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https://github.com/alliedmodders/amxmodx.git
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257 lines
7.0 KiB
C++
Executable File
257 lines
7.0 KiB
C++
Executable File
/* AMX Mod X
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* Natural Selection Module
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*
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* by the AMX Mod X Development Team
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*
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* This file is part of AMX Mod X.
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*
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2 of the License, or (at
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* 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, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* 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 Foundation,
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* Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*
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* In addition, as a special exception, the author gives permission to
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* link the code of this program with the Half-Life Game Engine ("HL
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* Engine") and Modified Game Libraries ("MODs") developed by Valve,
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* L.L.C ("Valve"). You must obey the GNU General Public License in all
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* respects for all of the code used other than the HL Engine and MODs
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* from Valve. If you modify this file, you may extend this exception
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* to your version of the file, but you are not obligated to do so. If
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* you do not wish to do so, delete this exception statement from your
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* version.
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*/
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#ifndef UTILFUNCTIONS_H
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#define UTILFUNCTIONS_H
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#include "NEW_Util.h" // include my experimental INDEXENT / ENTINDEX replacements
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#define GET_PLAYER_E(x) (&g_player[ENTINDEX_NEW(x)])
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#define GET_PLAYER_I(x) (&g_player[x])
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/**
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* Like GET_PLAYER_I, but this handles the invalid player index
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* as well as setting the CPlayer pointer.
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* NOTE: This declares CPlayer *player for you
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*/
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#define CreatePlayerPointer(AMX__, INDEX__) \
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if (INDEX__ < 1 || INDEX__ > gpGlobals->maxClients) \
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{ \
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return 0; \
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} \
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CPlayer *player = &g_player[INDEX__]
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/**
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* Declares an edict (Entity) and verify it's not a player
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*/
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#define CreateNonPlayerEdict(AMX__, INDEX__) \
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if (INDEX__ <= gpGlobals->maxClients || INDEX__ > gpGlobals->maxEntities) \
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{ \
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return 0; \
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} \
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edict_t *Entity=INDEXENT_NEW(INDEX__)
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/**
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* Declares an edict (Entity) does not care if it is a player
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*/
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#define CreateEdict(AMX__, INDEX__, INVALIDRET__) \
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if (INDEX__ < 1 || INDEX__ > gpGlobals->maxEntities) \
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{ \
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return INVALIDRET__; \
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} \
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edict_t *Entity=INDEXENT_NEW(INDEX__)
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/**
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* There is no need to use the AMXx provided calls as
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* they do an api call to recast, seems like overkill
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*/
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//#define amx_ftoc2(x) *((cell *)&x)
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//#define amx_ctof2(x) *((REAL *)&x)
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#define amx_ftoc3(x) *((cell *)x)
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#define amx_ctof3(x) *((REAL *)x)
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inline cell amx_ftoc2(REAL x)
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{
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return *((cell *)&x);
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};
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inline REAL amx_ctof2(cell x)
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{
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return *((REAL *)&x);
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};
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inline BOOL isValidEntity(int x)
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{
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if (x < 0)
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return FALSE;
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if (x >= 0 || x <= gpGlobals->maxClients)
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return TRUE;
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if (x > gpGlobals->maxEntities)
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return FALSE;
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if (FNullEnt(x))
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return FALSE;
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return TRUE;
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}
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#define CHECK_ENTITY(x) if (x != 0 && (FNullEnt(INDEXENT_NEW(x)) || x < 0 || x > gpGlobals->maxEntities)) return 0;
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#define CHECK_PARAMS(x) if (*params/sizeof(cell) < x) return 0;
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// Stuff in utils.cpp
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edict_t *UTIL_FindEntityByString(edict_t *Start, const char *Keyword, const char *Value);
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int UTIL_FindBuildingHive(void);
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BOOL UTIL_CheckForPublic(const char *publicname);
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BOOL UTIL_CheckForNative(const char *NativeName);
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class CPlayer;
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CPlayer *UTIL_PlayerByCID(int CID);
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// Converts something such as RESOURCES into OFFSET_WIN_RESOURCES or OFFSET_LIN_RESOURCES
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#ifdef __linux__
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#define MAKE_OFFSET(Offset) OFFSET_LIN_##Offset
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#define MAKE_MEMBER_OFFSET(Offs) (Offs - OFFSET_LIN_MEMBERFUNCSTART)
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#else
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#define MAKE_OFFSET(Offset) OFFSET_WIN_##Offset
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#define MAKE_MEMBER_OFFSET(Offs) (Offs - OFFSET_WIN_MEMBERFUNCSTART)
