1f22ef01cSRoman Divacky //===-- MachineFunction.cpp -----------------------------------------------===//
2f22ef01cSRoman Divacky //
3f22ef01cSRoman Divacky //                     The LLVM Compiler Infrastructure
4f22ef01cSRoman Divacky //
5f22ef01cSRoman Divacky // This file is distributed under the University of Illinois Open Source
6f22ef01cSRoman Divacky // License. See LICENSE.TXT for details.
7f22ef01cSRoman Divacky //
8f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
9f22ef01cSRoman Divacky //
10f22ef01cSRoman Divacky // Collect native machine code information for a function.  This allows
11f22ef01cSRoman Divacky // target-specific information about the generated code to be stored with each
12f22ef01cSRoman Divacky // function.
13f22ef01cSRoman Divacky //
14f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
15f22ef01cSRoman Divacky 
16f22ef01cSRoman Divacky #include "llvm/CodeGen/MachineFunction.h"
177ae0e2c9SDimitry Andric #include "llvm/DebugInfo.h"
18dff0c46cSDimitry Andric #include "llvm/Function.h"
19dff0c46cSDimitry Andric #include "llvm/CodeGen/MachineConstantPool.h"
20f22ef01cSRoman Divacky #include "llvm/CodeGen/MachineFunctionPass.h"
21f22ef01cSRoman Divacky #include "llvm/CodeGen/MachineFrameInfo.h"
22f22ef01cSRoman Divacky #include "llvm/CodeGen/MachineInstr.h"
23f22ef01cSRoman Divacky #include "llvm/CodeGen/MachineJumpTableInfo.h"
24f22ef01cSRoman Divacky #include "llvm/CodeGen/MachineModuleInfo.h"
25f22ef01cSRoman Divacky #include "llvm/CodeGen/MachineRegisterInfo.h"
26f22ef01cSRoman Divacky #include "llvm/CodeGen/Passes.h"
27f22ef01cSRoman Divacky #include "llvm/MC/MCAsmInfo.h"
28f22ef01cSRoman Divacky #include "llvm/MC/MCContext.h"
29dff0c46cSDimitry Andric #include "llvm/Analysis/ConstantFolding.h"
30f22ef01cSRoman Divacky #include "llvm/Support/Debug.h"
31f22ef01cSRoman Divacky #include "llvm/Target/TargetData.h"
32f22ef01cSRoman Divacky #include "llvm/Target/TargetLowering.h"
33f22ef01cSRoman Divacky #include "llvm/Target/TargetMachine.h"
342754fe60SDimitry Andric #include "llvm/Target/TargetFrameLowering.h"
35f22ef01cSRoman Divacky #include "llvm/ADT/SmallString.h"
36f22ef01cSRoman Divacky #include "llvm/ADT/STLExtras.h"
37f22ef01cSRoman Divacky #include "llvm/Support/GraphWriter.h"
38f22ef01cSRoman Divacky #include "llvm/Support/raw_ostream.h"
39f22ef01cSRoman Divacky using namespace llvm;
40f22ef01cSRoman Divacky 
41f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
42f22ef01cSRoman Divacky // MachineFunction implementation
43f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
44f22ef01cSRoman Divacky 
45f22ef01cSRoman Divacky // Out of line virtual method.
46f22ef01cSRoman Divacky MachineFunctionInfo::~MachineFunctionInfo() {}
47f22ef01cSRoman Divacky 
48f22ef01cSRoman Divacky void ilist_traits<MachineBasicBlock>::deleteNode(MachineBasicBlock *MBB) {
49f22ef01cSRoman Divacky   MBB->getParent()->DeleteMachineBasicBlock(MBB);
50f22ef01cSRoman Divacky }
51f22ef01cSRoman Divacky 
52f22ef01cSRoman Divacky MachineFunction::MachineFunction(const Function *F, const TargetMachine &TM,
532754fe60SDimitry Andric                                  unsigned FunctionNum, MachineModuleInfo &mmi,
542754fe60SDimitry Andric                                  GCModuleInfo* gmi)
552754fe60SDimitry Andric   : Fn(F), Target(TM), Ctx(mmi.getContext()), MMI(mmi), GMI(gmi) {
56f22ef01cSRoman Divacky   if (TM.getRegisterInfo())
57f22ef01cSRoman Divacky     RegInfo = new (Allocator) MachineRegisterInfo(*TM.getRegisterInfo());
58f22ef01cSRoman Divacky   else
59f22ef01cSRoman Divacky     RegInfo = 0;
60f22ef01cSRoman Divacky   MFInfo = 0;
612754fe60SDimitry Andric   FrameInfo = new (Allocator) MachineFrameInfo(*TM.getFrameLowering());
62f22ef01cSRoman Divacky   if (Fn->hasFnAttr(Attribute::StackAlignment))
637ae0e2c9SDimitry Andric     FrameInfo->ensureMaxAlignment(Attribute::getStackAlignmentFromAttrs(
64f22ef01cSRoman Divacky         Fn->getAttributes().getFnAttributes()));
65f22ef01cSRoman Divacky   ConstantPool = new (Allocator) MachineConstantPool(TM.getTargetData());
66bd5abe19SDimitry Andric   Alignment = TM.getTargetLowering()->getMinFunctionAlignment();
67bd5abe19SDimitry Andric   // FIXME: Shouldn't use pref alignment if explicit alignment is set on Fn.
68bd5abe19SDimitry Andric   if (!Fn->hasFnAttr(Attribute::OptimizeForSize))
69bd5abe19SDimitry Andric     Alignment = std::max(Alignment,
70bd5abe19SDimitry Andric                          TM.getTargetLowering()->getPrefFunctionAlignment());
71f22ef01cSRoman Divacky   FunctionNumber = FunctionNum;
72f22ef01cSRoman Divacky   JumpTableInfo = 0;
73f22ef01cSRoman Divacky }
74f22ef01cSRoman Divacky 
75f22ef01cSRoman Divacky MachineFunction::~MachineFunction() {
76f22ef01cSRoman Divacky   BasicBlocks.clear();
77f22ef01cSRoman Divacky   InstructionRecycler.clear(Allocator);
78f22ef01cSRoman Divacky   BasicBlockRecycler.clear(Allocator);
79f22ef01cSRoman Divacky   if (RegInfo) {
80f22ef01cSRoman Divacky     RegInfo->~MachineRegisterInfo();
81f22ef01cSRoman Divacky     Allocator.Deallocate(RegInfo);
82f22ef01cSRoman Divacky   }
83f22ef01cSRoman Divacky   if (MFInfo) {
84f22ef01cSRoman Divacky     MFInfo->~MachineFunctionInfo();
85f22ef01cSRoman Divacky     Allocator.Deallocate(MFInfo);
86f22ef01cSRoman Divacky   }
877ae0e2c9SDimitry Andric 
887ae0e2c9SDimitry Andric   FrameInfo->~MachineFrameInfo();
897ae0e2c9SDimitry Andric   Allocator.Deallocate(FrameInfo);
907ae0e2c9SDimitry Andric 
917ae0e2c9SDimitry Andric   ConstantPool->~MachineConstantPool();
927ae0e2c9SDimitry Andric   Allocator.Deallocate(ConstantPool);
93f22ef01cSRoman Divacky 
94f22ef01cSRoman Divacky   if (JumpTableInfo) {
95f22ef01cSRoman Divacky     JumpTableInfo->~MachineJumpTableInfo();
96f22ef01cSRoman Divacky     Allocator.Deallocate(JumpTableInfo);
97f22ef01cSRoman Divacky   }
98f22ef01cSRoman Divacky }
99f22ef01cSRoman Divacky 
100f22ef01cSRoman Divacky /// getOrCreateJumpTableInfo - Get the JumpTableInfo for this function, if it
101f22ef01cSRoman Divacky /// does already exist, allocate one.
