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/*==LICENSE==*
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CyanWorlds.com Engine - MMOG client, server and tools
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Copyright (C) 2011 Cyan Worlds, Inc.
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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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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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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Additional permissions under GNU GPL version 3 section 7
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If you modify this Program, or any covered work, by linking or
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combining it with any of RAD Game Tools Bink SDK, Autodesk 3ds Max SDK,
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NVIDIA PhysX SDK, Microsoft DirectX SDK, OpenSSL library, Independent
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JPEG Group JPEG library, Microsoft Windows Media SDK, or Apple QuickTime SDK
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(or a modified version of those libraries),
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containing parts covered by the terms of the Bink SDK EULA, 3ds Max EULA,
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PhysX SDK EULA, DirectX SDK EULA, OpenSSL and SSLeay licenses, IJG
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JPEG Library README, Windows Media SDK EULA, or QuickTime SDK EULA, the
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licensors of this Program grant you additional
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permission to convey the resulting work. Corresponding Source for a
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non-source form of such a combination shall include the source code for
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the parts of OpenSSL and IJG JPEG Library used as well as that of the covered
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work.
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You can contact Cyan Worlds, Inc. by email legal@cyan.com
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or by snail mail at:
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Cyan Worlds, Inc.
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14617 N Newport Hwy
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Mead, WA 99021
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*==LICENSE==*/
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#include "hsStream.h"
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#include "plSDL.h"
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#include "pnKeyedObject/plUoid.h"
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#include "pnNetCommon/plNetApp.h"
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#include "pnMessage/plMessage.h"
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#include "plUnifiedTime/plUnifiedTime.h"
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const uint8_t plVarDescriptor::kVersion=3; // for Read/Write format
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/////////////////////////////////////////////////////////////////////////////////
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// State Var
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/////////////////////////////////////////////////////////////////////////////////
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//
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// Set type from a string. Return false on err.
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//
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bool plVarDescriptor::SetType(const plString& type)
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{
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if (type.IsNull())
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return false;
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if (!type.CompareI("vector3"))
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fType=kVector3;
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else
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if (!type.CompareI("point3"))
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fType=kPoint3;
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else
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if (!type.CompareI("rgb"))
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fType=kRGB;
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else
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if (!type.CompareI("rgba"))
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fType=kRGBA;
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else
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if (!type.CompareI("rgb8"))
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fType=kRGB8;
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else
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if (!type.CompareI("rgba8"))
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fType=kRGBA8;
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else
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if (!type.CompareNI("quat", 4))
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fType=kQuaternion;
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else
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if (!type.CompareI("rgba"))
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fType=kRGBA;
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else
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if (!type.CompareI("int"))
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fType=kInt;
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else
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if (!type.CompareI("byte"))
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fType=kByte;
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else
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if (!type.CompareI("short"))
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fType=kShort;
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else
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if (!type.CompareI("float"))
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fType=kFloat;
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else
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if (!type.CompareI("double"))
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fType=kDouble;
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else
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if (!type.CompareI("time"))
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fType=kTime;
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else
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if (!type.CompareI("ageTimeOfDay"))
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fType=kAgeTimeOfDay;
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else
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if (!type.CompareI("bool"))
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fType=kBool;
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else
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if (!type.CompareI("string32"))
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fType=kString32;
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else
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if (!type.CompareI("plKey"))
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fType=kKey;
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else
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if (!type.CompareI("message") || !type.CompareI("creatable") )
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fType=kCreatable;
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else
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if (type.CharAt(0)=='$')
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fType=kStateDescriptor;
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else
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return false; // err
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fTypeString = type;
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return true; // ok
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}
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void plVarDescriptor::CopyFrom(const plVarDescriptor* other)
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{
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SetName(other->GetName());
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SetDefault(other->GetDefault());
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SetCount(other->GetCount());
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SetDisplayOptions(other->GetDisplayOptions());
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fTypeString=other->GetTypeString();
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fType = other->GetType();
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fFlags = other->fFlags;
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}
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//
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// Var descriptors are read and written by state descriptors
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//
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bool plVarDescriptor::Read(hsStream* s)
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{
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uint8_t version;
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s->ReadLE(&version);
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if (version != kVersion)
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{
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if (plSDLMgr::GetInstance()->GetNetApp())
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plSDLMgr::GetInstance()->GetNetApp()->WarningMsg("SDL VarDescriptor version mismatch, read %d, should be %d - ignoring",
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version, kVersion);
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return false;
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}
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fName=s->ReadSafeString();
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plMsgStdStringHelper::Peek(fDisplayOptions, s);
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fCount=s->ReadLE32();
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fType=(Type)s->ReadByte();
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fDefault = s->ReadSafeString();
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fFlags = s->ReadLE32();
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return true;
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}
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//
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// Var descriptors are read and written by state descriptors
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//
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void plVarDescriptor::Write(hsStream* s) const
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{
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s->WriteLE(kVersion);
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s->WriteSafeString(fName);
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plMsgStdStringHelper::Poke(fDisplayOptions, s);
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s->WriteLE32(fCount);
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s->WriteByte((uint8_t)fType);
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s->WriteSafeString(fDefault);
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s->WriteLE32(fFlags);
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}
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/////////////////////////////////////////////////////////////////////////////////
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// plSimpleVarDescriptor
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/////////////////////////////////////////////////////////////////////////////////
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plSimpleVarDescriptor::plSimpleVarDescriptor() :
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fAtomicType(kNone),
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fAtomicCount(1)
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{
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}
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// size in bytes
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int plSimpleVarDescriptor::GetAtomicSize() const
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{
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switch(fAtomicType)
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{
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case kInt:
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return sizeof(int)*GetAtomicCount();
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case kByte:
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return sizeof(uint8_t)*GetAtomicCount();
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case kShort:
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return sizeof(short)*GetAtomicCount();
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case kAgeTimeOfDay:
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case kFloat:
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return sizeof(float)*GetAtomicCount();
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case kTime:
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return sizeof(plUnifiedTime)*GetAtomicCount();
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case kDouble:
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return sizeof(double)*GetAtomicCount();
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case kBool:
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return sizeof(bool)*GetAtomicCount();
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case kString32:
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return sizeof(String32)*GetAtomicCount();
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case kKey:
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return sizeof(plUoid)*GetAtomicCount();
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default:
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return -1; // err
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}
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}
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// size of var in bytes
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int plSimpleVarDescriptor::GetSize() const
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{
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int size=GetAtomicSize();
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return size>=0 ? size*GetCount() : size;
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}
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//
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// Set type from a string. Return false on err.
