AI: reworked blockers selections:

* fixed game freezes for no-possible block configurations like Menace (#13290);
* fixed computer cheating to ignore block requirements like Menace (now AI will choose all required blockers instead 1);
* improved computer logic for blockers selection (try to sacrifice a creature instead game loose, simple use cases only);
* added freeze protection for bad or unsupported attacker-block configuration;
* refactor: deleted outdated AI code;
This commit is contained in:
Oleg Agafonov 2025-02-04 01:14:49 +04:00
parent a99871988d
commit 92b7ed8efc
12 changed files with 495 additions and 202 deletions

View file

@ -155,7 +155,7 @@ public class ComputerPlayer6 extends ComputerPlayer {
+ (p.isTapped() ? ",tapped" : "") + (p.isTapped() ? ",tapped" : "")
+ (p.isAttacking() ? ",attacking" : "") + (p.isAttacking() ? ",attacking" : "")
+ (p.getBlocking() > 0 ? ",blocking" : "") + (p.getBlocking() > 0 ? ",blocking" : "")
+ ":" + GameStateEvaluator2.evaluatePermanent(p, game)) + ":" + GameStateEvaluator2.evaluatePermanent(p, game, true))
.collect(Collectors.joining("; ")); .collect(Collectors.joining("; "));
sb.append("-> Permanents: [").append(ownPermanentsInfo).append("]"); sb.append("-> Permanents: [").append(ownPermanentsInfo).append("]");
logger.info(sb.toString()); logger.info(sb.toString());

View file

@ -26,6 +26,10 @@ public final class GameStateEvaluator2 {
public static final int HAND_CARD_SCORE = 5; public static final int HAND_CARD_SCORE = 5;
public static PlayerEvaluateScore evaluate(UUID playerId, Game game) { public static PlayerEvaluateScore evaluate(UUID playerId, Game game) {
return evaluate(playerId, game, true);
}
public static PlayerEvaluateScore evaluate(UUID playerId, Game game, boolean useCombatPermanentScore) {
// TODO: add multi opponents support, so AI can take better actions // TODO: add multi opponents support, so AI can take better actions
Player player = game.getPlayer(playerId); Player player = game.getPlayer(playerId);
Player opponent = game.getPlayer(game.getOpponents(playerId).stream().findFirst().orElse(null)); Player opponent = game.getPlayer(game.getOpponents(playerId).stream().findFirst().orElse(null));
@ -63,7 +67,7 @@ public final class GameStateEvaluator2 {
// add values of player // add values of player
for (Permanent permanent : game.getBattlefield().getAllActivePermanents(playerId)) { for (Permanent permanent : game.getBattlefield().getAllActivePermanents(playerId)) {
int onePermScore = evaluatePermanent(permanent, game); int onePermScore = evaluatePermanent(permanent, game, useCombatPermanentScore);
playerPermanentsScore += onePermScore; playerPermanentsScore += onePermScore;
if (logger.isDebugEnabled()) { if (logger.isDebugEnabled()) {
sbPlayer.append(permanent.getName()).append('[').append(onePermScore).append("] "); sbPlayer.append(permanent.getName()).append('[').append(onePermScore).append("] ");
@ -77,7 +81,7 @@ public final class GameStateEvaluator2 {
// add values of opponent // add values of opponent
for (Permanent permanent : game.getBattlefield().getAllActivePermanents(opponent.getId())) { for (Permanent permanent : game.getBattlefield().getAllActivePermanents(opponent.getId())) {
int onePermScore = evaluatePermanent(permanent, game); int onePermScore = evaluatePermanent(permanent, game, useCombatPermanentScore);
opponentPermanentsScore += onePermScore; opponentPermanentsScore += onePermScore;
if (logger.isDebugEnabled()) { if (logger.isDebugEnabled()) {
sbOpponent.append(permanent.getName()).append('[').append(onePermScore).append("] "); sbOpponent.append(permanent.getName()).append('[').append(onePermScore).append("] ");
@ -121,7 +125,7 @@ public final class GameStateEvaluator2 {
opponentLifeScore, opponentHandScore, opponentPermanentsScore); opponentLifeScore, opponentHandScore, opponentPermanentsScore);
} }
public static int evaluatePermanent(Permanent permanent, Game game) { public static int evaluatePermanent(Permanent permanent, Game game, boolean useCombatPermanentScore) {
// prevent AI from attaching bad auras to its own permanents ex: Brainwash and Demonic Torment (no immediate penalty on the battlefield) // prevent AI from attaching bad auras to its own permanents ex: Brainwash and Demonic Torment (no immediate penalty on the battlefield)
int value = 0; int value = 0;
if (!permanent.getAttachments().isEmpty()) { if (!permanent.getAttachments().isEmpty()) {
@ -137,14 +141,11 @@ public final class GameStateEvaluator2 {
} }
} }
} }
value += ArtificialScoringSystem.getFixedPermanentScore(game, permanent) value += ArtificialScoringSystem.getFixedPermanentScore(game, permanent);
+ ArtificialScoringSystem.getVariablePermanentScore(game, permanent); value += ArtificialScoringSystem.getDynamicPermanentScore(game, permanent);
return value; if (useCombatPermanentScore) {
value += ArtificialScoringSystem.getCombatPermanentScore(game, permanent);
} }
public static int evaluateCreature(Permanent creature, Game game) {
int value = ArtificialScoringSystem.getFixedPermanentScore(game, creature)
+ ArtificialScoringSystem.getVariablePermanentScore(game, creature);
return value; return value;
} }

View file

@ -63,14 +63,11 @@ public final class ArtificialScoringSystem {
return score; return score;
} }
public static int getVariablePermanentScore(final Game game, final Permanent permanent) { public static int getDynamicPermanentScore(final Game game, final Permanent permanent) {
int score = permanent.getCounters(game).getCount(CounterType.CHARGE) * 30; int score = permanent.getCounters(game).getCount(CounterType.CHARGE) * 30;
score += permanent.getCounters(game).getCount(CounterType.LEVEL) * 30; score += permanent.getCounters(game).getCount(CounterType.LEVEL) * 30;
score -= permanent.getDamage() * 2; score -= permanent.getDamage() * 2;
if (!canTap(game, permanent)) {
score += getTappedScore(game, permanent);
}
if (permanent.getCardType(game).contains(CardType.CREATURE)) { if (permanent.getCardType(game).contains(CardType.CREATURE)) {
final int power = permanent.getPower().getValue(); final int power = permanent.getPower().getValue();
final int toughness = permanent.getToughness().getValue(); final int toughness = permanent.getToughness().getValue();
@ -95,11 +92,19 @@ public final class ArtificialScoringSystem {
} }
} }
score += equipments + enchantments; score += equipments + enchantments;
}
return score;
}
public static int getCombatPermanentScore(final Game game, final Permanent permanent) {
int score = 0;
if (!canTap(game, permanent)) {
score += getTappedScore(game, permanent);
}
if (permanent.getCardType(game).contains(CardType.CREATURE)) {
if (!permanent.canAttack(null, game)) { if (!permanent.canAttack(null, game)) {
score -= 100; score -= 100;
} }
if (!permanent.canBlockAny(game)) { if (!permanent.canBlockAny(game)) {
score -= 30; score -= 30;
} }

