InstrEmitter.cpp revision b9a3f3d2d395ff32a4f40fe6642d5f0e38a2c0be
1//==--- InstrEmitter.cpp - Emit MachineInstrs for the SelectionDAG class ---==//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This implements the Emit routines for the SelectionDAG class, which creates
11// MachineInstrs based on the decisions of the SelectionDAG instruction
12// selection.
13//
14//===----------------------------------------------------------------------===//
15
16#define DEBUG_TYPE "instr-emitter"
17#include "InstrEmitter.h"
18#include "SDNodeDbgValue.h"
19#include "llvm/CodeGen/MachineConstantPool.h"
20#include "llvm/CodeGen/MachineFunction.h"
21#include "llvm/CodeGen/MachineInstrBuilder.h"
22#include "llvm/CodeGen/MachineRegisterInfo.h"
23#include "llvm/Target/TargetData.h"
24#include "llvm/Target/TargetMachine.h"
25#include "llvm/Target/TargetInstrInfo.h"
26#include "llvm/Target/TargetLowering.h"
27#include "llvm/ADT/Statistic.h"
28#include "llvm/Support/Debug.h"
29#include "llvm/Support/ErrorHandling.h"
30#include "llvm/Support/MathExtras.h"
31using namespace llvm;
32
33/// CountResults - The results of target nodes have register or immediate
34/// operands first, then an optional chain, and optional flag operands (which do
35/// not go into the resulting MachineInstr).
36unsigned InstrEmitter::CountResults(SDNode *Node) {
37  unsigned N = Node->getNumValues();
38  while (N && Node->getValueType(N - 1) == MVT::Flag)
39    --N;
40  if (N && Node->getValueType(N - 1) == MVT::Other)
41    --N;    // Skip over chain result.
42  return N;
43}
44
45/// CountOperands - The inputs to target nodes have any actual inputs first,
46/// followed by an optional chain operand, then an optional flag operand.
47/// Compute the number of actual operands that will go into the resulting
48/// MachineInstr.
49unsigned InstrEmitter::CountOperands(SDNode *Node) {
50  unsigned N = Node->getNumOperands();
51  while (N && Node->getOperand(N - 1).getValueType() == MVT::Flag)
52    --N;
53  if (N && Node->getOperand(N - 1).getValueType() == MVT::Other)
54    --N; // Ignore chain if it exists.
55  return N;
56}
57
58/// EmitCopyFromReg - Generate machine code for an CopyFromReg node or an
59/// implicit physical register output.
60void InstrEmitter::
61EmitCopyFromReg(SDNode *Node, unsigned ResNo, bool IsClone, bool IsCloned,
62                unsigned SrcReg, DenseMap<SDValue, unsigned> &VRBaseMap) {
63  unsigned VRBase = 0;
64  if (TargetRegisterInfo::isVirtualRegister(SrcReg)) {
65    // Just use the input register directly!
66    SDValue Op(Node, ResNo);
67    if (IsClone)
68      VRBaseMap.erase(Op);
69    bool isNew = VRBaseMap.insert(std::make_pair(Op, SrcReg)).second;
70    isNew = isNew; // Silence compiler warning.
71    assert(isNew && "Node emitted out of order - early");
72    return;
73  }
74
75  // If the node is only used by a CopyToReg and the dest reg is a vreg, use
76  // the CopyToReg'd destination register instead of creating a new vreg.
77  bool MatchReg = true;
78  const TargetRegisterClass *UseRC = NULL;
79  if (!IsClone && !IsCloned)
80    for (SDNode::use_iterator UI = Node->use_begin(), E = Node->use_end();
81         UI != E; ++UI) {
82      SDNode *User = *UI;
83      bool Match = true;
84      if (User->getOpcode() == ISD::CopyToReg &&
85          User->getOperand(2).getNode() == Node &&
86          User->getOperand(2).getResNo() == ResNo) {
87        unsigned DestReg = cast<RegisterSDNode>(User->getOperand(1))->getReg();
88        if (TargetRegisterInfo::isVirtualRegister(DestReg)) {
89          VRBase = DestReg;
90          Match = false;
91        } else if (DestReg != SrcReg)
92          Match = false;
93      } else {
94        for (unsigned i = 0, e = User->getNumOperands(); i != e; ++i) {
95          SDValue Op = User->getOperand(i);
96          if (Op.getNode() != Node || Op.getResNo() != ResNo)
97            continue;
98          EVT VT = Node->getValueType(Op.getResNo());
99          if (VT == MVT::Other || VT == MVT::Flag)
100            continue;
101          Match = false;
102          if (User->isMachineOpcode()) {
103            const TargetInstrDesc &II = TII->get(User->getMachineOpcode());
104            const TargetRegisterClass *RC = 0;
105            if (i+II.getNumDefs() < II.getNumOperands())
106              RC = II.OpInfo[i+II.getNumDefs()].getRegClass(TRI);
107            if (!UseRC)
108              UseRC = RC;
109            else if (RC) {
110              const TargetRegisterClass *ComRC = getCommonSubClass(UseRC, RC);
111              // If multiple uses expect disjoint register classes, we emit
112              // copies in AddRegisterOperand.
