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Anand Shukla70a61382002-02-26 19:00:48 +00001//===-- ProfilePaths.cpp - interface to insert instrumentation ---*- C++ -*--=//
2//
3// This inserts intrumentation for counting
Chris Lattner62b7fd12002-04-07 20:49:59 +00004// execution of paths though a given function
5// Its implemented as a "Function" Pass, and called using opt
Anand Shukla70a61382002-02-26 19:00:48 +00006//
7// This pass is implemented by using algorithms similar to
8// 1."Efficient Path Profiling": Ball, T. and Larus, J. R.,
9// Proceedings of Micro-29, Dec 1996, Paris, France.
10// 2."Efficiently Counting Program events with support for on-line
11// "queries": Ball T., ACM Transactions on Programming Languages
12// and systems, Sep 1994.
13//
14// The algorithms work on a Graph constructed over the nodes
15// made from Basic Blocks: The transformations then take place on
16// the constucted graph (implementation in Graph.cpp and GraphAuxillary.cpp)
17// and finally, appropriate instrumentation is placed over suitable edges.
18// (code inserted through EdgeCode.cpp).
19//
20// The algorithm inserts code such that every acyclic path in the CFG
Chris Lattner62b7fd12002-04-07 20:49:59 +000021// of a function is identified through a unique number. the code insertion
Anand Shukla70a61382002-02-26 19:00:48 +000022// is optimal in the sense that its inserted over a minimal set of edges. Also,
23// the algorithm makes sure than initialization, path increment and counter
Anand Shukla21906892002-06-25 21:14:58 +000024// update can be collapsed into minimum number of edges.
Anand Shukla70a61382002-02-26 19:00:48 +000025//===----------------------------------------------------------------------===//
26
Chris Lattner15435fd2002-05-07 19:18:48 +000027#include "llvm/Transforms/Utils/UnifyFunctionExitNodes.h"
Anand Shukla70a61382002-02-26 19:00:48 +000028#include "llvm/Support/CFG.h"
Chris Lattnerca142372002-04-28 19:55:58 +000029#include "llvm/Constants.h"
Anand Shukla70a61382002-02-26 19:00:48 +000030#include "llvm/DerivedTypes.h"
31#include "llvm/iMemory.h"
Anand Shukla77dca142002-09-20 16:44:35 +000032#include "llvm/Module.h"
Chris Lattner2f04a0d2003-01-14 22:33:56 +000033#include "Graph.h"
Anand Shukla21906892002-06-25 21:14:58 +000034#include <fstream>
Anand Shukla70a61382002-02-26 19:00:48 +000035
36using std::vector;
37
Chris Lattner37104aa2002-04-29 14:57:45 +000038struct ProfilePaths : public FunctionPass {
Chris Lattner7076ff22002-06-25 16:13:21 +000039 bool runOnFunction(Function &F);
Chris Lattnerd2095502002-02-26 20:04:59 +000040
41 // Before this pass, make sure that there is only one
Chris Lattner62b7fd12002-04-07 20:49:59 +000042 // entry and only one exit node for the function in the CFG of the function
Chris Lattnerd2095502002-02-26 20:04:59 +000043 //
Chris Lattnerc8e66542002-04-27 06:56:12 +000044 void ProfilePaths::getAnalysisUsage(AnalysisUsage &AU) const {
Chris Lattner40eb9da2002-08-08 19:01:28 +000045 AU.addRequired<UnifyFunctionExitNodes>();
Chris Lattnerd2095502002-02-26 20:04:59 +000046 }
47};
48
Chris Lattnera2c09852002-07-26 21:12:44 +000049static RegisterOpt<ProfilePaths> X("paths", "Profile Paths");
Chris Lattnerb28b6802002-07-23 18:06:35 +000050
Anand Shukla21906892002-06-25 21:14:58 +000051static Node *findBB(std::vector<Node *> &st, BasicBlock *BB){
52 for(std::vector<Node *>::iterator si=st.begin(); si!=st.end(); ++si){
Anand Shukla70a61382002-02-26 19:00:48 +000053 if(((*si)->getElement())==BB){
54 return *si;
55 }
56 }
57 return NULL;
58}
59
Chris Lattner62b7fd12002-04-07 20:49:59 +000060//Per function pass for inserting counters and trigger code
Chris Lattner7076ff22002-06-25 16:13:21 +000061bool ProfilePaths::runOnFunction(Function &F){
