621 lines
18 KiB
C++
621 lines
18 KiB
C++
/*---------------------------------------------
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Card Instance
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Instance of a given MTGCard in the game
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Although there is only one MTGCard of each type, there can be as much Instances of it as needed in the game
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--------------------------------------------
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*/
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#include "../include/config.h"
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#include "../include/MTGCardInstance.h"
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#include "../include/CardDescriptor.h"
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#include "../include/Counters.h"
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#include "../include/Subtypes.h"
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#include <algorithm>
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using namespace std;
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MTGCardInstance::MTGCardInstance(): MTGCard(), Damageable(0), view(NULL){
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LOG("==Creating MTGCardInstance==");
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initMTGCI();
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LOG("==Creating MTGCardInstance Successful==");
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}
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MTGCardInstance::MTGCardInstance(MTGCard * card, MTGPlayerCards * arg_belongs_to): MTGCard(card), Damageable(card->getToughness()), view(NULL){
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LOG("==Creating MTGCardInstance==");
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initMTGCI();
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model = card;
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attacker = 0;
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lifeOrig = life;
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belongs_to = arg_belongs_to;
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owner = NULL;
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if (arg_belongs_to) owner = arg_belongs_to->library->owner;
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lastController = owner;
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defenser = NULL;
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banding = NULL;
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life = toughness;
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LOG("==Creating MTGCardInstance Successful==");
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}
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void MTGCardInstance::copy(MTGCardInstance * card){
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MTGCard * source = card->model;
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for(map<int,int>::const_iterator it = source->basicAbilities.begin(); it != source->basicAbilities.end(); ++it){
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int i = it->first;
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basicAbilities[i] = source->basicAbilities[i];
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}
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for (int i = 0; i< MAX_TYPES_PER_CARD; i++){
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types[i] = source->types[i];
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}
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nb_types = source->nb_types;
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for (int i = 0; i< Constants::MTG_NB_COLORS; i++){
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colors[i] = source->colors[i];
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}
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manaCost.copy(source->getManaCost());
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text = source->text;
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name = source->name;
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//strcpy(image_name, source->image_name);
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//rarity = source->rarity;
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power = source->power;
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toughness = source->toughness;
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life = toughness;
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lifeOrig = life;
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//mtgid = source->mtgid;
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//setId = source->setId;
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magicText = source->magicText;
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spellTargetType = source->spellTargetType;
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alias = source->alias;
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//Now this is dirty...
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int backupid = mtgid;
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mtgid = source->getId();
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Spell * spell = NEW Spell(this);
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AbilityFactory af;
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GameObserver * g = GameObserver::GetInstance();
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af.addAbilities(g->mLayers->actionLayer()->getMaxId(), spell);
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delete spell;
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mtgid = backupid;
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}
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MTGCardInstance::~MTGCardInstance(){
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LOG("==Deleting MTGCardInstance==");
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SAFE_DELETE(untapBlockers);
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SAFE_DELETE(counters);
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SAFE_DELETE(previous);
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LOG("==Deleting MTGCardInstance Succesfull==");
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}
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void MTGCardInstance::initMTGCI(){
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sample = "";
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model=NULL;
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isToken = false;
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lifeOrig = 0;
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doDamageTest = 1;
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belongs_to=NULL;
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tapped = 0;
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untapBlockers = NULL;
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untapping = 0;
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summoningSickness = 0;
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target = NULL;
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nbprotections = 0;
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type_as_damageable = DAMAGEABLE_MTGCARDINSTANCE;
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banding = NULL;
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owner = NULL;
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changedZoneRecently = 0;
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counters = NEW Counters(this);
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previousZone = NULL;
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previous = NULL;
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next = NULL;
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lastController = NULL;
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regenerateTokens = 0;
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}
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const string MTGCardInstance::getDisplayName(){
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return getName();
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}
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void MTGCardInstance::addType(int type){
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types[nb_types] = type;
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nb_types++;
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}
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UntapBlockers * MTGCardInstance::getUntapBlockers(){
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if (!untapBlockers) untapBlockers = NEW UntapBlockers();
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return untapBlockers;
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}
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int MTGCardInstance::isInPlay(){
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GameObserver * game = GameObserver::GetInstance();
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for (int i = 0 ; i < 2 ; i++){
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MTGGameZone * zone = game->players[i]->game->inPlay;
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if (zone->hasCard(this)) return 1;
