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Misha Brukman373086d2003-05-20 21:01:22 +00001//===- SCCP.cpp - Sparse Conditional Constant Propagation -----------------===//
Misha Brukmanb1c93172005-04-21 23:48:37 +00002//
John Criswell482202a2003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
Misha Brukmanb1c93172005-04-21 23:48:37 +00007//
John Criswell482202a2003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattner347389d2001-06-27 23:38:11 +00009//
Misha Brukman373086d2003-05-20 21:01:22 +000010// This file implements sparse conditional constant propagation and merging:
Chris Lattner347389d2001-06-27 23:38:11 +000011//
12// Specifically, this:
13// * Assumes values are constant unless proven otherwise
14// * Assumes BasicBlocks are dead unless proven otherwise
15// * Proves values to be constant, and replaces them with constants
Chris Lattnerdd6522e2002-08-30 23:39:00 +000016// * Proves conditional branches to be unconditional
Chris Lattner347389d2001-06-27 23:38:11 +000017//
18// Notice that:
19// * This pass has a habit of making definitions be dead. It is a good idea
20// to to run a DCE pass sometime after running this pass.
21//
22//===----------------------------------------------------------------------===//
23
Chris Lattner4f031622004-11-15 05:03:30 +000024#define DEBUG_TYPE "sccp"
Chris Lattnerb4cfa7f2002-05-07 20:03:00 +000025#include "llvm/Transforms/Scalar.h"
Chris Lattnerb4394642004-12-10 08:02:06 +000026#include "llvm/Transforms/IPO.h"
Chris Lattner0fe5b322004-01-12 17:43:40 +000027#include "llvm/Constants.h"
Chris Lattner91dbae62004-12-11 05:15:59 +000028#include "llvm/DerivedTypes.h"
Chris Lattnercccc5c72003-04-25 02:50:03 +000029#include "llvm/Instructions.h"
Chris Lattner04805fa2002-02-26 21:46:54 +000030#include "llvm/Pass.h"
Chris Lattner6e560792002-04-18 15:13:15 +000031#include "llvm/Support/InstVisitor.h"
Chris Lattnerff9362a2004-04-13 19:43:54 +000032#include "llvm/Transforms/Utils/Local.h"
Chris Lattnerb4394642004-12-10 08:02:06 +000033#include "llvm/Support/CallSite.h"
Reid Spencer7c16caa2004-09-01 22:55:40 +000034#include "llvm/Support/Debug.h"
35#include "llvm/ADT/hash_map"
36#include "llvm/ADT/Statistic.h"
37#include "llvm/ADT/STLExtras.h"
Chris Lattner347389d2001-06-27 23:38:11 +000038#include <algorithm>
Chris Lattner347389d2001-06-27 23:38:11 +000039#include <set>
Chris Lattner49525f82004-01-09 06:02:20 +000040using namespace llvm;
Brian Gaeke960707c2003-11-11 22:41:34 +000041
Chris Lattner4f031622004-11-15 05:03:30 +000042// LatticeVal class - This class represents the different lattice values that an
Chris Lattnerc8e66542002-04-27 06:56:12 +000043// instruction may occupy. It is a simple class with value semantics.
Chris Lattner347389d2001-06-27 23:38:11 +000044//
Chris Lattner7d325382002-04-29 21:26:08 +000045namespace {
Chris Lattnerbf3a0992002-10-01 22:38:41 +000046
Chris Lattner4f031622004-11-15 05:03:30 +000047class LatticeVal {
Misha Brukmanb1c93172005-04-21 23:48:37 +000048 enum {
Chris Lattner3462ae32001-12-03 22:26:30 +000049 undefined, // This instruction has no known value
50 constant, // This instruction has a constant value
Chris Lattner3462ae32001-12-03 22:26:30 +000051 overdefined // This instruction has an unknown value
52 } LatticeValue; // The current lattice position
53 Constant *ConstantVal; // If Constant value, the current value
Chris Lattner347389d2001-06-27 23:38:11 +000054public:
Chris Lattner4f031622004-11-15 05:03:30 +000055 inline LatticeVal() : LatticeValue(undefined), ConstantVal(0) {}
Chris Lattner347389d2001-06-27 23:38:11 +000056
57 // markOverdefined - Return true if this is a new status to be in...
58 inline bool markOverdefined() {
Chris Lattner3462ae32001-12-03 22:26:30 +000059 if (LatticeValue != overdefined) {
60 LatticeValue = overdefined;
Chris Lattner347389d2001-06-27 23:38:11 +000061 return true;
62 }
63 return false;
64 }
65
66 // markConstant - Return true if this is a new status for us...
Chris Lattner3462ae32001-12-03 22:26:30 +000067 inline bool markConstant(Constant *V) {
68 if (LatticeValue != constant) {
69 LatticeValue = constant;
Chris Lattner347389d2001-06-27 23:38:11 +000070 ConstantVal = V;
71 return true;
72 } else {
Chris Lattnerdae05dc2001-09-07 16:43:22 +000073 assert(ConstantVal == V && "Marking constant with different value");
Chris Lattner347389d2001-06-27 23:38:11 +000074 }
75 return false;
76 }
77
Chris Lattner3462ae32001-12-03 22:26:30 +000078 inline bool isUndefined() const { return LatticeValue == undefined; }
79 inline bool isConstant() const { return LatticeValue == constant; }
80 inline bool isOverdefined() const { return LatticeValue == overdefined; }
Chris Lattner347389d2001-06-27 23:38:11 +000081
Chris Lattner05fe6842004-01-12 03:57:30 +000082 inline Constant *getConstant() const {
83 assert(isConstant() && "Cannot get the constant of a non-constant!");
84 return ConstantVal;
85 }
Chris Lattner347389d2001-06-27 23:38:11 +000086};
87
Chris Lattner7d325382002-04-29 21:26:08 +000088} // end anonymous namespace
Chris Lattner347389d2001-06-27 23:38:11 +000089
90
91//===----------------------------------------------------------------------===//
Chris Lattner347389d2001-06-27 23:38:11 +000092//
Chris Lattner074be1f2004-11-15 04:44:20 +000093/// SCCPSolver - This class is a general purpose solver for Sparse Conditional
94/// Constant Propagation.
95///
96class SCCPSolver : public InstVisitor<SCCPSolver> {
Chris Lattner7f74a562002-01-20 22:54:45 +000097 std::set<BasicBlock*> BBExecutable;// The basic blocks that are executable
Chris Lattner4f031622004-11-15 05:03:30 +000098 hash_map<Value*, LatticeVal> ValueState; // The state each value is in...
Chris Lattner347389d2001-06-27 23:38:11 +000099
Chris Lattner91dbae62004-12-11 05:15:59 +0000100 /// GlobalValue - If we are tracking any values for the contents of a global
101 /// variable, we keep a mapping from the constant accessor to the element of
102 /// the global, to the currently known value. If the value becomes
103 /// overdefined, it's entry is simply removed from this map.
104 hash_map<GlobalVariable*, LatticeVal> TrackedGlobals;
105
Chris Lattnerb4394642004-12-10 08:02:06 +0000106 /// TrackedFunctionRetVals - If we are tracking arguments into and the return
107 /// value out of a function, it will have an entry in this map, indicating
108 /// what the known return value for the function is.
109 hash_map<Function*, LatticeVal> TrackedFunctionRetVals;
110
Chris Lattnerd79334d2004-07-15 23:36:43 +0000111 // The reason for two worklists is that overdefined is the lowest state
112 // on the lattice, and moving things to overdefined as fast as possible
113 // makes SCCP converge much faster.
114 // By having a separate worklist, we accomplish this because everything
115 // possibly overdefined will become overdefined at the soonest possible
116 // point.
Chris Lattnerb4394642004-12-10 08:02:06 +0000117 std::vector<Value*> OverdefinedInstWorkList;
118 std::vector<Value*> InstWorkList;
Chris Lattnerd79334d2004-07-15 23:36:43 +0000119
120
Chris Lattner7f74a562002-01-20 22:54:45 +0000121 std::vector<BasicBlock*> BBWorkList; // The BasicBlock work list
Chris Lattner0bbbe5d2003-10-08 16:55:34 +0000122
Chris Lattner05fe6842004-01-12 03:57:30 +0000123 /// UsersOfOverdefinedPHIs - Keep track of any users of PHI nodes that are not
124 /// overdefined, despite the fact that the PHI node is overdefined.
125 std::multimap<PHINode*, Instruction*> UsersOfOverdefinedPHIs;
126
Chris Lattner0bbbe5d2003-10-08 16:55:34 +0000127 /// KnownFeasibleEdges - Entries in this set are edges which have already had
128 /// PHI nodes retriggered.
129 typedef std::pair<BasicBlock*,BasicBlock*> Edge;
130 std::set<Edge> KnownFeasibleEdges;
Chris Lattner347389d2001-06-27 23:38:11 +0000131public:
132
Chris Lattner074be1f2004-11-15 04:44:20 +0000133 /// MarkBlockExecutable - This method can be used by clients to mark all of
134 /// the blocks that are known to be intrinsically live in the processed unit.
135 void MarkBlockExecutable(BasicBlock *BB) {
Bill Wendling5dbf43c2006-11-26 09:46:52 +0000136 DOUT << "Marking Block Executable: " << BB->getName() << "\n";
Chris Lattner074be1f2004-11-15 04:44:20 +0000137 BBExecutable.insert(BB); // Basic block is executable!
138 BBWorkList.push_back(BB); // Add the block to the work list!
Chris Lattner7d325382002-04-29 21:26:08 +0000139 }
140
Chris Lattner91dbae62004-12-11 05:15:59 +0000141 /// TrackValueOfGlobalVariable - Clients can use this method to
Chris Lattnerb4394642004-12-10 08:02:06 +0000142 /// inform the SCCPSolver that it should track loads and stores to the
143 /// specified global variable if it can. This is only legal to call if
144 /// performing Interprocedural SCCP.
Chris Lattner91dbae62004-12-11 05:15:59 +0000145 void TrackValueOfGlobalVariable(GlobalVariable *GV) {
146 const Type *ElTy = GV->getType()->getElementType();
147 if (ElTy->isFirstClassType()) {
148 LatticeVal &IV = TrackedGlobals[GV];
149 if (!isa<UndefValue>(GV->getInitializer()))
150 IV.markConstant(GV->getInitializer());
151 }
152 }
Chris Lattnerb4394642004-12-10 08:02:06 +0000153
154 /// AddTrackedFunction - If the SCCP solver is supposed to track calls into
155 /// and out of the specified function (which cannot have its address taken),
156 /// this method must be called.
157 void AddTrackedFunction(Function *F) {
158 assert(F->hasInternalLinkage() && "Can only track internal functions!");
159 // Add an entry, F -> undef.
160 TrackedFunctionRetVals[F];
161 }
162
Chris Lattner074be1f2004-11-15 04:44:20 +0000163 /// Solve - Solve for constants and executable blocks.
164 ///
165 void Solve();
Chris Lattner347389d2001-06-27 23:38:11 +0000166
Chris Lattner7285f432004-12-10 20:41:50 +0000167 /// ResolveBranchesIn - While solving the dataflow for a function, we assume
168 /// that branches on undef values cannot reach any of their successors.
