode(ISD::CTPOP, VT, Tmp3));
1803        }
1804        break;
1805      }
1806      default:
1807        assert(0 && "Cannot expand this yet!");
1808        break;
1809      }
1810      break;
1811    }
1812    break;
1813
1814    // Unary operators
1815  case ISD::FABS:
1816  case ISD::FNEG:
1817  case ISD::FSQRT:
1818  case ISD::FSIN:
1819  case ISD::FCOS:
1820    Tmp1 = LegalizeOp(Node->getOperand(0));
1821    switch (TLI.getOperationAction(Node->getOpcode(), Node->getValueType(0))) {
1822    case TargetLowering::Legal:
1823      if (Tmp1 != Node->getOperand(0))
1824        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
1825      break;
1826    case TargetLowering::Promote:
1827    case TargetLowering::Custom:
1828      assert(0 && "Cannot promote/custom handle this yet!");
1829    case TargetLowering::Expand:
1830      switch(Node->getOpcode()) {
1831      case ISD::FNEG: {
1832        // Expand Y = FNEG(X) ->  Y = SUB -0.0, X
1833        Tmp2 = DAG.getConstantFP(-0.0, Node->getValueType(0));
1834        Result = LegalizeOp(DAG.getNode(ISD::FSUB, Node->getValueType(0),
1835                                        Tmp2, Tmp1));
1836        break;
1837      }
1838      case ISD::FABS: {
1839        // Expand Y = FABS(X) -> Y = (X >u 0.0) ? X : fneg(X).
1840        MVT::ValueType VT = Node->getValueType(0);
1841        Tmp2 = DAG.getConstantFP(0.0, VT);
1842        Tmp2 = DAG.getSetCC(TLI.getSetCCResultTy(), Tmp1, Tmp2, ISD::SETUGT);
1843        Tmp3 = DAG.getNode(ISD::FNEG, VT, Tmp1);
1844        Result = DAG.getNode(ISD::SELECT, VT, Tmp2, Tmp1, Tmp3);
1845        Result = LegalizeOp(Result);
1846        break;
1847      }
1848      case ISD::FSQRT:
1849      case ISD::FSIN:
1850      case ISD::FCOS: {
1851        MVT::ValueType VT = Node->getValueType(0);
1852        const char *FnName = 0;
1853        switch(Node->getOpcode()) {
1854        case ISD::FSQRT: FnName = VT == MVT::f32 ? "sqrtf" : "sqrt"; break;
1855        case ISD::FSIN:  FnName = VT == MVT::f32 ? "sinf"  : "sin"; break;
1856        case ISD::FCOS:  FnName = VT == MVT::f32 ? "cosf"  : "cos"; break;
1857        default: assert(0 && "Unreachable!");
1858        }
1859        SDOperand Dummy;
1860        Result = ExpandLibCall(FnName, Node, Dummy);
1861        break;
1862      }
1863      default:
1864        assert(0 && "Unreachable!");
1865      }
1866      break;
1867    }
1868    break;
1869
1870    // Conversion operators.  The source and destination have different types.
1871  case ISD::SINT_TO_FP:
1872  case ISD::UINT_TO_FP: {
1873    bool isSigned = Node->getOpcode() == ISD::SINT_TO_FP;
1874    switch (getTypeAction(Node->getOperand(0).getValueType())) {
1875    case Legal:
1876      switch (TLI.getOperationAction(Node->getOpcode(),
1877                                     Node->getOperand(0).getValueType())) {
1878      default: assert(0 && "Unknown operation action!");
1879      case TargetLowering::Expand:
1880        Result = ExpandLegalINT_TO_FP(isSigned,
1881                                      LegalizeOp(Node->getOperand(0)),
1882                                      Node->getValueType(0));
1883        AddLegalizedOperand(Op, Result);
1884        return Result;
1885      case TargetLowering::Promote:
1886        Result = PromoteLegalINT_TO_FP(LegalizeOp(Node->getOperand(0)),
1887                                       Node->getValueType(0),
1888                                       isSigned);
1889        AddLegalizedOperand(Op, Result);
1890        return Result;
1891      case TargetLowering::Legal:
1892        break;
1893      }
1894
1895      Tmp1 = LegalizeOp(Node->getOperand(0));
1896      if (Tmp1 != Node->getOperand(0))
1897        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
1898      break;
1899    case Expand:
1900      Result = ExpandIntToFP(Node->getOpcode() == ISD::SINT_TO_FP,
1901                             Node->getValueType(0), Node->getOperand(0));
1902      break;
1903    case Promote:
1904      if (isSigned) {
1905        Result = PromoteOp(Node->getOperand(0));
1906        Result = DAG.getNode(ISD::SIGN_EXTEND_INREG, Result.getValueType(),
1907                 Result, DAG.getValueType(Node->getOperand(0).getValueType()));
1908        Result = DAG.getNode(ISD::SINT_TO_FP, Op.getValueType(), Result);
1909      } else {
1910        Result = PromoteOp(Node->getOperand(0));
1911        Result = DAG.getZeroExtendInReg(Result,
1912                                        Node->getOperand(0).getValueType());
1913        Result = DAG.getNode(ISD::UINT_TO_FP, Op.getValueType(), Result);
1914      }
1915      break;
1916    }
1917    break;
1918  }
1919  case ISD::TRUNCATE:
1920    switch (getTypeAction(Node->getOperand(0).getValueType())) {
1921    case Legal:
1922      Tmp1 = LegalizeOp(Node->getOperand(0));
1923      if (Tmp1 != Node->getOperand(0))
1924        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
1925      break;
1926    case Expand:
1927      ExpandOp(Node->getOperand(0), Tmp1, Tmp2);
1928
1929      // Since the result is legal, we should just be able to truncate the low
1930      // part of the source.
1931      Result = DAG.getNode(ISD::TRUNCATE, Node->getValueType(0), Tmp1);
1932      break;
1933    case Promote:
1934      Result = PromoteOp(Node->getOperand(0));
1935      Result = DAG.getNode(ISD::TRUNCATE, Op.getValueType(), Result);
1936      break;
1937    }
1938    break;
1939
1940  case ISD::FP_TO_SINT:
1941  case ISD::FP_TO_UINT:
1942    switch (getTypeAction(Node->getOperand(0).getValueType())) {
1943    case Legal:
1944      Tmp1 = LegalizeOp(Node->getOperand(0));
1945
1946      switch (TLI.getOperationAction(Node->getOpcode(), Node->getValueType(0))){
1947      default: assert(0 && "Unknown operation action!");
1948      case TargetLowering::Expand:
1949        if (Node->getOpcode() == ISD::FP_TO_UINT) {
1950          SDOperand True, False;
1951          MVT::ValueType VT =  Node->getOperand(0).getValueType();
1952          MVT::ValueType NVT = Node->getValueType(0);
1953          unsigned ShiftAmt = MVT::getSizeInBits(Node->getValueType(0))-1;
1954          Tmp2 = DAG.getConstantFP((double)(1ULL << ShiftAmt), VT);
1955          Tmp3 = DAG.getSetCC(TLI.getSetCCResultTy(),
1956                            Node->getOperand(0), Tmp2, ISD::SETLT);
1957          True = DAG.getNode(ISD::FP_TO_SINT, NVT, Node->getOperand(0));
1958          False = DAG.getNode(ISD::FP_TO_SINT, NVT,
1959                              DAG.getNode(ISD::FSUB, VT, Node->getOperand(0),
1960                                          Tmp2));
1961          False = DAG.getNode(ISD::XOR, NVT, False,
1962                              DAG.getConstant(1ULL << ShiftAmt, NVT));
1963          Result = LegalizeOp(DAG.getNode(ISD::SELECT, NVT, Tmp3, True, False));
1964          return Result;
1965        } else {
1966          assert(0 && "Do not know how to expand FP_TO_SINT yet!");
1967        }
1968        break;
1969      case TargetLowering::Promote:
1970        Result = PromoteLegalFP_TO_INT(Tmp1, Node->getValueType(0),
1971                                       Node->getOpcode() == ISD::FP_TO_SINT);
1972        AddLegalizedOperand(Op, Result);
1973        return Result;
1974      case TargetLowering::Custom: {
1975        SDOperand Tmp =
1976          DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
1977        Tmp = TLI.LowerOperation(Tmp, DAG);
1978        if (Tmp.Val) {
1979          AddLegalizedOperand(Op, Tmp);
1980          NeedsAnotherIteration = true;
1981          return Tmp;
1982        } else {
1983          // The target thinks this is legal afterall.
1984          break;
1985        }
1986      }
1987      case TargetLowering::Legal:
1988        break;
1989      }
1990
1991      if (Tmp1 != Node->getOperand(0))
1992        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
1993      break;
1994    case Expand:
1995      assert(0 && "Shouldn't need to expand other operators here!");
1996    case Promote:
1997      Result = PromoteOp(Node->getOperand(0));
1998      Result = DAG.getNode(Node->getOpcode(), Op.getValueType(), Result);
1999      break;
2000    }
2001    break;
2002
2003  case ISD::ANY_EXTEND:
2004  case ISD::ZERO_EXTEND:
2005  case ISD::SIGN_EXTEND:
2006  case ISD::FP_EXTEND:
2007  case ISD::FP_ROUND:
2008    switch (getTypeAction(Node->getOperand(0).getValueType())) {
2009    case Legal:
2010      Tmp1 = LegalizeOp(Node->getOperand(0));
2011      if (Tmp1 != Node->getOperand(0))
2012        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1);
2013      break;
2014    case Expand:
2015      assert(0 && "Shouldn't need to expand other operators here!");
2016
2017    case Promote:
2018      switch (Node->getOpcode()) {
2019      case ISD::ANY_EXTEND:
2020        Result = PromoteOp(Node->getOperand(0));
2021        Result = DAG.getNode(ISD::ANY_EXTEND, Op.getValueType(), Result);
2022        break;
2023      case ISD::ZERO_EXTEND:
2024        Result = PromoteOp(Node->getOperand(0));
2025        Result = DAG.getNode(ISD::ANY_EXTEND, Op.getValueType(), Result);
2026        Result = DAG.getZeroExtendInReg(Result,
2027                                        Node->getOperand(0).getValueType());
2028        break;
2029      case ISD::SIGN_EXTEND:
2030        Result = PromoteOp(Node->getOperand(0));
2031        Result = DAG.getNode(ISD::ANY_EXTEND, Op.getValueType(), Result);
2032        Result = DAG.getNode(ISD::SIGN_EXTEND_INREG, Result.getValueType(),
2033                             Result,
2034                          DAG.getValueType(Node->getOperand(0).getValueType()));
2035        break;
2036      case ISD::FP_EXTEND:
2037        Result = PromoteOp(Node->getOperand(0));
2038        if (Result.getValueType() != Op.getValueType())
2039          // Dynamically dead while we have only 2 FP types.
