mirror of
https://github.com/rehlds/hitboxtracker.git
synced 2025-01-23 12:07:59 +03:00
486 lines
15 KiB
C++
486 lines
15 KiB
C++
/*
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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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*/
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#pragma once
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#include "util.h"
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#include "schedule.h"
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#include "saverestore.h"
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#include "scriptevent.h"
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#include "monsterevent.h"
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class CSave;
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class CRestore;
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class CBasePlayer;
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class CBaseEntity;
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class CBaseMonster;
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class CBasePlayerItem;
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class CSquadMonster;
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class CCSEntity;
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class CBaseEntity {
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public:
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// Constructor. Set engine to use C/C++ callback functions
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// pointers to engine data
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entvars_t *pev; // Don't need to save/restore this pointer, the engine resets it
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// path corners
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CBaseEntity *m_pGoalEnt; // path corner we are heading towards
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CBaseEntity *m_pLink; // used for temporary link-list operations.
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// initialization functions
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virtual void Spawn() = 0;
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virtual void Precache() = 0;
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virtual void Restart() = 0;
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virtual void KeyValue(KeyValueData *pkvd) = 0;
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virtual int Save(CSave &save) = 0;
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virtual int Restore(CRestore &restore) = 0;
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virtual int ObjectCaps() = 0;
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virtual void Activate() = 0;
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// Setup the object->object collision box (pev->mins / pev->maxs is the object->world collision box)
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virtual void SetObjectCollisionBox() = 0;
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// Classify - returns the type of group (i.e, "houndeye", or "human military" so that monsters with different classnames
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// still realize that they are teammates. (overridden for monsters that form groups)
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virtual int Classify() = 0;
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virtual void DeathNotice(entvars_t *pevChild) = 0;
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virtual void TraceAttack(entvars_t *pevAttacker, float flDamage, Vector vecDir, TraceResult *ptr, int bitsDamageType) = 0;
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virtual BOOL TakeDamage(entvars_t *pevInflictor, entvars_t *pevAttacker, float flDamage, int bitsDamageType) = 0;
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virtual BOOL TakeHealth(float flHealth, int bitsDamageType) = 0;
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virtual void Killed(entvars_t *pevAttacker, int iGib) = 0;
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virtual int BloodColor() = 0;
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virtual void TraceBleed(float flDamage, Vector vecDir, TraceResult *ptr, int bitsDamageType) = 0;
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virtual BOOL IsTriggered(CBaseEntity *pActivator) = 0;
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virtual CBaseMonster *MyMonsterPointer() = 0;
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virtual CSquadMonster *MySquadMonsterPointer() = 0;
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virtual int GetToggleState() = 0;
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virtual void AddPoints(int score, BOOL bAllowNegativeScore) = 0;
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virtual void AddPointsToTeam(int score, BOOL bAllowNegativeScore) = 0;
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virtual BOOL AddPlayerItem(CBasePlayerItem *pItem) = 0;
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virtual BOOL RemovePlayerItem(CBasePlayerItem *pItem) = 0;
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virtual int GiveAmmo(int iAmount, const char *szName, int iMax = -1) = 0;
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virtual float GetDelay() = 0;
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virtual int IsMoving() = 0;
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virtual void OverrideReset() = 0;
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virtual int DamageDecal(int bitsDamageType) = 0;
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// This is ONLY used by the node graph to test movement through a door
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virtual void SetToggleState(int state) = 0;
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virtual void StartSneaking() = 0;
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virtual void UpdateOnRemove() = 0;
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virtual BOOL OnControls(entvars_t *onpev) = 0;
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virtual BOOL IsSneaking() = 0;
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virtual BOOL IsAlive() = 0;
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virtual BOOL IsBSPModel() = 0;
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virtual BOOL ReflectGauss() = 0;
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virtual BOOL HasTarget(string_t targetname) = 0;
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virtual BOOL IsInWorld() = 0;
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virtual BOOL IsPlayer() = 0;
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virtual BOOL IsNetClient() = 0;
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virtual const char *TeamID() = 0;
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virtual CBaseEntity *GetNextTarget() = 0;
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// fundamental callbacks
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void (CBaseEntity::*m_pfnThink)();
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void (CBaseEntity::*m_pfnTouch)(CBaseEntity *pOther);
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void (CBaseEntity::*m_pfnUse)(CBaseEntity *pActivator, CBaseEntity *pCaller, USE_TYPE useType, float value);
