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Chris Lattner55c10582002-10-03 20:38:41 +00001//===- BottomUpClosure.cpp - Compute bottom-up interprocedural closure ----===//
John Criswellb576c942003-10-20 19:43:21 +00002//
3// 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.
7//
8//===----------------------------------------------------------------------===//
Chris Lattner0d9bab82002-07-18 00:12:30 +00009//
10// This file implements the BUDataStructures class, which represents the
11// Bottom-Up Interprocedural closure of the data structure graph over the
12// program. This is useful for applications like pool allocation, but **not**
Chris Lattner55c10582002-10-03 20:38:41 +000013// applications like alias analysis.
Chris Lattner0d9bab82002-07-18 00:12:30 +000014//
15//===----------------------------------------------------------------------===//
16
17#include "llvm/Analysis/DataStructure.h"
18#include "llvm/Module.h"
Chris Lattnerfccd06f2002-10-01 22:33:50 +000019#include "Support/Statistic.h"
Chris Lattner6806f562003-08-01 22:15:03 +000020#include "Support/Debug.h"
Chris Lattner5d5b6d62003-07-01 16:04:18 +000021#include "DSCallSiteIterator.h"
Chris Lattner9a927292003-11-12 23:11:14 +000022using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000023
Chris Lattnerae5f6032002-11-17 22:16:28 +000024namespace {
25 Statistic<> MaxSCC("budatastructure", "Maximum SCC Size in Call Graph");
Chris Lattnerd391d702003-07-02 20:24:42 +000026 Statistic<> NumBUInlines("budatastructures", "Number of graphs inlined");
Chris Lattner6c874612003-07-02 23:42:48 +000027 Statistic<> NumCallEdges("budatastructures", "Number of 'actual' call edges");
Chris Lattnerae5f6032002-11-17 22:16:28 +000028
29 RegisterAnalysis<BUDataStructures>
Chris Lattner312edd32003-06-28 22:14:55 +000030 X("budatastructure", "Bottom-up Data Structure Analysis");
Chris Lattnerae5f6032002-11-17 22:16:28 +000031}
Chris Lattner0d9bab82002-07-18 00:12:30 +000032
Chris Lattnerb1060432002-11-07 05:20:53 +000033using namespace DS;
Chris Lattner55c10582002-10-03 20:38:41 +000034
Chris Lattneraa0b4682002-11-09 21:12:07 +000035// run - Calculate the bottom up data structure graphs for each function in the
36// program.
37//
38bool BUDataStructures::run(Module &M) {
Chris Lattner312edd32003-06-28 22:14:55 +000039 LocalDataStructures &LocalDSA = getAnalysis<LocalDataStructures>();
40 GlobalsGraph = new DSGraph(LocalDSA.getGlobalsGraph());
Chris Lattner20167e32003-02-03 19:11:38 +000041 GlobalsGraph->setPrintAuxCalls();
Chris Lattneraa0b4682002-11-09 21:12:07 +000042
Chris Lattnera9c9c022002-11-11 21:35:13 +000043 Function *MainFunc = M.getMainFunction();
44 if (MainFunc)
45 calculateReachableGraphs(MainFunc);
46
47 // Calculate the graphs for any functions that are unreachable from main...
Chris Lattneraa0b4682002-11-09 21:12:07 +000048 for (Module::iterator I = M.begin(), E = M.end(); I != E; ++I)
Chris Lattner5d5b6d62003-07-01 16:04:18 +000049 if (!I->isExternal() && !DSInfo.count(I)) {
Chris Lattnerae5f6032002-11-17 22:16:28 +000050#ifndef NDEBUG
Chris Lattnera9c9c022002-11-11 21:35:13 +000051 if (MainFunc)
52 std::cerr << "*** Function unreachable from main: "
53 << I->getName() << "\n";
Chris Lattnerae5f6032002-11-17 22:16:28 +000054#endif
Chris Lattnera9c9c022002-11-11 21:35:13 +000055 calculateReachableGraphs(I); // Calculate all graphs...
56 }
Chris Lattner6c874612003-07-02 23:42:48 +000057
58 NumCallEdges += ActualCallees.size();
Chris Lattnerec157b72003-09-20 23:27:05 +000059
60 // At the end of the bottom-up pass, the globals graph becomes complete.
