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Ruchira Sasanka808568e2001-09-14 21:18:34 +00001#include "llvm/CodeGen/LiveRangeInfo.h"
Chris Lattner49562d82002-02-04 05:56:09 +00002#include "llvm/CodeGen/RegClass.h"
3#include "llvm/CodeGen/MachineInstr.h"
4#include "llvm/Target/TargetMachine.h"
5#include "llvm/Method.h"
Chris Lattner101a5d92002-02-05 03:35:53 +00006#include "Support/SetOperations.h"
Chris Lattner7f74a562002-01-20 22:54:45 +00007#include <iostream>
8using std::cerr;
Ruchira Sasanka808568e2001-09-14 21:18:34 +00009
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000010//---------------------------------------------------------------------------
11// Constructor
12//---------------------------------------------------------------------------
Ruchira Sasanka808568e2001-09-14 21:18:34 +000013LiveRangeInfo::LiveRangeInfo(const Method *const M,
14 const TargetMachine& tm,
Chris Lattner7f74a562002-01-20 22:54:45 +000015 std::vector<RegClass *> &RCL)
Chris Lattnerb0af9cd2002-02-05 02:52:05 +000016 : Meth(M), TM(tm),
Chris Lattner7f74a562002-01-20 22:54:45 +000017 RegClassList(RCL), MRI(tm.getRegInfo())
Ruchira Sasanka808568e2001-09-14 21:18:34 +000018{ }
19
20
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000021//---------------------------------------------------------------------------
22// Destructor: Deletes all LiveRanges in the LiveRangeMap
23//---------------------------------------------------------------------------
24LiveRangeInfo::~LiveRangeInfo() {
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000025 LiveRangeMapType::iterator MI = LiveRangeMap.begin();
26
27 for( ; MI != LiveRangeMap.end() ; ++MI) {
Chris Lattner7f74a562002-01-20 22:54:45 +000028 if (MI->first && MI->second) {
29 LiveRange *LR = MI->second;
30
31 // we need to be careful in deleting LiveRanges in LiveRangeMap
32 // since two/more Values in the live range map can point to the same
33 // live range. We have to make the other entries NULL when we delete
34 // a live range.
35
36 LiveRange::iterator LI = LR->begin();
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000037
Chris Lattner7f74a562002-01-20 22:54:45 +000038 for( ; LI != LR->end() ; ++LI)
39 LiveRangeMap[*LI] = 0;
40
41 delete LR;
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000042 }
43 }
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000044}
45
46
47//---------------------------------------------------------------------------
Ruchira Sasanka808568e2001-09-14 21:18:34 +000048// union two live ranges into one. The 2nd LR is deleted. Used for coalescing.
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +000049// Note: the caller must make sure that L1 and L2 are distinct and both
50// LRs don't have suggested colors
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000051//---------------------------------------------------------------------------
Ruchira Sasanka808568e2001-09-14 21:18:34 +000052
Chris Lattnerb0af9cd2002-02-05 02:52:05 +000053void LiveRangeInfo::unionAndUpdateLRs(LiveRange *L1, LiveRange *L2) {
54 assert(L1 != L2 && (!L1->hasSuggestedColor() || !L2->hasSuggestedColor()));
55 set_union(*L1, *L2); // add elements of L2 to L1
Ruchira Sasanka808568e2001-09-14 21:18:34 +000056
Chris Lattnerb0af9cd2002-02-05 02:52:05 +000057 for(ValueSet::iterator L2It = L2->begin(); L2It != L2->end(); ++L2It) {
Ruchira Sasanka808568e2001-09-14 21:18:34 +000058 //assert(( L1->getTypeID() == L2->getTypeID()) && "Merge:Different types");
59
Chris Lattner83a84342002-02-04 16:36:59 +000060 L1->insert(*L2It); // add the var in L2 to L1
Chris Lattnerb0af9cd2002-02-05 02:52:05 +000061 LiveRangeMap[*L2It] = L1; // now the elements in L2 should map
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000062 //to L1
Ruchira Sasanka808568e2001-09-14 21:18:34 +000063 }
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +000064
65
66 // Now if LROfDef(L1) has a suggested color, it will remain.
