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Dan Gohmanf17a25c2007-07-18 16:29:46 +00001//===-- llvm/CodeGen/VirtRegMap.cpp - Virtual Register Map ----------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner081ce942007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the VirtRegMap class.
11//
12// It also contains implementations of the the Spiller interface, which, given a
13// virtual register map and a machine function, eliminates all virtual
14// references by replacing them with physical register references - adding spill
15// code as necessary.
16//
17//===----------------------------------------------------------------------===//
18
19#define DEBUG_TYPE "spiller"
20#include "VirtRegMap.h"
21#include "llvm/Function.h"
22#include "llvm/CodeGen/MachineFrameInfo.h"
23#include "llvm/CodeGen/MachineFunction.h"
Chris Lattner1b989192007-12-31 04:13:23 +000024#include "llvm/CodeGen/MachineRegisterInfo.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000025#include "llvm/Target/TargetMachine.h"
26#include "llvm/Target/TargetInstrInfo.h"
27#include "llvm/Support/CommandLine.h"
28#include "llvm/Support/Debug.h"
29#include "llvm/Support/Compiler.h"
30#include "llvm/ADT/BitVector.h"
31#include "llvm/ADT/Statistic.h"
32#include "llvm/ADT/STLExtras.h"
33#include "llvm/ADT/SmallSet.h"
34#include <algorithm>
35using namespace llvm;
36
37STATISTIC(NumSpills, "Number of register spills");
38STATISTIC(NumReMats, "Number of re-materialization");
Evan Cheng498949b2007-08-14 23:25:37 +000039STATISTIC(NumDRM , "Number of re-materializable defs elided");
Dan Gohmanf17a25c2007-07-18 16:29:46 +000040STATISTIC(NumStores, "Number of stores added");
41STATISTIC(NumLoads , "Number of loads added");
42STATISTIC(NumReused, "Number of values reused");
43STATISTIC(NumDSE , "Number of dead stores elided");
44STATISTIC(NumDCE , "Number of copies elided");
45
46namespace {
47 enum SpillerName { simple, local };
48
49 static cl::opt<SpillerName>
50 SpillerOpt("spiller",
51 cl::desc("Spiller to use: (default: local)"),
52 cl::Prefix,
53 cl::values(clEnumVal(simple, " simple spiller"),
54 clEnumVal(local, " local spiller"),
55 clEnumValEnd),
56 cl::init(local));
57}
58
59//===----------------------------------------------------------------------===//
60// VirtRegMap implementation
61//===----------------------------------------------------------------------===//
62
63VirtRegMap::VirtRegMap(MachineFunction &mf)
64 : TII(*mf.getTarget().getInstrInfo()), MF(mf),
65 Virt2PhysMap(NO_PHYS_REG), Virt2StackSlotMap(NO_STACK_SLOT),
Evan Chengcecc8222007-11-17 00:40:40 +000066 Virt2ReMatIdMap(NO_STACK_SLOT), Virt2SplitMap(0),
Evan Chengd9731042007-12-05 10:24:35 +000067 Virt2SplitKillMap(0), ReMatMap(NULL), ReMatId(MAX_STACK_SLOT+1) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +000068 grow();
69}
70
71void VirtRegMap::grow() {
Chris Lattner1b989192007-12-31 04:13:23 +000072 unsigned LastVirtReg = MF.getRegInfo().getLastVirtReg();
Evan Cheng1204d172007-08-13 23:45:17 +000073 Virt2PhysMap.grow(LastVirtReg);
74 Virt2StackSlotMap.grow(LastVirtReg);
75 Virt2ReMatIdMap.grow(LastVirtReg);
Evan Chengcecc8222007-11-17 00:40:40 +000076 Virt2SplitMap.grow(LastVirtReg);
Evan Cheng6f522672007-12-05 09:51:10 +000077 Virt2SplitKillMap.grow(LastVirtReg);
Evan Cheng1204d172007-08-13 23:45:17 +000078 ReMatMap.grow(LastVirtReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +000079}
80
81int VirtRegMap::assignVirt2StackSlot(unsigned virtReg) {
Dan Gohman1e57df32008-02-10 18:45:23 +000082 assert(TargetRegisterInfo::isVirtualRegister(virtReg));
Dan Gohmanf17a25c2007-07-18 16:29:46 +000083 assert(Virt2StackSlotMap[virtReg] == NO_STACK_SLOT &&
84 "attempt to assign stack slot to already spilled register");
Chris Lattner1b989192007-12-31 04:13:23 +000085 const TargetRegisterClass* RC = MF.getRegInfo().getRegClass(virtReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +000086 int frameIndex = MF.getFrameInfo()->CreateStackObject(RC->getSize(),
87 RC->getAlignment());
88 Virt2StackSlotMap[virtReg] = frameIndex;
89 ++NumSpills;
90 return frameIndex;
91}
92
93void VirtRegMap::assignVirt2StackSlot(unsigned virtReg, int frameIndex) {
Dan Gohman1e57df32008-02-10 18:45:23 +000094 assert(TargetRegisterInfo::isVirtualRegister(virtReg));
Dan Gohmanf17a25c2007-07-18 16:29:46 +000095 assert(Virt2StackSlotMap[virtReg] == NO_STACK_SLOT &&
96 "attempt to assign stack slot to already spilled register");
97 assert((frameIndex >= 0 ||
98 (frameIndex >= MF.getFrameInfo()->getObjectIndexBegin())) &&
99 "illegal fixed frame index");
100 Virt2StackSlotMap[virtReg] = frameIndex;
101}
102
103int VirtRegMap::assignVirtReMatId(unsigned virtReg) {
Dan Gohman1e57df32008-02-10 18:45:23 +0000104 assert(TargetRegisterInfo::isVirtualRegister(virtReg));
Evan Cheng1204d172007-08-13 23:45:17 +0000105 assert(Virt2ReMatIdMap[virtReg] == NO_STACK_SLOT &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000106 "attempt to assign re-mat id to already spilled register");
Evan Cheng1204d172007-08-13 23:45:17 +0000107 Virt2ReMatIdMap[virtReg] = ReMatId;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000108 return ReMatId++;
109}
110
Evan Cheng1204d172007-08-13 23:45:17 +0000111void VirtRegMap::assignVirtReMatId(unsigned virtReg, int id) {
Dan Gohman1e57df32008-02-10 18:45:23 +0000112 assert(TargetRegisterInfo::isVirtualRegister(virtReg));
Evan Cheng1204d172007-08-13 23:45:17 +0000113 assert(Virt2ReMatIdMap[virtReg] == NO_STACK_SLOT &&
114 "attempt to assign re-mat id to already spilled register");
115 Virt2ReMatIdMap[virtReg] = id;
116}
117
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000118void VirtRegMap::virtFolded(unsigned VirtReg, MachineInstr *OldMI,
Evan Chengfd0bd3c2007-12-02 08:30:39 +0000119 MachineInstr *NewMI, ModRef MRInfo) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000120 // Move previous memory references folded to new instruction.
121 MI2VirtMapTy::iterator IP = MI2VirtMap.lower_bound(NewMI);
122 for (MI2VirtMapTy::iterator I = MI2VirtMap.lower_bound(OldMI),
123 E = MI2VirtMap.end(); I != E && I->first == OldMI; ) {
124 MI2VirtMap.insert(IP, std::make_pair(NewMI, I->second));
125 MI2VirtMap.erase(I++);
126 }
127
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000128 // add new memory reference
129 MI2VirtMap.insert(IP, std::make_pair(NewMI, std::make_pair(VirtReg, MRInfo)));
130}
131
Evan Chengf3255842007-10-13 02:50:24 +0000132void VirtRegMap::virtFolded(unsigned VirtReg, MachineInstr *MI, ModRef MRInfo) {
133 MI2VirtMapTy::iterator IP = MI2VirtMap.lower_bound(MI);
134 MI2VirtMap.insert(IP, std::make_pair(MI, std::make_pair(VirtReg, MRInfo)));
135}
136
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000137void VirtRegMap::print(std::ostream &OS) const {
Dan Gohman1e57df32008-02-10 18:45:23 +0000138 const TargetRegisterInfo* TRI = MF.getTarget().getRegisterInfo();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000139
140 OS << "********** REGISTER MAP **********\n";
Dan Gohman1e57df32008-02-10 18:45:23 +0000141 for (unsigned i = TargetRegisterInfo::FirstVirtualRegister,
Chris Lattner1b989192007-12-31 04:13:23 +0000142 e = MF.getRegInfo().getLastVirtReg(); i <= e; ++i) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000143 if (Virt2PhysMap[i] != (unsigned)VirtRegMap::NO_PHYS_REG)
Dan Gohman1e57df32008-02-10 18:45:23 +0000144 OS << "[reg" << i << " -> " << TRI->getName(Virt2PhysMap[i]) << "]\n";
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000145
146 }
147
Dan Gohman1e57df32008-02-10 18:45:23 +0000148 for (unsigned i = TargetRegisterInfo::FirstVirtualRegister,
Chris Lattner1b989192007-12-31 04:13:23 +0000149 e = MF.getRegInfo().getLastVirtReg(); i <= e; ++i)
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000150 if (Virt2StackSlotMap[i] != VirtRegMap::NO_STACK_SLOT)
151 OS << "[reg" << i << " -> fi#" << Virt2StackSlotMap[i] << "]\n";
152 OS << '\n';
153}
154
155void VirtRegMap::dump() const {
156 print(DOUT);
157}
158
159
160//===----------------------------------------------------------------------===//
161// Simple Spiller Implementation
162//===----------------------------------------------------------------------===//
163
164Spiller::~Spiller() {}
165
166namespace {
167 struct VISIBILITY_HIDDEN SimpleSpiller : public Spiller {
168 bool runOnMachineFunction(MachineFunction& mf, VirtRegMap &VRM);
169 };
170}
171
172bool SimpleSpiller::runOnMachineFunction(MachineFunction &MF, VirtRegMap &VRM) {
173 DOUT << "********** REWRITE MACHINE CODE **********\n";
174 DOUT << "********** Function: " << MF.getFunction()->getName() << '\n';
175 const TargetMachine &TM = MF.getTarget();
Owen Anderson81875432008-01-01 21:11:32 +0000176 const TargetInstrInfo &TII = *TM.getInstrInfo();
177
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000178
179 // LoadedRegs - Keep track of which vregs are loaded, so that we only load
180 // each vreg once (in the case where a spilled vreg is used by multiple
181 // operands). This is always smaller than the number of operands to the
182 // current machine instr, so it should be small.