View file

@ -10,6 +10,7 @@ import mage.game.permanent.Permanent;
import mage.game.turn.CombatDamageStep; import mage.game.turn.CombatDamageStep;
import mage.game.turn.EndOfCombatStep; import mage.game.turn.EndOfCombatStep;
import mage.game.turn.Step; import mage.game.turn.Step;
import mage.player.ai.GameStateEvaluator2;
import mage.players.Player; import mage.players.Player;
import org.apache.log4j.Logger; import org.apache.log4j.Logger;
@ -89,12 +90,22 @@ public final class CombatUtil {
} }
} }
public static Permanent getWorstCreature(List<Permanent> creatures) { public static Permanent getWorstCreature(List<Permanent>... lists) {
if (creatures.isEmpty()) { for (List<Permanent> list : lists) {
if (!list.isEmpty()) {
list.sort(Comparator.comparingInt(p -> p.getPower().getValue()));
return list.get(0);
}
}
return null; return null;
} }
creatures.sort(Comparator.comparingInt(p -> p.getPower().getValue()));
return creatures.get(0); public static void removeWorstCreature(Permanent permanent, List<Permanent>... lists) {
for (List<Permanent> list : lists) {
if (!list.isEmpty()) {
list.remove(permanent);
}
}
} }
private static int sumDamage(List<Permanent> attackersThatWontBeBlocked, Player defender) { private static int sumDamage(List<Permanent> attackersThatWontBeBlocked, Player defender) {
@ -144,25 +155,98 @@ public final class CombatUtil {
return canBlock; return canBlock;
} }
public static CombatInfo blockWithGoodTrade(Game game, List<Permanent> attackers, List<Permanent> blockers) { /**
* AI related code, find better block combination for attackers
*/
public static CombatInfo blockWithGoodTrade2(Game game, List<Permanent> attackers, List<Permanent> blockers) {
UUID attackerId = game.getCombat().getAttackingPlayerId(); UUID attackerId = game.getCombat().getAttackingPlayerId();
UUID defenderId = game.getCombat().getDefenders().iterator().next(); UUID defenderId = game.getCombat().getDefenders().iterator().next();
if (attackerId == null || defenderId == null) { if (attackerId == null || defenderId == null) {
log.warn("Couldn't find attacker or defender: " + attackerId + ' ' + defenderId);
return new CombatInfo(); return new CombatInfo();
} }
// TODO: implement full game simulations of all possible combinations (e.g. multiblockers support)
CombatInfo combatInfo = new CombatInfo(); CombatInfo combatInfo = new CombatInfo();
for (Permanent attacker : attackers) { for (Permanent attacker : attackers) {
//TODO: handle attackers with "can't be blocked except" // simple combat simulation (1 vs 1)
List<Permanent> possibleBlockers = getPossibleBlockers(game, attacker, blockers); List<Permanent> allBlockers = getPossibleBlockers(game, attacker, blockers);
List<Permanent> survivedBlockers = getBlockersThatWillSurvive(game, attackerId, defenderId, attacker, possibleBlockers); List<SurviveInfo> blockerStats = getBlockersThatWillSurvive2(game, attackerId, defenderId, attacker, allBlockers);
if (!survivedBlockers.isEmpty()) { Map<Permanent, Integer> blockingDiffScore = new HashMap<>();
Permanent blocker = getWorstCreature(survivedBlockers); Map<Permanent, Integer> nonBlockingDiffScore = new HashMap<>();
combatInfo.addPair(attacker, blocker); blockerStats.forEach(s -> {
blockers.remove(blocker); blockingDiffScore.put(s.getBlocker(), s.getDiffBlockingScore());
nonBlockingDiffScore.put(s.getBlocker(), s.getDiffNonblockingScore());
});
// split blockers usage priority
List<Permanent> survivedAndKillBlocker = new ArrayList<>();
List<Permanent> survivedBlockers2 = new ArrayList<>();
List<Permanent> diedBlockers = new ArrayList<>();
blockerStats.forEach(stats -> {
if (stats.isAttackerDied() && !stats.isBlockerDied()) {
survivedAndKillBlocker.add(stats.getBlocker());
} else if (!stats.isBlockerDied()) {
survivedBlockers2.add(stats.getBlocker());
} else {
diedBlockers.add(stats.getBlocker());
} }
});
int blockedCount = 0;
// find good blocker
Permanent blocker = getWorstCreature(survivedAndKillBlocker, survivedBlockers2);
if (blocker != null) {
combatInfo.addPair(attacker, blocker);
removeWorstCreature(blocker, blockers, survivedAndKillBlocker, survivedBlockers2);
blockedCount++;
}
// find good sacrifices
// TODO: add chump blocking support here?
// TODO: there are many triggers on damage, attack, etc - it can't be processed without real game simulations
if (blocker == null) {
blocker = getWorstCreature(diedBlockers);
int diffBlockingScore = blockingDiffScore.getOrDefault(blocker, 0);
int diffNonBlockingScore = nonBlockingDiffScore.getOrDefault(blocker, 0);
if (diffBlockingScore >= 0 || diffBlockingScore > diffNonBlockingScore) {
// it's good use case - can block and kill
combatInfo.addPair(attacker, blocker);
removeWorstCreature(blocker, blockers, diedBlockers);
blockedCount++;
}
}
// find blockers for restrictions
while (true) {
if (blockers.isEmpty()) {
break;
}
// TODO: add multiple use case support with min/max blockedBy conditional and other
// see all possible use cases in checkBlockRestrictions, checkBlockRequirementsAfter and checkBlockRestrictionsAfter
// effects support: can't be blocked except by xxx or more creatures
if (blockedCount > 0 && attacker.getMinBlockedBy() > blockedCount) {
// it already has 1 blocker (killer in best use case), so no needs in second killer
blocker = getWorstCreature(survivedBlockers2, survivedAndKillBlocker, diedBlockers);
if (blocker != null) {
combatInfo.addPair(attacker, blocker);
removeWorstCreature(blocker, blockers, survivedBlockers2, survivedAndKillBlocker, diedBlockers);
blockedCount++;
continue; // try to find next required blocker
} else {
// invalid configuration, must stop
break;
}
}
// no more active restrictions
break;
}
// no more blockers to use
if (blockers.isEmpty()) { if (blockers.isEmpty()) {
break; break;
} }
@ -171,40 +255,43 @@ public final class CombatUtil {
return combatInfo; return combatInfo;
} }
private static List<Permanent> getBlockersThatWillSurvive(Game game, UUID attackerId, UUID defenderId, Permanent attacker, List<Permanent> possibleBlockers) {
List<Permanent> blockers = new ArrayList<>();
for (Permanent blocker : possibleBlockers) {
SurviveInfo info = willItSurvive(game, attackerId, defenderId, attacker, blocker);
//if (info.isAttackerDied() && !info.isBlockerDied()) {
if (info != null) {
if (info.isAttackerDied()) {
blockers.add(blocker);
} else if (!info.isBlockerDied()) {
blockers.add(blocker);
}
}
}
return blockers;
}
/** /**
* @deprecated TODO: unused, can be deleted? * Game simulations to find all survived/killer blocker
*/ */
public static SurviveInfo willItSurvive(Game game, UUID attackingPlayerId, UUID defendingPlayerId, Permanent attacker, Permanent blocker) { private static List<SurviveInfo> getBlockersThatWillSurvive2(Game game, UUID attackerId, UUID defenderId, Permanent attacker, List<Permanent> possibleBlockers) {
Game sim = game.createSimulationForAI(); List<SurviveInfo> res = new ArrayList<>();
for (Permanent blocker : possibleBlockers) {
// TODO: bugged, miss combat.clear code (possible bugs - wrong blocker declare by AI on multiple options?) // TODO: enable willItSurviveSimulation and check stability
Combat combat = sim.getCombat(); SurviveInfo info = willItSurviveSimple(game, attackerId, defenderId, attacker, blocker);
combat.setAttacker(attackingPlayerId); if (info == null) {
combat.setDefenders(sim); continue;
}
info.setBlocker(blocker);
res.add(info);
}
return res;
}
public static SurviveInfo willItSurviveSimulation(Game originalGame, UUID attackingPlayerId, UUID defendingPlayerId, Permanent attacker, Permanent blocker) {
Game sim = originalGame.createSimulationForAI();
if (blocker == null || attacker == null || sim.getPlayer(defendingPlayerId) == null) { if (blocker == null || attacker == null || sim.getPlayer(defendingPlayerId) == null) {