67 // But, if LROfUse(L2) has a suggested color, the new range
68 // must have the same color.
69
70 if(L2->hasSuggestedColor())
Chris Lattnerb0af9cd2002-02-05 02:52:05 +000071 L1->setSuggestedColor(L2->getSuggestedColor());
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +000072
Ruchira Sasanka09d7a2a2001-10-19 17:21:03 +000073
Chris Lattnerb0af9cd2002-02-05 02:52:05 +000074 if (L2->isCallInterference())
Ruchira Sasanka09d7a2a2001-10-19 17:21:03 +000075 L1->setCallInterference();
76
Chris Lattnerb0af9cd2002-02-05 02:52:05 +000077 // add the spill costs
78 L1->addSpillCost(L2->getSpillCost());
79
Chris Lattner7f74a562002-01-20 22:54:45 +000080 delete L2; // delete L2 as it is no longer needed
Ruchira Sasanka808568e2001-09-14 21:18:34 +000081}
82
83
84
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +000085//---------------------------------------------------------------------------
86// Method for constructing all live ranges in a method. It creates live
87// ranges for all values defined in the instruction stream. Also, it
88// creates live ranges for all incoming arguments of the method.
89//---------------------------------------------------------------------------
Ruchira Sasanka808568e2001-09-14 21:18:34 +000090void LiveRangeInfo::constructLiveRanges()
91{
92
93 if( DEBUG_RA)
Chris Lattner7f74a562002-01-20 22:54:45 +000094 cerr << "Consturcting Live Ranges ...\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +000095
96 // first find the live ranges for all incoming args of the method since
97 // those LRs start from the start of the method
98
99 // get the argument list
100 const Method::ArgumentListType& ArgList = Meth->getArgumentList();
101 // get an iterator to arg list
102 Method::ArgumentListType::const_iterator ArgIt = ArgList.begin();
103
104
105 for( ; ArgIt != ArgList.end() ; ++ArgIt) { // for each argument
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000106 LiveRange * ArgRange = new LiveRange(); // creates a new LR and
Chris Lattner83a84342002-02-04 16:36:59 +0000107 const Value *Val = (const Value *) *ArgIt;
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000108
Chris Lattner83a84342002-02-04 16:36:59 +0000109 ArgRange->insert(Val); // add the arg (def) to it
Chris Lattner7f74a562002-01-20 22:54:45 +0000110 LiveRangeMap[Val] = ArgRange;
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000111
112 // create a temp machine op to find the register class of value
113 //const MachineOperand Op(MachineOperand::MO_VirtualRegister);
114
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000115 unsigned rcid = MRI.getRegClassIDOfValue( Val );
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000116 ArgRange->setRegClass(RegClassList[ rcid ] );
117
118
119 if( DEBUG_RA > 1) {
Chris Lattner30e8fb62002-02-05 01:43:49 +0000120 cerr << " adding LiveRange for argument "
121 << RAV((const Value *)*ArgIt) << "\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000122 }
123 }
124
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000125 // Now suggest hardware registers for these method args
126 MRI.suggestRegs4MethodArgs(Meth, *this);
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000127
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000128
129
130 // Now find speical LLVM instructions (CALL, RET) and LRs in machine
131 // instructions.
132
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000133
134 Method::const_iterator BBI = Meth->begin(); // random iterator for BBs
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000135 for( ; BBI != Meth->end(); ++BBI) { // go thru BBs in random order
136
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000137 // Now find all LRs for machine the instructions. A new LR will be created
138 // only for defs in the machine instr since, we assume that all Values are
139 // defined before they are used. However, there can be multiple defs for
140 // the same Value in machine instructions.