169 /// However, this is not a safe assumption. After we solve dataflow, this
170 /// method should be use to handle this. If this returns true, the solver
171 /// should be rerun.
172 bool ResolveBranchesIn(Function &F);
173
Chris Lattner074be1f2004-11-15 04:44:20 +0000174 /// getExecutableBlocks - Once we have solved for constants, return the set of
175 /// blocks that is known to be executable.
176 std::set<BasicBlock*> &getExecutableBlocks() {
177 return BBExecutable;
178 }
179
180 /// getValueMapping - Once we have solved for constants, return the mapping of
Chris Lattner4f031622004-11-15 05:03:30 +0000181 /// LLVM values to LatticeVals.
182 hash_map<Value*, LatticeVal> &getValueMapping() {
Chris Lattner074be1f2004-11-15 04:44:20 +0000183 return ValueState;
184 }
185
Chris Lattner99e12952004-12-11 02:53:57 +0000186 /// getTrackedFunctionRetVals - Get the inferred return value map.
187 ///
188 const hash_map<Function*, LatticeVal> &getTrackedFunctionRetVals() {
189 return TrackedFunctionRetVals;
190 }
191
Chris Lattner91dbae62004-12-11 05:15:59 +0000192 /// getTrackedGlobals - Get and return the set of inferred initializers for
193 /// global variables.
194 const hash_map<GlobalVariable*, LatticeVal> &getTrackedGlobals() {
195 return TrackedGlobals;
196 }
197
Chris Lattner99e12952004-12-11 02:53:57 +0000198
Chris Lattner347389d2001-06-27 23:38:11 +0000199private:
Chris Lattnerd79334d2004-07-15 23:36:43 +0000200 // markConstant - Make a value be marked as "constant". If the value
Misha Brukmanb1c93172005-04-21 23:48:37 +0000201 // is not already a constant, add it to the instruction work list so that
Chris Lattner347389d2001-06-27 23:38:11 +0000202 // the users of the instruction are updated later.
203 //
Chris Lattnerb4394642004-12-10 08:02:06 +0000204 inline void markConstant(LatticeVal &IV, Value *V, Constant *C) {
Chris Lattner7324f7c2003-10-08 16:21:03 +0000205 if (IV.markConstant(C)) {
Bill Wendling5dbf43c2006-11-26 09:46:52 +0000206 DOUT << "markConstant: " << *C << ": " << *V;
Chris Lattnerb4394642004-12-10 08:02:06 +0000207 InstWorkList.push_back(V);
Chris Lattner347389d2001-06-27 23:38:11 +0000208 }
Chris Lattner7324f7c2003-10-08 16:21:03 +0000209 }
Chris Lattnerb4394642004-12-10 08:02:06 +0000210 inline void markConstant(Value *V, Constant *C) {
211 markConstant(ValueState[V], V, C);
Chris Lattner347389d2001-06-27 23:38:11 +0000212 }
213
Chris Lattnerd79334d2004-07-15 23:36:43 +0000214 // markOverdefined - Make a value be marked as "overdefined". If the
Misha Brukmanb1c93172005-04-21 23:48:37 +0000215 // value is not already overdefined, add it to the overdefined instruction
Chris Lattnerd79334d2004-07-15 23:36:43 +0000216 // work list so that the users of the instruction are updated later.
Misha Brukmanb1c93172005-04-21 23:48:37 +0000217
Chris Lattnerb4394642004-12-10 08:02:06 +0000218 inline void markOverdefined(LatticeVal &IV, Value *V) {
Chris Lattner7324f7c2003-10-08 16:21:03 +0000219 if (IV.markOverdefined()) {
Bill Wendling5dbf43c2006-11-26 09:46:52 +0000220 DEBUG(DOUT << "markOverdefined: ";
Chris Lattner2f687fd2004-12-11 06:05:53 +0000221 if (Function *F = dyn_cast<Function>(V))
Bill Wendling5dbf43c2006-11-26 09:46:52 +0000222 DOUT << "Function '" << F->getName() << "'\n";
Chris Lattner2f687fd2004-12-11 06:05:53 +0000223 else
Bill Wendling5dbf43c2006-11-26 09:46:52 +0000224 DOUT << *V);
Chris Lattner074be1f2004-11-15 04:44:20 +0000225 // Only instructions go on the work list
Chris Lattnerb4394642004-12-10 08:02:06 +0000226 OverdefinedInstWorkList.push_back(V);
Chris Lattner347389d2001-06-27 23:38:11 +0000227 }
Chris Lattner7324f7c2003-10-08 16:21:03 +0000228 }
Chris Lattnerb4394642004-12-10 08:02:06 +0000229 inline void markOverdefined(Value *V) {
230 markOverdefined(ValueState[V], V);
231 }
232
233 inline void mergeInValue(LatticeVal &IV, Value *V, LatticeVal &MergeWithV) {
234 if (IV.isOverdefined() || MergeWithV.isUndefined())
235 return; // Noop.
236 if (MergeWithV.isOverdefined())
237 markOverdefined(IV, V);
238 else if (IV.isUndefined())
239 markConstant(IV, V, MergeWithV.getConstant());
240 else if (IV.getConstant() != MergeWithV.getConstant())
241 markOverdefined(IV, V);
Chris Lattner347389d2001-06-27 23:38:11 +0000242 }
Chris Lattner06a0ed12006-02-08 02:38:11 +0000243
244 inline void mergeInValue(Value *V, LatticeVal &MergeWithV) {
245 return mergeInValue(ValueState[V], V, MergeWithV);
246 }
247
Chris Lattner347389d2001-06-27 23:38:11 +0000248
Chris Lattner4f031622004-11-15 05:03:30 +0000249 // getValueState - Return the LatticeVal object that corresponds to the value.
Misha Brukman7eb05a12003-08-18 14:43:39 +0000250 // This function is necessary because not all values should start out in the
Chris Lattner2e9fa6d2002-04-09 19:48:49 +0000251 // underdefined state... Argument's should be overdefined, and
Chris Lattner57698e22002-03-26 18:01:55 +0000252 // constants should be marked as constants. If a value is not known to be an
Chris Lattner347389d2001-06-27 23:38:11 +0000253 // Instruction object, then use this accessor to get its value from the map.
254 //
Chris Lattner4f031622004-11-15 05:03:30 +0000255 inline LatticeVal &getValueState(Value *V) {
256 hash_map<Value*, LatticeVal>::iterator I = ValueState.find(V);
Chris Lattner347389d2001-06-27 23:38:11 +0000257 if (I != ValueState.end()) return I->second; // Common case, in the map
Chris Lattner646354b2004-10-16 18:09:41 +0000258
Chris Lattnerd18c16b2004-11-15 05:45:33 +0000259 if (Constant *CPV = dyn_cast<Constant>(V)) {
260 if (isa<UndefValue>(V)) {
261 // Nothing to do, remain undefined.
262 } else {
263 ValueState[CPV].markConstant(CPV); // Constants are constant
264 }
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000265 }
Chris Lattner347389d2001-06-27 23:38:11 +0000266 // All others are underdefined by default...
267 return ValueState[V];
268 }
269
Misha Brukmanb1c93172005-04-21 23:48:37 +0000270 // markEdgeExecutable - Mark a basic block as executable, adding it to the BB
Chris Lattner347389d2001-06-27 23:38:11 +0000271 // work list if it is not already executable...
Misha Brukmanb1c93172005-04-21 23:48:37 +0000272 //
Chris Lattner0bbbe5d2003-10-08 16:55:34 +0000273 void markEdgeExecutable(BasicBlock *Source, BasicBlock *Dest) {
274 if (!KnownFeasibleEdges.insert(Edge(Source, Dest)).second)
275 return; // This edge is already known to be executable!
276
277 if (BBExecutable.count(Dest)) {
Bill Wendling5dbf43c2006-11-26 09:46:52 +0000278 DOUT << "Marking Edge Executable: " << Source->getName()
279 << " -> " << Dest->getName() << "\n";
Chris Lattner0bbbe5d2003-10-08 16:55:34 +0000280
281 // The destination is already executable, but we just made an edge
Chris Lattner35e56e72003-10-08 16:56:11 +0000282 // feasible that wasn't before. Revisit the PHI nodes in the block
283 // because they have potentially new operands.
Chris Lattnerb4394642004-12-10 08:02:06 +0000284 for (BasicBlock::iterator I = Dest->begin(); isa<PHINode>(I); ++I)
285 visitPHINode(*cast<PHINode>(I));
Chris Lattnercccc5c72003-04-25 02:50:03 +0000286
287 } else {
Chris Lattner074be1f2004-11-15 04:44:20 +0000288 MarkBlockExecutable(Dest);
Chris Lattnercccc5c72003-04-25 02:50:03 +0000289 }
Chris Lattner347389d2001-06-27 23:38:11 +0000290 }
291
Chris Lattner074be1f2004-11-15 04:44:20 +0000292 // getFeasibleSuccessors - Return a vector of booleans to indicate which
293 // successors are reachable from a given terminator instruction.
294 //
295 void getFeasibleSuccessors(TerminatorInst &TI, std::vector<bool> &Succs);
296
297 // isEdgeFeasible - Return true if the control flow edge from the 'From' basic
298 // block to the 'To' basic block is currently feasible...
299 //
300 bool isEdgeFeasible(BasicBlock *From, BasicBlock *To);
301
302 // OperandChangedState - This method is invoked on all of the users of an
303 // instruction that was just changed state somehow.... Based on this
304 // information, we need to update the specified user of this instruction.
305 //
306 void OperandChangedState(User *U) {
307 // Only instructions use other variable values!
308 Instruction &I = cast<Instruction>(*U);
309 if (BBExecutable.count(I.getParent())) // Inst is executable?
310 visit(I);
311 }
312
313private:
314 friend class InstVisitor<SCCPSolver>;
Chris Lattner347389d2001-06-27 23:38:11 +0000315
Misha Brukmanb1c93172005-04-21 23:48:37 +0000316 // visit implementations - Something changed in this instruction... Either an
Chris Lattner10b250e2001-06-29 23:56:23 +0000317 // operand made a transition, or the instruction is newly executable. Change
318 // the value type of I to reflect these changes if appropriate.
319 //
Chris Lattner113f4f42002-06-25 16:13:24 +0000320 void visitPHINode(PHINode &I);
Chris Lattner6e560792002-04-18 15:13:15 +0000321
322 // Terminators
Chris Lattnerb4394642004-12-10 08:02:06 +0000323 void visitReturnInst(ReturnInst &I);
Chris Lattner113f4f42002-06-25 16:13:24 +0000324 void visitTerminatorInst(TerminatorInst &TI);
Chris Lattner6e560792002-04-18 15:13:15 +0000325
Chris Lattner6e1a1b12002-08-14 17:53:45 +0000326 void visitCastInst(CastInst &I);
Chris Lattner59db22d2004-03-12 05:52:44 +0000327 void visitSelectInst(SelectInst &I);
Chris Lattner113f4f42002-06-25 16:13:24 +0000328 void visitBinaryOperator(Instruction &I);
329 void visitShiftInst(ShiftInst &I) { visitBinaryOperator(I); }
Robert Bocchinobd518d12006-01-10 19:05:05 +0000330 void visitExtractElementInst(ExtractElementInst &I);
Robert Bocchino6dce2502006-01-17 20:06:55 +0000331 void visitInsertElementInst(InsertElementInst &I);
Chris Lattner17bd6052006-04-08 01:19:12 +0000332 void visitShuffleVectorInst(ShuffleVectorInst &I);
Chris Lattner6e560792002-04-18 15:13:15 +0000333
334 // Instructions that cannot be folded away...
