#ifndef LLVM_ADT_STRINGMAP_H
#define LLVM_ADT_STRINGMAP_H
+#include "llvm/ADT/StringRef.h"
#include "llvm/Support/Allocator.h"
#include <cstring>
template<typename ValueTy>
class StringMapEntry;
-/// StringMapEntryInitializer - This datatype can be partially specialized for
-/// various datatypes in a stringmap to allow them to be initialized when an
-/// entry is default constructed for the map.
-template<typename ValueTy>
-class StringMapEntryInitializer {
-public:
- template <typename InitTy>
- static void Initialize(StringMapEntry<ValueTy> &T, InitTy InitVal) {
- }
-};
-
-
/// StringMapEntryBase - Shared base class of StringMapEntry instances.
class StringMapEntryBase {
unsigned StrLen;
/// StringMapImpl - This is the base class of StringMap that is shared among
/// all of its instantiations.
class StringMapImpl {
-public:
- /// ItemBucket - The hash table consists of an array of these. If Item is
- /// non-null, this is an extant entry, otherwise, it is a hole.
- struct ItemBucket {
- /// FullHashValue - This remembers the full hash value of the key for
- /// easy scanning.
- unsigned FullHashValue;
-
- /// Item - This is a pointer to the actual item object.
- StringMapEntryBase *Item;
- };
-
protected:
- ItemBucket *TheTable;
+ // Array of NumBuckets pointers to entries, null pointers are holes.
+ // TheTable[NumBuckets] contains a sentinel value for easy iteration. Followed
+ // by an array of the actual hash values as unsigned integers.
+ StringMapEntryBase **TheTable;
unsigned NumBuckets;
unsigned NumItems;
unsigned NumTombstones;
StringMapImpl(unsigned InitSize, unsigned ItemSize);
void RehashTable();
- /// ShouldRehash - Return true if the table should be rehashed after a new
- /// element was recently inserted.
- bool ShouldRehash() const {
- // If the hash table is now more than 3/4 full, or if fewer than 1/8 of
- // the buckets are empty (meaning that many are filled with tombstones),
- // grow the table.
- return NumItems*4 > NumBuckets*3 ||
- NumBuckets-(NumItems+NumTombstones) < NumBuckets/8;
- }
-
/// LookupBucketFor - Look up the bucket that the specified string should end
/// up in. If it already exists as a key in the map, the Item pointer for the
/// specified bucket will be non-null. Otherwise, it will be null. In either
/// case, the FullHashValue field of the bucket will be set to the hash value
/// of the string.
- unsigned LookupBucketFor(const char *KeyStart, const char *KeyEnd);
+ unsigned LookupBucketFor(StringRef Key);
/// FindKey - Look up the bucket that contains the specified key. If it exists
/// in the map, return the bucket number of the key. Otherwise return -1.
/// This does not modify the map.
- int FindKey(const char *KeyStart, const char *KeyEnd) const;
+ int FindKey(StringRef Key) const;
/// RemoveKey - Remove the specified StringMapEntry from the table, but do not
/// delete it. This aborts if the value isn't in the table.
/// RemoveKey - Remove the StringMapEntry for the specified key from the
/// table, returning it. If the key is not in the table, this returns null.
- StringMapEntryBase *RemoveKey(const char *KeyStart, const char *KeyEnd);
+ StringMapEntryBase *RemoveKey(StringRef Key);
private:
void init(unsigned Size);
public:
bool empty() const { return NumItems == 0; }
unsigned size() const { return NumItems; }
+
+ void swap(StringMapImpl &Other) {
+ std::swap(TheTable, Other.TheTable);
+ std::swap(NumBuckets, Other.NumBuckets);
+ std::swap(NumItems, Other.NumItems);
+ std::swap(NumTombstones, Other.NumTombstones);
+ }
};
/// StringMapEntry - This is used to represent one value that is inserted into
/// and data.
template<typename ValueTy>
class StringMapEntry : public StringMapEntryBase {
+ StringMapEntry(StringMapEntry &E) LLVM_DELETED_FUNCTION;
public:
ValueTy second;
- explicit StringMapEntry(unsigned StrLen)
- : StringMapEntryBase(StrLen), second() {}
- StringMapEntry(unsigned StrLen, const ValueTy &V)
- : StringMapEntryBase(StrLen), second(V) {}
+ explicit StringMapEntry(unsigned strLen)
+ : StringMapEntryBase(strLen), second() {}
+ StringMapEntry(unsigned strLen, const ValueTy &V)
+ : StringMapEntryBase(strLen), second(V) {}
+
+ StringRef getKey() const {
+ return StringRef(getKeyData(), getKeyLength());
+ }
const ValueTy &getValue() const { return second; }
ValueTy &getValue() { return second; }
/// StringMapEntry object.