113              if (ComRC)
114                UseRC = ComRC;
115            }
116          }
117        }
118      }
119      MatchReg &= Match;
120      if (VRBase)
121        break;
122    }
123
124  EVT VT = Node->getValueType(ResNo);
125  const TargetRegisterClass *SrcRC = 0, *DstRC = 0;
126  SrcRC = TRI->getPhysicalRegisterRegClass(SrcReg, VT);
127
128  // Figure out the register class to create for the destreg.
129  if (VRBase) {
130    DstRC = MRI->getRegClass(VRBase);
131  } else if (UseRC) {
132    assert(UseRC->hasType(VT) && "Incompatible phys register def and uses!");
133    DstRC = UseRC;
134  } else {
135    DstRC = TLI->getRegClassFor(VT);
136  }
137
138  // If all uses are reading from the src physical register and copying the
139  // register is either impossible or very expensive, then don't create a copy.
140  if (MatchReg && SrcRC->getCopyCost() < 0) {
141    VRBase = SrcReg;
142  } else {
143    // Create the reg, emit the copy.
144    VRBase = MRI->createVirtualRegister(DstRC);
145    bool Emitted = TII->copyRegToReg(*MBB, InsertPos, VRBase, SrcReg,
146                                     DstRC, SrcRC);
147
148    assert(Emitted && "Unable to issue a copy instruction!\n");
149    (void) Emitted;
150  }
151
152  SDValue Op(Node, ResNo);
153  if (IsClone)
154    VRBaseMap.erase(Op);
155  bool isNew = VRBaseMap.insert(std::make_pair(Op, VRBase)).second;
156  isNew = isNew; // Silence compiler warning.
157  assert(isNew && "Node emitted out of order - early");
158}
159
160/// getDstOfCopyToRegUse - If the only use of the specified result number of
161/// node is a CopyToReg, return its destination register. Return 0 otherwise.
162unsigned InstrEmitter::getDstOfOnlyCopyToRegUse(SDNode *Node,
163                                                unsigned ResNo) const {
164  if (!Node->hasOneUse())
165    return 0;
166
167  SDNode *User = *Node->use_begin();
168  if (User->getOpcode() == ISD::CopyToReg &&
169      User->getOperand(2).getNode() == Node &&
170      User->getOperand(2).getResNo() == ResNo) {
171    unsigned Reg = cast<RegisterSDNode>(User->getOperand(1))->getReg();
172    if (TargetRegisterInfo::isVirtualRegister(Reg))
173      return Reg;
174  }
175  return 0;
176}
177
178void InstrEmitter::CreateVirtualRegisters(SDNode *Node, MachineInstr *MI,
179                                       const TargetInstrDesc &II,
180                                       bool IsClone, bool IsCloned,
181                                       DenseMap<SDValue, unsigned> &VRBaseMap) {
182  assert(Node->getMachineOpcode() != TargetOpcode::IMPLICIT_DEF &&
183         "IMPLICIT_DEF should have been handled as a special case elsewhere!");
184
185  for (unsigned i = 0; i < II.getNumDefs(); ++i) {
186    // If the specific node value is only used by a CopyToReg and the dest reg
187    // is a vreg in the same register class, use the CopyToReg'd destination
188    // register instead of creating a new vreg.
189    unsigned VRBase = 0;
190    const TargetRegisterClass *RC = II.OpInfo[i].getRegClass(TRI);
191    if (II.OpInfo[i].isOptionalDef()) {
192      // Optional def must be a physical register.
193      unsigned NumResults = CountResults(Node);
194      VRBase = cast<RegisterSDNode>(Node->getOperand(i-NumResults))->getReg();
195      assert(TargetRegisterInfo::isPhysicalRegister(VRBase));
196      MI->addOperand(MachineOperand::CreateReg(VRBase, true));
197    }
198
199    if (!VRBase && !IsClone && !IsCloned)
200      for (SDNode::use_iterator UI = Node->use_begin(), E = Node->use_end();
201           UI != E; ++UI) {
202        SDNode *User = *UI;
203        if (User->getOpcode() == ISD::CopyToReg &&
204            User->getOperand(2).getNode() == Node &&
205            User->getOperand(2).getResNo() == i) {
206          unsigned Reg = cast<RegisterSDNode>(User->getOperand(1))->getReg();
207          if (TargetRegisterInfo::isVirtualRegister(Reg)) {
208            const TargetRegisterClass *RegRC = MRI->getRegClass(Reg);
209            if (RegRC == RC) {
210              VRBase = Reg;
211              MI->addOperand(MachineOperand::CreateReg(Reg, true));
212              break;
213            }
214          }
215        }
216      }
217
218    // Create the result registers for this node and add the result regs to
219    // the machine instruction.