183 std::vector<unsigned> LoadedRegs;
184
185 for (MachineFunction::iterator MBBI = MF.begin(), E = MF.end();
186 MBBI != E; ++MBBI) {
187 DOUT << MBBI->getBasicBlock()->getName() << ":\n";
188 MachineBasicBlock &MBB = *MBBI;
189 for (MachineBasicBlock::iterator MII = MBB.begin(),
190 E = MBB.end(); MII != E; ++MII) {
191 MachineInstr &MI = *MII;
192 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
193 MachineOperand &MO = MI.getOperand(i);
Anton Korobeynikov53422f62008-02-20 11:10:28 +0000194 if (MO.isRegister() && MO.getReg()) {
Dan Gohman1e57df32008-02-10 18:45:23 +0000195 if (TargetRegisterInfo::isVirtualRegister(MO.getReg())) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000196 unsigned VirtReg = MO.getReg();
197 unsigned PhysReg = VRM.getPhys(VirtReg);
Evan Cheng1204d172007-08-13 23:45:17 +0000198 if (!VRM.isAssignedReg(VirtReg)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000199 int StackSlot = VRM.getStackSlot(VirtReg);
200 const TargetRegisterClass* RC =
Chris Lattner1b989192007-12-31 04:13:23 +0000201 MF.getRegInfo().getRegClass(VirtReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000202
203 if (MO.isUse() &&
204 std::find(LoadedRegs.begin(), LoadedRegs.end(), VirtReg)
205 == LoadedRegs.end()) {
Owen Anderson81875432008-01-01 21:11:32 +0000206 TII.loadRegFromStackSlot(MBB, &MI, PhysReg, StackSlot, RC);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000207 LoadedRegs.push_back(VirtReg);
208 ++NumLoads;
209 DOUT << '\t' << *prior(MII);
210 }
211
212 if (MO.isDef()) {
Owen Anderson81875432008-01-01 21:11:32 +0000213 TII.storeRegToStackSlot(MBB, next(MII), PhysReg, true,
Evan Cheng2af4a6c2007-12-05 03:14:33 +0000214 StackSlot, RC);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000215 ++NumStores;
216 }
217 }
Chris Lattner1b989192007-12-31 04:13:23 +0000218 MF.getRegInfo().setPhysRegUsed(PhysReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000219 MI.getOperand(i).setReg(PhysReg);
220 } else {
Chris Lattner1b989192007-12-31 04:13:23 +0000221 MF.getRegInfo().setPhysRegUsed(MO.getReg());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000222 }
Anton Korobeynikov53422f62008-02-20 11:10:28 +0000223 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000224 }
225
226 DOUT << '\t' << MI;
227 LoadedRegs.clear();
228 }
229 }
230 return true;
231}
232
233//===----------------------------------------------------------------------===//
234// Local Spiller Implementation
235//===----------------------------------------------------------------------===//
236
237namespace {
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000238 class AvailableSpills;
239
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000240 /// LocalSpiller - This spiller does a simple pass over the machine basic
241 /// block to attempt to keep spills in registers as much as possible for
242 /// blocks that have low register pressure (the vreg may be spilled due to
243 /// register pressure in other blocks).
244 class VISIBILITY_HIDDEN LocalSpiller : public Spiller {
Chris Lattner1b989192007-12-31 04:13:23 +0000245 MachineRegisterInfo *RegInfo;
Dan Gohman1e57df32008-02-10 18:45:23 +0000246 const TargetRegisterInfo *TRI;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000247 const TargetInstrInfo *TII;
248 public:
249 bool runOnMachineFunction(MachineFunction &MF, VirtRegMap &VRM) {
Chris Lattner1b989192007-12-31 04:13:23 +0000250 RegInfo = &MF.getRegInfo();
Dan Gohman1e57df32008-02-10 18:45:23 +0000251 TRI = MF.getTarget().getRegisterInfo();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000252 TII = MF.getTarget().getInstrInfo();
253 DOUT << "\n**** Local spiller rewriting function '"
254 << MF.getFunction()->getName() << "':\n";
Chris Lattner1b989192007-12-31 04:13:23 +0000255 DOUT << "**** Machine Instrs (NOTE! Does not include spills and reloads!)"
256 " ****\n";
David Greenea1c1e782007-09-06 16:36:39 +0000257 DEBUG(MF.dump());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000258
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000259 for (MachineFunction::iterator MBB = MF.begin(), E = MF.end();
260 MBB != E; ++MBB)
Evan Cheng1204d172007-08-13 23:45:17 +0000261 RewriteMBB(*MBB, VRM);
David Greenea1c1e782007-09-06 16:36:39 +0000262
263 DOUT << "**** Post Machine Instrs ****\n";
264 DEBUG(MF.dump());
265
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000266 return true;
267 }
268 private:
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000269 bool PrepForUnfoldOpti(MachineBasicBlock &MBB,
270 MachineBasicBlock::iterator &MII,
271 std::vector<MachineInstr*> &MaybeDeadStores,
272 AvailableSpills &Spills, BitVector &RegKills,
273 std::vector<MachineOperand*> &KillOps,
274 VirtRegMap &VRM);
Evan Chengcecc8222007-11-17 00:40:40 +0000275 void SpillRegToStackSlot(MachineBasicBlock &MBB,
276 MachineBasicBlock::iterator &MII,
277 int Idx, unsigned PhysReg, int StackSlot,
278 const TargetRegisterClass *RC,
Evan Cheng811fadb2007-12-04 19:19:45 +0000279 bool isAvailable, MachineInstr *&LastStore,
Evan Chengcecc8222007-11-17 00:40:40 +0000280 AvailableSpills &Spills,
281 SmallSet<MachineInstr*, 4> &ReMatDefs,
282 BitVector &RegKills,
283 std::vector<MachineOperand*> &KillOps,
Evan Chenga8420f02007-12-03 21:31:55 +0000284 VirtRegMap &VRM);
Evan Cheng1204d172007-08-13 23:45:17 +0000285 void RewriteMBB(MachineBasicBlock &MBB, VirtRegMap &VRM);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000286 };
287}
288
289/// AvailableSpills - As the local spiller is scanning and rewriting an MBB from
Evan Cheng1204d172007-08-13 23:45:17 +0000290/// top down, keep track of which spills slots or remat are available in each
291/// register.
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000292///
293/// Note that not all physregs are created equal here. In particular, some
294/// physregs are reloads that we are allowed to clobber or ignore at any time.
295/// Other physregs are values that the register allocated program is using that
296/// we cannot CHANGE, but we can read if we like. We keep track of this on a
Evan Cheng1204d172007-08-13 23:45:17 +0000297/// per-stack-slot / remat id basis as the low bit in the value of the
298/// SpillSlotsAvailable entries. The predicate 'canClobberPhysReg()' checks
299/// this bit and addAvailable sets it if.
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000300namespace {
301class VISIBILITY_HIDDEN AvailableSpills {
Dan Gohman1e57df32008-02-10 18:45:23 +0000302 const TargetRegisterInfo *TRI;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000303 const TargetInstrInfo *TII;
304
Evan Cheng1204d172007-08-13 23:45:17 +0000305 // SpillSlotsOrReMatsAvailable - This map keeps track of all of the spilled
306 // or remat'ed virtual register values that are still available, due to being
307 // loaded or stored to, but not invalidated yet.
308 std::map<int, unsigned> SpillSlotsOrReMatsAvailable;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000309
Evan Cheng1204d172007-08-13 23:45:17 +0000310 // PhysRegsAvailable - This is the inverse of SpillSlotsOrReMatsAvailable,
311 // indicating which stack slot values are currently held by a physreg. This
312 // is used to invalidate entries in SpillSlotsOrReMatsAvailable when a
313 // physreg is modified.
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000314 std::multimap<unsigned, int> PhysRegsAvailable;
315
316 void disallowClobberPhysRegOnly(unsigned PhysReg);
317
318 void ClobberPhysRegOnly(unsigned PhysReg);
319public:
Dan Gohman1e57df32008-02-10 18:45:23 +0000320 AvailableSpills(const TargetRegisterInfo *tri, const TargetInstrInfo *tii)
321 : TRI(tri), TII(tii) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000322 }
323
Dan Gohman1e57df32008-02-10 18:45:23 +0000324 const TargetRegisterInfo *getRegInfo() const { return TRI; }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000325
Evan Cheng1204d172007-08-13 23:45:17 +0000326 /// getSpillSlotOrReMatPhysReg - If the specified stack slot or remat is
327 /// available in a physical register, return that PhysReg, otherwise
328 /// return 0.
329 unsigned getSpillSlotOrReMatPhysReg(int Slot) const {
330 std::map<int, unsigned>::const_iterator I =
331 SpillSlotsOrReMatsAvailable.find(Slot);
332 if (I != SpillSlotsOrReMatsAvailable.end()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000333 return I->second >> 1; // Remove the CanClobber bit.
334 }
335 return 0;
336 }
337
Evan Cheng1204d172007-08-13 23:45:17 +0000338 /// addAvailable - Mark that the specified stack slot / remat is available in
339 /// the specified physreg. If CanClobber is true, the physreg can be modified
340 /// at any time without changing the semantics of the program.
341 void addAvailable(int SlotOrReMat, MachineInstr *MI, unsigned Reg,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000342 bool CanClobber = true) {
343 // If this stack slot is thought to be available in some other physreg,
344 // remove its record.
Evan Cheng1204d172007-08-13 23:45:17 +0000345 ModifyStackSlotOrReMat(SlotOrReMat);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000346
Evan Cheng1204d172007-08-13 23:45:17 +0000347 PhysRegsAvailable.insert(std::make_pair(Reg, SlotOrReMat));
Evan Cheng7efc9422007-08-15 20:20:34 +0000348 SpillSlotsOrReMatsAvailable[SlotOrReMat]= (Reg << 1) | (unsigned)CanClobber;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000349
Evan Cheng1204d172007-08-13 23:45:17 +0000350 if (SlotOrReMat > VirtRegMap::MAX_STACK_SLOT)
351 DOUT << "Remembering RM#" << SlotOrReMat-VirtRegMap::MAX_STACK_SLOT-1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000352 else
Evan Cheng1204d172007-08-13 23:45:17 +0000353 DOUT << "Remembering SS#" << SlotOrReMat;
Dan Gohman1e57df32008-02-10 18:45:23 +0000354 DOUT << " in physreg " << TRI->getName(Reg) << "\n";
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000355 }
356
357 /// canClobberPhysReg - Return true if the spiller is allowed to change the
358 /// value of the specified stackslot register if it desires. The specified
359 /// stack slot must be available in a physreg for this query to make sense.
Evan Cheng1204d172007-08-13 23:45:17 +0000360 bool canClobberPhysReg(int SlotOrReMat) const {
Evan Cheng7efc9422007-08-15 20:20:34 +0000361 assert(SpillSlotsOrReMatsAvailable.count(SlotOrReMat) &&
362 "Value not available!");
Evan Cheng1204d172007-08-13 23:45:17 +0000363 return SpillSlotsOrReMatsAvailable.find(SlotOrReMat)->second & 1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000364 }
Evan Cheng811fadb2007-12-04 19:19:45 +0000365
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000366 /// disallowClobberPhysReg - Unset the CanClobber bit of the specified
367 /// stackslot register. The register is still available but is no longer
368 /// allowed to be modifed.
369 void disallowClobberPhysReg(unsigned PhysReg);
370
371 /// ClobberPhysReg - This is called when the specified physreg changes
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000372 /// value. We use this to invalidate any info about stuff that lives in
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000373 /// it and any of its aliases.
374 void ClobberPhysReg(unsigned PhysReg);
375
Evan Cheng7efc9422007-08-15 20:20:34 +0000376 /// ModifyStackSlotOrReMat - This method is called when the value in a stack
377 /// slot changes. This removes information about which register the previous
378 /// value for this slot lives in (as the previous value is dead now).
Evan Cheng1204d172007-08-13 23:45:17 +0000379 void ModifyStackSlotOrReMat(int SlotOrReMat);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000380};
381}
382
383/// disallowClobberPhysRegOnly - Unset the CanClobber bit of the specified
384/// stackslot register. The register is still available but is no longer
385/// allowed to be modifed.