102f22ef01cSRoman Divacky MachineJumpTableInfo *MachineFunction::
103f22ef01cSRoman Divacky getOrCreateJumpTableInfo(unsigned EntryKind) {
104f22ef01cSRoman Divacky   if (JumpTableInfo) return JumpTableInfo;
105f22ef01cSRoman Divacky 
106f22ef01cSRoman Divacky   JumpTableInfo = new (Allocator)
107f22ef01cSRoman Divacky     MachineJumpTableInfo((MachineJumpTableInfo::JTEntryKind)EntryKind);
108f22ef01cSRoman Divacky   return JumpTableInfo;
109f22ef01cSRoman Divacky }
110f22ef01cSRoman Divacky 
111f22ef01cSRoman Divacky /// RenumberBlocks - This discards all of the MachineBasicBlock numbers and
112f22ef01cSRoman Divacky /// recomputes them.  This guarantees that the MBB numbers are sequential,
113f22ef01cSRoman Divacky /// dense, and match the ordering of the blocks within the function.  If a
114f22ef01cSRoman Divacky /// specific MachineBasicBlock is specified, only that block and those after
115f22ef01cSRoman Divacky /// it are renumbered.
116f22ef01cSRoman Divacky void MachineFunction::RenumberBlocks(MachineBasicBlock *MBB) {
117f22ef01cSRoman Divacky   if (empty()) { MBBNumbering.clear(); return; }
118f22ef01cSRoman Divacky   MachineFunction::iterator MBBI, E = end();
119f22ef01cSRoman Divacky   if (MBB == 0)
120f22ef01cSRoman Divacky     MBBI = begin();
121f22ef01cSRoman Divacky   else
122f22ef01cSRoman Divacky     MBBI = MBB;
123f22ef01cSRoman Divacky 
124f22ef01cSRoman Divacky   // Figure out the block number this should have.
125f22ef01cSRoman Divacky   unsigned BlockNo = 0;
126f22ef01cSRoman Divacky   if (MBBI != begin())
127f22ef01cSRoman Divacky     BlockNo = prior(MBBI)->getNumber()+1;
128f22ef01cSRoman Divacky 
129f22ef01cSRoman Divacky   for (; MBBI != E; ++MBBI, ++BlockNo) {
130f22ef01cSRoman Divacky     if (MBBI->getNumber() != (int)BlockNo) {
131f22ef01cSRoman Divacky       // Remove use of the old number.
132f22ef01cSRoman Divacky       if (MBBI->getNumber() != -1) {
133f22ef01cSRoman Divacky         assert(MBBNumbering[MBBI->getNumber()] == &*MBBI &&
134f22ef01cSRoman Divacky                "MBB number mismatch!");
135f22ef01cSRoman Divacky         MBBNumbering[MBBI->getNumber()] = 0;
136f22ef01cSRoman Divacky       }
137f22ef01cSRoman Divacky 
138f22ef01cSRoman Divacky       // If BlockNo is already taken, set that block's number to -1.
139f22ef01cSRoman Divacky       if (MBBNumbering[BlockNo])
140f22ef01cSRoman Divacky         MBBNumbering[BlockNo]->setNumber(-1);
141f22ef01cSRoman Divacky 
142f22ef01cSRoman Divacky       MBBNumbering[BlockNo] = MBBI;
143f22ef01cSRoman Divacky       MBBI->setNumber(BlockNo);
144f22ef01cSRoman Divacky     }
145f22ef01cSRoman Divacky   }
146f22ef01cSRoman Divacky 
147f22ef01cSRoman Divacky   // Okay, all the blocks are renumbered.  If we have compactified the block
148f22ef01cSRoman Divacky   // numbering, shrink MBBNumbering now.
149f22ef01cSRoman Divacky   assert(BlockNo <= MBBNumbering.size() && "Mismatch!");
150f22ef01cSRoman Divacky   MBBNumbering.resize(BlockNo);
151f22ef01cSRoman Divacky }
152f22ef01cSRoman Divacky 
153f22ef01cSRoman Divacky /// CreateMachineInstr - Allocate a new MachineInstr. Use this instead
154f22ef01cSRoman Divacky /// of `new MachineInstr'.
155f22ef01cSRoman Divacky ///
156f22ef01cSRoman Divacky MachineInstr *
15717a519f9SDimitry Andric MachineFunction::CreateMachineInstr(const MCInstrDesc &MCID,
158f22ef01cSRoman Divacky                                     DebugLoc DL, bool NoImp) {
159f22ef01cSRoman Divacky   return new (InstructionRecycler.Allocate<MachineInstr>(Allocator))
16017a519f9SDimitry Andric     MachineInstr(MCID, DL, NoImp);
161f22ef01cSRoman Divacky }
162f22ef01cSRoman Divacky 
163f22ef01cSRoman Divacky /// CloneMachineInstr - Create a new MachineInstr which is a copy of the
164f22ef01cSRoman Divacky /// 'Orig' instruction, identical in all ways except the instruction
165f22ef01cSRoman Divacky /// has no parent, prev, or next.
166f22ef01cSRoman Divacky ///
167f22ef01cSRoman Divacky MachineInstr *
168f22ef01cSRoman Divacky MachineFunction::CloneMachineInstr(const MachineInstr *Orig) {
169f22ef01cSRoman Divacky   return new (InstructionRecycler.Allocate<MachineInstr>(Allocator))
170f22ef01cSRoman Divacky              MachineInstr(*this, *Orig);
171f22ef01cSRoman Divacky }
172f22ef01cSRoman Divacky 
173f22ef01cSRoman Divacky /// DeleteMachineInstr - Delete the given MachineInstr.
174f22ef01cSRoman Divacky ///
175f22ef01cSRoman Divacky void
176f22ef01cSRoman Divacky MachineFunction::DeleteMachineInstr(MachineInstr *MI) {
177f22ef01cSRoman Divacky   MI->~MachineInstr();
178f22ef01cSRoman Divacky   InstructionRecycler.Deallocate(Allocator, MI);
179f22ef01cSRoman Divacky }
180f22ef01cSRoman Divacky 
181f22ef01cSRoman Divacky /// CreateMachineBasicBlock - Allocate a new MachineBasicBlock. Use this
182f22ef01cSRoman Divacky /// instead of `new MachineBasicBlock'.