141
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000142 // get the iterator for machine instructions
143 const MachineCodeForBasicBlock& MIVec = (*BBI)->getMachineInstrVec();
Chris Lattner7f74a562002-01-20 22:54:45 +0000144 MachineCodeForBasicBlock::const_iterator MInstIterator = MIVec.begin();
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000145
146 // iterate over all the machine instructions in BB
147 for( ; MInstIterator != MIVec.end(); MInstIterator++) {
148
149 const MachineInstr * MInst = *MInstIterator;
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000150
Ruchira Sasanka2a6cc832001-10-15 16:26:38 +0000151 // Now if the machine instruction is a call/return instruction,
152 // add it to CallRetInstrList for processing its implicit operands
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000153
Chris Lattner7f74a562002-01-20 22:54:45 +0000154 if(TM.getInstrInfo().isReturn(MInst->getOpCode()) ||
155 TM.getInstrInfo().isCall(MInst->getOpCode()))
Ruchira Sasanka2a6cc832001-10-15 16:26:38 +0000156 CallRetInstrList.push_back( MInst );
157
158
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000159 // iterate over MI operands to find defs
Chris Lattner7f74a562002-01-20 22:54:45 +0000160 for (MachineInstr::val_const_op_iterator OpI(MInst); !OpI.done(); ++OpI) {
161 if(DEBUG_RA) {
Ruchira Sasanka2a6cc832001-10-15 16:26:38 +0000162 MachineOperand::MachineOperandType OpTyp =
163 OpI.getMachineOperand().getOperandType();
Ruchira Sasanka1f331f22001-09-18 22:43:57 +0000164
Chris Lattner30e8fb62002-02-05 01:43:49 +0000165 if (OpTyp == MachineOperand::MO_CCRegister)
166 cerr << "\n**CC reg found. Is Def=" << OpI.isDef() << " Val:"
167 << RAV(OpI.getMachineOperand().getVRegValue()) << "\n";
Ruchira Sasanka1f331f22001-09-18 22:43:57 +0000168 }
Ruchira Sasanka1f331f22001-09-18 22:43:57 +0000169
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000170 // create a new LR iff this operand is a def
Chris Lattner83a84342002-02-04 16:36:59 +0000171 if (OpI.isDef()) {
172 const Value *Def = *OpI;
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000173
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000174 // Only instruction values are accepted for live ranges here
Chris Lattner30e8fb62002-02-05 01:43:49 +0000175 if (Def->getValueType() != Value::InstructionVal ) {
176 cerr << "\n**%%Error: Def is not an instruction val. Def="
177 << RAV(Def) << "\n";
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000178 continue;
179 }
180
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000181 LiveRange *DefRange = LiveRangeMap[Def];
182
183 // see LR already there (because of multiple defs)
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000184 if( !DefRange) { // if it is not in LiveRangeMap
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000185 DefRange = new LiveRange(); // creates a new live range and
Chris Lattner83a84342002-02-04 16:36:59 +0000186 DefRange->insert(Def); // add the instruction (def) to it
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000187 LiveRangeMap[ Def ] = DefRange; // update the map
188
Chris Lattner30e8fb62002-02-05 01:43:49 +0000189 if (DEBUG_RA > 1)
190 cerr << " creating a LR for def: " << RAV(Def) << "\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000191
192 // set the register class of the new live range
193 //assert( RegClassList.size() );
194 MachineOperand::MachineOperandType OpTy =
195 OpI.getMachineOperand().getOperandType();
196
197 bool isCC = ( OpTy == MachineOperand::MO_CCRegister);
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000198 unsigned rcid = MRI.getRegClassIDOfValue(
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000199 OpI.getMachineOperand().getVRegValue(), isCC );
200
201
Chris Lattner30e8fb62002-02-05 01:43:49 +0000202 if (isCC && DEBUG_RA)
203 cerr << "\a**created a LR for a CC reg:"
204 << RAV(OpI.getMachineOperand().getVRegValue());
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000205
Chris Lattner30e8fb62002-02-05 01:43:49 +0000206 DefRange->setRegClass(RegClassList[rcid]);
207 } else {
Chris Lattner83a84342002-02-04 16:36:59 +0000208 DefRange->insert(Def); // add the opearand to def range
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000209 // update the map - Operand points
210 // to the merged set
Chris Lattner30e8fb62002-02-05 01:43:49 +0000211 LiveRangeMap[Def] = DefRange;
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000212
Chris Lattner30e8fb62002-02-05 01:43:49 +0000213 if (DEBUG_RA > 1)
214 cerr << " added to an existing LR for def: "
215 << RAV(Def) << "\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000216 }
217
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000218 } // if isDef()
219
220 } // for all opereands in machine instructions
221
222 } // for all machine instructions in the BB
223
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000224 } // for all BBs in method
225
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000226
Ruchira Sasanka2a6cc832001-10-15 16:26:38 +0000227 // Now we have to suggest clors for call and return arg live ranges.
