mirror of
https://github.com/libretro/scummvm.git
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304 lines
8.0 KiB
C++
304 lines
8.0 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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*/
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#ifndef COMMON_MEMSTREAM_H
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#define COMMON_MEMSTREAM_H
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#include "common/stream.h"
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#include "common/types.h"
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#include "common/util.h"
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namespace Common {
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/**
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* Simple memory based 'stream', which implements the ReadStream interface for
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* a plain memory block.
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*/
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class MemoryReadStream : public SeekableReadStream {
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private:
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const byte * const _ptrOrig;
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const byte *_ptr;
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const uint32 _size;
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uint32 _pos;
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DisposeAfterUse::Flag _disposeMemory;
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bool _eos;
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public:
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/**
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* This constructor takes a pointer to a memory buffer and a length, and
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* wraps it. If disposeMemory is true, the MemoryReadStream takes ownership
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* of the buffer and hence free's it when destructed.
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*/
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MemoryReadStream(const byte *dataPtr, uint32 dataSize, DisposeAfterUse::Flag disposeMemory = DisposeAfterUse::NO) :
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_ptrOrig(dataPtr),
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_ptr(dataPtr),
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_size(dataSize),
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_pos(0),
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_disposeMemory(disposeMemory),
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_eos(false) {}
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~MemoryReadStream() {
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if (_disposeMemory)
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free(const_cast<byte *>(_ptrOrig));
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}
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uint32 read(void *dataPtr, uint32 dataSize);
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bool eos() const { return _eos; }
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void clearErr() { _eos = false; }
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int32 pos() const { return _pos; }
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int32 size() const { return _size; }
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bool seek(int32 offs, int whence = SEEK_SET);
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};
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/**
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* This is a MemoryReadStream subclass which adds non-endian
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* read methods whose endianness is set on the stream creation.
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*/
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class MemoryReadStreamEndian : public MemoryReadStream, public ReadStreamEndian {
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public:
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MemoryReadStreamEndian(const byte *buf, uint32 len, bool bigEndian)
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: MemoryReadStream(buf, len), ReadStreamEndian(bigEndian) {}
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};
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/**
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* Simple memory based 'stream', which implements the WriteStream interface for
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* a plain memory block.
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*/
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class MemoryWriteStream : public WriteStream {
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private:
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const uint32 _bufSize;
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protected:
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byte *_ptr;
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uint32 _pos;
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bool _err;
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public:
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MemoryWriteStream(byte *buf, uint32 len) : _ptr(buf), _bufSize(len), _pos(0), _err(false) {}
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uint32 write(const void *dataPtr, uint32 dataSize) {
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// Write at most as many bytes as are still available...
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if (dataSize > _bufSize - _pos) {
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dataSize = _bufSize - _pos;
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// We couldn't write all the data => set error indicator
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_err = true;
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}
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memcpy(_ptr, dataPtr, dataSize);
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_ptr += dataSize;
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_pos += dataSize;
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return dataSize;
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}
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int32 pos() const { return _pos; }
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uint32 size() const { return _bufSize; }
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virtual bool err() const { return _err; }
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virtual void clearErr() { _err = false; }
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};
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/**
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* MemoryWriteStream subclass with ability to set stream position indicator.
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*/
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class SeekableMemoryWriteStream : public MemoryWriteStream {
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private:
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byte *_ptrOrig;
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public:
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SeekableMemoryWriteStream(byte *buf, uint32 len) : MemoryWriteStream(buf, len), _ptrOrig(buf) {}
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uint32 seek(uint32 offset, int whence = SEEK_SET) {
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switch (whence) {
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case SEEK_END:
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// SEEK_END works just like SEEK_SET, only 'reversed',
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// i.e. from the end.
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offset = size() + offset;
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// Fall through
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case SEEK_SET:
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_ptr = _ptrOrig + offset;
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_pos = offset;
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break;
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case SEEK_CUR:
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_ptr += offset;
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_pos += offset;
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break;
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}
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// Post-Condition
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if (_pos > size()) {
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_pos = size();
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_ptr = _ptrOrig + _pos;
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}
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return _pos;
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}
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};
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/**
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* A sort of hybrid between MemoryWriteStream and Array classes. A stream
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* that grows as it's written to.