183f22ef01cSRoman Divacky ///
184f22ef01cSRoman Divacky MachineBasicBlock *
185f22ef01cSRoman Divacky MachineFunction::CreateMachineBasicBlock(const BasicBlock *bb) {
186f22ef01cSRoman Divacky   return new (BasicBlockRecycler.Allocate<MachineBasicBlock>(Allocator))
187f22ef01cSRoman Divacky              MachineBasicBlock(*this, bb);
188f22ef01cSRoman Divacky }
189f22ef01cSRoman Divacky 
190f22ef01cSRoman Divacky /// DeleteMachineBasicBlock - Delete the given MachineBasicBlock.
191f22ef01cSRoman Divacky ///
192f22ef01cSRoman Divacky void
193f22ef01cSRoman Divacky MachineFunction::DeleteMachineBasicBlock(MachineBasicBlock *MBB) {
194f22ef01cSRoman Divacky   assert(MBB->getParent() == this && "MBB parent mismatch!");
195f22ef01cSRoman Divacky   MBB->~MachineBasicBlock();
196f22ef01cSRoman Divacky   BasicBlockRecycler.Deallocate(Allocator, MBB);
197f22ef01cSRoman Divacky }
198f22ef01cSRoman Divacky 
199f22ef01cSRoman Divacky MachineMemOperand *
2002754fe60SDimitry Andric MachineFunction::getMachineMemOperand(MachinePointerInfo PtrInfo, unsigned f,
2012754fe60SDimitry Andric                                       uint64_t s, unsigned base_alignment,
202dff0c46cSDimitry Andric                                       const MDNode *TBAAInfo,
203dff0c46cSDimitry Andric                                       const MDNode *Ranges) {
2042754fe60SDimitry Andric   return new (Allocator) MachineMemOperand(PtrInfo, f, s, base_alignment,
205dff0c46cSDimitry Andric                                            TBAAInfo, Ranges);
206f22ef01cSRoman Divacky }
207f22ef01cSRoman Divacky 
208f22ef01cSRoman Divacky MachineMemOperand *
209f22ef01cSRoman Divacky MachineFunction::getMachineMemOperand(const MachineMemOperand *MMO,
210f22ef01cSRoman Divacky                                       int64_t Offset, uint64_t Size) {
211f22ef01cSRoman Divacky   return new (Allocator)
2122754fe60SDimitry Andric              MachineMemOperand(MachinePointerInfo(MMO->getValue(),
2132754fe60SDimitry Andric                                                   MMO->getOffset()+Offset),
2142754fe60SDimitry Andric                                MMO->getFlags(), Size,
2152754fe60SDimitry Andric                                MMO->getBaseAlignment(), 0);
216f22ef01cSRoman Divacky }
217f22ef01cSRoman Divacky 
218f22ef01cSRoman Divacky MachineInstr::mmo_iterator
219f22ef01cSRoman Divacky MachineFunction::allocateMemRefsArray(unsigned long Num) {
220f22ef01cSRoman Divacky   return Allocator.Allocate<MachineMemOperand *>(Num);
221f22ef01cSRoman Divacky }
222f22ef01cSRoman Divacky 
223f22ef01cSRoman Divacky std::pair<MachineInstr::mmo_iterator, MachineInstr::mmo_iterator>
224f22ef01cSRoman Divacky MachineFunction::extractLoadMemRefs(MachineInstr::mmo_iterator Begin,
225f22ef01cSRoman Divacky                                     MachineInstr::mmo_iterator End) {
226f22ef01cSRoman Divacky   // Count the number of load mem refs.
227f22ef01cSRoman Divacky   unsigned Num = 0;
228f22ef01cSRoman Divacky   for (MachineInstr::mmo_iterator I = Begin; I != End; ++I)
229f22ef01cSRoman Divacky     if ((*I)->isLoad())
230f22ef01cSRoman Divacky       ++Num;
231f22ef01cSRoman Divacky 
232f22ef01cSRoman Divacky   // Allocate a new array and populate it with the load information.
233f22ef01cSRoman Divacky   MachineInstr::mmo_iterator Result = allocateMemRefsArray(Num);
234f22ef01cSRoman Divacky   unsigned Index = 0;
235f22ef01cSRoman Divacky   for (MachineInstr::mmo_iterator I = Begin; I != End; ++I) {
236f22ef01cSRoman Divacky     if ((*I)->isLoad()) {
237f22ef01cSRoman Divacky       if (!(*I)->isStore())
238f22ef01cSRoman Divacky         // Reuse the MMO.
239f22ef01cSRoman Divacky         Result[Index] = *I;
240f22ef01cSRoman Divacky       else {
241f22ef01cSRoman Divacky         // Clone the MMO and unset the store flag.
242f22ef01cSRoman Divacky         MachineMemOperand *JustLoad =
2432754fe60SDimitry Andric           getMachineMemOperand((*I)->getPointerInfo(),
244f22ef01cSRoman Divacky                                (*I)->getFlags() & ~MachineMemOperand::MOStore,
2452754fe60SDimitry Andric                                (*I)->getSize(), (*I)->getBaseAlignment(),
2462754fe60SDimitry Andric                                (*I)->getTBAAInfo());
247f22ef01cSRoman Divacky         Result[Index] = JustLoad;
248f22ef01cSRoman Divacky       }
249f22ef01cSRoman Divacky       ++Index;
250f22ef01cSRoman Divacky     }
251f22ef01cSRoman Divacky   }
252f22ef01cSRoman Divacky   return std::make_pair(Result, Result + Num);
253f22ef01cSRoman Divacky }
254f22ef01cSRoman Divacky 
255f22ef01cSRoman Divacky std::pair<MachineInstr::mmo_iterator, MachineInstr::mmo_iterator>
256f22ef01cSRoman Divacky MachineFunction::extractStoreMemRefs(MachineInstr::mmo_iterator Begin,
257f22ef01cSRoman Divacky                                      MachineInstr::mmo_iterator End) {
258f22ef01cSRoman Divacky   // Count the number of load mem refs.
259f22ef01cSRoman Divacky   unsigned Num = 0;
260f22ef01cSRoman Divacky   for (MachineInstr::mmo_iterator I = Begin; I != End; ++I)
261f22ef01cSRoman Divacky     if ((*I)->isStore())
262f22ef01cSRoman Divacky       ++Num;
263f22ef01cSRoman Divacky 
264f22ef01cSRoman Divacky   // Allocate a new array and populate it with the store information.
265f22ef01cSRoman Divacky   MachineInstr::mmo_iterator Result = allocateMemRefsArray(Num);
266f22ef01cSRoman Divacky   unsigned Index = 0;
267f22ef01cSRoman Divacky   for (MachineInstr::mmo_iterator I = Begin; I != End; ++I) {
268f22ef01cSRoman Divacky     if ((*I)->isStore()) {
269f22ef01cSRoman Divacky       if (!(*I)->isLoad())
270f22ef01cSRoman Divacky         // Reuse the MMO.
271f22ef01cSRoman Divacky         Result[Index] = *I;
272f22ef01cSRoman Divacky       else {
273f22ef01cSRoman Divacky         // Clone the MMO and unset the load flag.