220    if (VRBase == 0) {
221      assert(RC && "Isn't a register operand!");
222      VRBase = MRI->createVirtualRegister(RC);
223      MI->addOperand(MachineOperand::CreateReg(VRBase, true));
224    }
225
226    SDValue Op(Node, i);
227    if (IsClone)
228      VRBaseMap.erase(Op);
229    bool isNew = VRBaseMap.insert(std::make_pair(Op, VRBase)).second;
230    isNew = isNew; // Silence compiler warning.
231    assert(isNew && "Node emitted out of order - early");
232  }
233}
234
235/// getVR - Return the virtual register corresponding to the specified result
236/// of the specified node.
237unsigned InstrEmitter::getVR(SDValue Op,
238                             DenseMap<SDValue, unsigned> &VRBaseMap) {
239  if (Op.isMachineOpcode() &&
240      Op.getMachineOpcode() == TargetOpcode::IMPLICIT_DEF) {
241    // Add an IMPLICIT_DEF instruction before every use.
242    unsigned VReg = getDstOfOnlyCopyToRegUse(Op.getNode(), Op.getResNo());
243    // IMPLICIT_DEF can produce any type of result so its TargetInstrDesc
244    // does not include operand register class info.
245    if (!VReg) {
246      const TargetRegisterClass *RC = TLI->getRegClassFor(Op.getValueType());
247      VReg = MRI->createVirtualRegister(RC);
248    }
249    BuildMI(MBB, Op.getDebugLoc(),
250            TII->get(TargetOpcode::IMPLICIT_DEF), VReg);
251    return VReg;
252  }
253
254  DenseMap<SDValue, unsigned>::iterator I = VRBaseMap.find(Op);
255  assert(I != VRBaseMap.end() && "Node emitted out of order - late");
256  return I->second;
257}
258
259
260/// AddRegisterOperand - Add the specified register as an operand to the
261/// specified machine instr. Insert register copies if the register is
262/// not in the required register class.
263void
264InstrEmitter::AddRegisterOperand(MachineInstr *MI, SDValue Op,
265                                 unsigned IIOpNum,
266                                 const TargetInstrDesc *II,
267                                 DenseMap<SDValue, unsigned> &VRBaseMap,
268                                 bool IsDebug) {
269  assert(Op.getValueType() != MVT::Other &&
270         Op.getValueType() != MVT::Flag &&
271         "Chain and flag operands should occur at end of operand list!");
272  // Get/emit the operand.
273  unsigned VReg = getVR(Op, VRBaseMap);
274  assert(TargetRegisterInfo::isVirtualRegister(VReg) && "Not a vreg?");
275
276  const TargetInstrDesc &TID = MI->getDesc();
277  bool isOptDef = IIOpNum < TID.getNumOperands() &&
278    TID.OpInfo[IIOpNum].isOptionalDef();
279
280  // If the instruction requires a register in a different class, create
281  // a new virtual register and copy the value into it.
282  if (II) {
283    const TargetRegisterClass *SrcRC = MRI->getRegClass(VReg);
284    const TargetRegisterClass *DstRC = 0;
285    if (IIOpNum < II->getNumOperands())
286      DstRC = II->OpInfo[IIOpNum].getRegClass(TRI);
287    assert((DstRC || (TID.isVariadic() && IIOpNum >= TID.getNumOperands())) &&
288           "Don't have operand info for this instruction!");
289    if (DstRC && SrcRC != DstRC && !SrcRC->hasSuperClass(DstRC)) {
290      unsigned NewVReg = MRI->createVirtualRegister(DstRC);
291      bool Emitted = TII->copyRegToReg(*MBB, InsertPos, NewVReg, VReg,
292                                       DstRC, SrcRC);
293      assert(Emitted && "Unable to issue a copy instruction!\n");
294      (void) Emitted;
295      VReg = NewVReg;
296    }
297  }
298
299  MI->addOperand(MachineOperand::CreateReg(VReg, isOptDef,
300                                           false/*isImp*/, false/*isKill*/,
301                                           false/*isDead*/, false/*isUndef*/,
302                                           false/*isEarlyClobber*/,
303                                           0/*SubReg*/, IsDebug));
304}
305
306/// AddOperand - Add the specified operand to the specified machine instr.  II
307/// specifies the instruction information for the node, and IIOpNum is the
308/// operand number (in the II) that we are adding. IIOpNum and II are used for
309/// assertions only.
