545 lines
12 KiB
C++
Executable File
545 lines
12 KiB
C++
Executable File
/* AMX Mod X
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*
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* by the AMX Mod X Development Team
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* originally developed by OLO
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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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#include "amxmodx.h"
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#include "CEvent.h"
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// *****************************************************
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// class ClEvent
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// *****************************************************
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EventsMngr::ClEvent::ClEvent(CPluginMngr::CPlugin* plugin, int func, int flags)
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{
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m_Plugin = plugin;
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m_Func = func;
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// flags
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m_FlagAlive = true;
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m_FlagDead = true;
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m_FlagWorld = (flags & 1) ? true : false; // flag a
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m_FlagPlayer = (flags & 2) ? true : false; // flag b
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m_FlagOnce = (flags & 4) ? true : false; // flag c
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if (flags & 24)
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{
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m_FlagAlive = (flags & 16) ? true : false; // flag e
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m_FlagDead = (flags & 8) ? true : false; // flag d
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}
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m_Stamp = 0.0f;
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m_Done = false;
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m_Conditions = NULL;
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}
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EventsMngr::ClEvent::~ClEvent()
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{
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cond_t *tmp1 = m_Conditions;
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cond_t *tmp2 = NULL;
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while (tmp1)
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{
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tmp2 = tmp1->next;
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delete tmp1;
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tmp1 = tmp2;
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}
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m_Conditions = NULL;
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}
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void EventsMngr::NextParam()
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{
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const int INITIAL_PARSEVAULT_SIZE = 32;
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if (m_ParsePos < m_ParseVaultSize)
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return;
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MsgDataEntry *tmp = NULL;
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int tmpSize = 0;
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if (m_ParseVault)
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{
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// copy to tmp
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tmp = new MsgDataEntry[m_ParseVaultSize];
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if (!tmp)
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{
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return; // :TODO: Error report !!
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}
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memcpy(tmp, m_ParseVault, m_ParseVaultSize * sizeof(MsgDataEntry));
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tmpSize = m_ParseVaultSize;
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delete [] m_ParseVault;
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m_ParseVault = NULL;
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}
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if (m_ParseVaultSize > 0)
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m_ParseVaultSize *= 2;
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else
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m_ParseVaultSize = INITIAL_PARSEVAULT_SIZE;
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m_ParseVault = new MsgDataEntry[m_ParseVaultSize];
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if (tmp)
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{
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memcpy(m_ParseVault, tmp, tmpSize * sizeof(MsgDataEntry));
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delete [] tmp;
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tmp = NULL;
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}
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}
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int EventsMngr::ClEvent::getFunction()
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{
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return m_Func;
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}
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EventsMngr::EventsMngr()
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{
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m_ParseVault = NULL;
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m_ParseVaultSize = 0;
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m_CurrentMsgType = -1;
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clearEvents();
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}
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EventsMngr::~EventsMngr()
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{
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clearEvents();
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}
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CPluginMngr::CPlugin * EventsMngr::ClEvent::getPlugin()
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{
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return m_Plugin;
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}
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// *****************************************************
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// class EventsMngr
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// *****************************************************
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void EventsMngr::ClEvent::registerFilter(char *filter)
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{
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// filters (conditions) have the form x&y
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// x is the param number
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// & may also be other characters
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// y is a string or a number
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if (!filter)
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return;
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char* value = filter;
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// get the first numbr
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while (isdigit(*value))
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++value;
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// end of string => ignore
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if (!*value)
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return;
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cond_t *tmpCond = new cond_t;
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if (!tmpCond)
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return;
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// type character
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tmpCond->type = *value;
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// set a null here so param id can be recognized, and save it
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*value++ = 0;
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tmpCond->paramId = atoi(filter);
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// rest of line
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tmpCond->sValue.set(value);
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tmpCond->fValue = atof(value);
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tmpCond->iValue = atoi(value);
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tmpCond->next = NULL;
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if (m_Conditions)
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{
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cond_t *tmp = m_Conditions;
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while (tmp->next)
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tmp = tmp->next;
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tmp->next = tmpCond;
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}
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else
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m_Conditions = tmpCond;
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}
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EventsMngr::ClEvent* EventsMngr::registerEvent(CPluginMngr::CPlugin* plugin, int func, int flags, int msgid)
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{
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// validate parameter
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if (msgid < 0 || msgid >= MAX_AMX_REG_MSG)
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return NULL;
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ClEvent *event = new ClEvent(plugin, func, flags);
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if (!event)
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return NULL;
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m_Events[msgid].put(event);
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return event;
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}
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void EventsMngr::parserInit(int msg_type, float* timer, CPlayer* pPlayer, int index)
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{
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if (msg_type < 0 || msg_type > MAX_AMX_REG_MSG)