Anand Shukla21906892002-06-25 21:14:58 +000062
63 static int mn = -1;
Anand Shukla11f42622002-07-08 19:36:01 +000064
Anand Shuklafd61c602002-07-18 20:56:47 +000065 if(F.isExternal()) {
Anand Shukla11f42622002-07-08 19:36:01 +000066 return false;
67 }
68
69 //increment counter for instrumented functions. mn is now function#
70 mn++;
71
Chris Lattnerf9986852002-04-27 07:27:19 +000072 // Transform the cfg s.t. we have just one exit node
73 BasicBlock *ExitNode = getAnalysis<UnifyFunctionExitNodes>().getExitNode();
Anand Shukla21906892002-06-25 21:14:58 +000074
75 //iterating over BBs and making graph
76 std::vector<Node *> nodes;
77 std::vector<Edge> edges;
78
Anand Shukla70a61382002-02-26 19:00:48 +000079 Node *tmp;
Chris Lattnera2620ac2002-11-09 00:49:43 +000080 Node *exitNode = 0, *startNode = 0;
Anand Shukla70a61382002-02-26 19:00:48 +000081
Chris Lattnerf9986852002-04-27 07:27:19 +000082 // The nodes must be uniquesly identified:
83 // That is, no two nodes must hav same BB*
Anand Shukla70a61382002-02-26 19:00:48 +000084
Chris Lattner7076ff22002-06-25 16:13:21 +000085 for (Function::iterator BB = F.begin(), BE = F.end(); BB != BE; ++BB) {
86 Node *nd=new Node(BB);
Anand Shukla21906892002-06-25 21:14:58 +000087 nodes.push_back(nd);
Chris Lattner7076ff22002-06-25 16:13:21 +000088 if(&*BB == ExitNode)
Anand Shukla70a61382002-02-26 19:00:48 +000089 exitNode=nd;
Chris Lattner7076ff22002-06-25 16:13:21 +000090 if(&*BB==F.begin())
Anand Shukla70a61382002-02-26 19:00:48 +000091 startNode=nd;
92 }
93
Chris Lattnerf9986852002-04-27 07:27:19 +000094 // now do it againto insert edges
Chris Lattner7076ff22002-06-25 16:13:21 +000095 for (Function::iterator BB = F.begin(), BE = F.end(); BB != BE; ++BB){
96 Node *nd=findBB(nodes, BB);
Anand Shukla70a61382002-02-26 19:00:48 +000097 assert(nd && "No node for this edge!");
Anand Shukla21906892002-06-25 21:14:58 +000098
Chris Lattner7076ff22002-06-25 16:13:21 +000099 for(BasicBlock::succ_iterator s=succ_begin(BB), se=succ_end(BB);
Anand Shukla70a61382002-02-26 19:00:48 +0000100 s!=se; ++s){
101 Node *nd2=findBB(nodes,*s);
102 assert(nd2 && "No node for this edge!");
103 Edge ed(nd,nd2,0);
Anand Shukla21906892002-06-25 21:14:58 +0000104 edges.push_back(ed);
Anand Shukla70a61382002-02-26 19:00:48 +0000105 }
106 }
107
108 Graph g(nodes,edges, startNode, exitNode);
109
Anand Shuklad9a6af02002-09-16 05:24:49 +0000110#ifdef DEBUG_PATH_PROFILES
111 std::cerr<<"Original graph\n";
112 printGraph(g);
113#endif
Anand Shukla70a61382002-02-26 19:00:48 +0000114
Anand Shukla11f42622002-07-08 19:36:01 +0000115 BasicBlock *fr = &F.front();
Anand Shukla70a61382002-02-26 19:00:48 +0000116
Anand Shukla11f42622002-07-08 19:36:01 +0000117 // The graph is made acyclic: this is done
118 // by removing back edges for now, and adding them later on
119 vector<Edge> be;
Anand Shuklafd61c602002-07-18 20:56:47 +0000120 std::map<Node *, int> nodePriority; //it ranks nodes in depth first order traversal
121 g.getBackEdges(be, nodePriority);
Anand Shuklad9a6af02002-09-16 05:24:49 +0000122
123#ifdef DEBUG_PATH_PROFILES
124 std::cerr<<"BackEdges-------------\n";
125 for(vector<Edge>::iterator VI=be.begin(); VI!=be.end(); ++VI){
126 printEdge(*VI);
127 cerr<<"\n";
128 }
129 std::cerr<<"------\n";
130#endif
Anand Shukla21906892002-06-25 21:14:58 +0000131
132#ifdef DEBUG_PATH_PROFILES
Anand Shukla11f42622002-07-08 19:36:01 +0000133 cerr<<"Backedges:"<<be.size()<<endl;
Anand Shukla21906892002-06-25 21:14:58 +0000134#endif
Anand Shukla11f42622002-07-08 19:36:01 +0000135 //Now we need to reflect the effect of back edges
136 //This is done by adding dummy edges
137 //If a->b is a back edge
138 //Then we add 2 back edges for it:
139 //1. from root->b (in vector stDummy)
140 //and 2. from a->exit (in vector exDummy)
