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llvm-mirror/include/llvm/IR/SymbolTableListTraits.h
Duncan P. N. Exon Smith d8033eebd6 IR: Create SymbolTableList wrapper around iplist, NFC
Create `SymbolTableList`, a wrapper around `iplist` for lists that
automatically manage a symbol table.  This commit reduces a ton of code
duplication between the six traits classes that were used previously.

As a drive by, reduce the number of template parameters from 2 to 1 by
using a SymbolTableListParentType metafunction (I originally had this as
a separate commit, but it touched most of the same lines so I squashed
them).

I'm in the process of trying to remove the UB in `createSentinel()` (see
the FIXMEs I added for `ilist_embedded_sentinel_traits` and
`ilist_half_embedded_sentinel_traits`).  My eventual goal is to separate
the list logic into a base class layer that knows nothing about (and
isn't templated on) the downcasted nodes -- removing the need to invoke
UB -- but for now I'm just trying to get a handle on all the current use
cases (and cleaning things up as I see them).

Besides these six SymbolTable lists, there are two others that use the
addNode/removeNode/transferNodes() hooks: the `MachineInstruction` and
`MachineBasicBlock` lists.  Ideally there'll be a way to factor these
hooks out of the low-level API entirely, but I'm not quite there yet.

llvm-svn: 249602
2015-10-07 20:05:10 +00:00

123 lines
4.6 KiB
C++

//===-- llvm/SymbolTableListTraits.h - Traits for iplist --------*- C++ -*-===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
// This file defines a generic class that is used to implement the automatic
// symbol table manipulation that occurs when you put (for example) a named
// instruction into a basic block.
//
// The way that this is implemented is by using a special traits class with the
// intrusive list that makes up the list of instructions in a basic block. When
// a new element is added to the list of instructions, the traits class is
// notified, allowing the symbol table to be updated.
//
// This generic class implements the traits class. It must be generic so that
// it can work for all uses it, which include lists of instructions, basic
// blocks, arguments, functions, global variables, etc...
//
//===----------------------------------------------------------------------===//
#ifndef LLVM_IR_SYMBOLTABLELISTTRAITS_H
#define LLVM_IR_SYMBOLTABLELISTTRAITS_H
#include "llvm/ADT/ilist.h"
namespace llvm {
class ValueSymbolTable;
template <typename NodeTy> class ilist_iterator;
template <typename NodeTy, typename Traits> class iplist;
template <typename Ty> struct ilist_traits;
template <typename NodeTy>
struct SymbolTableListSentinelTraits
: public ilist_embedded_sentinel_traits<NodeTy> {};
/// Template metafunction to get the parent type for a symbol table list.
///
/// Implementations create a typedef called \c type so that we only need a
/// single template parameter for the list and traits.
template <typename NodeTy> struct SymbolTableListParentType {};
class Argument;
class BasicBlock;
class Function;
class Instruction;
class GlobalVariable;
class GlobalAlias;
class Module;
#define DEFINE_SYMBOL_TABLE_PARENT_TYPE(NODE, PARENT) \
template <> struct SymbolTableListParentType<NODE> { typedef PARENT type; };
DEFINE_SYMBOL_TABLE_PARENT_TYPE(Instruction, BasicBlock)
DEFINE_SYMBOL_TABLE_PARENT_TYPE(BasicBlock, Function)
DEFINE_SYMBOL_TABLE_PARENT_TYPE(Argument, Function)
DEFINE_SYMBOL_TABLE_PARENT_TYPE(Function, Module)
DEFINE_SYMBOL_TABLE_PARENT_TYPE(GlobalVariable, Module)
DEFINE_SYMBOL_TABLE_PARENT_TYPE(GlobalAlias, Module)
#undef DEFINE_SYMBOL_TABLE_PARENT_TYPE
template <typename NodeTy> class SymbolTableList;
// ValueSubClass - The type of objects that I hold, e.g. Instruction.
// ItemParentClass - The type of object that owns the list, e.g. BasicBlock.
//
template <typename ValueSubClass>
class SymbolTableListTraits
: public ilist_nextprev_traits<ValueSubClass>,
public SymbolTableListSentinelTraits<ValueSubClass>,
public ilist_node_traits<ValueSubClass> {
typedef SymbolTableList<ValueSubClass> ListTy;
typedef
typename SymbolTableListParentType<ValueSubClass>::type ItemParentClass;
public:
SymbolTableListTraits() {}
private:
/// getListOwner - Return the object that owns this list. If this is a list
/// of instructions, it returns the BasicBlock that owns them.
ItemParentClass *getListOwner() {
size_t Offset(size_t(&((ItemParentClass*)nullptr->*ItemParentClass::
getSublistAccess(static_cast<ValueSubClass*>(nullptr)))));
ListTy *Anchor(static_cast<ListTy *>(this));
return reinterpret_cast<ItemParentClass*>(reinterpret_cast<char*>(Anchor)-
Offset);
}
static ListTy &getList(ItemParentClass *Par) {
return Par->*(Par->getSublistAccess((ValueSubClass*)nullptr));
}
static ValueSymbolTable *getSymTab(ItemParentClass *Par) {
return Par ? toPtr(Par->getValueSymbolTable()) : nullptr;
}
public:
void addNodeToList(ValueSubClass *V);
void removeNodeFromList(ValueSubClass *V);
void transferNodesFromList(SymbolTableListTraits &L2,
ilist_iterator<ValueSubClass> first,
ilist_iterator<ValueSubClass> last);
//private:
template<typename TPtr>
void setSymTabObject(TPtr *, TPtr);
static ValueSymbolTable *toPtr(ValueSymbolTable *P) { return P; }
static ValueSymbolTable *toPtr(ValueSymbolTable &R) { return &R; }
};
/// List that automatically updates parent links and symbol tables.
///
/// When nodes are inserted into and removed from this list, the associated
/// symbol table will be automatically updated. Similarly, parent links get
/// updated automatically.
template <typename NodeTy>
class SymbolTableList : public iplist<NodeTy, SymbolTableListTraits<NodeTy>> {};
} // End llvm namespace
#endif