2040          Result = DAG.getNode(ISD::FP_EXTEND, Op.getValueType(), Result);
2041        break;
2042      case ISD::FP_ROUND:
2043        Result = PromoteOp(Node->getOperand(0));
2044        Result = DAG.getNode(Node->getOpcode(), Op.getValueType(), Result);
2045        break;
2046      }
2047    }
2048    break;
2049  case ISD::FP_ROUND_INREG:
2050  case ISD::SIGN_EXTEND_INREG: {
2051    Tmp1 = LegalizeOp(Node->getOperand(0));
2052    MVT::ValueType ExtraVT = cast<VTSDNode>(Node->getOperand(1))->getVT();
2053
2054    // If this operation is not supported, convert it to a shl/shr or load/store
2055    // pair.
2056    switch (TLI.getOperationAction(Node->getOpcode(), ExtraVT)) {
2057    default: assert(0 && "This action not supported for this op yet!");
2058    case TargetLowering::Legal:
2059      if (Tmp1 != Node->getOperand(0))
2060        Result = DAG.getNode(Node->getOpcode(), Node->getValueType(0), Tmp1,
2061                             DAG.getValueType(ExtraVT));
2062      break;
2063    case TargetLowering::Expand:
2064      // If this is an integer extend and shifts are supported, do that.
2065      if (Node->getOpcode() == ISD::SIGN_EXTEND_INREG) {
2066        // NOTE: we could fall back on load/store here too for targets without
2067        // SAR.  However, it is doubtful that any exist.
2068        unsigned BitsDiff = MVT::getSizeInBits(Node->getValueType(0)) -
2069                            MVT::getSizeInBits(ExtraVT);
2070        SDOperand ShiftCst = DAG.getConstant(BitsDiff, TLI.getShiftAmountTy());
2071        Result = DAG.getNode(ISD::SHL, Node->getValueType(0),
2072                             Node->getOperand(0), ShiftCst);
2073        Result = DAG.getNode(ISD::SRA, Node->getValueType(0),
2074                             Result, ShiftCst);
2075      } else if (Node->getOpcode() == ISD::FP_ROUND_INREG) {
2076        // The only way we can lower this is to turn it into a STORETRUNC,
2077        // EXTLOAD pair, targetting a temporary location (a stack slot).
2078
2079        // NOTE: there is a choice here between constantly creating new stack
2080        // slots and always reusing the same one.  We currently always create
2081        // new ones, as reuse may inhibit scheduling.
2082        const Type *Ty = MVT::getTypeForValueType(ExtraVT);
2083        unsigned TySize = (unsigned)TLI.getTargetData().getTypeSize(Ty);
2084        unsigned Align  = TLI.getTargetData().getTypeAlignment(Ty);
2085        MachineFunction &MF = DAG.getMachineFunction();
2086        int SSFI =
2087          MF.getFrameInfo()->CreateStackObject((unsigned)TySize, Align);
2088        SDOperand StackSlot = DAG.getFrameIndex(SSFI, TLI.getPointerTy());
2089        Result = DAG.getNode(ISD::TRUNCSTORE, MVT::Other, DAG.getEntryNode(),
2090                             Node->getOperand(0), StackSlot,
2091                             DAG.getSrcValue(NULL), DAG.getValueType(ExtraVT));
2092        Result = DAG.getExtLoad(ISD::EXTLOAD, Node->getValueType(0),
2093                                Result, StackSlot, DAG.getSrcValue(NULL),
2094                                ExtraVT);
2095      } else {
2096        assert(0 && "Unknown op");
2097      }
2098      Result = LegalizeOp(Result);
2099      break;
2100    }
2101    break;
2102  }
2103  }
2104
2105  // Note that LegalizeOp may be reentered even from single-use nodes, which
2106  // means that we always must cache transformed nodes.
2107  AddLegalizedOperand(Op, Result);
2108  return Result;
2109}
2110
2111/// PromoteOp - Given an operation that produces a value in an invalid type,
2112/// promote it to compute the value into a larger type.  The produced value will
2113/// have the correct bits for the low portion of the register, but no guarantee
2114/// is made about the top bits: it may be zero, sign-extended, or garbage.
2115SDOperand SelectionDAGLegalize::PromoteOp(SDOperand Op) {
2116  MVT::ValueType VT = Op.getValueType();
2117  MVT::ValueType NVT = TLI.getTypeToTransformTo(VT);
2118  assert(getTypeAction(VT) == Promote &&
2119         "Caller should expand or legalize operands that are not promotable!");
2120  assert(NVT > VT && MVT::isInteger(NVT) == MVT::isInteger(VT) &&
2121         "Cannot promote to smaller type!");
2122
2123  SDOperand Tmp1, Tmp2, Tmp3;
2124
2125  SDOperand Result;
2126  SDNode *Node = Op.Val;
2127
2128  std::map<SDOperand, SDOperand>::iterator I = PromotedNodes.find(Op);
2129  if (I != PromotedNodes.end()) return I->second;
2130
2131  // Promotion needs an optimization step to clean up after it, and is not
2132  // careful to avoid operations the target does not support.  Make sure that
2133  // all generated operations are legalized in the next iteration.
2134  NeedsAnotherIteration = true;
2135
2136  switch (Node->getOpcode()) {
2137  case ISD::CopyFromReg:
2138    assert(0 && "CopyFromReg must be legal!");
2139  default:
2140    std::cerr << "NODE: "; Node->dump(); std::cerr << "\n";
2141    assert(0 && "Do not know how to promote this operator!");
2142    abort();
2143  case ISD::UNDEF:
2144    Result = DAG.getNode(ISD::UNDEF, NVT);
2145    break;
2146  case ISD::Constant:
2147    if (VT != MVT::i1)
2148      Result = DAG.getNode(ISD::SIGN_EXTEND, NVT, Op);
2149    else
2150      Result = DAG.getNode(ISD::ZERO_EXTEND, NVT, Op);
2151    assert(isa<ConstantSDNode>(Result) && "Didn't constant fold zext?");
2152    break;
2153  case ISD::ConstantFP:
2154    Result = DAG.getNode(ISD::FP_EXTEND, NVT, Op);
2155    assert(isa<ConstantFPSDNode>(Result) && "Didn't constant fold fp_extend?");
2156    break;
2157
2158  case ISD::SETCC:
2159    assert(isTypeLegal(TLI.getSetCCResultTy()) && "SetCC type is not legal??");
2160    Result = DAG.getNode(ISD::SETCC, TLI.getSetCCResultTy(),Node->getOperand(0),
2161                         Node->getOperand(1), Node->getOperand(2));
2162    Result = LegalizeOp(Result);
2163    break;
2164
2165  case ISD::TRUNCATE:
2166    switch (getTypeAction(Node->getOperand(0).getValueType())) {
2167    case Legal:
2168      Result = LegalizeOp(Node->getOperand(0));
2169      assert(Result.getValueType() >= NVT &&
2170             "This truncation doesn't make sense!");
2171      if (Result.getValueType() > NVT)    // Truncate to NVT instead of VT
2172        Result = DAG.getNode(ISD::TRUNCATE, NVT, Result);
2173      break;
2174    case Promote:
2175      // The truncation is not required, because we don't guarantee anything
2176      // about high bits anyway.
2177      Result = PromoteOp(Node->getOperand(0));
2178      break;
2179    case Expand:
2180      ExpandOp(Node->getOperand(0), Tmp1, Tmp2);
2181      // Truncate the low part of the expanded value to the result type
2182      Result = DAG.getNode(ISD::TRUNCATE, NVT, Tmp1);
2183    }
2184    break;
2185  case ISD::SIGN_EXTEND:
2186  case ISD::ZERO_EXTEND:
2187  case ISD::ANY_EXTEND:
2188    switch (getTypeAction(Node->getOperand(0).getValueType())) {
2189    case Expand: assert(0 && "BUG: Smaller reg should have been promoted!");
2190    case Legal:
2191      // Input is legal?  Just do extend all the way to the larger type.
2192      Result = LegalizeOp(Node->getOperand(0));
2193      Result = DAG.getNode(Node->getOpcode(), NVT, Result);
2194      break;
2195    case Promote:
2196      // Promote the reg if it's smaller.
2197      Result = PromoteOp(Node->getOperand(0));
2198      // The high bits are not guaranteed to be anything.  Insert an extend.
2199      if (Node->getOpcode() == ISD::SIGN_EXTEND)
2200        Result = DAG.getNode(ISD::SIGN_EXTEND_INREG, NVT, Result,
2201                         DAG.getValueType(Node->getOperand(0).getValueType()));
2202      else if (Node->getOpcode() == ISD::ZERO_EXTEND)
2203        Result = DAG.getZeroExtendInReg(Result,
2204                                        Node->getOperand(0).getValueType());
2205      break;
2206    }
2207    break;
2208
2209  case ISD::FP_EXTEND:
2210    assert(0 && "Case not implemented.  Dynamically dead with 2 FP types!");
2211  case ISD::FP_ROUND:
2212    switch (getTypeAction(Node->getOperand(0).getValueType())) {
2213    case Expand: assert(0 && "BUG: Cannot expand FP regs!");
2214    case Promote:  assert(0 && "Unreachable with 2 FP types!");
2215    case Legal:
2216      // Input is legal?  Do an FP_ROUND_INREG.
2217      Result = LegalizeOp(Node->getOperand(0));
2218      Result = DAG.getNode(ISD::FP_ROUND_INREG, NVT, Result,
2219                           DAG.getValueType(VT));
2220      break;
2221    }
2222    break;
2223
2224  case ISD::SINT_TO_FP:
2225  case ISD::UINT_TO_FP:
2226    switch (getTypeAction(Node->getOperand(0).getValueType())) {
2227    case Legal:
2228      Result = LegalizeOp(Node->getOperand(0));
2229      // No extra round required here.
2230      Result = DAG.getNode(Node->getOpcode(), NVT, Result);
2231      break;
2232
2233    case Promote:
2234      Result = PromoteOp(Node->getOperand(0));
2235      if (Node->getOpcode() == ISD::SINT_TO_FP)
2236        Result = DAG.getNode(ISD::SIGN_EXTEND_INREG, Result.getValueType(),
2237                             Result,
2238                         DAG.getValueType(Node->getOperand(0).getValueType()));
2239      else
2240        Result = DAG.getZeroExtendInReg(Result,
2241                                        Node->getOperand(0).getValueType());
2242      // No extra round required here.