Chris Lattner91dbae62004-12-11 05:15:59 +0000335 void visitStoreInst (Instruction &I);
Chris Lattner49f74522004-01-12 04:29:41 +0000336 void visitLoadInst (LoadInst &I);
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000337 void visitGetElementPtrInst(GetElementPtrInst &I);
Chris Lattnerb4394642004-12-10 08:02:06 +0000338 void visitCallInst (CallInst &I) { visitCallSite(CallSite::get(&I)); }
339 void visitInvokeInst (InvokeInst &II) {
340 visitCallSite(CallSite::get(&II));
341 visitTerminatorInst(II);
Chris Lattnerdf741d62003-08-27 01:08:35 +0000342 }
Chris Lattnerb4394642004-12-10 08:02:06 +0000343 void visitCallSite (CallSite CS);
Chris Lattner9c58cf62003-09-08 18:54:55 +0000344 void visitUnwindInst (TerminatorInst &I) { /*returns void*/ }
Chris Lattner646354b2004-10-16 18:09:41 +0000345 void visitUnreachableInst(TerminatorInst &I) { /*returns void*/ }
Chris Lattner113f4f42002-06-25 16:13:24 +0000346 void visitAllocationInst(Instruction &I) { markOverdefined(&I); }
Chris Lattnerf0fc9be2003-10-18 05:56:52 +0000347 void visitVANextInst (Instruction &I) { markOverdefined(&I); }
348 void visitVAArgInst (Instruction &I) { markOverdefined(&I); }
Chris Lattner113f4f42002-06-25 16:13:24 +0000349 void visitFreeInst (Instruction &I) { /*returns void*/ }
Chris Lattner6e560792002-04-18 15:13:15 +0000350
Chris Lattner113f4f42002-06-25 16:13:24 +0000351 void visitInstruction(Instruction &I) {
Chris Lattner6e560792002-04-18 15:13:15 +0000352 // If a new instruction is added to LLVM that we don't handle...
Bill Wendlingf3baad32006-12-07 01:30:32 +0000353 cerr << "SCCP: Don't know how to handle: " << I;
Chris Lattner113f4f42002-06-25 16:13:24 +0000354 markOverdefined(&I); // Just in case
Chris Lattner6e560792002-04-18 15:13:15 +0000355 }
Chris Lattner10b250e2001-06-29 23:56:23 +0000356};
Chris Lattnerb28b6802002-07-23 18:06:35 +0000357
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000358// getFeasibleSuccessors - Return a vector of booleans to indicate which
359// successors are reachable from a given terminator instruction.
360//
Chris Lattner074be1f2004-11-15 04:44:20 +0000361void SCCPSolver::getFeasibleSuccessors(TerminatorInst &TI,
362 std::vector<bool> &Succs) {
Chris Lattnercccc5c72003-04-25 02:50:03 +0000363 Succs.resize(TI.getNumSuccessors());
Chris Lattner113f4f42002-06-25 16:13:24 +0000364 if (BranchInst *BI = dyn_cast<BranchInst>(&TI)) {
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000365 if (BI->isUnconditional()) {
366 Succs[0] = true;
367 } else {
Chris Lattner4f031622004-11-15 05:03:30 +0000368 LatticeVal &BCValue = getValueState(BI->getCondition());
Chris Lattnerfe992d42004-01-12 17:40:36 +0000369 if (BCValue.isOverdefined() ||
370 (BCValue.isConstant() && !isa<ConstantBool>(BCValue.getConstant()))) {
371 // Overdefined condition variables, and branches on unfoldable constant
372 // conditions, mean the branch could go either way.
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000373 Succs[0] = Succs[1] = true;
374 } else if (BCValue.isConstant()) {
375 // Constant condition variables mean the branch can only go a single way
Chris Lattner6ab03f62006-09-28 23:35:22 +0000376 Succs[BCValue.getConstant() == ConstantBool::getFalse()] = true;
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000377 }
378 }
Reid Spencerde46e482006-11-02 20:25:50 +0000379 } else if (isa<InvokeInst>(&TI)) {
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000380 // Invoke instructions successors are always executable.
381 Succs[0] = Succs[1] = true;
Chris Lattner113f4f42002-06-25 16:13:24 +0000382 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(&TI)) {
Chris Lattner4f031622004-11-15 05:03:30 +0000383 LatticeVal &SCValue = getValueState(SI->getCondition());
Chris Lattnerfe992d42004-01-12 17:40:36 +0000384 if (SCValue.isOverdefined() || // Overdefined condition?
385 (SCValue.isConstant() && !isa<ConstantInt>(SCValue.getConstant()))) {
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000386 // All destinations are executable!
Chris Lattner113f4f42002-06-25 16:13:24 +0000387 Succs.assign(TI.getNumSuccessors(), true);
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000388 } else if (SCValue.isConstant()) {
389 Constant *CPV = SCValue.getConstant();
390 // Make sure to skip the "default value" which isn't a value
391 for (unsigned i = 1, E = SI->getNumSuccessors(); i != E; ++i) {
392 if (SI->getSuccessorValue(i) == CPV) {// Found the right branch...
393 Succs[i] = true;
394 return;
395 }
396 }
397
398 // Constant value not equal to any of the branches... must execute
399 // default branch then...
400 Succs[0] = true;
401 }
402 } else {
Bill Wendlingf3baad32006-12-07 01:30:32 +0000403 cerr << "SCCP: Don't know how to handle: " << TI;
Chris Lattner113f4f42002-06-25 16:13:24 +0000404 Succs.assign(TI.getNumSuccessors(), true);
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000405 }
406}
407
408
Chris Lattner13b52e72002-05-02 21:18:01 +0000409// isEdgeFeasible - Return true if the control flow edge from the 'From' basic
410// block to the 'To' basic block is currently feasible...
411//
Chris Lattner074be1f2004-11-15 04:44:20 +0000412bool SCCPSolver::isEdgeFeasible(BasicBlock *From, BasicBlock *To) {
Chris Lattner13b52e72002-05-02 21:18:01 +0000413 assert(BBExecutable.count(To) && "Dest should always be alive!");
414
415 // Make sure the source basic block is executable!!
416 if (!BBExecutable.count(From)) return false;
Misha Brukmanb1c93172005-04-21 23:48:37 +0000417
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000418 // Check to make sure this edge itself is actually feasible now...
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000419 TerminatorInst *TI = From->getTerminator();
420 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
421 if (BI->isUnconditional())
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000422 return true;
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000423 else {
Chris Lattner4f031622004-11-15 05:03:30 +0000424 LatticeVal &BCValue = getValueState(BI->getCondition());
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000425 if (BCValue.isOverdefined()) {
426 // Overdefined condition variables mean the branch could go either way.
427 return true;
428 } else if (BCValue.isConstant()) {
Chris Lattnerfe992d42004-01-12 17:40:36 +0000429 // Not branching on an evaluatable constant?
430 if (!isa<ConstantBool>(BCValue.getConstant())) return true;
431
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000432 // Constant condition variables mean the branch can only go a single way
Misha Brukmanb1c93172005-04-21 23:48:37 +0000433 return BI->getSuccessor(BCValue.getConstant() ==
Chris Lattner6ab03f62006-09-28 23:35:22 +0000434 ConstantBool::getFalse()) == To;
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000435 }
436 return false;
437 }
Reid Spencerde46e482006-11-02 20:25:50 +0000438 } else if (isa<InvokeInst>(TI)) {
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000439 // Invoke instructions successors are always executable.
440 return true;
441 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
Chris Lattner4f031622004-11-15 05:03:30 +0000442 LatticeVal &SCValue = getValueState(SI->getCondition());
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000443 if (SCValue.isOverdefined()) { // Overdefined condition?
444 // All destinations are executable!
445 return true;
446 } else if (SCValue.isConstant()) {
447 Constant *CPV = SCValue.getConstant();
Chris Lattnerfe992d42004-01-12 17:40:36 +0000448 if (!isa<ConstantInt>(CPV))
449 return true; // not a foldable constant?
450
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000451 // Make sure to skip the "default value" which isn't a value
452 for (unsigned i = 1, E = SI->getNumSuccessors(); i != E; ++i)
453 if (SI->getSuccessorValue(i) == CPV) // Found the taken branch...
454 return SI->getSuccessor(i) == To;
455
456 // Constant value not equal to any of the branches... must execute
457 // default branch then...
458 return SI->getDefaultDest() == To;
459 }
460 return false;
461 } else {
Bill Wendlingf3baad32006-12-07 01:30:32 +0000462 cerr << "Unknown terminator instruction: " << *TI;
Chris Lattner71ac22ff2003-10-08 15:47:41 +0000463 abort();
464 }
Chris Lattner13b52e72002-05-02 21:18:01 +0000465}
Chris Lattner347389d2001-06-27 23:38:11 +0000466
Chris Lattner6e560792002-04-18 15:13:15 +0000467// visit Implementations - Something changed in this instruction... Either an
Chris Lattner347389d2001-06-27 23:38:11 +0000468// operand made a transition, or the instruction is newly executable. Change
469// the value type of I to reflect these changes if appropriate. This method
470// makes sure to do the following actions:
471//
472// 1. If a phi node merges two constants in, and has conflicting value coming
473// from different branches, or if the PHI node merges in an overdefined
474// value, then the PHI node becomes overdefined.
475// 2. If a phi node merges only constants in, and they all agree on value, the
476// PHI node becomes a constant value equal to that.
477// 3. If V <- x (op) y && isConstant(x) && isConstant(y) V = Constant
478// 4. If V <- x (op) y && (isOverdefined(x) || isOverdefined(y)) V = Overdefined
479// 5. If V <- MEM or V <- CALL or V <- (unknown) then V = Overdefined
480// 6. If a conditional branch has a value that is constant, make the selected
481// destination executable
482// 7. If a conditional branch has a value that is overdefined, make all
483// successors executable.
484//
Chris Lattner074be1f2004-11-15 04:44:20 +0000485void SCCPSolver::visitPHINode(PHINode &PN) {
Chris Lattner4f031622004-11-15 05:03:30 +0000486 LatticeVal &PNIV = getValueState(&PN);
Chris Lattner05fe6842004-01-12 03:57:30 +0000487 if (PNIV.isOverdefined()) {
488 // There may be instructions using this PHI node that are not overdefined
489 // themselves. If so, make sure that they know that the PHI node operand
490 // changed.