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}
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return 0;
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}
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int MTGCardInstance::afterDamage(){
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if (!doDamageTest) return 0;
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doDamageTest = 0;
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if (!isCreature()) return 0;
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if (life <=0 && isInPlay()){
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return destroy();
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}
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return 0;
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}
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int MTGCardInstance::bury(){
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Player * p = controller();
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if (!basicAbilities[Constants::INDESTRUCTIBLE]){
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p->game->putInZone(this,p->game->inPlay,owner->game->graveyard);
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return 1;
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}
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return 0;
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}
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int MTGCardInstance::destroy(){
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if (!triggerRegenerate()) return bury();
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return 0;
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}
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MTGGameZone * MTGCardInstance::getCurrentZone(){
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GameObserver * game = GameObserver::GetInstance();
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for (int i = 0; i < 2; i++){
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MTGPlayerCards * g = game->players[i]->game;
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MTGGameZone * zones[] = {g->inPlay,g->graveyard,g->hand, g->library};
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for (int k = 0; k < 4; k++){
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MTGGameZone * zone = zones[k];
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if (zone->hasCard(this)) return zone;
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}
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}
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return NULL;
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}
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int MTGCardInstance::has(int basicAbility){
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return basicAbilities[basicAbility];
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}
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//Taps the card
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void MTGCardInstance::tap(){
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if (tapped) return;
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tapped = 1;
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WEvent * e = NEW WEventCardTap(this, 0, 1);
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GameObserver * game = GameObserver::GetInstance();
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game->receiveEvent(e);
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//delete e;
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}
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void MTGCardInstance::untap(){
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if (!tapped) return;
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tapped = 0;
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WEvent * e = NEW WEventCardTap(this, 1, 0);
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GameObserver * game = GameObserver::GetInstance();
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game->receiveEvent(e);
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//delete e;
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}
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void MTGCardInstance::setUntapping(){
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untapping = 1;
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}
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int MTGCardInstance::isUntapping(){
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return untapping;
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}
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//Tries to Untap the card
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void MTGCardInstance::attemptUntap(){
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if (untapping){
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untap();
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untapping = 0;
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}
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}
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//Tells if the card is tapped or not
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int MTGCardInstance::isTapped(){
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return tapped;
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}
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void MTGCardInstance::resetAllDamage(){
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//for (int i=0;i<nb_damages;i++){
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// delete damages[i];
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//}
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nb_damages = 0;
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}
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int MTGCardInstance::regenerate(){
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return ++regenerateTokens;
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}
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int MTGCardInstance::triggerRegenerate(){
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if (! regenerateTokens) return 0;
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regenerateTokens--;
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tap();
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life = toughness;
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initAttackersDefensers();
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return 1;
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}
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int MTGCardInstance::initAttackersDefensers(){
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setAttacker(0);
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setDefenser(NULL);
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banding = NULL;
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blockers.clear();
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return 1;
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}
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//Function to call to remove all damages, etc to a card (generally at the end of the turn)
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int MTGCardInstance::cleanup(){
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initAttackersDefensers();
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life=toughness;
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GameObserver * game = GameObserver::GetInstance();
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if (!game || game->currentPlayer == controller()) summoningSickness = 0;
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if (previous && !previous->stillInUse()){
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SAFE_DELETE(previous);
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}
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regenerateTokens = 0;
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return 1;
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}
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int MTGCardInstance::stillInUse(){
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GameObserver * game = GameObserver::GetInstance();
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if (game->mLayers->actionLayer()->stillInUse(this)) return 1;
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if (!previous) return 0;
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return previous->stillInUse();
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}
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/* Summoning Sickness
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* 212.3f A creature's activated ability with the tap symbol or the untap symbol in its activation cost
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* can't be played unless the creature has been under its controller's control since the start of his or
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* her most recent turn. A creature can't attack unless it has been under its controller's control
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* since the start of his or her most recent turn. This rule is informally called the "summoning
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* sickness" rule. Ignore this rule for creatures with haste (see rule 502.5).
