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Chris Lattner18f16092004-04-19 18:07:02 +00001//===-- LoopUnswitch.cpp - Hoist loop-invariant conditionals in loop ------===//
Misha Brukmanfd939082005-04-21 23:48:37 +00002//
Chris Lattner18f16092004-04-19 18:07:02 +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 Brukmanfd939082005-04-21 23:48:37 +00007//
Chris Lattner18f16092004-04-19 18:07:02 +00008//===----------------------------------------------------------------------===//
9//
10// This pass transforms loops that contain branches on loop-invariant conditions
11// to have multiple loops. For example, it turns the left into the right code:
12//
13// for (...) if (lic)
14// A for (...)
15// if (lic) A; B; C
16// B else
17// C for (...)
18// A; C
19//
20// This can increase the size of the code exponentially (doubling it every time
21// a loop is unswitched) so we only unswitch if the resultant code will be
22// smaller than a threshold.
23//
24// This pass expects LICM to be run before it to hoist invariant conditions out
25// of the loop, to make the unswitching opportunity obvious.
26//
27//===----------------------------------------------------------------------===//
28
29#define DEBUG_TYPE "loop-unswitch"
30#include "llvm/Transforms/Scalar.h"
31#include "llvm/Constants.h"
Reid Spencerc1030572007-01-19 21:13:56 +000032#include "llvm/DerivedTypes.h"
Chris Lattner18f16092004-04-19 18:07:02 +000033#include "llvm/Function.h"
34#include "llvm/Instructions.h"
Chris Lattner79066fa2007-01-30 23:46:24 +000035#include "llvm/Analysis/ConstantFolding.h"
Chris Lattner18f16092004-04-19 18:07:02 +000036#include "llvm/Analysis/LoopInfo.h"
37#include "llvm/Transforms/Utils/Cloning.h"
38#include "llvm/Transforms/Utils/Local.h"
Chris Lattner81be2e92006-02-10 19:08:15 +000039#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000040#include "llvm/ADT/Statistic.h"
Chris Lattnera6fc94b2006-02-18 07:57:38 +000041#include "llvm/ADT/PostOrderIterator.h"
Chris Lattnere487abb2006-02-09 20:15:48 +000042#include "llvm/Support/Debug.h"
43#include "llvm/Support/CommandLine.h"
Alkis Evlogimenos20aa4742004-09-03 18:19:51 +000044#include <algorithm>
Chris Lattner2f4b8982006-02-09 19:14:52 +000045#include <set>
Chris Lattner18f16092004-04-19 18:07:02 +000046using namespace llvm;
47
Chris Lattner0e5f4992006-12-19 21:40:18 +000048STATISTIC(NumBranches, "Number of branches unswitched");
49STATISTIC(NumSwitches, "Number of switches unswitched");
50STATISTIC(NumSelects , "Number of selects unswitched");
51STATISTIC(NumTrivial , "Number of unswitches that are trivial");
52STATISTIC(NumSimplify, "Number of simplifications of unswitched code");
53
Chris Lattner18f16092004-04-19 18:07:02 +000054namespace {
Chris Lattnere487abb2006-02-09 20:15:48 +000055 cl::opt<unsigned>
56 Threshold("loop-unswitch-threshold", cl::desc("Max loop size to unswitch"),
57 cl::init(10), cl::Hidden);
58
Chris Lattner18f16092004-04-19 18:07:02 +000059 class LoopUnswitch : public FunctionPass {
60 LoopInfo *LI; // Loop information
Chris Lattnera6fc94b2006-02-18 07:57:38 +000061
62 // LoopProcessWorklist - List of loops we need to process.
63 std::vector<Loop*> LoopProcessWorklist;
Chris Lattner18f16092004-04-19 18:07:02 +000064 public:
65 virtual bool runOnFunction(Function &F);
66 bool visitLoop(Loop *L);
67
68 /// This transformation requires natural loop information & requires that
69 /// loop preheaders be inserted into the CFG...
70 ///
71 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
72 AU.addRequiredID(LoopSimplifyID);
Chris Lattnerf4f5f4e2006-02-09 22:15:42 +000073 AU.addPreservedID(LoopSimplifyID);
Chris Lattner18f16092004-04-19 18:07:02 +000074 AU.addRequired<LoopInfo>();
75 AU.addPreserved<LoopInfo>();
Owen Anderson6edf3992006-06-12 21:49:21 +000076 AU.addRequiredID(LCSSAID);
77 AU.addPreservedID(LCSSAID);
Chris Lattner18f16092004-04-19 18:07:02 +000078 }
79
80 private:
Chris Lattnera6fc94b2006-02-18 07:57:38 +000081 /// RemoveLoopFromWorklist - If the specified loop is on the loop worklist,
82 /// remove it.
83 void RemoveLoopFromWorklist(Loop *L) {
84 std::vector<Loop*>::iterator I = std::find(LoopProcessWorklist.begin(),
85 LoopProcessWorklist.end(), L);
86 if (I != LoopProcessWorklist.end())
87 LoopProcessWorklist.erase(I);
88 }
89
Chris Lattnerc2358092006-02-11 00:43:37 +000090 bool UnswitchIfProfitable(Value *LoopCond, Constant *Val,Loop *L);
Chris Lattner4c41d492006-02-10 01:24:09 +000091 unsigned getLoopUnswitchCost(Loop *L, Value *LIC);
Chris Lattnerf4412d82006-02-18 01:27:45 +000092 void UnswitchTrivialCondition(Loop *L, Value *Cond, Constant *Val,
Chris Lattnerbd28e3f2006-02-22 06:37:14 +000093 BasicBlock *ExitBlock);
Chris Lattnera6fc94b2006-02-18 07:57:38 +000094 void UnswitchNontrivialCondition(Value *LIC, Constant *OnVal, Loop *L);
Chris Lattnerb2bc3152006-02-10 23:16:39 +000095 BasicBlock *SplitEdge(BasicBlock *From, BasicBlock *To);
Chris Lattner4e132392006-02-15 22:03:36 +000096 BasicBlock *SplitBlock(BasicBlock *Old, Instruction *SplitPt);
Chris Lattnera6fc94b2006-02-18 07:57:38 +000097
98 void RewriteLoopBodyWithConditionConstant(Loop *L, Value *LIC,
99 Constant *Val, bool isEqual);
100
101 void SimplifyCode(std::vector<Instruction*> &Worklist);
Chris Lattnerdb410242006-02-18 02:42:34 +0000102 void RemoveBlockIfDead(BasicBlock *BB,
103 std::vector<Instruction*> &Worklist);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000104 void RemoveLoopFromHierarchy(Loop *L);
Chris Lattner18f16092004-04-19 18:07:02 +0000105 };
Chris Lattner7f8897f2006-08-27 22:42:52 +0000106 RegisterPass<LoopUnswitch> X("loop-unswitch", "Unswitch loops");
Chris Lattner18f16092004-04-19 18:07:02 +0000107}
108
Jeff Cohenf5e58f82005-01-06 05:47:18 +0000109FunctionPass *llvm::createLoopUnswitchPass() { return new LoopUnswitch(); }
Chris Lattner18f16092004-04-19 18:07:02 +0000110
111bool LoopUnswitch::runOnFunction(Function &F) {
112 bool Changed = false;
113 LI = &getAnalysis<LoopInfo>();
Chris Lattner18f16092004-04-19 18:07:02 +0000114
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000115 // Populate the worklist of loops to process in post-order.
116 for (LoopInfo::iterator I = LI->begin(), E = LI->end(); I != E; ++I)
117 for (po_iterator<Loop*> LI = po_begin(*I), E = po_end(*I); LI != E; ++LI)
118 LoopProcessWorklist.push_back(*LI);
Chris Lattner18f16092004-04-19 18:07:02 +0000119
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000120 // Process the loops in worklist order, this is a post-order visitation of
121 // the loops. We use a worklist of loops so that loops can be removed at any
122 // time if they are deleted (e.g. the backedge of a loop is removed).