491 std::multimap<PHINode*, Instruction*>::iterator I, E;
492 tie(I, E) = UsersOfOverdefinedPHIs.equal_range(&PN);
493 if (I != E) {
494 std::vector<Instruction*> Users;
495 Users.reserve(std::distance(I, E));
496 for (; I != E; ++I) Users.push_back(I->second);
497 while (!Users.empty()) {
498 visit(Users.back());
499 Users.pop_back();
500 }
501 }
502 return; // Quick exit
503 }
Chris Lattner347389d2001-06-27 23:38:11 +0000504
Chris Lattner7a7b1142004-03-16 19:49:59 +0000505 // Super-extra-high-degree PHI nodes are unlikely to ever be marked constant,
506 // and slow us down a lot. Just mark them overdefined.
507 if (PN.getNumIncomingValues() > 64) {
508 markOverdefined(PNIV, &PN);
509 return;
510 }
511
Chris Lattner6e560792002-04-18 15:13:15 +0000512 // Look at all of the executable operands of the PHI node. If any of them
513 // are overdefined, the PHI becomes overdefined as well. If they are all
514 // constant, and they agree with each other, the PHI becomes the identical
515 // constant. If they are constant and don't agree, the PHI is overdefined.
516 // If there are no executable operands, the PHI remains undefined.
517 //
Chris Lattnercccc5c72003-04-25 02:50:03 +0000518 Constant *OperandVal = 0;
519 for (unsigned i = 0, e = PN.getNumIncomingValues(); i != e; ++i) {
Chris Lattner4f031622004-11-15 05:03:30 +0000520 LatticeVal &IV = getValueState(PN.getIncomingValue(i));
Chris Lattnercccc5c72003-04-25 02:50:03 +0000521 if (IV.isUndefined()) continue; // Doesn't influence PHI node.
Misha Brukmanb1c93172005-04-21 23:48:37 +0000522
Chris Lattner113f4f42002-06-25 16:13:24 +0000523 if (isEdgeFeasible(PN.getIncomingBlock(i), PN.getParent())) {
Chris Lattner7e270582003-06-24 20:29:52 +0000524 if (IV.isOverdefined()) { // PHI node becomes overdefined!
Chris Lattner7324f7c2003-10-08 16:21:03 +0000525 markOverdefined(PNIV, &PN);
Chris Lattner7e270582003-06-24 20:29:52 +0000526 return;
527 }
528
Chris Lattnercccc5c72003-04-25 02:50:03 +0000529 if (OperandVal == 0) { // Grab the first value...
530 OperandVal = IV.getConstant();
Chris Lattner6e560792002-04-18 15:13:15 +0000531 } else { // Another value is being merged in!
532 // There is already a reachable operand. If we conflict with it,
533 // then the PHI node becomes overdefined. If we agree with it, we
534 // can continue on.
Misha Brukmanb1c93172005-04-21 23:48:37 +0000535
Chris Lattner6e560792002-04-18 15:13:15 +0000536 // Check to see if there are two different constants merging...
Chris Lattnercccc5c72003-04-25 02:50:03 +0000537 if (IV.getConstant() != OperandVal) {
Chris Lattner6e560792002-04-18 15:13:15 +0000538 // Yes there is. This means the PHI node is not constant.
539 // You must be overdefined poor PHI.
540 //
Chris Lattner7324f7c2003-10-08 16:21:03 +0000541 markOverdefined(PNIV, &PN); // The PHI node now becomes overdefined
Chris Lattner6e560792002-04-18 15:13:15 +0000542 return; // I'm done analyzing you
Chris Lattnerc4ad64c2001-11-26 18:57:38 +0000543 }
Chris Lattner347389d2001-06-27 23:38:11 +0000544 }
545 }
Chris Lattner347389d2001-06-27 23:38:11 +0000546 }
547
Chris Lattner6e560792002-04-18 15:13:15 +0000548 // If we exited the loop, this means that the PHI node only has constant
Chris Lattnercccc5c72003-04-25 02:50:03 +0000549 // arguments that agree with each other(and OperandVal is the constant) or
550 // OperandVal is null because there are no defined incoming arguments. If
551 // this is the case, the PHI remains undefined.
Chris Lattner347389d2001-06-27 23:38:11 +0000552 //
Chris Lattnercccc5c72003-04-25 02:50:03 +0000553 if (OperandVal)
Misha Brukman8b2bd4e2003-10-10 17:57:28 +0000554 markConstant(PNIV, &PN, OperandVal); // Acquire operand value
Chris Lattner347389d2001-06-27 23:38:11 +0000555}
556
Chris Lattnerb4394642004-12-10 08:02:06 +0000557void SCCPSolver::visitReturnInst(ReturnInst &I) {
558 if (I.getNumOperands() == 0) return; // Ret void
559
560 // If we are tracking the return value of this function, merge it in.
561 Function *F = I.getParent()->getParent();
562 if (F->hasInternalLinkage() && !TrackedFunctionRetVals.empty()) {
563 hash_map<Function*, LatticeVal>::iterator TFRVI =
564 TrackedFunctionRetVals.find(F);
565 if (TFRVI != TrackedFunctionRetVals.end() &&
566 !TFRVI->second.isOverdefined()) {
567 LatticeVal &IV = getValueState(I.getOperand(0));
568 mergeInValue(TFRVI->second, F, IV);
569 }
570 }
571}
572
573
Chris Lattner074be1f2004-11-15 04:44:20 +0000574void SCCPSolver::visitTerminatorInst(TerminatorInst &TI) {
Chris Lattnercccc5c72003-04-25 02:50:03 +0000575 std::vector<bool> SuccFeasible;
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000576 getFeasibleSuccessors(TI, SuccFeasible);
Chris Lattner347389d2001-06-27 23:38:11 +0000577
Chris Lattner0bbbe5d2003-10-08 16:55:34 +0000578 BasicBlock *BB = TI.getParent();
579
Chris Lattnerfe6c9ee2002-05-02 21:44:00 +0000580 // Mark all feasible successors executable...
581 for (unsigned i = 0, e = SuccFeasible.size(); i != e; ++i)
Chris Lattner0bbbe5d2003-10-08 16:55:34 +0000582 if (SuccFeasible[i])
583 markEdgeExecutable(BB, TI.getSuccessor(i));
Chris Lattner6e560792002-04-18 15:13:15 +0000584}
585
Chris Lattner074be1f2004-11-15 04:44:20 +0000586void SCCPSolver::visitCastInst(CastInst &I) {
Chris Lattner113f4f42002-06-25 16:13:24 +0000587 Value *V = I.getOperand(0);
Chris Lattner4f031622004-11-15 05:03:30 +0000588 LatticeVal &VState = getValueState(V);
Chris Lattner0fe5b322004-01-12 17:43:40 +0000589 if (VState.isOverdefined()) // Inherit overdefinedness of operand
Chris Lattner113f4f42002-06-25 16:13:24 +0000590 markOverdefined(&I);
Chris Lattner0fe5b322004-01-12 17:43:40 +0000591 else if (VState.isConstant()) // Propagate constant value
Reid Spencerb341b082006-12-12 05:05:00 +0000592 markConstant(&I, ConstantExpr::getCast(I.getOpcode(),
593 VState.getConstant(), I.getType()));
Chris Lattner6e560792002-04-18 15:13:15 +0000594}
595
Chris Lattner074be1f2004-11-15 04:44:20 +0000596void SCCPSolver::visitSelectInst(SelectInst &I) {
Chris Lattner4f031622004-11-15 05:03:30 +0000597 LatticeVal &CondValue = getValueState(I.getCondition());
Chris Lattner06a0ed12006-02-08 02:38:11 +0000598 if (CondValue.isUndefined())
599 return;
600 if (CondValue.isConstant()) {
Chris Lattner6ab03f62006-09-28 23:35:22 +0000601 if (ConstantBool *CondCB = dyn_cast<ConstantBool>(CondValue.getConstant())){
602 mergeInValue(&I, getValueState(CondCB->getValue() ? I.getTrueValue()
603 : I.getFalseValue()));
Chris Lattner06a0ed12006-02-08 02:38:11 +0000604 return;
605 }
606 }
607
608 // Otherwise, the condition is overdefined or a constant we can't evaluate.
609 // See if we can produce something better than overdefined based on the T/F
610 // value.
611 LatticeVal &TVal = getValueState(I.getTrueValue());
612 LatticeVal &FVal = getValueState(I.getFalseValue());
613
614 // select ?, C, C -> C.
615 if (TVal.isConstant() && FVal.isConstant() &&
616 TVal.getConstant() == FVal.getConstant()) {
617 markConstant(&I, FVal.getConstant());
618 return;
619 }
620
621 if (TVal.isUndefined()) { // select ?, undef, X -> X.
622 mergeInValue(&I, FVal);
623 } else if (FVal.isUndefined()) { // select ?, X, undef -> X.
624 mergeInValue(&I, TVal);
625 } else {
626 markOverdefined(&I);
Chris Lattner59db22d2004-03-12 05:52:44 +0000627 }
628}
629
Chris Lattner6e560792002-04-18 15:13:15 +0000630// Handle BinaryOperators and Shift Instructions...
Chris Lattner074be1f2004-11-15 04:44:20 +0000631void SCCPSolver::visitBinaryOperator(Instruction &I) {
Chris Lattner4f031622004-11-15 05:03:30 +0000632 LatticeVal &IV = ValueState[&I];
Chris Lattner05fe6842004-01-12 03:57:30 +0000633 if (IV.isOverdefined()) return;
634
Chris Lattner4f031622004-11-15 05:03:30 +0000635 LatticeVal &V1State = getValueState(I.getOperand(0));
636 LatticeVal &V2State = getValueState(I.getOperand(1));
Chris Lattner05fe6842004-01-12 03:57:30 +0000637
Chris Lattner6e560792002-04-18 15:13:15 +0000638 if (V1State.isOverdefined() || V2State.isOverdefined()) {
Chris Lattnercbc01612004-12-11 23:15:19 +0000639 // If this is an AND or OR with 0 or -1, it doesn't matter that the other
640 // operand is overdefined.
641 if (I.getOpcode() == Instruction::And || I.getOpcode() == Instruction::Or) {
642 LatticeVal *NonOverdefVal = 0;
643 if (!V1State.isOverdefined()) {
644 NonOverdefVal = &V1State;
645 } else if (!V2State.isOverdefined()) {
646 NonOverdefVal = &V2State;
647 }
648
649 if (NonOverdefVal) {
650 if (NonOverdefVal->isUndefined()) {
651 // Could annihilate value.
652 if (I.getOpcode() == Instruction::And)
653 markConstant(IV, &I, Constant::getNullValue(I.getType()));
654 else
655 markConstant(IV, &I, ConstantInt::getAllOnesValue(I.getType()));
656 return;
657 } else {
658 if (I.getOpcode() == Instruction::And) {
659 if (NonOverdefVal->getConstant()->isNullValue()) {
660 markConstant(IV, &I, NonOverdefVal->getConstant());
661 return; // X or 0 = -1
662 }
663 } else {
664 if (ConstantIntegral *CI =
665 dyn_cast<ConstantIntegral>(NonOverdefVal->getConstant()))
666 if (CI->isAllOnesValue()) {
667 markConstant(IV, &I, NonOverdefVal->getConstant());
668 return; // X or -1 = -1
669 }
670 }
671 }
672 }
673 }
674
675
Chris Lattner05fe6842004-01-12 03:57:30 +0000676 // If both operands are PHI nodes, it is possible that this instruction has
677 // a constant value, despite the fact that the PHI node doesn't. Check for
678 // this condition now.
