mirror of
https://github.com/Q3Rally-Team/q3rally.git
synced 2024-11-24 21:01:34 +00:00
548 lines
13 KiB
C
548 lines
13 KiB
C
/*
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===========================================================================
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Copyright (C) 1999-2005 Id Software, Inc.
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Copyright (C) 2002-2021 Q3Rally Team (Per Thormann - q3rally@gmail.com)
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This file is part of q3rally source code.
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q3rally source code is free software; you can redistribute it
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and/or modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the License,
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or (at your option) any later version.
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q3rally source code is distributed in the hope that it will be
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useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with q3rally; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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===========================================================================
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*/
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#include "g_local.h"
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int GetTeamAtRank( int rank ){
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int i, j, count;
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int ranks[4];
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int counts[4];
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for (i = 0; i < 4; i++){
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counts[i] = TeamCount( -1, TEAM_RED + i );
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ranks[i] = 0;
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}
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for (i = 0; i < 4; i++){
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if (!counts[i]) continue;
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count = 0;
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for (j = 0; j < 4; j++){
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if (!counts[j]) continue;
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if (isRallyRace()){
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if (level.teamTimes[i + TEAM_RED] > level.teamTimes[j + TEAM_RED]) count++;
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}
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else if (level.teamScores[i + TEAM_RED] < level.teamScores[j + TEAM_RED]) count++;
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}
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while( count < 4 && ranks[count] ) count++; // rank is taken so move to the next one
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if (count < 4)
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ranks[count] = TEAM_RED + i;
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}
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if (g_gametype.integer == GT_CTF && rank > 2){
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return -1;
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}
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else {
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return ranks[rank-1];
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}
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}
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// UPDATE - send as command string instead?
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void Cmd_RacePositions_f( void ) {
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char entry[1024];
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char string[1400];
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gentity_t *player;
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int i, count, j, stringlength;
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string[0] = 0;
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stringlength = 0;
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for(i = 0, count = 0; i < level.maxclients; i++){
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player = &g_entities[i];
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if (!player->inuse) continue;
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if (!player->client) continue;
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Com_sprintf (entry, sizeof(entry)," %i %i", player->s.clientNum, player->client->ps.stats[STAT_POSITION]);
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j = strlen(entry);
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if (stringlength + j > 1024)
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break;
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strcpy (string + stringlength, entry);
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stringlength += j;
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count++;
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}
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G_LogPrintf("%s\n", va("positions %i%s", count, string));
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trap_SendServerCommand( -1, va("positions %i%s\n", count, string) );
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}
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void Cmd_Times_f( gentity_t *ent ) {
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/*
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gentity_t *player;
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int times[4];
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int i, count;
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for(i = 0; i < 4; i++){
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times[i] = 0;
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}
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for(i = 0; i < MAX_CLIENTS; i++){
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player = &g_entities[i];
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if (!player->inuse) continue;
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if (!player->client) continue;
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if (player->client->sess.sessionTeam == TEAM_SPECTATOR) continue;
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if (player->client->sess.sessionTeam == TEAM_FREE) continue;
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if (!level.startRaceTime) continue;
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if (player->client->finishRaceTime){
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times[player->client->sess.sessionTeam - TEAM_RED] +=
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(player->client->finishRaceTime - level.startRaceTime);
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}
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else {
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times[player->client->sess.sessionTeam - TEAM_RED] +=
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(level.time - level.startRaceTime);
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}
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}
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if (g_gametype.integer == GT_TEAM_RACING_DM){
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for(i = 0; i < 4; i++){
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if (level.teamScores[i + TEAM_RED] > 0){
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times[i] -= level.teamScores[i + TEAM_RED] * TIME_BONUS_PER_FRAG;
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}
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if (times[i] < 0)
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times[i] = 0;
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count = TeamCount( -1, TEAM_RED+i );
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if (count){
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times[i] /= count;
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}
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}
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}
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else {
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for(i = 0; i < 4; i++){
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if (times[i] < 0)
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times[i] = 0;
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count = TeamCount( -1, TEAM_RED+i );
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if (count){
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times[i] /= count;
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}
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}
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}
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trap_SendServerCommand( ent-g_entities, va("times %i %i %i %i\n",
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times[0], times[1], times[2], times[3]) );
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*/
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}
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/*
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================================================================================
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GetDistanceToMarker
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Used to calculate how far a player is from the marker.
