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https://github.com/alliedmodders/amxmodx.git
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cd023c30d9
Item_CanDrop -> {CS,DOD}_Item_CanDrop Added Ham_CS_Item_GetMaxSpeed Reversed classname and callback parameters for RegisterHam. Finished commenting ham_const.inc.
322 lines
9.5 KiB
C++
322 lines
9.5 KiB
C++
/* Ham Sandwich
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* Copyright 2007
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* By the AMX Mod X Development Team
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*
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* Ham Sandwich 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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* Ham Sandwich 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 Ham Sandwich; 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 Ham Sandwich 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 "sdk/amxxmodule.h"
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#include "CVector.h"
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#include "CString.h"
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#include "sh_stack.h"
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#include "DataHandler.h"
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#include "ham_const.h"
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#include "ham_utils.h"
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#include "NEW_Util.h"
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CStack< Data * > ReturnStack;
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CStack< Data * > OrigReturnStack;
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CStack< CVector< Data * > * > ParamStack;
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CStack< int * > ReturnStatus;
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#define CHECK_STACK(__STACK__) \
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if ( ( __STACK__ ).size() <= 0) \
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{ \
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MF_LogError(amx, AMX_ERR_NATIVE, "%s is empty!", #__STACK__); \
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return 0; \
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}
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#define PARSE_RETURN() \
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if (ret==-2) \
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{ \
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MF_LogError(amx, AMX_ERR_NATIVE, "Data pointer is NULL!"); \
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} \
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else if (ret==-1) \
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{ \
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MF_LogError(amx, AMX_ERR_NATIVE, "Wrong data type (data is of type %s)", returntypes[dat->GetType()]); \
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} \
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return ret
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static const char *returntypes[] =
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{
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"void",
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"integer",
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"float",
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"vector",
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"string",
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"entity",
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"entity",
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"traceresult",
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"iteminfo"
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};
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static cell AMX_NATIVE_CALL GetHamReturnInteger(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->GetInt(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetOrigHamReturnInteger(AMX *amx, cell *params)
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{
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CHECK_STACK(OrigReturnStack);
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Data *dat=OrigReturnStack.front();
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int ret=dat->GetInt(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetHamReturnFloat(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->GetFloat(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetOrigHamReturnFloat(AMX *amx, cell *params)
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{
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CHECK_STACK(OrigReturnStack);
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Data *dat=OrigReturnStack.front();
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int ret=dat->GetFloat(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetHamReturnVector(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->GetVector(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetOrigHamReturnVector(AMX *amx, cell *params)
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{
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CHECK_STACK(OrigReturnStack);
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Data *dat=OrigReturnStack.front();
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int ret=dat->GetVector(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetHamReturnEntity(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->GetEntity(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetOrigHamReturnEntity(AMX *amx, cell *params)
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{
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CHECK_STACK(OrigReturnStack);
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Data *dat=OrigReturnStack.front();
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int ret=dat->GetEntity(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetHamReturnString(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->GetString(MF_GetAmxAddr(amx, params[1]), params[2]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetOrigHamReturnString(AMX *amx, cell *params)
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{
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CHECK_STACK(OrigReturnStack);
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Data *dat=OrigReturnStack.front();
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int ret=dat->GetString(MF_GetAmxAddr(amx, params[1]), params[2]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamReturnInteger(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->SetInt(¶ms[1]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamReturnFloat(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->SetFloat(¶ms[1]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamReturnVector(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->SetVector(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamReturnEntity(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->SetEntity(¶ms[1]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamReturnString(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStack);
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Data *dat=ReturnStack.front();
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int ret=dat->SetString(MF_GetAmxAddr(amx, params[1]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamParamInteger(AMX *amx, cell *params)
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{
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CHECK_STACK(ParamStack);
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CVector<Data *> *vec=ParamStack.front();
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if (vec->size() < (unsigned)params[1])