386void AvailableSpills::disallowClobberPhysRegOnly(unsigned PhysReg) {
387 std::multimap<unsigned, int>::iterator I =
388 PhysRegsAvailable.lower_bound(PhysReg);
389 while (I != PhysRegsAvailable.end() && I->first == PhysReg) {
Evan Cheng1204d172007-08-13 23:45:17 +0000390 int SlotOrReMat = I->second;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000391 I++;
Evan Cheng1204d172007-08-13 23:45:17 +0000392 assert((SpillSlotsOrReMatsAvailable[SlotOrReMat] >> 1) == PhysReg &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000393 "Bidirectional map mismatch!");
Evan Cheng1204d172007-08-13 23:45:17 +0000394 SpillSlotsOrReMatsAvailable[SlotOrReMat] &= ~1;
Dan Gohman1e57df32008-02-10 18:45:23 +0000395 DOUT << "PhysReg " << TRI->getName(PhysReg)
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000396 << " copied, it is available for use but can no longer be modified\n";
397 }
398}
399
400/// disallowClobberPhysReg - Unset the CanClobber bit of the specified
401/// stackslot register and its aliases. The register and its aliases may
402/// still available but is no longer allowed to be modifed.
403void AvailableSpills::disallowClobberPhysReg(unsigned PhysReg) {
Dan Gohman1e57df32008-02-10 18:45:23 +0000404 for (const unsigned *AS = TRI->getAliasSet(PhysReg); *AS; ++AS)
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000405 disallowClobberPhysRegOnly(*AS);
406 disallowClobberPhysRegOnly(PhysReg);
407}
408
409/// ClobberPhysRegOnly - This is called when the specified physreg changes
410/// value. We use this to invalidate any info about stuff we thing lives in it.
411void AvailableSpills::ClobberPhysRegOnly(unsigned PhysReg) {
412 std::multimap<unsigned, int>::iterator I =
413 PhysRegsAvailable.lower_bound(PhysReg);
414 while (I != PhysRegsAvailable.end() && I->first == PhysReg) {
Evan Cheng1204d172007-08-13 23:45:17 +0000415 int SlotOrReMat = I->second;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000416 PhysRegsAvailable.erase(I++);
Evan Cheng1204d172007-08-13 23:45:17 +0000417 assert((SpillSlotsOrReMatsAvailable[SlotOrReMat] >> 1) == PhysReg &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000418 "Bidirectional map mismatch!");
Evan Cheng1204d172007-08-13 23:45:17 +0000419 SpillSlotsOrReMatsAvailable.erase(SlotOrReMat);
Dan Gohman1e57df32008-02-10 18:45:23 +0000420 DOUT << "PhysReg " << TRI->getName(PhysReg)
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000421 << " clobbered, invalidating ";
Evan Cheng1204d172007-08-13 23:45:17 +0000422 if (SlotOrReMat > VirtRegMap::MAX_STACK_SLOT)
423 DOUT << "RM#" << SlotOrReMat-VirtRegMap::MAX_STACK_SLOT-1 << "\n";
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000424 else
Evan Cheng1204d172007-08-13 23:45:17 +0000425 DOUT << "SS#" << SlotOrReMat << "\n";
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000426 }
427}
428
429/// ClobberPhysReg - This is called when the specified physreg changes
430/// value. We use this to invalidate any info about stuff we thing lives in
431/// it and any of its aliases.
432void AvailableSpills::ClobberPhysReg(unsigned PhysReg) {
Dan Gohman1e57df32008-02-10 18:45:23 +0000433 for (const unsigned *AS = TRI->getAliasSet(PhysReg); *AS; ++AS)
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000434 ClobberPhysRegOnly(*AS);
435 ClobberPhysRegOnly(PhysReg);
436}
437
Evan Cheng7efc9422007-08-15 20:20:34 +0000438/// ModifyStackSlotOrReMat - This method is called when the value in a stack
439/// slot changes. This removes information about which register the previous
440/// value for this slot lives in (as the previous value is dead now).
Evan Cheng1204d172007-08-13 23:45:17 +0000441void AvailableSpills::ModifyStackSlotOrReMat(int SlotOrReMat) {
Evan Cheng7efc9422007-08-15 20:20:34 +0000442 std::map<int, unsigned>::iterator It =
443 SpillSlotsOrReMatsAvailable.find(SlotOrReMat);
Evan Cheng1204d172007-08-13 23:45:17 +0000444 if (It == SpillSlotsOrReMatsAvailable.end()) return;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000445 unsigned Reg = It->second >> 1;
Evan Cheng1204d172007-08-13 23:45:17 +0000446 SpillSlotsOrReMatsAvailable.erase(It);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000447
448 // This register may hold the value of multiple stack slots, only remove this
449 // stack slot from the set of values the register contains.
450 std::multimap<unsigned, int>::iterator I = PhysRegsAvailable.lower_bound(Reg);
451 for (; ; ++I) {
452 assert(I != PhysRegsAvailable.end() && I->first == Reg &&
453 "Map inverse broken!");
Evan Cheng1204d172007-08-13 23:45:17 +0000454 if (I->second == SlotOrReMat) break;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000455 }
456 PhysRegsAvailable.erase(I);
457}
458
459
460
461/// InvalidateKills - MI is going to be deleted. If any of its operands are
462/// marked kill, then invalidate the information.
463static void InvalidateKills(MachineInstr &MI, BitVector &RegKills,
Evan Chengeec85c52007-08-14 20:23:13 +0000464 std::vector<MachineOperand*> &KillOps,
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000465 SmallVector<unsigned, 2> *KillRegs = NULL) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000466 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
467 MachineOperand &MO = MI.getOperand(i);
Dan Gohman38a9a9f2007-09-14 20:33:02 +0000468 if (!MO.isRegister() || !MO.isUse() || !MO.isKill())
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000469 continue;
470 unsigned Reg = MO.getReg();
Evan Cheng498949b2007-08-14 23:25:37 +0000471 if (KillRegs)
472 KillRegs->push_back(Reg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000473 if (KillOps[Reg] == &MO) {
474 RegKills.reset(Reg);
475 KillOps[Reg] = NULL;
476 }
477 }
478}
479
Evan Cheng6d74b322007-12-11 23:36:57 +0000480/// InvalidateKill - A MI that defines the specified register is being deleted,
481/// invalidate the register kill information.
482static void InvalidateKill(unsigned Reg, BitVector &RegKills,
483 std::vector<MachineOperand*> &KillOps) {
484 if (RegKills[Reg]) {
Chris Lattner7f2d3b82007-12-30 21:56:09 +0000485 KillOps[Reg]->setIsKill(false);
Evan Cheng6d74b322007-12-11 23:36:57 +0000486 KillOps[Reg] = NULL;
487 RegKills.reset(Reg);
488 }
489}
490
Evan Cheng498949b2007-08-14 23:25:37 +0000491/// InvalidateRegDef - If the def operand of the specified def MI is now dead
492/// (since it's spill instruction is removed), mark it isDead. Also checks if
493/// the def MI has other definition operands that are not dead. Returns it by
494/// reference.
495static bool InvalidateRegDef(MachineBasicBlock::iterator I,
496 MachineInstr &NewDef, unsigned Reg,
497 bool &HasLiveDef) {
498 // Due to remat, it's possible this reg isn't being reused. That is,
499 // the def of this reg (by prev MI) is now dead.
500 MachineInstr *DefMI = I;
501 MachineOperand *DefOp = NULL;
502 for (unsigned i = 0, e = DefMI->getNumOperands(); i != e; ++i) {
503 MachineOperand &MO = DefMI->getOperand(i);
Dan Gohman38a9a9f2007-09-14 20:33:02 +0000504 if (MO.isRegister() && MO.isDef()) {
Evan Cheng498949b2007-08-14 23:25:37 +0000505 if (MO.getReg() == Reg)
506 DefOp = &MO;
507 else if (!MO.isDead())
508 HasLiveDef = true;
509 }
510 }
511 if (!DefOp)
512 return false;
513
514 bool FoundUse = false, Done = false;
515 MachineBasicBlock::iterator E = NewDef;
516 ++I; ++E;
517 for (; !Done && I != E; ++I) {
518 MachineInstr *NMI = I;
519 for (unsigned j = 0, ee = NMI->getNumOperands(); j != ee; ++j) {
520 MachineOperand &MO = NMI->getOperand(j);
Dan Gohman38a9a9f2007-09-14 20:33:02 +0000521 if (!MO.isRegister() || MO.getReg() != Reg)
Evan Cheng498949b2007-08-14 23:25:37 +0000522 continue;
523 if (MO.isUse())
524 FoundUse = true;
525 Done = true; // Stop after scanning all the operands of this MI.
526 }
527 }
528 if (!FoundUse) {
529 // Def is dead!
530 DefOp->setIsDead();
531 return true;
532 }
533 return false;
534}
535
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000536/// UpdateKills - Track and update kill info. If a MI reads a register that is
537/// marked kill, then it must be due to register reuse. Transfer the kill info
538/// over.
539static void UpdateKills(MachineInstr &MI, BitVector &RegKills,
540 std::vector<MachineOperand*> &KillOps) {
Chris Lattner5b930372008-01-07 07:27:27 +0000541 const TargetInstrDesc &TID = MI.getDesc();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000542 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
543 MachineOperand &MO = MI.getOperand(i);
Dan Gohman38a9a9f2007-09-14 20:33:02 +0000544 if (!MO.isRegister() || !MO.isUse())
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000545 continue;
546 unsigned Reg = MO.getReg();
547 if (Reg == 0)
548 continue;
549
550 if (RegKills[Reg]) {
551 // That can't be right. Register is killed but not re-defined and it's
552 // being reused. Let's fix that.
Chris Lattner7f2d3b82007-12-30 21:56:09 +0000553 KillOps[Reg]->setIsKill(false);
Evan Cheng6d74b322007-12-11 23:36:57 +0000554 KillOps[Reg] = NULL;
555 RegKills.reset(Reg);
Chris Lattner5b930372008-01-07 07:27:27 +0000556 if (i < TID.getNumOperands() &&
557 TID.getOperandConstraint(i, TOI::TIED_TO) == -1)
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000558 // Unless it's a two-address operand, this is the new kill.
559 MO.setIsKill();
560 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000561 if (MO.isKill()) {
562 RegKills.set(Reg);
563 KillOps[Reg] = &MO;
564 }
565 }
566
567 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
568 const MachineOperand &MO = MI.getOperand(i);
Dan Gohman38a9a9f2007-09-14 20:33:02 +0000569 if (!MO.isRegister() || !MO.isDef())
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000570 continue;
571 unsigned Reg = MO.getReg();
572 RegKills.reset(Reg);
573 KillOps[Reg] = NULL;
574 }
575}
576
Evan Chenga37ecfe2008-02-22 09:24:50 +0000577/// ReMaterialize - Re-materialize definition for Reg targetting DestReg.
578///
579static void ReMaterialize(MachineBasicBlock &MBB,
580 MachineBasicBlock::iterator &MII,
581 unsigned DestReg, unsigned Reg,
582 const TargetRegisterInfo *TRI,
583 VirtRegMap &VRM) {
584 TRI->reMaterialize(MBB, MII, DestReg, VRM.getReMaterializedMI(Reg));
585 MachineInstr *NewMI = prior(MII);
586 for (unsigned i = 0, e = NewMI->getNumOperands(); i != e; ++i) {
587 MachineOperand &MO = NewMI->getOperand(i);
588 if (!MO.isRegister() || MO.getReg() == 0)
589 continue;
590 unsigned VirtReg = MO.getReg();
591 if (TargetRegisterInfo::isPhysicalRegister(VirtReg))
592 continue;
593 assert(MO.isUse());
594 unsigned SubIdx = MO.getSubReg();
595 unsigned Phys = VRM.getPhys(VirtReg);
596 assert(Phys);
597 unsigned RReg = SubIdx ? TRI->getSubReg(Phys, SubIdx) : Phys;
598 MO.setReg(RReg);
599 }
600 ++NumReMats;
601}
602
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000603
604// ReusedOp - For each reused operand, we keep track of a bit of information, in
605// case we need to rollback upon processing a new operand. See comments below.