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Called to find out race positions of players.
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================================================================================
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*/
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float GetDistanceToMarker( gentity_t *player, float markerNumber )
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{
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gentity_t *ent = NULL;
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vec3_t dist;
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if ( !markerNumber )
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return 1<<30;
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while ( (ent = G_Find (ent, FOFS(classname), "rally_checkpoint")) != NULL )
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{
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if( ent->number == markerNumber )
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break;
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}
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if ( ent )
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{
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VectorSubtract(player->r.currentOrigin, ent->s.origin, dist);
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return VectorLength(dist);
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}
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else
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return 1<<30;
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}
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/*
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================================================================================
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IsCarAhead
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Returns true if player one is ahead of two.
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================================================================================
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*/
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qboolean IsCarAhead(gentity_t *one, gentity_t *two){
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float dist1, dist2;
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int time1, time2;
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if (one->client->finishRaceTime && two->client->finishRaceTime){
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time1 = one->client->finishRaceTime - level.startRaceTime;
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if (one->client->ps.persistant[PERS_SCORE] > 0 && !isRallyNonDMRace()){
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time1 -= (one->client->ps.persistant[PERS_SCORE] * TIME_BONUS_PER_FRAG);
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}
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time2 = two->client->finishRaceTime - level.startRaceTime;
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if (two->client->ps.persistant[PERS_SCORE] > 0 && !isRallyNonDMRace()){
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time2 -= (two->client->ps.persistant[PERS_SCORE] * TIME_BONUS_PER_FRAG);
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}
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if (time1 < time2){ // use frag modified times
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// Com_Printf("Car 1 finished the race with less time than car 2\n");
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return qtrue;
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}
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else {
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// Com_Printf("Car 2 finished the race with less time than car 1\n");
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return qfalse;
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}
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}
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else if (one->client->finishRaceTime){
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// Com_Printf("Car 1 finished the race, car 2 hasn't\n");
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return qtrue;
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}
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else if (two->client->finishRaceTime){
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// Com_Printf("Car 2 finished the race, car 1 hasn't\n");
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return qfalse;
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}
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else if (one->currentLap < two->currentLap){
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// Com_Printf("Car 1 is a lap behind car 2\n");
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return qfalse;
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}
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else if (one->currentLap == two->currentLap && one->number < two->number){
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// Com_Printf("Car 1 hat a target marker that is behind car 2's\n");
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return qfalse;
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}
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else if (one->currentLap == two->currentLap && one->number == two->number){
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dist1 = GetDistanceToMarker( one, one->number );
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dist2 = GetDistanceToMarker( two, two->number );
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if (dist1 > dist2){
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// Com_Printf("Car 1 is %f to marker %i and car 2 is %f\n", dist1, one->number, dist2);
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return qfalse;
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}
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}
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return qtrue;
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}
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/*
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================================================================================
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CalculatePlayerPositions
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Calculates the order of all racers
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================================================================================
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*/
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void CalculatePlayerPositions( void )
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{
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gentity_t *ent, *leader, *cur, *last;
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int position;
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qboolean positionChanged;
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// if (level.startRaceTime + FRAMETIME > level.time || level.startRaceTime == 0){
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// return;
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// }
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if (!isRallyRace()){
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return;
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}
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positionChanged = qfalse;
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leader = ent = last = NULL;
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while ( (ent = G_Find (ent, FOFS(classname), "player")) != NULL )
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{
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if ( ent->client->sess.sessionTeam == TEAM_SPECTATOR ) continue;
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// if ( isRaceObserver(ent->s.number) ) continue;
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ent->carBehind = NULL;
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if ( leader == NULL )
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{