return null; return null;
} }
// TODO: need code research, possible bugs in miss prepare code due real combat logic
// TODO: bugged, miss combat.clear code (possible bugs - wrong blocker declare by AI on multiple options?)
Combat combat = sim.getCombat();
combat.setAttacker(attackingPlayerId);
combat.setDefenders(sim);
int startScore = GameStateEvaluator2.evaluate(defendingPlayerId, sim).getTotalScore();
// real game simulation
// TODO: need debug and testing, old code from 2012
// must have infinite/freeze protection (e.g. limit stack resolves)
// declare
sim.getPlayer(defendingPlayerId).declareBlocker(defendingPlayerId, blocker.getId(), attacker.getId(), sim); sim.getPlayer(defendingPlayerId).declareBlocker(defendingPlayerId, blocker.getId(), attacker.getId(), sim);
sim.fireEvent(GameEvent.getEvent(GameEvent.EventType.DECLARED_BLOCKERS, defendingPlayerId, defendingPlayerId)); sim.fireEvent(GameEvent.getEvent(GameEvent.EventType.DECLARED_BLOCKERS, defendingPlayerId, defendingPlayerId));
sim.checkStateAndTriggered(); sim.checkStateAndTriggered();
while (!sim.getStack().isEmpty()) { while (!sim.getStack().isEmpty()) {
sim.getStack().resolve(sim); sim.getStack().resolve(sim);
@ -212,101 +299,45 @@ public final class CombatUtil {
} }
sim.fireEvent(GameEvent.getEvent(GameEvent.EventType.DECLARE_BLOCKERS_STEP_POST, sim.getActivePlayerId(), sim.getActivePlayerId())); sim.fireEvent(GameEvent.getEvent(GameEvent.EventType.DECLARE_BLOCKERS_STEP_POST, sim.getActivePlayerId(), sim.getActivePlayerId()));
// combat
simulateStep(sim, new CombatDamageStep(true)); simulateStep(sim, new CombatDamageStep(true));
simulateStep(sim, new CombatDamageStep(false)); simulateStep(sim, new CombatDamageStep(false));
simulateStep(sim, new EndOfCombatStep()); simulateStep(sim, new EndOfCombatStep());
// The following commented out call produces random freezes.
//sim.checkStateAndTriggered(); // after
sim.checkStateAndTriggered();
while (!sim.getStack().isEmpty()) { while (!sim.getStack().isEmpty()) {
sim.getStack().resolve(sim); sim.getStack().resolve(sim);
sim.applyEffects(); sim.applyEffects();
} }
return new SurviveInfo(!sim.getBattlefield().containsPermanent(attacker.getId()), !sim.getBattlefield().containsPermanent(blocker.getId())); int endBlockingScore = GameStateEvaluator2.evaluate(defendingPlayerId, sim).getTotalScore();
int endNonBlockingScore = startScore; // TODO: implement
return new SurviveInfo(
!sim.getBattlefield().containsPermanent(attacker.getId()),
!sim.getBattlefield().containsPermanent(blocker.getId()),
endBlockingScore - startScore,
endNonBlockingScore - startScore
);
} }
protected static void simulateStep(Game game, Step step) { public static SurviveInfo willItSurviveSimple(Game originalGame, UUID attackingPlayerId, UUID defendingPlayerId, Permanent attacker, Permanent blocker) {
game.getPhase().setStep(step); Game sim = originalGame.createSimulationForAI();
if (!step.skipStep(game, game.getActivePlayerId())) {
step.beginStep(game, game.getActivePlayerId());
// The following commented out call produces random freezes.
//game.checkStateAndTriggered();
while (!game.getStack().isEmpty()) {
game.getStack().resolve(game);
game.applyEffects();
}
step.endStep(game, game.getActivePlayerId());
}
}
public static boolean canBlock(Game game, Permanent blocker) {
boolean canBlock = true;
if (!blocker.isTapped()) {
try {
canBlock = blocker.canBlock(null, game);
} catch (Exception e) {
//e.printStackTrace();
}
}
return canBlock;
}
public static CombatInfo blockWithGoodTrade2(Game game, List<Permanent> attackers, List<Permanent> blockers) {
UUID attackerId = game.getCombat().getAttackingPlayerId();
UUID defenderId = game.getCombat().getDefenders().iterator().next();
if (attackerId == null || defenderId == null) {
log.warn("Couldn't find attacker or defender: " + attackerId + ' ' + defenderId);
return new CombatInfo();
}
CombatInfo combatInfo = new CombatInfo();
for (Permanent attacker : attackers) {
//TODO: handle attackers with "can't be blocked except"
List<Permanent> possibleBlockers = getPossibleBlockers(game, attacker, blockers);
List<Permanent> survivedBlockers = getBlockersThatWillSurvive2(game, attackerId, defenderId, attacker, possibleBlockers);
if (!survivedBlockers.isEmpty()) {
Permanent blocker = getWorstCreature(survivedBlockers);
combatInfo.addPair(attacker, blocker);
blockers.remove(blocker);
}
if (blockers.isEmpty()) {
break;
}
}
return combatInfo;
}
private static List<Permanent> getBlockersThatWillSurvive2(Game game, UUID attackerId, UUID defenderId, Permanent attacker, List<Permanent> possibleBlockers) {
List<Permanent> blockers = new ArrayList<>();
for (Permanent blocker : possibleBlockers) {
SurviveInfo info = willItSurvive2(game, attackerId, defenderId, attacker, blocker);
//if (info.isAttackerDied() && !info.isBlockerDied()) {
if (info != null) {
if (info.isAttackerDied()) {
blockers.add(blocker);
} else if (!info.isBlockerDied()) {
blockers.add(blocker);
}
}
}
return blockers;
}
public static SurviveInfo willItSurvive2(Game game, UUID attackingPlayerId, UUID defendingPlayerId, Permanent attacker, Permanent blocker) {
Game sim = game.createSimulationForAI();
// TODO: bugged, miss combat.clear code (possible bugs - wrong blocker declare by AI on multiple options?)
Combat combat = sim.getCombat();
combat.setAttacker(attackingPlayerId);
combat.setDefenders(sim);
if (blocker == null || attacker == null || sim.getPlayer(defendingPlayerId) == null) { if (blocker == null || attacker == null || sim.getPlayer(defendingPlayerId) == null) {
return null; return null;
} }
Combat combat = sim.getCombat();
combat.setAttacker(attackingPlayerId);
combat.setDefenders(sim);
Game simNonBlocking = sim.copy();
// attacker tapped before attack, it will add additional score to blocker, but it must be ignored
// so blocker will block same creature with same score without penalty
int startScore = GameStateEvaluator2.evaluate(defendingPlayerId, sim, false).getTotalScore();
// fake game simulation (manual PT calculation)
if (attacker.getPower().getValue() >= blocker.getToughness().getValue()) { if (attacker.getPower().getValue() >= blocker.getToughness().getValue()) {
sim.getBattlefield().removePermanent(blocker.getId()); sim.getBattlefield().removePermanent(blocker.getId());
} }
@ -314,7 +345,38 @@ public final class CombatUtil {
sim.getBattlefield().removePermanent(attacker.getId()); sim.getBattlefield().removePermanent(attacker.getId());
} }
return new SurviveInfo(!sim.getBattlefield().containsPermanent(attacker.getId()), !sim.getBattlefield().containsPermanent(blocker.getId())); // fake non-block simulation
simNonBlocking.getPlayer(defendingPlayerId).damage(
attacker.getPower().getValue(),
attacker.getId(),
null,
simNonBlocking,
true,
true
);
simNonBlocking.processAction();
int endBlockingScore = GameStateEvaluator2.evaluate(defendingPlayerId, sim, false).getTotalScore();
int endNonBlockingScore = GameStateEvaluator2.evaluate(defendingPlayerId, simNonBlocking, false).getTotalScore();
return new SurviveInfo(
!sim.getBattlefield().containsPermanent(attacker.getId()),
!sim.getBattlefield().containsPermanent(blocker.getId()),
endBlockingScore - startScore,
endNonBlockingScore - startScore
);
} }
private static void simulateStep(Game sim, Step step) {
sim.getPhase().setStep(step);
if (!step.skipStep(sim, sim.getActivePlayerId())) {
step.beginStep(sim, sim.getActivePlayerId());
// The following commented out call produces random freezes.
//game.checkStateAndTriggered();
while (!sim.getStack().isEmpty()) {
sim.getStack().resolve(sim);
sim.applyEffects();
}
step.endStep(sim, sim.getActivePlayerId());
}
}
} }