606namespace {
607 struct ReusedOp {
608 // The MachineInstr operand that reused an available value.
609 unsigned Operand;
610
Evan Cheng1204d172007-08-13 23:45:17 +0000611 // StackSlotOrReMat - The spill slot or remat id of the value being reused.
612 unsigned StackSlotOrReMat;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000613
614 // PhysRegReused - The physical register the value was available in.
615 unsigned PhysRegReused;
616
617 // AssignedPhysReg - The physreg that was assigned for use by the reload.
618 unsigned AssignedPhysReg;
619
620 // VirtReg - The virtual register itself.
621 unsigned VirtReg;
622
623 ReusedOp(unsigned o, unsigned ss, unsigned prr, unsigned apr,
624 unsigned vreg)
Evan Cheng7efc9422007-08-15 20:20:34 +0000625 : Operand(o), StackSlotOrReMat(ss), PhysRegReused(prr),
626 AssignedPhysReg(apr), VirtReg(vreg) {}
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000627 };
628
629 /// ReuseInfo - This maintains a collection of ReuseOp's for each operand that
630 /// is reused instead of reloaded.
631 class VISIBILITY_HIDDEN ReuseInfo {
632 MachineInstr &MI;
633 std::vector<ReusedOp> Reuses;
634 BitVector PhysRegsClobbered;
635 public:
Dan Gohman1e57df32008-02-10 18:45:23 +0000636 ReuseInfo(MachineInstr &mi, const TargetRegisterInfo *tri) : MI(mi) {
637 PhysRegsClobbered.resize(tri->getNumRegs());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000638 }
639
640 bool hasReuses() const {
641 return !Reuses.empty();
642 }
643
644 /// addReuse - If we choose to reuse a virtual register that is already
645 /// available instead of reloading it, remember that we did so.
Evan Cheng1204d172007-08-13 23:45:17 +0000646 void addReuse(unsigned OpNo, unsigned StackSlotOrReMat,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000647 unsigned PhysRegReused, unsigned AssignedPhysReg,
648 unsigned VirtReg) {
649 // If the reload is to the assigned register anyway, no undo will be
650 // required.
651 if (PhysRegReused == AssignedPhysReg) return;
652
653 // Otherwise, remember this.
Evan Cheng1204d172007-08-13 23:45:17 +0000654 Reuses.push_back(ReusedOp(OpNo, StackSlotOrReMat, PhysRegReused,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000655 AssignedPhysReg, VirtReg));
656 }
657
658 void markClobbered(unsigned PhysReg) {
659 PhysRegsClobbered.set(PhysReg);
660 }
661
662 bool isClobbered(unsigned PhysReg) const {
663 return PhysRegsClobbered.test(PhysReg);
664 }
665
666 /// GetRegForReload - We are about to emit a reload into PhysReg. If there
667 /// is some other operand that is using the specified register, either pick
668 /// a new register to use, or evict the previous reload and use this reg.
669 unsigned GetRegForReload(unsigned PhysReg, MachineInstr *MI,
670 AvailableSpills &Spills,
Evan Chengd368d822007-08-14 09:11:18 +0000671 std::vector<MachineInstr*> &MaybeDeadStores,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000672 SmallSet<unsigned, 8> &Rejected,
673 BitVector &RegKills,
Evan Cheng1204d172007-08-13 23:45:17 +0000674 std::vector<MachineOperand*> &KillOps,
675 VirtRegMap &VRM) {
Owen Anderson81875432008-01-01 21:11:32 +0000676 const TargetInstrInfo* TII = MI->getParent()->getParent()->getTarget()
677 .getInstrInfo();
678
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000679 if (Reuses.empty()) return PhysReg; // This is most often empty.
680
681 for (unsigned ro = 0, e = Reuses.size(); ro != e; ++ro) {
682 ReusedOp &Op = Reuses[ro];
683 // If we find some other reuse that was supposed to use this register
684 // exactly for its reload, we can change this reload to use ITS reload
685 // register. That is, unless its reload register has already been
686 // considered and subsequently rejected because it has also been reused
687 // by another operand.
688 if (Op.PhysRegReused == PhysReg &&
689 Rejected.count(Op.AssignedPhysReg) == 0) {
690 // Yup, use the reload register that we didn't use before.
691 unsigned NewReg = Op.AssignedPhysReg;
692 Rejected.insert(PhysReg);
693 return GetRegForReload(NewReg, MI, Spills, MaybeDeadStores, Rejected,
Evan Cheng1204d172007-08-13 23:45:17 +0000694 RegKills, KillOps, VRM);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000695 } else {
696 // Otherwise, we might also have a problem if a previously reused
697 // value aliases the new register. If so, codegen the previous reload
698 // and use this one.
699 unsigned PRRU = Op.PhysRegReused;
Dan Gohman1e57df32008-02-10 18:45:23 +0000700 const TargetRegisterInfo *TRI = Spills.getRegInfo();
701 if (TRI->areAliases(PRRU, PhysReg)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000702 // Okay, we found out that an alias of a reused register
703 // was used. This isn't good because it means we have
704 // to undo a previous reuse.
705 MachineBasicBlock *MBB = MI->getParent();
706 const TargetRegisterClass *AliasRC =
Chris Lattner1b989192007-12-31 04:13:23 +0000707 MBB->getParent()->getRegInfo().getRegClass(Op.VirtReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000708
709 // Copy Op out of the vector and remove it, we're going to insert an
710 // explicit load for it.
711 ReusedOp NewOp = Op;
712 Reuses.erase(Reuses.begin()+ro);
713
714 // Ok, we're going to try to reload the assigned physreg into the
715 // slot that we were supposed to in the first place. However, that
716 // register could hold a reuse. Check to see if it conflicts or
717 // would prefer us to use a different register.
718 unsigned NewPhysReg = GetRegForReload(NewOp.AssignedPhysReg,
719 MI, Spills, MaybeDeadStores,
Evan Cheng1204d172007-08-13 23:45:17 +0000720 Rejected, RegKills, KillOps, VRM);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000721
Evan Chenga37ecfe2008-02-22 09:24:50 +0000722 MachineBasicBlock::iterator MII = MI;
Evan Cheng1204d172007-08-13 23:45:17 +0000723 if (NewOp.StackSlotOrReMat > VirtRegMap::MAX_STACK_SLOT) {
Evan Chenga37ecfe2008-02-22 09:24:50 +0000724 ReMaterialize(*MBB, MII, NewPhysReg, NewOp.VirtReg, TRI, VRM);
Evan Cheng1204d172007-08-13 23:45:17 +0000725 } else {
Evan Chenga37ecfe2008-02-22 09:24:50 +0000726 TII->loadRegFromStackSlot(*MBB, MII, NewPhysReg,
Evan Cheng1204d172007-08-13 23:45:17 +0000727 NewOp.StackSlotOrReMat, AliasRC);
Evan Chengd368d822007-08-14 09:11:18 +0000728 // Any stores to this stack slot are not dead anymore.
729 MaybeDeadStores[NewOp.StackSlotOrReMat] = NULL;
Evan Cheng1204d172007-08-13 23:45:17 +0000730 ++NumLoads;
731 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000732 Spills.ClobberPhysReg(NewPhysReg);
733 Spills.ClobberPhysReg(NewOp.PhysRegReused);
734
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000735 MI->getOperand(NewOp.Operand).setReg(NewPhysReg);
736
Evan Cheng1204d172007-08-13 23:45:17 +0000737 Spills.addAvailable(NewOp.StackSlotOrReMat, MI, NewPhysReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000738 --MII;
739 UpdateKills(*MII, RegKills, KillOps);
740 DOUT << '\t' << *MII;
741
742 DOUT << "Reuse undone!\n";
743 --NumReused;
744
745 // Finally, PhysReg is now available, go ahead and use it.
746 return PhysReg;
747 }
748 }
749 }
750 return PhysReg;
751 }
752
753 /// GetRegForReload - Helper for the above GetRegForReload(). Add a
754 /// 'Rejected' set to remember which registers have been considered and
755 /// rejected for the reload. This avoids infinite looping in case like
756 /// this:
757 /// t1 := op t2, t3
758 /// t2 <- assigned r0 for use by the reload but ended up reuse r1
759 /// t3 <- assigned r1 for use by the reload but ended up reuse r0
760 /// t1 <- desires r1
761 /// sees r1 is taken by t2, tries t2's reload register r0
762 /// sees r0 is taken by t3, tries t3's reload register r1
763 /// sees r1 is taken by t2, tries t2's reload register r0 ...
764 unsigned GetRegForReload(unsigned PhysReg, MachineInstr *MI,
765 AvailableSpills &Spills,
Evan Chengd368d822007-08-14 09:11:18 +0000766 std::vector<MachineInstr*> &MaybeDeadStores,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000767 BitVector &RegKills,
Evan Cheng1204d172007-08-13 23:45:17 +0000768 std::vector<MachineOperand*> &KillOps,
769 VirtRegMap &VRM) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000770 SmallSet<unsigned, 8> Rejected;
771 return GetRegForReload(PhysReg, MI, Spills, MaybeDeadStores, Rejected,
Evan Cheng1204d172007-08-13 23:45:17 +0000772 RegKills, KillOps, VRM);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000773 }
774 };
775}
776
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000777/// PrepForUnfoldOpti - Turn a store folding instruction into a load folding
778/// instruction. e.g.
779/// xorl %edi, %eax
780/// movl %eax, -32(%ebp)
781/// movl -36(%ebp), %eax
Bill Wendling059e62c2008-02-26 10:51:52 +0000782/// orl %eax, -32(%ebp)
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000783/// ==>
784/// xorl %edi, %eax
785/// orl -36(%ebp), %eax
786/// mov %eax, -32(%ebp)
787/// This enables unfolding optimization for a subsequent instruction which will
788/// also eliminate the newly introduced store instruction.
789bool LocalSpiller::PrepForUnfoldOpti(MachineBasicBlock &MBB,
790 MachineBasicBlock::iterator &MII,
791 std::vector<MachineInstr*> &MaybeDeadStores,
792 AvailableSpills &Spills,
793 BitVector &RegKills,
794 std::vector<MachineOperand*> &KillOps,
795 VirtRegMap &VRM) {
796 MachineFunction &MF = *MBB.getParent();
797 MachineInstr &MI = *MII;
798 unsigned UnfoldedOpc = 0;
799 unsigned UnfoldPR = 0;
800 unsigned UnfoldVR = 0;
801 int FoldedSS = VirtRegMap::NO_STACK_SLOT;
802 VirtRegMap::MI2VirtMapTy::const_iterator I, End;
803 for (tie(I, End) = VRM.getFoldedVirts(&MI); I != End; ++I) {
804 // Only transform a MI that folds a single register.
805 if (UnfoldedOpc)
806 return false;
807 UnfoldVR = I->second.first;
808 VirtRegMap::ModRef MR = I->second.second;
809 if (VRM.isAssignedReg(UnfoldVR))
810 continue;
811 // If this reference is not a use, any previous store is now dead.
812 // Otherwise, the store to this stack slot is not dead anymore.