2243      Result = DAG.getNode(Node->getOpcode(), NVT, Result);
2244      break;
2245    case Expand:
2246      Result = ExpandIntToFP(Node->getOpcode() == ISD::SINT_TO_FP, NVT,
2247                             Node->getOperand(0));
2248      // Round if we cannot tolerate excess precision.
2249      if (NoExcessFPPrecision)
2250        Result = DAG.getNode(ISD::FP_ROUND_INREG, NVT, Result,
2251                             DAG.getValueType(VT));
2252      break;
2253    }
2254    break;
2255
2256  case ISD::FP_TO_SINT:
2257  case ISD::FP_TO_UINT:
2258    switch (getTypeAction(Node->getOperand(0).getValueType())) {
2259    case Legal:
2260      Tmp1 = LegalizeOp(Node->getOperand(0));
2261      break;
2262    case Promote:
2263      // The input result is prerounded, so we don't have to do anything
2264      // special.
2265      Tmp1 = PromoteOp(Node->getOperand(0));
2266      break;
2267    case Expand:
2268      assert(0 && "not implemented");
2269    }
2270    // If we're promoting a UINT to a larger size, check to see if the new node
2271    // will be legal.  If it isn't, check to see if FP_TO_SINT is legal, since
2272    // we can use that instead.  This allows us to generate better code for
2273    // FP_TO_UINT for small destination sizes on targets where FP_TO_UINT is not
2274    // legal, such as PowerPC.
2275    if (Node->getOpcode() == ISD::FP_TO_UINT &&
2276        !TLI.isOperationLegal(ISD::FP_TO_UINT, NVT) &&
2277        (TLI.isOperationLegal(ISD::FP_TO_SINT, NVT) ||
2278         TLI.getOperationAction(ISD::FP_TO_SINT, NVT)==TargetLowering::Custom)){
2279      Result = DAG.getNode(ISD::FP_TO_SINT, NVT, Tmp1);
2280    } else {
2281      Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1);
2282    }
2283    break;
2284
2285  case ISD::FABS:
2286  case ISD::FNEG:
2287    Tmp1 = PromoteOp(Node->getOperand(0));
2288    assert(Tmp1.getValueType() == NVT);
2289    Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1);
2290    // NOTE: we do not have to do any extra rounding here for
2291    // NoExcessFPPrecision, because we know the input will have the appropriate
2292    // precision, and these operations don't modify precision at all.
2293    break;
2294
2295  case ISD::FSQRT:
2296  case ISD::FSIN:
2297  case ISD::FCOS:
2298    Tmp1 = PromoteOp(Node->getOperand(0));
2299    assert(Tmp1.getValueType() == NVT);
2300    Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1);
2301    if(NoExcessFPPrecision)
2302      Result = DAG.getNode(ISD::FP_ROUND_INREG, NVT, Result,
2303                           DAG.getValueType(VT));
2304    break;
2305
2306  case ISD::AND:
2307  case ISD::OR:
2308  case ISD::XOR:
2309  case ISD::ADD:
2310  case ISD::SUB:
2311  case ISD::MUL:
2312    // The input may have strange things in the top bits of the registers, but
2313    // these operations don't care.  They may have weird bits going out, but
2314    // that too is okay if they are integer operations.
2315    Tmp1 = PromoteOp(Node->getOperand(0));
2316    Tmp2 = PromoteOp(Node->getOperand(1));
2317    assert(Tmp1.getValueType() == NVT && Tmp2.getValueType() == NVT);
2318    Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1, Tmp2);
2319    break;
2320  case ISD::FADD:
2321  case ISD::FSUB:
2322  case ISD::FMUL:
2323    // The input may have strange things in the top bits of the registers, but
2324    // these operations don't care.
2325    Tmp1 = PromoteOp(Node->getOperand(0));
2326    Tmp2 = PromoteOp(Node->getOperand(1));
2327    assert(Tmp1.getValueType() == NVT && Tmp2.getValueType() == NVT);
2328    Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1, Tmp2);
2329
2330    // Floating point operations will give excess precision that we may not be
2331    // able to tolerate.  If we DO allow excess precision, just leave it,
2332    // otherwise excise it.
2333    // FIXME: Why would we need to round FP ops more than integer ones?
2334    //     Is Round(Add(Add(A,B),C)) != Round(Add(Round(Add(A,B)), C))
2335    if (NoExcessFPPrecision)
2336      Result = DAG.getNode(ISD::FP_ROUND_INREG, NVT, Result,
2337                           DAG.getValueType(VT));
2338    break;
2339
2340  case ISD::SDIV:
2341  case ISD::SREM:
2342    // These operators require that their input be sign extended.
2343    Tmp1 = PromoteOp(Node->getOperand(0));
2344    Tmp2 = PromoteOp(Node->getOperand(1));
2345    if (MVT::isInteger(NVT)) {
2346      Tmp1 = DAG.getNode(ISD::SIGN_EXTEND_INREG, NVT, Tmp1,
2347                         DAG.getValueType(VT));
2348      Tmp2 = DAG.getNode(ISD::SIGN_EXTEND_INREG, NVT, Tmp2,
2349                         DAG.getValueType(VT));
2350    }
2351    Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1, Tmp2);
2352
2353    // Perform FP_ROUND: this is probably overly pessimistic.
2354    if (MVT::isFloatingPoint(NVT) && NoExcessFPPrecision)
2355      Result = DAG.getNode(ISD::FP_ROUND_INREG, NVT, Result,
2356                           DAG.getValueType(VT));
2357    break;
2358  case ISD::FDIV:
2359  case ISD::FREM:
2360    // These operators require that their input be fp extended.
2361    Tmp1 = PromoteOp(Node->getOperand(0));
2362    Tmp2 = PromoteOp(Node->getOperand(1));
2363    Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1, Tmp2);
2364
2365    // Perform FP_ROUND: this is probably overly pessimistic.
2366    if (NoExcessFPPrecision)
2367      Result = DAG.getNode(ISD::FP_ROUND_INREG, NVT, Result,
2368                           DAG.getValueType(VT));
2369    break;
2370
2371  case ISD::UDIV:
2372  case ISD::UREM:
2373    // These operators require that their input be zero extended.
2374    Tmp1 = PromoteOp(Node->getOperand(0));
2375    Tmp2 = PromoteOp(Node->getOperand(1));
2376    assert(MVT::isInteger(NVT) && "Operators don't apply to FP!");
2377    Tmp1 = DAG.getZeroExtendInReg(Tmp1, VT);
2378    Tmp2 = DAG.getZeroExtendInReg(Tmp2, VT);
2379    Result = DAG.getNode(Node->getOpcode(), NVT, Tmp1, Tmp2);
2380    break;
2381
2382  case ISD::SHL:
2383    Tmp1 = PromoteOp(Node->getOperand(0));
2384    Tmp2 = LegalizeOp(Node->getOperand(1));
2385    Result = DAG.getNode(ISD::SHL, NVT, Tmp1, Tmp2);
2386    break;
2387  case ISD::SRA:
2388    // The input value must be properly sign extended.
2389    Tmp1 = PromoteOp(Node->getOperand(0));
2390    Tmp1 = DAG.getNode(ISD::SIGN_EXTEND_INREG, NVT, Tmp1,
2391                       DAG.getValueType(VT));
2392    Tmp2 = LegalizeOp(Node->getOperand(1));
2393    Result = DAG.getNode(ISD::SRA, NVT, Tmp1, Tmp2);
2394    break;
2395  case ISD::SRL:
2396    // The input value must be properly zero extended.
2397    Tmp1 = PromoteOp(Node->getOperand(0));
2398    Tmp1 = DAG.getZeroExtendInReg(Tmp1, VT);
2399    Tmp2 = LegalizeOp(Node->getOperand(1));
2400    Result = DAG.getNode(ISD::SRL, NVT, Tmp1, Tmp2);
2401    break;
2402  case ISD::LOAD:
2403    Tmp1 = LegalizeOp(Node->getOperand(0));   // Legalize the chain.
2404    Tmp2 = LegalizeOp(Node->getOperand(1));   // Legalize the pointer.
2405    Result = DAG.getExtLoad(ISD::EXTLOAD, NVT, Tmp1, Tmp2,
2406                            Node->getOperand(2), VT);
2407    // Remember that we legalized the chain.
2408    AddLegalizedOperand(Op.getValue(1), Result.getValue(1));
2409    break;
2410  case ISD::SEXTLOAD:
2411  case ISD::ZEXTLOAD:
2412  case ISD::EXTLOAD:
2413    Tmp1 = LegalizeOp(Node->getOperand(0));   // Legalize the chain.
2414    Tmp2 = LegalizeOp(Node->getOperand(1));   // Legalize the pointer.
2415    Result = DAG.getExtLoad(Node->getOpcode(), NVT, Tmp1, Tmp2,
2416                         Node->getOperand(2),
2417                            cast<VTSDNode>(Node->getOperand(3))->getVT());
2418    // Remember that we legalized the chain.
2419    AddLegalizedOperand(Op.getValue(1), Result.getValue(1));
2420    break;
2421  case ISD::SELECT:
2422    switch (getTypeAction(Node->getOperand(0).getValueType())) {
2423    case Expand: assert(0 && "It's impossible to expand bools");
2424    case Legal:
2425      Tmp1 = LegalizeOp(Node->getOperand(0));// Legalize the condition.
2426      break;
2427    case Promote:
2428      Tmp1 = PromoteOp(Node->getOperand(0)); // Promote the condition.
2429      break;
2430    }
2431    Tmp2 = PromoteOp(Node->getOperand(1));   // Legalize the op0
2432    Tmp3 = PromoteOp(Node->getOperand(2));   // Legalize the op1
2433    Result = DAG.getNode(ISD::SELECT, NVT, Tmp1, Tmp2, Tmp3);
2434    break;
2435  case ISD::SELECT_CC:
2436    Tmp2 = PromoteOp(Node->getOperand(2));   // True
2437    Tmp3 = PromoteOp(Node->getOperand(3));   // False
2438    Result = DAG.getNode(ISD::SELECT_CC, NVT, Node->getOperand(0),
2439                         Node->getOperand(1), Tmp2, Tmp3,
2440                         Node->getOperand(4));
2441    break;
2442  case ISD::TAILCALL:
2443  case ISD::CALL: {
2444    Tmp1 = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
2445    Tmp2 = LegalizeOp(Node->getOperand(1));  // Legalize the callee.
2446
2447    std::vector<SDOperand> Ops;
2448    for (unsigned i = 2, e = Node->getNumOperands(); i != e; ++i)
2449      Ops.push_back(LegalizeOp(Node->getOperand(i)));
2450
2451    assert(Node->getNumValues() == 2 && Op.ResNo == 0 &&
2452           "Can only promote single result calls");
2453    std::vector<MVT::ValueType> RetTyVTs;
2454    RetTyVTs.reserve(2);
2455    RetTyVTs.push_back(NVT);
2456    RetTyVTs.push_back(MVT::Other);
2457    SDNode *NC = DAG.getCall(RetTyVTs, Tmp1, Tmp2, Ops,
2458                             Node->getOpcode() == ISD::TAILCALL);
2459    Result = SDOperand(NC, 0);
2460
2461    // Insert the new chain mapping.