123 while (!LoopProcessWorklist.empty()) {
124 Loop *L = LoopProcessWorklist.back();
125 LoopProcessWorklist.pop_back();
126 Changed |= visitLoop(L);
127 }
128
129 return Changed;
130}
131
132/// FindLIVLoopCondition - Cond is a condition that occurs in L. If it is
133/// invariant in the loop, or has an invariant piece, return the invariant.
134/// Otherwise, return null.
135static Value *FindLIVLoopCondition(Value *Cond, Loop *L, bool &Changed) {
136 // Constants should be folded, not unswitched on!
137 if (isa<Constant>(Cond)) return false;
138
139 // TODO: Handle: br (VARIANT|INVARIANT).
140 // TODO: Hoist simple expressions out of loops.
141 if (L->isLoopInvariant(Cond)) return Cond;
142
143 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(Cond))
144 if (BO->getOpcode() == Instruction::And ||
145 BO->getOpcode() == Instruction::Or) {
146 // If either the left or right side is invariant, we can unswitch on this,
147 // which will cause the branch to go away in one loop and the condition to
148 // simplify in the other one.
149 if (Value *LHS = FindLIVLoopCondition(BO->getOperand(0), L, Changed))
150 return LHS;
151 if (Value *RHS = FindLIVLoopCondition(BO->getOperand(1), L, Changed))
152 return RHS;
153 }
154
155 return 0;
156}
157
158bool LoopUnswitch::visitLoop(Loop *L) {
Owen Anderson6edf3992006-06-12 21:49:21 +0000159 assert(L->isLCSSAForm());
160
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000161 bool Changed = false;
162
163 // Loop over all of the basic blocks in the loop. If we find an interior
164 // block that is branching on a loop-invariant condition, we can unswitch this
165 // loop.
166 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
167 I != E; ++I) {
168 TerminatorInst *TI = (*I)->getTerminator();
169 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
170 // If this isn't branching on an invariant condition, we can't unswitch
171 // it.
172 if (BI->isConditional()) {
173 // See if this, or some part of it, is loop invariant. If so, we can
174 // unswitch on it if we desire.
175 Value *LoopCond = FindLIVLoopCondition(BI->getCondition(), L, Changed);
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +0000176 if (LoopCond && UnswitchIfProfitable(LoopCond, ConstantInt::getTrue(),
Chris Lattner47811b72006-09-28 23:35:22 +0000177 L)) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000178 ++NumBranches;
179 return true;
180 }
181 }
182 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
183 Value *LoopCond = FindLIVLoopCondition(SI->getCondition(), L, Changed);
184 if (LoopCond && SI->getNumCases() > 1) {
185 // Find a value to unswitch on:
186 // FIXME: this should chose the most expensive case!
187 Constant *UnswitchVal = SI->getCaseValue(1);
188 if (UnswitchIfProfitable(LoopCond, UnswitchVal, L)) {
189 ++NumSwitches;
190 return true;
191 }
192 }
193 }
194
195 // Scan the instructions to check for unswitchable values.
196 for (BasicBlock::iterator BBI = (*I)->begin(), E = (*I)->end();
197 BBI != E; ++BBI)
198 if (SelectInst *SI = dyn_cast<SelectInst>(BBI)) {
199 Value *LoopCond = FindLIVLoopCondition(SI->getCondition(), L, Changed);
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +0000200 if (LoopCond && UnswitchIfProfitable(LoopCond, ConstantInt::getTrue(),
Chris Lattner47811b72006-09-28 23:35:22 +0000201 L)) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000202 ++NumSelects;
203 return true;
204 }
205 }
206 }
Owen Anderson6edf3992006-06-12 21:49:21 +0000207
208 assert(L->isLCSSAForm());
209
Chris Lattner18f16092004-04-19 18:07:02 +0000210 return Changed;
211}
212
Chris Lattner4e132392006-02-15 22:03:36 +0000213/// isTrivialLoopExitBlock - Check to see if all paths from BB either:
214/// 1. Exit the loop with no side effects.
215/// 2. Branch to the latch block with no side-effects.
216///
217/// If these conditions are true, we return true and set ExitBB to the block we
218/// exit through.
219///
220static bool isTrivialLoopExitBlockHelper(Loop *L, BasicBlock *BB,
221 BasicBlock *&ExitBB,
222 std::set<BasicBlock*> &Visited) {
Chris Lattner0017d482006-02-17 06:39:56 +0000223 if (!Visited.insert(BB).second) {
224 // Already visited and Ok, end of recursion.
225 return true;
226 } else if (!L->contains(BB)) {
227 // Otherwise, this is a loop exit, this is fine so long as this is the
228 // first exit.
229 if (ExitBB != 0) return false;
230 ExitBB = BB;
231 return true;
232 }
233
234 // Otherwise, this is an unvisited intra-loop node. Check all successors.
Chris Lattner4e132392006-02-15 22:03:36 +0000235 for (succ_iterator SI = succ_begin(BB), E = succ_end(BB); SI != E; ++SI) {
Chris Lattner0017d482006-02-17 06:39:56 +0000236 // Check to see if the successor is a trivial loop exit.
237 if (!isTrivialLoopExitBlockHelper(L, *SI, ExitBB, Visited))
238 return false;
Chris Lattner708e1a52006-02-10 02:30:37 +0000239 }
Chris Lattner4e132392006-02-15 22:03:36 +0000240
241 // Okay, everything after this looks good, check to make sure that this block
242 // doesn't include any side effects.
Chris Lattnera48654e2006-02-15 22:52:05 +0000243 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
Chris Lattner4e132392006-02-15 22:03:36 +0000244 if (I->mayWriteToMemory())
245 return false;
246
247 return true;
Chris Lattner708e1a52006-02-10 02:30:37 +0000248}
249
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000250/// isTrivialLoopExitBlock - Return true if the specified block unconditionally
251/// leads to an exit from the specified loop, and has no side-effects in the
252/// process. If so, return the block that is exited to, otherwise return null.
Chris Lattner4e132392006-02-15 22:03:36 +0000253static BasicBlock *isTrivialLoopExitBlock(Loop *L, BasicBlock *BB) {
254 std::set<BasicBlock*> Visited;
255 Visited.insert(L->getHeader()); // Branches to header are ok.
Chris Lattner4e132392006-02-15 22:03:36 +0000256 BasicBlock *ExitBB = 0;
257 if (isTrivialLoopExitBlockHelper(L, BB, ExitBB, Visited))
258 return ExitBB;
259 return 0;
260}
Chris Lattner708e1a52006-02-10 02:30:37 +0000261
Chris Lattner4c41d492006-02-10 01:24:09 +0000262/// IsTrivialUnswitchCondition - Check to see if this unswitch condition is
263/// trivial: that is, that the condition controls whether or not the loop does
264/// anything at all. If this is a trivial condition, unswitching produces no
265/// code duplications (equivalently, it produces a simpler loop and a new empty
266/// loop, which gets deleted).
267///
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000268/// If this is a trivial condition, return true, otherwise return false. When
269/// returning true, this sets Cond and Val to the condition that controls the
270/// trivial condition: when Cond dynamically equals Val, the loop is known to
271/// exit. Finally, this sets LoopExit to the BB that the loop exits to when
272/// Cond == Val.
273///
274static bool IsTrivialUnswitchCondition(Loop *L, Value *Cond, Constant **Val = 0,
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000275 BasicBlock **LoopExit = 0) {
Chris Lattner4c41d492006-02-10 01:24:09 +0000276 BasicBlock *Header = L->getHeader();
Chris Lattnera48654e2006-02-15 22:52:05 +0000277 TerminatorInst *HeaderTerm = Header->getTerminator();
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000278
Chris Lattnera48654e2006-02-15 22:52:05 +0000279 BasicBlock *LoopExitBB = 0;
280 if (BranchInst *BI = dyn_cast<BranchInst>(HeaderTerm)) {
281 // If the header block doesn't end with a conditional branch on Cond, we
282 // can't handle it.