141 vector<Edge> stDummy;
142 vector<Edge> exDummy;
143 addDummyEdges(stDummy, exDummy, g, be);
Anand Shukla21906892002-06-25 21:14:58 +0000144
Anand Shuklad9a6af02002-09-16 05:24:49 +0000145#ifdef DEBUG_PATH_PROFILES
146 std::cerr<<"After adding dummy edges\n";
147 printGraph(g);
148#endif
149
Anand Shukla11f42622002-07-08 19:36:01 +0000150 // Now, every edge in the graph is assigned a weight
151 // This weight later adds on to assign path
152 // numbers to different paths in the graph
153 // All paths for now are acyclic,
154 // since no back edges in the graph now
155 // numPaths is the number of acyclic paths in the graph
Anand Shuklad9a6af02002-09-16 05:24:49 +0000156 int numPaths=valueAssignmentToEdges(g, nodePriority, be);
Anand Shukla21906892002-06-25 21:14:58 +0000157
Anand Shuklaf8c09ee2003-02-14 20:41:53 +0000158 //if(numPaths<=1) return false;
159
Anand Shuklafd61c602002-07-18 20:56:47 +0000160 if(numPaths<=1 || numPaths >5000) return false;
Anand Shuklad9a6af02002-09-16 05:24:49 +0000161
162#ifdef DEBUG_PATH_PROFILES
163 printGraph(g);
164#endif
165
Anand Shukla11f42622002-07-08 19:36:01 +0000166 //create instruction allocation r and count
167 //r is the variable that'll act like an accumulator
168 //all along the path, we just add edge values to r
169 //and at the end, r reflects the path number
170 //count is an array: count[x] would store
171 //the number of executions of path numbered x
Anand Shukla21906892002-06-25 21:14:58 +0000172
Anand Shukla11f42622002-07-08 19:36:01 +0000173 Instruction *rVar=new
Anand Shuklad9a6af02002-09-16 05:24:49 +0000174 AllocaInst(Type::IntTy,
Anand Shukla11f42622002-07-08 19:36:01 +0000175 ConstantUInt::get(Type::UIntTy,1),"R");
Anand Shuklad9a6af02002-09-16 05:24:49 +0000176
Anand Shuklaf8c09ee2003-02-14 20:41:53 +0000177 //Instruction *countVar=new
178 //AllocaInst(Type::IntTy,
179 // ConstantUInt::get(Type::UIntTy, numPaths), "Count");
180
181 //initialize counter array!
182 std::vector<Constant*> arrayInitialize;
183 for(int xi=0; xi<numPaths; xi++)
184 arrayInitialize.push_back(ConstantSInt::get(Type::IntTy, 0));
185
186 Constant *initializer = ConstantArray::get(ArrayType::get(Type::IntTy, numPaths), arrayInitialize);
187 GlobalVariable *countVar = new GlobalVariable(ArrayType::get(Type::IntTy, numPaths), false, true, initializer, "Count", F.getParent());
Anand Shukla77dca142002-09-20 16:44:35 +0000188 static GlobalVariable *threshold = NULL;
189 static bool insertedThreshold = false;
190
191 if(!insertedThreshold){
Anand Shukla12b05f32002-10-12 20:33:47 +0000192 threshold = new GlobalVariable(Type::IntTy, false, false, 0,
Anand Shukla77dca142002-09-20 16:44:35 +0000193 "reopt_threshold");
194
195 F.getParent()->getGlobalList().push_back(threshold);
196 insertedThreshold = true;
197 }
198
199 assert(threshold && "GlobalVariable threshold not defined!");
200
Anand Shukla11f42622002-07-08 19:36:01 +0000201 // insert initialization code in first (entry) BB
202 // this includes initializing r and count
Anand Shuklaf8c09ee2003-02-14 20:41:53 +0000203 insertInTopBB(&F.getEntryNode(),numPaths, rVar, threshold);
Anand Shukla70a61382002-02-26 19:00:48 +0000204
Anand Shukla11f42622002-07-08 19:36:01 +0000205 //now process the graph: get path numbers,
206 //get increments along different paths,
207 //and assign "increments" and "updates" (to r and count)
208 //"optimally". Finally, insert llvm code along various edges
Anand Shukla77dca142002-09-20 16:44:35 +0000209 processGraph(g, rVar, countVar, be, stDummy, exDummy, numPaths, mn,
210 threshold);
Anand Shuklafd61c602002-07-18 20:56:47 +0000211
Chris Lattner62b7fd12002-04-07 20:49:59 +0000212 return true; // Always modifies function
Anand Shukla70a61382002-02-26 19:00:48 +0000213}