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leader = ent;
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continue;
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}
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cur = leader;
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if ( IsCarAhead( ent, cur ) )
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{
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ent->carBehind = cur;
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leader = ent;
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continue;
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}
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while ( cur->carBehind != NULL )
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{
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if ( IsCarAhead( ent, cur->carBehind ) )
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{
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// ent->carBehind = cur->carBehind;
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// cur->carBehind = ent;
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last = cur;
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cur = cur->carBehind;
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break;
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}
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last = cur;
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cur = cur->carBehind;
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}
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if ( IsCarAhead( ent, cur ) )
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{
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// cur->carBehind = NULL;
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ent->carBehind = cur;
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if (last) {
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last->carBehind = ent;
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}
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}
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else {
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cur->carBehind = ent;
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ent->carBehind = NULL;
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}
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}
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if ( leader == NULL )
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return;
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cur = leader;
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position = 1;
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while( cur->carBehind != NULL )
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{
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if ( position != cur->client->ps.stats[STAT_POSITION] && cur->client ){
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cur->client->ps.stats[STAT_POSITION] = position;
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positionChanged = qtrue;
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}
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cur = cur->carBehind;
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position++;
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}
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if ( position != cur->client->ps.stats[STAT_POSITION] && cur->client ){
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cur->client->ps.stats[STAT_POSITION] = position;
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positionChanged = qtrue;
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}
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if ( positionChanged )
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{
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Cmd_RacePositions_f();
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CalculateRanks();
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}
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}
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void RallyRace_Think( gentity_t *ent ){
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ent->nextthink = level.time + 200;
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CalculatePlayerPositions();
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}
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void RaceCountdown( char *s, int secondsLeft ){
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trap_SendServerCommand( -1, va("rc \"%s\" %d", s, secondsLeft) );
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}
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void RallyStarter_Think( gentity_t *ent ){
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gentity_t *player, *t;
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int i, count;
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qboolean start;
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if (level.startRaceTime){
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return;
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}
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// if no checkpoints dont do start sequence
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if (isRallyRace()){
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t = NULL;
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t = G_Find (t, FOFS(classname), "rally_checkpoint");
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if (t == NULL){
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// start race right away
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level.startRaceTime = level.time;
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trap_SendServerCommand( -1, va("raceTime %i", level.startRaceTime) );
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CenterPrint_All("GO..");
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G_FreeEntity( ent );
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return;
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}
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}
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ent->nextthink = level.time + 1000;
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t = NULL;
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if ( ent->number == 0 ){
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if( level.time - level.startTime < 7500 )
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return;
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start = qtrue;
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for (i = 0, count = 0; i < MAX_CLIENTS; i++){
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player = &g_entities[i];
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if (!player->inuse) continue;
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if (!player->client) continue;
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if (player->client->sess.sessionTeam == TEAM_SPECTATOR) continue;
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// bots are always ready
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count++;
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if (player->r.svFlags & SVF_BOT) continue;
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if ( !player->ready ){
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start = qfalse;
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break;
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}
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}
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if ( !count ){
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return;
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}
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else if ( start && count ){
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ent->number = 3;
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}
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else if ( level.time >= level.startTime + (g_forceEngineStart.integer * 1000) ) {
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ent->number = 3; // force race start
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}
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else if (ent->number == 0 && level.time > level.startTime + (g_forceEngineStart.integer * 1000) - 10000){