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return;
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m_CurrentMsgType = msg_type;
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m_ParseNotDone = false;
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m_Timer = timer;
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// don't parse if nothing to do
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if (!m_Events[msg_type].size())
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return;
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for(ClEventVecIter iter = m_Events[msg_type].begin(); iter; ++iter)
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{
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if ((*iter).m_Done)
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continue;
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if (!(*iter).m_Plugin->isExecutable((*iter).m_Func))
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{
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(*iter).m_Done = true;
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continue;
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}
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if (pPlayer)
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{
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if (!(*iter).m_FlagPlayer || (pPlayer->IsAlive() ? !(*iter).m_FlagAlive : !(*iter).m_FlagDead ) )
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{
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(*iter).m_Done = true;
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continue;
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}
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}
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else if (!(*iter).m_FlagWorld)
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{
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(*iter).m_Done = true;
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continue;
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}
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if ((*iter).m_FlagOnce && (*iter).m_Stamp == (float)(*timer))
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{
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(*iter).m_Done = true;
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continue;
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}
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m_ParseNotDone = true;
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}
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if (m_ParseNotDone)
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{
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m_ParsePos = 0;
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NextParam();
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m_ParseVault[0].type = MSG_INTEGER;
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m_ParseVault[0].iValue = index;
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}
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m_ParseFun = &m_Events[msg_type];
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}
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void EventsMngr::parseValue(int iValue)
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{
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// not parsing
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if (!m_ParseNotDone || !m_ParseFun)
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return;
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// grow if needed
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++m_ParsePos;
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NextParam();
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m_ParseVault[m_ParsePos].type = MSG_INTEGER;
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m_ParseVault[m_ParsePos].iValue = iValue;
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// loop through the registered funcs, and decide whether they have to be called or not
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// if they shouldnt, their m_Done is set to true
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for (ClEventVecIter iter = m_ParseFun->begin(); iter; ++iter)
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{
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if ((*iter).m_Done)
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continue; // already skipped; don't bother with parsing
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// loop through conditions
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bool execute = false;
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bool anyConditions = false;
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for (ClEvent::cond_t *condIter = (*iter).m_Conditions; condIter; condIter = condIter->next)
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{
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if (condIter->paramId == m_ParsePos)
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{
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anyConditions = true;
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switch(condIter->type)
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{
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case '=': if (condIter->iValue == iValue) execute=true; break;
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case '!': if (condIter->iValue != iValue) execute=true; break;
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case '&': if (iValue & condIter->iValue) execute=true; break;
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case '<': if (iValue < condIter->iValue) execute=true; break;
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case '>': if (iValue > condIter->iValue) execute=true; break;
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}
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if (execute)
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break;
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}
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}
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if (anyConditions && !execute)
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(*iter).m_Done = true; // don't execute
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}
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}
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void EventsMngr::parseValue(float fValue)
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{
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// not parsing
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if (!m_ParseNotDone || !m_ParseFun)
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return;
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// grow if needed
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++m_ParsePos;
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NextParam();
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m_ParseVault[m_ParsePos].type = MSG_FLOAT;
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m_ParseVault[m_ParsePos].fValue = fValue;
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// loop through the registered funcs, and decide whether they have to be called or not
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// if they shouldnt, their m_Done is set to true
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for (ClEventVecIter iter = m_ParseFun->begin(); iter; ++iter)
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{
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if ((*iter).m_Done)
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continue; // already skipped; don't bother with parsing
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// loop through conditions
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bool execute = false;
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bool anyConditions = false;
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for (ClEvent::cond_t *condIter = (*iter).m_Conditions; condIter; condIter = condIter->next)
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{
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if (condIter->paramId == m_ParsePos)
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{
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anyConditions = true;
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switch(condIter->type)
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{
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case '=': if (condIter->fValue == fValue) execute=true; break;
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case '!': if (condIter->fValue != fValue) execute=true; break;
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case '<': if (fValue < condIter->fValue) execute=true; break;
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case '>': if (fValue > condIter->fValue) execute=true; break;
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}
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if (execute)
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break;
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}
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}
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if (anyConditions && !execute)
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(*iter).m_Done = true; // don't execute
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}
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}
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void EventsMngr::parseValue(const char *sz)
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{
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// not parsing
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if (!m_ParseNotDone || !m_ParseFun)
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return;
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// grow if needed
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++m_ParsePos;
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NextParam();
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m_ParseVault[m_ParsePos].type = MSG_STRING;
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m_ParseVault[m_ParsePos].sValue = sz;
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// loop through the registered funcs, and decide whether they have to be called or not
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// if they shouldnt, their m_Done is set to true
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for (ClEventVecIter iter = m_ParseFun->begin(); iter; ++iter)
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{
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if ((*iter).m_Done)
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continue; // already skipped; don't bother with parsing
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// loop through conditions