283 if (!BI->isConditional() || BI->getCondition() != Cond)
284 return false;
Chris Lattner4c41d492006-02-10 01:24:09 +0000285
Chris Lattnera48654e2006-02-15 22:52:05 +0000286 // Check to see if a successor of the branch is guaranteed to go to the
287 // latch block or exit through a one exit block without having any
288 // side-effects. If so, determine the value of Cond that causes it to do
289 // this.
290 if ((LoopExitBB = isTrivialLoopExitBlock(L, BI->getSuccessor(0)))) {
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +0000291 if (Val) *Val = ConstantInt::getTrue();
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000292 } else if ((LoopExitBB = isTrivialLoopExitBlock(L, BI->getSuccessor(1)))) {
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +0000293 if (Val) *Val = ConstantInt::getFalse();
Chris Lattnera48654e2006-02-15 22:52:05 +0000294 }
295 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(HeaderTerm)) {
296 // If this isn't a switch on Cond, we can't handle it.
297 if (SI->getCondition() != Cond) return false;
298
299 // Check to see if a successor of the switch is guaranteed to go to the
300 // latch block or exit through a one exit block without having any
301 // side-effects. If so, determine the value of Cond that causes it to do
302 // this. Note that we can't trivially unswitch on the default case.
303 for (unsigned i = 1, e = SI->getNumSuccessors(); i != e; ++i)
304 if ((LoopExitBB = isTrivialLoopExitBlock(L, SI->getSuccessor(i)))) {
305 // Okay, we found a trivial case, remember the value that is trivial.
306 if (Val) *Val = SI->getCaseValue(i);
Chris Lattnera48654e2006-02-15 22:52:05 +0000307 break;
308 }
Chris Lattner4e132392006-02-15 22:03:36 +0000309 }
310
Chris Lattnerf8bf1162006-02-22 23:55:00 +0000311 // If we didn't find a single unique LoopExit block, or if the loop exit block
312 // contains phi nodes, this isn't trivial.
313 if (!LoopExitBB || isa<PHINode>(LoopExitBB->begin()))
Chris Lattner4e132392006-02-15 22:03:36 +0000314 return false; // Can't handle this.
Chris Lattner4c41d492006-02-10 01:24:09 +0000315
Chris Lattnera48654e2006-02-15 22:52:05 +0000316 if (LoopExit) *LoopExit = LoopExitBB;
Chris Lattner4c41d492006-02-10 01:24:09 +0000317
318 // We already know that nothing uses any scalar values defined inside of this
319 // loop. As such, we just have to check to see if this loop will execute any
320 // side-effecting instructions (e.g. stores, calls, volatile loads) in the
Chris Lattner4e132392006-02-15 22:03:36 +0000321 // part of the loop that the code *would* execute. We already checked the
322 // tail, check the header now.
Chris Lattner4c41d492006-02-10 01:24:09 +0000323 for (BasicBlock::iterator I = Header->begin(), E = Header->end(); I != E; ++I)
324 if (I->mayWriteToMemory())
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000325 return false;
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000326 return true;
Chris Lattner4c41d492006-02-10 01:24:09 +0000327}
328
329/// getLoopUnswitchCost - Return the cost (code size growth) that will happen if
330/// we choose to unswitch the specified loop on the specified value.
331///
332unsigned LoopUnswitch::getLoopUnswitchCost(Loop *L, Value *LIC) {
333 // If the condition is trivial, always unswitch. There is no code growth for
334 // this case.
335 if (IsTrivialUnswitchCondition(L, LIC))
336 return 0;
337
Owen Anderson372994b2006-06-28 17:47:50 +0000338 // FIXME: This is really overly conservative. However, more liberal
339 // estimations have thus far resulted in excessive unswitching, which is bad
340 // both in compile time and in code size. This should be replaced once
341 // someone figures out how a good estimation.
342 return L->getBlocks().size();
Chris Lattnerdaa2bf92006-06-28 16:38:55 +0000343
Chris Lattner4c41d492006-02-10 01:24:09 +0000344 unsigned Cost = 0;
345 // FIXME: this is brain dead. It should take into consideration code
346 // shrinkage.
347 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
348 I != E; ++I) {
349 BasicBlock *BB = *I;
350 // Do not include empty blocks in the cost calculation. This happen due to
351 // loop canonicalization and will be removed.
352 if (BB->begin() == BasicBlock::iterator(BB->getTerminator()))
353 continue;
354
355 // Count basic blocks.
356 ++Cost;
357 }
358
359 return Cost;
360}
361
Chris Lattnerc2358092006-02-11 00:43:37 +0000362/// UnswitchIfProfitable - We have found that we can unswitch L when
363/// LoopCond == Val to simplify the loop. If we decide that this is profitable,
364/// unswitch the loop, reprocess the pieces, then return true.
365bool LoopUnswitch::UnswitchIfProfitable(Value *LoopCond, Constant *Val,Loop *L){
366 // Check to see if it would be profitable to unswitch this loop.
Chris Lattner0f862e52006-03-24 07:14:00 +0000367 unsigned Cost = getLoopUnswitchCost(L, LoopCond);
368 if (Cost > Threshold) {
Chris Lattnerc2358092006-02-11 00:43:37 +0000369 // FIXME: this should estimate growth by the amount of code shared by the
370 // resultant unswitched loops.
371 //
Bill Wendlingb7427032006-11-26 09:46:52 +0000372 DOUT << "NOT unswitching loop %"
373 << L->getHeader()->getName() << ", cost too high: "
374 << L->getBlocks().size() << "\n";
Chris Lattnerc2358092006-02-11 00:43:37 +0000375 return false;
376 }
Owen Anderson2b67f072006-06-26 07:44:36 +0000377
Chris Lattnerc2358092006-02-11 00:43:37 +0000378 // If this is a trivial condition to unswitch (which results in no code
379 // duplication), do it now.
Chris Lattner6d9d13d2006-02-15 01:44:42 +0000380 Constant *CondVal;
Chris Lattnerc2358092006-02-11 00:43:37 +0000381 BasicBlock *ExitBlock;
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000382 if (IsTrivialUnswitchCondition(L, LoopCond, &CondVal, &ExitBlock)) {
383 UnswitchTrivialCondition(L, LoopCond, CondVal, ExitBlock);
Chris Lattnerc2358092006-02-11 00:43:37 +0000384 } else {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000385 UnswitchNontrivialCondition(LoopCond, Val, L);
Chris Lattnerc2358092006-02-11 00:43:37 +0000386 }
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000387
Chris Lattnerc2358092006-02-11 00:43:37 +0000388 return true;
389}
390
Chris Lattner4e132392006-02-15 22:03:36 +0000391/// SplitBlock - Split the specified block at the specified instruction - every
392/// thing before SplitPt stays in Old and everything starting with SplitPt moves
393/// to a new block. The two blocks are joined by an unconditional branch and
394/// the loop info is updated.
395///
396BasicBlock *LoopUnswitch::SplitBlock(BasicBlock *Old, Instruction *SplitPt) {
Chris Lattner10cd9bb2006-02-16 19:36:22 +0000397 BasicBlock::iterator SplitIt = SplitPt;
398 while (isa<PHINode>(SplitIt))
399 ++SplitIt;
400 BasicBlock *New = Old->splitBasicBlock(SplitIt, Old->getName()+".split");
Chris Lattner4e132392006-02-15 22:03:36 +0000401
402 // The new block lives in whichever loop the old one did.
403 if (Loop *L = LI->getLoopFor(Old))
404 L->addBasicBlockToLoop(New, *LI);
405
406 return New;
407}
408
409
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000410BasicBlock *LoopUnswitch::SplitEdge(BasicBlock *BB, BasicBlock *Succ) {
411 TerminatorInst *LatchTerm = BB->getTerminator();
412 unsigned SuccNum = 0;
413 for (unsigned i = 0, e = LatchTerm->getNumSuccessors(); ; ++i) {
414 assert(i != e && "Didn't find edge?");
415 if (LatchTerm->getSuccessor(i) == Succ) {
416 SuccNum = i;
417 break;
418 }
Chris Lattner18f16092004-04-19 18:07:02 +0000419 }
Chris Lattner4c41d492006-02-10 01:24:09 +0000420
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000421 // If this is a critical edge, let SplitCriticalEdge do it.