813 FoldedSS = VRM.getStackSlot(UnfoldVR);
814 MachineInstr* DeadStore = MaybeDeadStores[FoldedSS];
815 if (DeadStore && (MR & VirtRegMap::isModRef)) {
816 unsigned PhysReg = Spills.getSpillSlotOrReMatPhysReg(FoldedSS);
817 if (!PhysReg ||
818 DeadStore->findRegisterUseOperandIdx(PhysReg, true) == -1)
819 continue;
820 UnfoldPR = PhysReg;
Owen Andersonbf15ae22008-01-07 01:35:56 +0000821 UnfoldedOpc = TII->getOpcodeAfterMemoryUnfold(MI.getOpcode(),
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000822 false, true);
823 }
824 }
825
826 if (!UnfoldedOpc)
827 return false;
828
829 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
830 MachineOperand &MO = MI.getOperand(i);
831 if (!MO.isRegister() || MO.getReg() == 0 || !MO.isUse())
832 continue;
833 unsigned VirtReg = MO.getReg();
Dan Gohman1e57df32008-02-10 18:45:23 +0000834 if (TargetRegisterInfo::isPhysicalRegister(VirtReg) || MO.getSubReg())
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000835 continue;
836 if (VRM.isAssignedReg(VirtReg)) {
837 unsigned PhysReg = VRM.getPhys(VirtReg);
Dan Gohman1e57df32008-02-10 18:45:23 +0000838 if (PhysReg && TRI->regsOverlap(PhysReg, UnfoldPR))
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000839 return false;
840 } else if (VRM.isReMaterialized(VirtReg))
841 continue;
842 int SS = VRM.getStackSlot(VirtReg);
843 unsigned PhysReg = Spills.getSpillSlotOrReMatPhysReg(SS);
844 if (PhysReg) {
Dan Gohman1e57df32008-02-10 18:45:23 +0000845 if (TRI->regsOverlap(PhysReg, UnfoldPR))
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000846 return false;
847 continue;
848 }
849 PhysReg = VRM.getPhys(VirtReg);
Dan Gohman1e57df32008-02-10 18:45:23 +0000850 if (!TRI->regsOverlap(PhysReg, UnfoldPR))
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000851 continue;
852
853 // Ok, we'll need to reload the value into a register which makes
854 // it impossible to perform the store unfolding optimization later.
855 // Let's see if it is possible to fold the load if the store is
856 // unfolded. This allows us to perform the store unfolding
857 // optimization.
858 SmallVector<MachineInstr*, 4> NewMIs;
Owen Andersonbf15ae22008-01-07 01:35:56 +0000859 if (TII->unfoldMemoryOperand(MF, &MI, UnfoldVR, false, false, NewMIs)) {
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000860 assert(NewMIs.size() == 1);
861 MachineInstr *NewMI = NewMIs.back();
862 NewMIs.clear();
Evan Chengcecc8222007-11-17 00:40:40 +0000863 int Idx = NewMI->findRegisterUseOperandIdx(VirtReg);
864 assert(Idx != -1);
Evan Chengfd0bd3c2007-12-02 08:30:39 +0000865 SmallVector<unsigned, 2> Ops;
866 Ops.push_back(Idx);
Evan Cheng3a15a4e2008-02-08 22:05:27 +0000867 MachineInstr *FoldedMI = TII->foldMemoryOperand(MF, NewMI, Ops, SS);
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000868 if (FoldedMI) {
Evan Cheng3b94f752007-10-22 03:01:44 +0000869 if (!VRM.hasPhys(UnfoldVR))
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000870 VRM.assignVirt2Phys(UnfoldVR, UnfoldPR);
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000871 VRM.virtFolded(VirtReg, FoldedMI, VirtRegMap::isRef);
872 MII = MBB.insert(MII, FoldedMI);
Evan Cheng91e32d02007-11-28 01:28:46 +0000873 VRM.RemoveMachineInstrFromMaps(&MI);
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000874 MBB.erase(&MI);
875 return true;
876 }
877 delete NewMI;
878 }
879 }
880 return false;
881}
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000882
Evan Chenga1b89c22007-11-02 17:35:08 +0000883/// findSuperReg - Find the SubReg's super-register of given register class
884/// where its SubIdx sub-register is SubReg.
885static unsigned findSuperReg(const TargetRegisterClass *RC, unsigned SubReg,
Dan Gohman1e57df32008-02-10 18:45:23 +0000886 unsigned SubIdx, const TargetRegisterInfo *TRI) {
Evan Chenga1b89c22007-11-02 17:35:08 +0000887 for (TargetRegisterClass::iterator I = RC->begin(), E = RC->end();
888 I != E; ++I) {
889 unsigned Reg = *I;
Dan Gohman1e57df32008-02-10 18:45:23 +0000890 if (TRI->getSubReg(Reg, SubIdx) == SubReg)
Evan Chenga1b89c22007-11-02 17:35:08 +0000891 return Reg;
892 }
893 return 0;
894}
895
Evan Chengcecc8222007-11-17 00:40:40 +0000896/// SpillRegToStackSlot - Spill a register to a specified stack slot. Check if
897/// the last store to the same slot is now dead. If so, remove the last store.
898void LocalSpiller::SpillRegToStackSlot(MachineBasicBlock &MBB,
899 MachineBasicBlock::iterator &MII,
900 int Idx, unsigned PhysReg, int StackSlot,
901 const TargetRegisterClass *RC,
Evan Cheng811fadb2007-12-04 19:19:45 +0000902 bool isAvailable, MachineInstr *&LastStore,
Evan Chengcecc8222007-11-17 00:40:40 +0000903 AvailableSpills &Spills,
904 SmallSet<MachineInstr*, 4> &ReMatDefs,
905 BitVector &RegKills,
906 std::vector<MachineOperand*> &KillOps,
Evan Chenga8420f02007-12-03 21:31:55 +0000907 VirtRegMap &VRM) {
Owen Anderson81875432008-01-01 21:11:32 +0000908 TII->storeRegToStackSlot(MBB, next(MII), PhysReg, true, StackSlot, RC);
Evan Chengcecc8222007-11-17 00:40:40 +0000909 DOUT << "Store:\t" << *next(MII);
910
911 // If there is a dead store to this stack slot, nuke it now.
912 if (LastStore) {
913 DOUT << "Removed dead store:\t" << *LastStore;
914 ++NumDSE;
915 SmallVector<unsigned, 2> KillRegs;
916 InvalidateKills(*LastStore, RegKills, KillOps, &KillRegs);
917 MachineBasicBlock::iterator PrevMII = LastStore;
918 bool CheckDef = PrevMII != MBB.begin();
919 if (CheckDef)
920 --PrevMII;
921 MBB.erase(LastStore);
Evan Cheng91e32d02007-11-28 01:28:46 +0000922 VRM.RemoveMachineInstrFromMaps(LastStore);
Evan Chengcecc8222007-11-17 00:40:40 +0000923 if (CheckDef) {
924 // Look at defs of killed registers on the store. Mark the defs
925 // as dead since the store has been deleted and they aren't
926 // being reused.
927 for (unsigned j = 0, ee = KillRegs.size(); j != ee; ++j) {
928 bool HasOtherDef = false;
929 if (InvalidateRegDef(PrevMII, *MII, KillRegs[j], HasOtherDef)) {
930 MachineInstr *DeadDef = PrevMII;
931 if (ReMatDefs.count(DeadDef) && !HasOtherDef) {
932 // FIXME: This assumes a remat def does not have side
933 // effects.
934 MBB.erase(DeadDef);
Evan Cheng91e32d02007-11-28 01:28:46 +0000935 VRM.RemoveMachineInstrFromMaps(DeadDef);
Evan Chengcecc8222007-11-17 00:40:40 +0000936 ++NumDRM;
937 }
938 }
939 }
940 }
941 }
942
Evan Chenga8420f02007-12-03 21:31:55 +0000943 LastStore = next(MII);
Evan Chengcecc8222007-11-17 00:40:40 +0000944
945 // If the stack slot value was previously available in some other
946 // register, change it now. Otherwise, make the register available,
947 // in PhysReg.
948 Spills.ModifyStackSlotOrReMat(StackSlot);
949 Spills.ClobberPhysReg(PhysReg);
Evan Cheng811fadb2007-12-04 19:19:45 +0000950 Spills.addAvailable(StackSlot, LastStore, PhysReg, isAvailable);
Evan Chengcecc8222007-11-17 00:40:40 +0000951 ++NumStores;
952}
953
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000954/// rewriteMBB - Keep track of which spills are available even after the
Evan Chengcecc8222007-11-17 00:40:40 +0000955/// register allocator is done with them. If possible, avid reloading vregs.
Evan Cheng1204d172007-08-13 23:45:17 +0000956void LocalSpiller::RewriteMBB(MachineBasicBlock &MBB, VirtRegMap &VRM) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000957 DOUT << MBB.getBasicBlock()->getName() << ":\n";
958
Evan Chengd368d822007-08-14 09:11:18 +0000959 MachineFunction &MF = *MBB.getParent();
Owen Anderson8f2c8932007-12-31 06:32:00 +0000960
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000961 // Spills - Keep track of which spilled values are available in physregs so
962 // that we can choose to reuse the physregs instead of emitting reloads.
Dan Gohman1e57df32008-02-10 18:45:23 +0000963 AvailableSpills Spills(TRI, TII);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000964
965 // MaybeDeadStores - When we need to write a value back into a stack slot,
966 // keep track of the inserted store. If the stack slot value is never read
967 // (because the value was used from some available register, for example), and
968 // subsequently stored to, the original store is dead. This map keeps track
969 // of inserted stores that are not used. If we see a subsequent store to the
970 // same stack slot, the original store is deleted.
Evan Chengd368d822007-08-14 09:11:18 +0000971 std::vector<MachineInstr*> MaybeDeadStores;
972 MaybeDeadStores.resize(MF.getFrameInfo()->getObjectIndexEnd(), NULL);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000973
Evan Cheng498949b2007-08-14 23:25:37 +0000974 // ReMatDefs - These are rematerializable def MIs which are not deleted.
975 SmallSet<MachineInstr*, 4> ReMatDefs;
976
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000977 // Keep track of kill information.
Dan Gohman1e57df32008-02-10 18:45:23 +0000978 BitVector RegKills(TRI->getNumRegs());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000979 std::vector<MachineOperand*> KillOps;
Dan Gohman1e57df32008-02-10 18:45:23 +0000980 KillOps.resize(TRI->getNumRegs(), NULL);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000981
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000982 for (MachineBasicBlock::iterator MII = MBB.begin(), E = MBB.end();
983 MII != E; ) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000984 MachineBasicBlock::iterator NextMII = MII; ++NextMII;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000985
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000986 VirtRegMap::MI2VirtMapTy::const_iterator I, End;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000987 bool Erased = false;
988 bool BackTracked = false;
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000989 if (PrepForUnfoldOpti(MBB, MII,
990 MaybeDeadStores, Spills, RegKills, KillOps, VRM))
991 NextMII = next(MII);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000992
Evan Cheng4a7e72f2007-10-19 21:23:22 +0000993 MachineInstr &MI = *MII;
Chris Lattner5b930372008-01-07 07:27:27 +0000994 const TargetInstrDesc &TID = MI.getDesc();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000995
Evan Cheng96c61312007-11-29 01:06:25 +0000996 // Insert restores here if asked to.
997 if (VRM.isRestorePt(&MI)) {
998 std::vector<unsigned> &RestoreRegs = VRM.getRestorePtRestores(&MI);
999 for (unsigned i = 0, e = RestoreRegs.size(); i != e; ++i) {
Evan Chenga37ecfe2008-02-22 09:24:50 +00001000 unsigned VirtReg = RestoreRegs[e-i-1]; // Reverse order.
Evan Cheng96c61312007-11-29 01:06:25 +00001001 if (!VRM.getPreSplitReg(VirtReg))
1002 continue; // Split interval spilled again.
