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539 lines
13 KiB
539 lines
13 KiB
//========= Copyright Valve Corporation, All rights reserved. ============// |
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// |
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// Purpose: |
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// |
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// $NoKeywords: $ |
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// |
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// @Note (toml 12-02-02): For now, all of the methods in the types defined here |
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// are inline to permit simple cross-DLL usage |
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//=============================================================================// |
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#ifndef SAVERESTORETYPES_H |
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#define SAVERESTORETYPES_H |
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#if defined( _WIN32 ) |
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#pragma once |
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#endif |
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#include "tier1/utlhash.h" |
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#include <string_t.h> // NULL_STRING define |
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struct edict_t; |
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#ifdef EHANDLE_H // not available to engine |
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#define SR_ENTS_VISIBLE 1 |
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#endif |
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//----------------------------------------------------------------------------- |
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// |
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// class CSaveRestoreSegment |
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// |
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class CSaveRestoreSegment |
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{ |
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public: |
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CSaveRestoreSegment(); |
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//--------------------------------- |
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// Buffer operations |
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// |
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void Init( void *pNewBase, int nBytes ); |
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void Rebase(); |
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void Rewind( int nBytes ); |
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char *GetBuffer(); |
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int BytesAvailable() const; |
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int SizeBuffer() const; |
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bool Write( const void *pData, int nBytes ); |
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bool Read( void *pOutput, int nBytes ); |
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int GetCurPos(); |
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char *AccessCurPos(); |
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bool Seek( int absPosition ); |
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void MoveCurPos( int nBytes ); |
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//--------------------------------- |
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// Symbol table operations |
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// |
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void InitSymbolTable( char **pNewTokens, int sizeTable); |
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char **DetachSymbolTable(); |
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int SizeSymbolTable(); |
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bool DefineSymbol( const char *pszToken, int token ); |
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unsigned short FindCreateSymbol( const char *pszToken ); |
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const char *StringFromSymbol( int token ); |
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private: |
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unsigned int HashString( const char *pszToken ); |
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//--------------------------------- |
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// Buffer data |
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// |
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char *pBaseData; // Start of all entity save data |
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char *pCurrentData; // Current buffer pointer for sequential access |
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int size; // Current data size, aka, pCurrentData - pBaseData |
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int bufferSize; // Total space for data |
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//--------------------------------- |
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// Symbol table |
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// |
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int tokenCount; // Number of elements in the pTokens table |
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char **pTokens; // Hash table of entity strings (sparse) |
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}; |
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//----------------------------------------------------------------------------- |
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// |
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// class CGameSaveRestoreInfo |
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// |
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struct levellist_t |
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{ |
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DECLARE_SIMPLE_DATADESC(); |
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char mapName[ MAX_MAP_NAME_SAVE ]; |
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char landmarkName[ 32 ]; |
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edict_t *pentLandmark; |
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Vector vecLandmarkOrigin; |
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}; |
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#define MAX_LEVEL_CONNECTIONS 16 // These are encoded in the lower 16bits of entitytable_t->flags |
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//------------------------------------- |
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struct EHandlePlaceholder_t // Engine does some of the game writing (alas, probably shouldn't), but can't see ehandle.h |
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{ |
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unsigned long i; |
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}; |
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//------------------------------------- |
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struct entitytable_t |
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{ |
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void Clear() |
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{ |
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id = -1; |
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edictindex = -1; |
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saveentityindex = -1; |
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restoreentityindex = -1; |
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location = 0; |
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size = 0; |
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flags = 0; |
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classname = NULL_STRING; |
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globalname = NULL_STRING; |
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landmarkModelSpace.Init(); |
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modelname = NULL_STRING; |
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} |
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int id; // Ordinal ID of this entity (used for entity <--> pointer conversions) |
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int edictindex; // saved for if the entity requires a certain edict number when restored (players, world) |
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int saveentityindex; // the entity index the entity had at save time ( for fixing up client side entities ) |
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int restoreentityindex; // the entity index given to this entity at restore time |
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#ifdef SR_ENTS_VISIBLE |