310void InstrEmitter::AddOperand(MachineInstr *MI, SDValue Op,
311                              unsigned IIOpNum,
312                              const TargetInstrDesc *II,
313                              DenseMap<SDValue, unsigned> &VRBaseMap,
314                              bool IsDebug) {
315  if (Op.isMachineOpcode()) {
316    AddRegisterOperand(MI, Op, IIOpNum, II, VRBaseMap, IsDebug);
317  } else if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op)) {
318    MI->addOperand(MachineOperand::CreateImm(C->getSExtValue()));
319  } else if (ConstantFPSDNode *F = dyn_cast<ConstantFPSDNode>(Op)) {
320    const ConstantFP *CFP = F->getConstantFPValue();
321    MI->addOperand(MachineOperand::CreateFPImm(CFP));
322  } else if (RegisterSDNode *R = dyn_cast<RegisterSDNode>(Op)) {
323    MI->addOperand(MachineOperand::CreateReg(R->getReg(), false));
324  } else if (GlobalAddressSDNode *TGA = dyn_cast<GlobalAddressSDNode>(Op)) {
325    MI->addOperand(MachineOperand::CreateGA(TGA->getGlobal(), TGA->getOffset(),
326                                            TGA->getTargetFlags()));
327  } else if (BasicBlockSDNode *BBNode = dyn_cast<BasicBlockSDNode>(Op)) {
328    MI->addOperand(MachineOperand::CreateMBB(BBNode->getBasicBlock()));
329  } else if (FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(Op)) {
330    MI->addOperand(MachineOperand::CreateFI(FI->getIndex()));
331  } else if (JumpTableSDNode *JT = dyn_cast<JumpTableSDNode>(Op)) {
332    MI->addOperand(MachineOperand::CreateJTI(JT->getIndex(),
333                                             JT->getTargetFlags()));
334  } else if (ConstantPoolSDNode *CP = dyn_cast<ConstantPoolSDNode>(Op)) {
335    int Offset = CP->getOffset();
336    unsigned Align = CP->getAlignment();
337    const Type *Type = CP->getType();
338    // MachineConstantPool wants an explicit alignment.
339    if (Align == 0) {
340      Align = TM->getTargetData()->getPrefTypeAlignment(Type);
341      if (Align == 0) {
342        // Alignment of vector types.  FIXME!
343        Align = TM->getTargetData()->getTypeAllocSize(Type);
344      }
345    }
346
347    unsigned Idx;
348    MachineConstantPool *MCP = MF->getConstantPool();
349    if (CP->isMachineConstantPoolEntry())
350      Idx = MCP->getConstantPoolIndex(CP->getMachineCPVal(), Align);
351    else
352      Idx = MCP->getConstantPoolIndex(CP->getConstVal(), Align);
353    MI->addOperand(MachineOperand::CreateCPI(Idx, Offset,
354                                             CP->getTargetFlags()));
355  } else if (ExternalSymbolSDNode *ES = dyn_cast<ExternalSymbolSDNode>(Op)) {
356    MI->addOperand(MachineOperand::CreateES(ES->getSymbol(),
357                                            ES->getTargetFlags()));
358  } else if (BlockAddressSDNode *BA = dyn_cast<BlockAddressSDNode>(Op)) {
359    MI->addOperand(MachineOperand::CreateBA(BA->getBlockAddress(),
360                                            BA->getTargetFlags()));
361  } else {
362    assert(Op.getValueType() != MVT::Other &&
363           Op.getValueType() != MVT::Flag &&
364           "Chain and flag operands should occur at end of operand list!");
365    AddRegisterOperand(MI, Op, IIOpNum, II, VRBaseMap, IsDebug);
366  }
367}
368
369/// getSuperRegisterRegClass - Returns the register class of a superreg A whose
370/// "SubIdx"'th sub-register class is the specified register class and whose
371/// type matches the specified type.
372static const TargetRegisterClass*
373getSuperRegisterRegClass(const TargetRegisterClass *TRC,
374                         unsigned SubIdx, EVT VT) {
375  // Pick the register class of the superegister for this type
376  for (TargetRegisterInfo::regclass_iterator I = TRC->superregclasses_begin(),
377         E = TRC->superregclasses_end(); I != E; ++I)
378    if ((*I)->hasType(VT) && (*I)->getSubRegisterRegClass(SubIdx) == TRC)
379      return *I;
380  assert(false && "Couldn't find the register class");
381  return 0;
382}
383
384/// EmitSubregNode - Generate machine code for subreg nodes.
385///
386void InstrEmitter::EmitSubregNode(SDNode *Node,
387                                  DenseMap<SDValue, unsigned> &VRBaseMap){
388  unsigned VRBase = 0;
389  unsigned Opc = Node->getMachineOpcode();
390
391  // If the node is only used by a CopyToReg and the dest reg is a vreg, use
392  // the CopyToReg'd destination register instead of creating a new vreg.