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void (CBaseEntity::*m_pfnBlocked)(CBaseEntity *pOther);
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void EXT_FUNC DLLEXPORT SUB_Think();
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void EXT_FUNC DLLEXPORT SUB_Touch(CBaseEntity *pOther);
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void EXT_FUNC DLLEXPORT SUB_Use(CBaseEntity *pActivator, CBaseEntity *pCaller, USE_TYPE useType, float value);
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void EXT_FUNC DLLEXPORT SUB_Blocked(CBaseEntity *pOther);
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using thinkfn_t = decltype(m_pfnThink);
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template <typename T>
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void SetThink(void (T::*pfn)());
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void SetThink(std::nullptr_t);
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using touchfn_t = decltype(m_pfnTouch);
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template <typename T>
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void SetTouch(void (T::*pfn)(CBaseEntity *pOther));
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void SetTouch(std::nullptr_t);
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using usefn_t = decltype(m_pfnUse);
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template <typename T>
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void SetUse(void (T::*pfn)(CBaseEntity *pActivator, CBaseEntity *pCaller, USE_TYPE useType, float value));
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void SetUse(std::nullptr_t);
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using blockedfn_t = decltype(m_pfnBlocked);
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template <typename T>
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void SetBlocked(void (T::*pfn)(CBaseEntity *pOther));
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void SetBlocked(std::nullptr_t);
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virtual void Think() = 0;
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virtual void Touch(CBaseEntity *pOther) = 0;
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virtual void Use(CBaseEntity *pActivator, CBaseEntity *pCaller, USE_TYPE useType = USE_OFF, float value = 0.0f) = 0;
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virtual void Blocked(CBaseEntity *pOther) = 0;
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virtual CBaseEntity *Respawn() = 0;
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virtual void UpdateOwner() = 0;
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virtual BOOL FBecomeProne() = 0;
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virtual Vector Center() = 0; // center point of entity
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virtual Vector EyePosition() = 0; // position of eyes
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virtual Vector EarPosition() = 0; // position of ears
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virtual Vector BodyTarget(const Vector &posSrc) = 0; // position to shoot at
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virtual int Illumination() = 0;
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virtual BOOL FVisible(CBaseEntity *pEntity) = 0;
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virtual BOOL FVisible(const Vector &vecOrigin) = 0;
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public:
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static CBaseEntity *Instance(edict_t *pent) { return (CBaseEntity *)GET_PRIVATE(pent ? pent : ENT(0)); }
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static CBaseEntity *Instance(entvars_t *pev) { return Instance(ENT(pev)); }
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static CBaseEntity *Instance(int offset) { return Instance(ENT(offset)); }
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edict_t *edict();
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EOFFSET eoffset();
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int entindex();
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int IsDormant();
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bool Intersects(CBaseEntity *pOther);
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bool Intersects(const Vector &mins, const Vector &maxs);
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// Exports func's, useful method's for SetThink
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void EXPORT SUB_CallUseToggle()
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{
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Use(this, this, USE_TOGGLE, 0);
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}
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void EXPORT SUB_Remove()
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{
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if (pev->health > 0)
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{
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// this situation can screw up monsters who can't tell their entity pointers are invalid.
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pev->health = 0;
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ALERT(at_aiconsole, "SUB_Remove called on entity with health > 0\n");
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}
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REMOVE_ENTITY(ENT(pev));
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}
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public:
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// NOTE: it was replaced on member "int *current_ammo" because it is useless.
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CCSEntity *m_pEntity;
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// We use this variables to store each ammo count.
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float currentammo;
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int maxammo_buckshot;
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int ammo_buckshot;
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int maxammo_9mm;
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int ammo_9mm;
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int maxammo_556nato;
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int ammo_556nato;
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int maxammo_556natobox;
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int ammo_556natobox;
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int maxammo_762nato;
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int ammo_762nato;
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int maxammo_45acp;
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int ammo_45acp;
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int maxammo_50ae;
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int ammo_50ae;
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int maxammo_338mag;
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int ammo_338mag;
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int maxammo_57mm;
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int ammo_57mm;
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int maxammo_357sig;
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int ammo_357sig;
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// Special stuff for grenades and knife.