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// Sets atomicCount and atomicType
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//
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bool plSimpleVarDescriptor::SetType(const plString& type)
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{
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if (!plVarDescriptor::SetType(type))
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return false;
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if (!type.CompareI("vector3"))
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{
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fAtomicCount = 3;
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fAtomicType=kFloat;
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}
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else
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if (!type.CompareI("point3"))
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{
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fAtomicCount = 3;
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fAtomicType=kFloat;
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}
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else
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if (!type.CompareI("rgb"))
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{
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fAtomicCount = 3;
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fAtomicType=kFloat;
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}
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else
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if (!type.CompareI("rgba"))
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{
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fAtomicCount = 4;
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fAtomicType=kFloat;
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}
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else
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if (!type.CompareI("rgb8"))
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{
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fAtomicCount = 3;
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fAtomicType=kByte;
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}
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else
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if (!type.CompareI("rgba8"))
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{
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fAtomicCount = 4;
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fAtomicType=kByte;
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}
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else
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if (!type.CompareNI("quat", 4))
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{
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fAtomicCount = 4;
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fAtomicType=kFloat;
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}
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else
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if (!type.CompareI("int"))
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fAtomicType=kInt;
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else
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if (!type.CompareI("byte"))
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fAtomicType=kByte;
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else
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if (!type.CompareI("short"))
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fAtomicType=kShort;
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else
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if (!type.CompareI("float"))
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fAtomicType=kFloat;
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else
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if (!type.CompareI("double"))
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fAtomicType=kDouble;
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else
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if (!type.CompareI("time"))
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fAtomicType=kTime;
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else
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if (!type.CompareI("ageTimeOfDay"))
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fAtomicType=kAgeTimeOfDay;
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else
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if (!type.CompareI("bool"))
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fAtomicType=kBool;
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else
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if (!type.CompareI("string32"))
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fAtomicType=kString32;
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else
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if (!type.CompareI("plKey"))
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fAtomicType=kKey;
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else
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if (!type.CompareI("message") || !type.CompareI("creatable"))
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fAtomicType=kCreatable;
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else
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return false; // err
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return true; // ok
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}
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void plSimpleVarDescriptor::CopyFrom(const plSimpleVarDescriptor* other)
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{
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plVarDescriptor::CopyFrom(other);
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fAtomicCount=other->GetAtomicCount();
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fAtomicType=other->GetAtomicType();
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}
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//
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// Var descriptors are read and written by state descriptors
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//
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bool plSimpleVarDescriptor::Read(hsStream* s)
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{
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if (!plVarDescriptor::Read(s))
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return false;
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fAtomicCount=s->ReadLE16();
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fAtomicType=(Type)s->ReadByte();
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return true;
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}
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//
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// Var descriptors are read and written by state descriptors
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//
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void plSimpleVarDescriptor::Write(hsStream* s) const
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{
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plVarDescriptor::Write(s);
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s->WriteLE16((int16_t)fAtomicCount);
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s->WriteByte((uint8_t)fAtomicType);
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}
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/////////////////////////////////////////////////////////////////////////////////
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// plSDVarDescriptor
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// A var which references another state descriptor
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/////////////////////////////////////////////////////////////////////////////////
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void plSDVarDescriptor::CopyFrom(const plSDVarDescriptor* other)
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{
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plVarDescriptor::CopyFrom(other);
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SetStateDesc(other->GetStateDescriptor());
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}
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//
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// Var descriptors are read and written by state descriptors
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//
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bool plSDVarDescriptor::Read(hsStream* s)
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{
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if (!plVarDescriptor::Read(s))
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return false;
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plString sdName=s->ReadSafeString();
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uint16_t version = s->ReadLE16();
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plStateDescriptor* sd=plSDLMgr::GetInstance()->FindDescriptor(sdName, version);
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hsAssert(sd, plFormat("Failed to find sdl descriptor: {},{}. Missing legacy descriptor?", sdName, version).c_str());
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SetStateDesc(sd);
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return true;
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}
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//
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// Var descriptors are read and written by state descriptors
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//
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void plSDVarDescriptor::Write(hsStream* s) const
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{
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plVarDescriptor::Write(s);
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s->WriteSafeString(GetStateDescriptor()->GetName());
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uint16_t version=GetStateDescriptor()->GetVersion();
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s->WriteLE(version);
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}
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