422 if (SplitCriticalEdge(BB->getTerminator(), SuccNum, this))
423 return LatchTerm->getSuccessor(SuccNum);
424
425 // If the edge isn't critical, then BB has a single successor or Succ has a
426 // single pred. Split the block.
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000427 BasicBlock::iterator SplitPoint;
428 if (BasicBlock *SP = Succ->getSinglePredecessor()) {
429 // If the successor only has a single pred, split the top of the successor
430 // block.
431 assert(SP == BB && "CFG broken");
Chris Lattner4e132392006-02-15 22:03:36 +0000432 return SplitBlock(Succ, Succ->begin());
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000433 } else {
434 // Otherwise, if BB has a single successor, split it at the bottom of the
435 // block.
436 assert(BB->getTerminator()->getNumSuccessors() == 1 &&
437 "Should have a single succ!");
Chris Lattner4e132392006-02-15 22:03:36 +0000438 return SplitBlock(BB, BB->getTerminator());
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000439 }
Chris Lattner18f16092004-04-19 18:07:02 +0000440}
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000441
Chris Lattner18f16092004-04-19 18:07:02 +0000442
443
Misha Brukmanfd939082005-04-21 23:48:37 +0000444// RemapInstruction - Convert the instruction operands from referencing the
Chris Lattner18f16092004-04-19 18:07:02 +0000445// current values into those specified by ValueMap.
446//
Misha Brukmanfd939082005-04-21 23:48:37 +0000447static inline void RemapInstruction(Instruction *I,
Chris Lattner18f16092004-04-19 18:07:02 +0000448 std::map<const Value *, Value*> &ValueMap) {
449 for (unsigned op = 0, E = I->getNumOperands(); op != E; ++op) {
450 Value *Op = I->getOperand(op);
451 std::map<const Value *, Value*>::iterator It = ValueMap.find(Op);
452 if (It != ValueMap.end()) Op = It->second;
453 I->setOperand(op, Op);
454 }
455}
456
457/// CloneLoop - Recursively clone the specified loop and all of its children,
458/// mapping the blocks with the specified map.
459static Loop *CloneLoop(Loop *L, Loop *PL, std::map<const Value*, Value*> &VM,
460 LoopInfo *LI) {
461 Loop *New = new Loop();
462
463 if (PL)
464 PL->addChildLoop(New);
465 else
466 LI->addTopLevelLoop(New);
467
468 // Add all of the blocks in L to the new loop.
469 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
470 I != E; ++I)
471 if (LI->getLoopFor(*I) == L)
472 New->addBasicBlockToLoop(cast<BasicBlock>(VM[*I]), *LI);
473
474 // Add all of the subloops to the new loop.
475 for (Loop::iterator I = L->begin(), E = L->end(); I != E; ++I)
476 CloneLoop(*I, New, VM, LI);
Misha Brukmanfd939082005-04-21 23:48:37 +0000477
Chris Lattner18f16092004-04-19 18:07:02 +0000478 return New;
479}
480
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000481/// EmitPreheaderBranchOnCondition - Emit a conditional branch on two values
482/// if LIC == Val, branch to TrueDst, otherwise branch to FalseDest. Insert the
483/// code immediately before InsertPt.
484static void EmitPreheaderBranchOnCondition(Value *LIC, Constant *Val,
485 BasicBlock *TrueDest,
486 BasicBlock *FalseDest,
487 Instruction *InsertPt) {
488 // Insert a conditional branch on LIC to the two preheaders. The original
489 // code is the true version and the new code is the false version.
490 Value *BranchVal = LIC;
Reid Spencerc1030572007-01-19 21:13:56 +0000491 if (!isa<ConstantInt>(Val) || Val->getType() != Type::Int1Ty)
Reid Spencere4d87aa2006-12-23 06:05:41 +0000492 BranchVal = new ICmpInst(ICmpInst::ICMP_EQ, LIC, Val, "tmp", InsertPt);
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +0000493 else if (Val != ConstantInt::getTrue())
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000494 // We want to enter the new loop when the condition is true.
495 std::swap(TrueDest, FalseDest);
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000496
497 // Insert the new branch.
498 new BranchInst(TrueDest, FalseDest, BranchVal, InsertPt);
499}
500
501
Chris Lattner4c41d492006-02-10 01:24:09 +0000502/// UnswitchTrivialCondition - Given a loop that has a trivial unswitchable
503/// condition in it (a cond branch from its header block to its latch block,
504/// where the path through the loop that doesn't execute its body has no
505/// side-effects), unswitch it. This doesn't involve any code duplication, just
506/// moving the conditional branch outside of the loop and updating loop info.
507void LoopUnswitch::UnswitchTrivialCondition(Loop *L, Value *Cond,
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000508 Constant *Val,
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000509 BasicBlock *ExitBlock) {
Bill Wendlingb7427032006-11-26 09:46:52 +0000510 DOUT << "loop-unswitch: Trivial-Unswitch loop %"
511 << L->getHeader()->getName() << " [" << L->getBlocks().size()
512 << " blocks] in Function " << L->getHeader()->getParent()->getName()
513 << " on cond: " << *Val << " == " << *Cond << "\n";
Chris Lattner4d1ca942006-02-10 01:36:35 +0000514
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000515 // First step, split the preheader, so that we know that there is a safe place
Chris Lattner4c41d492006-02-10 01:24:09 +0000516 // to insert the conditional branch. We will change 'OrigPH' to have a
517 // conditional branch on Cond.
518 BasicBlock *OrigPH = L->getLoopPreheader();
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000519 BasicBlock *NewPH = SplitEdge(OrigPH, L->getHeader());
Chris Lattner4c41d492006-02-10 01:24:09 +0000520
521 // Now that we have a place to insert the conditional branch, create a place
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000522 // to branch to: this is the exit block out of the loop that we should
523 // short-circuit to.
Chris Lattner4c41d492006-02-10 01:24:09 +0000524
Chris Lattner4e132392006-02-15 22:03:36 +0000525 // Split this block now, so that the loop maintains its exit block, and so
526 // that the jump from the preheader can execute the contents of the exit block
527 // without actually branching to it (the exit block should be dominated by the
528 // loop header, not the preheader).
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000529 assert(!L->contains(ExitBlock) && "Exit block is in the loop?");
Chris Lattner4e132392006-02-15 22:03:36 +0000530 BasicBlock *NewExit = SplitBlock(ExitBlock, ExitBlock->begin());
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000531
Chris Lattner4c41d492006-02-10 01:24:09 +0000532 // Okay, now we have a position to branch from and a position to branch to,
533 // insert the new conditional branch.
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000534 EmitPreheaderBranchOnCondition(Cond, Val, NewExit, NewPH,
535 OrigPH->getTerminator());
Chris Lattner4c41d492006-02-10 01:24:09 +0000536 OrigPH->getTerminator()->eraseFromParent();
537
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000538 // We need to reprocess this loop, it could be unswitched again.
539 LoopProcessWorklist.push_back(L);
540
Chris Lattner4c41d492006-02-10 01:24:09 +0000541 // Now that we know that the loop is never entered when this condition is a
542 // particular value, rewrite the loop with this info. We know that this will
543 // at least eliminate the old branch.
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000544 RewriteLoopBodyWithConditionConstant(L, Cond, Val, false);
Chris Lattner3dd4c402006-02-14 01:01:41 +0000545 ++NumTrivial;
Chris Lattner4c41d492006-02-10 01:24:09 +0000546}
547
Chris Lattner18f16092004-04-19 18:07:02 +0000548
Chris Lattnerc2358092006-02-11 00:43:37 +0000549/// VersionLoop - We determined that the loop is profitable to unswitch when LIC
550/// equal Val. Split it into loop versions and test the condition outside of
551/// either loop. Return the loops created as Out1/Out2.