const char *getKeyData() const {return reinterpret_cast<const char*>(this+1);}
- const char *first() const { return getKeyData(); }
+ StringRef first() const { return StringRef(getKeyData(), getKeyLength()); }
/// Create - Create a StringMapEntry for the specified key and default
/// construct the value.
static StringMapEntry *Create(const char *KeyStart, const char *KeyEnd,
AllocatorTy &Allocator,
InitType InitVal) {
- unsigned KeyLength = KeyEnd-KeyStart;
+ unsigned KeyLength = static_cast<unsigned>(KeyEnd-KeyStart);
- // Okay, the item doesn't already exist, and 'Bucket' is the bucket to fill
- // in. Allocate a new item with space for the string at the end and a null
+ // Allocate a new item with space for the string at the end and a null
// terminator.
-
- unsigned AllocSize = sizeof(StringMapEntry)+KeyLength+1;
- unsigned Alignment = alignof<StringMapEntry>();
+ unsigned AllocSize = static_cast<unsigned>(sizeof(StringMapEntry))+
+ KeyLength+1;
+ unsigned Alignment = alignOf<StringMapEntry>();
StringMapEntry *NewItem =
static_cast<StringMapEntry*>(Allocator.Allocate(AllocSize,Alignment));
// Default construct the value.
- new (NewItem) StringMapEntry(KeyLength);
+ new (NewItem) StringMapEntry(KeyLength, InitVal);
// Copy the string information.
char *StrBuffer = const_cast<char*>(NewItem->getKeyData());
memcpy(StrBuffer, KeyStart, KeyLength);
StrBuffer[KeyLength] = 0; // Null terminate for convenience of clients.
-
- // Initialize the value if the client wants to.
- StringMapEntryInitializer<ValueTy>::Initialize(*NewItem, InitVal);
return NewItem;
}
template<typename AllocatorTy>
static StringMapEntry *Create(const char *KeyStart, const char *KeyEnd,
AllocatorTy &Allocator) {
- return Create(KeyStart, KeyEnd, Allocator, (void*)0);
+ return Create(KeyStart, KeyEnd, Allocator, 0);
}
-
/// Create - Create a StringMapEntry with normal malloc/free.
template<typename InitType>
static StringMapEntry *Create(const char *KeyStart, const char *KeyEnd,
}
static StringMapEntry *Create(const char *KeyStart, const char *KeyEnd) {
- return Create(KeyStart, KeyEnd, (void*)0);
+ return Create(KeyStart, KeyEnd, ValueTy());
}
/// GetStringMapEntryFromValue - Given a value that is known to be embedded
return GetStringMapEntryFromValue(const_cast<ValueTy&>(V));
}
+ /// GetStringMapEntryFromKeyData - Given key data that is known to be embedded
+ /// into a StringMapEntry, return the StringMapEntry itself.
+ static StringMapEntry &GetStringMapEntryFromKeyData(const char *KeyData) {
+ char *Ptr = const_cast<char*>(KeyData) - sizeof(StringMapEntry<ValueTy>);
+ return *reinterpret_cast<StringMapEntry*>(Ptr);
+ }
+
/// Destroy - Destroy this StringMapEntry, releasing memory back to the
/// specified allocator.
template<typename AllocatorTy>
template<typename ValueTy, typename AllocatorTy = MallocAllocator>
class StringMap : public StringMapImpl {
AllocatorTy Allocator;
- typedef StringMapEntry<ValueTy> MapEntryTy;
public:
- StringMap() : StringMapImpl(sizeof(MapEntryTy)) {}
+ typedef StringMapEntry<ValueTy> MapEntryTy;
+
+ StringMap() : StringMapImpl(static_cast<unsigned>(sizeof(MapEntryTy))) {}
explicit StringMap(unsigned InitialSize)
- : StringMapImpl(InitialSize, sizeof(MapEntryTy)) {}
+ : StringMapImpl(InitialSize, static_cast<unsigned>(sizeof(MapEntryTy))) {}
+
+ explicit StringMap(AllocatorTy A)
+ : StringMapImpl(static_cast<unsigned>(sizeof(MapEntryTy))), Allocator(A) {}
+
+ StringMap(unsigned InitialSize, AllocatorTy A)
+ : StringMapImpl(InitialSize, static_cast<unsigned>(sizeof(MapEntryTy))),
+ Allocator(A) {}
+
+ StringMap(const StringMap &RHS)
+ : StringMapImpl(static_cast<unsigned>(sizeof(MapEntryTy))) {
+ assert(RHS.empty() &&
+ "Copy ctor from non-empty stringmap not implemented yet!");
+ (void)RHS;
+ }