679 if (PHINode *PN1 = dyn_cast<PHINode>(I.getOperand(0)))
680 if (PHINode *PN2 = dyn_cast<PHINode>(I.getOperand(1)))
681 if (PN1->getParent() == PN2->getParent()) {
682 // Since the two PHI nodes are in the same basic block, they must have
683 // entries for the same predecessors. Walk the predecessor list, and
684 // if all of the incoming values are constants, and the result of
685 // evaluating this expression with all incoming value pairs is the
686 // same, then this expression is a constant even though the PHI node
687 // is not a constant!
Chris Lattner4f031622004-11-15 05:03:30 +0000688 LatticeVal Result;
Chris Lattner05fe6842004-01-12 03:57:30 +0000689 for (unsigned i = 0, e = PN1->getNumIncomingValues(); i != e; ++i) {
Chris Lattner4f031622004-11-15 05:03:30 +0000690 LatticeVal &In1 = getValueState(PN1->getIncomingValue(i));
Chris Lattner05fe6842004-01-12 03:57:30 +0000691 BasicBlock *InBlock = PN1->getIncomingBlock(i);
Chris Lattner4f031622004-11-15 05:03:30 +0000692 LatticeVal &In2 =
693 getValueState(PN2->getIncomingValueForBlock(InBlock));
Chris Lattner05fe6842004-01-12 03:57:30 +0000694
695 if (In1.isOverdefined() || In2.isOverdefined()) {
696 Result.markOverdefined();
697 break; // Cannot fold this operation over the PHI nodes!
698 } else if (In1.isConstant() && In2.isConstant()) {
Chris Lattner1b7d4d72004-01-12 19:08:43 +0000699 Constant *V = ConstantExpr::get(I.getOpcode(), In1.getConstant(),
700 In2.getConstant());
Chris Lattner05fe6842004-01-12 03:57:30 +0000701 if (Result.isUndefined())
Chris Lattner1b7d4d72004-01-12 19:08:43 +0000702 Result.markConstant(V);
703 else if (Result.isConstant() && Result.getConstant() != V) {
Chris Lattner05fe6842004-01-12 03:57:30 +0000704 Result.markOverdefined();
705 break;
706 }
707 }
708 }
709
710 // If we found a constant value here, then we know the instruction is
711 // constant despite the fact that the PHI nodes are overdefined.
712 if (Result.isConstant()) {
713 markConstant(IV, &I, Result.getConstant());
714 // Remember that this instruction is virtually using the PHI node
715 // operands.
716 UsersOfOverdefinedPHIs.insert(std::make_pair(PN1, &I));
717 UsersOfOverdefinedPHIs.insert(std::make_pair(PN2, &I));
718 return;
719 } else if (Result.isUndefined()) {
720 return;
721 }
722
723 // Okay, this really is overdefined now. Since we might have
724 // speculatively thought that this was not overdefined before, and
725 // added ourselves to the UsersOfOverdefinedPHIs list for the PHIs,
726 // make sure to clean out any entries that we put there, for
727 // efficiency.
728 std::multimap<PHINode*, Instruction*>::iterator It, E;
729 tie(It, E) = UsersOfOverdefinedPHIs.equal_range(PN1);
730 while (It != E) {
731 if (It->second == &I) {
732 UsersOfOverdefinedPHIs.erase(It++);
733 } else
734 ++It;
735 }
736 tie(It, E) = UsersOfOverdefinedPHIs.equal_range(PN2);
737 while (It != E) {
738 if (It->second == &I) {
739 UsersOfOverdefinedPHIs.erase(It++);
740 } else
741 ++It;
742 }
743 }
744
745 markOverdefined(IV, &I);
Chris Lattner6e560792002-04-18 15:13:15 +0000746 } else if (V1State.isConstant() && V2State.isConstant()) {
Chris Lattner1b7d4d72004-01-12 19:08:43 +0000747 markConstant(IV, &I, ConstantExpr::get(I.getOpcode(), V1State.getConstant(),
748 V2State.getConstant()));
Chris Lattner6e560792002-04-18 15:13:15 +0000749 }
750}
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000751
Robert Bocchinobd518d12006-01-10 19:05:05 +0000752void SCCPSolver::visitExtractElementInst(ExtractElementInst &I) {
Devang Patel21efc732006-12-04 23:54:59 +0000753 // FIXME : SCCP does not handle vectors properly.
754 markOverdefined(&I);
755 return;
756
757#if 0
Robert Bocchinobd518d12006-01-10 19:05:05 +0000758 LatticeVal &ValState = getValueState(I.getOperand(0));
759 LatticeVal &IdxState = getValueState(I.getOperand(1));
760
761 if (ValState.isOverdefined() || IdxState.isOverdefined())
762 markOverdefined(&I);
763 else if(ValState.isConstant() && IdxState.isConstant())
764 markConstant(&I, ConstantExpr::getExtractElement(ValState.getConstant(),
765 IdxState.getConstant()));
Devang Patel21efc732006-12-04 23:54:59 +0000766#endif
Robert Bocchinobd518d12006-01-10 19:05:05 +0000767}
768
Robert Bocchino6dce2502006-01-17 20:06:55 +0000769void SCCPSolver::visitInsertElementInst(InsertElementInst &I) {
Devang Patel21efc732006-12-04 23:54:59 +0000770 // FIXME : SCCP does not handle vectors properly.
771 markOverdefined(&I);
772 return;
773#if 0
Robert Bocchino6dce2502006-01-17 20:06:55 +0000774 LatticeVal &ValState = getValueState(I.getOperand(0));
775 LatticeVal &EltState = getValueState(I.getOperand(1));
776 LatticeVal &IdxState = getValueState(I.getOperand(2));
777
778 if (ValState.isOverdefined() || EltState.isOverdefined() ||
779 IdxState.isOverdefined())
780 markOverdefined(&I);
781 else if(ValState.isConstant() && EltState.isConstant() &&
782 IdxState.isConstant())
783 markConstant(&I, ConstantExpr::getInsertElement(ValState.getConstant(),
784 EltState.getConstant(),
785 IdxState.getConstant()));
786 else if (ValState.isUndefined() && EltState.isConstant() &&
Devang Patel21efc732006-12-04 23:54:59 +0000787 IdxState.isConstant())
Robert Bocchino6dce2502006-01-17 20:06:55 +0000788 markConstant(&I, ConstantExpr::getInsertElement(UndefValue::get(I.getType()),
789 EltState.getConstant(),
790 IdxState.getConstant()));
Devang Patel21efc732006-12-04 23:54:59 +0000791#endif
Robert Bocchino6dce2502006-01-17 20:06:55 +0000792}
793
Chris Lattner17bd6052006-04-08 01:19:12 +0000794void SCCPSolver::visitShuffleVectorInst(ShuffleVectorInst &I) {
Devang Patel21efc732006-12-04 23:54:59 +0000795 // FIXME : SCCP does not handle vectors properly.
796 markOverdefined(&I);
797 return;
798#if 0
Chris Lattner17bd6052006-04-08 01:19:12 +0000799 LatticeVal &V1State = getValueState(I.getOperand(0));
800 LatticeVal &V2State = getValueState(I.getOperand(1));
801 LatticeVal &MaskState = getValueState(I.getOperand(2));
802
803 if (MaskState.isUndefined() ||
804 (V1State.isUndefined() && V2State.isUndefined()))
805 return; // Undefined output if mask or both inputs undefined.
806
807 if (V1State.isOverdefined() || V2State.isOverdefined() ||
808 MaskState.isOverdefined()) {
809 markOverdefined(&I);
810 } else {
811 // A mix of constant/undef inputs.
812 Constant *V1 = V1State.isConstant() ?
813 V1State.getConstant() : UndefValue::get(I.getType());
814 Constant *V2 = V2State.isConstant() ?
815 V2State.getConstant() : UndefValue::get(I.getType());
816 Constant *Mask = MaskState.isConstant() ?
817 MaskState.getConstant() : UndefValue::get(I.getOperand(2)->getType());
818 markConstant(&I, ConstantExpr::getShuffleVector(V1, V2, Mask));
819 }
Devang Patel21efc732006-12-04 23:54:59 +0000820#endif
Chris Lattner17bd6052006-04-08 01:19:12 +0000821}
822
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000823// Handle getelementptr instructions... if all operands are constants then we
824// can turn this into a getelementptr ConstantExpr.
825//
Chris Lattner074be1f2004-11-15 04:44:20 +0000826void SCCPSolver::visitGetElementPtrInst(GetElementPtrInst &I) {
Chris Lattner4f031622004-11-15 05:03:30 +0000827 LatticeVal &IV = ValueState[&I];
Chris Lattner49f74522004-01-12 04:29:41 +0000828 if (IV.isOverdefined()) return;
829
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000830 std::vector<Constant*> Operands;
831 Operands.reserve(I.getNumOperands());
832
833 for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i) {
Chris Lattner4f031622004-11-15 05:03:30 +0000834 LatticeVal &State = getValueState(I.getOperand(i));
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000835 if (State.isUndefined())
836 return; // Operands are not resolved yet...
837 else if (State.isOverdefined()) {
Chris Lattner49f74522004-01-12 04:29:41 +0000838 markOverdefined(IV, &I);
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000839 return;
840 }
841 assert(State.isConstant() && "Unknown state!");
842 Operands.push_back(State.getConstant());
843 }
844
845 Constant *Ptr = Operands[0];
846 Operands.erase(Operands.begin()); // Erase the pointer from idx list...
847
Misha Brukmanb1c93172005-04-21 23:48:37 +0000848 markConstant(IV, &I, ConstantExpr::getGetElementPtr(Ptr, Operands));
Chris Lattnerdd6522e2002-08-30 23:39:00 +0000849}
Brian Gaeke960707c2003-11-11 22:41:34 +0000850
Chris Lattner91dbae62004-12-11 05:15:59 +0000851void SCCPSolver::visitStoreInst(Instruction &SI) {
852 if (TrackedGlobals.empty() || !isa<GlobalVariable>(SI.getOperand(1)))
853 return;
854 GlobalVariable *GV = cast<GlobalVariable>(SI.getOperand(1));
855 hash_map<GlobalVariable*, LatticeVal>::iterator I = TrackedGlobals.find(GV);
856 if (I == TrackedGlobals.end() || I->second.isOverdefined()) return;
857
858 // Get the value we are storing into the global.
859 LatticeVal &PtrVal = getValueState(SI.getOperand(0));
860
861 mergeInValue(I->second, GV, PtrVal);
862 if (I->second.isOverdefined())
863 TrackedGlobals.erase(I); // No need to keep tracking this!
864}
865
866
Chris Lattner49f74522004-01-12 04:29:41 +0000867// Handle load instructions. If the operand is a constant pointer to a constant
868// global, we can replace the load with the loaded constant value!
Chris Lattner074be1f2004-11-15 04:44:20 +0000869void SCCPSolver::visitLoadInst(LoadInst &I) {
Chris Lattner4f031622004-11-15 05:03:30 +0000870 LatticeVal &IV = ValueState[&I];
Chris Lattner49f74522004-01-12 04:29:41 +0000871 if (IV.isOverdefined()) return;
872
Chris Lattner4f031622004-11-15 05:03:30 +0000873 LatticeVal &PtrVal = getValueState(I.getOperand(0));
Chris Lattner49f74522004-01-12 04:29:41 +0000874 if (PtrVal.isUndefined()) return; // The pointer is not resolved yet!