274f22ef01cSRoman Divacky         MachineMemOperand *JustStore =
2752754fe60SDimitry Andric           getMachineMemOperand((*I)->getPointerInfo(),
276f22ef01cSRoman Divacky                                (*I)->getFlags() & ~MachineMemOperand::MOLoad,
2772754fe60SDimitry Andric                                (*I)->getSize(), (*I)->getBaseAlignment(),
2782754fe60SDimitry Andric                                (*I)->getTBAAInfo());
279f22ef01cSRoman Divacky         Result[Index] = JustStore;
280f22ef01cSRoman Divacky       }
281f22ef01cSRoman Divacky       ++Index;
282f22ef01cSRoman Divacky     }
283f22ef01cSRoman Divacky   }
284f22ef01cSRoman Divacky   return std::make_pair(Result, Result + Num);
285f22ef01cSRoman Divacky }
286f22ef01cSRoman Divacky 
287f22ef01cSRoman Divacky void MachineFunction::dump() const {
288f22ef01cSRoman Divacky   print(dbgs());
289f22ef01cSRoman Divacky }
290f22ef01cSRoman Divacky 
2912754fe60SDimitry Andric void MachineFunction::print(raw_ostream &OS, SlotIndexes *Indexes) const {
292dff0c46cSDimitry Andric   OS << "# Machine code for function " << Fn->getName() << ": ";
293dff0c46cSDimitry Andric   if (RegInfo) {
294dff0c46cSDimitry Andric     OS << (RegInfo->isSSA() ? "SSA" : "Post SSA");
295dff0c46cSDimitry Andric     if (!RegInfo->tracksLiveness())
296dff0c46cSDimitry Andric       OS << ", not tracking liveness";
297dff0c46cSDimitry Andric   }
298dff0c46cSDimitry Andric   OS << '\n';
299f22ef01cSRoman Divacky 
300f22ef01cSRoman Divacky   // Print Frame Information
301f22ef01cSRoman Divacky   FrameInfo->print(*this, OS);
302f22ef01cSRoman Divacky 
303f22ef01cSRoman Divacky   // Print JumpTable Information
304f22ef01cSRoman Divacky   if (JumpTableInfo)
305f22ef01cSRoman Divacky     JumpTableInfo->print(OS);
306f22ef01cSRoman Divacky 
307f22ef01cSRoman Divacky   // Print Constant Pool
308f22ef01cSRoman Divacky   ConstantPool->print(OS);
309f22ef01cSRoman Divacky 
310f22ef01cSRoman Divacky   const TargetRegisterInfo *TRI = getTarget().getRegisterInfo();
311f22ef01cSRoman Divacky 
312f22ef01cSRoman Divacky   if (RegInfo && !RegInfo->livein_empty()) {
313f22ef01cSRoman Divacky     OS << "Function Live Ins: ";
314f22ef01cSRoman Divacky     for (MachineRegisterInfo::livein_iterator
315f22ef01cSRoman Divacky          I = RegInfo->livein_begin(), E = RegInfo->livein_end(); I != E; ++I) {
316bd5abe19SDimitry Andric       OS << PrintReg(I->first, TRI);
317f22ef01cSRoman Divacky       if (I->second)
318bd5abe19SDimitry Andric         OS << " in " << PrintReg(I->second, TRI);
319f22ef01cSRoman Divacky       if (llvm::next(I) != E)
320f22ef01cSRoman Divacky         OS << ", ";
321f22ef01cSRoman Divacky     }
322f22ef01cSRoman Divacky     OS << '\n';
323f22ef01cSRoman Divacky   }
324f22ef01cSRoman Divacky   if (RegInfo && !RegInfo->liveout_empty()) {
325f22ef01cSRoman Divacky     OS << "Function Live Outs:";
326f22ef01cSRoman Divacky     for (MachineRegisterInfo::liveout_iterator
327bd5abe19SDimitry Andric          I = RegInfo->liveout_begin(), E = RegInfo->liveout_end(); I != E; ++I)
328bd5abe19SDimitry Andric       OS << ' ' << PrintReg(*I, TRI);
329f22ef01cSRoman Divacky     OS << '\n';
330f22ef01cSRoman Divacky   }
331f22ef01cSRoman Divacky 
332f22ef01cSRoman Divacky   for (const_iterator BB = begin(), E = end(); BB != E; ++BB) {
333f22ef01cSRoman Divacky     OS << '\n';
3342754fe60SDimitry Andric     BB->print(OS, Indexes);
335f22ef01cSRoman Divacky   }
336f22ef01cSRoman Divacky 
337f22ef01cSRoman Divacky   OS << "\n# End machine code for function " << Fn->getName() << ".\n\n";
338f22ef01cSRoman Divacky }
339f22ef01cSRoman Divacky 
340f22ef01cSRoman Divacky namespace llvm {
341f22ef01cSRoman Divacky   template<>
342f22ef01cSRoman Divacky   struct DOTGraphTraits<const MachineFunction*> : public DefaultDOTGraphTraits {
343f22ef01cSRoman Divacky 
344f22ef01cSRoman Divacky   DOTGraphTraits (bool isSimple=false) : DefaultDOTGraphTraits(isSimple) {}
345f22ef01cSRoman Divacky 
346f22ef01cSRoman Divacky     static std::string getGraphName(const MachineFunction *F) {
347dff0c46cSDimitry Andric       return "CFG for '" + F->getFunction()->getName().str() + "' function";
348f22ef01cSRoman Divacky     }
349f22ef01cSRoman Divacky 
350f22ef01cSRoman Divacky     std::string getNodeLabel(const MachineBasicBlock *Node,
351f22ef01cSRoman Divacky                              const MachineFunction *Graph) {
352f22ef01cSRoman Divacky       std::string OutStr;
353f22ef01cSRoman Divacky       {
354f22ef01cSRoman Divacky         raw_string_ostream OSS(OutStr);
355f22ef01cSRoman Divacky 
3562754fe60SDimitry Andric         if (isSimple()) {
3572754fe60SDimitry Andric           OSS << "BB#" << Node->getNumber();
3582754fe60SDimitry Andric           if (const BasicBlock *BB = Node->getBasicBlock())
3592754fe60SDimitry Andric             OSS << ": " << BB->getName();
3602754fe60SDimitry Andric         } else
361f22ef01cSRoman Divacky           Node->print(OSS);
362f22ef01cSRoman Divacky       }
363f22ef01cSRoman Divacky 
364f22ef01cSRoman Divacky       if (OutStr[0] == '\n') OutStr.erase(OutStr.begin());
365f22ef01cSRoman Divacky 
366f22ef01cSRoman Divacky       // Process string output to make it nicer...