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#endif // __linux__
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template <typename Output>
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inline Output get_private_p(edict_t *pEntity, int offset)
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{
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return (Output)(*(void**)((char*)(pEntity->pvPrivateData)+offset));
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};
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/**
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* Converts the private data pointer into an edict by
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* looking up the entvar pointer (first entry in cbaseentity)
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* and then getting pContainingEntity from that
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*/
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inline edict_t *private_to_edict(void *PrivateData)
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{
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if (PrivateData==NULL)
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{
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return NULL;
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}
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return (*((entvars_t **)((char *)PrivateData + MAKE_OFFSET(ENTVAR))))->pContainingEntity;
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};
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inline int clamp(int value, int min, int max)
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{
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if (value < min)
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{
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return min;
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}
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if (value > max)
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{
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return max;
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}
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return value;
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}
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inline REAL clamp(REAL value, REAL min, REAL max)
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{
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if (value < min)
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{
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return min;
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}
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if (value > max)
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{
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return max;
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}
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return value;
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}
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inline int clamp(int value, int min)
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{
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if (value < min)
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{
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return min;
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}
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return value;
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}
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inline REAL clamp(REAL value, REAL min)
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{
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if (value < min)
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{
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return min;
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}
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return value;
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}
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inline int get_private(edict_t *pEntity, int offset)
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{
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return *(int*)((char*)(pEntity->pvPrivateData)+offset);
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}
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inline REAL get_private_f(edict_t *pEntity, int offset)
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{
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return *(REAL*)((char*)(pEntity->pvPrivateData)+offset);
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}
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inline void set_private(edict_t *pEntity, int offset, int value)
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{
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*(int*)((char*)(pEntity->pvPrivateData)+offset) = value;
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}
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inline int inc_private(edict_t *pEntity, int offset, int value)
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{
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return *(int*)((char*)(pEntity->pvPrivateData)+offset) = *(int*)((char*)(pEntity->pvPrivateData)+offset) + value;
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}
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inline int inc_private(edict_t *pEntity, int offset, int value, int min)
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{
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return *(int*)((char*)(pEntity->pvPrivateData)+offset) = clamp(*(int*)((char*)(pEntity->pvPrivateData)+offset) + value, min);
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}
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inline int inc_private(edict_t *pEntity, int offset, int value, int min, int max)
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{
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return *(int*)((char*)(pEntity->pvPrivateData)+offset) = clamp(*(int*)((char*)(pEntity->pvPrivateData)+offset) + value, min, max);
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}
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inline void set_private_f(edict_t *pEntity, int offset, REAL value)
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{
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*(REAL*)((char*)(pEntity->pvPrivateData)+offset) = value;
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}
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inline REAL inc_private_f(edict_t *pEntity, int offset, REAL value)
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{
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return *(REAL*)((char*)(pEntity->pvPrivateData)+offset) = *(REAL*)((char*)(pEntity->pvPrivateData)+offset) + value;
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}
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inline REAL inc_private_f(edict_t *pEntity, int offset, REAL value, REAL min)
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{
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return *(REAL*)((char*)(pEntity->pvPrivateData)+offset) = clamp(*(REAL*)((char*)(pEntity->pvPrivateData)+offset) + value, min);
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}
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inline REAL inc_private_f(edict_t *pEntity, int offset, REAL value, REAL min, REAL max)
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{
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return *(REAL*)((char*)(pEntity->pvPrivateData)+offset) = clamp(*(REAL*)((char*)(pEntity->pvPrivateData)+offset) + value, min, max);
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}
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inline unsigned char get_private_b(edict_t *pEntity, int offset)
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{
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return *(((unsigned char*)pEntity->pvPrivateData)+offset);
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};
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inline unsigned char set_private_b(edict_t *pEntity, int offset, unsigned char value)
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{
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return *(((unsigned char*)pEntity->pvPrivateData)+offset)=value;
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};
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#endif // UTILFUNCTIONS_H
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