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000552void LoopUnswitch::UnswitchNontrivialCondition(Value *LIC, Constant *Val,
553 Loop *L) {
Chris Lattner18f16092004-04-19 18:07:02 +0000554 Function *F = L->getHeader()->getParent();
Bill Wendlingb7427032006-11-26 09:46:52 +0000555 DOUT << "loop-unswitch: Unswitching loop %"
556 << L->getHeader()->getName() << " [" << L->getBlocks().size()
557 << " blocks] in Function " << F->getName()
558 << " when '" << *Val << "' == " << *LIC << "\n";
Chris Lattner18f16092004-04-19 18:07:02 +0000559
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000560 // LoopBlocks contains all of the basic blocks of the loop, including the
561 // preheader of the loop, the body of the loop, and the exit blocks of the
562 // loop, in that order.
Chris Lattner18f16092004-04-19 18:07:02 +0000563 std::vector<BasicBlock*> LoopBlocks;
564
565 // First step, split the preheader and exit blocks, and add these blocks to
566 // the LoopBlocks list.
567 BasicBlock *OrigPreheader = L->getLoopPreheader();
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000568 LoopBlocks.push_back(SplitEdge(OrigPreheader, L->getHeader()));
Chris Lattner18f16092004-04-19 18:07:02 +0000569
570 // We want the loop to come after the preheader, but before the exit blocks.
571 LoopBlocks.insert(LoopBlocks.end(), L->block_begin(), L->block_end());
572
573 std::vector<BasicBlock*> ExitBlocks;
Devang Patel4b8f36f2006-08-29 22:29:16 +0000574 L->getUniqueExitBlocks(ExitBlocks);
575
Owen Anderson2b67f072006-06-26 07:44:36 +0000576 // Split all of the edges from inside the loop to their exit blocks. Update
577 // the appropriate Phi nodes as we do so.
Chris Lattner4c41d492006-02-10 01:24:09 +0000578 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i) {
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000579 BasicBlock *ExitBlock = ExitBlocks[i];
580 std::vector<BasicBlock*> Preds(pred_begin(ExitBlock), pred_end(ExitBlock));
581
582 for (unsigned j = 0, e = Preds.size(); j != e; ++j) {
583 assert(L->contains(Preds[j]) &&
584 "All preds of loop exit blocks must be the same loop!");
Owen Anderson2b67f072006-06-26 07:44:36 +0000585 BasicBlock* MiddleBlock = SplitEdge(Preds[j], ExitBlock);
586 BasicBlock* StartBlock = Preds[j];
587 BasicBlock* EndBlock;
588 if (MiddleBlock->getSinglePredecessor() == ExitBlock) {
589 EndBlock = MiddleBlock;
590 MiddleBlock = EndBlock->getSinglePredecessor();;
591 } else {
592 EndBlock = ExitBlock;
593 }
594
595 std::set<PHINode*> InsertedPHIs;
596 PHINode* OldLCSSA = 0;
597 for (BasicBlock::iterator I = EndBlock->begin();
598 (OldLCSSA = dyn_cast<PHINode>(I)); ++I) {
599 Value* OldValue = OldLCSSA->getIncomingValueForBlock(MiddleBlock);
600 PHINode* NewLCSSA = new PHINode(OldLCSSA->getType(),
601 OldLCSSA->getName() + ".us-lcssa",
602 MiddleBlock->getTerminator());
603 NewLCSSA->addIncoming(OldValue, StartBlock);
604 OldLCSSA->setIncomingValue(OldLCSSA->getBasicBlockIndex(MiddleBlock),
605 NewLCSSA);
606 InsertedPHIs.insert(NewLCSSA);
607 }
608
Owen Andersondb5b9cf2006-07-19 03:51:48 +0000609 BasicBlock::iterator InsertPt = EndBlock->begin();
Owen Anderson2b67f072006-06-26 07:44:36 +0000610 while (dyn_cast<PHINode>(InsertPt)) ++InsertPt;
611 for (BasicBlock::iterator I = MiddleBlock->begin();
612 (OldLCSSA = dyn_cast<PHINode>(I)) && InsertedPHIs.count(OldLCSSA) == 0;
613 ++I) {
614 PHINode *NewLCSSA = new PHINode(OldLCSSA->getType(),
615 OldLCSSA->getName() + ".us-lcssa",
616 InsertPt);
617 OldLCSSA->replaceAllUsesWith(NewLCSSA);
618 NewLCSSA->addIncoming(OldLCSSA, MiddleBlock);
619 }
620 }
Chris Lattner4c41d492006-02-10 01:24:09 +0000621 }
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000622
623 // The exit blocks may have been changed due to edge splitting, recompute.
624 ExitBlocks.clear();
Devang Patel4b8f36f2006-08-29 22:29:16 +0000625 L->getUniqueExitBlocks(ExitBlocks);
626
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000627 // Add exit blocks to the loop blocks.
628 LoopBlocks.insert(LoopBlocks.end(), ExitBlocks.begin(), ExitBlocks.end());
Chris Lattner18f16092004-04-19 18:07:02 +0000629
630 // Next step, clone all of the basic blocks that make up the loop (including
631 // the loop preheader and exit blocks), keeping track of the mapping between
632 // the instructions and blocks.
633 std::vector<BasicBlock*> NewBlocks;
634 NewBlocks.reserve(LoopBlocks.size());
635 std::map<const Value*, Value*> ValueMap;
636 for (unsigned i = 0, e = LoopBlocks.size(); i != e; ++i) {
Chris Lattner3dd4c402006-02-14 01:01:41 +0000637 BasicBlock *New = CloneBasicBlock(LoopBlocks[i], ValueMap, ".us", F);
638 NewBlocks.push_back(New);
639 ValueMap[LoopBlocks[i]] = New; // Keep the BB mapping.
Chris Lattner18f16092004-04-19 18:07:02 +0000640 }
641
642 // Splice the newly inserted blocks into the function right before the
643 // original preheader.
644 F->getBasicBlockList().splice(LoopBlocks[0], F->getBasicBlockList(),
645 NewBlocks[0], F->end());
646
647 // Now we create the new Loop object for the versioned loop.
648 Loop *NewLoop = CloneLoop(L, L->getParentLoop(), ValueMap, LI);
Chris Lattnere8255932006-02-10 23:26:14 +0000649 Loop *ParentLoop = L->getParentLoop();
650 if (ParentLoop) {
Chris Lattner18f16092004-04-19 18:07:02 +0000651 // Make sure to add the cloned preheader and exit blocks to the parent loop
652 // as well.
Chris Lattnere8255932006-02-10 23:26:14 +0000653 ParentLoop->addBasicBlockToLoop(NewBlocks[0], *LI);
654 }
655
656 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i) {
657 BasicBlock *NewExit = cast<BasicBlock>(ValueMap[ExitBlocks[i]]);
Chris Lattner25cae0f2006-02-18 00:55:32 +0000658 // The new exit block should be in the same loop as the old one.
659 if (Loop *ExitBBLoop = LI->getLoopFor(ExitBlocks[i]))
660 ExitBBLoop->addBasicBlockToLoop(NewExit, *LI);
Chris Lattnere8255932006-02-10 23:26:14 +0000661
662 assert(NewExit->getTerminator()->getNumSuccessors() == 1 &&
663 "Exit block should have been split to have one successor!");
664 BasicBlock *ExitSucc = NewExit->getTerminator()->getSuccessor(0);
665
666 // If the successor of the exit block had PHI nodes, add an entry for
667 // NewExit.