2462    AddLegalizedOperand(Op.getValue(1), Result.getValue(1));
2463    break;
2464  }
2465  case ISD::CTPOP:
2466  case ISD::CTTZ:
2467  case ISD::CTLZ:
2468    Tmp1 = Node->getOperand(0);
2469    //Zero extend the argument
2470    Tmp1 = DAG.getNode(ISD::ZERO_EXTEND, NVT, Tmp1);
2471    // Perform the larger operation, then subtract if needed.
2472    Tmp1 = DAG.getNode(Node->getOpcode(), NVT, Tmp1);
2473    switch(Node->getOpcode())
2474    {
2475    case ISD::CTPOP:
2476      Result = Tmp1;
2477      break;
2478    case ISD::CTTZ:
2479      //if Tmp1 == sizeinbits(NVT) then Tmp1 = sizeinbits(Old VT)
2480      Tmp2 = DAG.getSetCC(TLI.getSetCCResultTy(), Tmp1,
2481                          DAG.getConstant(getSizeInBits(NVT), NVT), ISD::SETEQ);
2482      Result = DAG.getNode(ISD::SELECT, NVT, Tmp2,
2483                           DAG.getConstant(getSizeInBits(VT),NVT), Tmp1);
2484      break;
2485    case ISD::CTLZ:
2486      //Tmp1 = Tmp1 - (sizeinbits(NVT) - sizeinbits(Old VT))
2487      Result = DAG.getNode(ISD::SUB, NVT, Tmp1,
2488                           DAG.getConstant(getSizeInBits(NVT) -
2489                                           getSizeInBits(VT), NVT));
2490      break;
2491    }
2492    break;
2493  }
2494
2495  assert(Result.Val && "Didn't set a result!");
2496  AddPromotedOperand(Op, Result);
2497  return Result;
2498}
2499
2500/// ExpandAddSub - Find a clever way to expand this add operation into
2501/// subcomponents.
2502void SelectionDAGLegalize::
2503ExpandByParts(unsigned NodeOp, SDOperand LHS, SDOperand RHS,
2504              SDOperand &Lo, SDOperand &Hi) {
2505  // Expand the subcomponents.
2506  SDOperand LHSL, LHSH, RHSL, RHSH;
2507  ExpandOp(LHS, LHSL, LHSH);
2508  ExpandOp(RHS, RHSL, RHSH);
2509
2510  std::vector<SDOperand> Ops;
2511  Ops.push_back(LHSL);
2512  Ops.push_back(LHSH);
2513  Ops.push_back(RHSL);
2514  Ops.push_back(RHSH);
2515  std::vector<MVT::ValueType> VTs(2, LHSL.getValueType());
2516  Lo = DAG.getNode(NodeOp, VTs, Ops);
2517  Hi = Lo.getValue(1);
2518}
2519
2520void SelectionDAGLegalize::ExpandShiftParts(unsigned NodeOp,
2521                                            SDOperand Op, SDOperand Amt,
2522                                            SDOperand &Lo, SDOperand &Hi) {
2523  // Expand the subcomponents.
2524  SDOperand LHSL, LHSH;
2525  ExpandOp(Op, LHSL, LHSH);
2526
2527  std::vector<SDOperand> Ops;
2528  Ops.push_back(LHSL);
2529  Ops.push_back(LHSH);
2530  Ops.push_back(Amt);
2531  std::vector<MVT::ValueType> VTs(2, LHSL.getValueType());
2532  Lo = DAG.getNode(NodeOp, VTs, Ops);
2533  Hi = Lo.getValue(1);
2534}
2535
2536
2537/// ExpandShift - Try to find a clever way to expand this shift operation out to
2538/// smaller elements.  If we can't find a way that is more efficient than a
2539/// libcall on this target, return false.  Otherwise, return true with the
2540/// low-parts expanded into Lo and Hi.
2541bool SelectionDAGLegalize::ExpandShift(unsigned Opc, SDOperand Op,SDOperand Amt,
2542                                       SDOperand &Lo, SDOperand &Hi) {
2543  assert((Opc == ISD::SHL || Opc == ISD::SRA || Opc == ISD::SRL) &&
2544         "This is not a shift!");
2545
2546  MVT::ValueType NVT = TLI.getTypeToTransformTo(Op.getValueType());
2547  SDOperand ShAmt = LegalizeOp(Amt);
2548  MVT::ValueType ShTy = ShAmt.getValueType();
2549  unsigned VTBits = MVT::getSizeInBits(Op.getValueType());
2550  unsigned NVTBits = MVT::getSizeInBits(NVT);
2551
2552  // Handle the case when Amt is an immediate.  Other cases are currently broken
2553  // and are disabled.
2554  if (ConstantSDNode *CN = dyn_cast<ConstantSDNode>(Amt.Val)) {
2555    unsigned Cst = CN->getValue();
2556    // Expand the incoming operand to be shifted, so that we have its parts
2557    SDOperand InL, InH;
2558    ExpandOp(Op, InL, InH);
2559    switch(Opc) {
2560    case ISD::SHL:
2561      if (Cst > VTBits) {
2562        Lo = DAG.getConstant(0, NVT);
2563        Hi = DAG.getConstant(0, NVT);
2564      } else if (Cst > NVTBits) {
2565        Lo = DAG.getConstant(0, NVT);
2566        Hi = DAG.getNode(ISD::SHL, NVT, InL, DAG.getConstant(Cst-NVTBits,ShTy));
2567      } else if (Cst == NVTBits) {
2568        Lo = DAG.getConstant(0, NVT);
2569        Hi = InL;
2570      } else {
2571        Lo = DAG.getNode(ISD::SHL, NVT, InL, DAG.getConstant(Cst, ShTy));
2572        Hi = DAG.getNode(ISD::OR, NVT,
2573           DAG.getNode(ISD::SHL, NVT, InH, DAG.getConstant(Cst, ShTy)),
2574           DAG.getNode(ISD::SRL, NVT, InL, DAG.getConstant(NVTBits-Cst, ShTy)));
2575      }
2576      return true;
2577    case ISD::SRL:
2578      if (Cst > VTBits) {
2579        Lo = DAG.getConstant(0, NVT);
2580        Hi = DAG.getConstant(0, NVT);
2581      } else if (Cst > NVTBits) {
2582        Lo = DAG.getNode(ISD::SRL, NVT, InH, DAG.getConstant(Cst-NVTBits,ShTy));
2583        Hi = DAG.getConstant(0, NVT);
2584      } else if (Cst == NVTBits) {
2585        Lo = InH;
2586        Hi = DAG.getConstant(0, NVT);
2587      } else {
2588        Lo = DAG.getNode(ISD::OR, NVT,
2589           DAG.getNode(ISD::SRL, NVT, InL, DAG.getConstant(Cst, ShTy)),
2590           DAG.getNode(ISD::SHL, NVT, InH, DAG.getConstant(NVTBits-Cst, ShTy)));
2591        Hi = DAG.getNode(ISD::SRL, NVT, InH, DAG.getConstant(Cst, ShTy));
2592      }
2593      return true;
2594    case ISD::SRA:
2595      if (Cst > VTBits) {
2596        Hi = Lo = DAG.getNode(ISD::SRA, NVT, InH,
2597                              DAG.getConstant(NVTBits-1, ShTy));
2598      } else if (Cst > NVTBits) {
2599        Lo = DAG.getNode(ISD::SRA, NVT, InH,
2600                           DAG.getConstant(Cst-NVTBits, ShTy));
2601        Hi = DAG.getNode(ISD::SRA, NVT, InH,
2602                              DAG.getConstant(NVTBits-1, ShTy));
2603      } else if (Cst == NVTBits) {
2604        Lo = InH;
2605        Hi = DAG.getNode(ISD::SRA, NVT, InH,
2606                              DAG.getConstant(NVTBits-1, ShTy));
2607      } else {
2608        Lo = DAG.getNode(ISD::OR, NVT,
2609           DAG.getNode(ISD::SRL, NVT, InL, DAG.getConstant(Cst, ShTy)),
2610           DAG.getNode(ISD::SHL, NVT, InH, DAG.getConstant(NVTBits-Cst, ShTy)));
2611        Hi = DAG.getNode(ISD::SRA, NVT, InH, DAG.getConstant(Cst, ShTy));
2612      }
2613      return true;
2614    }
2615  }
2616  // FIXME: The following code for expanding shifts using ISD::SELECT is buggy,
2617  // so disable it for now.  Currently targets are handling this via SHL_PARTS
2618  // and friends.
2619  return false;
2620
2621  // If we have an efficient select operation (or if the selects will all fold
2622  // away), lower to some complex code, otherwise just emit the libcall.
2623  if (!TLI.isOperationLegal(ISD::SELECT, NVT) && !isa<ConstantSDNode>(Amt))
2624    return false;
2625
2626  SDOperand InL, InH;
2627  ExpandOp(Op, InL, InH);
2628  SDOperand NAmt = DAG.getNode(ISD::SUB, ShTy,           // NAmt = 32-ShAmt
2629                               DAG.getConstant(NVTBits, ShTy), ShAmt);
2630
2631  // Compare the unmasked shift amount against 32.
