Files
bx/include/bx/readerwriter.h
Branimir Karadžić 792e1458fc Simplifed allocator.
2015-11-06 22:02:52 -08:00

590 lines
11 KiB
C++

/*
* Copyright 2010-2015 Branimir Karadzic. All rights reserved.
* License: http://www.opensource.org/licenses/BSD-2-Clause
*/
#ifndef BX_READERWRITER_H_HEADER_GUARD
#define BX_READERWRITER_H_HEADER_GUARD
#include <stdarg.h> // va_list
#include <stdio.h>
#include <string.h>
#include "bx.h"
#include "allocator.h"
#include "uint32_t.h"
#if BX_COMPILER_MSVC_COMPATIBLE
# define fseeko64 _fseeki64
# define ftello64 _ftelli64
#elif BX_PLATFORM_ANDROID || BX_PLATFORM_FREEBSD || BX_PLATFORM_IOS || BX_PLATFORM_OSX || BX_PLATFORM_QNX
# define fseeko64 fseeko
# define ftello64 ftello
#endif // BX_
namespace bx
{
struct Whence
{
enum Enum
{
Begin,
Current,
End,
};
};
struct BX_NO_VTABLE ReaderI
{
virtual ~ReaderI() = 0;
virtual int32_t read(void* _data, int32_t _size) = 0;
};
inline ReaderI::~ReaderI()
{
}
struct BX_NO_VTABLE WriterI
{
virtual ~WriterI() = 0;
virtual int32_t write(const void* _data, int32_t _size) = 0;
};
inline WriterI::~WriterI()
{
}
struct BX_NO_VTABLE SeekerI
{
virtual ~SeekerI() = 0;
virtual int64_t seek(int64_t _offset = 0, Whence::Enum _whence = Whence::Current) = 0;
};
inline SeekerI::~SeekerI()
{
}
/// Read data.
inline int32_t read(ReaderI* _reader, void* _data, int32_t _size)
{
return _reader->read(_data, _size);
}
/// Write value.
template<typename Ty>
inline int32_t read(ReaderI* _reader, Ty& _value)
{
BX_STATIC_ASSERT(BX_TYPE_IS_POD(Ty) );
return _reader->read(&_value, sizeof(Ty) );
}
/// Read value and converts it to host endianess. _fromLittleEndian specifies
/// underlying stream endianess.
template<typename Ty>
inline int32_t readHE(ReaderI* _reader, Ty& _value, bool _fromLittleEndian)
{
BX_STATIC_ASSERT(BX_TYPE_IS_POD(Ty) );
Ty value;
int32_t result = _reader->read(&value, sizeof(Ty) );
_value = toHostEndian(value, _fromLittleEndian);
return result;
}
/// Write data.
inline int32_t write(WriterI* _writer, const void* _data, int32_t _size)
{
return _writer->write(_data, _size);
}
/// Write repeat the same value.
inline int32_t writeRep(WriterI* _writer, uint8_t _byte, int32_t _size)
{
const uint32_t tmp0 = uint32_sels(64 - _size, 64, _size);
const uint32_t tmp1 = uint32_sels(256 - _size, 256, tmp0);
const uint32_t blockSize = uint32_sels(1024 - _size, 1024, tmp1);
uint8_t* temp = (uint8_t*)alloca(blockSize);
memset(temp, _byte, blockSize);
int32_t size = 0;
while (0 < _size)
{
int32_t bytes = write(_writer, temp, uint32_min(blockSize, _size) );
size += bytes;
_size -= bytes;
}
return size;
}
/// Write value.
template<typename Ty>
inline int32_t write(WriterI* _writer, const Ty& _value)
{
BX_STATIC_ASSERT(BX_TYPE_IS_POD(Ty) );
return _writer->write(&_value, sizeof(Ty) );
}
/// Write value as little endian.
template<typename Ty>
inline int32_t writeLE(WriterI* _writer, const Ty& _value)
{
BX_STATIC_ASSERT(BX_TYPE_IS_POD(Ty) );
Ty value = toLittleEndian(_value);
int32_t result = _writer->write(&value, sizeof(Ty) );
return result;
}
/// Write value as big endian.
template<typename Ty>
inline int32_t writeBE(WriterI* _writer, const Ty& _value)
{
BX_STATIC_ASSERT(BX_TYPE_IS_POD(Ty) );
Ty value = toBigEndian(_value);
int32_t result = _writer->write(&value, sizeof(Ty) );
return result;
}
/// Write formated string.
inline int32_t writePrintf(WriterI* _writer, const char* _format, ...)
