From 075430faf4a72fec6ff1863c937e62c493e4b95f Mon Sep 17 00:00:00 2001 From: =?UTF-8?q?Stephan=20A=C3=9Fmus?= Date: Thu, 2 Aug 2007 16:28:34 +0000 Subject: [PATCH] * put some more useful utility classes into "shared". I tried to make sure that OpenHashTable.h does not collide with all the other places that this is used, it seems everything still builds fine. Most problematic could be the OpenHashTable.h at kernel/util, but it seems it the target using that are not affected. git-svn-id: file:///srv/svn/repos/haiku/haiku/trunk@21792 a95241bf-73f2-0310-859d-f6bbb57e9c96 --- headers/private/shared/HashMap.h | 450 ++++++++++++++++++++++ headers/private/shared/HashString.h | 69 ++++ headers/private/shared/OpenHashTable.h | 510 +++++++++++++++++++++++++ src/kits/shared/HashString.cpp | 131 +++++++ src/kits/shared/Jamfile | 3 + 5 files changed, 1163 insertions(+) create mode 100644 headers/private/shared/HashMap.h create mode 100644 headers/private/shared/HashString.h create mode 100644 headers/private/shared/OpenHashTable.h create mode 100644 src/kits/shared/HashString.cpp diff --git a/headers/private/shared/HashMap.h b/headers/private/shared/HashMap.h new file mode 100644 index 0000000000..f762a7f8d3 --- /dev/null +++ b/headers/private/shared/HashMap.h @@ -0,0 +1,450 @@ +// HashMap.h +// +// Copyright (c) 2004-2007, Ingo Weinhold (bonefish@cs.tu-berlin.de) +// +// Permission is hereby granted, free of charge, to any person obtaining a +// copy of this software and associated documentation files (the "Software"), +// to deal in the Software without restriction, including without limitation +// the rights to use, copy, modify, merge, publish, distribute, sublicense, +// and/or sell copies of the Software, and to permit persons to whom the +// Software is furnished to do so, subject to the following conditions: +// +// The above copyright notice and this permission notice shall be included in +// all copies or substantial portions of the Software. +// +// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL +// THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING +// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER +// DEALINGS IN THE SOFTWARE. +// +// Except as contained in this notice, the name of a copyright holder shall +// not be used in advertising or otherwise to promote the sale, use or other +// dealings in this Software without prior written authorization of the +// copyright holder. + +#ifndef HASH_MAP_H +#define HASH_MAP_H + +//#include +#include + +#include "AutoLocker.h" +#include "OpenHashTable.h" + +namespace BPrivate { + +// HashMapElement +template +class HashMapElement : public OpenHashElement { +private: + typedef HashMapElement Element; +public: + + HashMapElement() : OpenHashElement(), fKey(), fValue() + { + fNext = -1; + } + + inline uint32 Hash() const + { + return fKey.GetHashCode(); + } + + inline bool operator==(const OpenHashElement &_element) const + { + const Element &element = static_cast(_element); + return (fKey == element.fKey); + } + + inline void Adopt(Element &element) + { + fKey = element.fKey; + fValue = element.fValue; + } + + Key fKey; + Value fValue; +}; + +// HashMap +template +class HashMap { +public: + class Entry { + public: + Entry() {} + Entry(const Key& key, Value value) : key(key), value(value) {} + + Key key; + Value value; + }; + + class Iterator { + private: + typedef HashMapElement Element; + public: + Iterator(const Iterator& other) + : fMap(other.fMap), + fIndex(other.fIndex), + fElement(other.fElement), + fLastElement(other.fElement) + { + } + + bool HasNext() const + { + return fElement; + } + + Entry Next() + { + if (!fElement) + return Entry(); + Entry