61 // FIXME: This is not the right way to do this, but it is sorta better than
Chris Lattner11fc9302003-09-20 23:58:33 +000062 // nothing! In particular, externally visible globals and unresolvable call
63 // nodes at the end of the BU phase should make things that they point to
64 // incomplete in the globals graph.
65 //
Chris Lattnerec157b72003-09-20 23:27:05 +000066 GlobalsGraph->maskIncompleteMarkers();
Chris Lattneraa0b4682002-11-09 21:12:07 +000067 return false;
68}
Chris Lattner55c10582002-10-03 20:38:41 +000069
Chris Lattnera9c9c022002-11-11 21:35:13 +000070void BUDataStructures::calculateReachableGraphs(Function *F) {
71 std::vector<Function*> Stack;
Chris Lattner41c04f72003-02-01 04:52:08 +000072 hash_map<Function*, unsigned> ValMap;
Chris Lattnera9c9c022002-11-11 21:35:13 +000073 unsigned NextID = 1;
74 calculateGraphs(F, Stack, NextID, ValMap);
75}
76
77DSGraph &BUDataStructures::getOrCreateGraph(Function *F) {
78 // Has the graph already been created?
79 DSGraph *&Graph = DSInfo[F];
80 if (Graph) return *Graph;
81
82 // Copy the local version into DSInfo...
83 Graph = new DSGraph(getAnalysis<LocalDataStructures>().getDSGraph(*F));
84
85 Graph->setGlobalsGraph(GlobalsGraph);
86 Graph->setPrintAuxCalls();
87
88 // Start with a copy of the original call sites...
89 Graph->getAuxFunctionCalls() = Graph->getFunctionCalls();
90 return *Graph;
91}
92
93unsigned BUDataStructures::calculateGraphs(Function *F,
94 std::vector<Function*> &Stack,
95 unsigned &NextID,
Chris Lattner41c04f72003-02-01 04:52:08 +000096 hash_map<Function*, unsigned> &ValMap) {
Chris Lattner6acfe922003-11-13 05:04:19 +000097 assert(!ValMap.count(F) && "Shouldn't revisit functions!");
Chris Lattnera9c9c022002-11-11 21:35:13 +000098 unsigned Min = NextID++, MyID = Min;
99 ValMap[F] = Min;
100 Stack.push_back(F);
101
102 if (F->isExternal()) { // sprintf, fprintf, sscanf, etc...
103 // No callees!
104 Stack.pop_back();
105 ValMap[F] = ~0;
106 return Min;
107 }
108
109 DSGraph &Graph = getOrCreateGraph(F);
110
111 // The edges out of the current node are the call site targets...
Chris Lattner2b4c8df2003-06-30 05:27:53 +0000112 for (DSCallSiteIterator I = DSCallSiteIterator::begin_aux(Graph),
113 E = DSCallSiteIterator::end_aux(Graph); I != E; ++I) {
Chris Lattnera9c9c022002-11-11 21:35:13 +0000114 Function *Callee = *I;
115 unsigned M;
116 // Have we visited the destination function yet?
Chris Lattner41c04f72003-02-01 04:52:08 +0000117 hash_map<Function*, unsigned>::iterator It = ValMap.find(Callee);
Chris Lattnera9c9c022002-11-11 21:35:13 +0000118 if (It == ValMap.end()) // No, visit it now.
119 M = calculateGraphs(Callee, Stack, NextID, ValMap);
120 else // Yes, get it's number.
121 M = It->second;
122 if (M < Min) Min = M;
123 }
124
125 assert(ValMap[F] == MyID && "SCC construction assumption wrong!");
126 if (Min != MyID)
127 return Min; // This is part of a larger SCC!
128
129 // If this is a new SCC, process it now.
130 if (Stack.back() == F) { // Special case the single "SCC" case here.
131 DEBUG(std::cerr << "Visiting single node SCC #: " << MyID << " fn: "
132 << F->getName() << "\n");
133 Stack.pop_back();
Chris Lattner0eea6182003-06-30 05:09:58 +0000134 DSGraph &G = getDSGraph(*F);
135 DEBUG(std::cerr << " [BU] Calculating graph for: " << F->getName()<< "\n");
136 calculateGraph(G);
137 DEBUG(std::cerr << " [BU] Done inlining: " << F->getName() << " ["
138 << G.getGraphSize() << "+" << G.getAuxFunctionCalls().size()
139 << "]\n");
Chris Lattnera9c9c022002-11-11 21:35:13 +0000140
Chris Lattnerae5f6032002-11-17 22:16:28 +0000141 if (MaxSCC < 1) MaxSCC = 1;
142
Chris Lattnera9c9c022002-11-11 21:35:13 +0000143 // Should we revisit the graph?