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*/
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int MTGCardInstance::hasSummoningSickness(){
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if (!summoningSickness) return 0;
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if (basicAbilities[Constants::HASTE]) return 0;
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if (!isCreature()) return 0;
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return 1;
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}
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MTGCardInstance * MTGCardInstance::changeController(Player * newController){
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Player * originalOwner = controller();
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if (originalOwner == newController) return 0;
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MTGCardInstance * copy = originalOwner->game->putInZone(this, originalOwner->game->inPlay, newController->game->inPlay);
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return copy;
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}
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//Reset the card parameters
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int MTGCardInstance::reset(){
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cleanup();
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untap();
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SAFE_DELETE(counters);
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counters = NEW Counters(this);
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return 1;
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}
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Player * MTGCardInstance::controller(){
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GameObserver * game = GameObserver::GetInstance();
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if (!game) return NULL;
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for (int i = 0; i < 2; ++i){
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if (game->players[i]->game->inPlay->hasCard(this)) return game->players[i];
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if (game->players[i]->game->stack->hasCard(this)) return game->players[i];
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if (game->players[i]->game->graveyard->hasCard(this)) return game->players[i];
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if (game->players[i]->game->hand->hasCard(this)) return game->players[i];
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if (game->players[i]->game->library->hasCard(this)) return game->players[i];
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}
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return lastController;
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}
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int MTGCardInstance::canAttack(){
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if (tapped) return 0;
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if (hasSummoningSickness()) return 0;
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if (basicAbilities[Constants::DEFENSER] || basicAbilities[Constants::CANTATTACK]) return 0;
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if (!isCreature()) return 0;
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if (!isInPlay()) return 0;
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return 1;
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}
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int MTGCardInstance::addToToughness(int value){
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toughness+=value;
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life+=value;
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doDamageTest = 1;
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return 1;
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}
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int MTGCardInstance::setToughness(int value){
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toughness=value;
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life=value;
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doDamageTest = 1;
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return 1;
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}
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int MTGCardInstance::canBlock(){
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if (tapped) return 0;
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if (basicAbilities[Constants::CANTBLOCK]) return 0;
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if (!isCreature()) return 0;
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if (!isInPlay()) return 0;
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return 1;
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}
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int MTGCardInstance::canBlock(MTGCardInstance * opponent){
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if (!canBlock()) return 0;
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if (!opponent) return 1;
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if (!opponent->isAttacker()) return 0;
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// Comprehensive rule 502.7f : If a creature with protection attacks, it can't be blocked by creatures that have the stated quality.
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if (opponent->protectedAgainst(this)) return 0;
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if (opponent->basicAbilities[Constants::UNBLOCKABLE]) return 0;
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if (opponent->basicAbilities[Constants::FEAR] && !(hasColor(Constants::MTG_COLOR_ARTIFACT) || hasColor(Constants::MTG_COLOR_BLACK))) return 0;
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if (opponent->basicAbilities[Constants::FLYING] && !( basicAbilities[Constants::FLYING] || basicAbilities[Constants::REACH])) return 0;
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//Can block only creatures with flying if has cloud
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if (basicAbilities[Constants::CLOUD] && !( opponent->basicAbilities[Constants::FLYING])) return 0;
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// If opponent has shadow and a creature does not have either shadow or reachshadow it cannot be blocked
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if (opponent->basicAbilities[Constants::SHADOW] && !( basicAbilities[Constants::SHADOW] || basicAbilities[Constants::REACHSHADOW])) return 0;
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// If opponent does not have shadow and a creature has shadow it cannot be blocked
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if (!opponent->basicAbilities[Constants::SHADOW] && basicAbilities[Constants::SHADOW]) return 0;
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if (opponent->basicAbilities[Constants::SWAMPWALK] && controller()->game->inPlay->hasType("swamp")) return 0;