668 PHINode *PN;
669 for (BasicBlock::iterator I = ExitSucc->begin();
670 (PN = dyn_cast<PHINode>(I)); ++I) {
671 Value *V = PN->getIncomingValueForBlock(ExitBlocks[i]);
672 std::map<const Value *, Value*>::iterator It = ValueMap.find(V);
673 if (It != ValueMap.end()) V = It->second;
674 PN->addIncoming(V, NewExit);
675 }
Chris Lattner18f16092004-04-19 18:07:02 +0000676 }
677
678 // Rewrite the code to refer to itself.
679 for (unsigned i = 0, e = NewBlocks.size(); i != e; ++i)
680 for (BasicBlock::iterator I = NewBlocks[i]->begin(),
681 E = NewBlocks[i]->end(); I != E; ++I)
682 RemapInstruction(I, ValueMap);
Chris Lattner2f4b8982006-02-09 19:14:52 +0000683
Chris Lattner18f16092004-04-19 18:07:02 +0000684 // Rewrite the original preheader to select between versions of the loop.
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000685 BranchInst *OldBR = cast<BranchInst>(OrigPreheader->getTerminator());
686 assert(OldBR->isUnconditional() && OldBR->getSuccessor(0) == LoopBlocks[0] &&
Chris Lattner18f16092004-04-19 18:07:02 +0000687 "Preheader splitting did not work correctly!");
Chris Lattner18f16092004-04-19 18:07:02 +0000688
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000689 // Emit the new branch that selects between the two versions of this loop.
690 EmitPreheaderBranchOnCondition(LIC, Val, NewBlocks[0], LoopBlocks[0], OldBR);
691 OldBR->eraseFromParent();
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000692
693 LoopProcessWorklist.push_back(L);
694 LoopProcessWorklist.push_back(NewLoop);
Chris Lattner18f16092004-04-19 18:07:02 +0000695
696 // Now we rewrite the original code to know that the condition is true and the
697 // new code to know that the condition is false.
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000698 RewriteLoopBodyWithConditionConstant(L , LIC, Val, false);
699
700 // It's possible that simplifying one loop could cause the other to be
701 // deleted. If so, don't simplify it.
702 if (!LoopProcessWorklist.empty() && LoopProcessWorklist.back() == NewLoop)
703 RewriteLoopBodyWithConditionConstant(NewLoop, LIC, Val, true);
Chris Lattner18f16092004-04-19 18:07:02 +0000704}
705
Chris Lattner52221f72006-02-17 00:31:07 +0000706/// RemoveFromWorklist - Remove all instances of I from the worklist vector
707/// specified.
708static void RemoveFromWorklist(Instruction *I,
709 std::vector<Instruction*> &Worklist) {
710 std::vector<Instruction*>::iterator WI = std::find(Worklist.begin(),
711 Worklist.end(), I);
712 while (WI != Worklist.end()) {
713 unsigned Offset = WI-Worklist.begin();
714 Worklist.erase(WI);
715 WI = std::find(Worklist.begin()+Offset, Worklist.end(), I);
716 }
717}
718
719/// ReplaceUsesOfWith - When we find that I really equals V, remove I from the
720/// program, replacing all uses with V and update the worklist.
721static void ReplaceUsesOfWith(Instruction *I, Value *V,
722 std::vector<Instruction*> &Worklist) {
Bill Wendlingb7427032006-11-26 09:46:52 +0000723 DOUT << "Replace with '" << *V << "': " << *I;
Chris Lattner52221f72006-02-17 00:31:07 +0000724
725 // Add uses to the worklist, which may be dead now.
726 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
727 if (Instruction *Use = dyn_cast<Instruction>(I->getOperand(i)))
728 Worklist.push_back(Use);
729
730 // Add users to the worklist which may be simplified now.
731 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
732 UI != E; ++UI)
733 Worklist.push_back(cast<Instruction>(*UI));
734 I->replaceAllUsesWith(V);
735 I->eraseFromParent();
736 RemoveFromWorklist(I, Worklist);
737 ++NumSimplify;
738}
739
Chris Lattnerdb410242006-02-18 02:42:34 +0000740/// RemoveBlockIfDead - If the specified block is dead, remove it, update loop
741/// information, and remove any dead successors it has.
742///
743void LoopUnswitch::RemoveBlockIfDead(BasicBlock *BB,
744 std::vector<Instruction*> &Worklist) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000745 if (pred_begin(BB) != pred_end(BB)) {
746 // This block isn't dead, since an edge to BB was just removed, see if there
747 // are any easy simplifications we can do now.
748 if (BasicBlock *Pred = BB->getSinglePredecessor()) {
749 // If it has one pred, fold phi nodes in BB.
750 while (isa<PHINode>(BB->begin()))
751 ReplaceUsesOfWith(BB->begin(),
752 cast<PHINode>(BB->begin())->getIncomingValue(0),
753 Worklist);
754
755 // If this is the header of a loop and the only pred is the latch, we now
756 // have an unreachable loop.
757 if (Loop *L = LI->getLoopFor(BB))
758 if (L->getHeader() == BB && L->contains(Pred)) {
759 // Remove the branch from the latch to the header block, this makes
760 // the header dead, which will make the latch dead (because the header
761 // dominates the latch).
762 Pred->getTerminator()->eraseFromParent();
763 new UnreachableInst(Pred);
764
765 // The loop is now broken, remove it from LI.
766 RemoveLoopFromHierarchy(L);
767
768 // Reprocess the header, which now IS dead.
769 RemoveBlockIfDead(BB, Worklist);
770 return;
771 }
772
773 // If pred ends in a uncond branch, add uncond branch to worklist so that
774 // the two blocks will get merged.
775 if (BranchInst *BI = dyn_cast<BranchInst>(Pred->getTerminator()))
776 if (BI->isUnconditional())
777 Worklist.push_back(BI);
778 }
779 return;
780 }
Chris Lattner52221f72006-02-17 00:31:07 +0000781
Bill Wendlingb7427032006-11-26 09:46:52 +0000782 DOUT << "Nuking dead block: " << *BB;
Chris Lattnerdb410242006-02-18 02:42:34 +0000783
784 // Remove the instructions in the basic block from the worklist.
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000785 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I) {
Chris Lattnerdb410242006-02-18 02:42:34 +0000786 RemoveFromWorklist(I, Worklist);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000787
788 // Anything that uses the instructions in this basic block should have their
789 // uses replaced with undefs.
790 if (!I->use_empty())
791 I->replaceAllUsesWith(UndefValue::get(I->getType()));
792 }
Chris Lattnerdb410242006-02-18 02:42:34 +0000793
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000794 // If this is the edge to the header block for a loop, remove the loop and
795 // promote all subloops.
Chris Lattnerdb410242006-02-18 02:42:34 +0000796 if (Loop *BBLoop = LI->getLoopFor(BB)) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000797 if (BBLoop->getLoopLatch() == BB)
798 RemoveLoopFromHierarchy(BBLoop);
Chris Lattnerdb410242006-02-18 02:42:34 +0000799 }
800
801 // Remove the block from the loop info, which removes it from any loops it
802 // was in.
803 LI->removeBlock(BB);
804
805
806 // Remove phi node entries in successors for this block.
807 TerminatorInst *TI = BB->getTerminator();
808 std::vector<BasicBlock*> Succs;
809 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i) {
810 Succs.push_back(TI->getSuccessor(i));
811 TI->getSuccessor(i)->removePredecessor(BB);
Chris Lattnerf4412d82006-02-18 01:27:45 +0000812 }
813
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000814 // Unique the successors, remove anything with multiple uses.
Chris Lattnerdb410242006-02-18 02:42:34 +0000815 std::sort(Succs.begin(), Succs.end());
816 Succs.erase(std::unique(Succs.begin(), Succs.end()), Succs.end());
817
818 // Remove the basic block, including all of the instructions contained in it.
819 BB->eraseFromParent();
820
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000821 // Remove successor blocks here that are not dead, so that we know we only
822 // have dead blocks in this list. Nondead blocks have a way of becoming dead,
823 // then getting removed before we revisit them, which is badness.
