cd023c30d9
Item_CanDrop -> {CS,DOD}_Item_CanDrop Added Ham_CS_Item_GetMaxSpeed Reversed classname and callback parameters for RegisterHam. Finished commenting ham_const.inc.
402 lines
7.0 KiB
C++
402 lines
7.0 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 "ham_const.h"
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#include "hooklist.h"
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#include "offsets.h"
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extern hook_t hooklist[];
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enum
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{
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LEX_INVALID = 0,
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LEX_UNKNOWN,
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LEX_START_SEC,
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LEX_END_SEC,
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LEX_MIRROR,
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LEX_PEV,
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LEX_BASE,
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LEX_END
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};
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const char *tokens[] =
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{
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"", // LEX_INVALID
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"", // LEX_UNKNOWN
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"@section", // LEX_START_SEC
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"@end", // LEX_END_SEC
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"@mirror", // LEX_MIRROR
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"pev", // LEX_PEV
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"base", // LEX_BASE
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"", // LEX_END
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};
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static void trim_line(char *input);
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static void read_mirror(char *input);
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static void skip_to_end_of_section(FILE *fp);
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static int lex(char*& buffer);
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int lex(char*& buffer)
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{
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trim_line(buffer);
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size_t len;
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for (int i=0; i<LEX_END; i++)
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{
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if (tokens[i]!=NULL && *(tokens[i])!='\0')
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{
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len=strlen(tokens[i]);
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if (strncmp(buffer,tokens[i],len)==0)
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{
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buffer+=len+1;
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return i;
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}
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}
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}
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return LEX_UNKNOWN;
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}
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// How we handle "mirrors"
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// We just note down the current mod name, and every time
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// we come across a mirror with the destination that matches
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// the current mod name, we change the current mod name to
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// the source for that mirror.
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char CurrentModName[64];
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static void read_mirror(char *input)
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{
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char *data=input;
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char *data2;
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char source[64];
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char dest[64];
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char old;
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while ( *data!=' ' &&
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*data!='\t' &&
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*data!='\0')
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{
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data++;
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}
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old=*data;
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*data='\0';
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// mark down the source
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snprintf(source, sizeof(source)-1, "%s", input);
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*data=old;
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while ( *data==' ' ||
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*data=='\t')
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{
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data++;
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}
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data2=data;
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while ( *data!=' ' &&
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*data!='\t' &&
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*data!='\0')
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{
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data++;
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}
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old=*data;
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*data='\0';
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snprintf(dest, sizeof(dest)-1, "%s", data2);
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*data=old;
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if (strcmp(dest, CurrentModName)==0)
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{
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snprintf(CurrentModName, sizeof(CurrentModName)-1, "%s", dest);
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}
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}
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static void trim_line(char *input)
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{
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char *oldinput=input;
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char *start=input;
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while ( *start==' ' ||
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*start=='\t' ||
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*start=='\r' ||
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*start=='\n')
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{
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start++;
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}
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// Overwrite the whitespace
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if (start != input)
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{
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while ((*input++=*start++)!='\0')
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/* do nothing */ ;
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}
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start=oldinput;
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start+=strlen(start) - 1;
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while ( start >= oldinput &&
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( *start == '\0' ||
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*start == ' ' ||
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*start == '\r' ||
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*start == '\n' ||
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*start == '\t'))
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{
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start--;
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}
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start++;
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*start='\0';
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// Now find any comments and cut off at the start
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while (*start != '\0')
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{
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if (*start == ';')
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{
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*start='\0';
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break;
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}
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start++;
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}
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}
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void skip_to_end_of_section(FILE *fp)
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{
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char buffer[1024];
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while (!feof(fp))
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{
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buffer[0]='\0';
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fgets(buffer, sizeof(buffer)-1, fp);
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trim_line(buffer);
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char *b=&buffer[0];
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if (lex(b)==LEX_END_SEC)
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{
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break;
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}
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}
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}
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static const char* get_localinfo( const char* name , const char* def = 0 )
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{
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const char* b = LOCALINFO( (char*)name );
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if (((b==0)||(*b==0)) && def )
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SET_LOCALINFO((char*)name,(char*)(b = def) );
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return b;
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}
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int read_start_section(char *data)
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{
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if (strncmp(data, CurrentModName, strlen(CurrentModName))==0)
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{
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data+=strlen(CurrentModName)+1;
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trim_line(data);
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#ifdef _WIN32
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if (strcmp(data, "windows")==0)
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#elif defined __linux__
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if (strcmp(data, "linux")==0)
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#endif
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{
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return 1;
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}
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}
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return 0;
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}
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int read_number(char *input)
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{
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char *end; /* Temporary pointer, needed for strtoul(). */
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// if begins with 0x or 0X it's to be interpretted as hex
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if (*input=='0' &&
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(*(input+1)=='x' || *(input+1)=='X'))
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{
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return strtoul(input,&end,16);
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}
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// otherwise it's to be interpretted as base 10
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return strtoul(input,&end,10);
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}
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void process_pev(char *data)
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{
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trim_line(data);
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Offsets.SetPev(read_number(data));
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}
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void process_base(char *data)
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{
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trim_line(data);
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Offsets.SetBase(read_number(data));
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}
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void process_key(char *data)
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{
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size_t size=0;
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char *a=data;
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while (*a != ' ' && *a != '\t' && *a != '\0')
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{
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a++;
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size++;
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}
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if (size==0)
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{
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return;
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}
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int set=0;
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for (int i=0; i< HAM_LAST_ENTRY_DONT_USE_ME_LOL; i++)
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{
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if (strncmp(data, hooklist[i].name, size)==0)
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{
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data+=size+1;
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trim_line(data);
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int value=read_number(data);
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hooklist[i].isset=1;
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hooklist[i].vtid=value;
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set=1;
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break;
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}
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}
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if (set==0)
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{
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printf("stray key in process_key: %s\n", data);
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}
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}
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int ReadConfig(void)
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{
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char FileName[512];
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MF_BuildPathnameR(FileName,sizeof(FileName)-1,"%s",get_localinfo("amxx_configsdir","addons/amxmodx/configs"));
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strncat(FileName,"/hamdata.ini",sizeof(FileName)-1);
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FILE *fp=fopen(FileName,"r");
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snprintf(CurrentModName, sizeof(CurrentModName)-1, "%s", MF_GetModname());
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if (!fp)
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{
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MF_Log("Unable to open \"%s\" for reading.", FileName);
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return -1;
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}
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char data[2048];
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int insec=0;
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while (!feof(fp))
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{
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data[0]='\0';
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fgets(data, sizeof(data)-1, fp);
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char *b=&data[0];
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switch(lex(b))
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{
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case LEX_PEV:
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{
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if (insec)
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{
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process_pev(b);
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}
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break;
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};
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case LEX_BASE:
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{
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if (insec)
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{
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process_base(b);
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}
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break;
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};
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case LEX_MIRROR:
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{
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read_mirror(b);
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break;
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};
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case LEX_START_SEC:
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{
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insec=read_start_section(b);
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if (!insec)
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{
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skip_to_end_of_section(fp);
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}
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break;
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};
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case LEX_END_SEC:
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{
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insec=0;
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break;
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};
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case LEX_UNKNOWN:
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{
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if (insec)
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{
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process_key(b);
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}
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};
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}
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}
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return 1;
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}
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