367f22ef01cSRoman Divacky       for (unsigned i = 0; i != OutStr.length(); ++i)
368f22ef01cSRoman Divacky         if (OutStr[i] == '\n') {                            // Left justify
369f22ef01cSRoman Divacky           OutStr[i] = '\\';
370f22ef01cSRoman Divacky           OutStr.insert(OutStr.begin()+i+1, 'l');
371f22ef01cSRoman Divacky         }
372f22ef01cSRoman Divacky       return OutStr;
373f22ef01cSRoman Divacky     }
374f22ef01cSRoman Divacky   };
375f22ef01cSRoman Divacky }
376f22ef01cSRoman Divacky 
377f22ef01cSRoman Divacky void MachineFunction::viewCFG() const
378f22ef01cSRoman Divacky {
379f22ef01cSRoman Divacky #ifndef NDEBUG
380dff0c46cSDimitry Andric   ViewGraph(this, "mf" + getFunction()->getName());
381f22ef01cSRoman Divacky #else
382ffd1746dSEd Schouten   errs() << "MachineFunction::viewCFG is only available in debug builds on "
383f22ef01cSRoman Divacky          << "systems with Graphviz or gv!\n";
384f22ef01cSRoman Divacky #endif // NDEBUG
385f22ef01cSRoman Divacky }
386f22ef01cSRoman Divacky 
387f22ef01cSRoman Divacky void MachineFunction::viewCFGOnly() const
388f22ef01cSRoman Divacky {
389f22ef01cSRoman Divacky #ifndef NDEBUG
390dff0c46cSDimitry Andric   ViewGraph(this, "mf" + getFunction()->getName(), true);
391f22ef01cSRoman Divacky #else
392ffd1746dSEd Schouten   errs() << "MachineFunction::viewCFGOnly is only available in debug builds on "
393f22ef01cSRoman Divacky          << "systems with Graphviz or gv!\n";
394f22ef01cSRoman Divacky #endif // NDEBUG
395f22ef01cSRoman Divacky }
396f22ef01cSRoman Divacky 
397f22ef01cSRoman Divacky /// addLiveIn - Add the specified physical register as a live-in value and
398f22ef01cSRoman Divacky /// create a corresponding virtual register for it.
399f22ef01cSRoman Divacky unsigned MachineFunction::addLiveIn(unsigned PReg,
400dd6029ffSDimitry Andric                                     const TargetRegisterClass *RC) {
401f22ef01cSRoman Divacky   MachineRegisterInfo &MRI = getRegInfo();
402f22ef01cSRoman Divacky   unsigned VReg = MRI.getLiveInVirtReg(PReg);
403f22ef01cSRoman Divacky   if (VReg) {
404f22ef01cSRoman Divacky     assert(MRI.getRegClass(VReg) == RC && "Register class mismatch!");
405f22ef01cSRoman Divacky     return VReg;
406f22ef01cSRoman Divacky   }
407f22ef01cSRoman Divacky   VReg = MRI.createVirtualRegister(RC);
408f22ef01cSRoman Divacky   MRI.addLiveIn(PReg, VReg);
409f22ef01cSRoman Divacky   return VReg;
410f22ef01cSRoman Divacky }
411f22ef01cSRoman Divacky 
412f22ef01cSRoman Divacky /// getJTISymbol - Return the MCSymbol for the specified non-empty jump table.
413f22ef01cSRoman Divacky /// If isLinkerPrivate is specified, an 'l' label is returned, otherwise a
414f22ef01cSRoman Divacky /// normal 'L' label is returned.
415f22ef01cSRoman Divacky MCSymbol *MachineFunction::getJTISymbol(unsigned JTI, MCContext &Ctx,
416f22ef01cSRoman Divacky                                         bool isLinkerPrivate) const {
417f22ef01cSRoman Divacky   assert(JumpTableInfo && "No jump tables");
418f22ef01cSRoman Divacky   assert(JTI < JumpTableInfo->getJumpTables().size() && "Invalid JTI!");
419f22ef01cSRoman Divacky   const MCAsmInfo &MAI = *getTarget().getMCAsmInfo();
420f22ef01cSRoman Divacky 
421f22ef01cSRoman Divacky   const char *Prefix = isLinkerPrivate ? MAI.getLinkerPrivateGlobalPrefix() :
422f22ef01cSRoman Divacky                                          MAI.getPrivateGlobalPrefix();
423f22ef01cSRoman Divacky   SmallString<60> Name;
424f22ef01cSRoman Divacky   raw_svector_ostream(Name)
425f22ef01cSRoman Divacky     << Prefix << "JTI" << getFunctionNumber() << '_' << JTI;
426f22ef01cSRoman Divacky   return Ctx.GetOrCreateSymbol(Name.str());
427f22ef01cSRoman Divacky }
428f22ef01cSRoman Divacky 
4292754fe60SDimitry Andric /// getPICBaseSymbol - Return a function-local symbol to represent the PIC
4302754fe60SDimitry Andric /// base.
4312754fe60SDimitry Andric MCSymbol *MachineFunction::getPICBaseSymbol() const {
4322754fe60SDimitry Andric   const MCAsmInfo &MAI = *Target.getMCAsmInfo();
4332754fe60SDimitry Andric   return Ctx.GetOrCreateSymbol(Twine(MAI.getPrivateGlobalPrefix())+
4342754fe60SDimitry Andric                                Twine(getFunctionNumber())+"$pb");
4352754fe60SDimitry Andric }
436f22ef01cSRoman Divacky 
437f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
438f22ef01cSRoman Divacky //  MachineFrameInfo implementation
439f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
440f22ef01cSRoman Divacky 
441f22ef01cSRoman Divacky /// CreateFixedObject - Create a new object at a fixed location on the stack.
442f22ef01cSRoman Divacky /// All fixed objects should be created before other objects are created for
443f22ef01cSRoman Divacky /// efficiency. By default, fixed objects are immutable. This returns an
444f22ef01cSRoman Divacky /// index with a negative value.
445f22ef01cSRoman Divacky ///
446f22ef01cSRoman Divacky int MachineFrameInfo::CreateFixedObject(uint64_t Size, int64_t SPOffset,
447ffd1746dSEd Schouten                                         bool Immutable) {
448f22ef01cSRoman Divacky   assert(Size != 0 && "Cannot allocate zero size fixed stack objects!");
449ffd1746dSEd Schouten   // The alignment of the frame index can be determined from its offset from
450ffd1746dSEd Schouten   // the incoming frame position.  If the frame object is at offset 32 and
451ffd1746dSEd Schouten   // the stack is guaranteed to be 16-byte aligned, then we know that the
452ffd1746dSEd Schouten   // object is 16-byte aligned.
453ffd1746dSEd Schouten   unsigned StackAlign = TFI.getStackAlignment();
454ffd1746dSEd Schouten   unsigned Align = MinAlign(SPOffset, StackAlign);
455ffd1746dSEd Schouten   Objects.insert(Objects.begin(), StackObject(Size, Align, SPOffset, Immutable,
456e580952dSDimitry Andric                                               /*isSS*/false, false));
457f22ef01cSRoman Divacky   return -++NumFixedObjects;
458f22ef01cSRoman Divacky }
459f22ef01cSRoman Divacky 
460f22ef01cSRoman Divacky 
461f22ef01cSRoman Divacky BitVector
462f22ef01cSRoman Divacky MachineFrameInfo::getPristineRegs(const MachineBasicBlock *MBB) const {
463f22ef01cSRoman Divacky   assert(MBB && "MBB must be valid");
464f22ef01cSRoman Divacky   const MachineFunction *MF = MBB->getParent();
465f22ef01cSRoman Divacky   assert(MF && "MBB must be part of a MachineFunction");
466f22ef01cSRoman Divacky   const TargetMachine &TM = MF->getTarget();
467f22ef01cSRoman Divacky   const TargetRegisterInfo *TRI = TM.getRegisterInfo();
468f22ef01cSRoman Divacky   BitVector BV(TRI->getNumRegs());
469f22ef01cSRoman Divacky 
470f22ef01cSRoman Divacky   // Before CSI is calculated, no registers are considered pristine. They can be
471f22ef01cSRoman Divacky   // freely used and PEI will make sure they are saved.
