ldc/gen/dvalue.cpp
Nicholas Wilson 6c7f1b616e [NFC] [dcompute] Make LDC somewhat aware of addrspaces. (#2122)
* [NFC] Make LDC somewhat aware of addrspaces.

Required so that we don't generate invalid code when dealing with pointer to addrspaces other than zero.
2017-05-21 08:43:04 +08:00

140 lines
4.3 KiB
C++
Raw Blame History

This file contains ambiguous Unicode characters

This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

//===-- dvalue.cpp --------------------------------------------------------===//
//
// LDC the LLVM D compiler
//
// This file is distributed under the BSD-style LDC license. See the LICENSE
// file for details.
//
//===----------------------------------------------------------------------===//
#include "gen/dvalue.h"
#include "declaration.h"
#include "gen/irstate.h"
#include "gen/llvm.h"
#include "gen/llvmhelpers.h"
#include "gen/logger.h"
#include "gen/tollvm.h"
namespace {
bool isDefinedInFuncEntryBB(LLValue *v) {
auto instr = llvm::dyn_cast<llvm::Instruction>(v);
if (!instr) {
// Global, constant, ...
return true;
}
auto bb = instr->getParent();
if (bb != &(bb->getParent()->getEntryBlock())) {
return false;
}
// An invoke instruction in the entry BB does not necessarily dominate the
// rest of the function because of the failure path.
return !llvm::isa<llvm::InvokeInst>(instr);
}
}
////////////////////////////////////////////////////////////////////////////////
LLValue *DtoLVal(DValue *v) {
auto lval = v->isLVal();
assert(lval);
return lval->getLVal()->val;
}
////////////////////////////////////////////////////////////////////////////////
DValue::DValue(Type *t, LLValue *v) : type(t), val(v) {
assert(type);
assert(val);
}
bool DValue::definedInFuncEntryBB() { return isDefinedInFuncEntryBB(val); }
////////////////////////////////////////////////////////////////////////////////
DRValue::DRValue(Type *t, LLValue *v) : DValue(t, v) {
assert(!DtoIsInMemoryOnly(t) &&
"Cannot represent memory-only type as DRValue");
}
////////////////////////////////////////////////////////////////////////////////
DImValue::DImValue(Type *t, llvm::Value *v) : DRValue(t, v) {
// TODO: get rid of Tfunction exception
// v may be an addrspace qualified pointer so strip it before doing a pointer
// equality check.
assert(t->toBasetype()->ty == Tfunction ||
stripAddrSpaces(v->getType()) == DtoType(t));
}
////////////////////////////////////////////////////////////////////////////////
DConstValue::DConstValue(Type *t, LLConstant *con) : DRValue(t, con) {
assert(con->getType() == DtoType(t));
}
////////////////////////////////////////////////////////////////////////////////
DSliceValue::DSliceValue(Type *t, LLValue *pair) : DRValue(t, pair) {
assert(t->toBasetype()->ty == Tarray);
// v may be an addrspace qualified pointer so strip it before doing a pointer
// equality check.
assert(stripAddrSpaces(pair->getType()) == DtoType(t));
}
DSliceValue::DSliceValue(Type *t, LLValue *length, LLValue *ptr)
: DSliceValue(t, DtoAggrPair(length, ptr)) {}
LLValue *DSliceValue::getLength() { return DtoExtractValue(val, 0, ".len"); }
LLValue *DSliceValue::getPtr() { return DtoExtractValue(val, 1, ".ptr"); }
////////////////////////////////////////////////////////////////////////////////
DFuncValue::DFuncValue(Type *t, FuncDeclaration *fd, LLValue *v, LLValue *vt)
: DRValue(t, v), func(fd), vthis(vt) {}
DFuncValue::DFuncValue(FuncDeclaration *fd, LLValue *v, LLValue *vt)
: DFuncValue(fd->type, fd, v, vt) {}
bool DFuncValue::definedInFuncEntryBB() {
return isDefinedInFuncEntryBB(val) &&
(!vthis || isDefinedInFuncEntryBB(vthis));
}
////////////////////////////////////////////////////////////////////////////////
DLValue::DLValue(Type *t, LLValue *v) : DValue(t, v) {
// v may be an addrspace qualified pointer so strip it before doing a pointer
// equality check.
assert(t->toBasetype()->ty == Ttuple ||
stripAddrSpaces(v->getType()) == DtoPtrToType(t));
}
DRValue *DLValue::getRVal() {
if (DtoIsInMemoryOnly(type)) {
llvm_unreachable("getRVal() for memory-only type");
return nullptr;
}
LLValue *rval = DtoLoad(val);
if (type->toBasetype()->ty == Tbool) {
assert(rval->getType() == llvm::Type::getInt8Ty(gIR->context()));
rval = gIR->ir->CreateTrunc(rval, llvm::Type::getInt1Ty(gIR->context()));
}
return new DImValue(type, rval);
}
////////////////////////////////////////////////////////////////////////////////
DSpecialRefValue::DSpecialRefValue(Type *t, LLValue *v) : DLValue(v, t) {
assert(v->getType() == DtoPtrToType(t)->getPointerTo());
}
DRValue *DSpecialRefValue::getRVal() {
return DLValue(type, DtoLoad(val)).getRVal();
}
DLValue *DSpecialRefValue::getLVal() { return new DLValue(type, DtoLoad(val)); }