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// Copyright 2017 PDFium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
// Original code copyright 2014 Foxit Software Inc. http://www.foxitsoftware.com
#ifndef CORE_FXCRT_CFX_WIDESTRING_H_
#define CORE_FXCRT_CFX_WIDESTRING_H_
#include <functional>
#include <utility>
#include "core/fxcrt/cfx_retain_ptr.h"
#include "core/fxcrt/cfx_string_c_template.h"
#include "core/fxcrt/cfx_string_data_template.h"
#include "core/fxcrt/fx_memory.h"
#include "core/fxcrt/fx_system.h"
class CFX_ByteString;
// A mutable string with shared buffers using copy-on-write semantics that
// avoids the cost of std::string's iterator stability guarantees.
class CFX_WideString {
public:
using CharType = wchar_t;
using const_iterator = const CharType*;
CFX_WideString();
CFX_WideString(const CFX_WideString& other);
CFX_WideString(CFX_WideString&& other) noexcept;
// Deliberately implicit to avoid calling on every string literal.
// NOLINTNEXTLINE(runtime/explicit)
CFX_WideString(wchar_t ch);
// NOLINTNEXTLINE(runtime/explicit)
CFX_WideString(const wchar_t* ptr);
CFX_WideString(const wchar_t* ptr, FX_STRSIZE len);
explicit CFX_WideString(const CFX_WideStringC& str);
CFX_WideString(const CFX_WideStringC& str1, const CFX_WideStringC& str2);
CFX_WideString(const std::initializer_list<CFX_WideStringC>& list);
~CFX_WideString();
static CFX_WideString FromLocal(const CFX_ByteStringC& str);
static CFX_WideString FromCodePage(const CFX_ByteStringC& str,
uint16_t codepage);
static CFX_WideString FromUTF8(const CFX_ByteStringC& str);
static CFX_WideString FromUTF16LE(const unsigned short* str, FX_STRSIZE len);
static FX_STRSIZE WStringLength(const unsigned short* str);
// Explicit conversion to C-style wide string.
// Note: Any subsequent modification of |this| will invalidate the result.
const wchar_t* c_str() const { return m_pData ? m_pData->m_String : L""; }
// Explicit conversion to CFX_WideStringC.
// Note: Any subsequent modification of |this| will invalidate the result.
CFX_WideStringC AsStringC() const {
return CFX_WideStringC(c_str(), GetLength());
}
// Note: Any subsequent modification of |this| will invalidate iterators.
const_iterator begin() const { return m_pData ? m_pData->m_String : nullptr; }
const_iterator end() const {
return m_pData ? m_pData->m_String + m_pData->m_nDataLength : nullptr;
}
void clear() { m_pData.Reset(); }
FX_STRSIZE GetLength() const { return m_pData ? m_pData->m_nDataLength : 0; }
bool IsEmpty() const { return !GetLength(); }
const CFX_WideString& operator=(const wchar_t* str);
const CFX_WideString& operator=(const CFX_WideString& stringSrc);
const CFX_WideString& operator=(const CFX_WideStringC& stringSrc);
const CFX_WideString& operator+=(const wchar_t* str);
const CFX_WideString& operator+=(wchar_t ch);
const CFX_WideString& operator+=(const CFX_WideString& str);
const CFX_WideString& operator+=(const CFX_WideStringC& str);
bool operator==(const wchar_t* ptr) const;
bool operator==(const CFX_WideStringC& str) const;
bool operator==(const CFX_WideString& other) const;
bool operator!=(const wchar_t* ptr) const { return !(*this == ptr); }
bool operator!=(const CFX_WideStringC& str) const { return !(*this == str); }
bool operator!=(const CFX_WideString& other) const {
return !(*this == other);
}
bool operator<(const CFX_WideString& str) const;
wchar_t GetAt(FX_STRSIZE nIndex) const {
return m_pData ? m_pData->m_String[nIndex] : 0;
}
wchar_t operator[](FX_STRSIZE nIndex) const {
return m_pData ? m_pData->m_String[nIndex] : 0;
}
void SetAt(FX_STRSIZE nIndex, wchar_t ch);
int Compare(const wchar_t* str) const;
int Compare(const CFX_WideString& str) const;
int CompareNoCase(const wchar_t* str) const;
CFX_WideString Mid(FX_STRSIZE first) const;
CFX_WideString Mid(FX_STRSIZE first, FX_STRSIZE count) const;
CFX_WideString Left(FX_STRSIZE count) const;