{
va_list argList;
va_start(argList, _format);
char temp[2048];
char* out = temp;
int32_t max = sizeof(temp);
int32_t len = vsnprintf(out, max, _format, argList);
if (len > max)
{
out = (char*)alloca(len);
len = vsnprintf(out, len, _format, argList);
}
int32_t size = write(_writer, out, len);
va_end(argList);
return size;
}
/// Skip _offset bytes forward.
inline int64_t skip(SeekerI* _seeker, int64_t _offset)
{
return _seeker->seek(_offset, Whence::Current);
}
/// Seek to any position in file.
inline int64_t seek(SeekerI* _seeker, int64_t _offset = 0, Whence::Enum _whence = Whence::Current)
{
return _seeker->seek(_offset, _whence);
}
/// Returns size of file.
inline int64_t getSize(SeekerI* _seeker)
{
int64_t offset = _seeker->seek();
int64_t size = _seeker->seek(0, Whence::End);
_seeker->seek(offset, Whence::Begin);
return size;
}
struct BX_NO_VTABLE ReaderSeekerI : public ReaderI, public SeekerI
{
};
struct BX_NO_VTABLE WriterSeekerI : public WriterI, public SeekerI
{
};
struct BX_NO_VTABLE FileReaderI : public ReaderSeekerI
{
virtual int32_t open(const char* _filePath) = 0;
virtual int32_t close() = 0;
};
struct BX_NO_VTABLE FileWriterI : public WriterSeekerI
{
virtual int32_t open(const char* _filePath, bool _append = false) = 0;
virtual int32_t close() = 0;
};
inline int32_t open(FileReaderI* _reader, const char* _filePath)
{
return _reader->open(_filePath);
}
inline int32_t close(FileReaderI* _reader)
{
return _reader->close();
}
inline int32_t open(FileWriterI* _writer, const char* _filePath, bool _append = false)
{
return _writer->open(_filePath, _append);
}
inline int32_t close(FileWriterI* _writer)
{
return _writer->close();
}
struct BX_NO_VTABLE MemoryBlockI
{
virtual void* more(uint32_t _size = 0) = 0;
virtual uint32_t getSize() = 0;
};
class StaticMemoryBlock : public MemoryBlockI
{
public:
StaticMemoryBlock(void* _data, uint32_t _size)
: m_data(_data)
, m_size(_size)
{
}
virtual ~StaticMemoryBlock()
{
}
virtual void* more(uint32_t /*_size*/ = 0) BX_OVERRIDE
{
return m_data;
}
virtual uint32_t getSize() BX_OVERRIDE
{
return m_size;
}
private:
void* m_data;
uint32_t m_size;
};
class MemoryBlock : public MemoryBlockI
{
public:
MemoryBlock(AllocatorI* _allocator)
: m_allocator(_allocator)
, m_data(NULL)
, m_size(0)
{
}
virtual ~MemoryBlock()
{
BX_FREE(m_allocator, m_data);
}
virtual void* more(uint32_t _size = 0) BX_OVERRIDE
{
if (0 < _size)
{
m_size += _size;
m_data = BX_REALLOC(m_allocator, m_data, m_size);
}
return m_data;
}
virtual uint32_t getSize() BX_OVERRIDE
{
return m_size;
}
private:
AllocatorI* m_allocator;
void* m_data;
uint32_t m_size;
};
class SizerWriter : public WriterSeekerI
{
public:
SizerWriter()
: m_pos(0)
, m_top(0)
{
}
virtual ~SizerWriter()
{
}
virtual int64_t seek(int64_t _offset = 0, Whence::Enum _whence = Whence::Current) BX_OVERRIDE
{
switch (_whence)
{
case Whence::Begin:
m_pos = _offset;
break;
case Whence::Current:
m_pos = int64_clamp(m_pos + _offset, 0, m_top);
break;
case Whence::End:
m_pos = int64_clamp(m_top - _offset, 0, m_top);
break;
}
return m_pos;
}
virtual int32_t write(const void* /*_data*/, int32_t _size) BX_OVERRIDE
{
int32_t morecore = int32_t(m_pos - m_top) + _size;
if (0 < morecore)
{
m_top += morecore;
}
int64_t reminder = m_top-m_pos;
int32_t size = uint32_min(_size, int32_t(reminder > INT32_MAX ? INT32_MAX : reminder) );
m_pos += size;
return size;
}
private:
int64_t m_pos;
int64_t m_top;
};
class MemoryReader : public ReaderSeekerI
{
public:
MemoryReader(const void* _data, uint32_t _size)
: m_data( (const uint8_t*)_data)
, m_pos(0)
, m_top(_size)