+ void operator=(const StringMap &RHS) {
+ assert(RHS.empty() &&
+ "assignment from non-empty stringmap not implemented yet!");
+ (void)RHS;
+ clear();
+ }
- AllocatorTy &getAllocator() { return Allocator; }
- const AllocatorTy &getAllocator() const { return Allocator; }
+ typedef typename ReferenceAdder<AllocatorTy>::result AllocatorRefTy;
+ typedef typename ReferenceAdder<const AllocatorTy>::result AllocatorCRefTy;
+ AllocatorRefTy getAllocator() { return Allocator; }
+ AllocatorCRefTy getAllocator() const { return Allocator; }
typedef const char* key_type;
typedef ValueTy mapped_type;
return const_iterator(TheTable+NumBuckets, true);
}
- iterator find(const char *KeyStart, const char *KeyEnd) {
- int Bucket = FindKey(KeyStart, KeyEnd);
+ iterator find(StringRef Key) {
+ int Bucket = FindKey(Key);
if (Bucket == -1) return end();
- return iterator(TheTable+Bucket);
+ return iterator(TheTable+Bucket, true);
}
- const_iterator find(const char *KeyStart, const char *KeyEnd) const {
- int Bucket = FindKey(KeyStart, KeyEnd);
+ const_iterator find(StringRef Key) const {
+ int Bucket = FindKey(Key);
if (Bucket == -1) return end();
- return const_iterator(TheTable+Bucket);
+ return const_iterator(TheTable+Bucket, true);
}
- iterator find(const char *Key) {
- return find(Key, Key + strlen(Key));
- }
- const_iterator find(const char *Key) const {
- return find(Key, Key + strlen(Key));
+ /// lookup - Return the entry for the specified key, or a default
+ /// constructed value if no such entry exists.
+ ValueTy lookup(StringRef Key) const {
+ const_iterator it = find(Key);
+ if (it != end())
+ return it->second;
+ return ValueTy();
}
- ValueTy& operator[](const char *Key) {
- value_type& entry = GetOrCreateValue(Key, Key + strlen(Key));
- return entry.getValue();
+ ValueTy &operator[](StringRef Key) {
+ return GetOrCreateValue(Key).getValue();
}
- size_type count(const char *KeyStart, const char *KeyEnd) const {
- return find(KeyStart, KeyEnd) == end() ? 0 : 1;
- }
- size_type count(const char *Key) const {
- return count(Key, Key + strlen(Key));
+ /// count - Return 1 if the element is in the map, 0 otherwise.
+ size_type count(StringRef Key) const {
+ return find(Key) == end() ? 0 : 1;
}
/// insert - Insert the specified key/value pair into the map. If the key
/// already exists in the map, return false and ignore the request, otherwise
/// insert it and return true.
bool insert(MapEntryTy *KeyValue) {
- unsigned BucketNo =
- LookupBucketFor(KeyValue->getKeyData(),
- KeyValue->getKeyData()+KeyValue->getKeyLength());
- ItemBucket &Bucket = TheTable[BucketNo];
- if (Bucket.Item && Bucket.Item != getTombstoneVal())
+ unsigned BucketNo = LookupBucketFor(KeyValue->getKey());
+ StringMapEntryBase *&Bucket = TheTable[BucketNo];
+ if (Bucket && Bucket != getTombstoneVal())
return false; // Already exists in map.
- if (Bucket.Item == getTombstoneVal())
+ if (Bucket == getTombstoneVal())
--NumTombstones;
- Bucket.Item = KeyValue;
+ Bucket = KeyValue;
++NumItems;
+ assert(NumItems + NumTombstones <= NumBuckets);
- if (ShouldRehash())
- RehashTable();
+ RehashTable();
return true;
}
+ // clear - Empties out the StringMap
+ void clear() {
+ if (empty()) return;
+
+ // Zap all values, resetting the keys back to non-present (not tombstone),
+ // which is safe because we're removing all elements.
+ for (unsigned I = 0, E = NumBuckets; I != E; ++I) {
+ StringMapEntryBase *&Bucket = TheTable[I];
+ if (Bucket && Bucket != getTombstoneVal()) {
+ static_cast<MapEntryTy*>(Bucket)->Destroy(Allocator);
+ }
+ Bucket = 0;
+ }
+
+ NumItems = 0;
+ NumTombstones = 0;
+ }
+
/// GetOrCreateValue - Look up the specified key in the table. If a value
/// exists, return it. Otherwise, default construct a value, insert it, and
/// return.