393  for (SDNode::use_iterator UI = Node->use_begin(), E = Node->use_end();
394       UI != E; ++UI) {
395    SDNode *User = *UI;
396    if (User->getOpcode() == ISD::CopyToReg &&
397        User->getOperand(2).getNode() == Node) {
398      unsigned DestReg = cast<RegisterSDNode>(User->getOperand(1))->getReg();
399      if (TargetRegisterInfo::isVirtualRegister(DestReg)) {
400        VRBase = DestReg;
401        break;
402      }
403    }
404  }
405
406  if (Opc == TargetOpcode::EXTRACT_SUBREG) {
407    unsigned SubIdx = cast<ConstantSDNode>(Node->getOperand(1))->getZExtValue();
408
409    // Create the extract_subreg machine instruction.
410    MachineInstr *MI = BuildMI(*MF, Node->getDebugLoc(),
411                               TII->get(TargetOpcode::EXTRACT_SUBREG));
412
413    // Figure out the register class to create for the destreg.
414    unsigned VReg = getVR(Node->getOperand(0), VRBaseMap);
415    const TargetRegisterClass *TRC = MRI->getRegClass(VReg);
416    const TargetRegisterClass *SRC = TRC->getSubRegisterRegClass(SubIdx);
417    assert(SRC && "Invalid subregister index in EXTRACT_SUBREG");
418
419    // Figure out the register class to create for the destreg.
420    // Note that if we're going to directly use an existing register,
421    // it must be precisely the required class, and not a subclass
422    // thereof.
423    if (VRBase == 0 || SRC != MRI->getRegClass(VRBase)) {
424      // Create the reg
425      assert(SRC && "Couldn't find source register class");
426      VRBase = MRI->createVirtualRegister(SRC);
427    }
428
429    // Add def, source, and subreg index
430    MI->addOperand(MachineOperand::CreateReg(VRBase, true));
431    AddOperand(MI, Node->getOperand(0), 0, 0, VRBaseMap);
432    MI->addOperand(MachineOperand::CreateImm(SubIdx));
433    MBB->insert(InsertPos, MI);
434  } else if (Opc == TargetOpcode::INSERT_SUBREG ||
435             Opc == TargetOpcode::SUBREG_TO_REG) {
436    SDValue N0 = Node->getOperand(0);
437    SDValue N1 = Node->getOperand(1);
438    SDValue N2 = Node->getOperand(2);
439    unsigned SubReg = getVR(N1, VRBaseMap);
440    unsigned SubIdx = cast<ConstantSDNode>(N2)->getZExtValue();
441    const TargetRegisterClass *TRC = MRI->getRegClass(SubReg);
442    const TargetRegisterClass *SRC =
443      getSuperRegisterRegClass(TRC, SubIdx,
444                               Node->getValueType(0));
445
446    // Figure out the register class to create for the destreg.
447    // Note that if we're going to directly use an existing register,
448    // it must be precisely the required class, and not a subclass
449    // thereof.
450    if (VRBase == 0 || SRC != MRI->getRegClass(VRBase)) {
451      // Create the reg
452      assert(SRC && "Couldn't find source register class");
453      VRBase = MRI->createVirtualRegister(SRC);
454    }
455
456    // Create the insert_subreg or subreg_to_reg machine instruction.
457    MachineInstr *MI = BuildMI(*MF, Node->getDebugLoc(), TII->get(Opc));
458    MI->addOperand(MachineOperand::CreateReg(VRBase, true));
459
460    // If creating a subreg_to_reg, then the first input operand
461    // is an implicit value immediate, otherwise it's a register
462    if (Opc == TargetOpcode::SUBREG_TO_REG) {
463      const ConstantSDNode *SD = cast<ConstantSDNode>(N0);
464      MI->addOperand(MachineOperand::CreateImm(SD->getZExtValue()));
465    } else
466      AddOperand(MI, N0, 0, 0, VRBaseMap);
467    // Add the subregster being inserted
468    AddOperand(MI, N1, 0, 0, VRBaseMap);
469    MI->addOperand(MachineOperand::CreateImm(SubIdx));
470    MBB->insert(InsertPos, MI);
471  } else
472    llvm_unreachable("Node is not insert_subreg, extract_subreg, or subreg_to_reg");
473
474  SDValue Op(Node, 0);
475  bool isNew = VRBaseMap.insert(std::make_pair(Op, VRBase)).second;
476  isNew = isNew; // Silence compiler warning.
477  assert(isNew && "Node emitted out of order - early");
478}
479
480/// EmitCopyToRegClassNode - Generate machine code for COPY_TO_REGCLASS nodes.
481/// COPY_TO_REGCLASS is just a normal copy, except that the destination
482/// register is constrained to be in a particular register class.
483///
484void
485InstrEmitter::EmitCopyToRegClassNode(SDNode *Node,
486                                     DenseMap<SDValue, unsigned> &VRBaseMap) {
487  unsigned VReg = getVR(Node->getOperand(0), VRBaseMap);
488  const TargetRegisterClass *SrcRC = MRI->getRegClass(VReg);
489
490  unsigned DstRCIdx = cast<ConstantSDNode>(Node->getOperand(1))->getZExtValue();
491  const TargetRegisterClass *DstRC = TRI->getRegClass(DstRCIdx);
492
493  // Create the new VReg in the destination class and emit a copy.