View file

@ -1,50 +1,48 @@
package mage.player.ai.util; package mage.player.ai.util;
import mage.players.Player; import mage.game.permanent.Permanent;
/** /**
* @author noxx * AI: combat simulation result
*
* @author noxx, JayDi85
*/ */
public class SurviveInfo { public class SurviveInfo {
private boolean attackerDied; private final boolean attackerDied;
private boolean blockerDied; private final boolean blockerDied;
private final int diffBlockingScore;
private final int diffNonblockingScore;
private Player defender; private Permanent blocker; // for final result
private boolean triggered;
public SurviveInfo(boolean attackerDied, boolean blockerDied, Player defender, boolean triggered) { public SurviveInfo(boolean attackerDied, boolean blockerDied, int diffBlockingScore, int diffNonblockingScore) {
this.attackerDied = attackerDied; this.attackerDied = attackerDied;
this.blockerDied = blockerDied; this.blockerDied = blockerDied;
this.defender = defender; this.diffBlockingScore = diffBlockingScore;
this.triggered = triggered; this.diffNonblockingScore = diffNonblockingScore;
} }
public SurviveInfo(boolean attackerDied, boolean blockerDied) { public void setBlocker(Permanent blocker) {
this.attackerDied = attackerDied; this.blocker = blocker;
this.blockerDied = blockerDied; }
public Permanent getBlocker() {
return this.blocker;
}
public int getDiffBlockingScore() {
return this.diffBlockingScore;
}
public int getDiffNonblockingScore() {
return this.diffNonblockingScore;
} }
public boolean isAttackerDied() { public boolean isAttackerDied() {
return attackerDied; return attackerDied;
} }
public void setAttackerDied(boolean attackerDied) {
this.attackerDied = attackerDied;
}
public boolean isBlockerDied() { public boolean isBlockerDied() {
return blockerDied; return blockerDied;
} }
public void setBlockerDied(boolean blockerDied) {
this.blockerDied = blockerDied;
}
public Player getDefender() {
return defender;
}
public boolean isTriggered() {
return triggered;
}
} }