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if (opponent->basicAbilities[Constants::FORESTWALK] && controller()->game->inPlay->hasType("forest")) return 0;
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if (opponent->basicAbilities[Constants::ISLANDWALK] && controller()->game->inPlay->hasType("island")) return 0;
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if (opponent->basicAbilities[Constants::MOUNTAINWALK] && controller()->game->inPlay->hasType("mountain")) return 0;
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if (opponent->basicAbilities[Constants::PLAINSWALK] && controller()->game->inPlay->hasType("plains")) return 0;
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return 1;
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}
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MTGCardInstance * MTGCardInstance::getNextPartner(){
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MTGInPlay * inplay = controller()->game->inPlay;
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MTGCardInstance * bandingPartner = inplay->getNextAttacker(banding);
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while (bandingPartner){
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if (basicAbilities[Constants::BANDING] || bandingPartner->basicAbilities[Constants::BANDING]) return bandingPartner;
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bandingPartner = inplay->getNextAttacker(bandingPartner);
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}
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return NULL;
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}
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void MTGCardInstance::unband(){
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if (!banding) return;
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MTGCardInstance * _banding = banding;
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banding = NULL;
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MTGCardInstance * newbanding = NULL;
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MTGInPlay * inplay = controller()->game->inPlay;
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int nbpartners = inplay->nbPartners(this);
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MTGCardInstance * card = inplay->getNextAttacker(NULL);
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while(card){
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if (card != this){
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if (card->banding == _banding){
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if (nbpartners == 1){
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card->banding = NULL;
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return;
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}else{
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if (!newbanding) newbanding = card;
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card->banding = newbanding;
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}
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}
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}
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card = inplay->getNextAttacker(card);
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}
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return ;
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}
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int MTGCardInstance::setAttacker(int value){
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Targetable * previousTarget = NULL;
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Targetable * target = NULL;
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Player * p = controller()->opponent();
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if (value) target = p;
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if (attacker) previousTarget = p;
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attacker = value;
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WEvent * e = NEW WEventCreatureAttacker(this,previousTarget, target);
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GameObserver::GetInstance()->receiveEvent(e);
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//delete e;
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return 1;
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}
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int MTGCardInstance::toggleAttacker(){
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if (!attacker){
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if (!basicAbilities[Constants::VIGILANCE]) tap();
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setAttacker(1);
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return 1;
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}else{
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//Banding needs to be debugged...
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/*MTGCardInstance * bandingPartner = getNextPartner();
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if (bandingPartner){
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if (banding) unband();
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if (!bandingPartner->banding) bandingPartner->banding = bandingPartner;
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banding = bandingPartner->banding;
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return 1;
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}else{*/
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untap();
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setAttacker(0);
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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 MTGCardInstance::isAttacker(){
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return attacker;
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}
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MTGCardInstance * MTGCardInstance::isDefenser(){
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return defenser;
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}
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int MTGCardInstance::nbOpponents(){
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int result= 0;
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MTGCardInstance* opponent = getNextOpponent();
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while (opponent){
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result++;
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opponent = getNextOpponent(opponent);
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}
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return result;
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}
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MTGCardInstance * MTGCardInstance::getNextDefenser(MTGCardInstance * previous){
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int found_previous = 0;
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if (!previous) found_previous = 1;
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list<MTGCardInstance *>::iterator it;