template <typename InitTy>
- StringMapEntry<ValueTy> &GetOrCreateValue(const char *KeyStart,
- const char *KeyEnd,
- InitTy Val) {
- unsigned BucketNo = LookupBucketFor(KeyStart, KeyEnd);
- ItemBucket &Bucket = TheTable[BucketNo];
- if (Bucket.Item && Bucket.Item != getTombstoneVal())
- return *static_cast<MapEntryTy*>(Bucket.Item);
+ MapEntryTy &GetOrCreateValue(StringRef Key, InitTy Val) {
+ unsigned BucketNo = LookupBucketFor(Key);
+ StringMapEntryBase *&Bucket = TheTable[BucketNo];
+ if (Bucket && Bucket != getTombstoneVal())
+ return *static_cast<MapEntryTy*>(Bucket);
- MapEntryTy *NewItem = MapEntryTy::Create(KeyStart, KeyEnd, Allocator, Val);
+ MapEntryTy *NewItem =
+ MapEntryTy::Create(Key.begin(), Key.end(), Allocator, Val);
- if (Bucket.Item == getTombstoneVal())
+ if (Bucket == getTombstoneVal())
--NumTombstones;
++NumItems;
+ assert(NumItems + NumTombstones <= NumBuckets);
// Fill in the bucket for the hash table. The FullHashValue was already
// filled in by LookupBucketFor.
- Bucket.Item = NewItem;
+ Bucket = NewItem;
- if (ShouldRehash())
- RehashTable();
+ RehashTable();
return *NewItem;
}
- StringMapEntry<ValueTy> &GetOrCreateValue(const char *KeyStart,
- const char *KeyEnd) {
- return GetOrCreateValue(KeyStart, KeyEnd, (void*)0);
+ MapEntryTy &GetOrCreateValue(StringRef Key) {
+ return GetOrCreateValue(Key, ValueTy());
}
/// remove - Remove the specified key/value pair from the map, but do not
V.Destroy(Allocator);
}
+ bool erase(StringRef Key) {
+ iterator I = find(Key);
+ if (I == end()) return false;
+ erase(I);
+ return true;
+ }
+
~StringMap() {
- for (ItemBucket *I = TheTable, *E = TheTable+NumBuckets; I != E; ++I) {
- if (I->Item && I->Item != getTombstoneVal())
- static_cast<MapEntryTy*>(I->Item)->Destroy(Allocator);
- }
+ clear();
free(TheTable);
}
-private:
- StringMap(const StringMap &); // FIXME: Implement.
- void operator=(const StringMap &); // FIXME: Implement.
};
template<typename ValueTy>
class StringMapConstIterator {
protected:
- StringMapImpl::ItemBucket *Ptr;
+ StringMapEntryBase **Ptr;
public:
- explicit StringMapConstIterator(StringMapImpl::ItemBucket *Bucket,
+ typedef StringMapEntry<ValueTy> value_type;
+
+ StringMapConstIterator() : Ptr(0) { }
+
+ explicit StringMapConstIterator(StringMapEntryBase **Bucket,
bool NoAdvance = false)
: Ptr(Bucket) {
if (!NoAdvance) AdvancePastEmptyBuckets();
}
- const StringMapEntry<ValueTy> &operator*() const {
- return *static_cast<StringMapEntry<ValueTy>*>(Ptr->Item);
+ const value_type &operator*() const {
+ return *static_cast<StringMapEntry<ValueTy>*>(*Ptr);
}
- const StringMapEntry<ValueTy> *operator->() const {
- return static_cast<StringMapEntry<ValueTy>*>(Ptr->Item);
+ const value_type *operator->() const {
+ return static_cast<StringMapEntry<ValueTy>*>(*Ptr);
}
bool operator==(const StringMapConstIterator &RHS) const {
return Ptr != RHS.Ptr;
}
- inline StringMapConstIterator& operator++() { // Preincrement
+ inline StringMapConstIterator& operator++() { // Preincrement
++Ptr;
AdvancePastEmptyBuckets();
return *this;
private:
void AdvancePastEmptyBuckets() {
- while (Ptr->Item == 0 || Ptr->Item == StringMapImpl::getTombstoneVal())
+ while (*Ptr == 0 || *Ptr == StringMapImpl::getTombstoneVal())
++Ptr;
}
};
template<typename ValueTy>
class StringMapIterator : public StringMapConstIterator<ValueTy> {
public:
- explicit StringMapIterator(StringMapImpl::ItemBucket *Bucket,
+ StringMapIterator() {}
+ explicit StringMapIterator(StringMapEntryBase **Bucket,
bool NoAdvance = false)
: StringMapConstIterator<ValueTy>(Bucket, NoAdvance) {
}
StringMapEntry<ValueTy> &operator*() const {
- return *static_cast<StringMapEntry<ValueTy>*>(this->Ptr->Item);
+ return *static_cast<StringMapEntry<ValueTy>*>(*this->Ptr);
}
StringMapEntry<ValueTy> *operator->() const {
- return static_cast<StringMapEntry<ValueTy>*>(this->Ptr->Item);
+ return static_cast<StringMapEntry<ValueTy>*>(*this->Ptr);
}
};