Chris Lattner2b4c8df2003-06-30 05:27:53 +0000144 if (DSCallSiteIterator::begin_aux(G) != DSCallSiteIterator::end_aux(G)) {
Chris Lattnera9c9c022002-11-11 21:35:13 +0000145 ValMap.erase(F);
146 return calculateGraphs(F, Stack, NextID, ValMap);
147 } else {
148 ValMap[F] = ~0U;
149 }
150 return MyID;
151
152 } else {
153 // SCCFunctions - Keep track of the functions in the current SCC
154 //
Chris Lattnera67138d2004-01-31 21:02:18 +0000155 hash_set<DSGraph*> SCCGraphs;
Chris Lattnera9c9c022002-11-11 21:35:13 +0000156
157 Function *NF;
158 std::vector<Function*>::iterator FirstInSCC = Stack.end();
Chris Lattner0eea6182003-06-30 05:09:58 +0000159 DSGraph *SCCGraph = 0;
Chris Lattnera9c9c022002-11-11 21:35:13 +0000160 do {
161 NF = *--FirstInSCC;
162 ValMap[NF] = ~0U;
Chris Lattner0eea6182003-06-30 05:09:58 +0000163
164 // Figure out which graph is the largest one, in order to speed things up
165 // a bit in situations where functions in the SCC have widely different
166 // graph sizes.
167 DSGraph &NFGraph = getDSGraph(*NF);
Chris Lattnera67138d2004-01-31 21:02:18 +0000168 SCCGraphs.insert(&NFGraph);
Chris Lattner0eea6182003-06-30 05:09:58 +0000169 if (!SCCGraph || SCCGraph->getGraphSize() < NFGraph.getGraphSize())
170 SCCGraph = &NFGraph;
Chris Lattnera9c9c022002-11-11 21:35:13 +0000171 } while (NF != F);
172
Chris Lattner0eea6182003-06-30 05:09:58 +0000173 std::cerr << "Calculating graph for SCC #: " << MyID << " of size: "
Chris Lattnera67138d2004-01-31 21:02:18 +0000174 << SCCGraphs.size() << "\n";
Chris Lattnera9c9c022002-11-11 21:35:13 +0000175
Chris Lattnerae5f6032002-11-17 22:16:28 +0000176 // Compute the Max SCC Size...
Chris Lattnera67138d2004-01-31 21:02:18 +0000177 if (MaxSCC < SCCGraphs.size())
178 MaxSCC = SCCGraphs.size();
Chris Lattnerae5f6032002-11-17 22:16:28 +0000179
Chris Lattner0eea6182003-06-30 05:09:58 +0000180 // First thing first, collapse all of the DSGraphs into a single graph for
181 // the entire SCC. We computed the largest graph, so clone all of the other
182 // (smaller) graphs into it. Discard all of the old graphs.
183 //
Chris Lattnera67138d2004-01-31 21:02:18 +0000184 for (hash_set<DSGraph*>::iterator I = SCCGraphs.begin(),
185 E = SCCGraphs.end(); I != E; ++I) {
186 DSGraph &G = **I;
Chris Lattner0eea6182003-06-30 05:09:58 +0000187 if (&G != SCCGraph) {
188 DSGraph::NodeMapTy NodeMap;
189 SCCGraph->cloneInto(G, SCCGraph->getScalarMap(),
Chris Lattner825a02a2004-01-27 21:50:41 +0000190 SCCGraph->getReturnNodes(), NodeMap);
Chris Lattner0eea6182003-06-30 05:09:58 +0000191 // Update the DSInfo map and delete the old graph...
Chris Lattnera67138d2004-01-31 21:02:18 +0000192 for (DSGraph::ReturnNodesTy::iterator I = G.getReturnNodes().begin(),
193 E = G.getReturnNodes().end(); I != E; ++I)
194 DSInfo[I->first] = SCCGraph;
Chris Lattner0eea6182003-06-30 05:09:58 +0000195 delete &G;
196 }
197 }
Chris Lattnera9c9c022002-11-11 21:35:13 +0000198
Chris Lattner744f9392003-07-02 04:37:48 +0000199 // Clean up the graph before we start inlining a bunch again...