result(fElement->fKey, fElement->fValue); + _FindNext(); + return result; + } + + Entry Remove() + { + if (!fLastElement) + return Entry(); + Entry result(fLastElement->fKey, fLastElement->fValue); + fMap->fTable.Remove(fLastElement, true); + fLastElement = NULL; + return result; + } + + Iterator& operator=(const Iterator& other) + { + fMap = other.fMap; + fIndex = other.fIndex; + fElement = other.fElement; + fLastElement = other.fLastElement; + return *this; + } + + private: + Iterator(const HashMap* map) + : fMap(const_cast*>(map)), + fIndex(0), + fElement(NULL), + fLastElement(NULL) + { + // find first + _FindNext(); + } + + void _FindNext() + { + fLastElement = fElement; + if (fElement && fElement->fNext >= 0) { + fElement = fMap->fTable.ElementAt(fElement->fNext); + return; + } + fElement = NULL; + int32 arraySize = fMap->fTable.ArraySize(); + for (; !fElement && fIndex < arraySize; fIndex++) + fElement = fMap->fTable.FindFirst(fIndex); + } + + private: + friend class HashMap; + + HashMap* fMap; + int32 fIndex; + Element* fElement; + Element* fLastElement; + }; + + HashMap(); + ~HashMap(); + + status_t InitCheck() const; + + status_t Put(const Key& key, Value value); + Value Remove(const Key& key); + void Clear(); + Value Get(const Key& key) const; + + bool ContainsKey(const Key& key) const; + + int32 Size() const; + + Iterator GetIterator() const; + +protected: + typedef HashMapElement Element; + friend class Iterator; + +private: + Element *_FindElement(const Key& key) const; + +protected: + OpenHashElementArray fElementArray; + OpenHashTable > fTable; +}; + +// SynchronizedHashMap +template +class SynchronizedHashMap : public BLocker { +public: + typedef HashMap::Entry Entry; + typedef HashMap::Iterator Iterator; + + SynchronizedHashMap() : BLocker("synchronized hash map") {} + ~SynchronizedHashMap() { Lock(); } + + status_t InitCheck() const + { + return fMap.InitCheck(); + } + + status_t Put(const Key& key, Value value) + { + MapLocker locker(this); + if (!locker.IsLocked()) + return B_ERROR; + return fMap.Put(key, value); + } + + Value Remove(const Key& key) + { + MapLocker locker(this); + if (!locker.IsLocked()) + return Value(); + return fMap.Remove(key); + } + + void Clear() + { + MapLocker locker(this); + return fMap.Clear(); + } + + Value Get(const Key& key) const + { + const BLocker* lock = this; + MapLocker locker(const_cast(lock)); + if (!locker.IsLocked()) + return Value(); + return fMap.Get(key); + } + + bool ContainsKey(const Key& key) const + { + const BLocker* lock = this; + MapLocker locker(const_cast(lock)); + if (!locker.IsLocked()) + return false; + return fMap.ContainsKey(key); + } + + int32 Size() const + { + const BLocker* lock = this; + MapLocker locker(const_cast(lock)); + return fMap.Size(); + } + + Iterator GetIterator() + { + return fMap.GetIterator(); + } + + // for debugging only + const HashMap& GetUnsynchronizedMap() const { return fMap; } + HashMap& GetUnsynchronizedMap() { return fMap; } + +protected: + typedef AutoLocker MapLocker; + + HashMap fMap; +}; + +// HashKey32 +template +struct HashKey32 { + HashKey32() {} + HashKey32(const Value& value) : value(value) {} + + uint32 GetHashCode() const + { + return (uint32)value; + } + + HashKey32 operator=(const HashKey32& other) + { + value = other.value; + return *this; + } + + bool operator==(const HashKey32& other) const + { + return (value == other.value); + } + + bool operator!