472f22ef01cSRoman Divacky   if (!isCalleeSavedInfoValid())
473f22ef01cSRoman Divacky     return BV;
474f22ef01cSRoman Divacky 
475dff0c46cSDimitry Andric   for (const uint16_t *CSR = TRI->getCalleeSavedRegs(MF); CSR && *CSR; ++CSR)
476f22ef01cSRoman Divacky     BV.set(*CSR);
477f22ef01cSRoman Divacky 
478f22ef01cSRoman Divacky   // The entry MBB always has all CSRs pristine.
479f22ef01cSRoman Divacky   if (MBB == &MF->front())
480f22ef01cSRoman Divacky     return BV;
481f22ef01cSRoman Divacky 
482f22ef01cSRoman Divacky   // On other MBBs the saved CSRs are not pristine.
483f22ef01cSRoman Divacky   const std::vector<CalleeSavedInfo> &CSI = getCalleeSavedInfo();
484f22ef01cSRoman Divacky   for (std::vector<CalleeSavedInfo>::const_iterator I = CSI.begin(),
485f22ef01cSRoman Divacky          E = CSI.end(); I != E; ++I)
486f22ef01cSRoman Divacky     BV.reset(I->getReg());
487f22ef01cSRoman Divacky 
488f22ef01cSRoman Divacky   return BV;
489f22ef01cSRoman Divacky }
490f22ef01cSRoman Divacky 
491f22ef01cSRoman Divacky 
492f22ef01cSRoman Divacky void MachineFrameInfo::print(const MachineFunction &MF, raw_ostream &OS) const{
493f22ef01cSRoman Divacky   if (Objects.empty()) return;
494f22ef01cSRoman Divacky 
4952754fe60SDimitry Andric   const TargetFrameLowering *FI = MF.getTarget().getFrameLowering();
496f22ef01cSRoman Divacky   int ValOffset = (FI ? FI->getOffsetOfLocalArea() : 0);
497f22ef01cSRoman Divacky 
498f22ef01cSRoman Divacky   OS << "Frame Objects:\n";
499f22ef01cSRoman Divacky 
500f22ef01cSRoman Divacky   for (unsigned i = 0, e = Objects.size(); i != e; ++i) {
501f22ef01cSRoman Divacky     const StackObject &SO = Objects[i];
502f22ef01cSRoman Divacky     OS << "  fi#" << (int)(i-NumFixedObjects) << ": ";
503f22ef01cSRoman Divacky     if (SO.Size == ~0ULL) {
504f22ef01cSRoman Divacky       OS << "dead\n";
505f22ef01cSRoman Divacky       continue;
506f22ef01cSRoman Divacky     }
507f22ef01cSRoman Divacky     if (SO.Size == 0)
508f22ef01cSRoman Divacky       OS << "variable sized";
509f22ef01cSRoman Divacky     else
510f22ef01cSRoman Divacky       OS << "size=" << SO.Size;
511f22ef01cSRoman Divacky     OS << ", align=" << SO.Alignment;
512f22ef01cSRoman Divacky 
513f22ef01cSRoman Divacky     if (i < NumFixedObjects)
514f22ef01cSRoman Divacky       OS << ", fixed";
515f22ef01cSRoman Divacky     if (i < NumFixedObjects || SO.SPOffset != -1) {
516f22ef01cSRoman Divacky       int64_t Off = SO.SPOffset - ValOffset;
517f22ef01cSRoman Divacky       OS << ", at location [SP";
518f22ef01cSRoman Divacky       if (Off > 0)
519f22ef01cSRoman Divacky         OS << "+" << Off;
520f22ef01cSRoman Divacky       else if (Off < 0)
521f22ef01cSRoman Divacky         OS << Off;
522f22ef01cSRoman Divacky       OS << "]";
523f22ef01cSRoman Divacky     }
524f22ef01cSRoman Divacky     OS << "\n";
525f22ef01cSRoman Divacky   }
526f22ef01cSRoman Divacky }
527f22ef01cSRoman Divacky 
528f22ef01cSRoman Divacky void MachineFrameInfo::dump(const MachineFunction &MF) const {
529f22ef01cSRoman Divacky   print(MF, dbgs());
530f22ef01cSRoman Divacky }
531f22ef01cSRoman Divacky 
532f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
533f22ef01cSRoman Divacky //  MachineJumpTableInfo implementation
534f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
535f22ef01cSRoman Divacky 
536f22ef01cSRoman Divacky /// getEntrySize - Return the size of each entry in the jump table.
537f22ef01cSRoman Divacky unsigned MachineJumpTableInfo::getEntrySize(const TargetData &TD) const {
538f22ef01cSRoman Divacky   // The size of a jump table entry is 4 bytes unless the entry is just the
539f22ef01cSRoman Divacky   // address of a block, in which case it is the pointer size.
540f22ef01cSRoman Divacky   switch (getEntryKind()) {
541f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_BlockAddress:
542f22ef01cSRoman Divacky     return TD.getPointerSize();
543dff0c46cSDimitry Andric   case MachineJumpTableInfo::EK_GPRel64BlockAddress:
544dff0c46cSDimitry Andric     return 8;
545f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_GPRel32BlockAddress:
546f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_LabelDifference32:
547f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_Custom32:
548f22ef01cSRoman Divacky     return 4;
549f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_Inline:
550f22ef01cSRoman Divacky     return 0;
551f22ef01cSRoman Divacky   }
552dff0c46cSDimitry Andric   llvm_unreachable("Unknown jump table encoding!");
553f22ef01cSRoman Divacky }
554f22ef01cSRoman Divacky 
555f22ef01cSRoman Divacky /// getEntryAlignment - Return the alignment of each entry in the jump table.
556f22ef01cSRoman Divacky unsigned MachineJumpTableInfo::getEntryAlignment(const TargetData &TD) const {
557f22ef01cSRoman Divacky   // The alignment of a jump table entry is the alignment of int32 unless the
558f22ef01cSRoman Divacky   // entry is just the address of a block, in which case it is the pointer
559f22ef01cSRoman Divacky   // alignment.
560f22ef01cSRoman Divacky   switch (getEntryKind()) {
561f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_BlockAddress:
562f22ef01cSRoman Divacky     return TD.getPointerABIAlignment();
563dff0c46cSDimitry Andric   case MachineJumpTableInfo::EK_GPRel64BlockAddress:
564dff0c46cSDimitry Andric     return TD.getABIIntegerTypeAlignment(64);
565f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_GPRel32BlockAddress:
566f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_LabelDifference32:
567f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_Custom32:
568f22ef01cSRoman Divacky     return TD.getABIIntegerTypeAlignment(32);
569f22ef01cSRoman Divacky   case MachineJumpTableInfo::EK_Inline:
570f22ef01cSRoman Divacky     return 1;
571f22ef01cSRoman Divacky   }
572dff0c46cSDimitry Andric   llvm_unreachable("Unknown jump table encoding!");
573f22ef01cSRoman Divacky }
574f22ef01cSRoman Divacky 
575f22ef01cSRoman Divacky /// createJumpTableIndex - Create a new jump table entry in the jump table info.