494  unsigned NewVReg = MRI->createVirtualRegister(DstRC);
495  bool Emitted = TII->copyRegToReg(*MBB, InsertPos, NewVReg, VReg,
496                                   DstRC, SrcRC);
497  assert(Emitted &&
498         "Unable to issue a copy instruction for a COPY_TO_REGCLASS node!\n");
499  (void) Emitted;
500
501  SDValue Op(Node, 0);
502  bool isNew = VRBaseMap.insert(std::make_pair(Op, NewVReg)).second;
503  isNew = isNew; // Silence compiler warning.
504  assert(isNew && "Node emitted out of order - early");
505}
506
507/// EmitDbgValue - Generate machine instruction for a dbg_value node.
508///
509MachineInstr *InstrEmitter::EmitDbgValue(SDDbgValue *SD,
510                                         MachineBasicBlock *InsertBB,
511                                         DenseMap<SDValue, unsigned> &VRBaseMap,
512                         DenseMap<MachineBasicBlock*, MachineBasicBlock*> *EM) {
513  uint64_t Offset = SD->getOffset();
514  MDNode* MDPtr = SD->getMDPtr();
515  DebugLoc DL = SD->getDebugLoc();
516
517  const TargetInstrDesc &II = TII->get(TargetOpcode::DBG_VALUE);
518  MachineInstrBuilder MIB = BuildMI(*MF, DL, II);
519  if (SD->getKind() == SDDbgValue::SDNODE) {
520    SDNode *Node = SD->getSDNode();
521    SDValue Op = SDValue(Node, SD->getResNo());
522    // It's possible we replaced this SDNode with other(s) and therefore
523    // didn't generate code for it.  It's better to catch these cases where
524    // they happen and transfer the debug info, but trying to guarantee that
525    // in all cases would be very fragile; this is a safeguard for any
526    // that were missed.
527    DenseMap<SDValue, unsigned>::iterator I = VRBaseMap.find(Op);
528    if (I==VRBaseMap.end())
529      MIB.addReg(0U);       // undef
530    else
531      AddOperand(&*MIB, Op, (*MIB).getNumOperands(), &II, VRBaseMap,
532                 true /*IsDebug*/);
533  } else if (SD->getKind() == SDDbgValue::CONST) {
534    Value *V = SD->getConst();
535    if (ConstantInt *CI = dyn_cast<ConstantInt>(V)) {
536      MIB.addImm(CI->getSExtValue());
537    } else if (ConstantFP *CF = dyn_cast<ConstantFP>(V)) {
538      MIB.addFPImm(CF);
539    } else {
540      // Could be an Undef.  In any case insert an Undef so we can see what we
541      // dropped.
542      MIB.addReg(0U);
543    }
544  } else if (SD->getKind() == SDDbgValue::FRAMEIX) {
545    unsigned FrameIx = SD->getFrameIx();
546    // Stack address; this needs to be lowered in target-dependent fashion.
547    // FIXME test that the target supports this somehow; if not emit Undef.
548    // Create a pseudo for EmitInstrWithCustomInserter's consumption.
549    MIB.addImm(FrameIx).addImm(Offset).addMetadata(MDPtr);
550    abort();
551    TLI->EmitInstrWithCustomInserter(&*MIB, InsertBB, EM);
552    return 0;
553  } else {
554    // Insert an Undef so we can see what we dropped.
555    MIB.addReg(0U);
556  }
557
558  MIB.addImm(Offset).addMetadata(MDPtr);
559  return &*MIB;
560}
561
562/// EmitMachineNode - Generate machine code for a target-specific node and
563/// needed dependencies.
564///
565void InstrEmitter::
566EmitMachineNode(SDNode *Node, bool IsClone, bool IsCloned,
567                DenseMap<SDValue, unsigned> &VRBaseMap,
568                DenseMap<MachineBasicBlock*, MachineBasicBlock*> *EM) {
569  unsigned Opc = Node->getMachineOpcode();
570
571  // Handle subreg insert/extract specially
572  if (Opc == TargetOpcode::EXTRACT_SUBREG ||
573      Opc == TargetOpcode::INSERT_SUBREG ||
574      Opc == TargetOpcode::SUBREG_TO_REG) {
575    EmitSubregNode(Node, VRBaseMap);
576    return;
577  }
578
579  // Handle COPY_TO_REGCLASS specially.
580  if (Opc == TargetOpcode::COPY_TO_REGCLASS) {
581    EmitCopyToRegClassNode(Node, VRBaseMap);
582    return;
583  }
584
585  if (Opc == TargetOpcode::IMPLICIT_DEF)
586    // We want a unique VR for each IMPLICIT_DEF use.