CFX_WideString Right(FX_STRSIZE count) const;
FX_STRSIZE Insert(FX_STRSIZE index, wchar_t ch);
FX_STRSIZE Delete(FX_STRSIZE index, FX_STRSIZE count = 1);
void Format(const wchar_t* lpszFormat, ...);
void FormatV(const wchar_t* lpszFormat, va_list argList);
void MakeLower();
void MakeUpper();
void TrimRight();
void TrimRight(wchar_t chTarget);
void TrimRight(const CFX_WideStringC& pTargets);
void TrimLeft();
void TrimLeft(wchar_t chTarget);
void TrimLeft(const CFX_WideStringC& pTargets);
void Reserve(FX_STRSIZE len);
wchar_t* GetBuffer(FX_STRSIZE len);
void ReleaseBuffer(FX_STRSIZE len = -1);
int GetInteger() const;
float GetFloat() const;
FX_STRSIZE Find(const CFX_WideStringC& pSub, FX_STRSIZE start = 0) const;
FX_STRSIZE Find(wchar_t ch, FX_STRSIZE start = 0) const;
FX_STRSIZE Replace(const CFX_WideStringC& pOld, const CFX_WideStringC& pNew);
FX_STRSIZE Remove(wchar_t ch);
CFX_ByteString UTF8Encode() const;
CFX_ByteString UTF16LE_Encode() const;
protected:
using StringData = CFX_StringDataTemplate<wchar_t>;
void ReallocBeforeWrite(FX_STRSIZE nLen);
void AllocBeforeWrite(FX_STRSIZE nLen);
void AllocCopy(CFX_WideString& dest,
FX_STRSIZE nCopyLen,
FX_STRSIZE nCopyIndex) const;
void AssignCopy(const wchar_t* pSrcData, FX_STRSIZE nSrcLen);
void Concat(const wchar_t* lpszSrcData, FX_STRSIZE nSrcLen);
// Returns true unless we ran out of space.
bool TryVSWPrintf(FX_STRSIZE size, const wchar_t* format, va_list argList);
CFX_RetainPtr<StringData> m_pData;
friend class fxcrt_WideStringConcatInPlace_Test;
friend class fxcrt_WideStringPool_Test;
};
inline CFX_WideString operator+(const CFX_WideStringC& str1,
const CFX_WideStringC& str2) {
return CFX_WideString(str1, str2);
}
inline CFX_WideString operator+(const CFX_WideStringC& str1,
const wchar_t* str2) {
return CFX_WideString(str1, str2);
}
inline CFX_WideString operator+(const wchar_t* str1,
const CFX_WideStringC& str2) {
return CFX_WideString(str1, str2);
}
inline CFX_WideString operator+(const CFX_WideStringC& str1, wchar_t ch) {
return CFX_WideString(str1, CFX_WideStringC(ch));
}
inline CFX_WideString operator+(wchar_t ch, const CFX_WideStringC& str2) {
return CFX_WideString(ch, str2);
}
inline CFX_WideString operator+(const CFX_WideString& str1,
const CFX_WideString& str2) {
return CFX_WideString(str1.AsStringC(), str2.AsStringC());
}
inline CFX_WideString operator+(const CFX_WideString& str1, wchar_t ch) {
return CFX_WideString(str1.AsStringC(), CFX_WideStringC(ch));
}
inline CFX_WideString operator+(wchar_t ch, const CFX_WideString& str2) {
return CFX_WideString(ch, str2.AsStringC());
}
inline CFX_WideString operator+(const CFX_WideString& str1,
const wchar_t* str2) {
return CFX_WideString(str1.AsStringC(), str2);
}
inline CFX_WideString operator+(const wchar_t* str1,
const CFX_WideString& str2) {
return CFX_WideString(str1, str2.AsStringC());
}
inline CFX_WideString operator+(const CFX_WideString& str1,
const CFX_WideStringC& str2) {
return CFX_WideString(str1.AsStringC(), str2);
}
inline CFX_WideString operator+(const CFX_WideStringC& str1,
const CFX_WideString& str2) {
return CFX_WideString(str1, str2.AsStringC());
}
inline bool operator==(const wchar_t* lhs, const CFX_WideString& rhs) {
return rhs == lhs;
}
inline bool operator==(const CFX_WideStringC& lhs, const CFX_WideString& rhs) {
return rhs == lhs;
}
inline bool operator!=(const wchar_t* lhs, const CFX_WideString& rhs) {
return rhs != lhs;
}
inline bool operator!=(const CFX_WideStringC& lhs, const CFX_WideString& rhs) {
return rhs != lhs;
}
uint32_t FX_HashCode_GetW(const CFX_WideStringC& str, bool bIgnoreCase);
namespace std {
template <>
struct hash<CFX_WideString> {
std::size_t operator()(const CFX_WideString& str) const {
return FX_HashCode_GetW(str.AsStringC(), false);
}
};
} // namespace std
extern template struct std::hash<CFX_WideString>;
#endif // CORE_FXCRT_CFX_WIDESTRING_H_