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for (it= blockers.begin(); it != blockers.end(); ++it){
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MTGCardInstance * c = *it;
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if (found_previous && c->isInPlay()) return c;
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if (c == previous) found_previous = 1;
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}
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return NULL;
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}
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int MTGCardInstance::moveBlockerInRow(MTGCardInstance * blocker){
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list<MTGCardInstance *>::iterator it1 = find(blockers.begin(), blockers.end(), blocker);
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list<MTGCardInstance *>::iterator it2 = it1;
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if (it2 == blockers.end()) it2 = blockers.begin(); else ++it2;
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if (it2 == blockers.end()) it2 = blockers.begin();
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std::iter_swap(it1,it2);
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WEvent* e = NEW WEventCreatureBlockerRank(blocker,*it2,this);
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GameObserver::GetInstance()->receiveEvent(e);
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//delete(e);
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return 1;
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}
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//Returns opponents to this card for this turn. This * should * take into account banding
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MTGCardInstance * MTGCardInstance::getNextOpponent(MTGCardInstance * previous){
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GameObserver * game = GameObserver::GetInstance();
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int foundprevious = 0;
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if (!previous) foundprevious = 1;
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if (attacker && game->currentPlayer->game->inPlay->hasCard(this)){
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MTGInPlay * inPlay = game->opponent()->game->inPlay;
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for (int i = 0; i < inPlay->nb_cards; i ++){
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MTGCardInstance * current = inPlay->cards[i];
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if (current == previous){
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foundprevious = 1;
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}else if (foundprevious){
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MTGCardInstance * defensersOpponent = current->isDefenser();
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if (defensersOpponent && (defensersOpponent == this || (banding && defensersOpponent->banding == banding))){
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return current;
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}
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}
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}
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}else if (defenser && game->opponent()->game->inPlay->hasCard(this)){
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MTGInPlay * inPlay = game->currentPlayer->game->inPlay;
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for (int i = 0; i < inPlay->nb_cards; i ++){
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MTGCardInstance * current = inPlay->cards[i];
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if (current == previous){
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foundprevious = 1;
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}else if (foundprevious){
|
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if (defenser == current || (current->banding && defenser->banding == current->banding)){
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|
return current;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
return NULL;
|
|
}
|
|
|
|
int MTGCardInstance::setDefenser(MTGCardInstance * opponent){
|
|
GameObserver * g = GameObserver::GetInstance();
|
|
if (defenser) {
|
|
if (g->players[0]->game->battlefield->hasCard(defenser) ||
|
|
g->players[1]->game->battlefield->hasCard(defenser) ) {
|
|
defenser->blockers.remove(this);
|
|
}
|
|
}
|
|
WEvent * e = NULL;
|
|
if (defenser != opponent){
|
|
e = NEW WEventCreatureBlocker(this, defenser, opponent);
|
|
|
|
}
|
|
defenser = opponent;
|
|
if (defenser){
|
|
defenser->blockers.push_back(this);
|
|
}
|
|
g->blockersSorted = false;
|
|
if (e) g->receiveEvent(e);
|
|
//delete e;
|
|
return 1;
|
|
}
|
|
|
|
int MTGCardInstance::toggleDefenser(MTGCardInstance * opponent){
|
|
if (canBlock()){
|
|
if (canBlock(opponent)){
|
|
setDefenser(opponent);
|
|
return 1;
|
|
}
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
|
|
int MTGCardInstance::addProtection(CardDescriptor * cd){
|
|
protections[nbprotections] = cd;
|
|
nbprotections++;
|
|
return nbprotections;
|
|
}
|
|
|
|
int MTGCardInstance::removeProtection(CardDescriptor * cd, int erase){
|
|
for (int i = 0; i < nbprotections ; i++){
|
|
if (protections[i] == cd){
|
|
if (erase) delete (protections[i]);
|
|
protections[i] = protections[nbprotections -1];
|
|
protections[nbprotections -1] = NULL;
|
|
nbprotections--;
|
|
return 1;
|
|
}
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
int MTGCardInstance::protectedAgainst(MTGCardInstance * card){
|
|
//Basic protections
|
|
for (int i=Constants::PROTECTIONGREEN; i <= Constants::PROTECTIONWHITE; i++){
|
|
if (basicAbilities[i] && card->hasColor( i - Constants::PROTECTIONGREEN + Constants::MTG_COLOR_GREEN )) return 1;
|
|
}
|
|
|
|
//General protections
|
|
for (int i = 0; i < nbprotections ; i++){
|
|
if (protections[i]->match(card)) return 1;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
/* Choose a sound sample to associate to that card */
|
|
JSample * MTGCardInstance::getSample(){
|
|
if (!sample.size()){
|
|
for (int i = nb_types-1; i>0; i--){
|
|
string type = Subtypes::subtypesList->find(types[i]);
|
|
type = "sound/sfx/" + type + ".wav";
|
|
#ifdef WIN32
|
|
OutputDebugString(type.c_str());
|
|
#endif
|
|
if (fileExists(type.c_str())){
|
|
sample = string(type);
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
if (!sample.size()){
|
|
for(map<int,int>::const_iterator it = basicAbilities.begin(); it != basicAbilities.end(); ++it){
|
|
int i = it->first;
|
|
if (!basicAbilities[i]) continue;
|
|
string type = Constants::MTGBasicAbilities[i];
|
|
type = "sound/sfx/" + type + ".wav";
|
|
if (fileExists(type.c_str())){
|
|
sample = type;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
if (!sample.size()){
|
|
string type = Subtypes::subtypesList->find(types[0]);
|
|
type = "sound/sfx/" + type + ".wav";
|
|
if (fileExists(type.c_str())){
|
|
sample = type;
|
|
}
|
|
}
|
|
|
|
if (sample.size()) return SampleCache::GetInstance()->getSample(sample);
|
|
|
|
return NULL;
|
|
}
|