228 // Also, if there are implicit defs (e.g., retun value of a call inst)
229 // they must be added to the live range list
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000230
Ruchira Sasanka2a6cc832001-10-15 16:26:38 +0000231 suggestRegs4CallRets();
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000232
233 if( DEBUG_RA)
Chris Lattner7f74a562002-01-20 22:54:45 +0000234 cerr << "Initial Live Ranges constructed!\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000235
236}
237
238
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +0000239//---------------------------------------------------------------------------
240// If some live ranges must be colored with specific hardware registers
241// (e.g., for outgoing call args), suggesting of colors for such live
242// ranges is done using target specific method. Those methods are called
243// from this function. The target specific methods must:
244// 1) suggest colors for call and return args.
245// 2) create new LRs for implicit defs in machine instructions
246//---------------------------------------------------------------------------
Ruchira Sasanka2a6cc832001-10-15 16:26:38 +0000247void LiveRangeInfo::suggestRegs4CallRets()
248{
249
250 CallRetInstrListType::const_iterator It = CallRetInstrList.begin();
251
252 for( ; It != CallRetInstrList.end(); ++It ) {
253
254 const MachineInstr *MInst = *It;
255 MachineOpCode OpCode = MInst->getOpCode();
256
257 if( (TM.getInstrInfo()).isReturn(OpCode) )
258 MRI.suggestReg4RetValue( MInst, *this);
259
260 else if( (TM.getInstrInfo()).isCall( OpCode ) )
261 MRI.suggestRegs4CallArgs( MInst, *this, RegClassList );
262
263 else
264 assert( 0 && "Non call/ret instr in CallRetInstrList" );
265 }
266
267}
268
269
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +0000270//--------------------------------------------------------------------------
271// The following method coalesces live ranges when possible. This method
272// must be called after the interference graph has been constructed.
Ruchira Sasanka2a6cc832001-10-15 16:26:38 +0000273
274
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000275/* Algorithm:
276 for each BB in method
277 for each machine instruction (inst)
278 for each definition (def) in inst
279 for each operand (op) of inst that is a use
Ruchira Sasanka31305c02001-11-10 00:20:24 +0000280 if the def and op are of the same register type
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000281 if the def and op do not interfere //i.e., not simultaneously live
282 if (degree(LR of def) + degree(LR of op)) <= # avail regs
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000283 if both LRs do not have suggested colors
284 merge2IGNodes(def, op) // i.e., merge 2 LRs
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000285
286*/
Ruchira Sasanka8c2d8252002-01-07 19:19:18 +0000287//---------------------------------------------------------------------------
288void LiveRangeInfo::coalesceLRs()
289{
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000290 if( DEBUG_RA)
Chris Lattner7f74a562002-01-20 22:54:45 +0000291 cerr << "\nCoalscing LRs ...\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000292
293 Method::const_iterator BBI = Meth->begin(); // random iterator for BBs
294
295 for( ; BBI != Meth->end(); ++BBI) { // traverse BBs in random order
296
297 // get the iterator for machine instructions
298 const MachineCodeForBasicBlock& MIVec = (*BBI)->getMachineInstrVec();
Chris Lattner7f74a562002-01-20 22:54:45 +0000299 MachineCodeForBasicBlock::const_iterator MInstIterator = MIVec.begin();
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000300
301 // iterate over all the machine instructions in BB
302 for( ; MInstIterator != MIVec.end(); ++MInstIterator) {
303
304 const MachineInstr * MInst = *MInstIterator;
305
306 if( DEBUG_RA > 1) {