2632  SDOperand Cond = DAG.getSetCC(TLI.getSetCCResultTy(), ShAmt,
2633                                DAG.getConstant(NVTBits, ShTy), ISD::SETGE);
2634
2635  if (TLI.getShiftAmountFlavor() != TargetLowering::Mask) {
2636    ShAmt = DAG.getNode(ISD::AND, ShTy, ShAmt,             // ShAmt &= 31
2637                        DAG.getConstant(NVTBits-1, ShTy));
2638    NAmt  = DAG.getNode(ISD::AND, ShTy, NAmt,              // NAmt &= 31
2639                        DAG.getConstant(NVTBits-1, ShTy));
2640  }
2641
2642  if (Opc == ISD::SHL) {
2643    SDOperand T1 = DAG.getNode(ISD::OR, NVT,// T1 = (Hi << Amt) | (Lo >> NAmt)
2644                               DAG.getNode(ISD::SHL, NVT, InH, ShAmt),
2645                               DAG.getNode(ISD::SRL, NVT, InL, NAmt));
2646    SDOperand T2 = DAG.getNode(ISD::SHL, NVT, InL, ShAmt); // T2 = Lo << Amt&31
2647
2648    Hi = DAG.getNode(ISD::SELECT, NVT, Cond, T2, T1);
2649    Lo = DAG.getNode(ISD::SELECT, NVT, Cond, DAG.getConstant(0, NVT), T2);
2650  } else {
2651    SDOperand HiLoPart = DAG.getNode(ISD::SELECT, NVT,
2652                                     DAG.getSetCC(TLI.getSetCCResultTy(), NAmt,
2653                                                  DAG.getConstant(32, ShTy),
2654                                                  ISD::SETEQ),
2655                                     DAG.getConstant(0, NVT),
2656                                     DAG.getNode(ISD::SHL, NVT, InH, NAmt));
2657    SDOperand T1 = DAG.getNode(ISD::OR, NVT,// T1 = (Hi << NAmt) | (Lo >> Amt)
2658                               HiLoPart,
2659                               DAG.getNode(ISD::SRL, NVT, InL, ShAmt));
2660    SDOperand T2 = DAG.getNode(Opc, NVT, InH, ShAmt);  // T2 = InH >> ShAmt&31
2661
2662    SDOperand HiPart;
2663    if (Opc == ISD::SRA)
2664      HiPart = DAG.getNode(ISD::SRA, NVT, InH,
2665                           DAG.getConstant(NVTBits-1, ShTy));
2666    else
2667      HiPart = DAG.getConstant(0, NVT);
2668    Lo = DAG.getNode(ISD::SELECT, NVT, Cond, T2, T1);
2669    Hi = DAG.getNode(ISD::SELECT, NVT, Cond, HiPart, T2);
2670  }
2671  return true;
2672}
2673
2674/// FindLatestCallSeqStart - Scan up the dag to find the latest (highest
2675/// NodeDepth) node that is an CallSeqStart operation and occurs later than
2676/// Found.
2677static void FindLatestCallSeqStart(SDNode *Node, SDNode *&Found) {
2678  if (Node->getNodeDepth() <= Found->getNodeDepth()) return;
2679
2680  // If we found an CALLSEQ_START, we already know this node occurs later
2681  // than the Found node. Just remember this node and return.
2682  if (Node->getOpcode() == ISD::CALLSEQ_START) {
2683    Found = Node;
2684    return;
2685  }
2686
2687  // Otherwise, scan the operands of Node to see if any of them is a call.
2688  assert(Node->getNumOperands() != 0 &&
2689         "All leaves should have depth equal to the entry node!");
2690  for (unsigned i = 0, e = Node->getNumOperands()-1; i != e; ++i)
2691    FindLatestCallSeqStart(Node->getOperand(i).Val, Found);
2692
2693  // Tail recurse for the last iteration.
2694  FindLatestCallSeqStart(Node->getOperand(Node->getNumOperands()-1).Val,
2695                             Found);
2696}
2697
2698
2699/// FindEarliestCallSeqEnd - Scan down the dag to find the earliest (lowest
2700/// NodeDepth) node that is an CallSeqEnd operation and occurs more recent
2701/// than Found.
2702static void FindEarliestCallSeqEnd(SDNode *Node, SDNode *&Found,
2703                                   std::set<SDNode*> &Visited) {
2704  if ((Found && Node->getNodeDepth() >= Found->getNodeDepth()) ||
2705      !Visited.insert(Node).second) return;
2706
2707  // If we found an CALLSEQ_END, we already know this node occurs earlier
2708  // than the Found node. Just remember this node and return.
2709  if (Node->getOpcode() == ISD::CALLSEQ_END) {
2710    Found = Node;
2711    return;
2712  }
2713
2714  // Otherwise, scan the operands of Node to see if any of them is a call.
2715  SDNode::use_iterator UI = Node->use_begin(), E = Node->use_end();
2716  if (UI == E) return;
2717  for (--E; UI != E; ++UI)
2718    FindEarliestCallSeqEnd(*UI, Found, Visited);
2719
2720  // Tail recurse for the last iteration.
2721  FindEarliestCallSeqEnd(*UI, Found, Visited);
2722}
2723
2724/// FindCallSeqEnd - Given a chained node that is part of a call sequence,
2725/// find the CALLSEQ_END node that terminates the call sequence.
2726static SDNode *FindCallSeqEnd(SDNode *Node) {
2727  if (Node->getOpcode() == ISD::CALLSEQ_END)
2728    return Node;
2729  if (Node->use_empty())
2730    return 0;   // No CallSeqEnd
2731
2732  SDOperand TheChain(Node, Node->getNumValues()-1);
2733  if (TheChain.getValueType() != MVT::Other)
2734    TheChain = SDOperand(Node, 0);
2735  if (TheChain.getValueType() != MVT::Other)
2736    return 0;
2737
2738  for (SDNode::use_iterator UI = Node->use_begin(),
2739         E = Node->use_end(); UI != E; ++UI) {
2740
2741    // Make sure to only follow users of our token chain.
2742    SDNode *User = *UI;
2743    for (unsigned i = 0, e = User->getNumOperands(); i != e; ++i)
2744      if (User->getOperand(i) == TheChain)
2745        if (SDNode *Result = FindCallSeqEnd(User))
2746          return Result;
2747  }
2748  return 0;
2749}
2750
2751/// FindCallSeqStart - Given a chained node that is part of a call sequence,
2752/// find the CALLSEQ_START node that initiates the call sequence.
2753static SDNode *FindCallSeqStart(SDNode *Node) {
2754  assert(Node && "Didn't find callseq_start for a call??");
2755  if (Node->getOpcode() == ISD::CALLSEQ_START) return Node;
2756
2757  assert(Node->getOperand(0).getValueType() == MVT::Other &&
2758         "Node doesn't have a token chain argument!");
2759  return FindCallSeqStart(Node->getOperand(0).Val);
2760}
2761
2762
2763/// FindInputOutputChains - If we are replacing an operation with a call we need
2764/// to find the call that occurs before and the call that occurs after it to
2765/// properly serialize the calls in the block.  The returned operand is the
2766/// input chain value for the new call (e.g. the entry node or the previous
2767/// call), and OutChain is set to be the chain node to update to point to the
2768/// end of the call chain.
2769static SDOperand FindInputOutputChains(SDNode *OpNode, SDNode *&OutChain,
2770                                       SDOperand Entry) {
2771  SDNode *LatestCallSeqStart = Entry.Val;
2772  SDNode *LatestCallSeqEnd = 0;
2773  FindLatestCallSeqStart(OpNode, LatestCallSeqStart);
2774  //std::cerr<<"Found node: "; LatestCallSeqStart->dump(); std::cerr <<"\n";
2775
2776  // It is possible that no ISD::CALLSEQ_START was found because there is no
2777  // previous call in the function.  LatestCallStackDown may in that case be
2778  // the entry node itself.  Do not attempt to find a matching CALLSEQ_END
2779  // unless LatestCallStackDown is an CALLSEQ_START.
2780  if (LatestCallSeqStart->getOpcode() == ISD::CALLSEQ_START) {
2781    LatestCallSeqEnd = FindCallSeqEnd(LatestCallSeqStart);
2782    //std::cerr<<"Found end node: "; LatestCallSeqEnd->dump(); std::cerr <<"\n";
2783  } else {
2784    LatestCallSeqEnd = Entry.Val;
2785  }
2786  assert(LatestCallSeqEnd && "NULL return from FindCallSeqEnd");
2787
2788  // Finally, find the first call that this must come before, first we find the
2789  // CallSeqEnd that ends the call.
2790  OutChain = 0;
2791  std::set<SDNode*> Visited;
2792  FindEarliestCallSeqEnd(OpNode, OutChain, Visited);
2793
2794  // If we found one, translate from the adj up to the callseq_start.
2795  if (OutChain)
2796    OutChain = FindCallSeqStart(OutChain);
2797
2798  return SDOperand(LatestCallSeqEnd, 0);
2799}
2800
2801/// SpliceCallInto - Given the result chain of a libcall (CallResult), and a
2802void SelectionDAGLegalize::SpliceCallInto(const SDOperand &CallResult,
2803                                          SDNode *OutChain) {
2804  // Nothing to splice it into?
2805  if (OutChain == 0) return;
2806
2807  assert(OutChain->getOperand(0).getValueType() == MVT::Other);
2808  //OutChain->dump();
2809
2810  // Form a token factor node merging the old inval and the new inval.
2811  SDOperand InToken = DAG.getNode(ISD::TokenFactor, MVT::Other, CallResult,
2812                                  OutChain->getOperand(0));
2813  // Change the node to refer to the new token.
2814  OutChain->setAdjCallChain(InToken);
2815}
2816
2817
2818// ExpandLibCall - Expand a node into a call to a libcall.  If the result value
2819// does not fit into a register, return the lo part and set the hi part to the
2820// by-reg argument.  If it does fit into a single register, return the result
2821// and leave the Hi part unset.
2822SDOperand SelectionDAGLegalize::ExpandLibCall(const char *Name, SDNode *Node,
2823                                              SDOperand &Hi) {
2824  SDNode *OutChain;
2825  SDOperand InChain = FindInputOutputChains(Node, OutChain,
2826                                            DAG.getEntryNode());
2827  if (InChain.Val == 0)
2828    InChain = DAG.getEntryNode();
2829
2830  TargetLowering::ArgListTy Args;
2831  for (unsigned i = 0, e = Node->getNumOperands(); i != e; ++i) {
2832    MVT::ValueType ArgVT = Node->getOperand(i).getValueType();
2833    const Type *ArgTy = MVT::getTypeForValueType(ArgVT);
2834    Args.push_back(std::make_pair(Node->getOperand(i), ArgTy));
2835  }
2836  SDOperand Callee = DAG.getExternalSymbol(Name, TLI.getPointerTy());
2837
2838  // Splice the libcall in wherever FindInputOutputChains tells us to.