875 if (PtrVal.isConstant() && !I.isVolatile()) {
876 Value *Ptr = PtrVal.getConstant();
Chris Lattner538fee72004-03-07 22:16:24 +0000877 if (isa<ConstantPointerNull>(Ptr)) {
878 // load null -> null
879 markConstant(IV, &I, Constant::getNullValue(I.getType()));
880 return;
881 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000882
Chris Lattner49f74522004-01-12 04:29:41 +0000883 // Transform load (constant global) into the value loaded.
Chris Lattner91dbae62004-12-11 05:15:59 +0000884 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(Ptr)) {
885 if (GV->isConstant()) {
886 if (!GV->isExternal()) {
887 markConstant(IV, &I, GV->getInitializer());
888 return;
889 }
890 } else if (!TrackedGlobals.empty()) {
891 // If we are tracking this global, merge in the known value for it.
892 hash_map<GlobalVariable*, LatticeVal>::iterator It =
893 TrackedGlobals.find(GV);
894 if (It != TrackedGlobals.end()) {
895 mergeInValue(IV, &I, It->second);
896 return;
897 }
Chris Lattner49f74522004-01-12 04:29:41 +0000898 }
Chris Lattner91dbae62004-12-11 05:15:59 +0000899 }
Chris Lattner49f74522004-01-12 04:29:41 +0000900
901 // Transform load (constantexpr_GEP global, 0, ...) into the value loaded.
902 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Ptr))
903 if (CE->getOpcode() == Instruction::GetElementPtr)
Jeff Cohen82639852005-04-23 21:38:35 +0000904 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(CE->getOperand(0)))
905 if (GV->isConstant() && !GV->isExternal())
906 if (Constant *V =
Chris Lattner02ae21e2005-09-26 05:28:52 +0000907 ConstantFoldLoadThroughGEPConstantExpr(GV->getInitializer(), CE)) {
Jeff Cohen82639852005-04-23 21:38:35 +0000908 markConstant(IV, &I, V);
909 return;
910 }
Chris Lattner49f74522004-01-12 04:29:41 +0000911 }
912
913 // Otherwise we cannot say for certain what value this load will produce.
914 // Bail out.
915 markOverdefined(IV, &I);
916}
Chris Lattnerff9362a2004-04-13 19:43:54 +0000917
Chris Lattnerb4394642004-12-10 08:02:06 +0000918void SCCPSolver::visitCallSite(CallSite CS) {
919 Function *F = CS.getCalledFunction();
920
921 // If we are tracking this function, we must make sure to bind arguments as
922 // appropriate.
923 hash_map<Function*, LatticeVal>::iterator TFRVI =TrackedFunctionRetVals.end();
924 if (F && F->hasInternalLinkage())
925 TFRVI = TrackedFunctionRetVals.find(F);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000926
Chris Lattnerb4394642004-12-10 08:02:06 +0000927 if (TFRVI != TrackedFunctionRetVals.end()) {
928 // If this is the first call to the function hit, mark its entry block
929 // executable.
930 if (!BBExecutable.count(F->begin()))
931 MarkBlockExecutable(F->begin());
932
933 CallSite::arg_iterator CAI = CS.arg_begin();
Chris Lattner531f9e92005-03-15 04:54:21 +0000934 for (Function::arg_iterator AI = F->arg_begin(), E = F->arg_end();
Chris Lattnerb4394642004-12-10 08:02:06 +0000935 AI != E; ++AI, ++CAI) {
936 LatticeVal &IV = ValueState[AI];
937 if (!IV.isOverdefined())
938 mergeInValue(IV, AI, getValueState(*CAI));
939 }
940 }
941 Instruction *I = CS.getInstruction();
942 if (I->getType() == Type::VoidTy) return;
943
944 LatticeVal &IV = ValueState[I];
Chris Lattnerff9362a2004-04-13 19:43:54 +0000945 if (IV.isOverdefined()) return;
946
Chris Lattnerb4394642004-12-10 08:02:06 +0000947 // Propagate the return value of the function to the value of the instruction.
948 if (TFRVI != TrackedFunctionRetVals.end()) {
949 mergeInValue(IV, I, TFRVI->second);
950 return;
951 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000952
Chris Lattnerb4394642004-12-10 08:02:06 +0000953 if (F == 0 || !F->isExternal() || !canConstantFoldCallTo(F)) {
954 markOverdefined(IV, I);
Chris Lattnerff9362a2004-04-13 19:43:54 +0000955 return;
956 }
957
958 std::vector<Constant*> Operands;
Chris Lattnerb4394642004-12-10 08:02:06 +0000959 Operands.reserve(I->getNumOperands()-1);
Chris Lattnerff9362a2004-04-13 19:43:54 +0000960
Chris Lattnerb4394642004-12-10 08:02:06 +0000961 for (CallSite::arg_iterator AI = CS.arg_begin(), E = CS.arg_end();
962 AI != E; ++AI) {
963 LatticeVal &State = getValueState(*AI);
Chris Lattnerff9362a2004-04-13 19:43:54 +0000964 if (State.isUndefined())
965 return; // Operands are not resolved yet...
966 else if (State.isOverdefined()) {
Chris Lattnerb4394642004-12-10 08:02:06 +0000967 markOverdefined(IV, I);
Chris Lattnerff9362a2004-04-13 19:43:54 +0000968 return;
969 }
970 assert(State.isConstant() && "Unknown state!");
971 Operands.push_back(State.getConstant());
972 }
973
974 if (Constant *C = ConstantFoldCall(F, Operands))
Chris Lattnerb4394642004-12-10 08:02:06 +0000975 markConstant(IV, I, C);
Chris Lattnerff9362a2004-04-13 19:43:54 +0000976 else
Chris Lattnerb4394642004-12-10 08:02:06 +0000977 markOverdefined(IV, I);
Chris Lattnerff9362a2004-04-13 19:43:54 +0000978}
Chris Lattner074be1f2004-11-15 04:44:20 +0000979
980
981void SCCPSolver::Solve() {
982 // Process the work lists until they are empty!
Misha Brukmanb1c93172005-04-21 23:48:37 +0000983 while (!BBWorkList.empty() || !InstWorkList.empty() ||
Jeff Cohen82639852005-04-23 21:38:35 +0000984 !OverdefinedInstWorkList.empty()) {
Chris Lattner074be1f2004-11-15 04:44:20 +0000985 // Process the instruction work list...
986 while (!OverdefinedInstWorkList.empty()) {
Chris Lattnerb4394642004-12-10 08:02:06 +0000987 Value *I = OverdefinedInstWorkList.back();
Chris Lattner074be1f2004-11-15 04:44:20 +0000988 OverdefinedInstWorkList.pop_back();
989
Bill Wendling5dbf43c2006-11-26 09:46:52 +0000990 DOUT << "\nPopped off OI-WL: " << *I;
Misha Brukmanb1c93172005-04-21 23:48:37 +0000991
Chris Lattner074be1f2004-11-15 04:44:20 +0000992 // "I" got into the work list because it either made the transition from
993 // bottom to constant
994 //
995 // Anything on this worklist that is overdefined need not be visited
996 // since all of its users will have already been marked as overdefined
997 // Update all of the users of this instruction's value...
998 //
999 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
1000 UI != E; ++UI)
1001 OperandChangedState(*UI);
1002 }
1003 // Process the instruction work list...
1004 while (!InstWorkList.empty()) {
Chris Lattnerb4394642004-12-10 08:02:06 +00001005 Value *I = InstWorkList.back();
Chris Lattner074be1f2004-11-15 04:44:20 +00001006 InstWorkList.pop_back();
1007
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001008 DOUT << "\nPopped off I-WL: " << *I;
Misha Brukmanb1c93172005-04-21 23:48:37 +00001009
Chris Lattner074be1f2004-11-15 04:44:20 +00001010 // "I" got into the work list because it either made the transition from
1011 // bottom to constant
1012 //
1013 // Anything on this worklist that is overdefined need not be visited
1014 // since all of its users will have already been marked as overdefined.
1015 // Update all of the users of this instruction's value...
1016 //
1017 if (!getValueState(I).isOverdefined())
1018 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
1019 UI != E; ++UI)
1020 OperandChangedState(*UI);
1021 }
Misha Brukmanb1c93172005-04-21 23:48:37 +00001022
Chris Lattner074be1f2004-11-15 04:44:20 +00001023 // Process the basic block work list...
1024 while (!BBWorkList.empty()) {
1025 BasicBlock *BB = BBWorkList.back();
1026 BBWorkList.pop_back();
Misha Brukmanb1c93172005-04-21 23:48:37 +00001027
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001028 DOUT << "\nPopped off BBWL: " << *BB;
Misha Brukmanb1c93172005-04-21 23:48:37 +00001029
Chris Lattner074be1f2004-11-15 04:44:20 +00001030 // Notify all instructions in this basic block that they are newly
1031 // executable.
1032 visit(BB);
1033 }
1034 }
1035}
1036
Chris Lattner7285f432004-12-10 20:41:50 +00001037/// ResolveBranchesIn - While solving the dataflow for a function, we assume
1038/// that branches on undef values cannot reach any of their successors.
1039/// However, this is not a safe assumption. After we solve dataflow, this
1040/// method should be use to handle this. If this returns true, the solver
1041/// should be rerun.
Chris Lattneraf170962006-10-22 05:59:17 +00001042///
1043/// This method handles this by finding an unresolved branch and marking it one
1044/// of the edges from the block as being feasible, even though the condition
1045/// doesn't say it would otherwise be. This allows SCCP to find the rest of the
1046/// CFG and only slightly pessimizes the analysis results (by marking one,
1047/// potentially unfeasible, edge feasible). This cannot usefully modify the
1048/// constraints on the condition of the branch, as that would impact other users
1049/// of the value.
Chris Lattner7285f432004-12-10 20:41:50 +00001050bool SCCPSolver::ResolveBranchesIn(Function &F) {
Chris Lattneraf170962006-10-22 05:59:17 +00001051 for (Function::iterator BB = F.begin(), E = F.end(); BB != E; ++BB) {
1052 if (!BBExecutable.count(BB))
1053 continue;
1054
1055 TerminatorInst *TI = BB->getTerminator();
1056 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
1057 if (!BI->isConditional()) continue;
1058 if (!getValueState(BI->getCondition()).isUndefined())
1059 continue;
1060 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
1061 if (!getValueState(SI->getCondition()).isUndefined())
1062 continue;
1063 } else {
1064 continue;
Chris Lattner7285f432004-12-10 20:41:50 +00001065 }
Chris Lattneraf170962006-10-22 05:59:17 +00001066
1067 // If the edge to the first successor isn't thought to be feasible yet, mark
1068 // it so now.
1069 if (KnownFeasibleEdges.count(Edge(BB, TI->getSuccessor(0))))
1070 continue;
1071
1072 // Otherwise, it isn't already thought to be feasible. Mark it as such now
1073 // and return. This will make other blocks reachable, which will allow new
1074 // values to be discovered and existing ones to be moved in the lattice.