Chris Lattner825a02a2004-01-27 21:50:41 +0000200 SCCGraph->removeDeadNodes(DSGraph::RemoveUnreachableGlobals);
Chris Lattner744f9392003-07-02 04:37:48 +0000201
Chris Lattner0eea6182003-06-30 05:09:58 +0000202 // Now that we have one big happy family, resolve all of the call sites in
203 // the graph...
204 calculateGraph(*SCCGraph);
205 DEBUG(std::cerr << " [BU] Done inlining SCC [" << SCCGraph->getGraphSize()
206 << "+" << SCCGraph->getAuxFunctionCalls().size() << "]\n");
Chris Lattnera9c9c022002-11-11 21:35:13 +0000207
208 std::cerr << "DONE with SCC #: " << MyID << "\n";
209
210 // We never have to revisit "SCC" processed functions...
211
212 // Drop the stuff we don't need from the end of the stack
213 Stack.erase(FirstInSCC, Stack.end());
214 return MyID;
215 }
216
217 return MyID; // == Min
218}
219
220
Chris Lattner0d9bab82002-07-18 00:12:30 +0000221// releaseMemory - If the pass pipeline is done with this pass, we can release
222// our memory... here...
223//
224void BUDataStructures::releaseMemory() {
Chris Lattner0eea6182003-06-30 05:09:58 +0000225 for (hash_map<Function*, DSGraph*>::iterator I = DSInfo.begin(),
226 E = DSInfo.end(); I != E; ++I) {
227 I->second->getReturnNodes().erase(I->first);
228 if (I->second->getReturnNodes().empty())
229 delete I->second;
230 }
Chris Lattner0d9bab82002-07-18 00:12:30 +0000231
232 // Empty map so next time memory is released, data structures are not
233 // re-deleted.
234 DSInfo.clear();
Chris Lattneraa0b4682002-11-09 21:12:07 +0000235 delete GlobalsGraph;
236 GlobalsGraph = 0;
Chris Lattner0d9bab82002-07-18 00:12:30 +0000237}
238
Chris Lattner0eea6182003-06-30 05:09:58 +0000239void BUDataStructures::calculateGraph(DSGraph &Graph) {
Chris Lattnera9c9c022002-11-11 21:35:13 +0000240 // Move our call site list into TempFCs so that inline call sites go into the
241 // new call site list and doesn't invalidate our iterators!
242 std::vector<DSCallSite> TempFCs;
243 std::vector<DSCallSite> &AuxCallsList = Graph.getAuxFunctionCalls();
244 TempFCs.swap(AuxCallsList);
Chris Lattner8a5db462002-11-11 00:01:34 +0000245
Chris Lattner0eea6182003-06-30 05:09:58 +0000246 DSGraph::ReturnNodesTy &ReturnNodes = Graph.getReturnNodes();
247
Chris Lattnera9c9c022002-11-11 21:35:13 +0000248 // Loop over all of the resolvable call sites
249 unsigned LastCallSiteIdx = ~0U;
Chris Lattner2b4c8df2003-06-30 05:27:53 +0000250 for (DSCallSiteIterator I = DSCallSiteIterator::begin(TempFCs),
251 E = DSCallSiteIterator::end(TempFCs); I != E; ++I) {
Chris Lattnera9c9c022002-11-11 21:35:13 +0000252 // If we skipped over any call sites, they must be unresolvable, copy them
253 // to the real call site list.
254 LastCallSiteIdx++;
255 for (; LastCallSiteIdx < I.getCallSiteIdx(); ++LastCallSiteIdx)
256 AuxCallsList.push_back(TempFCs[LastCallSiteIdx]);
257 LastCallSiteIdx = I.getCallSiteIdx();
Chris Lattnera1079052002-11-10 06:52:47 +0000258
Chris Lattnera9c9c022002-11-11 21:35:13 +0000259 // Resolve the current call...
260 Function *Callee = *I;
Chris Lattner744f9392003-07-02 04:37:48 +0000261 DSCallSite CS = I.getCallSite();
Chris Lattner0d9bab82002-07-18 00:12:30 +0000262
Chris Lattnera9c9c022002-11-11 21:35:13 +0000263 if (Callee->isExternal()) {
264 // Ignore this case, simple varargs functions we cannot stub out!