576f22ef01cSRoman Divacky ///
577f22ef01cSRoman Divacky unsigned MachineJumpTableInfo::createJumpTableIndex(
578f22ef01cSRoman Divacky                                const std::vector<MachineBasicBlock*> &DestBBs) {
579f22ef01cSRoman Divacky   assert(!DestBBs.empty() && "Cannot create an empty jump table!");
580f22ef01cSRoman Divacky   JumpTables.push_back(MachineJumpTableEntry(DestBBs));
581f22ef01cSRoman Divacky   return JumpTables.size()-1;
582f22ef01cSRoman Divacky }
583f22ef01cSRoman Divacky 
584f22ef01cSRoman Divacky /// ReplaceMBBInJumpTables - If Old is the target of any jump tables, update
585f22ef01cSRoman Divacky /// the jump tables to branch to New instead.
586f22ef01cSRoman Divacky bool MachineJumpTableInfo::ReplaceMBBInJumpTables(MachineBasicBlock *Old,
587f22ef01cSRoman Divacky                                                   MachineBasicBlock *New) {
588f22ef01cSRoman Divacky   assert(Old != New && "Not making a change?");
589f22ef01cSRoman Divacky   bool MadeChange = false;
590f22ef01cSRoman Divacky   for (size_t i = 0, e = JumpTables.size(); i != e; ++i)
591f22ef01cSRoman Divacky     ReplaceMBBInJumpTable(i, Old, New);
592f22ef01cSRoman Divacky   return MadeChange;
593f22ef01cSRoman Divacky }
594f22ef01cSRoman Divacky 
595f22ef01cSRoman Divacky /// ReplaceMBBInJumpTable - If Old is a target of the jump tables, update
596f22ef01cSRoman Divacky /// the jump table to branch to New instead.
597f22ef01cSRoman Divacky bool MachineJumpTableInfo::ReplaceMBBInJumpTable(unsigned Idx,
598f22ef01cSRoman Divacky                                                  MachineBasicBlock *Old,
599f22ef01cSRoman Divacky                                                  MachineBasicBlock *New) {
600f22ef01cSRoman Divacky   assert(Old != New && "Not making a change?");
601f22ef01cSRoman Divacky   bool MadeChange = false;
602f22ef01cSRoman Divacky   MachineJumpTableEntry &JTE = JumpTables[Idx];
603f22ef01cSRoman Divacky   for (size_t j = 0, e = JTE.MBBs.size(); j != e; ++j)
604f22ef01cSRoman Divacky     if (JTE.MBBs[j] == Old) {
605f22ef01cSRoman Divacky       JTE.MBBs[j] = New;
606f22ef01cSRoman Divacky       MadeChange = true;
607f22ef01cSRoman Divacky     }
608f22ef01cSRoman Divacky   return MadeChange;
609f22ef01cSRoman Divacky }
610f22ef01cSRoman Divacky 
611f22ef01cSRoman Divacky void MachineJumpTableInfo::print(raw_ostream &OS) const {
612f22ef01cSRoman Divacky   if (JumpTables.empty()) return;
613f22ef01cSRoman Divacky 
614f22ef01cSRoman Divacky   OS << "Jump Tables:\n";
615f22ef01cSRoman Divacky 
616f22ef01cSRoman Divacky   for (unsigned i = 0, e = JumpTables.size(); i != e; ++i) {
617f22ef01cSRoman Divacky     OS << "  jt#" << i << ": ";
618f22ef01cSRoman Divacky     for (unsigned j = 0, f = JumpTables[i].MBBs.size(); j != f; ++j)
619f22ef01cSRoman Divacky       OS << " BB#" << JumpTables[i].MBBs[j]->getNumber();
620f22ef01cSRoman Divacky   }
621f22ef01cSRoman Divacky 
622f22ef01cSRoman Divacky   OS << '\n';
623f22ef01cSRoman Divacky }
624f22ef01cSRoman Divacky 
625f22ef01cSRoman Divacky void MachineJumpTableInfo::dump() const { print(dbgs()); }
626f22ef01cSRoman Divacky 
627f22ef01cSRoman Divacky 
628f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
629f22ef01cSRoman Divacky //  MachineConstantPool implementation
630f22ef01cSRoman Divacky //===----------------------------------------------------------------------===//
631f22ef01cSRoman Divacky 
632dff0c46cSDimitry Andric void MachineConstantPoolValue::anchor() { }
633dff0c46cSDimitry Andric 
6346122f3e6SDimitry Andric Type *MachineConstantPoolEntry::getType() const {
635f22ef01cSRoman Divacky   if (isMachineConstantPoolEntry())
636f22ef01cSRoman Divacky     return Val.MachineCPVal->getType();
637f22ef01cSRoman Divacky   return Val.ConstVal->getType();
638f22ef01cSRoman Divacky }
639f22ef01cSRoman Divacky 
640f22ef01cSRoman Divacky 
641f22ef01cSRoman Divacky unsigned MachineConstantPoolEntry::getRelocationInfo() const {
642f22ef01cSRoman Divacky   if (isMachineConstantPoolEntry())
643f22ef01cSRoman Divacky     return Val.MachineCPVal->getRelocationInfo();
644f22ef01cSRoman Divacky   return Val.ConstVal->getRelocationInfo();
645f22ef01cSRoman Divacky }
646f22ef01cSRoman Divacky 
647f22ef01cSRoman Divacky MachineConstantPool::~MachineConstantPool() {
648f22ef01cSRoman Divacky   for (unsigned i = 0, e = Constants.size(); i != e; ++i)
649f22ef01cSRoman Divacky     if (Constants[i].isMachineConstantPoolEntry())
650f22ef01cSRoman Divacky       delete Constants[i].Val.MachineCPVal;
651dd6029ffSDimitry Andric   for (DenseSet<MachineConstantPoolValue*>::iterator I =
652dd6029ffSDimitry Andric        MachineCPVsSharingEntries.begin(), E = MachineCPVsSharingEntries.end();
653dd6029ffSDimitry Andric        I != E; ++I)
654dd6029ffSDimitry Andric     delete *I;
655f22ef01cSRoman Divacky }
656f22ef01cSRoman Divacky 
657f22ef01cSRoman Divacky /// CanShareConstantPoolEntry - Test whether the given two constants
658f22ef01cSRoman Divacky /// can be allocated the same constant pool entry.
659f22ef01cSRoman Divacky static bool CanShareConstantPoolEntry(const Constant *A, const Constant *B,
660f22ef01cSRoman Divacky                                       const TargetData *TD) {
661f22ef01cSRoman Divacky   // Handle the trivial case quickly.
662f22ef01cSRoman Divacky   if (A == B) return true;
663f22ef01cSRoman Divacky 
664f22ef01cSRoman Divacky   // If they have the same type but weren't the same constant, quickly
665f22ef01cSRoman Divacky   // reject them.
666f22ef01cSRoman Divacky   if (A->getType() == B->getType()) return false;
667f22ef01cSRoman Divacky 
668dff0c46cSDimitry Andric   // We can't handle structs or arrays.