View file

@ -52,7 +52,7 @@ public class BlockSimulationAITest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
public void test_Block_1_small_attacker_vs_1_small_blocker() { public void test_Block_1_small_attacker_vs_1_small_blocker_same() {
addCard(Zone.BATTLEFIELD, playerA, "Arbor Elf", 1); // 1/1 addCard(Zone.BATTLEFIELD, playerA, "Arbor Elf", 1); // 1/1
addCard(Zone.BATTLEFIELD, playerB, "Arbor Elf", 1); // 1/1 addCard(Zone.BATTLEFIELD, playerB, "Arbor Elf", 1); // 1/1
@ -72,6 +72,54 @@ public class BlockSimulationAITest extends CardTestPlayerBaseWithAIHelps {
assertGraveyardCount(playerB, "Arbor Elf", 1); assertGraveyardCount(playerB, "Arbor Elf", 1);
} }
@Test
public void test_Block_1_small_attacker_vs_1_small_blocker_better() {
addCard(Zone.BATTLEFIELD, playerA, "Arbor Elf", 1); // 1/1
//addCard(Zone.BATTLEFIELD, playerB, "Elvish Archers"); // 2/1 first strike
addCard(Zone.BATTLEFIELD, playerB, "Dregscape Zombie", 1); // 2/1
attack(1, playerA, "Arbor Elf");
// ai must ignore block to keep better creature alive
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkBlockers("no blockers", 1, playerB, "");
setStopAt(1, PhaseStep.END_TURN);
setStrictChooseMode(true);
execute();
assertLife(playerA, 20);
assertLife(playerB, 20 - 1);
assertPermanentCount(playerA, "Arbor Elf", 1);
assertPermanentCount(playerB, "Dregscape Zombie", 1);
}
@Test
public void test_Block_1_small_attacker_vs_1_small_blocker_better_but_player_die() {
addCustomEffect_TargetDamage(playerA, 19);
addCard(Zone.BATTLEFIELD, playerA, "Arbor Elf", 1); // 1/1
addCard(Zone.BATTLEFIELD, playerB, "Dregscape Zombie", 1); // 2/1
// prepare 1 life
activateAbility(1, PhaseStep.PRECOMBAT_MAIN, playerA, "target damage 19", playerB);
attack(1, playerA, "Arbor Elf");
// ai must keep better blocker in normal case, but now it must protect from lose and sacrifice it
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkBlockers("x1 blocker", 1, playerB, "Dregscape Zombie");
setStopAt(1, PhaseStep.END_TURN);
setStrictChooseMode(true);
execute();
assertLife(playerA, 20);
assertLife(playerB, 1);
assertGraveyardCount(playerA, "Arbor Elf", 1);
assertGraveyardCount(playerB, "Dregscape Zombie", 1);
}
@Test @Test
public void test_Block_1_big_attacker_vs_1_small_blocker() { public void test_Block_1_big_attacker_vs_1_small_blocker() {
addCard(Zone.BATTLEFIELD, playerA, "Balduvian Bears", 1); // 2/2 addCard(Zone.BATTLEFIELD, playerA, "Balduvian Bears", 1); // 2/2