1003 unsigned Phys = VRM.getPhys(VirtReg);
Chris Lattner1b989192007-12-31 04:13:23 +00001004 RegInfo->setPhysRegUsed(Phys);
Evan Cheng96c61312007-11-29 01:06:25 +00001005 if (VRM.isReMaterialized(VirtReg)) {
Evan Chenga37ecfe2008-02-22 09:24:50 +00001006 ReMaterialize(MBB, MII, Phys, VirtReg, TRI, VRM);
Evan Cheng96c61312007-11-29 01:06:25 +00001007 } else {
Chris Lattner1b989192007-12-31 04:13:23 +00001008 const TargetRegisterClass* RC = RegInfo->getRegClass(VirtReg);
Owen Anderson81875432008-01-01 21:11:32 +00001009 TII->loadRegFromStackSlot(MBB, &MI, Phys, VRM.getStackSlot(VirtReg),
Chris Lattner1b989192007-12-31 04:13:23 +00001010 RC);
Evan Cheng96c61312007-11-29 01:06:25 +00001011 ++NumLoads;
1012 }
1013 // This invalidates Phys.
1014 Spills.ClobberPhysReg(Phys);
1015 UpdateKills(*prior(MII), RegKills, KillOps);
1016 DOUT << '\t' << *prior(MII);
1017 }
1018 }
1019
Evan Chengcecc8222007-11-17 00:40:40 +00001020 // Insert spills here if asked to.
Evan Cheng91e32d02007-11-28 01:28:46 +00001021 if (VRM.isSpillPt(&MI)) {
Evan Chenged17a892007-12-05 08:16:32 +00001022 std::vector<std::pair<unsigned,bool> > &SpillRegs =
1023 VRM.getSpillPtSpills(&MI);
Evan Cheng91e32d02007-11-28 01:28:46 +00001024 for (unsigned i = 0, e = SpillRegs.size(); i != e; ++i) {
Evan Chenged17a892007-12-05 08:16:32 +00001025 unsigned VirtReg = SpillRegs[i].first;
1026 bool isKill = SpillRegs[i].second;
Evan Cheng91e32d02007-11-28 01:28:46 +00001027 if (!VRM.getPreSplitReg(VirtReg))
1028 continue; // Split interval spilled again.
Chris Lattner1b989192007-12-31 04:13:23 +00001029 const TargetRegisterClass *RC = RegInfo->getRegClass(VirtReg);
Evan Cheng91e32d02007-11-28 01:28:46 +00001030 unsigned Phys = VRM.getPhys(VirtReg);
1031 int StackSlot = VRM.getStackSlot(VirtReg);
Owen Anderson81875432008-01-01 21:11:32 +00001032 TII->storeRegToStackSlot(MBB, next(MII), Phys, isKill, StackSlot, RC);
Evan Cheng2af4a6c2007-12-05 03:14:33 +00001033 MachineInstr *StoreMI = next(MII);
1034 DOUT << "Store:\t" << StoreMI;
1035 VRM.virtFolded(VirtReg, StoreMI, VirtRegMap::isMod);
Evan Cheng91e32d02007-11-28 01:28:46 +00001036 }
Evan Chenga8420f02007-12-03 21:31:55 +00001037 NextMII = next(MII);
Evan Chengcecc8222007-11-17 00:40:40 +00001038 }
1039
1040 /// ReusedOperands - Keep track of operand reuse in case we need to undo
1041 /// reuse.
Dan Gohman1e57df32008-02-10 18:45:23 +00001042 ReuseInfo ReusedOperands(MI, TRI);
Evan Cheng64e5b322008-02-22 19:22:06 +00001043 SmallVector<unsigned, 4> VirtUseOps;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001044 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
1045 MachineOperand &MO = MI.getOperand(i);
1046 if (!MO.isRegister() || MO.getReg() == 0)
1047 continue; // Ignore non-register operands.
1048
Evan Cheng687d1082007-10-12 08:50:34 +00001049 unsigned VirtReg = MO.getReg();
Dan Gohman1e57df32008-02-10 18:45:23 +00001050 if (TargetRegisterInfo::isPhysicalRegister(VirtReg)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001051 // Ignore physregs for spilling, but remember that it is used by this
1052 // function.
Chris Lattner1b989192007-12-31 04:13:23 +00001053 RegInfo->setPhysRegUsed(VirtReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001054 continue;
1055 }
Evan Cheng64e5b322008-02-22 19:22:06 +00001056
1057 // We want to process implicit virtual register uses first.
1058 if (MO.isImplicit())
1059 VirtUseOps.insert(VirtUseOps.begin(), i);
1060 else
1061 VirtUseOps.push_back(i);
1062 }
1063
1064 // Process all of the spilled uses and all non spilled reg references.
1065 for (unsigned j = 0, e = VirtUseOps.size(); j != e; ++j) {
1066 unsigned i = VirtUseOps[j];
1067 MachineOperand &MO = MI.getOperand(i);
1068 unsigned VirtReg = MO.getReg();
Dan Gohman1e57df32008-02-10 18:45:23 +00001069 assert(TargetRegisterInfo::isVirtualRegister(VirtReg) &&
Evan Cheng64e5b322008-02-22 19:22:06 +00001070 "Not a virtual register?");
Evan Cheng1083a2f2007-12-03 09:58:48 +00001071
Evan Cheng4d0fbf32007-11-14 07:59:08 +00001072 unsigned SubIdx = MO.getSubReg();
Evan Cheng1204d172007-08-13 23:45:17 +00001073 if (VRM.isAssignedReg(VirtReg)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001074 // This virtual register was assigned a physreg!
1075 unsigned Phys = VRM.getPhys(VirtReg);
Chris Lattner1b989192007-12-31 04:13:23 +00001076 RegInfo->setPhysRegUsed(Phys);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001077 if (MO.isDef())
1078 ReusedOperands.markClobbered(Phys);
Dan Gohman1e57df32008-02-10 18:45:23 +00001079 unsigned RReg = SubIdx ? TRI->getSubReg(Phys, SubIdx) : Phys;
Evan Cheng687d1082007-10-12 08:50:34 +00001080 MI.getOperand(i).setReg(RReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001081 continue;
1082 }
1083
1084 // This virtual register is now known to be a spilled value.
1085 if (!MO.isUse())
1086 continue; // Handle defs in the loop below (handle use&def here though)
1087
Evan Cheng1204d172007-08-13 23:45:17 +00001088 bool DoReMat = VRM.isReMaterialized(VirtReg);
1089 int SSorRMId = DoReMat
1090 ? VRM.getReMatId(VirtReg) : VRM.getStackSlot(VirtReg);
Evan Cheng67cf11c2007-08-14 05:42:54 +00001091 int ReuseSlot = SSorRMId;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001092
1093 // Check to see if this stack slot is available.
Evan Cheng67cf11c2007-08-14 05:42:54 +00001094 unsigned PhysReg = Spills.getSpillSlotOrReMatPhysReg(SSorRMId);
Evan Cheng687d1082007-10-12 08:50:34 +00001095
1096 // If this is a sub-register use, make sure the reuse register is in the
1097 // right register class. For example, for x86 not all of the 32-bit
1098 // registers have accessible sub-registers.
1099 // Similarly so for EXTRACT_SUBREG. Consider this:
1100 // EDI = op
1101 // MOV32_mr fi#1, EDI
1102 // ...
1103 // = EXTRACT_SUBREG fi#1
1104 // fi#1 is available in EDI, but it cannot be reused because it's not in
1105 // the right register file.
1106 if (PhysReg &&
Evan Cheng4d0fbf32007-11-14 07:59:08 +00001107 (SubIdx || MI.getOpcode() == TargetInstrInfo::EXTRACT_SUBREG)) {
Chris Lattner1b989192007-12-31 04:13:23 +00001108 const TargetRegisterClass* RC = RegInfo->getRegClass(VirtReg);
Evan Cheng687d1082007-10-12 08:50:34 +00001109 if (!RC->contains(PhysReg))
1110 PhysReg = 0;
1111 }
1112
Evan Cheng67cf11c2007-08-14 05:42:54 +00001113 if (PhysReg) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001114 // This spilled operand might be part of a two-address operand. If this
1115 // is the case, then changing it will necessarily require changing the
1116 // def part of the instruction as well. However, in some cases, we
1117 // aren't allowed to modify the reused register. If none of these cases
1118 // apply, reuse it.
1119 bool CanReuse = true;
Chris Lattner5b930372008-01-07 07:27:27 +00001120 int ti = TID.getOperandConstraint(i, TOI::TIED_TO);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001121 if (ti != -1 &&
Dan Gohman38a9a9f2007-09-14 20:33:02 +00001122 MI.getOperand(ti).isRegister() &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001123 MI.getOperand(ti).getReg() == VirtReg) {
1124 // Okay, we have a two address operand. We can reuse this physreg as
1125 // long as we are allowed to clobber the value and there isn't an
1126 // earlier def that has already clobbered the physreg.
Evan Cheng67cf11c2007-08-14 05:42:54 +00001127 CanReuse = Spills.canClobberPhysReg(ReuseSlot) &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001128 !ReusedOperands.isClobbered(PhysReg);
1129 }
1130
1131 if (CanReuse) {
1132 // If this stack slot value is already available, reuse it!
Evan Cheng67cf11c2007-08-14 05:42:54 +00001133 if (ReuseSlot > VirtRegMap::MAX_STACK_SLOT)
1134 DOUT << "Reusing RM#" << ReuseSlot-VirtRegMap::MAX_STACK_SLOT-1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001135 else
Evan Cheng67cf11c2007-08-14 05:42:54 +00001136 DOUT << "Reusing SS#" << ReuseSlot;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001137 DOUT << " from physreg "
Dan Gohman1e57df32008-02-10 18:45:23 +00001138 << TRI->getName(PhysReg) << " for vreg"
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001139 << VirtReg <<" instead of reloading into physreg "
Dan Gohman1e57df32008-02-10 18:45:23 +00001140 << TRI->getName(VRM.getPhys(VirtReg)) << "\n";
1141 unsigned RReg = SubIdx ? TRI->getSubReg(PhysReg, SubIdx) : PhysReg;
Evan Cheng687d1082007-10-12 08:50:34 +00001142 MI.getOperand(i).setReg(RReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001143
1144 // The only technical detail we have is that we don't know that
1145 // PhysReg won't be clobbered by a reloaded stack slot that occurs
1146 // later in the instruction. In particular, consider 'op V1, V2'.
1147 // If V1 is available in physreg R0, we would choose to reuse it
1148 // here, instead of reloading it into the register the allocator
1149 // indicated (say R1). However, V2 might have to be reloaded
1150 // later, and it might indicate that it needs to live in R0. When
1151 // this occurs, we need to have information available that
1152 // indicates it is safe to use R1 for the reload instead of R0.
1153 //
1154 // To further complicate matters, we might conflict with an alias,
1155 // or R0 and R1 might not be compatible with each other. In this
1156 // case, we actually insert a reload for V1 in R1, ensuring that
1157 // we can get at R0 or its alias.
Evan Cheng67cf11c2007-08-14 05:42:54 +00001158 ReusedOperands.addReuse(i, ReuseSlot, PhysReg,
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001159 VRM.getPhys(VirtReg), VirtReg);
1160 if (ti != -1)
1161 // Only mark it clobbered if this is a use&def operand.