Chris Lattner7f74a562002-01-20 22:54:45 +0000307 cerr << " *Iterating over machine instr ";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000308 MInst->dump();
Chris Lattner7f74a562002-01-20 22:54:45 +0000309 cerr << "\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000310 }
311
312
313 // iterate over MI operands to find defs
Chris Lattner2413b162001-12-04 00:03:30 +0000314 for(MachineInstr::val_const_op_iterator DefI(MInst);!DefI.done();++DefI){
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000315
316 if( DefI.isDef() ) { // iff this operand is a def
317
318 LiveRange *const LROfDef = getLiveRangeForValue( *DefI );
319 assert( LROfDef );
320 RegClass *const RCOfDef = LROfDef->getRegClass();
321
Chris Lattner2413b162001-12-04 00:03:30 +0000322 MachineInstr::val_const_op_iterator UseI(MInst);
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000323 for( ; !UseI.done(); ++UseI){ // for all uses
324
325 LiveRange *const LROfUse = getLiveRangeForValue( *UseI );
326
327 if( ! LROfUse ) { // if LR of use is not found
328
329 //don't warn about labels
Chris Lattner30e8fb62002-02-05 01:43:49 +0000330 if (!((*UseI)->getType())->isLabelType() && DEBUG_RA)
331 cerr << " !! Warning: No LR for use " << RAV(*UseI) << "\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000332 continue; // ignore and continue
333 }
334
335 if( LROfUse == LROfDef) // nothing to merge if they are same
336 continue;
337
Ruchira Sasanka31305c02001-11-10 00:20:24 +0000338 //RegClass *const RCOfUse = LROfUse->getRegClass();
339 //if( RCOfDef == RCOfUse ) { // if the reg classes are the same
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000340
Ruchira Sasanka31305c02001-11-10 00:20:24 +0000341 if( MRI.getRegType(LROfDef) == MRI.getRegType(LROfUse) ) {
342
343 // If the two RegTypes are the same
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000344
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000345 if( ! RCOfDef->getInterference(LROfDef, LROfUse) ) {
346
347 unsigned CombinedDegree =
348 LROfDef->getUserIGNode()->getNumOfNeighbors() +
349 LROfUse->getUserIGNode()->getNumOfNeighbors();
350
351 if( CombinedDegree <= RCOfDef->getNumOfAvailRegs() ) {
352
Ruchira Sasankae3b9fad2001-09-30 23:11:59 +0000353 // if both LRs do not have suggested colors
354 if( ! (LROfDef->hasSuggestedColor() &&
355 LROfUse->hasSuggestedColor() ) ) {
356
357 RCOfDef->mergeIGNodesOfLRs(LROfDef, LROfUse);
358 unionAndUpdateLRs(LROfDef, LROfUse);
359 }
360
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000361
362 } // if combined degree is less than # of regs
363
364 } // if def and use do not interfere
365
Ruchira Sasanka7c10e082001-10-12 17:48:18 +0000366 }// if reg classes are the same
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000367
368 } // for all uses
369
370 } // if def
371
372 } // for all defs
373
374 } // for all machine instructions
375
376 } // for all BBs
377
378 if( DEBUG_RA)
Chris Lattner7f74a562002-01-20 22:54:45 +0000379 cerr << "\nCoalscing Done!\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000380
381}
382
383
384
385
386
387/*--------------------------- Debug code for printing ---------------*/
388
389
Chris Lattner30e8fb62002-02-05 01:43:49 +0000390void LiveRangeInfo::printLiveRanges() {
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000391 LiveRangeMapType::iterator HMI = LiveRangeMap.begin(); // hash map iterator
Chris Lattner7f74a562002-01-20 22:54:45 +0000392 cerr << "\nPrinting Live Ranges from Hash Map:\n";
Chris Lattner30e8fb62002-02-05 01:43:49 +0000393 for( ; HMI != LiveRangeMap.end(); ++HMI) {
394 if (HMI->first && HMI->second) {
395 cerr << " " << RAV(HMI->first) << "\t: ";
Chris Lattnerb0af9cd2002-02-05 02:52:05 +0000396 printSet(*HMI->second); cerr << "\n";
Ruchira Sasanka808568e2001-09-14 21:18:34 +0000397 }
398 }
399}
400
401