View file

@ -571,7 +571,7 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
public void test_MustBeBlocked_nothing() { public void test_MustBeBlocked_nothing_human() {
// Fear of Being Hunted must be blocked if able. // Fear of Being Hunted must be blocked if able.
addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2 addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2
@ -587,12 +587,30 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
public void test_MustBeBlocked_1_blocker() { public void test_MustBeBlocked_nothing_AI() {
// Fear of Being Hunted must be blocked if able.
addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2
attack(1, playerA, "Fear of Being Hunted");
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted");
checkBlockers("no blocker", 1, playerB, "");
setStrictChooseMode(true);
setStopAt(1, PhaseStep.END_TURN);
execute();
assertLife(playerB, 20 - 4);
}
@Test
public void test_MustBeBlocked_1_blocker_human() {
// Fear of Being Hunted must be blocked if able. // Fear of Being Hunted must be blocked if able.
addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2 addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2
// //
addCard(Zone.BATTLEFIELD, playerB, "Alpha Myr", 1); // 2/1 addCard(Zone.BATTLEFIELD, playerB, "Alpha Myr", 1); // 2/1
// auto-choose blocker
attack(1, playerA, "Fear of Being Hunted"); attack(1, playerA, "Fear of Being Hunted");
checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted"); checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted");
checkBlockers("forced x1 blocker", 1, playerB, "Alpha Myr"); checkBlockers("forced x1 blocker", 1, playerB, "Alpha Myr");
@ -606,15 +624,36 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
public void test_MustBeBlocked_many_blockers_good() { public void test_MustBeBlocked_1_blocker_AI() {
// Fear of Being Hunted must be blocked if able.
addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2
//
addCard(Zone.BATTLEFIELD, playerB, "Alpha Myr", 1); // 2/1
// auto-choose blocker with AI
attack(1, playerA, "Fear of Being Hunted");
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted");
checkBlockers("forced x1 blocker", 1, playerB, "Alpha Myr");
setStrictChooseMode(true);
setStopAt(1, PhaseStep.END_TURN);
execute();
assertLife(playerB, 20);
assertGraveyardCount(playerA, "Fear of Being Hunted", 1);
}
@Test
public void test_MustBeBlocked_many_blockers_good_AI() {
// Fear of Being Hunted must be blocked if able. // Fear of Being Hunted must be blocked if able.
addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2 addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2
// //
addCard(Zone.BATTLEFIELD, playerB, "Spectral Bears", 10); // 3/3 addCard(Zone.BATTLEFIELD, playerB, "Spectral Bears", 10); // 3/3
// TODO: human logic can't be tested (until isHuman replaced by ~isComputer), so current use case will // ai must choose any bear
// take first available blocker
attack(1, playerA, "Fear of Being Hunted"); attack(1, playerA, "Fear of Being Hunted");
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted"); checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted");
checkBlockers("x1 optimal blocker", 1, playerB, "Spectral Bears"); checkBlockers("x1 optimal blocker", 1, playerB, "Spectral Bears");
@ -627,15 +666,15 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
public void test_MustBeBlocked_many_blockers_bad() { public void test_MustBeBlocked_many_blockers_bad_AI() {
// Fear of Being Hunted must be blocked if able. // Fear of Being Hunted must be blocked if able.
addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2 addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2
// //
addCard(Zone.BATTLEFIELD, playerB, "Memnite", 10); // 1/1 addCard(Zone.BATTLEFIELD, playerB, "Memnite", 10); // 1/1
// TODO: human logic can't be tested (until isHuman replaced by ~isComputer), so current use case will // ai don't want but must choose any bad memnite
// take first available blocker
attack(1, playerA, "Fear of Being Hunted"); attack(1, playerA, "Fear of Being Hunted");
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted"); checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted");
checkBlockers("x1 optimal blocker", 1, playerB, "Memnite"); checkBlockers("x1 optimal blocker", 1, playerB, "Memnite");
@ -645,12 +684,11 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
assertLife(playerB, 20); assertLife(playerB, 20);
assertPermanentCount(playerA, "Fear of Being Hunted", 1); assertPermanentCount(playerA, "Fear of Being Hunted", 1);
assertGraveyardCount(playerB, "Memnite", 1); // x1 blocker die
} }
@Test @Test
@Ignore public void test_MustBeBlocked_many_blockers_optimal_AI() {
// TODO: enable and duplicate for AI -- after implement choose blocker logic and isHuman replace by ~isComputer
public void test_MustBeBlocked_many_blockers_optimal() {
// Fear of Being Hunted must be blocked if able. // Fear of Being Hunted must be blocked if able.
addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2 addCard(Zone.BATTLEFIELD, playerA, "Fear of Being Hunted"); // 4/2
// //
@ -659,7 +697,9 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
addCard(Zone.BATTLEFIELD, playerB, "Spectral Bears", 1); // 3/3 addCard(Zone.BATTLEFIELD, playerB, "Spectral Bears", 1); // 3/3
addCard(Zone.BATTLEFIELD, playerB, "Deadbridge Goliath", 1); // 5/5 addCard(Zone.BATTLEFIELD, playerB, "Deadbridge Goliath", 1); // 5/5
// ai must choose optimal creature to kill but survive
attack(1, playerA, "Fear of Being Hunted"); attack(1, playerA, "Fear of Being Hunted");
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted"); checkAttackers("x1 attacker", 1, playerA, "Fear of Being Hunted");
checkBlockers("x1 optimal blocker", 1, playerB, "Deadbridge Goliath"); checkBlockers("x1 optimal blocker", 1, playerB, "Deadbridge Goliath");
@ -669,6 +709,7 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
assertLife(playerB, 20); assertLife(playerB, 20);
assertGraveyardCount(playerA, "Fear of Being Hunted", 1); assertGraveyardCount(playerA, "Fear of Being Hunted", 1);
assertGraveyardCount(playerB, 0);
} }
@Test @Test
@ -697,7 +738,7 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
public void test_MustBlocking_full_blockers() { public void test_MustBlocking_full_blockers_human() {
// All creatures able to block target creature this turn do so. // All creatures able to block target creature this turn do so.
addCard(Zone.HAND, playerA, "Bloodscent"); // {3}{G} addCard(Zone.HAND, playerA, "Bloodscent"); // {3}{G}
addCard(Zone.BATTLEFIELD, playerA, "Forest", 4); // {3}{G} addCard(Zone.BATTLEFIELD, playerA, "Forest", 4); // {3}{G}
@ -725,7 +766,37 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
public void test_MustBlocking_many_blockers() { public void test_MustBlocking_full_blockers_AI() {
// All creatures able to block target creature this turn do so.
addCard(Zone.HAND, playerA, "Bloodscent"); // {3}{G}
addCard(Zone.BATTLEFIELD, playerA, "Forest", 4); // {3}{G}
//
// Menace
// Each creature you control with menace can't be blocked except by three or more creatures.
addCard(Zone.BATTLEFIELD, playerA, "Sonorous Howlbonder"); // 2/2
//
addCard(Zone.BATTLEFIELD, playerB, "Memnite", 3); // 1/1
// prepare
castSpell(1, PhaseStep.PRECOMBAT_MAIN, playerA, "Bloodscent", "Sonorous Howlbonder");
// ai must choose all blockers anyway
attack(1, playerA, "Sonorous Howlbonder");
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
setChoiceAmount(playerA, 1); // assign damage to 1 of 3 blocking memnites
checkAttackers("x1 attacker", 1, playerA, "Sonorous Howlbonder");
checkBlockers("x3 blockers", 1, playerB, "Memnite", "Memnite", "Memnite");
setStrictChooseMode(true);
setStopAt(1, PhaseStep.END_TURN);
execute();
assertLife(playerB, 20);
assertGraveyardCount(playerA, "Sonorous Howlbonder", 1);
}
@Test
public void test_MustBlocking_many_blockers_human() {
// possible bug: AI's blockers auto-fix assign too many blockers (e.g. x10 instead x3 by required effect) // possible bug: AI's blockers auto-fix assign too many blockers (e.g. x10 instead x3 by required effect)
// All creatures able to block target creature this turn do so. // All creatures able to block target creature this turn do so.
@ -754,6 +825,38 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
assertGraveyardCount(playerA, "Sonorous Howlbonder", 1); assertGraveyardCount(playerA, "Sonorous Howlbonder", 1);
} }
@Test
public void test_MustBlocking_many_blockers_AI() {
// possible bug: AI's blockers auto-fix assign too many blockers (e.g. x10 instead x3 by required effect)
// All creatures able to block target creature this turn do so.
addCard(Zone.HAND, playerA, "Bloodscent"); // {3}{G}
addCard(Zone.BATTLEFIELD, playerA, "Forest", 4); // {3}{G}
//
// Menace
// Each creature you control with menace can't be blocked except by three or more creatures.
addCard(Zone.BATTLEFIELD, playerA, "Sonorous Howlbonder"); // 2/2
//
addCard(Zone.BATTLEFIELD, playerB, "Memnite", 5); // 1/1
// prepare
castSpell(1, PhaseStep.PRECOMBAT_MAIN, playerA, "Bloodscent", "Sonorous Howlbonder");
// ai must choose all blockers
attack(1, playerA, "Sonorous Howlbonder");
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
setChoiceAmount(playerA, 1); // assign damage to 1 of 3 blocking memnites
checkAttackers("x1 attacker", 1, playerA, "Sonorous Howlbonder");
checkBlockers("all blockers", 1, playerB, "Memnite", "Memnite", "Memnite", "Memnite", "Memnite");
setStrictChooseMode(true);
setStopAt(1, PhaseStep.END_TURN);
execute();
assertLife(playerB, 20);
assertGraveyardCount(playerA, "Sonorous Howlbonder", 1);
}
@Test @Test
@Ignore @Ignore
// TODO: need exception fix - java.lang.UnsupportedOperationException: Sonorous Howlbonder is blocked by 1 creature(s). It has to be blocked by 3 or more. // TODO: need exception fix - java.lang.UnsupportedOperationException: Sonorous Howlbonder is blocked by 1 creature(s). It has to be blocked by 3 or more.
@ -814,6 +917,7 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
@Test @Test
@Ignore // TODO: need improve of block configuration auto-fix (block by x2 instead x1) @Ignore // TODO: need improve of block configuration auto-fix (block by x2 instead x1)
// looks like it's impossible for auto-fix (it's can remove blocker, but not add)
public void test_MustBeBlockedWithMenace_all_blockers() { public void test_MustBeBlockedWithMenace_all_blockers() {
// At the beginning of combat on your turn, you may pay {2}{R/G}. If you do, double target creatures // At the beginning of combat on your turn, you may pay {2}{R/G}. If you do, double target creatures
// power until end of turn. That creature must be blocked this combat if able. // power until end of turn. That creature must be blocked this combat if able.
@ -844,7 +948,8 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
@Test @Test
@Ignore // TODO: need improve of block configuration auto-fix (block by x2 instead x1) @Ignore // TODO: need improve of block configuration auto-fix (block by x2 instead x1)
public void test_MustBeBlockedWithMenace_many_blockers() { // looks like it's impossible for auto-fix (it's can remove blocker, but not add)
public void test_MustBeBlockedWithMenace_many_low_blockers_human() {
// At the beginning of combat on your turn, you may pay {2}{R/G}. If you do, double target creatures // At the beginning of combat on your turn, you may pay {2}{R/G}. If you do, double target creatures
// power until end of turn. That creature must be blocked this combat if able. // power until end of turn. That creature must be blocked this combat if able.
addCard(Zone.BATTLEFIELD, playerA, "Neyith of the Dire Hunt"); // 3/3 addCard(Zone.BATTLEFIELD, playerA, "Neyith of the Dire Hunt"); // 3/3
@ -872,6 +977,42 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
assertGraveyardCount(playerA, "Alley Strangler", 0); assertGraveyardCount(playerA, "Alley Strangler", 0);
} }
@Test
@Ignore // TODO: blockWithGoodTrade2 must support additional restrictions
public void test_MustBeBlockedWithMenace_many_low_blockers_AI() {
// At the beginning of combat on your turn, you may pay {2}{R/G}. If you do, double target creatures
// power until end of turn. That creature must be blocked this combat if able.
addCard(Zone.BATTLEFIELD, playerA, "Neyith of the Dire Hunt"); // 3/3
addCard(Zone.BATTLEFIELD, playerA, "Forest", 3);
//
// Menace
addCard(Zone.BATTLEFIELD, playerA, "Alley Strangler", 1); // 2/3
//
addCard(Zone.BATTLEFIELD, playerB, "Memnite", 10); // 1/1
// If the target creature has menace, two creatures must block it if able.
// (2020-06-23)
// AI must be forced to choose min x2 low blockers (it's possible to fail here after AI logic improve someday)
addTarget(playerA, "Alley Strangler"); // boost target
setChoice(playerA, true); // boost target
attack(1, playerA, "Alley Strangler");
setChoiceAmount(playerA, 1); // assign damage to 1 of 2 blocking memnites
setChoiceAmount(playerA, 1); // assign damage to 2 of 2 blocking memnites
aiPlayStep(1, PhaseStep.DECLARE_BLOCKERS, playerB);
checkAttackers("x1 attacker", 1, playerA, "Alley Strangler");
checkBlockers("x2 blockers", 1, playerB, "Memnite", "Memnite");
setStrictChooseMode(true);
setStopAt(1, PhaseStep.END_TURN);
execute();
assertLife(playerB, 20);
assertGraveyardCount(playerA, "Alley Strangler", 0);
assertGraveyardCount(playerB, "Memnite", 2); // x2 blockers must die
}
@Test @Test
public void test_MustBeBlockedWithMenace_low_blockers_auto() { public void test_MustBeBlockedWithMenace_low_blockers_auto() {
// At the beginning of combat on your turn, you may pay {2}{R/G}. If you do, double target creatures // At the beginning of combat on your turn, you may pay {2}{R/G}. If you do, double target creatures
@ -985,7 +1126,6 @@ public class AttackBlockRestrictionsTest extends CardTestPlayerBaseWithAIHelps {
} }
@Test @Test
@Ignore // TODO: need to fix
public void test_MustBeBlockedWithMenace_low_big_blockers_AI() { public void test_MustBeBlockedWithMenace_low_big_blockers_AI() {
// bug: #13290, AI can try to use bigger creature to block // bug: #13290, AI can try to use bigger creature to block