=(const HashKey32& other) const + { + return (value != other.value); + } + + Value value; +}; + + +// HashKey64 +template +struct HashKey64 { + HashKey64() {} + HashKey64(const Value& value) : value(value) {} + + uint32 GetHashCode() const + { + uint64 v = (uint64)value; + return (uint32)(v >> 32) ^ (uint32)v; + } + + HashKey64 operator=(const HashKey64& other) + { + value = other.value; + return *this; + } + + bool operator==(const HashKey64& other) const + { + return (value == other.value); + } + + bool operator!=(const HashKey64& other) const + { + return (value != other.value); + } + + Value value; +}; + + +// HashMap + +// constructor +template +HashMap::HashMap() + : fElementArray(1000), + fTable(1000, &fElementArray) +{ +} + +// destructor +template +HashMap::~HashMap() +{ +} + +// InitCheck +template +status_t +HashMap::InitCheck() const +{ + return (fTable.InitCheck() && fElementArray.InitCheck() + ? B_OK : B_NO_MEMORY); +} + +// Put +template +status_t +HashMap::Put(const Key& key, Value value) +{ + Element* element = _FindElement(key); + if (element) { + // already contains the key: just set the new value + element->fValue = value; + return B_OK; + } + // does not contain the key yet: add an element + element = fTable.Add(key.GetHashCode()); + if (!element) + return B_NO_MEMORY; + element->fKey = key; + element->fValue = value; + return B_OK; +} + +// Remove +template +Value +HashMap::Remove(const Key& key) +{ + Value value = Value(); + if (Element* element = _FindElement(key)) { + value = element->fValue; + fTable.Remove(element); + } + return value; +} + +// Clear +template +void +HashMap::Clear() +{ + fTable.RemoveAll(); +} + +// Get +template +Value +HashMap::Get(const Key& key) const +{ + if (Element* element = _FindElement(key)) + return element->fValue; + return Value(); +} + +// ContainsKey +template +bool +HashMap::ContainsKey(const Key& key) const +{ + return _FindElement(key); +} + +// Size +template +int32 +HashMap::Size() const +{ + return fTable.CountElements(); +} + +// GetIterator +template +HashMap::Iterator +HashMap::GetIterator() const +{ + return Iterator(this); +} + +// _FindElement +template +HashMap::Element * +HashMap::_FindElement(const Key& key) const +{ + Element* element = fTable.FindFirst(key.GetHashCode()); + while (element && element->fKey != key) { + if (element->fNext >= 0) + element = fTable.ElementAt(element->fNext); + else + element = NULL; + } + return element; +} + +} // namespace BPrivate + +using BPrivate::HashMap; + +#endif // HASH_MAP_H diff --git a/headers/private/shared/HashString.h b/headers/private/shared/HashString.h new file mode 100644 index 0000000000..26a0ab138f --- /dev/null +++ b/headers/private/shared/HashString.h @@ -0,0 +1,69 @@ +/* + * Copyright 2004-2007, Ingo Weinhold, bonefish@users.sf.net. All rights reserved. + * Distributed under the terms of the MIT License. + */ +#ifndef HASH_STRING_H +#define HASH_STRING_H + +#include + +// string_hash +// +// from the Dragon Book: a slightly modified hashpjw() +static inline +uint32 +string_hash(const char *name) +{ + uint32 h = 0; + if (name) { + for (; *name; name++) { + uint32 g = h & 0xf0000000; + if (g) + h ^= g >> 24; + h = (h << 4) + *name; + } + } + return h; +} + +#ifdef __cplusplus + +namespace BPrivate { + +// HashString +class HashString { +public: + HashString(); + HashString(const HashString &string); + HashString(const char *string, int32 length = -1); + ~HashString(); + + bool SetTo(const char *string, int32 maxLength = -1); + void Unset(); + + void Truncate(int32 newLength); + + const char *GetString() const; + int32 GetLength() const { return fLength; } + + uint32 GetHashCode() const { return string_hash(GetString()); } + + HashString &operator=(const HashString &string); + bool operator==(const HashString &string) const; + bool operator!=(const HashString &string) const { return !