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*/
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class MemoryWriteStreamDynamic : public WriteStream {
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protected:
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uint32 _capacity;
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uint32 _size;
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byte *_ptr;
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byte *_data;
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uint32 _pos;
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DisposeAfterUse::Flag _disposeMemory;
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void ensureCapacity(uint32 new_len) {
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if (new_len <= _capacity)
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return;
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byte *old_data = _data;
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_capacity = MAX(new_len + 32, _capacity * 2);
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_data = (byte *)malloc(_capacity);
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_ptr = _data + _pos;
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if (old_data) {
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// Copy old data
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memcpy(_data, old_data, _size);
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free(old_data);
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}
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_size = new_len;
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}
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public:
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explicit MemoryWriteStreamDynamic(DisposeAfterUse::Flag disposeMemory) : _capacity(0), _size(0), _ptr(0), _data(0), _pos(0), _disposeMemory(disposeMemory) {}
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~MemoryWriteStreamDynamic() {
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if (_disposeMemory)
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free(_data);
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}
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uint32 write(const void *dataPtr, uint32 dataSize) {
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ensureCapacity(_pos + dataSize);
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memcpy(_ptr, dataPtr, dataSize);
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_ptr += dataSize;
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_pos += dataSize;
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if (_pos > _size)
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_size = _pos;
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return dataSize;
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}
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int32 pos() const { return _pos; }
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uint32 size() const { return _size; }
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byte *getData() { return _data; }
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bool seek(int32 offset, int whence = SEEK_SET);
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};
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/**
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* MemoryStream based on RingBuffer. Grows if has insufficient buffer size.
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*/
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class MemoryReadWriteStream : public SeekableReadStream, public WriteStream {
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private:
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uint32 _capacity;
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uint32 _size;
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byte *_data;
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uint32 _writePos, _readPos, _pos, _length;
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DisposeAfterUse::Flag _disposeMemory;
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bool _eos;
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void ensureCapacity(uint32 new_len) {
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if (new_len <= _capacity)
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return;
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byte *old_data = _data;
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uint32 oldCapacity = _capacity;
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_capacity = MAX(new_len + 32, _capacity * 2);
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_data = (byte *)malloc(_capacity);
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if (old_data) {
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// Copy old data
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if (_readPos < _writePos) {
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memcpy(_data, old_data + _readPos, _writePos - _readPos);
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_writePos = _length;
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_readPos = 0;
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} else {
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memcpy(_data, old_data + _readPos, oldCapacity - _readPos);
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memcpy(_data + oldCapacity - _readPos, old_data, _writePos);
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_writePos = _length;
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_readPos = 0;
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}
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free(old_data);
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}
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}
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public:
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explicit MemoryReadWriteStream(DisposeAfterUse::Flag disposeMemory) : _capacity(0), _size(0), _data(0), _writePos(0), _readPos(0), _pos(0), _length(0), _disposeMemory(disposeMemory), _eos(false) {}
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~MemoryReadWriteStream() {
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if (_disposeMemory)
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free(_data);
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}
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uint32 write(const void *dataPtr, uint32 dataSize) {
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ensureCapacity(_length + dataSize);
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if (_writePos + dataSize < _capacity) {
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memcpy(_data + _writePos, dataPtr, dataSize);
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} else {
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memcpy(_data + _writePos, dataPtr, _capacity - _writePos);
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const byte *shiftedPtr = (const byte *)dataPtr + _capacity - _writePos;
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memcpy(_data, shiftedPtr, dataSize - (_capacity - _writePos));
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}
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_writePos = (_writePos + dataSize) % _capacity;
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_pos += dataSize;
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_length += dataSize;
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if (_pos > _size)
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_size = _pos;
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return dataSize;
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}
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virtual uint32 read(void *dataPtr, uint32 dataSize) {
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if (_length < dataSize) {
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dataSize = _length;
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_eos = true;
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}
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if (dataSize == 0 || _capacity == 0) return 0;
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if (_readPos + dataSize < _capacity) {
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memcpy(dataPtr, _data + _readPos, dataSize);
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} else {
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memcpy(dataPtr, _data + _readPos, _capacity - _readPos);
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byte *shiftedPtr = (byte *)dataPtr + _capacity - _readPos;
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memcpy(shiftedPtr, _data, dataSize - (_capacity - _readPos));
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}
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_readPos = (_readPos + dataSize) % _capacity;
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_length -= dataSize;
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return dataSize;
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}
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int32 pos() const { return _pos - _length; } // 'read' position in the stream
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int32 size() const { return _size; } // that's also 'write' position in the stream, as it's append-only
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bool seek(int32, int) { return false; }
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bool eos() const { return _eos; }
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void clearErr() { _eos = false; }
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byte *getData() { return _data; }
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};
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} // End of namespace Common
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#endif
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