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float m_flStartThrow;
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float m_flReleaseThrow;
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int m_iSwing;
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// client has left the game
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bool has_disconnected;
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};
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#include "ehandle.h"
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// Inlines
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inline BOOL FNullEnt(CBaseEntity *ent) { return (ent == NULL || FNullEnt(ent->edict())); }
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template <typename T>
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inline void CBaseEntity::SetThink(void (T::*pfn)())
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{
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m_pfnThink = static_cast<thinkfn_t>(pfn);
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}
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inline void CBaseEntity::SetThink(std::nullptr_t)
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{
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m_pfnThink = nullptr;
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}
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template <typename T>
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inline void CBaseEntity::SetTouch(void (T::*pfn)(CBaseEntity *pOther))
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{
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m_pfnTouch = static_cast<touchfn_t>(pfn);
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}
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inline void CBaseEntity::SetTouch(std::nullptr_t)
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{
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m_pfnTouch = nullptr;
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}
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template <typename T>
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inline void CBaseEntity::SetUse(void (T::*pfn)(CBaseEntity *pActivator, CBaseEntity *pCaller, USE_TYPE useType, float value))
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{
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m_pfnUse = static_cast<usefn_t>(pfn);
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}
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inline void CBaseEntity::SetUse(std::nullptr_t)
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{
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m_pfnUse = nullptr;
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}
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template <typename T>
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inline void CBaseEntity::SetBlocked(void (T::*pfn)(CBaseEntity *pOther))
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{
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m_pfnBlocked = static_cast<blockedfn_t>(pfn);
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}
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inline void CBaseEntity::SetBlocked(std::nullptr_t)
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{
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m_pfnBlocked = nullptr;
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}
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class CPointEntity: public CBaseEntity {
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public:
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virtual void Spawn() = 0;
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virtual int ObjectCaps() = 0;
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};
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// generic Delay entity
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class CBaseDelay: public CBaseEntity {
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public:
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virtual void KeyValue(KeyValueData *pkvd) = 0;
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virtual int Save(CSave &save) = 0;
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virtual int Restore(CRestore &restore) = 0;
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public:
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float m_flDelay;
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string_t m_iszKillTarget;
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};
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class CBaseAnimating: public CBaseDelay {
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public:
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virtual int Save(CSave &save) = 0;
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virtual int Restore(CRestore &restore) = 0;
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virtual void HandleAnimEvent(MonsterEvent_t *pEvent) = 0;
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public:
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// animation needs
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float m_flFrameRate; // computed FPS for current sequence
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float m_flGroundSpeed; // computed linear movement rate for current sequence
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float m_flLastEventCheck; // last time the event list was checked
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BOOL m_fSequenceFinished; // flag set when StudioAdvanceFrame moves across a frame boundry
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BOOL m_fSequenceLoops; // true if the sequence loops
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};
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// generic Toggle entity.
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class CBaseToggle: public CBaseAnimating {
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public:
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virtual void KeyValue(KeyValueData *pkvd) = 0;
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virtual int Save(CSave &save) = 0;
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virtual int Restore(CRestore &restore) = 0;
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virtual int GetToggleState() = 0;
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virtual float GetDelay() = 0;
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void EXT_FUNC DLLEXPORT SUB_MoveDone();
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public:
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TOGGLE_STATE m_toggle_state;
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float m_flActivateFinished; // like attack_finished, but for doors
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float m_flMoveDistance; // how far a door should slide or rotate
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float m_flWait;
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float m_flLip;
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float m_flTWidth; // for plats
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float m_flTLength; // for plats
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Vector m_vecPosition1;
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Vector m_vecPosition2;
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Vector m_vecAngle1;
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Vector m_vecAngle2;
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int m_cTriggersLeft; // trigger_counter only, # of activations remaining
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float m_flHeight;
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EHANDLE m_hActivator;
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void (CBaseToggle::*m_pfnCallWhenMoveDone)();
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using movedonefn_t = decltype(m_pfnCallWhenMoveDone);
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template <typename T>
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void SetMoveDone(void (T::*pfn)());
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void SetMoveDone(std::nullptr_t);
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Vector m_vecFinalDest;
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Vector m_vecFinalAngle;
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int m_bitsDamageInflict; // DMG_ damage type that the door or tigger does
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string_t m_sMaster; // If this button has a master switch, this is the targetname.
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// A master switch must be of the multisource type. If all
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// of the switches in the multisource have been triggered, then
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// the button will be allowed to operate. Otherwise, it will be
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// deactivated.