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CenterPrint_All( va("Forced engine start in %i...", 10 - ((level.time - (level.startTime + (g_forceEngineStart.integer * 1000) - 10000)) / 1000)) );
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return;
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}
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else {
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return;
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}
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}
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if ( ent->pain_debounce_time == 0 )
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ent->pain_debounce_time = level.time;
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if ( level.time > ent->pain_debounce_time + 5000 ){
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level.startRaceTime = level.time;
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trap_SendServerCommand( -1, va("raceTime %i", level.startRaceTime) );
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RaceCountdown("GO!", 0);
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Rally_Sound( ent, EV_GLOBAL_SOUND, CHAN_ANNOUNCER, G_SoundIndex("sound/rally/race/go.wav") );
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if (g_gametype.integer != GT_DERBY)
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ent->think = RallyRace_Think;
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}
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else if ( level.time > ent->pain_debounce_time + 4000 ){
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RaceCountdown("1", 1);
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Rally_Sound( ent, EV_GLOBAL_SOUND, CHAN_ANNOUNCER, G_SoundIndex("sound/rally/race/one.wav") );
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ent->number = -1;
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}
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else if ( level.time > ent->pain_debounce_time + 3000 ){
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RaceCountdown("2", 2);
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Rally_Sound( ent, EV_GLOBAL_SOUND, CHAN_ANNOUNCER, G_SoundIndex("sound/rally/race/two.wav") );
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ent->number = 1;
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}
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else if ( level.time > ent->pain_debounce_time + 2000 ){
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RaceCountdown("3", 3);
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Rally_Sound( ent, EV_GLOBAL_SOUND, CHAN_ANNOUNCER, G_SoundIndex("sound/rally/race/three.wav") );
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ent->number = 2;
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}
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else {
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CenterPrint_All("Starting Race...");
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}
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}
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void CreateRallyStarter( void ) {
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gentity_t *ent;
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ent = G_Spawn();
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ent->think = RallyStarter_Think;
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ent->nextthink = level.time + 2000;
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ent->number = 0;
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ent->classname = "rally_starter";
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}
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/*
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===========
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SelectLastMarkerForSpawn
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Places cars at the last marker they visited during a race
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============
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*/
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gentity_t *SelectLastMarkerForSpawn( gentity_t *ent, vec3_t origin, vec3_t angles, qboolean isbot ) {
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gentity_t *spot;
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int lastMarker;
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spot = NULL;
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lastMarker = ent->number - 1;
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if (lastMarker <= 0){
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lastMarker = level.numCheckpoints;
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}
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while ((spot = G_Find (spot, FOFS(classname), "rally_checkpoint")) != NULL) {
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if ( spot->number == lastMarker) {
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break;
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}
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}
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if ( !spot ) {
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return SelectSpawnPoint( vec3_origin, origin, angles, isbot );
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}
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// spawn at last checkpoint
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VectorCopy (spot->s.origin, origin);
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VectorCopy (spot->s.angles, angles);
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return spot;
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}
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/*
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===========
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SelectGridPositionSpawn
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Places cars at the start line in order, so that no one is telefragged
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============
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*/
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gentity_t *SelectGridPositionSpawn( gentity_t *ent, vec3_t origin, vec3_t angles, qboolean isbot ) {
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gentity_t *spot;
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int gridPosition;
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spot = NULL;
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gridPosition = 1;
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while ((spot = G_Find (spot, FOFS(classname), "info_player_start")) != NULL) {
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if ( (spot->number == gridPosition || !spot->number) && !SpotWouldTelefrag( spot )) {
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break;
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}
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else if (spot->number == gridPosition){
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spot = NULL; // found spawn but someone is already there so restart search
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gridPosition++;
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}
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}
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if ( !spot || SpotWouldTelefrag( spot ) ) {
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// FIXME: put into spectator mode instead?
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G_Printf("Warning: No info_player_start found for race spawn, trying info_player_deathmatch\n");
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return SelectSpawnPoint( vec3_origin, origin, angles, isbot );
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}
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VectorCopy (spot->s.origin, origin);
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origin[2] += 9;
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VectorCopy (spot->s.angles, angles);
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return spot;
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}
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