View file

@ -1996,7 +1996,7 @@ public class TestPlayer implements Player {
} }
} }
} }
checkMultipleBlockers(game, blockedCreaturesList); checkMultipleBlockers(game, blockedCreaturesList); // search wrong block commands
// AI FULL play if no actions available // AI FULL play if no actions available
if (!mustBlockByAction && (this.AIPlayer || this.AIRealGameSimulation)) { if (!mustBlockByAction && (this.AIPlayer || this.AIRealGameSimulation)) {

View file

@ -174,7 +174,7 @@ public interface Game extends MageItem, Serializable, Copyable<Game> {
* *
* Warning, it will return leaved players until end of turn. For dialogs and one shot effects use excludeLeavedPlayers * Warning, it will return leaved players until end of turn. For dialogs and one shot effects use excludeLeavedPlayers
*/ */
// TODO: check usage of getOpponents in cards and replace with correct call of excludeLeavedPlayers // TODO: check usage of getOpponents in cards and replace with correct call of excludeLeavedPlayers, see #13289
default Set<UUID> getOpponents(UUID playerId) { default Set<UUID> getOpponents(UUID playerId) {
return getOpponents(playerId, false); return getOpponents(playerId, false);
} }

View file

@ -3174,7 +3174,7 @@ public abstract class GameImpl implements Game {
if (simulation) { if (simulation) {
return; return;
} }
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.INFO, message, this); tableEventSource.fireTableEvent(EventType.INFO, message, this);
} }
@ -3183,7 +3183,7 @@ public abstract class GameImpl implements Game {
if (simulation) { if (simulation) {
return; return;
} }
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.STATUS, message, withTime, withTurnInfo, this); tableEventSource.fireTableEvent(EventType.STATUS, message, withTime, withTurnInfo, this);
} }
@ -3192,7 +3192,7 @@ public abstract class GameImpl implements Game {
if (simulation) { if (simulation) {
return; return;
} }
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.UPDATE, null, this); tableEventSource.fireTableEvent(EventType.UPDATE, null, this);
getState().clearLookedAt(); getState().clearLookedAt();
getState().clearRevealed(); getState().clearRevealed();
@ -3203,23 +3203,23 @@ public abstract class GameImpl implements Game {
if (simulation) { if (simulation) {
return; return;
} }
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.END_GAME_INFO, null, this); tableEventSource.fireTableEvent(EventType.END_GAME_INFO, null, this);
} }
@Override @Override
public void fireErrorEvent(String message, Exception ex) { public void fireErrorEvent(String message, Exception ex) {
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.ERROR, message, ex, this); tableEventSource.fireTableEvent(EventType.ERROR, message, ex, this);
} }
private void makeSureCalledOutsideLayersEffects() { private void makeSureCalledOutsideLayerEffects() {
// very slow, enable/comment it for debug or load/stability tests only // very slow, enable/comment it for debug or load/stability tests only
// TODO: enable check and remove/rework all wrong usages // TODO: enable check and remove/rework all wrong usages
if (true) return; if (true) return;
Arrays.stream(Thread.currentThread().getStackTrace()).forEach(e -> { Arrays.stream(Thread.currentThread().getStackTrace()).forEach(e -> {
if (e.toString().contains("GameState.applyEffects")) { if (e.toString().contains("GameState.applyEffects")) {
throw new IllegalStateException("Wrong code usage: client side events can't be called from layers effects (wrong informPlayers usage?"); throw new IllegalStateException("Wrong code usage: client side events can't be called from layers effects (wrong informPlayers usage?)");
} }
}); });
} }
@ -3890,7 +3890,7 @@ public abstract class GameImpl implements Game {
@Override @Override
public void initTimer(UUID playerId) { public void initTimer(UUID playerId) {
if (priorityTime > 0) { if (priorityTime > 0) {
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.INIT_TIMER, playerId, null, this); tableEventSource.fireTableEvent(EventType.INIT_TIMER, playerId, null, this);
} }
} }
@ -3898,7 +3898,7 @@ public abstract class GameImpl implements Game {
@Override @Override
public void resumeTimer(UUID playerId) { public void resumeTimer(UUID playerId) {
if (priorityTime > 0) { if (priorityTime > 0) {
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.RESUME_TIMER, playerId, null, this); tableEventSource.fireTableEvent(EventType.RESUME_TIMER, playerId, null, this);
} }
} }
@ -3906,7 +3906,7 @@ public abstract class GameImpl implements Game {
@Override @Override
public void pauseTimer(UUID playerId) { public void pauseTimer(UUID playerId) {
if (priorityTime > 0) { if (priorityTime > 0) {
makeSureCalledOutsideLayersEffects(); makeSureCalledOutsideLayerEffects();
tableEventSource.fireTableEvent(EventType.PAUSE_TIMER, playerId, null, this); tableEventSource.fireTableEvent(EventType.PAUSE_TIMER, playerId, null, this);
} }
} }