824 //
825 for (unsigned i = 0; i != Succs.size(); ++i)
826 if (pred_begin(Succs[i]) != pred_end(Succs[i])) {
827 // One exception is loop headers. If this block was the preheader for a
828 // loop, then we DO want to visit the loop so the loop gets deleted.
829 // We know that if the successor is a loop header, that this loop had to
830 // be the preheader: the case where this was the latch block was handled
831 // above and headers can only have two predecessors.
832 if (!LI->isLoopHeader(Succs[i])) {
833 Succs.erase(Succs.begin()+i);
834 --i;
835 }
836 }
837
Chris Lattnerdb410242006-02-18 02:42:34 +0000838 for (unsigned i = 0, e = Succs.size(); i != e; ++i)
839 RemoveBlockIfDead(Succs[i], Worklist);
Chris Lattnerf4412d82006-02-18 01:27:45 +0000840}
Chris Lattner52221f72006-02-17 00:31:07 +0000841
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000842/// RemoveLoopFromHierarchy - We have discovered that the specified loop has
843/// become unwrapped, either because the backedge was deleted, or because the
844/// edge into the header was removed. If the edge into the header from the
845/// latch block was removed, the loop is unwrapped but subloops are still alive,
846/// so they just reparent loops. If the loops are actually dead, they will be
847/// removed later.
848void LoopUnswitch::RemoveLoopFromHierarchy(Loop *L) {
849 if (Loop *ParentLoop = L->getParentLoop()) { // Not a top-level loop.
850 // Reparent all of the blocks in this loop. Since BBLoop had a parent,
851 // they are now all in it.
852 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
853 I != E; ++I)
854 if (LI->getLoopFor(*I) == L) // Don't change blocks in subloops.
855 LI->changeLoopFor(*I, ParentLoop);
856
857 // Remove the loop from its parent loop.
858 for (Loop::iterator I = ParentLoop->begin(), E = ParentLoop->end();;
859 ++I) {
860 assert(I != E && "Couldn't find loop");
861 if (*I == L) {
862 ParentLoop->removeChildLoop(I);
863 break;
864 }
865 }
866
867 // Move all subloops into the parent loop.
868 while (L->begin() != L->end())
869 ParentLoop->addChildLoop(L->removeChildLoop(L->end()-1));
870 } else {
871 // Reparent all of the blocks in this loop. Since BBLoop had no parent,
872 // they no longer in a loop at all.
873
874 for (unsigned i = 0; i != L->getBlocks().size(); ++i) {
875 // Don't change blocks in subloops.
876 if (LI->getLoopFor(L->getBlocks()[i]) == L) {
877 LI->removeBlock(L->getBlocks()[i]);
878 --i;
879 }
880 }
881
882 // Remove the loop from the top-level LoopInfo object.
883 for (LoopInfo::iterator I = LI->begin(), E = LI->end();; ++I) {
884 assert(I != E && "Couldn't find loop");
885 if (*I == L) {
886 LI->removeLoop(I);
887 break;
888 }
889 }
890
891 // Move all of the subloops to the top-level.
892 while (L->begin() != L->end())
893 LI->addTopLevelLoop(L->removeChildLoop(L->end()-1));
894 }
895
896 delete L;
897 RemoveLoopFromWorklist(L);
898}
899
900
901
Chris Lattnerc2358092006-02-11 00:43:37 +0000902// RewriteLoopBodyWithConditionConstant - We know either that the value LIC has
903// the value specified by Val in the specified loop, or we know it does NOT have
904// that value. Rewrite any uses of LIC or of properties correlated to it.
Chris Lattner18f16092004-04-19 18:07:02 +0000905void LoopUnswitch::RewriteLoopBodyWithConditionConstant(Loop *L, Value *LIC,
Chris Lattnerc2358092006-02-11 00:43:37 +0000906 Constant *Val,
907 bool IsEqual) {
Chris Lattner4c41d492006-02-10 01:24:09 +0000908 assert(!isa<Constant>(LIC) && "Why are we unswitching on a constant?");
Chris Lattnerc2358092006-02-11 00:43:37 +0000909
Chris Lattner18f16092004-04-19 18:07:02 +0000910 // FIXME: Support correlated properties, like:
911 // for (...)
912 // if (li1 < li2)
913 // ...
914 // if (li1 > li2)
915 // ...
Chris Lattnerc2358092006-02-11 00:43:37 +0000916
Chris Lattner708e1a52006-02-10 02:30:37 +0000917 // FOLD boolean conditions (X|LIC), (X&LIC). Fold conditional branches,
918 // selects, switches.
Chris Lattner18f16092004-04-19 18:07:02 +0000919 std::vector<User*> Users(LIC->use_begin(), LIC->use_end());
Chris Lattner52221f72006-02-17 00:31:07 +0000920 std::vector<Instruction*> Worklist;
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000921
Chris Lattner52221f72006-02-17 00:31:07 +0000922 // If we know that LIC == Val, or that LIC == NotVal, just replace uses of LIC
923 // in the loop with the appropriate one directly.
Reid Spencer4fe16d62007-01-11 18:21:29 +0000924 if (IsEqual || (isa<ConstantInt>(Val) && Val->getType() == Type::Int1Ty)) {
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000925 Value *Replacement;
926 if (IsEqual)
927 Replacement = Val;
928 else
Reid Spencer579dca12007-01-12 04:24:46 +0000929 Replacement = ConstantInt::get(Type::Int1Ty,
930 !cast<ConstantInt>(Val)->getZExtValue());
Chris Lattner52221f72006-02-17 00:31:07 +0000931
932 for (unsigned i = 0, e = Users.size(); i != e; ++i)
933 if (Instruction *U = cast<Instruction>(Users[i])) {
934 if (!L->contains(U->getParent()))
935 continue;
936 U->replaceUsesOfWith(LIC, Replacement);
937 Worklist.push_back(U);
938 }
939 } else {
940 // Otherwise, we don't know the precise value of LIC, but we do know that it
941 // is certainly NOT "Val". As such, simplify any uses in the loop that we
942 // can. This case occurs when we unswitch switch statements.
943 for (unsigned i = 0, e = Users.size(); i != e; ++i)
944 if (Instruction *U = cast<Instruction>(Users[i])) {
945 if (!L->contains(U->getParent()))
946 continue;
947
948 Worklist.push_back(U);
949
Chris Lattner10cd9bb2006-02-16 19:36:22 +0000950 // If we know that LIC is not Val, use this info to simplify code.
951 if (SwitchInst *SI = dyn_cast<SwitchInst>(U)) {
952 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i) {
953 if (SI->getCaseValue(i) == Val) {
954 // Found a dead case value. Don't remove PHI nodes in the
955 // successor if they become single-entry, those PHI nodes may
956 // be in the Users list.
Owen Anderson2b67f072006-06-26 07:44:36 +0000957
958 // FIXME: This is a hack. We need to keep the successor around
959 // and hooked up so as to preserve the loop structure, because
960 // trying to update it is complicated. So instead we preserve the
961 // loop structure and put the block on an dead code path.
962
963 BasicBlock* Old = SI->getParent();
964 BasicBlock* Split = SplitBlock(Old, SI);
965
966 Instruction* OldTerm = Old->getTerminator();
Reid Spencer3ed469c2006-11-02 20:25:50 +0000967 new BranchInst(Split, SI->getSuccessor(i),
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +0000968 ConstantInt::getTrue(), OldTerm);
Owen Anderson2b67f072006-06-26 07:44:36 +0000969
970 Old->getTerminator()->eraseFromParent();
971
Owen Andersonbef85082006-06-27 22:26:09 +0000972
973 PHINode *PN;
974 for (BasicBlock::iterator II = SI->getSuccessor(i)->begin();
975 (PN = dyn_cast<PHINode>(II)); ++II) {
976 Value *InVal = PN->removeIncomingValue(Split, false);
977 PN->addIncoming(InVal, Old);
Owen Anderson2b67f072006-06-26 07:44:36 +0000978 }
979
Chris Lattner10cd9bb2006-02-16 19:36:22 +0000980 SI->removeCase(i);
981 break;
Chris Lattnerc2358092006-02-11 00:43:37 +0000982 }
983 }
Chris Lattnerc2358092006-02-11 00:43:37 +0000984 }
Chris Lattner52221f72006-02-17 00:31:07 +0000985
986 // TODO: We could do other simplifications, for example, turning
987 // LIC == Val -> false.