1162 ReusedOperands.markClobbered(PhysReg);
1163 ++NumReused;
Evan Chengd368d822007-08-14 09:11:18 +00001164
1165 if (MI.getOperand(i).isKill() &&
1166 ReuseSlot <= VirtRegMap::MAX_STACK_SLOT) {
1167 // This was the last use and the spilled value is still available
1168 // for reuse. That means the spill was unnecessary!
1169 MachineInstr* DeadStore = MaybeDeadStores[ReuseSlot];
1170 if (DeadStore) {
1171 DOUT << "Removed dead store:\t" << *DeadStore;
1172 InvalidateKills(*DeadStore, RegKills, KillOps);
Evan Cheng91e32d02007-11-28 01:28:46 +00001173 VRM.RemoveMachineInstrFromMaps(DeadStore);
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001174 MBB.erase(DeadStore);
Evan Chengd368d822007-08-14 09:11:18 +00001175 MaybeDeadStores[ReuseSlot] = NULL;
1176 ++NumDSE;
1177 }
1178 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001179 continue;
Evan Cheng687d1082007-10-12 08:50:34 +00001180 } // CanReuse
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001181
1182 // Otherwise we have a situation where we have a two-address instruction
1183 // whose mod/ref operand needs to be reloaded. This reload is already
1184 // available in some register "PhysReg", but if we used PhysReg as the
1185 // operand to our 2-addr instruction, the instruction would modify
1186 // PhysReg. This isn't cool if something later uses PhysReg and expects
1187 // to get its initial value.
1188 //
1189 // To avoid this problem, and to avoid doing a load right after a store,
1190 // we emit a copy from PhysReg into the designated register for this
1191 // operand.
1192 unsigned DesignatedReg = VRM.getPhys(VirtReg);
1193 assert(DesignatedReg && "Must map virtreg to physreg!");
1194
1195 // Note that, if we reused a register for a previous operand, the
1196 // register we want to reload into might not actually be
1197 // available. If this occurs, use the register indicated by the
1198 // reuser.
1199 if (ReusedOperands.hasReuses())
1200 DesignatedReg = ReusedOperands.GetRegForReload(DesignatedReg, &MI,
Evan Cheng1204d172007-08-13 23:45:17 +00001201 Spills, MaybeDeadStores, RegKills, KillOps, VRM);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001202
1203 // If the mapped designated register is actually the physreg we have
1204 // incoming, we don't need to inserted a dead copy.
1205 if (DesignatedReg == PhysReg) {
1206 // If this stack slot value is already available, reuse it!
Evan Cheng67cf11c2007-08-14 05:42:54 +00001207 if (ReuseSlot > VirtRegMap::MAX_STACK_SLOT)
1208 DOUT << "Reusing RM#" << ReuseSlot-VirtRegMap::MAX_STACK_SLOT-1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001209 else
Evan Cheng67cf11c2007-08-14 05:42:54 +00001210 DOUT << "Reusing SS#" << ReuseSlot;
Dan Gohman1e57df32008-02-10 18:45:23 +00001211 DOUT << " from physreg " << TRI->getName(PhysReg) << " for vreg"
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001212 << VirtReg
1213 << " instead of reloading into same physreg.\n";
Dan Gohman1e57df32008-02-10 18:45:23 +00001214 unsigned RReg = SubIdx ? TRI->getSubReg(PhysReg, SubIdx) : PhysReg;
Evan Cheng687d1082007-10-12 08:50:34 +00001215 MI.getOperand(i).setReg(RReg);
Evan Chenga1b89c22007-11-02 17:35:08 +00001216 ReusedOperands.markClobbered(RReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001217 ++NumReused;
1218 continue;
1219 }
1220
Chris Lattner1b989192007-12-31 04:13:23 +00001221 const TargetRegisterClass* RC = RegInfo->getRegClass(VirtReg);
1222 RegInfo->setPhysRegUsed(DesignatedReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001223 ReusedOperands.markClobbered(DesignatedReg);
Owen Anderson8f2c8932007-12-31 06:32:00 +00001224 TII->copyRegToReg(MBB, &MI, DesignatedReg, PhysReg, RC, RC);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001225
1226 MachineInstr *CopyMI = prior(MII);
1227 UpdateKills(*CopyMI, RegKills, KillOps);
1228
1229 // This invalidates DesignatedReg.
1230 Spills.ClobberPhysReg(DesignatedReg);
1231
Evan Cheng67cf11c2007-08-14 05:42:54 +00001232 Spills.addAvailable(ReuseSlot, &MI, DesignatedReg);
Evan Cheng687d1082007-10-12 08:50:34 +00001233 unsigned RReg =
Dan Gohman1e57df32008-02-10 18:45:23 +00001234 SubIdx ? TRI->getSubReg(DesignatedReg, SubIdx) : DesignatedReg;
Evan Cheng687d1082007-10-12 08:50:34 +00001235 MI.getOperand(i).setReg(RReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001236 DOUT << '\t' << *prior(MII);
1237 ++NumReused;
1238 continue;
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001239 } // if (PhysReg)
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001240
1241 // Otherwise, reload it and remember that we have it.
1242 PhysReg = VRM.getPhys(VirtReg);
1243 assert(PhysReg && "Must map virtreg to physreg!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001244
1245 // Note that, if we reused a register for a previous operand, the
1246 // register we want to reload into might not actually be
1247 // available. If this occurs, use the register indicated by the
1248 // reuser.
1249 if (ReusedOperands.hasReuses())
1250 PhysReg = ReusedOperands.GetRegForReload(PhysReg, &MI,
Evan Cheng1204d172007-08-13 23:45:17 +00001251 Spills, MaybeDeadStores, RegKills, KillOps, VRM);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001252
Chris Lattner1b989192007-12-31 04:13:23 +00001253 RegInfo->setPhysRegUsed(PhysReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001254 ReusedOperands.markClobbered(PhysReg);
Evan Cheng1204d172007-08-13 23:45:17 +00001255 if (DoReMat) {
Evan Chenga37ecfe2008-02-22 09:24:50 +00001256 ReMaterialize(MBB, MII, PhysReg, VirtReg, TRI, VRM);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001257 } else {
Chris Lattner1b989192007-12-31 04:13:23 +00001258 const TargetRegisterClass* RC = RegInfo->getRegClass(VirtReg);
Owen Anderson81875432008-01-01 21:11:32 +00001259 TII->loadRegFromStackSlot(MBB, &MI, PhysReg, SSorRMId, RC);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001260 ++NumLoads;
1261 }
1262 // This invalidates PhysReg.
1263 Spills.ClobberPhysReg(PhysReg);
1264
1265 // Any stores to this stack slot are not dead anymore.
Evan Cheng1204d172007-08-13 23:45:17 +00001266 if (!DoReMat)
Evan Chengd368d822007-08-14 09:11:18 +00001267 MaybeDeadStores[SSorRMId] = NULL;
Evan Cheng1204d172007-08-13 23:45:17 +00001268 Spills.addAvailable(SSorRMId, &MI, PhysReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001269 // Assumes this is the last use. IsKill will be unset if reg is reused
1270 // unless it's a two-address operand.
Chris Lattner5b930372008-01-07 07:27:27 +00001271 if (TID.getOperandConstraint(i, TOI::TIED_TO) == -1)
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001272 MI.getOperand(i).setIsKill();
Dan Gohman1e57df32008-02-10 18:45:23 +00001273 unsigned RReg = SubIdx ? TRI->getSubReg(PhysReg, SubIdx) : PhysReg;
Evan Cheng687d1082007-10-12 08:50:34 +00001274 MI.getOperand(i).setReg(RReg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001275 UpdateKills(*prior(MII), RegKills, KillOps);
1276 DOUT << '\t' << *prior(MII);
1277 }
1278
1279 DOUT << '\t' << MI;
1280
Evan Chengcecc8222007-11-17 00:40:40 +00001281
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001282 // If we have folded references to memory operands, make sure we clear all
1283 // physical registers that may contain the value of the spilled virtual
1284 // register
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001285 SmallSet<int, 2> FoldedSS;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001286 for (tie(I, End) = VRM.getFoldedVirts(&MI); I != End; ++I) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001287 unsigned VirtReg = I->second.first;
1288 VirtRegMap::ModRef MR = I->second.second;
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001289 DOUT << "Folded vreg: " << VirtReg << " MR: " << MR;
Evan Chengcecc8222007-11-17 00:40:40 +00001290
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001291 int SS = VRM.getStackSlot(VirtReg);
Evan Chengcecc8222007-11-17 00:40:40 +00001292 if (SS == VirtRegMap::NO_STACK_SLOT)
1293 continue;
Evan Cheng7efc9422007-08-15 20:20:34 +00001294 FoldedSS.insert(SS);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001295 DOUT << " - StackSlot: " << SS << "\n";
1296
1297 // If this folded instruction is just a use, check to see if it's a
1298 // straight load from the virt reg slot.
1299 if ((MR & VirtRegMap::isRef) && !(MR & VirtRegMap::isMod)) {
1300 int FrameIdx;
Evan Cheng687d1082007-10-12 08:50:34 +00001301 unsigned DestReg = TII->isLoadFromStackSlot(&MI, FrameIdx);
1302 if (DestReg && FrameIdx == SS) {
1303 // If this spill slot is available, turn it into a copy (or nothing)
1304 // instead of leaving it as a load!
1305 if (unsigned InReg = Spills.getSpillSlotOrReMatPhysReg(SS)) {
1306 DOUT << "Promoted Load To Copy: " << MI;
1307 if (DestReg != InReg) {
Chris Lattner1b989192007-12-31 04:13:23 +00001308 const TargetRegisterClass *RC = RegInfo->getRegClass(VirtReg);
Owen Anderson8f2c8932007-12-31 06:32:00 +00001309 TII->copyRegToReg(MBB, &MI, DestReg, InReg, RC, RC);
Evan Cheng687d1082007-10-12 08:50:34 +00001310 // Revisit the copy so we make sure to notice the effects of the
1311 // operation on the destreg (either needing to RA it if it's
1312 // virtual or needing to clobber any values if it's physical).
1313 NextMII = &MI;
1314 --NextMII; // backtrack to the copy.
1315 BackTracked = true;
Evan Cheng6d74b322007-12-11 23:36:57 +00001316 } else {
Evan Cheng687d1082007-10-12 08:50:34 +00001317 DOUT << "Removing now-noop copy: " << MI;
Evan Cheng6d74b322007-12-11 23:36:57 +00001318 // Unset last kill since it's being reused.
1319 InvalidateKill(InReg, RegKills, KillOps);
1320 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001321
Evan Cheng91e32d02007-11-28 01:28:46 +00001322 VRM.RemoveMachineInstrFromMaps(&MI);
Evan Cheng687d1082007-10-12 08:50:34 +00001323 MBB.erase(&MI);
1324 Erased = true;
1325 goto ProcessNextInst;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001326 }
Evan Chengf3255842007-10-13 02:50:24 +00001327 } else {
1328 unsigned PhysReg = Spills.getSpillSlotOrReMatPhysReg(SS);
1329 SmallVector<MachineInstr*, 4> NewMIs;
1330 if (PhysReg &&
Owen Andersonbf15ae22008-01-07 01:35:56 +00001331 TII->unfoldMemoryOperand(MF, &MI, PhysReg, false, false, NewMIs)) {
Evan Chengf3255842007-10-13 02:50:24 +00001332 MBB.insert(MII, NewMIs[0]);
Evan Cheng91e32d02007-11-28 01:28:46 +00001333 VRM.RemoveMachineInstrFromMaps(&MI);
Evan Chengf3255842007-10-13 02:50:24 +00001334 MBB.erase(&MI);
1335 Erased = true;
1336 --NextMII; // backtrack to the unfolded instruction.