669dff0c46cSDimitry Andric   if (isa<StructType>(A->getType()) || isa<ArrayType>(A->getType()) ||
670dff0c46cSDimitry Andric       isa<StructType>(B->getType()) || isa<ArrayType>(B->getType()))
671dff0c46cSDimitry Andric     return false;
672dff0c46cSDimitry Andric 
673f22ef01cSRoman Divacky   // For now, only support constants with the same size.
674dff0c46cSDimitry Andric   uint64_t StoreSize = TD->getTypeStoreSize(A->getType());
675dff0c46cSDimitry Andric   if (StoreSize != TD->getTypeStoreSize(B->getType()) ||
676dff0c46cSDimitry Andric       StoreSize > 128)
677f22ef01cSRoman Divacky     return false;
678f22ef01cSRoman Divacky 
679dff0c46cSDimitry Andric   Type *IntTy = IntegerType::get(A->getContext(), StoreSize*8);
680f22ef01cSRoman Divacky 
681dff0c46cSDimitry Andric   // Try constant folding a bitcast of both instructions to an integer.  If we
682dff0c46cSDimitry Andric   // get two identical ConstantInt's, then we are good to share them.  We use
683dff0c46cSDimitry Andric   // the constant folding APIs to do this so that we get the benefit of
684dff0c46cSDimitry Andric   // TargetData.
685dff0c46cSDimitry Andric   if (isa<PointerType>(A->getType()))
686dff0c46cSDimitry Andric     A = ConstantFoldInstOperands(Instruction::PtrToInt, IntTy,
687dff0c46cSDimitry Andric                                  const_cast<Constant*>(A), TD);
688dff0c46cSDimitry Andric   else if (A->getType() != IntTy)
689dff0c46cSDimitry Andric     A = ConstantFoldInstOperands(Instruction::BitCast, IntTy,
690dff0c46cSDimitry Andric                                  const_cast<Constant*>(A), TD);
691dff0c46cSDimitry Andric   if (isa<PointerType>(B->getType()))
692dff0c46cSDimitry Andric     B = ConstantFoldInstOperands(Instruction::PtrToInt, IntTy,
693dff0c46cSDimitry Andric                                  const_cast<Constant*>(B), TD);
694dff0c46cSDimitry Andric   else if (B->getType() != IntTy)
695dff0c46cSDimitry Andric     B = ConstantFoldInstOperands(Instruction::BitCast, IntTy,
696dff0c46cSDimitry Andric                                  const_cast<Constant*>(B), TD);
697f22ef01cSRoman Divacky 
698dff0c46cSDimitry Andric   return A == B;
699f22ef01cSRoman Divacky }
700f22ef01cSRoman Divacky 
701f22ef01cSRoman Divacky /// getConstantPoolIndex - Create a new entry in the constant pool or return
702f22ef01cSRoman Divacky /// an existing one.  User must specify the log2 of the minimum required
703f22ef01cSRoman Divacky /// alignment for the object.
704f22ef01cSRoman Divacky ///
705f22ef01cSRoman Divacky unsigned MachineConstantPool::getConstantPoolIndex(const Constant *C,
706f22ef01cSRoman Divacky                                                    unsigned Alignment) {
707f22ef01cSRoman Divacky   assert(Alignment && "Alignment must be specified!");
708f22ef01cSRoman Divacky   if (Alignment > PoolAlignment) PoolAlignment = Alignment;
709f22ef01cSRoman Divacky 
710f22ef01cSRoman Divacky   // Check to see if we already have this constant.
711f22ef01cSRoman Divacky   //
712f22ef01cSRoman Divacky   // FIXME, this could be made much more efficient for large constant pools.
713f22ef01cSRoman Divacky   for (unsigned i = 0, e = Constants.size(); i != e; ++i)
714f22ef01cSRoman Divacky     if (!Constants[i].isMachineConstantPoolEntry() &&
715f22ef01cSRoman Divacky         CanShareConstantPoolEntry(Constants[i].Val.ConstVal, C, TD)) {
716f22ef01cSRoman Divacky       if ((unsigned)Constants[i].getAlignment() < Alignment)
717f22ef01cSRoman Divacky         Constants[i].Alignment = Alignment;
718f22ef01cSRoman Divacky       return i;
719f22ef01cSRoman Divacky     }
720f22ef01cSRoman Divacky 
721f22ef01cSRoman Divacky   Constants.push_back(MachineConstantPoolEntry(C, Alignment));
722f22ef01cSRoman Divacky   return Constants.size()-1;
723f22ef01cSRoman Divacky }
724f22ef01cSRoman Divacky 
725f22ef01cSRoman Divacky unsigned MachineConstantPool::getConstantPoolIndex(MachineConstantPoolValue *V,
726f22ef01cSRoman Divacky                                                    unsigned Alignment) {
727f22ef01cSRoman Divacky   assert(Alignment && "Alignment must be specified!");
728f22ef01cSRoman Divacky   if (Alignment > PoolAlignment) PoolAlignment = Alignment;
729f22ef01cSRoman Divacky 
730f22ef01cSRoman Divacky   // Check to see if we already have this constant.
731f22ef01cSRoman Divacky   //
732f22ef01cSRoman Divacky   // FIXME, this could be made much more efficient for large constant pools.
733f22ef01cSRoman Divacky   int Idx = V->getExistingMachineCPValue(this, Alignment);
734dd6029ffSDimitry Andric   if (Idx != -1) {
735dd6029ffSDimitry Andric     MachineCPVsSharingEntries.insert(V);
736f22ef01cSRoman Divacky     return (unsigned)Idx;
737dd6029ffSDimitry Andric   }
738f22ef01cSRoman Divacky 
739f22ef01cSRoman Divacky   Constants.push_back(MachineConstantPoolEntry(V, Alignment));
740f22ef01cSRoman Divacky   return Constants.size()-1;
741f22ef01cSRoman Divacky }
742f22ef01cSRoman Divacky 
743f22ef01cSRoman Divacky void MachineConstantPool::print(raw_ostream &OS) const {
744f22ef01cSRoman Divacky   if (Constants.empty()) return;
745f22ef01cSRoman Divacky 
746f22ef01cSRoman Divacky   OS << "Constant Pool:\n";
747f22ef01cSRoman Divacky   for (unsigned i = 0, e = Constants.size(); i != e; ++i) {
748f22ef01cSRoman Divacky     OS << "  cp#" << i << ": ";
749f22ef01cSRoman Divacky     if (Constants[i].isMachineConstantPoolEntry())
750f22ef01cSRoman Divacky       Constants[i].Val.MachineCPVal->print(OS);
751f22ef01cSRoman Divacky     else
752f22ef01cSRoman Divacky       OS << *(Value*)Constants[i].Val.ConstVal;
753f22ef01cSRoman Divacky     OS << ", align=" << Constants[i].getAlignment();
754f22ef01cSRoman Divacky     OS << "\n";
755f22ef01cSRoman Divacky   }
756f22ef01cSRoman Divacky }
757f22ef01cSRoman Divacky 
758f22ef01cSRoman Divacky void MachineConstantPool::dump() const { print(dbgs()); }
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