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bool execute = false;
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bool anyConditions = false;
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for (ClEvent::cond_t *condIter = (*iter).m_Conditions; condIter; condIter = condIter->next)
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{
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if (condIter->paramId == m_ParsePos)
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{
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anyConditions = true;
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switch(condIter->type)
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{
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case '=': if (!strcmp(sz, condIter->sValue.str())) execute=true; break;
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case '!': if (strcmp(sz, condIter->sValue.str())) execute=true; break;
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case '&': if (strstr(sz, condIter->sValue.str())) execute=true; break;
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}
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if (execute)
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break;
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}
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}
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if (anyConditions && !execute)
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(*iter).m_Done = true; // don't execute
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}
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}
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void EventsMngr::executeEvents()
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{
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int err;
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if (!m_ParseFun)
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{
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return;
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}
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#ifdef ENABLEEXEPTIONS
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try
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{
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#endif // #ifdef ENABLEEXEPTIONS
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for (ClEventVecIter iter = m_ParseFun->begin(); iter; ++iter)
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{
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if ( (*iter).m_Done )
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{
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(*iter).m_Done = false;
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continue;
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}
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(*iter).m_Stamp = (float)*m_Timer;
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if ((err = amx_Exec((*iter).m_Plugin->getAMX(), NULL, (*iter).m_Func, 1, m_ParseVault ? m_ParseVault[0].iValue : 0)) != AMX_ERR_NONE)
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{
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AMXXLOG_Log("[AMXX] Run time error %d on line %ld (plugin \"%s\")", err,
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(*iter).m_Plugin->getAMX()->curline, (*iter).m_Plugin->getName());
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}
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}
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#ifdef ENABLEEXEPTIONS
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}
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catch( ... )
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{
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AMXXLOG_Log( "[AMXX] fatal error at event execution");
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}
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#endif // #ifdef ENABLEEXEPTIONS
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m_CurrentMsgType = -1;
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m_ParseFun = NULL;
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}
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int EventsMngr::getArgNum() const
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{
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return m_ParsePos + 1;
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}
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const char* EventsMngr::getArgString(int a) const
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{
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if ( a < 0 || a > m_ParsePos )
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return "";
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static char var[32];
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switch(m_ParseVault[a].type)
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{
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case MSG_INTEGER:
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sprintf( var, "%d", m_ParseVault[a].iValue );
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return var;
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case MSG_STRING:
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return m_ParseVault[a].sValue;
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default:
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sprintf( var, "%g", m_ParseVault[a].fValue );
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return var;
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}
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}
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int EventsMngr::getArgInteger(int a) const
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{
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if ( a < 0 || a > m_ParsePos )
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return 0;
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switch(m_ParseVault[a].type)
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{
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case MSG_INTEGER:
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return m_ParseVault[a].iValue;
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case MSG_STRING:
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return atoi(m_ParseVault[a].sValue);
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default:
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return (int)m_ParseVault[a].fValue;
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}
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}
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float EventsMngr::getArgFloat(int a) const
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{
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if ( a < 0 || a > m_ParsePos )
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return 0.0f;
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switch(m_ParseVault[a].type)
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{
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case MSG_INTEGER:
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return m_ParseVault[a].iValue;
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case MSG_STRING:
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return atof(m_ParseVault[a].sValue);
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default:
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return m_ParseVault[a].fValue;
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}
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}
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void EventsMngr::clearEvents(void)
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{
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for (int i = 0; i < MAX_AMX_REG_MSG; ++i)
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{
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m_Events[i].clear();
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}
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// delete parsevault
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if (m_ParseVault)
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{
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delete [] m_ParseVault;
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m_ParseVault = NULL;
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m_ParseVaultSize = 0;
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}
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}
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int EventsMngr::getEventId(const char* msg)
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{
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// :TODO: Remove this somehow!!! :)
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const struct CS_Events
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{
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const char* name;
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CS_EventsIds id;
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} table[] =
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{
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{ "CS_DeathMsg" , CS_DeathMsg },
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// { "CS_RoundEnd" , CS_RoundEnd },
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// { "CS_RoundStart" , CS_RoundStart },
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// { "CS_Restart" , CS_Restart },
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{ "" , CS_Null }
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};
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// if msg is a number, return it
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int pos = atoi(msg);
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if (pos != 0)
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return pos;
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// try to find in table first
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for (pos = 0; table[ pos ].id != CS_Null; ++pos )
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if ( !strcmp( table[ pos ].name , msg ) )
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return table[ pos ].id;
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// find the id of the message
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return pos = GET_USER_MSG_ID(PLID, msg , 0 );
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}
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int EventsMngr::getCurrentMsgType()
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{
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return m_CurrentMsgType;
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}
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