1337 BackTracked = true;
1338 goto ProcessNextInst;
1339 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001340 }
1341 }
1342
1343 // If this reference is not a use, any previous store is now dead.
1344 // Otherwise, the store to this stack slot is not dead anymore.
Evan Chengd368d822007-08-14 09:11:18 +00001345 MachineInstr* DeadStore = MaybeDeadStores[SS];
1346 if (DeadStore) {
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001347 bool isDead = !(MR & VirtRegMap::isRef);
Evan Chengf3255842007-10-13 02:50:24 +00001348 MachineInstr *NewStore = NULL;
Evan Cheng3b94f752007-10-22 03:01:44 +00001349 if (MR & VirtRegMap::isModRef) {
Evan Chengf3255842007-10-13 02:50:24 +00001350 unsigned PhysReg = Spills.getSpillSlotOrReMatPhysReg(SS);
1351 SmallVector<MachineInstr*, 4> NewMIs;
Evan Cheng811fadb2007-12-04 19:19:45 +00001352 // We can reuse this physreg as long as we are allowed to clobber
Chris Lattner1b989192007-12-31 04:13:23 +00001353 // the value and there isn't an earlier def that has already clobbered
1354 // the physreg.
Evan Chengf3255842007-10-13 02:50:24 +00001355 if (PhysReg &&
Evan Cheng6d74b322007-12-11 23:36:57 +00001356 !TII->isStoreToStackSlot(&MI, SS) && // Not profitable!
Evan Chengf3255842007-10-13 02:50:24 +00001357 DeadStore->findRegisterUseOperandIdx(PhysReg, true) != -1 &&
Owen Andersonbf15ae22008-01-07 01:35:56 +00001358 TII->unfoldMemoryOperand(MF, &MI, PhysReg, false, true, NewMIs)) {
Evan Chengf3255842007-10-13 02:50:24 +00001359 MBB.insert(MII, NewMIs[0]);
1360 NewStore = NewMIs[1];
1361 MBB.insert(MII, NewStore);
Evan Cheng91e32d02007-11-28 01:28:46 +00001362 VRM.RemoveMachineInstrFromMaps(&MI);
Evan Chengf3255842007-10-13 02:50:24 +00001363 MBB.erase(&MI);
1364 Erased = true;
1365 --NextMII;
1366 --NextMII; // backtrack to the unfolded instruction.
1367 BackTracked = true;
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001368 isDead = true;
1369 }
Evan Chengf3255842007-10-13 02:50:24 +00001370 }
1371
1372 if (isDead) { // Previous store is dead.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001373 // If we get here, the store is dead, nuke it now.
Evan Chengd368d822007-08-14 09:11:18 +00001374 DOUT << "Removed dead store:\t" << *DeadStore;
1375 InvalidateKills(*DeadStore, RegKills, KillOps);
Evan Cheng91e32d02007-11-28 01:28:46 +00001376 VRM.RemoveMachineInstrFromMaps(DeadStore);
Evan Chengf3255842007-10-13 02:50:24 +00001377 MBB.erase(DeadStore);
1378 if (!NewStore)
1379 ++NumDSE;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001380 }
Evan Chengf3255842007-10-13 02:50:24 +00001381
Evan Chengd368d822007-08-14 09:11:18 +00001382 MaybeDeadStores[SS] = NULL;
Evan Chengf3255842007-10-13 02:50:24 +00001383 if (NewStore) {
1384 // Treat this store as a spill merged into a copy. That makes the
1385 // stack slot value available.
1386 VRM.virtFolded(VirtReg, NewStore, VirtRegMap::isMod);
1387 goto ProcessNextInst;
1388 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001389 }
1390
1391 // If the spill slot value is available, and this is a new definition of
1392 // the value, the value is not available anymore.
1393 if (MR & VirtRegMap::isMod) {
1394 // Notice that the value in this stack slot has been modified.
Evan Cheng1204d172007-08-13 23:45:17 +00001395 Spills.ModifyStackSlotOrReMat(SS);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001396
1397 // If this is *just* a mod of the value, check to see if this is just a
1398 // store to the spill slot (i.e. the spill got merged into the copy). If
1399 // so, realize that the vreg is available now, and add the store to the
1400 // MaybeDeadStore info.
1401 int StackSlot;
1402 if (!(MR & VirtRegMap::isRef)) {
1403 if (unsigned SrcReg = TII->isStoreToStackSlot(&MI, StackSlot)) {
Dan Gohman1e57df32008-02-10 18:45:23 +00001404 assert(TargetRegisterInfo::isPhysicalRegister(SrcReg) &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001405 "Src hasn't been allocated yet?");
1406 // Okay, this is certainly a store of SrcReg to [StackSlot]. Mark
1407 // this as a potentially dead store in case there is a subsequent
1408 // store into the stack slot without a read from it.
1409 MaybeDeadStores[StackSlot] = &MI;
1410
1411 // If the stack slot value was previously available in some other
1412 // register, change it now. Otherwise, make the register available,
1413 // in PhysReg.
1414 Spills.addAvailable(StackSlot, &MI, SrcReg, false/*don't clobber*/);
1415 }
1416 }
1417 }
1418 }
1419
1420 // Process all of the spilled defs.
1421 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
1422 MachineOperand &MO = MI.getOperand(i);
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001423 if (!(MO.isRegister() && MO.getReg() && MO.isDef()))
1424 continue;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001425
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001426 unsigned VirtReg = MO.getReg();
Dan Gohman1e57df32008-02-10 18:45:23 +00001427 if (!TargetRegisterInfo::isVirtualRegister(VirtReg)) {
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001428 // Check to see if this is a noop copy. If so, eliminate the
1429 // instruction before considering the dest reg to be changed.
1430 unsigned Src, Dst;
1431 if (TII->isMoveInstr(MI, Src, Dst) && Src == Dst) {
1432 ++NumDCE;
1433 DOUT << "Removing now-noop copy: " << MI;
1434 MBB.erase(&MI);
1435 Erased = true;
Evan Cheng91e32d02007-11-28 01:28:46 +00001436 VRM.RemoveMachineInstrFromMaps(&MI);
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001437 Spills.disallowClobberPhysReg(VirtReg);
1438 goto ProcessNextInst;
1439 }
1440
1441 // If it's not a no-op copy, it clobbers the value in the destreg.
1442 Spills.ClobberPhysReg(VirtReg);
1443 ReusedOperands.markClobbered(VirtReg);
1444
1445 // Check to see if this instruction is a load from a stack slot into
1446 // a register. If so, this provides the stack slot value in the reg.
1447 int FrameIdx;
1448 if (unsigned DestReg = TII->isLoadFromStackSlot(&MI, FrameIdx)) {
1449 assert(DestReg == VirtReg && "Unknown load situation!");
1450
1451 // If it is a folded reference, then it's not safe to clobber.
1452 bool Folded = FoldedSS.count(FrameIdx);
1453 // Otherwise, if it wasn't available, remember that it is now!
1454 Spills.addAvailable(FrameIdx, &MI, DestReg, !Folded);
1455 goto ProcessNextInst;
1456 }
1457
1458 continue;
1459 }
1460
Evan Cheng4d0fbf32007-11-14 07:59:08 +00001461 unsigned SubIdx = MO.getSubReg();
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001462 bool DoReMat = VRM.isReMaterialized(VirtReg);
1463 if (DoReMat)
1464 ReMatDefs.insert(&MI);
1465
1466 // The only vregs left are stack slot definitions.
1467 int StackSlot = VRM.getStackSlot(VirtReg);
Chris Lattner1b989192007-12-31 04:13:23 +00001468 const TargetRegisterClass *RC = RegInfo->getRegClass(VirtReg);
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001469
1470 // If this def is part of a two-address operand, make sure to execute
1471 // the store from the correct physical register.
1472 unsigned PhysReg;
Chris Lattner5b930372008-01-07 07:27:27 +00001473 int TiedOp = MI.getDesc().findTiedToSrcOperand(i);
Evan Chenga1b89c22007-11-02 17:35:08 +00001474 if (TiedOp != -1) {
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001475 PhysReg = MI.getOperand(TiedOp).getReg();
Evan Cheng4d0fbf32007-11-14 07:59:08 +00001476 if (SubIdx) {
Dan Gohman1e57df32008-02-10 18:45:23 +00001477 unsigned SuperReg = findSuperReg(RC, PhysReg, SubIdx, TRI);
1478 assert(SuperReg && TRI->getSubReg(SuperReg, SubIdx) == PhysReg &&
Evan Chenga1b89c22007-11-02 17:35:08 +00001479 "Can't find corresponding super-register!");
1480 PhysReg = SuperReg;
1481 }
1482 } else {
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001483 PhysReg = VRM.getPhys(VirtReg);
1484 if (ReusedOperands.isClobbered(PhysReg)) {
1485 // Another def has taken the assigned physreg. It must have been a
1486 // use&def which got it due to reuse. Undo the reuse!
1487 PhysReg = ReusedOperands.GetRegForReload(PhysReg, &MI,
1488 Spills, MaybeDeadStores, RegKills, KillOps, VRM);
1489 }
1490 }
1491
Chris Lattner1b989192007-12-31 04:13:23 +00001492 RegInfo->setPhysRegUsed(PhysReg);
Dan Gohman1e57df32008-02-10 18:45:23 +00001493 unsigned RReg = SubIdx ? TRI->getSubReg(PhysReg, SubIdx) : PhysReg;
Evan Chenga1b89c22007-11-02 17:35:08 +00001494 ReusedOperands.markClobbered(RReg);
1495 MI.getOperand(i).setReg(RReg);
1496
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001497 if (!MO.isDead()) {
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001498 MachineInstr *&LastStore = MaybeDeadStores[StackSlot];
Evan Cheng811fadb2007-12-04 19:19:45 +00001499 SpillRegToStackSlot(MBB, MII, -1, PhysReg, StackSlot, RC, true,
1500 LastStore, Spills, ReMatDefs, RegKills, KillOps, VRM);
Evan Chenga8420f02007-12-03 21:31:55 +00001501 NextMII = next(MII);
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001502
1503 // Check to see if this is a noop copy. If so, eliminate the
1504 // instruction before considering the dest reg to be changed.
1505 {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001506 unsigned Src, Dst;
1507 if (TII->isMoveInstr(MI, Src, Dst) && Src == Dst) {
1508 ++NumDCE;
1509 DOUT << "Removing now-noop copy: " << MI;
1510 MBB.erase(&MI);
1511 Erased = true;
Evan Cheng91e32d02007-11-28 01:28:46 +00001512 VRM.RemoveMachineInstrFromMaps(&MI);
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001513 UpdateKills(*LastStore, RegKills, KillOps);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001514 goto ProcessNextInst;
1515 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001516 }
Evan Cheng4a7e72f2007-10-19 21:23:22 +00001517 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001518 }
1519 ProcessNextInst:
Evan Cheng811fadb2007-12-04 19:19:45 +00001520 if (!Erased && !BackTracked) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001521 for (MachineBasicBlock::iterator II = MI; II != NextMII; ++II)
1522 UpdateKills(*II, RegKills, KillOps);
Evan Cheng811fadb2007-12-04 19:19:45 +00001523 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001524 MII = NextMII;
1525 }
1526}
1527
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001528llvm::Spiller* llvm::createSpiller() {
1529 switch (SpillerOpt) {
1530 default: assert(0 && "Unreachable!");
1531 case local:
1532 return new LocalSpiller();
1533 case simple:
1534 return new SimpleSpiller();
1535 }
1536}