587    return;
588
589  const TargetInstrDesc &II = TII->get(Opc);
590  unsigned NumResults = CountResults(Node);
591  unsigned NodeOperands = CountOperands(Node);
592  bool HasPhysRegOuts = NumResults > II.getNumDefs() && II.getImplicitDefs()!=0;
593#ifndef NDEBUG
594  unsigned NumMIOperands = NodeOperands + NumResults;
595  if (II.isVariadic())
596    assert(NumMIOperands >= II.getNumOperands() &&
597           "Too few operands for a variadic node!");
598  else
599    assert(NumMIOperands >= II.getNumOperands() &&
600           NumMIOperands <= II.getNumOperands()+II.getNumImplicitDefs() &&
601           "#operands for dag node doesn't match .td file!");
602#endif
603
604  // Create the new machine instruction.
605  MachineInstr *MI = BuildMI(*MF, Node->getDebugLoc(), II);
606
607  // Add result register values for things that are defined by this
608  // instruction.
609  if (NumResults)
610    CreateVirtualRegisters(Node, MI, II, IsClone, IsCloned, VRBaseMap);
611
612  // Emit all of the actual operands of this instruction, adding them to the
613  // instruction as appropriate.
614  bool HasOptPRefs = II.getNumDefs() > NumResults;
615  assert((!HasOptPRefs || !HasPhysRegOuts) &&
616         "Unable to cope with optional defs and phys regs defs!");
617  unsigned NumSkip = HasOptPRefs ? II.getNumDefs() - NumResults : 0;
618  for (unsigned i = NumSkip; i != NodeOperands; ++i)
619    AddOperand(MI, Node->getOperand(i), i-NumSkip+II.getNumDefs(), &II,
620               VRBaseMap);
621
622  // Transfer all of the memory reference descriptions of this instruction.
623  MI->setMemRefs(cast<MachineSDNode>(Node)->memoperands_begin(),
624                 cast<MachineSDNode>(Node)->memoperands_end());
625
626  if (II.usesCustomInsertionHook()) {
627    // Insert this instruction into the basic block using a target
628    // specific inserter which may returns a new basic block.
629    MBB = TLI->EmitInstrWithCustomInserter(MI, MBB, EM);
630    InsertPos = MBB->end();
631    return;
632  }
633
634  MBB->insert(InsertPos, MI);
635
636  // Additional results must be an physical register def.
637  if (HasPhysRegOuts) {
638    for (unsigned i = II.getNumDefs(); i < NumResults; ++i) {
639      unsigned Reg = II.getImplicitDefs()[i - II.getNumDefs()];
640      if (Node->hasAnyUseOfValue(i))
641        EmitCopyFromReg(Node, i, IsClone, IsCloned, Reg, VRBaseMap);
642      // If there are no uses, mark the register as dead now, so that
643      // MachineLICM/Sink can see that it's dead. Don't do this if the
644      // node has a Flag value, for the benefit of targets still using
645      // Flag for values in physregs.
646      else if (Node->getValueType(Node->getNumValues()-1) != MVT::Flag)
647        MI->addRegisterDead(Reg, TRI);
648    }
649  }
650
651  // If the instruction has implicit defs and the node doesn't, mark the
652  // implicit def as dead.  If the node has any flag outputs, we don't do this
653  // because we don't know what implicit defs are being used by flagged nodes.
654  if (Node->getValueType(Node->getNumValues()-1) != MVT::Flag)
655    if (const unsigned *IDList = II.getImplicitDefs()) {
656      for (unsigned i = NumResults, e = II.getNumDefs()+II.getNumImplicitDefs();
657           i != e; ++i)
658        MI->addRegisterDead(IDList[i-II.getNumDefs()], TRI);
659    }
660  return;
661}
662
663/// EmitSpecialNode - Generate machine code for a target-independent node and
664/// needed dependencies.
665void InstrEmitter::
666EmitSpecialNode(SDNode *Node, bool IsClone, bool IsCloned,
667                DenseMap<SDValue, unsigned> &VRBaseMap) {
668  switch (Node->getOpcode()) {
669  default:
670#ifndef NDEBUG
671    Node->dump();
672#endif
673    llvm_unreachable("This target-independent node should have been selected!");
674    break;
675  case ISD::EntryToken:
676    llvm_unreachable("EntryToken should have been excluded from the schedule!");
677    break;
678  case ISD::MERGE_VALUES:
679  case ISD::TokenFactor: // fall thru
680    break;
681  case ISD::CopyToReg: {
682    unsigned SrcReg;
683    SDValue SrcVal = Node->getOperand(2);
684    if (RegisterSDNode *R = dyn_cast<RegisterSDNode>(SrcVal))
685      SrcReg = R->getReg();
686    else
687      SrcReg = getVR(SrcVal, VRBaseMap);
688
689    unsigned DestReg = cast<RegisterSDNode>(Node->getOperand(1))->getReg();
690    if (SrcReg == DestReg) // Coalesced away the copy? Ignore.