1075 markEdgeExecutable(BB, TI->getSuccessor(0));
1076 return true;
1077 }
Chris Lattner2f687fd2004-12-11 06:05:53 +00001078
Chris Lattneraf170962006-10-22 05:59:17 +00001079 return false;
Chris Lattner7285f432004-12-10 20:41:50 +00001080}
1081
Chris Lattner074be1f2004-11-15 04:44:20 +00001082
1083namespace {
Chris Lattner700b8732006-12-06 17:46:33 +00001084 Statistic NumInstRemoved("sccp", "Number of instructions removed");
1085 Statistic NumDeadBlocks ("sccp", "Number of basic blocks unreachable");
Chris Lattnerb4394642004-12-10 08:02:06 +00001086
Chris Lattner1890f942004-11-15 07:15:04 +00001087 //===--------------------------------------------------------------------===//
Chris Lattner074be1f2004-11-15 04:44:20 +00001088 //
Chris Lattner1890f942004-11-15 07:15:04 +00001089 /// SCCP Class - This class uses the SCCPSolver to implement a per-function
1090 /// Sparse Conditional COnstant Propagator.
1091 ///
1092 struct SCCP : public FunctionPass {
1093 // runOnFunction - Run the Sparse Conditional Constant Propagation
1094 // algorithm, and return true if the function was modified.
1095 //
1096 bool runOnFunction(Function &F);
Misha Brukmanb1c93172005-04-21 23:48:37 +00001097
Chris Lattner1890f942004-11-15 07:15:04 +00001098 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
1099 AU.setPreservesCFG();
1100 }
1101 };
Chris Lattner074be1f2004-11-15 04:44:20 +00001102
Chris Lattnerc2d3d312006-08-27 22:42:52 +00001103 RegisterPass<SCCP> X("sccp", "Sparse Conditional Constant Propagation");
Chris Lattner074be1f2004-11-15 04:44:20 +00001104} // end anonymous namespace
1105
1106
1107// createSCCPPass - This is the public interface to this file...
1108FunctionPass *llvm::createSCCPPass() {
1109 return new SCCP();
1110}
1111
1112
Chris Lattner074be1f2004-11-15 04:44:20 +00001113// runOnFunction() - Run the Sparse Conditional Constant Propagation algorithm,
1114// and return true if the function was modified.
1115//
1116bool SCCP::runOnFunction(Function &F) {
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001117 DOUT << "SCCP on function '" << F.getName() << "'\n";
Chris Lattner074be1f2004-11-15 04:44:20 +00001118 SCCPSolver Solver;
1119
1120 // Mark the first block of the function as being executable.
1121 Solver.MarkBlockExecutable(F.begin());
1122
Chris Lattnerd18c16b2004-11-15 05:45:33 +00001123 // Mark all arguments to the function as being overdefined.
1124 hash_map<Value*, LatticeVal> &Values = Solver.getValueMapping();
Chris Lattner531f9e92005-03-15 04:54:21 +00001125 for (Function::arg_iterator AI = F.arg_begin(), E = F.arg_end(); AI != E; ++AI)
Chris Lattnerd18c16b2004-11-15 05:45:33 +00001126 Values[AI].markOverdefined();
1127
Chris Lattner074be1f2004-11-15 04:44:20 +00001128 // Solve for constants.
Chris Lattner7285f432004-12-10 20:41:50 +00001129 bool ResolvedBranches = true;
1130 while (ResolvedBranches) {
1131 Solver.Solve();
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001132 DOUT << "RESOLVING UNDEF BRANCHES\n";
Chris Lattner7285f432004-12-10 20:41:50 +00001133 ResolvedBranches = Solver.ResolveBranchesIn(F);
1134 }
Chris Lattner074be1f2004-11-15 04:44:20 +00001135
Chris Lattnerd18c16b2004-11-15 05:45:33 +00001136 bool MadeChanges = false;
1137
1138 // If we decided that there are basic blocks that are dead in this function,
1139 // delete their contents now. Note that we cannot actually delete the blocks,
1140 // as we cannot modify the CFG of the function.
1141 //
1142 std::set<BasicBlock*> &ExecutableBBs = Solver.getExecutableBlocks();
1143 for (Function::iterator BB = F.begin(), E = F.end(); BB != E; ++BB)
1144 if (!ExecutableBBs.count(BB)) {
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001145 DOUT << " BasicBlock Dead:" << *BB;
Chris Lattner9a038a32004-11-15 07:02:42 +00001146 ++NumDeadBlocks;
1147
Chris Lattnerd18c16b2004-11-15 05:45:33 +00001148 // Delete the instructions backwards, as it has a reduced likelihood of
1149 // having to update as many def-use and use-def chains.
1150 std::vector<Instruction*> Insts;
1151 for (BasicBlock::iterator I = BB->begin(), E = BB->getTerminator();
1152 I != E; ++I)
1153 Insts.push_back(I);
1154 while (!Insts.empty()) {
1155 Instruction *I = Insts.back();
1156 Insts.pop_back();
1157 if (!I->use_empty())
1158 I->replaceAllUsesWith(UndefValue::get(I->getType()));
1159 BB->getInstList().erase(I);
1160 MadeChanges = true;
Chris Lattner9a038a32004-11-15 07:02:42 +00001161 ++NumInstRemoved;
Chris Lattnerd18c16b2004-11-15 05:45:33 +00001162 }
Chris Lattnerb4394642004-12-10 08:02:06 +00001163 } else {
1164 // Iterate over all of the instructions in a function, replacing them with
1165 // constants if we have found them to be of constant values.
1166 //
1167 for (BasicBlock::iterator BI = BB->begin(), E = BB->end(); BI != E; ) {
1168 Instruction *Inst = BI++;
1169 if (Inst->getType() != Type::VoidTy) {
1170 LatticeVal &IV = Values[Inst];
1171 if (IV.isConstant() || IV.isUndefined() &&
1172 !isa<TerminatorInst>(Inst)) {
1173 Constant *Const = IV.isConstant()
1174 ? IV.getConstant() : UndefValue::get(Inst->getType());
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001175 DOUT << " Constant: " << *Const << " = " << *Inst;
Misha Brukmanb1c93172005-04-21 23:48:37 +00001176
Chris Lattnerb4394642004-12-10 08:02:06 +00001177 // Replaces all of the uses of a variable with uses of the constant.
1178 Inst->replaceAllUsesWith(Const);
Misha Brukmanb1c93172005-04-21 23:48:37 +00001179
Chris Lattnerb4394642004-12-10 08:02:06 +00001180 // Delete the instruction.
1181 BB->getInstList().erase(Inst);
Misha Brukmanb1c93172005-04-21 23:48:37 +00001182
Chris Lattnerb4394642004-12-10 08:02:06 +00001183 // Hey, we just changed something!
1184 MadeChanges = true;
1185 ++NumInstRemoved;
Chris Lattner074be1f2004-11-15 04:44:20 +00001186 }
Chris Lattner074be1f2004-11-15 04:44:20 +00001187 }
1188 }
1189 }
1190
1191 return MadeChanges;
1192}
Chris Lattnerb4394642004-12-10 08:02:06 +00001193
1194namespace {
Chris Lattner700b8732006-12-06 17:46:33 +00001195 Statistic IPNumInstRemoved("ipsccp", "Number of instructions removed");
1196 Statistic IPNumDeadBlocks ("ipsccp", "Number of basic blocks unreachable");
1197 Statistic IPNumArgsElimed ("ipsccp",
Chris Lattnerb4394642004-12-10 08:02:06 +00001198 "Number of arguments constant propagated");
Chris Lattner700b8732006-12-06 17:46:33 +00001199 Statistic IPNumGlobalConst("ipsccp",
Chris Lattner91dbae62004-12-11 05:15:59 +00001200 "Number of globals found to be constant");
Chris Lattnerb4394642004-12-10 08:02:06 +00001201
1202 //===--------------------------------------------------------------------===//
1203 //
1204 /// IPSCCP Class - This class implements interprocedural Sparse Conditional
1205 /// Constant Propagation.
1206 ///
1207 struct IPSCCP : public ModulePass {
1208 bool runOnModule(Module &M);
1209 };
1210
Chris Lattnerc2d3d312006-08-27 22:42:52 +00001211 RegisterPass<IPSCCP>
Chris Lattnerb4394642004-12-10 08:02:06 +00001212 Y("ipsccp", "Interprocedural Sparse Conditional Constant Propagation");
1213} // end anonymous namespace
1214
1215// createIPSCCPPass - This is the public interface to this file...
1216ModulePass *llvm::createIPSCCPPass() {
1217 return new IPSCCP();
1218}
1219
1220
1221static bool AddressIsTaken(GlobalValue *GV) {
Chris Lattner8cb10a12005-04-19 19:16:19 +00001222 // Delete any dead constantexpr klingons.
1223 GV->removeDeadConstantUsers();
1224
Chris Lattnerb4394642004-12-10 08:02:06 +00001225 for (Value::use_iterator UI = GV->use_begin(), E = GV->use_end();
1226 UI != E; ++UI)
1227 if (StoreInst *SI = dyn_cast<StoreInst>(*UI)) {
Chris Lattner91dbae62004-12-11 05:15:59 +00001228 if (SI->getOperand(0) == GV || SI->isVolatile())
1229 return true; // Storing addr of GV.
Chris Lattnerb4394642004-12-10 08:02:06 +00001230 } else if (isa<InvokeInst>(*UI) || isa<CallInst>(*UI)) {
1231 // Make sure we are calling the function, not passing the address.
1232 CallSite CS = CallSite::get(cast<Instruction>(*UI));
1233 for (CallSite::arg_iterator AI = CS.arg_begin(),
1234 E = CS.arg_end(); AI != E; ++AI)
1235 if (*AI == GV)
1236 return true;
Chris Lattner91dbae62004-12-11 05:15:59 +00001237 } else if (LoadInst *LI = dyn_cast<LoadInst>(*UI)) {
1238 if (LI->isVolatile())
1239 return true;
1240 } else {
Chris Lattnerb4394642004-12-10 08:02:06 +00001241 return true;
1242 }
1243 return false;
1244}
1245
1246bool IPSCCP::runOnModule(Module &M) {
1247 SCCPSolver Solver;
1248
1249 // Loop over all functions, marking arguments to those with their addresses
1250 // taken or that are external as overdefined.
1251 //
1252 hash_map<Value*, LatticeVal> &Values = Solver.getValueMapping();
1253 for (Module::iterator F = M.begin(), E = M.end(); F != E; ++F)
1254 if (!F->hasInternalLinkage() || AddressIsTaken(F)) {
1255 if (!F->isExternal())
1256 Solver.MarkBlockExecutable(F->begin());
Chris Lattner8cb10a12005-04-19 19:16:19 +00001257 for (Function::arg_iterator AI = F->arg_begin(), E = F->arg_end();
1258 AI != E; ++AI)
Chris Lattnerb4394642004-12-10 08:02:06 +00001259 Values[AI].markOverdefined();
1260 } else {
1261 Solver.AddTrackedFunction(F);
1262 }
1263
Chris Lattner91dbae62004-12-11 05:15:59 +00001264 // Loop over global variables. We inform the solver about any internal global
1265 // variables that do not have their 'addresses taken'. If they don't have
1266 // their addresses taken, we can propagate constants through them.