(*this == string); } + +private: + bool _SetTo(const char *string, int32 length); + +private: + int32 fLength; + char *fString; +}; + +} // namespace BPrivate + +using BPrivate::HashString; + +#endif // __cplusplus + +#endif // HASH_STRING_H diff --git a/headers/private/shared/OpenHashTable.h b/headers/private/shared/OpenHashTable.h new file mode 100644 index 0000000000..875ed02695 --- /dev/null +++ b/headers/private/shared/OpenHashTable.h @@ -0,0 +1,510 @@ +/* +Open Tracker License + +Terms and Conditions + +Copyright (c) 1991-2000, Be Incorporated. All rights reserved. + +Permission is hereby granted, free of charge, to any person obtaining a copy of +this software and associated documentation files (the "Software"), to deal in +the Software without restriction, including without limitation the rights to +use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies +of the Software, and to permit persons to whom the Software is furnished to do +so, subject to the following conditions: + +The above copyright notice and this permission notice applies to all licensees +and shall be included in all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF TITLE, MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL +BE INCORPORATED BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN +AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF, OR IN CONNECTION +WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. + +Except as contained in this notice, the name of Be Incorporated shall not be +used in advertising or otherwise to promote the sale, use or other dealings in +this Software without prior written authorization from Be Incorporated. + +Tracker(TM), Be(R), BeOS(R), and BeIA(TM) are trademarks or registered trademarks +of Be Incorporated in the United States and other countries. Other brand product +names are registered trademarks or trademarks of their respective holders. +All rights reserved. +*/ + +// bonefish: +// * removed need for exceptions +// * fixed warnings +// * implemented rehashing +// * added RemoveAll() +// TODO: +// * shrinking of element vectors + +// Hash table with open addresssing + +#ifndef __OPEN_HASH_TABLE__ +#define __OPEN_HASH_TABLE__ + +#include +#include + +// don't include +#define ASSERT(E) (void)0 +#define TRESPASS() (void)0 + +namespace BPrivate { + +template +class ElementVector { + // element vector for OpenHashTable needs to implement this + // interface +public: + Element &At(int32 index); + Element *Add(); + int32 IndexOf(const Element &) const; + void Remove(int32 index); +}; + +class OpenHashElement { +public: + uint32 Hash() const; + bool operator==(const OpenHashElement &) const; + void Adopt(OpenHashElement &); + // low overhead copy, original element is in undefined state + // after call (calls Adopt on BString members, etc.) + int32 fNext; +}; + +const uint32 kPrimes [] = { + 509, 1021, 2039, 4093, 8191, 16381, 32749, 65521, 131071, 262139, + 524287, 1048573, 2097143, 4194301, 8388593, 16777213, 33554393, 67108859, + 134217689, 268435399, 536870909, 1073741789, 2147483647, 0 +}; + +template > +class OpenHashTable { +public: + OpenHashTable(int32 minSize, ElementVec *elementVector = 0, + float maxLoadFactor = 0.8); + // it is up to the subclass of OpenHashTable to supply + // elementVector + ~OpenHashTable(); + + bool InitCheck() const; + + void SetElementVector(ElementVec *elementVector); + + Element *FindFirst(uint32 elementHash) const; + Element *Add(uint32 elementHash); + + void Remove(Element *element, bool dontRehash = false); + void RemoveAll(); + + // when calling Add, any outstanding element pointer may become + // invalid; to deal with this, get the element index and restore + // it