691      break;
692
693    const TargetRegisterClass *SrcTRC = 0, *DstTRC = 0;
694    // Get the register classes of the src/dst.
695    if (TargetRegisterInfo::isVirtualRegister(SrcReg))
696      SrcTRC = MRI->getRegClass(SrcReg);
697    else
698      SrcTRC = TRI->getPhysicalRegisterRegClass(SrcReg,SrcVal.getValueType());
699
700    if (TargetRegisterInfo::isVirtualRegister(DestReg))
701      DstTRC = MRI->getRegClass(DestReg);
702    else
703      DstTRC = TRI->getPhysicalRegisterRegClass(DestReg,
704                                            Node->getOperand(1).getValueType());
705
706    bool Emitted = TII->copyRegToReg(*MBB, InsertPos, DestReg, SrcReg,
707                                     DstTRC, SrcTRC);
708    assert(Emitted && "Unable to issue a copy instruction!\n");
709    (void) Emitted;
710    break;
711  }
712  case ISD::CopyFromReg: {
713    unsigned SrcReg = cast<RegisterSDNode>(Node->getOperand(1))->getReg();
714    EmitCopyFromReg(Node, 0, IsClone, IsCloned, SrcReg, VRBaseMap);
715    break;
716  }
717  case ISD::EH_LABEL: {
718    MCSymbol *S = cast<EHLabelSDNode>(Node)->getLabel();
719    BuildMI(*MBB, InsertPos, Node->getDebugLoc(),
720            TII->get(TargetOpcode::EH_LABEL)).addSym(S);
721    break;
722  }
723
724  case ISD::INLINEASM: {
725    unsigned NumOps = Node->getNumOperands();
726    if (Node->getOperand(NumOps-1).getValueType() == MVT::Flag)
727      --NumOps;  // Ignore the flag operand.
728
729    // Create the inline asm machine instruction.
730    MachineInstr *MI = BuildMI(*MF, Node->getDebugLoc(),
731                               TII->get(TargetOpcode::INLINEASM));
732
733    // Add the asm string as an external symbol operand.
734    SDValue AsmStrV = Node->getOperand(InlineAsm::Op_AsmString);
735    const char *AsmStr = cast<ExternalSymbolSDNode>(AsmStrV)->getSymbol();
736    MI->addOperand(MachineOperand::CreateES(AsmStr));
737
738    // Add all of the operand registers to the instruction.
739    for (unsigned i = InlineAsm::Op_FirstOperand; i != NumOps;) {
740      unsigned Flags =
741        cast<ConstantSDNode>(Node->getOperand(i))->getZExtValue();
742      unsigned NumVals = InlineAsm::getNumOperandRegisters(Flags);
743
744      MI->addOperand(MachineOperand::CreateImm(Flags));
745      ++i;  // Skip the ID value.
746
747      switch (InlineAsm::getKind(Flags)) {
748      default: llvm_unreachable("Bad flags!");
749        case InlineAsm::Kind_RegDef:
750        for (; NumVals; --NumVals, ++i) {
751          unsigned Reg = cast<RegisterSDNode>(Node->getOperand(i))->getReg();
752          MI->addOperand(MachineOperand::CreateReg(Reg, true));
753        }
754        break;
755      case InlineAsm::Kind_RegDefEarlyClobber:
756        for (; NumVals; --NumVals, ++i) {
757          unsigned Reg = cast<RegisterSDNode>(Node->getOperand(i))->getReg();
758          MI->addOperand(MachineOperand::CreateReg(Reg, true, false, false,
759                                                   false, false, true));
760        }
761        break;
762      case InlineAsm::Kind_RegUse:  // Use of register.
763      case InlineAsm::Kind_Imm:  // Immediate.
764      case InlineAsm::Kind_Mem:  // Addressing mode.
765        // The addressing mode has been selected, just add all of the
766        // operands to the machine instruction.
767        for (; NumVals; --NumVals, ++i)
768          AddOperand(MI, Node->getOperand(i), 0, 0, VRBaseMap);
769        break;
770      }
771    }
772    MBB->insert(InsertPos, MI);
773    break;
774  }
775  }
776}
777
778/// InstrEmitter - Construct an InstrEmitter and set it to start inserting
779/// at the given position in the given block.
780InstrEmitter::InstrEmitter(MachineBasicBlock *mbb,
781                           MachineBasicBlock::iterator insertpos)
782  : MF(mbb->getParent()),
783    MRI(&MF->getRegInfo()),
784    TM(&MF->getTarget()),
785    TII(TM->getInstrInfo()),
786    TRI(TM->getRegisterInfo()),
787    TLI(TM->getTargetLowering()),
788    MBB(mbb), InsertPos(insertpos) {
789}
790