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Chris Lattner0bbe58f2001-11-26 18:41:20 +00001//===- LoopInfo.cpp - Natural Loop Calculator -------------------------------=//
2//
3// This file defines the LoopInfo class that is used to identify natural loops
4// and determine the loop depth of various nodes of the CFG. Note that the
5// loops identified may actually be several natural loops that share the same
6// header node... not just a single natural loop.
7//
8//===----------------------------------------------------------------------===//
9
10#include "llvm/Analysis/LoopInfo.h"
11#include "llvm/Analysis/Dominators.h"
Chris Lattner221d6882002-02-12 21:07:25 +000012#include "llvm/Support/CFG.h"
Chris Lattnera59cbb22002-07-27 01:12:17 +000013#include "llvm/Assembly/Writer.h"
Chris Lattnercee8f9a2001-11-27 00:03:19 +000014#include "Support/DepthFirstIterator.h"
Chris Lattner0bbe58f2001-11-26 18:41:20 +000015#include <algorithm>
16
Chris Lattner1e435162002-07-26 21:12:44 +000017static RegisterAnalysis<LoopInfo>
Chris Lattner17689df2002-07-30 16:27:52 +000018X("loops", "Natural Loop Construction", true);
Chris Lattner93193f82002-01-31 00:42:27 +000019
20//===----------------------------------------------------------------------===//
Chris Lattner1b7f7dc2002-04-28 16:21:30 +000021// Loop implementation
Chris Lattner93193f82002-01-31 00:42:27 +000022//
Chris Lattner0f995552002-06-03 22:10:52 +000023bool Loop::contains(const BasicBlock *BB) const {
Chris Lattner0bbe58f2001-11-26 18:41:20 +000024 return find(Blocks.begin(), Blocks.end(), BB) != Blocks.end();
25}
26
Chris Lattnera59cbb22002-07-27 01:12:17 +000027void Loop::print(std::ostream &OS) const {
28 OS << std::string(getLoopDepth()*2, ' ') << "Loop Containing: ";
29
30 for (unsigned i = 0; i < getBlocks().size(); ++i) {
31 if (i) OS << ",";
32 WriteAsOperand(OS, (const Value*)getBlocks()[i]);
33 }
34 OS << "\n";
35
36 std::copy(getSubLoops().begin(), getSubLoops().end(),
37 std::ostream_iterator<const Loop*>(OS, "\n"));
38}
39
40//===----------------------------------------------------------------------===//
41// LoopInfo implementation
42//
Anand Shuklae0b6b782002-08-26 16:45:19 +000043void LoopInfo::stub() {}
Chris Lattnera59cbb22002-07-27 01:12:17 +000044
45bool LoopInfo::runOnFunction(Function &) {
46 releaseMemory();
47 Calculate(getAnalysis<DominatorSet>()); // Update
48 return false;
49}
50
Chris Lattner1b7f7dc2002-04-28 16:21:30 +000051void LoopInfo::releaseMemory() {
Chris Lattner918c4ec2002-04-09 05:43:19 +000052 for (std::vector<Loop*>::iterator I = TopLevelLoops.begin(),
53 E = TopLevelLoops.end(); I != E; ++I)
54 delete *I; // Delete all of the loops...
55
56 BBMap.clear(); // Reset internal state of analysis
57 TopLevelLoops.clear();
58}
59
Chris Lattner93193f82002-01-31 00:42:27 +000060
Chris Lattner1b7f7dc2002-04-28 16:21:30 +000061void LoopInfo::Calculate(const DominatorSet &DS) {
Chris Lattnera298d272002-04-28 00:15:57 +000062 BasicBlock *RootNode = DS.getRoot();
Chris Lattner0bbe58f2001-11-26 18:41:20 +000063
Chris Lattnera298d272002-04-28 00:15:57 +000064 for (df_iterator<BasicBlock*> NI = df_begin(RootNode),
Chris Lattner0bbe58f2001-11-26 18:41:20 +000065 NE = df_end(RootNode); NI != NE; ++NI)
66 if (Loop *L = ConsiderForLoop(*NI, DS))
67 TopLevelLoops.push_back(L);
68
69 for (unsigned i = 0; i < TopLevelLoops.size(); ++i)
70 TopLevelLoops[i]->setLoopDepth(1);
71}
72
Chris Lattner1b7f7dc2002-04-28 16:21:30 +000073void LoopInfo::getAnalysisUsage(AnalysisUsage &AU) const {
Chris Lattnerf57b8452002-04-27 06:56:12 +000074 AU.setPreservesAll();
Chris Lattnerdd5b4952002-08-08 19:01:28 +000075 AU.addRequired<DominatorSet>();
Chris Lattner93193f82002-01-31 00:42:27 +000076}
77
Chris Lattnera59cbb22002-07-27 01:12:17 +000078void LoopInfo::print(std::ostream &OS) const {
79 std::copy(getTopLevelLoops().begin(), getTopLevelLoops().end(),
80 std::ostream_iterator<const Loop*>(OS, "\n"));
81}
Chris Lattner93193f82002-01-31 00:42:27 +000082
Chris Lattner1b7f7dc2002-04-28 16:21:30 +000083Loop *LoopInfo::ConsiderForLoop(BasicBlock *BB, const DominatorSet &DS) {
Chris Lattner699b3052002-09-26 05:32:50 +000084 if (BBMap.find(BB) != BBMap.end()) return 0; // Haven't processed this node?