2839  const Type *RetTy = MVT::getTypeForValueType(Node->getValueType(0));
2840  std::pair<SDOperand,SDOperand> CallInfo =
2841    TLI.LowerCallTo(InChain, RetTy, false, CallingConv::C, false,
2842                    Callee, Args, DAG);
2843
2844  SDOperand Result;
2845  switch (getTypeAction(CallInfo.first.getValueType())) {
2846  default: assert(0 && "Unknown thing");
2847  case Legal:
2848    Result = CallInfo.first;
2849    break;
2850  case Promote:
2851    assert(0 && "Cannot promote this yet!");
2852  case Expand:
2853    ExpandOp(CallInfo.first, Result, Hi);
2854    CallInfo.second = LegalizeOp(CallInfo.second);
2855    break;
2856  }
2857
2858  SpliceCallInto(CallInfo.second, OutChain);
2859  NeedsAnotherIteration = true;
2860  return Result;
2861}
2862
2863
2864/// ExpandIntToFP - Expand a [US]INT_TO_FP operation, assuming that the
2865/// destination type is legal.
2866SDOperand SelectionDAGLegalize::
2867ExpandIntToFP(bool isSigned, MVT::ValueType DestTy, SDOperand Source) {
2868  assert(isTypeLegal(DestTy) && "Destination type is not legal!");
2869  assert(getTypeAction(Source.getValueType()) == Expand &&
2870         "This is not an expansion!");
2871  assert(Source.getValueType() == MVT::i64 && "Only handle expand from i64!");
2872
2873  if (!isSigned) {
2874    assert(Source.getValueType() == MVT::i64 &&
2875           "This only works for 64-bit -> FP");
2876    // The 64-bit value loaded will be incorrectly if the 'sign bit' of the
2877    // incoming integer is set.  To handle this, we dynamically test to see if
2878    // it is set, and, if so, add a fudge factor.
2879    SDOperand Lo, Hi;
2880    ExpandOp(Source, Lo, Hi);
2881
2882    // If this is unsigned, and not supported, first perform the conversion to
2883    // signed, then adjust the result if the sign bit is set.
2884    SDOperand SignedConv = ExpandIntToFP(true, DestTy,
2885                   DAG.getNode(ISD::BUILD_PAIR, Source.getValueType(), Lo, Hi));
2886
2887    SDOperand SignSet = DAG.getSetCC(TLI.getSetCCResultTy(), Hi,
2888                                     DAG.getConstant(0, Hi.getValueType()),
2889                                     ISD::SETLT);
2890    SDOperand Zero = getIntPtrConstant(0), Four = getIntPtrConstant(4);
2891    SDOperand CstOffset = DAG.getNode(ISD::SELECT, Zero.getValueType(),
2892                                      SignSet, Four, Zero);
2893    uint64_t FF = 0x5f800000ULL;
2894    if (TLI.isLittleEndian()) FF <<= 32;
2895    static Constant *FudgeFactor = ConstantUInt::get(Type::ULongTy, FF);
2896
2897    SDOperand CPIdx = DAG.getConstantPool(FudgeFactor, TLI.getPointerTy());
2898    CPIdx = DAG.getNode(ISD::ADD, TLI.getPointerTy(), CPIdx, CstOffset);
2899    SDOperand FudgeInReg;
2900    if (DestTy == MVT::f32)
2901      FudgeInReg = DAG.getLoad(MVT::f32, DAG.getEntryNode(), CPIdx,
2902                               DAG.getSrcValue(NULL));
2903    else {
2904      assert(DestTy == MVT::f64 && "Unexpected conversion");
2905      FudgeInReg = DAG.getExtLoad(ISD::EXTLOAD, MVT::f64, DAG.getEntryNode(),
2906                                  CPIdx, DAG.getSrcValue(NULL), MVT::f32);
2907    }
2908    return DAG.getNode(ISD::FADD, DestTy, SignedConv, FudgeInReg);
2909  }
2910
2911  // Check to see if the target has a custom way to lower this.  If so, use it.
2912  switch (TLI.getOperationAction(ISD::SINT_TO_FP, Source.getValueType())) {
2913  default: assert(0 && "This action not implemented for this operation!");
2914  case TargetLowering::Legal:
2915  case TargetLowering::Expand:
2916    break;   // This case is handled below.
2917  case TargetLowering::Custom: {
2918    SDOperand NV = TLI.LowerOperation(DAG.getNode(ISD::SINT_TO_FP, DestTy,
2919                                                  Source), DAG);
2920    if (NV.Val)
2921      return LegalizeOp(NV);
2922    break;   // The target decided this was legal after all
2923  }
2924  }
2925
2926  // Expand the source, then glue it back together for the call.  We must expand
2927  // the source in case it is shared (this pass of legalize must traverse it).
2928  SDOperand SrcLo, SrcHi;
2929  ExpandOp(Source, SrcLo, SrcHi);
2930  Source = DAG.getNode(ISD::BUILD_PAIR, Source.getValueType(), SrcLo, SrcHi);
2931
2932  SDNode *OutChain = 0;
2933  SDOperand InChain = FindInputOutputChains(Source.Val, OutChain,
2934                                            DAG.getEntryNode());
2935  const char *FnName = 0;
2936  if (DestTy == MVT::f32)
2937    FnName = "__floatdisf";
2938  else {
2939    assert(DestTy == MVT::f64 && "Unknown fp value type!");
2940    FnName = "__floatdidf";
2941  }
2942
2943  SDOperand Callee = DAG.getExternalSymbol(FnName, TLI.getPointerTy());
2944
2945  TargetLowering::ArgListTy Args;
2946  const Type *ArgTy = MVT::getTypeForValueType(Source.getValueType());
2947
2948  Args.push_back(std::make_pair(Source, ArgTy));
2949
2950  // We don't care about token chains for libcalls.  We just use the entry
2951  // node as our input and ignore the output chain.  This allows us to place
2952  // calls wherever we need them to satisfy data dependences.
2953  const Type *RetTy = MVT::getTypeForValueType(DestTy);
2954
2955  std::pair<SDOperand,SDOperand> CallResult =
2956    TLI.LowerCallTo(InChain, RetTy, false, CallingConv::C, true,
2957                    Callee, Args, DAG);
2958
2959  SpliceCallInto(CallResult.second, OutChain);
2960  return CallResult.first;
2961}
2962
2963
2964
2965/// ExpandOp - Expand the specified SDOperand into its two component pieces
2966/// Lo&Hi.  Note that the Op MUST be an expanded type.  As a result of this, the
2967/// LegalizeNodes map is filled in for any results that are not expanded, the
2968/// ExpandedNodes map is filled in for any results that are expanded, and the
2969/// Lo/Hi values are returned.
2970void SelectionDAGLegalize::ExpandOp(SDOperand Op, SDOperand &Lo, SDOperand &Hi){
2971  MVT::ValueType VT = Op.getValueType();
2972  MVT::ValueType NVT = TLI.getTypeToTransformTo(VT);
2973  SDNode *Node = Op.Val;
2974  assert(getTypeAction(VT) == Expand && "Not an expanded type!");
2975  assert(MVT::isInteger(VT) && "Cannot expand FP values!");
2976  assert(MVT::isInteger(NVT) && NVT < VT &&
2977         "Cannot expand to FP value or to larger int value!");
2978
2979  // See if we already expanded it.
2980  std::map<SDOperand, std::pair<SDOperand, SDOperand> >::iterator I
2981    = ExpandedNodes.find(Op);
2982  if (I != ExpandedNodes.end()) {
2983    Lo = I->second.first;
2984    Hi = I->second.second;
2985    return;
2986  }
2987
2988  // Expanding to multiple registers needs to perform an optimization step, and
2989  // is not careful to avoid operations the target does not support.  Make sure
2990  // that all generated operations are legalized in the next iteration.
2991  NeedsAnotherIteration = true;
2992
2993  switch (Node->getOpcode()) {
2994   case ISD::CopyFromReg:
2995      assert(0 && "CopyFromReg must be legal!");
2996   default:
2997    std::cerr << "NODE: "; Node->dump(); std::cerr << "\n";
2998    assert(0 && "Do not know how to expand this operator!");
2999    abort();
3000  case ISD::UNDEF:
3001    Lo = DAG.getNode(ISD::UNDEF, NVT);
3002    Hi = DAG.getNode(ISD::UNDEF, NVT);
3003    break;
3004  case ISD::Constant: {
3005    uint64_t Cst = cast<ConstantSDNode>(Node)->getValue();
3006    Lo = DAG.getConstant(Cst, NVT);
3007    Hi = DAG.getConstant(Cst >> MVT::getSizeInBits(NVT), NVT);
3008    break;
3009  }
3010
3011  case ISD::BUILD_PAIR:
3012    // Legalize both operands.  FIXME: in the future we should handle the case
3013    // where the two elements are not legal.
3014    assert(isTypeLegal(NVT) && "Cannot expand this multiple times yet!");
3015    Lo = LegalizeOp(Node->getOperand(0));
3016    Hi = LegalizeOp(Node->getOperand(1));
3017    break;
3018
3019  case ISD::CTPOP:
3020    ExpandOp(Node->getOperand(0), Lo, Hi);
3021    Lo = DAG.getNode(ISD::ADD, NVT,          // ctpop(HL) -> ctpop(H)+ctpop(L)
3022                     DAG.getNode(ISD::CTPOP, NVT, Lo),
3023                     DAG.getNode(ISD::CTPOP, NVT, Hi));
3024    Hi = DAG.getConstant(0, NVT);
3025    break;
3026
3027  case ISD::CTLZ: {
3028    // ctlz (HL) -> ctlz(H) != 32 ? ctlz(H) : (ctlz(L)+32)
3029    ExpandOp(Node->getOperand(0), Lo, Hi);
3030    SDOperand BitsC = DAG.getConstant(MVT::getSizeInBits(NVT), NVT);
3031    SDOperand HLZ = DAG.getNode(ISD::CTLZ, NVT, Hi);
3032    SDOperand TopNotZero = DAG.getSetCC(TLI.getSetCCResultTy(), HLZ, BitsC,
3033                                        ISD::SETNE);
3034    SDOperand LowPart = DAG.getNode(ISD::CTLZ, NVT, Lo);
3035    LowPart = DAG.getNode(ISD::ADD, NVT, LowPart, BitsC);
3036
3037    Lo = DAG.getNode(ISD::SELECT, NVT, TopNotZero, HLZ, LowPart);
3038    Hi = DAG.getConstant(0, NVT);
3039    break;
3040  }
3041
3042  case ISD::CTTZ: {
3043    // cttz (HL) -> cttz(L) != 32 ? cttz(L) : (cttz(H)+32)
3044    ExpandOp(Node->getOperand(0), Lo, Hi);
3045    SDOperand BitsC = DAG.getConstant(MVT::getSizeInBits(NVT), NVT);
3046    SDOperand LTZ = DAG.getNode(ISD::CTTZ, NVT, Lo);
3047    SDOperand BotNotZero = DAG.getSetCC(TLI.getSetCCResultTy(), LTZ, BitsC,
3048                                        ISD::SETNE);
3049    SDOperand HiPart = DAG.getNode(ISD::CTTZ, NVT, Hi);
3050    HiPart = DAG.getNode(ISD::ADD, NVT, HiPart, BitsC);
3051
3052    Lo = DAG.getNode(ISD::SELECT, NVT, BotNotZero, LTZ, HiPart);
3053    Hi = DAG.getConstant(0, NVT);
3054    break;
3055  }
3056
3057  case ISD::LOAD: {
3058    SDOperand Ch = LegalizeOp(Node->getOperand(0));   // Legalize the chain.
3059    SDOperand Ptr = LegalizeOp(Node->getOperand(1));  // Legalize the pointer.
3060    Lo = DAG.getLoad(NVT, Ch, Ptr, Node->getOperand(2));
3061
3062    // Increment the pointer to the other half.