after the add + int32 ElementIndex(const Element *) const; + Element *ElementAt(int32 index) const; + + int32 ArraySize() const; + int32 VectorSize() const; + int32 CountElements() const; + +protected: + static int32 OptimalSize(int32 minSize); + +private: + bool _RehashIfNeeded(); + bool _Rehash(); + + int32 fArraySize; + int32 fInitialSize; + int32 fElementCount; + int32 *fHashArray; + ElementVec *fElementVector; + float fMaxLoadFactor; +}; + +template +class OpenHashElementArray : public ElementVector { + // this is a straightforward implementation of an element vector + // deleting is handled by linking deleted elements into a free list + // the vector never shrinks +public: + OpenHashElementArray(int32 initialSize); + ~OpenHashElementArray(); + + bool InitCheck() const; + + Element &At(int32 index); + const Element &At(int32 index) const; + Element *Add(const Element &); + Element *Add(); + void Remove(int32 index); + int32 IndexOf(const Element &) const; + int32 Size() const; + +private: + Element *fData; + int32 fSize; + int32 fNextFree; + int32 fNextDeleted; +}; + + +//----------------------------------- + +template +OpenHashTable::OpenHashTable(int32 minSize, + ElementVec *elementVector, float maxLoadFactor) + : fArraySize(OptimalSize(minSize)), + fInitialSize(fArraySize), + fElementCount(0), + fElementVector(elementVector), + fMaxLoadFactor(maxLoadFactor) +{ + // sanity check the maximal load factor + if (fMaxLoadFactor < 0.5) + fMaxLoadFactor = 0.5; + // allocate and init the array + fHashArray = (int32*)calloc(fArraySize, sizeof(int32)); + if (fHashArray) { + for (int32 index = 0; index < fArraySize; index++) + fHashArray[index] = -1; + } +} + +template +OpenHashTable::~OpenHashTable() +{ + RemoveAll(); + free(fHashArray); +} + +template +bool +OpenHashTable::InitCheck() const +{ + return (fHashArray && fElementVector); +} + +template +int32 +OpenHashTable::OptimalSize(int32 minSize) +{ + for (int32 index = 0; ; index++) + if (!kPrimes[index] || kPrimes[index] >= (uint32)minSize) + return (int32)kPrimes[index]; + + return 0; +} + +template +Element * +OpenHashTable::FindFirst(uint32 hash) const +{ + ASSERT(fElementVector); + hash %= fArraySize; + if (fHashArray[hash] < 0) + return 0; + + return &fElementVector->At(fHashArray[hash]); +} + +template +int32 +OpenHashTable::ElementIndex(const Element *element) const +{ + return fElementVector->IndexOf(*element); +} + +template +Element * +OpenHashTable::ElementAt(int32 index) const +{ + return &fElementVector->At(index); +} + +template +int32 +OpenHashTable::ArraySize() const +{ + return fArraySize; +} + +template +int32 +OpenHashTable::VectorSize() const +{ + return fElementVector->Size(); +} + +template +int32 +OpenHashTable::CountElements() const +{ + return fElementCount; +} + + +template +Element * +OpenHashTable::Add(uint32 hash) +{ + ASSERT(fElementVector); + _RehashIfNeeded(); + hash %= fArraySize; + Element *result = fElementVector->Add(); + if (result) { + result->fNext = fHashArray[hash]; + fHashArray[hash] = fElementVector->IndexOf(*result); + fElementCount++; + } + return result; +} + +template +void +OpenHashTable::Remove(Element *element, bool dontRehash) +{ + if (!dontRehash) + _RehashIfNeeded(); + uint32 hash = element->Hash() % fArraySize; + int32 next = fHashArray[hash]; + ASSERT(next >= 0); + + if (&fElementVector->At(next) == element) { + fHashArray[hash] = element->fNext; + fElementVector->Remove(next); + fElementCount--; + return; + } + + for (int32 index = next; index >= 0; ) { + // look for an existing match in table + next = fElementVector->At(index).fNext; + if (next < 0) { + TRESPASS(); + return; + } + + if (&fElementVector->At(next) == element) { + fElementVector->At(index).fNext = element->fNext; + fElementVector->Remove(next); + fElementCount--; + return; + } + index = next; + } +} + +template +void +OpenHashTable::RemoveAll() +{ + for (int32 i = 0; fElementCount > 0 && i < fArraySize; i++) { + int32 index = fHashArray[i]; + while (index >= 0) { + Element* element = &fElementVector->At(index); + int32 next = element->fNext; + fElementVector->Remove(index); + fElementCount--; + index = next; + } + fHashArray[i] = -1; + } + _RehashIfNeeded(); +} + +template +void +OpenHashTable::SetElementVector(ElementVec *elementVector) +{ + fElementVector = elementVector; +} + +// _RehashIfNeeded +template +bool +OpenHashTable::_RehashIfNeeded() +{ + // The load factor range [fMaxLoadFactor / 3, fMaxLoadFactor] is fine, + // I think. After rehashing the load factor will be about + // fMaxLoadFactor * 2 / 3, respectively fMaxLoadFactor / 2. + float loadFactor = (float)fElementCount / (float)fArraySize; + if (loadFactor > fMaxLoadFactor + || (fArraySize > fInitialSize && loadFactor < fMaxLoadFactor / 3)) { + return _Rehash(); + } + return true; +} + +// _Rehash +template +bool +OpenHashTable::_Rehash() +{ + bool result = true; + int32 newSize = int32(fElementCount * 1.73 * fMaxLoadFactor); + newSize = (fInitialSize > newSize ? fInitialSize : newSize); + if (newSize != fArraySize) { + // allocate a new array + int32 *newHashArray = (int32*)calloc(newSize, sizeof(int32)); + if (newHashArray) { + // init the new hash array + for (int32 index = 0; index < newSize; index++) + newHashArray[index] = -1; + // iterate through all elements and put them into the new + // hash array + for (int i = 0; i < fArraySize; i++) { + int32 index = fHashArray[i]; + while (index >= 0) { + // insert the element in the new array + Element &element = fElementVector->At(index); + int32 next = element.fNext; + uint32 hash = (element.Hash() % newSize); + element.fNext = newHashArray[hash]; + newHashArray[hash] = index; + // next element in old list + index = next; + } + } + // delete the old array and set the new one + free(fHashArray); + fHashArray = newHashArray; + fArraySize = newSize; + } else + result = false; + } + return result; +} + + +template +OpenHashElementArray::OpenHashElementArray(int32 initialSize) + : fSize(initialSize), + fNextFree(0), + fNextDeleted(-1) +{ + fData = (Element*)calloc((size_t)initialSize, sizeof(Element)); +} + +template +OpenHashElementArray::~OpenHashElementArray() +{ + free(fData); +} + +template +bool +OpenHashElementArray::InitCheck() const +{ + return fData; +} + +template +Element & +OpenHashElementArray::At(int32 index) +{ + ASSERT(index < fSize); + return fData[index]; +} + +template +const Element & +OpenHashElementArray::At(int32 index) const +{ + ASSERT(index < fSize); + return fData[index]; +} + +template +int32 +OpenHashElementArray::IndexOf(const Element &element) const +{ + int32 result = &element - fData; + if (result < 0 || result > fSize) + return -1; + + return result; +} + +template +int32 +OpenHashElementArray::Size() const +{ + return fSize; +} + + +template +Element * +OpenHashElementArray::Add(const Element &newElement) +{ + Element *element = Add(); + if (element) + element.Adopt(newElement); + return element; +} + +#if DEBUG +const int32 kGrowChunk = 10; +#else +const int32 kGrowChunk = 1024; +#endif + +template +Element * +OpenHashElementArray::Add() +{ + int32 index = fNextFree; + if (fNextDeleted >= 0) { + index = fNextDeleted; + fNextDeleted = At(index).fNext; + } else if (fNextFree >= fSize - 1) { + int32 newSize = fSize + kGrowChunk; +/* + Element *newData = (Element *)calloc((size_t)newSize , sizeof(Element)); + if (!newData) + return NULL; + memcpy(newData, fData, fSize * sizeof(Element)); + free(fData); +*/ + Element *newData = (Element*)realloc(fData, + (size_t)newSize * sizeof(Element)); + if (!newData) + return NULL; + + fData = newData; + fSize = newSize; + index = fNextFree; + fNextFree++; + } else + fNextFree++; + + new (&At(index)) Element; + // call placement new to initialize the element properly + ASSERT(At(index).fNext == -1); + + return &At(index); +} + +template +void +OpenHashElementArray::Remove(int32 index) +{ + // delete by chaining empty elements in a single linked + // list, reusing the next field + ASSERT(index < fSize); + At(index).~Element(); + // call the destructor explicitly to destroy the element + // properly + At(index).fNext = fNextDeleted; + fNextDeleted = index; +} + +} // namespace BPrivate + +using BPrivate::OpenHashTable; + +#endif // __OPEN_HASH_TABLE__ diff --git a/src/kits/shared/HashString.cpp b/src/kits/shared/HashString.cpp new file mode 100644 index 0000000000..23b4c87bfa --- /dev/null +++ b/src/kits/shared/HashString.cpp @@ -0,0 +1,131 @@ +/* + * Copyright 2004-2007, Ingo Weinhold, bonefish@users.sf.net. All rights reserved. + * Distributed under the terms of the MIT License. + */ +#include +#include + +#include "HashString.h" + +/*! + \class HashString + \brief A very simple string class. +*/ + +// constructor +HashString::HashString() + : fLength(0), + fString(NULL) +{ +} + +// copy constructor +HashString::HashString(const HashString &string) + : fLength(0), + fString(NULL) +{ + *this = string; +} + +// constructor +HashString::HashString(const char *string, int32 length) + : fLength(0), + fString(NULL) +{ + SetTo(string, length); +} + +// destructor +HashString::~HashString() +{ + Unset(); +} + +// SetTo +bool +HashString::SetTo(const char *string, int32 maxLength) +{ + if (string) { + if (maxLength > 0) + maxLength = strnlen(string, maxLength); + else if (maxLength < 0) + maxLength = strlen(string); + } + return _SetTo(string, maxLength); +} + +// Unset +void +HashString::Unset() +{ + if (fString) { + delete[] fString; + fString = NULL; + } + fLength = 0; +} + +// Truncate +void +HashString::Truncate(int32 newLength) +{ + if (newLength < 0) + newLength = 0; + if (newLength < fLength) { + char *string = fString; + int32 len = fLength; + fString = NULL; + len = 0; + if (!_SetTo(string, newLength)) { + fString = string; + fLength = newLength; + fString[fLength] = '\0'; + } else + delete[] string; + } +} + +// GetString +const char * +HashString::GetString() const +{ + if (fString) + return fString; + return ""; +} + +// = +HashString & +HashString::operator=(const HashString &string) +{ + if (&string != this) + _SetTo(string.fString, string.fLength); + return *this; +} + +// == +bool +HashString::operator==(const HashString &string) const +{ + return (fLength == string.fLength + && (fLength == 0 || !strcmp(fString, string.fString))); +} + +// _SetTo +bool +HashString::_SetTo(const char *string, int32 length) +{ + bool result = true; + Unset(); + if (string && length > 0) { + fString = new(nothrow) char[length + 1]; + if (fString) { + memcpy(fString, string, length); + fString[length] = '\0'; + fLength = length; + } else + result = false; + } + return result; +} + diff --git a/src/kits/shared/Jamfile b/src/kits/shared/Jamfile index aeb8b96137..faf11549fd 100644 --- a/src/kits/shared/Jamfile +++ b/src/kits/shared/Jamfile @@ -1,9 +1,12 @@ SubDir HAIKU_TOP src kits shared ; SetSubDirSupportedPlatformsBeOSCompatible ; +AddSubDirSupportedPlatforms libbe_test ; UsePrivateHeaders shared ; StaticLibrary libshared.a : AboutWindow.cpp + CommandPipe.cpp + HashString.cpp ;