{
}
virtual ~MemoryReader()
{
}
virtual int64_t seek(int64_t _offset, Whence::Enum _whence) BX_OVERRIDE
{
switch (_whence)
{
case Whence::Begin:
m_pos = _offset;
break;
case Whence::Current:
m_pos = int64_clamp(m_pos + _offset, 0, m_top);
break;
case Whence::End:
m_pos = int64_clamp(m_top - _offset, 0, m_top);
break;
}
return m_pos;
}
virtual int32_t read(void* _data, int32_t _size) BX_OVERRIDE
{
int64_t reminder = m_top-m_pos;
int32_t size = uint32_min(_size, int32_t(reminder > INT32_MAX ? INT32_MAX : reminder) );
memcpy(_data, &m_data[m_pos], size);
m_pos += size;
return size;
}
const uint8_t* getDataPtr() const
{
return &m_data[m_pos];
}
int64_t getPos() const
{
return m_pos;
}
int64_t remaining() const
{
return m_top-m_pos;
}
private:
const uint8_t* m_data;
int64_t m_pos;
int64_t m_top;
};
class MemoryWriter : public WriterSeekerI
{
public:
MemoryWriter(MemoryBlockI* _memBlock)
: m_memBlock(_memBlock)
, m_data(NULL)
, m_pos(0)
, m_top(0)
, m_size(0)
{
}
virtual ~MemoryWriter()
{
}
virtual int64_t seek(int64_t _offset = 0, Whence::Enum _whence = Whence::Current) BX_OVERRIDE
{
switch (_whence)
{
case Whence::Begin:
m_pos = _offset;
break;
case Whence::Current:
m_pos = int64_clamp(m_pos + _offset, 0, m_top);
break;
case Whence::End:
m_pos = int64_clamp(m_top - _offset, 0, m_top);
break;
}
return m_pos;
}
virtual int32_t write(const void* _data, int32_t _size) BX_OVERRIDE
{
int32_t morecore = int32_t(m_pos - m_size) + _size;
if (0 < morecore)
{
morecore = BX_ALIGN_MASK(morecore, 0xfff);
m_data = (uint8_t*)m_memBlock->more(morecore);
m_size = m_memBlock->getSize();
}
int64_t reminder = m_size-m_pos;
int32_t size = uint32_min(_size, int32_t(reminder > INT32_MAX ? INT32_MAX : reminder) );
memcpy(&m_data[m_pos], _data, size);
m_pos += size;
m_top = int64_max(m_top, m_pos);
return size;
}
private:
MemoryBlockI* m_memBlock;
uint8_t* m_data;
int64_t m_pos;
int64_t m_top;
int64_t m_size;
};
class StaticMemoryBlockWriter : public MemoryWriter
{
public:
StaticMemoryBlockWriter(void* _data, uint32_t _size)
: MemoryWriter(&m_smb)
, m_smb(_data, _size)
{
}
~StaticMemoryBlockWriter()
{
}
private:
StaticMemoryBlock m_smb;
};
#if BX_CONFIG_CRT_FILE_READER_WRITER
class CrtFileReader : public FileReaderI
{
public:
CrtFileReader()
: m_file(NULL)
{
}
virtual ~CrtFileReader()
{
}
virtual int32_t open(const char* _filePath) BX_OVERRIDE
{
m_file = fopen(_filePath, "rb");
return NULL == m_file;
}
virtual int32_t close() BX_OVERRIDE
{
fclose(m_file);
return 0;
}
virtual int64_t seek(int64_t _offset = 0, Whence::Enum _whence = Whence::Current) BX_OVERRIDE
{
fseeko64(m_file, _offset, _whence);
return ftello64(m_file);
}
virtual int32_t read(void* _data, int32_t _size) BX_OVERRIDE
{
return (int32_t)fread(_data, 1, _size, m_file);
}
private:
FILE* m_file;
};
class CrtFileWriter : public FileWriterI
{
public:
CrtFileWriter()
: m_file(NULL)
{
}
virtual ~CrtFileWriter()
{
}
virtual int32_t open(const char* _filePath, bool _append = false) BX_OVERRIDE
{
if (_append)
{
m_file = fopen(_filePath, "ab");
}
else
{
m_file = fopen(_filePath, "wb");
}
return NULL == m_file;
}
virtual int32_t close() BX_OVERRIDE
{
fclose(m_file);
return 0;
}
virtual int64_t seek(int64_t _offset = 0, Whence::Enum _whence = Whence::Current) BX_OVERRIDE
{
fseeko64(m_file, _offset, _whence);
return ftello64(m_file);
}
virtual int32_t write(const void* _data, int32_t _size) BX_OVERRIDE
{
return (int32_t)fwrite(_data, 1, _size, m_file);
}
private:
FILE* m_file;
};
#endif // BX_CONFIG_CRT_FILE_READER_WRITER
} // namespace bx
#endif // BX_READERWRITER_H_HEADER_GUARD