3063    unsigned IncrementSize = MVT::getSizeInBits(Lo.getValueType())/8;
3064    Ptr = DAG.getNode(ISD::ADD, Ptr.getValueType(), Ptr,
3065                      getIntPtrConstant(IncrementSize));
3066    //Is this safe?  declaring that the two parts of the split load
3067    //are from the same instruction?
3068    Hi = DAG.getLoad(NVT, Ch, Ptr, Node->getOperand(2));
3069
3070    // Build a factor node to remember that this load is independent of the
3071    // other one.
3072    SDOperand TF = DAG.getNode(ISD::TokenFactor, MVT::Other, Lo.getValue(1),
3073                               Hi.getValue(1));
3074
3075    // Remember that we legalized the chain.
3076    AddLegalizedOperand(Op.getValue(1), TF);
3077    if (!TLI.isLittleEndian())
3078      std::swap(Lo, Hi);
3079    break;
3080  }
3081  case ISD::TAILCALL:
3082  case ISD::CALL: {
3083    SDOperand Chain  = LegalizeOp(Node->getOperand(0));  // Legalize the chain.
3084    SDOperand Callee = LegalizeOp(Node->getOperand(1));  // Legalize the callee.
3085
3086    bool Changed = false;
3087    std::vector<SDOperand> Ops;
3088    for (unsigned i = 2, e = Node->getNumOperands(); i != e; ++i) {
3089      Ops.push_back(LegalizeOp(Node->getOperand(i)));
3090      Changed |= Ops.back() != Node->getOperand(i);
3091    }
3092
3093    assert(Node->getNumValues() == 2 && Op.ResNo == 0 &&
3094           "Can only expand a call once so far, not i64 -> i16!");
3095
3096    std::vector<MVT::ValueType> RetTyVTs;
3097    RetTyVTs.reserve(3);
3098    RetTyVTs.push_back(NVT);
3099    RetTyVTs.push_back(NVT);
3100    RetTyVTs.push_back(MVT::Other);
3101    SDNode *NC = DAG.getCall(RetTyVTs, Chain, Callee, Ops,
3102                             Node->getOpcode() == ISD::TAILCALL);
3103    Lo = SDOperand(NC, 0);
3104    Hi = SDOperand(NC, 1);
3105
3106    // Insert the new chain mapping.
3107    AddLegalizedOperand(Op.getValue(1), Hi.getValue(2));
3108    break;
3109  }
3110  case ISD::AND:
3111  case ISD::OR:
3112  case ISD::XOR: {   // Simple logical operators -> two trivial pieces.
3113    SDOperand LL, LH, RL, RH;
3114    ExpandOp(Node->getOperand(0), LL, LH);
3115    ExpandOp(Node->getOperand(1), RL, RH);
3116    Lo = DAG.getNode(Node->getOpcode(), NVT, LL, RL);
3117    Hi = DAG.getNode(Node->getOpcode(), NVT, LH, RH);
3118    break;
3119  }
3120  case ISD::SELECT: {
3121    SDOperand C, LL, LH, RL, RH;
3122
3123    switch (getTypeAction(Node->getOperand(0).getValueType())) {
3124    case Expand: assert(0 && "It's impossible to expand bools");
3125    case Legal:
3126      C = LegalizeOp(Node->getOperand(0)); // Legalize the condition.
3127      break;
3128    case Promote:
3129      C = PromoteOp(Node->getOperand(0));  // Promote the condition.
3130      break;
3131    }
3132    ExpandOp(Node->getOperand(1), LL, LH);
3133    ExpandOp(Node->getOperand(2), RL, RH);
3134    Lo = DAG.getNode(ISD::SELECT, NVT, C, LL, RL);
3135    Hi = DAG.getNode(ISD::SELECT, NVT, C, LH, RH);
3136    break;
3137  }
3138  case ISD::SELECT_CC: {
3139    SDOperand TL, TH, FL, FH;
3140    ExpandOp(Node->getOperand(2), TL, TH);
3141    ExpandOp(Node->getOperand(3), FL, FH);
3142    Lo = DAG.getNode(ISD::SELECT_CC, NVT, Node->getOperand(0),
3143                     Node->getOperand(1), TL, FL, Node->getOperand(4));
3144    Hi = DAG.getNode(ISD::SELECT_CC, NVT, Node->getOperand(0),
3145                     Node->getOperand(1), TH, FH, Node->getOperand(4));
3146    Lo = LegalizeOp(Lo);
3147    Hi = LegalizeOp(Hi);
3148    break;
3149  }
3150  case ISD::SEXTLOAD: {
3151    SDOperand Chain = LegalizeOp(Node->getOperand(0));
3152    SDOperand Ptr   = LegalizeOp(Node->getOperand(1));
3153    MVT::ValueType EVT = cast<VTSDNode>(Node->getOperand(3))->getVT();
3154
3155    if (EVT == NVT)
3156      Lo = DAG.getLoad(NVT, Chain, Ptr, Node->getOperand(2));
3157    else
3158      Lo = DAG.getExtLoad(ISD::SEXTLOAD, NVT, Chain, Ptr, Node->getOperand(2),
3159                          EVT);
3160
3161    // Remember that we legalized the chain.
3162    AddLegalizedOperand(SDOperand(Node, 1), Lo.getValue(1));
3163
3164    // The high part is obtained by SRA'ing all but one of the bits of the lo
3165    // part.
3166    unsigned LoSize = MVT::getSizeInBits(Lo.getValueType());
3167    Hi = DAG.getNode(ISD::SRA, NVT, Lo, DAG.getConstant(LoSize-1,
3168                                                       TLI.getShiftAmountTy()));
3169    Lo = LegalizeOp(Lo);
3170    Hi = LegalizeOp(Hi);
3171    break;
3172  }
3173  case ISD::ZEXTLOAD: {
3174    SDOperand Chain = LegalizeOp(Node->getOperand(0));
3175    SDOperand Ptr   = LegalizeOp(Node->getOperand(1));
3176    MVT::ValueType EVT = cast<VTSDNode>(Node->getOperand(3))->getVT();
3177
3178    if (EVT == NVT)
3179      Lo = DAG.getLoad(NVT, Chain, Ptr, Node->getOperand(2));
3180    else
3181      Lo = DAG.getExtLoad(ISD::ZEXTLOAD, NVT, Chain, Ptr, Node->getOperand(2),
3182                          EVT);
3183
3184    // Remember that we legalized the chain.
3185    AddLegalizedOperand(SDOperand(Node, 1), Lo.getValue(1));
3186
3187    // The high part is just a zero.
3188    Hi = LegalizeOp(DAG.getConstant(0, NVT));
3189    Lo = LegalizeOp(Lo);
3190    break;
3191  }
3192  case ISD::EXTLOAD: {
3193    SDOperand Chain = LegalizeOp(Node->getOperand(0));
3194    SDOperand Ptr   = LegalizeOp(Node->getOperand(1));
3195    MVT::ValueType EVT = cast<VTSDNode>(Node->getOperand(3))->getVT();
3196
3197    if (EVT == NVT)
3198      Lo = DAG.getLoad(NVT, Chain, Ptr, Node->getOperand(2));
3199    else
3200      Lo = DAG.getExtLoad(ISD::EXTLOAD, NVT, Chain, Ptr, Node->getOperand(2),
3201                          EVT);
3202
3203    // Remember that we legalized the chain.
3204    AddLegalizedOperand(SDOperand(Node, 1), Lo.getValue(1));
3205
3206    // The high part is undefined.
3207    Hi = LegalizeOp(DAG.getNode(ISD::UNDEF, NVT));
3208    Lo = LegalizeOp(Lo);
3209    break;
3210  }
3211  case ISD::ANY_EXTEND: {
3212    SDOperand In;
3213    switch (getTypeAction(Node->getOperand(0).getValueType())) {
3214    case Expand: assert(0 && "expand-expand not implemented yet!");
3215    case Legal: In = LegalizeOp(Node->getOperand(0)); break;
3216    case Promote:
3217      In = PromoteOp(Node->getOperand(0));
3218      break;
3219    }
3220
3221    // The low part is any extension of the input (which degenerates to a copy).
3222    Lo = DAG.getNode(ISD::ANY_EXTEND, NVT, In);
3223    // The high part is undefined.
3224    Hi = DAG.getNode(ISD::UNDEF, NVT);
3225    break;
3226  }
3227  case ISD::SIGN_EXTEND: {
3228    SDOperand In;
3229    switch (getTypeAction(Node->getOperand(0).getValueType())) {
3230    case Expand: assert(0 && "expand-expand not implemented yet!");
3231    case Legal: In = LegalizeOp(Node->getOperand(0)); break;
3232    case Promote:
3233      In = PromoteOp(Node->getOperand(0));
3234      // Emit the appropriate sign_extend_inreg to get the value we want.
3235      In = DAG.getNode(ISD::SIGN_EXTEND_INREG, In.getValueType(), In,
3236                       DAG.getValueType(Node->getOperand(0).getValueType()));
3237      break;
3238    }
3239
3240    // The low part is just a sign extension of the input (which degenerates to
3241    // a copy).
3242    Lo = DAG.getNode(ISD::SIGN_EXTEND, NVT, In);
3243
3244    // The high part is obtained by SRA'ing all but one of the bits of the lo
3245    // part.