Chris Lattner8cb10a12005-04-19 19:16:19 +00001267 for (Module::global_iterator G = M.global_begin(), E = M.global_end();
1268 G != E; ++G)
Chris Lattner91dbae62004-12-11 05:15:59 +00001269 if (!G->isConstant() && G->hasInternalLinkage() && !AddressIsTaken(G))
1270 Solver.TrackValueOfGlobalVariable(G);
1271
Chris Lattnerb4394642004-12-10 08:02:06 +00001272 // Solve for constants.
Chris Lattner7285f432004-12-10 20:41:50 +00001273 bool ResolvedBranches = true;
1274 while (ResolvedBranches) {
1275 Solver.Solve();
1276
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001277 DOUT << "RESOLVING UNDEF BRANCHES\n";
Chris Lattner7285f432004-12-10 20:41:50 +00001278 ResolvedBranches = false;
1279 for (Module::iterator F = M.begin(), E = M.end(); F != E; ++F)
1280 ResolvedBranches |= Solver.ResolveBranchesIn(*F);
1281 }
Chris Lattnerb4394642004-12-10 08:02:06 +00001282
1283 bool MadeChanges = false;
1284
1285 // Iterate over all of the instructions in the module, replacing them with
1286 // constants if we have found them to be of constant values.
1287 //
1288 std::set<BasicBlock*> &ExecutableBBs = Solver.getExecutableBlocks();
1289 for (Module::iterator F = M.begin(), E = M.end(); F != E; ++F) {
Chris Lattner8cb10a12005-04-19 19:16:19 +00001290 for (Function::arg_iterator AI = F->arg_begin(), E = F->arg_end();
1291 AI != E; ++AI)
Chris Lattnerb4394642004-12-10 08:02:06 +00001292 if (!AI->use_empty()) {
1293 LatticeVal &IV = Values[AI];
1294 if (IV.isConstant() || IV.isUndefined()) {
1295 Constant *CST = IV.isConstant() ?
1296 IV.getConstant() : UndefValue::get(AI->getType());
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001297 DOUT << "*** Arg " << *AI << " = " << *CST <<"\n";
Misha Brukmanb1c93172005-04-21 23:48:37 +00001298
Chris Lattnerb4394642004-12-10 08:02:06 +00001299 // Replaces all of the uses of a variable with uses of the
1300 // constant.
1301 AI->replaceAllUsesWith(CST);
1302 ++IPNumArgsElimed;
1303 }
1304 }
1305
Chris Lattnerbae4b642004-12-10 22:29:08 +00001306 std::vector<BasicBlock*> BlocksToErase;
Chris Lattnerb4394642004-12-10 08:02:06 +00001307 for (Function::iterator BB = F->begin(), E = F->end(); BB != E; ++BB)
1308 if (!ExecutableBBs.count(BB)) {
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001309 DOUT << " BasicBlock Dead:" << *BB;
Chris Lattnerb4394642004-12-10 08:02:06 +00001310 ++IPNumDeadBlocks;
Chris Lattner7285f432004-12-10 20:41:50 +00001311
Chris Lattnerb4394642004-12-10 08:02:06 +00001312 // Delete the instructions backwards, as it has a reduced likelihood of
1313 // having to update as many def-use and use-def chains.
1314 std::vector<Instruction*> Insts;
Chris Lattnerbae4b642004-12-10 22:29:08 +00001315 TerminatorInst *TI = BB->getTerminator();
1316 for (BasicBlock::iterator I = BB->begin(), E = TI; I != E; ++I)
Chris Lattnerb4394642004-12-10 08:02:06 +00001317 Insts.push_back(I);
Chris Lattnerbae4b642004-12-10 22:29:08 +00001318
Chris Lattnerb4394642004-12-10 08:02:06 +00001319 while (!Insts.empty()) {
1320 Instruction *I = Insts.back();
1321 Insts.pop_back();
1322 if (!I->use_empty())
1323 I->replaceAllUsesWith(UndefValue::get(I->getType()));
1324 BB->getInstList().erase(I);
1325 MadeChanges = true;
1326 ++IPNumInstRemoved;
1327 }
Misha Brukmanb1c93172005-04-21 23:48:37 +00001328
Chris Lattnerbae4b642004-12-10 22:29:08 +00001329 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i) {
1330 BasicBlock *Succ = TI->getSuccessor(i);
1331 if (Succ->begin() != Succ->end() && isa<PHINode>(Succ->begin()))
1332 TI->getSuccessor(i)->removePredecessor(BB);
1333 }
Chris Lattner99e12952004-12-11 02:53:57 +00001334 if (!TI->use_empty())
1335 TI->replaceAllUsesWith(UndefValue::get(TI->getType()));
Chris Lattnerbae4b642004-12-10 22:29:08 +00001336 BB->getInstList().erase(TI);
1337
Chris Lattner8525ebe2004-12-11 05:32:19 +00001338 if (&*BB != &F->front())
1339 BlocksToErase.push_back(BB);
1340 else
1341 new UnreachableInst(BB);
1342
Chris Lattnerb4394642004-12-10 08:02:06 +00001343 } else {
1344 for (BasicBlock::iterator BI = BB->begin(), E = BB->end(); BI != E; ) {
1345 Instruction *Inst = BI++;
1346 if (Inst->getType() != Type::VoidTy) {
1347 LatticeVal &IV = Values[Inst];
1348 if (IV.isConstant() || IV.isUndefined() &&
1349 !isa<TerminatorInst>(Inst)) {
1350 Constant *Const = IV.isConstant()
1351 ? IV.getConstant() : UndefValue::get(Inst->getType());
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001352 DOUT << " Constant: " << *Const << " = " << *Inst;
Misha Brukmanb1c93172005-04-21 23:48:37 +00001353
Chris Lattnerb4394642004-12-10 08:02:06 +00001354 // Replaces all of the uses of a variable with uses of the
1355 // constant.
1356 Inst->replaceAllUsesWith(Const);
Misha Brukmanb1c93172005-04-21 23:48:37 +00001357
Chris Lattnerb4394642004-12-10 08:02:06 +00001358 // Delete the instruction.
1359 if (!isa<TerminatorInst>(Inst) && !isa<CallInst>(Inst))
1360 BB->getInstList().erase(Inst);
1361
1362 // Hey, we just changed something!
1363 MadeChanges = true;
1364 ++IPNumInstRemoved;
1365 }
1366 }
1367 }
1368 }
Chris Lattnerbae4b642004-12-10 22:29:08 +00001369
1370 // Now that all instructions in the function are constant folded, erase dead
1371 // blocks, because we can now use ConstantFoldTerminator to get rid of
1372 // in-edges.
1373 for (unsigned i = 0, e = BlocksToErase.size(); i != e; ++i) {
1374 // If there are any PHI nodes in this successor, drop entries for BB now.
1375 BasicBlock *DeadBB = BlocksToErase[i];
1376 while (!DeadBB->use_empty()) {
1377 Instruction *I = cast<Instruction>(DeadBB->use_back());
1378 bool Folded = ConstantFoldTerminator(I->getParent());
Chris Lattnerfe7b6ef2006-10-23 18:57:02 +00001379 if (!Folded) {
1380 // The constant folder may not have been able to fold the termiantor
1381 // if this is a branch or switch on undef. Fold it manually as a
1382 // branch to the first successor.
1383 if (BranchInst *BI = dyn_cast<BranchInst>(I)) {
1384 assert(BI->isConditional() && isa<UndefValue>(BI->getCondition()) &&
1385 "Branch should be foldable!");
1386 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(I)) {
1387 assert(isa<UndefValue>(SI->getCondition()) && "Switch should fold");
1388 } else {
1389 assert(0 && "Didn't fold away reference to block!");
1390 }
1391
1392 // Make this an uncond branch to the first successor.
1393 TerminatorInst *TI = I->getParent()->getTerminator();
1394 new BranchInst(TI->getSuccessor(0), TI);
1395
1396 // Remove entries in successor phi nodes to remove edges.
1397 for (unsigned i = 1, e = TI->getNumSuccessors(); i != e; ++i)
1398 TI->getSuccessor(i)->removePredecessor(TI->getParent());
1399
1400 // Remove the old terminator.
1401 TI->eraseFromParent();
1402 }
Chris Lattnerbae4b642004-12-10 22:29:08 +00001403 }
Misha Brukmanb1c93172005-04-21 23:48:37 +00001404
Chris Lattnerbae4b642004-12-10 22:29:08 +00001405 // Finally, delete the basic block.
1406 F->getBasicBlockList().erase(DeadBB);
1407 }
Chris Lattnerb4394642004-12-10 08:02:06 +00001408 }
Chris Lattner99e12952004-12-11 02:53:57 +00001409
1410 // If we inferred constant or undef return values for a function, we replaced
1411 // all call uses with the inferred value. This means we don't need to bother
1412 // actually returning anything from the function. Replace all return
1413 // instructions with return undef.
1414 const hash_map<Function*, LatticeVal> &RV =Solver.getTrackedFunctionRetVals();
1415 for (hash_map<Function*, LatticeVal>::const_iterator I = RV.begin(),
1416 E = RV.end(); I != E; ++I)
1417 if (!I->second.isOverdefined() &&
1418 I->first->getReturnType() != Type::VoidTy) {
1419 Function *F = I->first;
1420 for (Function::iterator BB = F->begin(), E = F->end(); BB != E; ++BB)
1421 if (ReturnInst *RI = dyn_cast<ReturnInst>(BB->getTerminator()))
1422 if (!isa<UndefValue>(RI->getOperand(0)))
1423 RI->setOperand(0, UndefValue::get(F->getReturnType()));
1424 }
Chris Lattner91dbae62004-12-11 05:15:59 +00001425
1426 // If we infered constant or undef values for globals variables, we can delete
1427 // the global and any stores that remain to it.
1428 const hash_map<GlobalVariable*, LatticeVal> &TG = Solver.getTrackedGlobals();
1429 for (hash_map<GlobalVariable*, LatticeVal>::const_iterator I = TG.begin(),
1430 E = TG.end(); I != E; ++I) {
1431 GlobalVariable *GV = I->first;
1432 assert(!I->second.isOverdefined() &&
1433 "Overdefined values should have been taken out of the map!");
Bill Wendling5dbf43c2006-11-26 09:46:52 +00001434 DOUT << "Found that GV '" << GV->getName()<< "' is constant!\n";
Chris Lattner91dbae62004-12-11 05:15:59 +00001435 while (!GV->use_empty()) {
1436 StoreInst *SI = cast<StoreInst>(GV->use_back());
1437 SI->eraseFromParent();
1438 }
1439 M.getGlobalList().erase(GV);
Chris Lattner2f687fd2004-12-11 06:05:53 +00001440 ++IPNumGlobalConst;
Chris Lattner91dbae62004-12-11 05:15:59 +00001441 }
Misha Brukmanb1c93172005-04-21 23:48:37 +00001442
Chris Lattnerb4394642004-12-10 08:02:06 +00001443 return MadeChanges;
1444}