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EHANDLE hEnt; // Pointer to the in-game entity |
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#else |
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EHandlePlaceholder_t hEnt; |
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#endif |
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int location; // Offset from the base data of this entity |
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int size; // Byte size of this entity's data |
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int flags; // This could be a short -- bit mask of transitions that this entity is in the PVS of |
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string_t classname; // entity class name |
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string_t globalname; // entity global name |
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Vector landmarkModelSpace; // a fixed position in model space for comparison |
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// NOTE: Brush models can be built in different coordiante systems |
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// in different levels, so this fixes up local quantities to match |
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// those differences. |
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string_t modelname; |
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DECLARE_SIMPLE_DATADESC(); |
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}; |
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#define FENTTABLE_PLAYER 0x80000000 |
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#define FENTTABLE_REMOVED 0x40000000 |
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#define FENTTABLE_MOVEABLE 0x20000000 |
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#define FENTTABLE_GLOBAL 0x10000000 |
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#define FENTTABLE_PLAYERCHILD 0x08000000 // this entity is connected to a player, so it must be spawned with it |
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#define FENTTABLE_LEVELMASK 0x0000FFFF // reserve bits for 16 level connections |
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//------------------------------------- |
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struct saverestorelevelinfo_t |
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{ |
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int connectionCount;// Number of elements in the levelList[] |
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levellist_t levelList[ MAX_LEVEL_CONNECTIONS ]; // List of connections from this level |
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// smooth transition |
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int fUseLandmark; |
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char szLandmarkName[20]; // landmark we'll spawn near in next level |
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Vector vecLandmarkOffset; // for landmark transitions |
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float time; |
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char szCurrentMapName[MAX_MAP_NAME_SAVE]; // To check global entities |
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int mapVersion; |
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}; |
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//------------------------------------- |
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class CGameSaveRestoreInfo |
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{ |
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public: |
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CGameSaveRestoreInfo() |
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: tableCount( 0 ), pTable( 0 ), m_pCurrentEntity( 0 ), m_EntityToIndex( 1024 ) |
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{ |
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memset( &levelInfo, 0, sizeof( levelInfo ) ); |
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modelSpaceOffset.Init( 0, 0, 0 ); |
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} |
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void InitEntityTable( entitytable_t *pNewTable = NULL, int size = 0 ) |
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{ |
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pTable = pNewTable; |
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tableCount = size; |
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for ( int i = 0; i < NumEntities(); i++ ) |
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{ |
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GetEntityInfo( i )->Clear(); |
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} |
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} |
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entitytable_t *DetachEntityTable() |
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{ |
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entitytable_t *pReturn = pTable; |
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pTable = NULL; |
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tableCount = 0; |
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return pReturn; |
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} |
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CBaseEntity *GetCurrentEntityContext() { return m_pCurrentEntity; } |
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void SetCurrentEntityContext(CBaseEntity *pEntity) { m_pCurrentEntity = pEntity; } |
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int NumEntities() { return tableCount; } |
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entitytable_t *GetEntityInfo( int i ) { return (pTable + i); } |
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float GetBaseTime() const { return levelInfo.time; } |
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Vector GetLandmark() const { return ( levelInfo.fUseLandmark ) ? levelInfo.vecLandmarkOffset : vec3_origin; } |
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void BuildEntityHash() |
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{ |
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#ifdef GAME_DLL |
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int i; |
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entitytable_t *pTable; |
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int nEntities = NumEntities(); |
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for ( i = 0; i < nEntities; i++ ) |
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{ |
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pTable = GetEntityInfo( i ); |
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m_EntityToIndex.Insert( CHashElement( pTable->hEnt.Get(), i ) ); |
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} |
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#endif |
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} |
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void PurgeEntityHash() |
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{ |
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m_EntityToIndex.Purge(); |
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} |
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int GetEntityIndex( const CBaseEntity *pEntity ) |
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{ |
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#ifdef SR_ENTS_VISIBLE |
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if ( pEntity ) |
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{ |
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if ( m_EntityToIndex.Count() ) |
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{ |
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UtlHashHandle_t hElement = m_EntityToIndex.Find( CHashElement( pEntity ) ); |
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if ( hElement != m_EntityToIndex.InvalidHandle() ) |
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{ |
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return m_EntityToIndex.Element( hElement ).index; |
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} |
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} |
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else |
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{ |
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int i; |
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entitytable_t *pEntTable; |
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int nEntities = NumEntities(); |
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for ( i = 0; i < nEntities; i++ ) |
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{ |
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pEntTable = GetEntityInfo( i ); |
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if ( pEntTable->hEnt == pEntity ) |
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return pEntTable->id; |