3246    unsigned LoSize = MVT::getSizeInBits(Lo.getValueType());
3247    Hi = DAG.getNode(ISD::SRA, NVT, Lo, DAG.getConstant(LoSize-1,
3248                                                       TLI.getShiftAmountTy()));
3249    break;
3250  }
3251  case ISD::ZERO_EXTEND: {
3252    SDOperand In;
3253    switch (getTypeAction(Node->getOperand(0).getValueType())) {
3254    case Expand: assert(0 && "expand-expand not implemented yet!");
3255    case Legal: In = LegalizeOp(Node->getOperand(0)); break;
3256    case Promote:
3257      In = PromoteOp(Node->getOperand(0));
3258      // Emit the appropriate zero_extend_inreg to get the value we want.
3259      In = DAG.getZeroExtendInReg(In, Node->getOperand(0).getValueType());
3260      break;
3261    }
3262
3263    // The low part is just a zero extension of the input (which degenerates to
3264    // a copy).
3265    Lo = DAG.getNode(ISD::ZERO_EXTEND, NVT, In);
3266
3267    // The high part is just a zero.
3268    Hi = DAG.getConstant(0, NVT);
3269    break;
3270  }
3271    // These operators cannot be expanded directly, emit them as calls to
3272    // library functions.
3273  case ISD::FP_TO_SINT:
3274    if (TLI.getOperationAction(ISD::FP_TO_SINT, VT) == TargetLowering::Custom) {
3275      SDOperand Op;
3276      switch (getTypeAction(Node->getOperand(0).getValueType())) {
3277      case Expand: assert(0 && "cannot expand FP!");
3278      case Legal: Op = LegalizeOp(Node->getOperand(0)); break;
3279      case Promote: Op = PromoteOp(Node->getOperand(0)); break;
3280      }
3281
3282      Op = TLI.LowerOperation(DAG.getNode(ISD::FP_TO_SINT, VT, Op), DAG);
3283
3284      // Now that the custom expander is done, expand the result, which is still
3285      // VT.
3286      if (Op.Val) {
3287        ExpandOp(Op, Lo, Hi);
3288        break;
3289      }
3290    }
3291
3292    if (Node->getOperand(0).getValueType() == MVT::f32)
3293      Lo = ExpandLibCall("__fixsfdi", Node, Hi);
3294    else
3295      Lo = ExpandLibCall("__fixdfdi", Node, Hi);
3296    break;
3297
3298  case ISD::FP_TO_UINT:
3299    if (TLI.getOperationAction(ISD::FP_TO_UINT, VT) == TargetLowering::Custom) {
3300      SDOperand Op = DAG.getNode(ISD::FP_TO_UINT, VT,
3301                                 LegalizeOp(Node->getOperand(0)));
3302      // Now that the custom expander is done, expand the result, which is still
3303      // VT.
3304      Op = TLI.LowerOperation(Op, DAG);
3305      if (Op.Val) {
3306        ExpandOp(Op, Lo, Hi);
3307        break;
3308      }
3309    }
3310
3311    if (Node->getOperand(0).getValueType() == MVT::f32)
3312      Lo = ExpandLibCall("__fixunssfdi", Node, Hi);
3313    else
3314      Lo = ExpandLibCall("__fixunsdfdi", Node, Hi);
3315    break;
3316
3317  case ISD::SHL:
3318    // If the target wants custom lowering, do so.
3319    if (TLI.getOperationAction(ISD::SHL, VT) == TargetLowering::Custom) {
3320      SDOperand Op = DAG.getNode(ISD::SHL, VT, Node->getOperand(0),
3321                                 LegalizeOp(Node->getOperand(1)));
3322      Op = TLI.LowerOperation(Op, DAG);
3323      if (Op.Val) {
3324        // Now that the custom expander is done, expand the result, which is
3325        // still VT.
3326        ExpandOp(Op, Lo, Hi);
3327        break;
3328      }
3329    }
3330
3331    // If we can emit an efficient shift operation, do so now.
3332    if (ExpandShift(ISD::SHL, Node->getOperand(0), Node->getOperand(1), Lo, Hi))
3333      break;
3334
3335    // If this target supports SHL_PARTS, use it.
3336    if (TLI.isOperationLegal(ISD::SHL_PARTS, NVT)) {
3337      ExpandShiftParts(ISD::SHL_PARTS, Node->getOperand(0), Node->getOperand(1),
3338                       Lo, Hi);
3339      break;
3340    }
3341
3342    // Otherwise, emit a libcall.
3343    Lo = ExpandLibCall("__ashldi3", Node, Hi);
3344    break;
3345
3346  case ISD::SRA:
3347    // If the target wants custom lowering, do so.
3348    if (TLI.getOperationAction(ISD::SRA, VT) == TargetLowering::Custom) {
3349      SDOperand Op = DAG.getNode(ISD::SRA, VT, Node->getOperand(0),
3350                                 LegalizeOp(Node->getOperand(1)));
3351      Op = TLI.LowerOperation(Op, DAG);
3352      if (Op.Val) {
3353        // Now that the custom expander is done, expand the result, which is
3354        // still VT.
3355        ExpandOp(Op, Lo, Hi);
3356        break;
3357      }
3358    }
3359
3360    // If we can emit an efficient shift operation, do so now.
3361    if (ExpandShift(ISD::SRA, Node->getOperand(0), Node->getOperand(1), Lo, Hi))
3362      break;
3363
3364    // If this target supports SRA_PARTS, use it.
3365    if (TLI.isOperationLegal(ISD::SRA_PARTS, NVT)) {
3366      ExpandShiftParts(ISD::SRA_PARTS, Node->getOperand(0), Node->getOperand(1),
3367                       Lo, Hi);
3368      break;
3369    }
3370
3371    // Otherwise, emit a libcall.
3372    Lo = ExpandLibCall("__ashrdi3", Node, Hi);
3373    break;
3374  case ISD::SRL:
3375    // If the target wants custom lowering, do so.
3376    if (TLI.getOperationAction(ISD::SRL, VT) == TargetLowering::Custom) {
3377      SDOperand Op = DAG.getNode(ISD::SRL, VT, Node->getOperand(0),
3378                                 LegalizeOp(Node->getOperand(1)));
3379      Op = TLI.LowerOperation(Op, DAG);
3380      if (Op.Val) {
3381        // Now that the custom expander is done, expand the result, which is
3382        // still VT.
3383        ExpandOp(Op, Lo, Hi);
3384        break;
3385      }
3386    }
3387
3388    // If we can emit an efficient shift operation, do so now.
3389    if (ExpandShift(ISD::SRL, Node->getOperand(0), Node->getOperand(1), Lo, Hi))
3390      break;
3391
3392    // If this target supports SRL_PARTS, use it.
3393    if (TLI.isOperationLegal(ISD::SRL_PARTS, NVT)) {
3394      ExpandShiftParts(ISD::SRL_PARTS, Node->getOperand(0), Node->getOperand(1),
3395                       Lo, Hi);
3396      break;
3397    }
3398
3399    // Otherwise, emit a libcall.
3400    Lo = ExpandLibCall("__lshrdi3", Node, Hi);
3401    break;
3402
3403  case ISD::ADD:
3404    ExpandByParts(ISD::ADD_PARTS, Node->getOperand(0), Node->getOperand(1),
3405                  Lo, Hi);
3406    break;
3407  case ISD::SUB:
3408    ExpandByParts(ISD::SUB_PARTS, Node->getOperand(0), Node->getOperand(1),
3409                  Lo, Hi);
3410    break;
3411  case ISD::MUL: {
3412    if (TLI.isOperationLegal(ISD::MULHU, NVT)) {
3413      SDOperand LL, LH, RL, RH;
3414      ExpandOp(Node->getOperand(0), LL, LH);
3415      ExpandOp(Node->getOperand(1), RL, RH);
3416      unsigned SH = MVT::getSizeInBits(RH.getValueType())-1;
3417      // MULHS implicitly sign extends its inputs.  Check to see if ExpandOp
3418      // extended the sign bit of the low half through the upper half, and if so
3419      // emit a MULHS instead of the alternate sequence that is valid for any
3420      // i64 x i64 multiply.
3421      if (TLI.isOperationLegal(ISD::MULHS, NVT) &&
3422          // is RH an extension of the sign bit of RL?
3423          RH.getOpcode() == ISD::SRA && RH.getOperand(0) == RL &&
3424          RH.getOperand(1).getOpcode() == ISD::Constant &&
3425          cast<ConstantSDNode>(RH.getOperand(1))->getValue() == SH &&
3426          // is LH an extension of the sign bit of LL?
3427          LH.getOpcode() == ISD::SRA && LH.getOperand(0) == LL &&
3428          LH.getOperand(1).getOpcode() == ISD::Constant &&
3429          cast<ConstantSDNode>(LH.getOperand(1))->getValue() == SH) {
3430        Hi = DAG.getNode(ISD::MULHS, NVT, LL, RL);
3431      } else {
3432        Hi = DAG.getNode(ISD::MULHU, NVT, LL, RL);
3433        RH = DAG.getNode(ISD::MUL, NVT, LL, RH);
3434        LH = DAG.getNode(ISD::MUL, NVT, LH, RL);
3435        Hi = DAG.getNode(ISD::ADD, NVT, Hi, RH);
3436        Hi = DAG.getNode(ISD::ADD, NVT, Hi, LH);
3437      }
3438      Lo = DAG.getNode(ISD::MUL, NVT, LL, RL);
3439    } else {
3440      Lo = ExpandLibCall("__muldi3" , Node, Hi); break;
3441    }
3442    break;
3443  }
3444  case ISD::SDIV: Lo = ExpandLibCall("__divdi3" , Node, Hi); break;
3445  case ISD::UDIV: Lo = ExpandLibCall("__udivdi3", Node, Hi); break;
3446  case ISD::SREM: Lo = ExpandLibCall("__moddi3" , Node, Hi); break;
3447  case ISD::UREM: Lo = ExpandLibCall("__umoddi3", Node, Hi); break;
3448  }
3449
3450  // Remember in a map if the values will be reused later.
3451  bool isNew = ExpandedNodes.insert(std::make_pair(Op,
3452                                          std::make_pair(Lo, Hi))).second;
3453  assert(isNew && "Value already expanded?!?");
3454}
3455
3456
3457// SelectionDAG::Legalize - This is the entry point for the file.
3458//
3459void SelectionDAG::Legalize() {
3460  /// run - This is the main entry point to this class.
3461  ///
3462  SelectionDAGLegalize(*this).Run();
3463}
3464
3465