#include "llvm/Constants.h"
#include "llvm/InlineAsm.h"
#include "llvm/Instructions.h"
+#include "llvm/ParameterAttributes.h"
#include "llvm/TypeSymbolTable.h"
#include "llvm/Bytecode/Format.h"
#include "llvm/Config/alloca.h"
if (Num < Locals->size())
return Locals->getOperand(Num);
+ // We did not find the value.
+
if (!Create) return 0; // Do not create a placeholder?
// Did we already create a place holder?
}
case Type::FunctionTyID: {
const Type *RetType = readType();
- unsigned RetAttr = read_vbr_uint();
-
unsigned NumParams = read_vbr_uint();
std::vector<const Type*> Params;
- std::vector<FunctionType::ParameterAttributes> Attrs;
- Attrs.push_back(FunctionType::ParameterAttributes(RetAttr));
while (NumParams--) {
Params.push_back(readType());
- if (Params.back() != Type::VoidTy)
- Attrs.push_back(FunctionType::ParameterAttributes(read_vbr_uint()));
}
bool isVarArg = Params.size() && Params.back() == Type::VoidTy;
- if (isVarArg) Params.pop_back();
+ if (isVarArg)
+ Params.pop_back();
+
+ ParamAttrsList *Attrs = ParseParamAttrsList();
Result = FunctionType::get(RetType, Params, isVarArg, Attrs);
break;
return Result;
}
+ParamAttrsList *BytecodeReader::ParseParamAttrsList() {
+ unsigned NumAttrs = read_vbr_uint();
+ ParamAttrsList *Attrs = 0;
+ if (NumAttrs) {
+ Attrs = new ParamAttrsList();
+ while (NumAttrs--) {
+ uint16_t index = read_vbr_uint();
+ uint16_t attrs = read_vbr_uint();
+ Attrs->addAttributes(index, attrs);
+ }
+ }
+ return Attrs;
+}
+
+
// ParseTypes - We have to use this weird code to handle recursive
// types. We know that recursive types will only reference the current slab of
// values in the type plane, but they can forward reference types before they
//===----------------------------------------------------------------------===//
BytecodeHandler::~BytecodeHandler() {}
-
/// @brief Parse global types
void ParseGlobalTypes();
+
/// @brief Parse a basic block (for LLVM 1.0 basic block blocks)
BasicBlock* ParseBasicBlock(unsigned BlockNo);
/// @brief Parse a single type constant
const Type *ParseType();
+ /// @brief Parse a list of parameter attributes
+ ParamAttrsList *ParseParamAttrsList();
+
/// @brief Parse a string constants block
void ParseStringConstants(unsigned NumEntries, ValueTable &Tab);
SC_DEBUG("end purgeFunction!\n");
}
+inline static bool hasImplicitNull(const Type* Ty) {
+ return Ty != Type::LabelTy && Ty != Type::VoidTy && !isa<OpaqueType>(Ty);
+}
+
void SlotCalculator::CreateFunctionValueSlot(const Value *V) {
assert(!NodeMap.count(V) && "Function-local value can't be inserted!");
// to insert the implicit null value.
if (Table[TyPlane].empty()) {
// Label's and opaque types can't have a null value.
- if (Ty != Type::LabelTy && !isa<OpaqueType>(Ty)) {
+ if (hasImplicitNull(Ty)) {
Value *ZeroInitializer = Constant::getNullValue(Ty);
// If we are pushing zeroinit, it will be handled below.
SC_DEBUG(" Inserting value [" << TyPlane << "] = " << *V << " slot=" <<
NodeMap[V] << "\n");
-}
-
+}
SlotCalculator(const Module *M);
/// getSlot - Return the slot number of the specified value in it's type
- /// plane. This returns < 0 on error!
+ /// plane.
///
unsigned getSlot(const Value *V) const {
NodeMapType::const_iterator I = NodeMap.find(V);
//
//===----------------------------------------------------------------------===//
-#define DEBUG_TYPE "bytecodewriter"
+#define DEBUG_TYPE "bcwriter"
#include "WriterInternals.h"
#include "llvm/Bytecode/WriteBytecodePass.h"
#include "llvm/CallingConv.h"
#include "llvm/Constants.h"
#include "llvm/DerivedTypes.h"
+#include "llvm/ParameterAttributes.h"
#include "llvm/InlineAsm.h"
#include "llvm/Instructions.h"
#include "llvm/Module.h"
//=== Constant Output ===//
//===----------------------------------------------------------------------===//
+void BytecodeWriter::outputParamAttrsList(const ParamAttrsList *Attrs) {
+ if (!Attrs) {
+ output_vbr(unsigned(0));
+ return;
+ }
+ unsigned numAttrs = Attrs->size();
+ output_vbr(numAttrs);
+ for (unsigned i = 0; i < numAttrs; ++i) {
+ uint16_t index = Attrs->getParamIndex(i);
+ uint16_t attrs = Attrs->getParamAttrs(index);
+ output_vbr(uint32_t(index));
+ output_vbr(uint32_t(attrs));
+ }
+}
+
void BytecodeWriter::outputType(const Type *T) {
const StructType* STy = dyn_cast<StructType>(T);
if(STy && STy->isPacked())
output_vbr(cast<IntegerType>(T)->getBitWidth());
break;
case Type::FunctionTyID: {
- const FunctionType *MT = cast<FunctionType>(T);
- output_typeid(Table.getTypeSlot(MT->getReturnType()));
- output_vbr(unsigned(MT->getParamAttrs(0)));
+ const FunctionType *FT = cast<FunctionType>(T);
+ output_typeid(Table.getTypeSlot(FT->getReturnType()));
// Output the number of arguments to function (+1 if varargs):
- output_vbr((unsigned)MT->getNumParams()+MT->isVarArg());
+ output_vbr((unsigned)FT->getNumParams()+FT->isVarArg());
// Output all of the arguments...
- FunctionType::param_iterator I = MT->param_begin();
- unsigned Idx = 1;
- for (; I != MT->param_end(); ++I) {
+ FunctionType::param_iterator I = FT->param_begin();
+ for (; I != FT->param_end(); ++I)
output_typeid(Table.getTypeSlot(*I));
- output_vbr(unsigned(MT->getParamAttrs(Idx)));
- Idx++;
- }
// Terminate list with VoidTy if we are a varargs function...
- if (MT->isVarArg())
+ if (FT->isVarArg())
output_typeid((unsigned)Type::VoidTyID);
+
+ // Put out all the parameter attributes
+ outputParamAttrsList(FT->getParamAttrs());
break;
}
// Organize the symbol table by type
typedef SmallVector<const ValueName*, 8> PlaneMapVector;
- typedef DenseMap<const Type*, PlaneMapVector > PlaneMap;
+ typedef DenseMap<const Type*, PlaneMapVector> PlaneMap;
PlaneMap Planes;
for (ValueSymbolTable::const_iterator SI = VST.begin(), SE = VST.end();
SI != SE; ++SI)
class InlineAsm;
class TypeSymbolTable;
class ValueSymbolTable;
+ class ParamAttrsList;
class BytecodeWriter {
std::vector<unsigned char> &Out;
void outputTypeSymbolTable(const TypeSymbolTable &TST);
void outputValueSymbolTable(const ValueSymbolTable &ST);
void outputTypes(unsigned StartNo);
+ void outputParamAttrsList(const ParamAttrsList* Attrs);
void outputConstantsInPlane(const Value *const*Plane, unsigned PlaneSize,
unsigned StartNo);
void outputConstant(const Constant *CPV);