Chris Lattner6acfe922003-11-13 05:04:19 +0000265 } else if (ReturnNodes.count(Callee)) {
Chris Lattnera9c9c022002-11-11 21:35:13 +0000266 // Self recursion... simply link up the formal arguments with the
267 // actual arguments...
Chris Lattner0eea6182003-06-30 05:09:58 +0000268 DEBUG(std::cerr << " Self Inlining: " << Callee->getName() << "\n");
Chris Lattnera9c9c022002-11-11 21:35:13 +0000269
270 // Handle self recursion by resolving the arguments and return value
Chris Lattner0eea6182003-06-30 05:09:58 +0000271 Graph.mergeInGraph(CS, *Callee, Graph, 0);
Chris Lattnera9c9c022002-11-11 21:35:13 +0000272
273 } else {
Chris Lattner808a7ae2003-09-20 16:34:13 +0000274 ActualCallees.insert(std::make_pair(CS.getCallSite().getInstruction(),
275 Callee));
Chris Lattner744f9392003-07-02 04:37:48 +0000276
Chris Lattnera9c9c022002-11-11 21:35:13 +0000277 // Get the data structure graph for the called function.
278 //
279 DSGraph &GI = getDSGraph(*Callee); // Graph to inline
280
281 DEBUG(std::cerr << " Inlining graph for " << Callee->getName()
Chris Lattner20167e32003-02-03 19:11:38 +0000282 << "[" << GI.getGraphSize() << "+"
Chris Lattner5d5b6d62003-07-01 16:04:18 +0000283 << GI.getAuxFunctionCalls().size() << "] into '"
284 << Graph.getFunctionNames() << "' [" << Graph.getGraphSize() << "+"
Chris Lattner20167e32003-02-03 19:11:38 +0000285 << Graph.getAuxFunctionCalls().size() << "]\n");
Chris Lattnera9c9c022002-11-11 21:35:13 +0000286
Chris Lattner5a540632003-06-30 03:15:25 +0000287 Graph.mergeInGraph(CS, *Callee, GI,
Vikram S. Adve61ff0292002-11-27 17:41:13 +0000288 DSGraph::KeepModRefBits |
289 DSGraph::StripAllocaBit | DSGraph::DontCloneCallNodes);
Chris Lattnerd391d702003-07-02 20:24:42 +0000290 ++NumBUInlines;
Chris Lattnerae5f6032002-11-17 22:16:28 +0000291
292#if 0
293 Graph.writeGraphToFile(std::cerr, "bu_" + F.getName() + "_after_" +
294 Callee->getName());
295#endif
Chris Lattnera9c9c022002-11-11 21:35:13 +0000296 }
297 }
298
299 // Make sure to catch any leftover unresolvable calls...
300 for (++LastCallSiteIdx; LastCallSiteIdx < TempFCs.size(); ++LastCallSiteIdx)
301 AuxCallsList.push_back(TempFCs[LastCallSiteIdx]);
302
303 TempFCs.clear();
304
Vikram S. Adve1da1d322003-07-16 21:42:03 +0000305 // Re-materialize nodes from the globals graph.
306 // Do not ignore globals inlined from callees -- they are not up-to-date!
Chris Lattner825a02a2004-01-27 21:50:41 +0000307 assert(Graph.getInlinedGlobals().empty());
Vikram S. Adve1da1d322003-07-16 21:42:03 +0000308 Graph.updateFromGlobalGraph();
309
310 // Recompute the Incomplete markers
Chris Lattnera9c9c022002-11-11 21:35:13 +0000311 Graph.maskIncompleteMarkers();
Chris Lattner394471f2003-01-23 22:05:33 +0000312 Graph.markIncompleteNodes(DSGraph::MarkFormalArgs);
Vikram S. Adve1da1d322003-07-16 21:42:03 +0000313
314 // Delete dead nodes. Treat globals that are unreachable but that can
315 // reach live nodes as live.
Chris Lattner394471f2003-01-23 22:05:33 +0000316 Graph.removeDeadNodes(DSGraph::KeepUnreachableGlobals);
Chris Lattnera9c9c022002-11-11 21:35:13 +0000317
Chris Lattnera9c9c022002-11-11 21:35:13 +0000318 //Graph.writeGraphToFile(std::cerr, "bu_" + F.getName());
Chris Lattnera9c9c022002-11-11 21:35:13 +0000319}