Chris Lattner0bbe58f2001-11-26 18:41:20 +000085
Chris Lattnera298d272002-04-28 00:15:57 +000086 std::vector<BasicBlock *> TodoStack;
Chris Lattner0bbe58f2001-11-26 18:41:20 +000087
88 // Scan the predecessors of BB, checking to see if BB dominates any of
89 // them.
Chris Lattnera298d272002-04-28 00:15:57 +000090 for (pred_iterator I = pred_begin(BB), E = pred_end(BB); I != E; ++I)
Chris Lattner0bbe58f2001-11-26 18:41:20 +000091 if (DS.dominates(BB, *I)) // If BB dominates it's predecessor...
92 TodoStack.push_back(*I);
93
94 if (TodoStack.empty()) return 0; // Doesn't dominate any predecessors...
95
96 // Create a new loop to represent this basic block...
97 Loop *L = new Loop(BB);
98 BBMap[BB] = L;
99
100 while (!TodoStack.empty()) { // Process all the nodes in the loop
Chris Lattnera298d272002-04-28 00:15:57 +0000101 BasicBlock *X = TodoStack.back();
Chris Lattner0bbe58f2001-11-26 18:41:20 +0000102 TodoStack.pop_back();
103
104 if (!L->contains(X)) { // As of yet unprocessed??
105 L->Blocks.push_back(X);
106
107 // Add all of the predecessors of X to the end of the work stack...
Chris Lattner455889a2002-02-12 22:39:50 +0000108 TodoStack.insert(TodoStack.end(), pred_begin(X), pred_end(X));
Chris Lattner0bbe58f2001-11-26 18:41:20 +0000109 }
110 }
111
112 // Add the basic blocks that comprise this loop to the BBMap so that this
113 // loop can be found for them. Also check subsidary basic blocks to see if
114 // they start subloops of their own.
115 //
Chris Lattnera298d272002-04-28 00:15:57 +0000116 for (std::vector<BasicBlock*>::reverse_iterator I = L->Blocks.rbegin(),
Chris Lattner0bbe58f2001-11-26 18:41:20 +0000117 E = L->Blocks.rend(); I != E; ++I) {
118
119 // Check to see if this block starts a new loop
120 if (Loop *NewLoop = ConsiderForLoop(*I, DS)) {
121 L->SubLoops.push_back(NewLoop);
122 NewLoop->ParentLoop = L;
123 }
124
125 if (BBMap.find(*I) == BBMap.end())
Chris Lattner697954c2002-01-20 22:54:45 +0000126 BBMap.insert(std::make_pair(*I, L));
Chris Lattner0bbe58f2001-11-26 18:41:20 +0000127 }
128
129 return L;
130}
Chris Lattner699b3052002-09-26 05:32:50 +0000131
132/// getLoopPreheader - If there is a preheader for this loop, return it. A
133/// loop has a preheader if there is only one edge to the header of the loop
134/// from outside of the loop. If this is the case, the block branching to the
135/// header of the loop is the preheader node. The "preheaders" pass can be
136/// "Required" to ensure that there is always a preheader node for every loop.
137///
138/// This method returns null if there is no preheader for the loop (either
139/// because the loop is dead or because multiple blocks branch to the header
140/// node of this loop).
141///
142BasicBlock *Loop::getLoopPreheader() const {
143 // Keep track of nodes outside the loop branching to the header...
144 BasicBlock *Out = 0;
145
146 // Loop over the predecessors of the header node...
147 BasicBlock *Header = getHeader();
148 for (pred_iterator PI = pred_begin(Header), PE = pred_end(Header);
149 PI != PE; ++PI)
150 if (!contains(*PI)) { // If the block is not in the loop...
151 if (Out) return 0; // Multiple predecessors outside the loop
152 Out = *PI;
153 }
154
155 // If there is exactly one preheader, return it. If there was zero, then Out
156 // is still null.
157 return Out;
158}
159
160/// addBasicBlockToLoop - This function is used by other analyses to update loop
161/// information. NewBB is set to be a new member of the current loop. Because
162/// of this, it is added as a member of all parent loops, and is added to the
163/// specified LoopInfo object as being in the current basic block. It is not
164/// valid to replace the loop header with this method.
165///
166void Loop::addBasicBlockToLoop(BasicBlock *NewBB, LoopInfo &LI) {
167 assert(LI[getHeader()] == this && "Incorrect LI specified for this loop!");
168 assert(NewBB && "Cannot add a null basic block to the loop!");
169 assert(LI[NewBB] == 0 && "BasicBlock already in the loop!");
170
171 // Add the loop mapping to the LoopInfo object...
172 LI.BBMap[NewBB] = this;
173
174 // Add the basic block to this loop and all parent loops...
175 Loop *L = this;
176 while (L) {
177 L->Blocks.push_back(NewBB);
178 L = L->getParentLoop();
179 }
180}