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} |
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} |
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} |
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#endif |
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return -1; |
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} |
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saverestorelevelinfo_t levelInfo; |
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Vector modelSpaceOffset; // used only for globaly entity brushes modelled in different coordinate systems. |
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private: |
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int tableCount; // Number of elements in the entity table |
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entitytable_t *pTable; // Array of entitytable_t elements (1 for each entity) |
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CBaseEntity *m_pCurrentEntity; // only valid during the save functions of this entity, NULL otherwise |
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struct CHashElement |
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{ |
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const CBaseEntity *pEntity; |
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int index; |
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CHashElement( const CBaseEntity *pEntity, int index) : pEntity(pEntity), index(index) {} |
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CHashElement( const CBaseEntity *pEntity ) : pEntity(pEntity) {} |
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CHashElement() = default; |
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}; |
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class CHashFuncs |
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{ |
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public: |
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CHashFuncs( int ) {} |
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// COMPARE |
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bool operator()( const CHashElement &lhs, const CHashElement &rhs ) const |
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{ |
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return lhs.pEntity == rhs.pEntity; |
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} |
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// HASH |
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unsigned int operator()( const CHashElement &item ) const |
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{ |
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return HashItem( item.pEntity ); |
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} |
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}; |
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typedef CUtlHash<CHashElement, CHashFuncs, CHashFuncs> CEntityToIndexHash; |
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CEntityToIndexHash m_EntityToIndex; |
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}; |
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//----------------------------------------------------------------------------- |
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class CSaveRestoreData : public CSaveRestoreSegment, |
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public CGameSaveRestoreInfo |
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{ |
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public: |
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CSaveRestoreData() : bAsync( false ) {} |
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bool bAsync; |
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}; |
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inline CSaveRestoreData *MakeSaveRestoreData( void *pMemory ) |
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{ |
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return new (pMemory) CSaveRestoreData; |
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} |
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//----------------------------------------------------------------------------- |
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// |
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// class CSaveRestoreSegment, inline functions |
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// |
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inline CSaveRestoreSegment::CSaveRestoreSegment() |
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{ |
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memset( this, 0, sizeof(*this) ); |
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} |
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inline void CSaveRestoreSegment::Init( void *pNewBase, int nBytes ) |
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{ |
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pCurrentData = pBaseData = (char *)pNewBase; |
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size = 0; |
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bufferSize = nBytes; |
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} |
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inline void CSaveRestoreSegment::MoveCurPos( int nBytes ) |
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{ |
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pCurrentData += nBytes; |
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size += nBytes; |
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} |
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inline void CSaveRestoreSegment::Rebase() |
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{ |
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pBaseData = pCurrentData; |
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bufferSize -= size; |
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size = 0; |
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} |
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inline void CSaveRestoreSegment::Rewind( int nBytes ) |
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{ |
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if ( size < nBytes ) |
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nBytes = size; |
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MoveCurPos( -nBytes ); |
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} |
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inline char *CSaveRestoreSegment::GetBuffer() |
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{ |
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return pBaseData; |
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} |
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inline int CSaveRestoreSegment::BytesAvailable() const |
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{ |
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return (bufferSize - size); |
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} |
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inline int CSaveRestoreSegment::SizeBuffer() const |
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{ |
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return bufferSize; |
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} |
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inline bool CSaveRestoreSegment::Write( const void *pData, int nBytes ) |
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{ |
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if ( nBytes > BytesAvailable() ) |
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{ |
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size = bufferSize; |
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return false; |
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} |
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memcpy( pCurrentData, pData, nBytes ); |
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MoveCurPos( nBytes ); |
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return true; |
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} |
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inline bool CSaveRestoreSegment::Read( void *pOutput, int nBytes ) |
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{ |
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if ( !BytesAvailable() ) |
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return false; |
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if ( nBytes > BytesAvailable() ) |
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{ |
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size = bufferSize; |
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return false; |
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} |
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if ( pOutput ) |
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memcpy( pOutput, pCurrentData, nBytes ); |
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MoveCurPos( nBytes ); |
