return 0; // error materializing the module.
}
- bool isLittleEndian = false;
- switch (M->getEndianness()) {
- case Module::LittleEndian: isLittleEndian = true; break;
- case Module::BigEndian: isLittleEndian = false; break;
- case Module::AnyPointerSize:
+ if (M->getEndianness() == Module::AnyEndianness) {
int Test = 0;
*(char*)&Test = 1; // Return true if the host is little endian
- isLittleEndian = (Test == 1);
- break;
+ bool isLittleEndian = (Test == 1);
+ M->setEndianness(isLittleEndian ? Module::LittleEndian : Module::BigEndian);
}
- bool isLongPointer = false;
- switch (M->getPointerSize()) {
- case Module::Pointer32: isLongPointer = false; break;
- case Module::Pointer64: isLongPointer = true; break;
- case Module::AnyPointerSize:
- isLongPointer = (sizeof(void*) == 8); // Follow host
- break;
+ if (M->getPointerSize() == Module::AnyPointerSize) {
+ // Follow host.
+ bool Ptr64 = sizeof(void*) == 8;
+ M->setPointerSize(Ptr64 ? Module::Pointer64 : Module::Pointer32);
}
- return new Interpreter(M, isLittleEndian, isLongPointer);
+ return new Interpreter(M);
}
//===----------------------------------------------------------------------===//
// Interpreter ctor - Initialize stuff
//
-Interpreter::Interpreter(Module *M, bool isLittleEndian, bool isLongPointer)
- : ExecutionEngine(M),
- TD("lli", isLittleEndian, isLongPointer ? 8 : 4, isLongPointer ? 8 : 4,
- isLongPointer ? 8 : 4) {
-
+Interpreter::Interpreter(Module *M) : ExecutionEngine(M), TD("lli", M) {
+
memset(&ExitValue, 0, sizeof(ExitValue));
setTargetData(&TD);
// Initialize the "backend"