blob: d5730985e8ae885b0a433fce44f9096707d40905 [file] [log] [blame]
Chris Lattner03453a02002-05-07 19:04:39 +00001//===- RaiseAllocations.cpp - Convert %malloc & %free calls to insts ------===//
Chris Lattner77f791d2002-05-07 19:02:48 +00002//
Chris Lattner03453a02002-05-07 19:04:39 +00003// This file defines the RaiseAllocations pass which convert malloc and free
4// calls to malloc and free instructions.
Chris Lattner77f791d2002-05-07 19:02:48 +00005//
6//===----------------------------------------------------------------------===//
7
8#include "llvm/Transforms/ChangeAllocations.h"
9#include "llvm/Transforms/Utils/BasicBlockUtils.h"
10#include "llvm/Module.h"
11#include "llvm/Function.h"
12#include "llvm/DerivedTypes.h"
13#include "llvm/iMemory.h"
14#include "llvm/iOther.h"
15#include "llvm/Pass.h"
16
17namespace {
18
19// RaiseAllocations - Turn %malloc and %free calls into the appropriate
20// instruction.
21//
22class RaiseAllocations : public BasicBlockPass {
23 Function *MallocFunc; // Functions in the module we are processing
24 Function *FreeFunc; // Initialized by doPassInitializationVirt
25public:
26 inline RaiseAllocations() : MallocFunc(0), FreeFunc(0) {}
27
28 const char *getPassName() const { return "Raise Allocations"; }
29
30 // doPassInitialization - For the raise allocations pass, this finds a
31 // declaration for malloc and free if they exist.
32 //
33 bool doInitialization(Module *M);
34
35 // runOnBasicBlock - This method does the actual work of converting
36 // instructions over, assuming that the pass has already been initialized.
37 //
38 bool runOnBasicBlock(BasicBlock *BB);
39};
40
41} // end anonymous namespace
42
43
44// createRaiseAllocationsPass - The interface to this file...
45Pass *createRaiseAllocationsPass() {
46 return new RaiseAllocations();
47}
48
49
50bool RaiseAllocations::doInitialization(Module *M) {
51 // If the module has a symbol table, they might be referring to the malloc
52 // and free functions. If this is the case, grab the method pointers that
53 // the module is using.
54 //
55 // Lookup %malloc and %free in the symbol table, for later use. If they
56 // don't exist, or are not external, we do not worry about converting calls
57 // to that function into the appropriate instruction.
58 //
59 const FunctionType *MallocType = // Get the type for malloc
60 FunctionType::get(PointerType::get(Type::SByteTy),
61 std::vector<const Type*>(1, Type::UIntTy), false);
62
63 const FunctionType *FreeType = // Get the type for free
64 FunctionType::get(Type::VoidTy,
65 std::vector<const Type*>(1, PointerType::get(Type::SByteTy)),
66 false);
67
68 MallocFunc = M->getFunction("malloc", MallocType);
69 FreeFunc = M->getFunction("free" , FreeType);
70
71 // Don't mess with locally defined versions of these functions...
72 if (MallocFunc && !MallocFunc->isExternal()) MallocFunc = 0;
73 if (FreeFunc && !FreeFunc->isExternal()) FreeFunc = 0;
74 return false;
75}
76
Chris Lattner03453a02002-05-07 19:04:39 +000077// runOnBasicBlock - Process a basic block, fixing it up...
Chris Lattner77f791d2002-05-07 19:02:48 +000078//
79bool RaiseAllocations::runOnBasicBlock(BasicBlock *BB) {
80 bool Changed = false;
81 BasicBlock::InstListType &BIL = BB->getInstList();
82
83 for (BasicBlock::iterator BI = BB->begin(); BI != BB->end();) {
84 Instruction *I = *BI;
85
86 if (CallInst *CI = dyn_cast<CallInst>(I)) {
87 if (CI->getCalledValue() == MallocFunc) { // Replace call to malloc?
88 const Type *PtrSByte = PointerType::get(Type::SByteTy);
89 MallocInst *MallocI = new MallocInst(PtrSByte, CI->getOperand(1),
90 CI->getName());
91 CI->setName("");
92 ReplaceInstWithInst(BIL, BI, MallocI);
93 Changed = true;
94 continue; // Skip the ++BI
95 } else if (CI->getCalledValue() == FreeFunc) { // Replace call to free?
96 ReplaceInstWithInst(BIL, BI, new FreeInst(CI->getOperand(1)));
97 Changed = true;
98 continue; // Skip the ++BI
99 }
100 }
101
102 ++BI;
103 }
104
105 return Changed;
106}