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Invalid parameter number, got %d, expected %d", params[1], vec->size());
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return 0;
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}
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Data *dat=vec->at(params[1] - 1);
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int ret=dat->SetInt(¶ms[2]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamParamTraceResult(AMX *amx, cell *params)
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{
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if (params[2] == 0)
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Null traceresult provided.");
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return 0;
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}
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CHECK_STACK(ParamStack);
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CVector<Data *> *vec=ParamStack.front();
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if (vec->size() < (unsigned)params[1])
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Invalid parameter number, got %d, expected %d", params[1], vec->size());
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return 0;
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}
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Data *dat=vec->at(params[1] - 1);
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int ret=dat->SetInt(¶ms[2]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamParamFloat(AMX *amx, cell *params)
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{
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CHECK_STACK(ParamStack);
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CVector<Data *> *vec=ParamStack.front();
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if (vec->size() < (unsigned)params[1] || params[1] < 1)
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Invalid parameter number, got %d, expected %d", params[1], vec->size());
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return 0;
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}
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Data *dat=vec->at(params[1] - 1);
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int ret=dat->SetFloat(¶ms[2]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamParamVector(AMX *amx, cell *params)
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{
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CHECK_STACK(ParamStack);
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CVector<Data *> *vec=ParamStack.front();
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if (vec->size() < (unsigned)params[1])
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Invalid parameter number, got %d, expected %d", params[1], vec->size());
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return 0;
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}
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Data *dat=vec->at(params[1] - 1);
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int ret=dat->SetVector(MF_GetAmxAddr(amx, params[2]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamParamEntity(AMX *amx, cell *params)
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{
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CHECK_STACK(ParamStack);
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CVector<Data *> *vec=ParamStack.front();
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if (vec->size() < (unsigned)params[1])
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Invalid parameter number, got %d, expected %d", params[1], vec->size());
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return 0;
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}
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Data *dat=vec->at(params[1] - 1);
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int ret=dat->SetEntity(¶ms[2]);
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL SetHamParamString(AMX *amx, cell *params)
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{
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CHECK_STACK(ParamStack);
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CVector<Data *> *vec=ParamStack.front();
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if (vec->size() < (unsigned)params[1])
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Invalid parameter number, got %d, expected %d", params[1], vec->size());
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return 0;
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}
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Data *dat=vec->at(params[1] - 1);
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int ret=dat->SetString(MF_GetAmxAddr(amx, params[2]));
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PARSE_RETURN();
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}
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static cell AMX_NATIVE_CALL GetHamReturnStatus(AMX *amx, cell *params)
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{
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CHECK_STACK(ReturnStatus);
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int *i=ReturnStatus.front();
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return *i;
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}
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AMX_NATIVE_INFO ReturnNatives[] =
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{
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{ "GetHamReturnInteger", GetHamReturnInteger },
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{ "GetHamReturnFloat", GetHamReturnFloat },
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{ "GetHamReturnVector", GetHamReturnVector },
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{ "GetHamReturnEntity", GetHamReturnEntity },
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{ "GetHamReturnString", GetHamReturnString },
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{ "GetOrigHamReturnInteger", GetOrigHamReturnInteger },
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{ "GetOrigHamReturnFloat", GetOrigHamReturnFloat },
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{ "GetOrigHamReturnVector", GetOrigHamReturnVector },
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{ "GetOrigHamReturnEntity", GetOrigHamReturnEntity },
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{ "GetOrigHamReturnString", GetOrigHamReturnString },
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{ "SetHamReturnInteger", SetHamReturnInteger },
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{ "SetHamReturnFloat", SetHamReturnFloat },
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{ "SetHamReturnVector", SetHamReturnVector },
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{ "SetHamReturnEntity", SetHamReturnEntity },
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{ "SetHamReturnString", SetHamReturnString },
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{ "GetHamReturnStatus", GetHamReturnStatus },
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{ "SetHamParamInteger", SetHamParamInteger },
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{ "SetHamParamFloat", SetHamParamFloat },
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{ "SetHamParamVector", SetHamParamVector },
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{ "SetHamParamEntity", SetHamParamEntity },
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{ "SetHamParamString", SetHamParamString },
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{ "SetHamParamTraceResult", SetHamParamTraceResult },
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{ NULL, NULL },
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};
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