View file

@ -670,9 +670,25 @@ public class Combat implements Serializable, Copyable<Combat> {
} }
// choosing until good block configuration // choosing until good block configuration
int aiTries = 0;
while (true) { while (true) {
aiTries++;
if (controller.isComputer() && aiTries > 20) {
// TODO: AI must use real attacker/blocker configuration with all possible combination
// (current human like logic will fail sometime, e.g. with menace and big/low creatures)
// real game: send warning
// test: fast fail
game.informPlayers(controller.getLogName() + ": WARNING - AI can't find good blocker combination and will skip it - report your battlefield to github - " + game.getCombat());
if (controller.isTestsMode()) {
// how-to fix: AI code must support failed abilities or use cases
throw new IllegalArgumentException("AI can't find good blocker combination");
}
break;
}
// declare normal blockers // declare normal blockers
// TODO: need reseach - is it possible to concede on bad blocker configuration (e.g. user can't continue) // TODO: need research - is it possible to concede on bad blocker configuration (e.g. user can't continue)
controller.selectBlockers(source, game, defenderId); controller.selectBlockers(source, game, defenderId);
if (game.isPaused() || game.checkIfGameIsOver() || game.executingRollback()) { if (game.isPaused() || game.checkIfGameIsOver() || game.executingRollback()) {
return; return;
@ -776,18 +792,16 @@ public class Combat implements Serializable, Copyable<Combat> {
/** /**
* Check the block restrictions * Check the block restrictions
* *
* @param player
* @param game
* @return false - if block restrictions were not complied * @return false - if block restrictions were not complied
*/ */
public boolean checkBlockRestrictions(Player player, Game game) { public boolean checkBlockRestrictions(Player defender, Game game) {
int count = 0; int count = 0;
boolean blockWasLegal = true; boolean blockWasLegal = true;
for (CombatGroup group : groups) { for (CombatGroup group : groups) {
count += group.getBlockers().size(); count += group.getBlockers().size();
} }
for (CombatGroup group : groups) { for (CombatGroup group : groups) {
blockWasLegal &= group.checkBlockRestrictions(game, count); blockWasLegal &= group.checkBlockRestrictions(game, defender, count);
} }
return blockWasLegal; return blockWasLegal;
} }

View file

@ -773,11 +773,27 @@ public class CombatGroup implements Serializable, Copyable<CombatGroup> {
} }
} }
public boolean checkBlockRestrictions(Game game, int blockersCount) { public boolean checkBlockRestrictions(Game game, Player defender, int blockersCount) {
boolean blockWasLegal = true; boolean blockWasLegal = true;
if (attackers.isEmpty()) { if (attackers.isEmpty()) {
return blockWasLegal; return blockWasLegal;
} }
// collect possible blockers
Map<UUID, Set<UUID>> possibleBlockers = new HashMap<>();
for (UUID attackerId : attackers) {
Permanent attacker = game.getPermanent(attackerId);
Set<UUID> goodBlockers = new HashSet<>();
for (Permanent blocker : game.getBattlefield().getActivePermanents(StaticFilters.FILTER_PERMANENT_CREATURES_CONTROLLED, defender.getId(), game)) {
if (blocker.canBlock(attackerId, game)) {
goodBlockers.add(blocker.getId());
}
}
possibleBlockers.put(attacker.getId(), goodBlockers);
}
// effects: can't block alone
// too much blockers
if (blockersCount == 1) { if (blockersCount == 1) {
List<UUID> toBeRemoved = new ArrayList<>(); List<UUID> toBeRemoved = new ArrayList<>();
for (UUID blockerId : getBlockers()) { for (UUID blockerId : getBlockers()) {
@ -802,19 +818,27 @@ public class CombatGroup implements Serializable, Copyable<CombatGroup> {
for (UUID uuid : attackers) { for (UUID uuid : attackers) {
Permanent attacker = game.getPermanent(uuid); Permanent attacker = game.getPermanent(uuid);
if (attacker != null && this.blocked) { if (attacker != null && this.blocked) {
// Check if there are enough blockers to have a legal block // effects: can't be blocked except by xxx or more creatures
// too few blockers
if (attacker.getMinBlockedBy() > 1 && !blockers.isEmpty() && blockers.size() < attacker.getMinBlockedBy()) { if (attacker.getMinBlockedBy() > 1 && !blockers.isEmpty() && blockers.size() < attacker.getMinBlockedBy()) {
for (UUID blockerId : new ArrayList<>(blockers)) { for (UUID blockerId : new ArrayList<>(blockers)) {
game.getCombat().removeBlocker(blockerId, game); game.getCombat().removeBlocker(blockerId, game); // !
} }
blockers.clear(); blockers.clear();
blockerOrder.clear(); blockerOrder.clear();
if (!game.isSimulation()) { if (!game.isSimulation()) {
game.informPlayers(attacker.getLogName() + " can't be blocked except by " + attacker.getMinBlockedBy() + " or more creatures. Blockers discarded."); game.informPlayers(attacker.getLogName() + " can't be blocked except by " + attacker.getMinBlockedBy() + " or more creatures. Blockers discarded.");
} }
// if there aren't any possible blocker configuration then it's legal due mtg rules
// warning, it's affect AI related logic like other block auto-fixes does, see https://github.com/magefree/mage/pull/13182
if (attacker.getMinBlockedBy() <= possibleBlockers.getOrDefault(attacker.getId(), Collections.emptySet()).size()) {
blockWasLegal = false; blockWasLegal = false;
} }
// Check if there are too many blockers (maxBlockedBy = 0 means no restrictions) }
// effects: can't be blocked by more than xxx creature
// too much blockers
if (attacker.getMaxBlockedBy() > 0 && attacker.getMaxBlockedBy() < blockers.size()) { if (attacker.getMaxBlockedBy() > 0 && attacker.getMaxBlockedBy() < blockers.size()) {
for (UUID blockerId : new ArrayList<>(blockers)) { for (UUID blockerId : new ArrayList<>(blockers)) {
game.getCombat().removeBlocker(blockerId, game); game.getCombat().removeBlocker(blockerId, game);
@ -827,6 +851,7 @@ public class CombatGroup implements Serializable, Copyable<CombatGroup> {
.append(attacker.getMaxBlockedBy() == 1 ? " creature." : " creatures.") .append(attacker.getMaxBlockedBy() == 1 ? " creature." : " creatures.")
.append(" Blockers discarded.").toString()); .append(" Blockers discarded.").toString());
} }
blockWasLegal = false; blockWasLegal = false;
} }
} }