#include "llvm/Module.h"
#include "llvm/DerivedTypes.h"
#include "llvm/iOther.h"
+#include "llvm/Intrinsics.h"
#include "Support/LeakDetector.h"
#include "SymbolTableListTraitsImpl.h"
// Argument Implementation
//===----------------------------------------------------------------------===//
-Argument::Argument(const Type *Ty, const std::string &Name = "", Function *Par)
+Argument::Argument(const Type *Ty, const std::string &Name, Function *Par)
: Value(Ty, Value::ArgumentVal, Name) {
Parent = 0;
// Specialize setName to take care of symbol table majik
void Argument::setName(const std::string &name, SymbolTable *ST) {
Function *P;
- assert((ST == 0 || (!getParent() || ST == getParent()->getSymbolTable())) &&
+ assert((ST == 0 || (!getParent() || ST == &getParent()->getSymbolTable())) &&
"Invalid symtab argument!");
- if ((P = getParent()) && hasName()) P->getSymbolTable()->remove(this);
+ if ((P = getParent()) && hasName()) P->getSymbolTable().remove(this);
Value::setName(name);
- if (P && hasName()) P->getSymbolTable()->insert(this);
+ if (P && hasName()) P->getSymbolTable().insert(this);
}
void Argument::setParent(Function *parent) {
// Function Implementation
//===----------------------------------------------------------------------===//
-Function::Function(const FunctionType *Ty, bool isInternal,
+Function::Function(const FunctionType *Ty, LinkageTypes Linkage,
const std::string &name, Module *ParentModule)
- : GlobalValue(PointerType::get(Ty), Value::FunctionVal, isInternal, name) {
+ : GlobalValue(PointerType::get(Ty), Value::FunctionVal, Linkage, name) {
BasicBlocks.setItemParent(this);
BasicBlocks.setParent(this);
ArgumentList.setItemParent(this);
ArgumentList.setParent(this);
- ParentSymTab = SymTab = 0;
+ SymTab = new SymbolTable();
+
+ // Create the arguments vector, all arguments start out unnamed.
+ for (unsigned i = 0, e = Ty->getNumParams(); i != e; ++i) {
+ assert(Ty->getParamType(i) != Type::VoidTy &&
+ "Cannot have void typed arguments!");
+ ArgumentList.push_back(new Argument(Ty->getParamType(i)));
+ }
// Make sure that we get added to a function
LeakDetector::addGarbageObject(this);
// Specialize setName to take care of symbol table majik
void Function::setName(const std::string &name, SymbolTable *ST) {
Module *P;
- assert((ST == 0 || (!getParent() || ST == getParent()->getSymbolTable())) &&
+ assert((ST == 0 || (!getParent() || ST == &getParent()->getSymbolTable())) &&
"Invalid symtab argument!");
- if ((P = getParent()) && hasName()) P->getSymbolTable()->remove(this);
+ if ((P = getParent()) && hasName()) P->getSymbolTable().remove(this);
Value::setName(name);
- if (P && getName() != "") P->getSymbolTableSure()->insert(this);
+ if (P && getName() != "") P->getSymbolTable().insert(this);
}
void Function::setParent(Module *parent) {
Parent = parent;
if (getParent())
LeakDetector::removeGarbageObject(this);
-
- // Relink symbol tables together...
- ParentSymTab = Parent ? Parent->getSymbolTableSure() : 0;
- if (SymTab) SymTab->setParentSymTab(ParentSymTab);
}
const FunctionType *Function::getFunctionType() const {
return getFunctionType()->getReturnType();
}
-SymbolTable *Function::getSymbolTableSure() {
- if (!SymTab) SymTab = new SymbolTable(ParentSymTab);
- return SymTab;
-}
-
-// hasSymbolTable() - Returns true if there is a symbol table allocated to
-// this object AND if there is at least one name in it!
-//
-bool Function::hasSymbolTable() const {
- if (!SymTab) return false;
-
- for (SymbolTable::const_iterator I = SymTab->begin();
- I != SymTab->end(); ++I) {
- if (I->second.begin() != I->second.end())
- return true; // Found nonempty type plane!
- }
-
- return false;
-}
-
-
// dropAllReferences() - This function causes all the subinstructions to "let
// go" of all references that they are maintaining. This allows one to
// 'delete' a whole class at a time, even though there may be circular
I->dropAllReferences();
}
+/// getIntrinsicID - This method returns the ID number of the specified
+/// function, or LLVMIntrinsic::not_intrinsic if the function is not an
+/// instrinsic, or if the pointer is null. This value is always defined to be
+/// zero to allow easy checking for whether a function is intrinsic or not. The
+/// particular intrinsic functions which correspond to this value are defined in
+/// llvm/Intrinsics.h.
+///
+unsigned Function::getIntrinsicID() const {
+ if (getName().size() <= 5 || getName()[4] != '.' || getName()[0] != 'l' ||
+ getName()[1] != 'l' || getName()[2] != 'v' || getName()[3] != 'm')
+ return 0; // All intrinsics start with 'llvm.'
+
+ switch (getName()[5]) {
+ case 'a':
+ if (getName() == "llvm.alpha.ctlz") return LLVMIntrinsic::alpha_ctlz;
+ if (getName() == "llvm.alpha.cttz") return LLVMIntrinsic::alpha_cttz;
+ if (getName() == "llvm.alpha.ctpop") return LLVMIntrinsic::alpha_ctpop;
+ if (getName() == "llvm.alpha.umulh") return LLVMIntrinsic::alpha_umulh;
+ break;
+ case 'l':
+ if (getName() == "llvm.longjmp") return LLVMIntrinsic::longjmp;
+ break;
+ case 's':
+ if (getName() == "llvm.setjmp") return LLVMIntrinsic::setjmp;
+ break;
+ case 'v':
+ if (getName() == "llvm.va_copy") return LLVMIntrinsic::va_copy;
+ if (getName() == "llvm.va_end") return LLVMIntrinsic::va_end;
+ if (getName() == "llvm.va_start") return LLVMIntrinsic::va_start;
+ break;
+ }
+ // The "llvm." namespace is reserved!
+ assert(0 && "Unknown LLVM intrinsic function!");
+ return 0;
+}
+
+
//===----------------------------------------------------------------------===//
// GlobalVariable Implementation
//===----------------------------------------------------------------------===//
-GlobalVariable::GlobalVariable(const Type *Ty, bool constant, bool isIntern,
+GlobalVariable::GlobalVariable(const Type *Ty, bool constant, LinkageTypes Link,
Constant *Initializer,
const std::string &Name, Module *ParentModule)
- : GlobalValue(PointerType::get(Ty), Value::GlobalVariableVal, isIntern, Name),
+ : GlobalValue(PointerType::get(Ty), Value::GlobalVariableVal, Link, Name),
isConstantGlobal(constant) {
if (Initializer) Operands.push_back(Use((Value*)Initializer, this));
// Specialize setName to take care of symbol table majik
void GlobalVariable::setName(const std::string &name, SymbolTable *ST) {
Module *P;
- assert((ST == 0 || (!getParent() || ST == getParent()->getSymbolTable())) &&
+ assert((ST == 0 || (!getParent() || ST == &getParent()->getSymbolTable())) &&
"Invalid symtab argument!");
- if ((P = getParent()) && hasName()) P->getSymbolTable()->remove(this);
+ if ((P = getParent()) && hasName()) P->getSymbolTable().remove(this);
Value::setName(name);
- if (P && getName() != "") P->getSymbolTableSure()->insert(this);
+ if (P && getName() != "") P->getSymbolTable().insert(this);
}