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};
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template <typename T>
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inline void CBaseToggle::SetMoveDone(void (T::*pfn)())
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{
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m_pfnCallWhenMoveDone = static_cast<movedonefn_t>(pfn);
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}
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inline void CBaseToggle::SetMoveDone(std::nullptr_t)
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{
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m_pfnCallWhenMoveDone = nullptr;
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}
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#include "world.h"
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#include "basemonster.h"
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#include "player.h"
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#define SF_BUTTON_DONTMOVE BIT(0)
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#define SF_BUTTON_TOGGLE BIT(5) // button stays pushed until reactivated
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#define SF_BUTTON_SPARK_IF_OFF BIT(6) // button sparks in OFF state
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#define SF_BUTTON_TOUCH_ONLY BIT(8) // button only fires as a result of USE key.
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// Generic Button
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class CBaseButton: public CBaseToggle {
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public:
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virtual void Spawn() = 0;
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virtual void Precache() = 0;
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virtual void Restart() = 0;
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virtual void KeyValue(KeyValueData *pkvd) = 0;
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virtual BOOL TakeDamage(entvars_t *pevInflictor, entvars_t *pevAttacker, float flDamage, int bitsDamageType) = 0;
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virtual int Save(CSave &save) = 0;
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virtual int Restore(CRestore &restore) = 0;
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virtual int ObjectCaps() = 0; // Buttons that don't take damage can be IMPULSE used
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public:
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BOOL m_fStayPushed; // button stays pushed in until touched again?
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BOOL m_fRotating; // a rotating button? default is a sliding button.
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string_t m_strChangeTarget; // if this field is not null, this is an index into the engine string array.
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// when this button is touched, it's target entity's TARGET field will be set
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// to the button's ChangeTarget. This allows you to make a func_train switch paths, etc.
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locksound_t m_ls; // door lock sounds
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byte m_bLockedSound; // ordinals from entity selection
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byte m_bLockedSentence;
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byte m_bUnlockedSound;
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byte m_bUnlockedSentence;
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int m_sounds;
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};
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// MultiSouce
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#define MAX_MS_TARGETS 32 // maximum number of targets a single multisource entity may be assigned.
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#define SF_MULTI_INIT BIT(0)
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class CMultiSource: public CPointEntity {
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public:
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virtual void Spawn() = 0;
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virtual void Restart() = 0;
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virtual void KeyValue(KeyValueData *pkvd) = 0;
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virtual int Save(CSave &save) = 0;
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virtual int Restore(CRestore &restore) = 0;
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virtual int ObjectCaps() = 0;
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virtual BOOL IsTriggered(CBaseEntity *pActivator) = 0;
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virtual void Use(CBaseEntity *pActivator, CBaseEntity *pCaller, USE_TYPE useType, float value) = 0;
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public:
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EHANDLE m_rgEntities[MAX_MS_TARGETS];
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int m_rgTriggered[MAX_MS_TARGETS];
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int m_iTotal;
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string_t m_globalstate;
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};
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// Converts a entvars_t * to a class pointer
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// It will allocate the class and entity if necessary
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template <class T>
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T *GetClassPtr(T *a)
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{
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entvars_t *pev = (entvars_t *)a;
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// allocate entity if necessary
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if (pev == nullptr)
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pev = VARS(CREATE_ENTITY());
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// get the private data
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a = (T *)GET_PRIVATE(ENT(pev));
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if (a == nullptr)
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{
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// allocate private data
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a = new(pev) T;
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a->pev = pev;
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}
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return a;
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}
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// Inlines
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inline edict_t *CBaseEntity::edict()
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{
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return ENT(pev);
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}
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inline EOFFSET CBaseEntity::eoffset()
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{
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return OFFSET(pev);
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}
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inline int CBaseEntity::entindex()
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{
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return ENTINDEX(edict());
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}
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inline int CBaseEntity::IsDormant()
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{
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return (pev->flags & FL_DORMANT) == FL_DORMANT;
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}
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inline bool CBaseEntity::Intersects(CBaseEntity *pOther)
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{
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return Intersects(pOther->pev->absmin, pOther->pev->absmax);
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}
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inline bool CBaseEntity::Intersects(const Vector &mins, const Vector &maxs)
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{
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if (mins.x > pev->absmax.x
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|| mins.y > pev->absmax.y
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|| mins.z > pev->absmax.z
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|| maxs.x < pev->absmin.x
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|| maxs.y < pev->absmin.y
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|| maxs.z < pev->absmin.z)
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{
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return false;
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}
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return true;
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}
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