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return true; |
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} |
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inline int CSaveRestoreSegment::GetCurPos() |
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{ |
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return size; |
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} |
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inline char *CSaveRestoreSegment::AccessCurPos() |
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{ |
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return pCurrentData; |
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} |
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inline bool CSaveRestoreSegment::Seek( int absPosition ) |
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{ |
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if ( absPosition < 0 || absPosition >= bufferSize ) |
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return false; |
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size = absPosition; |
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pCurrentData = pBaseData + size; |
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return true; |
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} |
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inline void CSaveRestoreSegment::InitSymbolTable( char **pNewTokens, int sizeTable) |
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{ |
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Assert( !pTokens ); |
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tokenCount = sizeTable; |
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pTokens = pNewTokens; |
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memset( pTokens, 0, sizeTable * sizeof( pTokens[0]) ); |
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} |
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inline char **CSaveRestoreSegment::DetachSymbolTable() |
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{ |
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char **pResult = pTokens; |
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tokenCount = 0; |
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pTokens = NULL; |
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return pResult; |
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} |
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inline int CSaveRestoreSegment::SizeSymbolTable() |
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{ |
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return tokenCount; |
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} |
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inline bool CSaveRestoreSegment::DefineSymbol( const char *pszToken, int token ) |
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{ |
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if ( pTokens[token] == NULL ) |
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{ |
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pTokens[token] = (char *)pszToken; |
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return true; |
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} |
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Assert( 0 ); |
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return false; |
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} |
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inline unsigned short CSaveRestoreSegment::FindCreateSymbol( const char *pszToken ) |
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{ |
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unsigned short hash = (unsigned short)(HashString( pszToken ) % (unsigned)tokenCount ); |
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#if _DEBUG |
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static int tokensparsed = 0; |
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tokensparsed++; |
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if ( !tokenCount || !pTokens ) |
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{ |
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AssertMsg( 0, ("No token table array in TokenHash()!") ); |
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} |
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#endif |
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for ( int i=0; i<tokenCount; i++ ) |
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{ |
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#if _DEBUG |
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static bool beentheredonethat = false; |
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if ( i > 50 && !beentheredonethat ) |
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{ |
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beentheredonethat = true; |
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AssertMsg( 0, ("CSaveRestoreBuffer::TokenHash() is getting too full!" ) ); |
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} |
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#endif |
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int index = hash + i; |
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if ( index >= tokenCount ) |
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index -= tokenCount; |
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if ( !pTokens[index] || strcmp( pszToken, pTokens[index] ) == 0 ) |
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{ |
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pTokens[index] = (char *)pszToken; |
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return index; |
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} |
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} |
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// Token hash table full!!! |
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// [Consider doing overflow table(s) after the main table & limiting linear hash table search] |
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Warning( "CSaveRestoreBuffer::TokenHash() is COMPLETELY FULL!" ); |
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Assert( 0 ); |
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return 0; |
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} |
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inline const char *CSaveRestoreSegment::StringFromSymbol( int token ) |
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{ |
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if ( token >= 0 && token < tokenCount ) |
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return pTokens[token]; |
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Assert( 0 ); |
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return "<<illegal>>"; |
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} |
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/// XXX(JohnS): I'm not sure using an intrinsic has any value here, just doing the shift should be recognized by most |
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/// compilers. Either way, there's no portable intrinsic. |
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// Newer GCC versions provide this in this header, older did by default. |
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#if !defined( _rotr ) && defined( COMPILER_GCC ) && !defined( __arm__ ) && !defined( __aarch64__ ) |
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#include <x86intrin.h> |
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#endif |
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#if !defined ( _rotr ) |
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inline unsigned _rotr(unsigned x, unsigned n) { |
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return (x >> n % 32) | (x << (32-n) % 32); |
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} |
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#endif |
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inline unsigned int CSaveRestoreSegment::HashString( const char *pszToken ) |
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{ |
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COMPILE_TIME_ASSERT( sizeof( unsigned int ) == 4 ); |
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unsigned int hash = 0; |
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while ( *pszToken ) |
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{ |
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hash = _rotr( hash, 4 ) ^ *pszToken++; |
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} |
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return hash; |
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} |
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//============================================================================= |
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#endif // SAVERESTORETYPES_H
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