Chris Lattner10cd9bb2006-02-16 19:36:22 +0000988 }
Chris Lattner52221f72006-02-17 00:31:07 +0000989 }
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000990
991 SimplifyCode(Worklist);
992}
993
994/// SimplifyCode - Okay, now that we have simplified some instructions in the
995/// loop, walk over it and constant prop, dce, and fold control flow where
996/// possible. Note that this is effectively a very simple loop-structure-aware
997/// optimizer. During processing of this loop, L could very well be deleted, so
998/// it must not be used.
999///
1000/// FIXME: When the loop optimizer is more mature, separate this out to a new
1001/// pass.
1002///
1003void LoopUnswitch::SimplifyCode(std::vector<Instruction*> &Worklist) {
Chris Lattner52221f72006-02-17 00:31:07 +00001004 while (!Worklist.empty()) {
1005 Instruction *I = Worklist.back();
1006 Worklist.pop_back();
1007
1008 // Simple constant folding.
1009 if (Constant *C = ConstantFoldInstruction(I)) {
1010 ReplaceUsesOfWith(I, C, Worklist);
1011 continue;
Chris Lattner10cd9bb2006-02-16 19:36:22 +00001012 }
Chris Lattner52221f72006-02-17 00:31:07 +00001013
1014 // Simple DCE.
1015 if (isInstructionTriviallyDead(I)) {
Bill Wendlingb7427032006-11-26 09:46:52 +00001016 DOUT << "Remove dead instruction '" << *I;
Chris Lattner52221f72006-02-17 00:31:07 +00001017
1018 // Add uses to the worklist, which may be dead now.
1019 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
1020 if (Instruction *Use = dyn_cast<Instruction>(I->getOperand(i)))
1021 Worklist.push_back(Use);
1022 I->eraseFromParent();
1023 RemoveFromWorklist(I, Worklist);
1024 ++NumSimplify;
1025 continue;
1026 }
1027
1028 // Special case hacks that appear commonly in unswitched code.
1029 switch (I->getOpcode()) {
1030 case Instruction::Select:
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001031 if (ConstantInt *CB = dyn_cast<ConstantInt>(I->getOperand(0))) {
Reid Spencer579dca12007-01-12 04:24:46 +00001032 ReplaceUsesOfWith(I, I->getOperand(!CB->getZExtValue()+1), Worklist);
Chris Lattner52221f72006-02-17 00:31:07 +00001033 continue;
1034 }
1035 break;
1036 case Instruction::And:
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001037 if (isa<ConstantInt>(I->getOperand(0)) &&
Reid Spencer4fe16d62007-01-11 18:21:29 +00001038 I->getOperand(0)->getType() == Type::Int1Ty) // constant -> RHS
Chris Lattner52221f72006-02-17 00:31:07 +00001039 cast<BinaryOperator>(I)->swapOperands();
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001040 if (ConstantInt *CB = dyn_cast<ConstantInt>(I->getOperand(1)))
Reid Spencer4fe16d62007-01-11 18:21:29 +00001041 if (CB->getType() == Type::Int1Ty) {
Reid Spencer579dca12007-01-12 04:24:46 +00001042 if (CB->getZExtValue()) // X & 1 -> X
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001043 ReplaceUsesOfWith(I, I->getOperand(0), Worklist);
1044 else // X & 0 -> 0
1045 ReplaceUsesOfWith(I, I->getOperand(1), Worklist);
1046 continue;
1047 }
Chris Lattner52221f72006-02-17 00:31:07 +00001048 break;
1049 case Instruction::Or:
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001050 if (isa<ConstantInt>(I->getOperand(0)) &&
Reid Spencer4fe16d62007-01-11 18:21:29 +00001051 I->getOperand(0)->getType() == Type::Int1Ty) // constant -> RHS
Chris Lattner52221f72006-02-17 00:31:07 +00001052 cast<BinaryOperator>(I)->swapOperands();
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001053 if (ConstantInt *CB = dyn_cast<ConstantInt>(I->getOperand(1)))
Reid Spencer4fe16d62007-01-11 18:21:29 +00001054 if (CB->getType() == Type::Int1Ty) {
Reid Spencer579dca12007-01-12 04:24:46 +00001055 if (CB->getZExtValue()) // X | 1 -> 1
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001056 ReplaceUsesOfWith(I, I->getOperand(1), Worklist);
1057 else // X | 0 -> X
1058 ReplaceUsesOfWith(I, I->getOperand(0), Worklist);
1059 continue;
1060 }
Chris Lattner52221f72006-02-17 00:31:07 +00001061 break;
1062 case Instruction::Br: {
1063 BranchInst *BI = cast<BranchInst>(I);
1064 if (BI->isUnconditional()) {
1065 // If BI's parent is the only pred of the successor, fold the two blocks
1066 // together.
1067 BasicBlock *Pred = BI->getParent();
1068 BasicBlock *Succ = BI->getSuccessor(0);
1069 BasicBlock *SinglePred = Succ->getSinglePredecessor();
1070 if (!SinglePred) continue; // Nothing to do.
1071 assert(SinglePred == Pred && "CFG broken");
1072
Bill Wendlingb7427032006-11-26 09:46:52 +00001073 DOUT << "Merging blocks: " << Pred->getName() << " <- "
1074 << Succ->getName() << "\n";
Chris Lattner52221f72006-02-17 00:31:07 +00001075
1076 // Resolve any single entry PHI nodes in Succ.
1077 while (PHINode *PN = dyn_cast<PHINode>(Succ->begin()))
1078 ReplaceUsesOfWith(PN, PN->getIncomingValue(0), Worklist);
1079
1080 // Move all of the successor contents from Succ to Pred.
1081 Pred->getInstList().splice(BI, Succ->getInstList(), Succ->begin(),
1082 Succ->end());
1083 BI->eraseFromParent();
1084 RemoveFromWorklist(BI, Worklist);
1085
1086 // If Succ has any successors with PHI nodes, update them to have
1087 // entries coming from Pred instead of Succ.
1088 Succ->replaceAllUsesWith(Pred);
1089
1090 // Remove Succ from the loop tree.
1091 LI->removeBlock(Succ);
1092 Succ->eraseFromParent();
Chris Lattnerf4412d82006-02-18 01:27:45 +00001093 ++NumSimplify;
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001094 } else if (ConstantInt *CB = dyn_cast<ConstantInt>(BI->getCondition())){
Chris Lattnerdb410242006-02-18 02:42:34 +00001095 // Conditional branch. Turn it into an unconditional branch, then
1096 // remove dead blocks.
Chris Lattnerbd28e3f2006-02-22 06:37:14 +00001097 break; // FIXME: Enable.
1098
Bill Wendlingb7427032006-11-26 09:46:52 +00001099 DOUT << "Folded branch: " << *BI;
Reid Spencer579dca12007-01-12 04:24:46 +00001100 BasicBlock *DeadSucc = BI->getSuccessor(CB->getZExtValue());
1101 BasicBlock *LiveSucc = BI->getSuccessor(!CB->getZExtValue());
Chris Lattnerdb410242006-02-18 02:42:34 +00001102 DeadSucc->removePredecessor(BI->getParent(), true);
1103 Worklist.push_back(new BranchInst(LiveSucc, BI));
1104 BI->eraseFromParent();
1105 RemoveFromWorklist(BI, Worklist);
1106 ++NumSimplify;
1107
1108 RemoveBlockIfDead(DeadSucc, Worklist);
Chris Lattner52221f72006-02-17 00:31:07 +00001109 }
1110 break;
1111 }
1112 }
1113 }
Chris Lattner18f16092004-04-19 18:07:02 +00001114}