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hot-step-cpp-ROCm/engine/vendor/vst3sdk/vstgui4/vstgui/uidescription/cstream_zlib.cpp
T
2026-08-16 18:24:52 +07:00

207 lines
6.0 KiB
C++

// This file is part of VSTGUI. It is subject to the license terms
// in the LICENSE file found in the top-level directory of this
// distribution and at http://github.com/steinbergmedia/vstgui/LICENSE
#include "cstream_zlib.h"
#include <array>
//------------------------------------------------------------------------
namespace VSTGUI {
namespace {
#if _MSC_VER
#pragma warning(push)
#pragma warning(disable : 4334)
#endif
#define MINIZ_NO_STDIO
#define MINIZ_NO_ARCHIVE_APIS
#define MINIZ_NO_ARCHIVE_WRITING_APIS
#include "../thirdparty/miniz/miniz.c"
#if _MSC_VER
#pragma warning(pop)
#endif
using z_stream = mz_stream;
};
//------------------------------------------------------------------------
struct ZLibInputStream::Impl
{
z_stream zstream {};
InputStream* stream {nullptr};
std::array<Bytef, 4096> internalBuffer;
};
//------------------------------------------------------------------------
struct ZLibOutputStream::Impl
{
z_stream zstream {};
OutputStream* stream {nullptr};
std::array<Bytef, 4096> internalBuffer;
};
//-----------------------------------------------------------------------------
//-----------------------------------------------------------------------------
//-----------------------------------------------------------------------------
ZLibInputStream::ZLibInputStream (ByteOrder byteOrder) : InputStream (byteOrder)
{
impl = std::make_unique<Impl> ();
}
//-----------------------------------------------------------------------------
ZLibInputStream::~ZLibInputStream () noexcept
{
if (impl->zstream.next_in != nullptr)
inflateEnd (&impl->zstream);
}
//-----------------------------------------------------------------------------
bool ZLibInputStream::open (InputStream& _stream)
{
if (impl->zstream.next_in != nullptr || impl->stream != nullptr)
return false;
impl->stream = &_stream;
auto read = impl->stream->readRaw (impl->internalBuffer.data (),
static_cast<uint32_t> (impl->internalBuffer.size ()));
if (read == 0 || read == kStreamIOError)
return false;
impl->zstream.next_in = impl->internalBuffer.data ();
impl->zstream.avail_in = read;
if (inflateInit (&impl->zstream) != Z_OK)
{
impl->zstream = {};
return false;
}
return true;
}
//-----------------------------------------------------------------------------
uint32_t ZLibInputStream::readRaw (void* buffer, uint32_t size)
{
if (impl->zstream.next_in == nullptr || !buffer)
return kStreamIOError;
impl->zstream.next_out = static_cast<Bytef*> (buffer);
impl->zstream.avail_out = size;
while (impl->zstream.avail_out > 0)
{
if (impl->zstream.avail_in == 0)
{
auto read = impl->stream->readRaw (
impl->internalBuffer.data (), static_cast<uint32_t> (impl->internalBuffer.size ()));
if (read > 0 && read != kStreamIOError)
{
impl->zstream.next_in = impl->internalBuffer.data ();
impl->zstream.avail_in = read;
}
}
auto zres = inflate (&impl->zstream, Z_SYNC_FLUSH);
if (zres == Z_STREAM_END)
{
return size - impl->zstream.avail_out;
}
else if (zres != Z_OK)
return kStreamIOError;
}
return size;
}
//-----------------------------------------------------------------------------
//-----------------------------------------------------------------------------
//-----------------------------------------------------------------------------
ZLibOutputStream::ZLibOutputStream (ByteOrder byteOrder) : OutputStream (byteOrder)
{
impl = std::make_unique<Impl> ();
impl->zstream.opaque = this;
}
//-----------------------------------------------------------------------------
ZLibOutputStream::~ZLibOutputStream () noexcept { close (); }
//-----------------------------------------------------------------------------
bool ZLibOutputStream::open (OutputStream& _stream, int32_t compressionLevel)
{
if (impl->zstream.opaque != nullptr || impl->stream != nullptr)
return false;
impl->stream = &_stream;
if (deflateInit (&impl->zstream, compressionLevel) != Z_OK)
{
impl->zstream = {};
return false;
}
return true;
}
//-----------------------------------------------------------------------------
bool ZLibOutputStream::close ()
{
bool result = true;
if (impl->zstream.opaque == this)
{
impl->zstream.next_in = nullptr;
impl->zstream.avail_in = 0;
while (true)
{
impl->zstream.next_out = impl->internalBuffer.data ();
impl->zstream.avail_out = static_cast<unsigned int> (impl->internalBuffer.size ());
auto zres = deflate (&impl->zstream, Z_FINISH);
if (zres != Z_OK && zres != Z_BUF_ERROR && zres != Z_STREAM_END)
{
result = false;
break;
}
else if (impl->zstream.avail_out != impl->internalBuffer.size ())
{
auto written = impl->stream->writeRaw (
impl->internalBuffer.data (),
static_cast<uint32_t> (impl->internalBuffer.size () - impl->zstream.avail_out));
if (written != impl->internalBuffer.size () - impl->zstream.avail_out)
{
result = false;
break;
}
}
if (zres == Z_STREAM_END)
break;
}
deflateEnd (&impl->zstream);
impl->zstream = {};
}
return result;
}
//-----------------------------------------------------------------------------
uint32_t ZLibOutputStream::writeRaw (const void* buffer, uint32_t size)
{
if (impl->zstream.opaque != this)
return kStreamIOError;
impl->zstream.next_in = const_cast<Bytef*> (static_cast<const Bytef*> (buffer));
impl->zstream.avail_in = size;
while (impl->zstream.avail_in > 0)
{
impl->zstream.next_out = impl->internalBuffer.data ();
impl->zstream.avail_out = static_cast<unsigned int> (impl->internalBuffer.size ());
auto zres = deflate (&impl->zstream, Z_NO_FLUSH);
if (zres == Z_STREAM_ERROR)
{
return kStreamIOError;
}
if (impl->zstream.avail_out != impl->internalBuffer.size ())
{
auto written = impl->stream->writeRaw (
impl->internalBuffer.data (),
static_cast<uint32_t> (impl->internalBuffer.size () - impl->zstream.avail_out));
if (written != impl->internalBuffer.size () - impl->zstream.avail_out)
return kStreamIOError;
}
}
return size;
}
//------------------------------------------------------------------------
} // VSTGUI