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232 lines
8.6 KiB
C++
232 lines
8.6 KiB
C++
#pragma once
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#include "HeroBonus.h"
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#include "GameConstants.h"
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#include "CArtHandler.h"
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/*
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* CCreatureSet.h, part of VCMI engine
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*
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* Authors: listed in file AUTHORS in main folder
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*
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* License: GNU General Public License v2.0 or later
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* Full text of license available in license.txt file, in main folder
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*
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*/
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class JsonNode;
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class CCreature;
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class CGHeroInstance;
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class CArmedInstance;
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class CCreatureArtifactSet;
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class JsonSerializeFormat;
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class DLL_LINKAGE CStackBasicDescriptor
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{
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public:
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const CCreature *type;
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TQuantity count;
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CStackBasicDescriptor();
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CStackBasicDescriptor(CreatureID id, TQuantity Count);
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CStackBasicDescriptor(const CCreature *c, TQuantity Count);
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template <typename Handler> void serialize(Handler &h, const int version)
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{
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h & type & count;
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}
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void writeJson(JsonNode & json) const;
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void readJson(const JsonNode & json);
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};
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class DLL_LINKAGE CStackInstance : public CBonusSystemNode, public CStackBasicDescriptor, public CArtifactSet
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{
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protected:
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const CArmedInstance *_armyObj; //stack must be part of some army, army must be part of some object
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public:
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// hlp variable used during loading map, when object (hero or town) have creatures that must have same alignment.
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// idRand < 0 -> normal, non-random creature
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// idRand / 2 -> level
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// idRand % 2 -> upgrade number
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int idRand;
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const CArmedInstance * const & armyObj; //stack must be part of some army, army must be part of some object
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TExpType experience;//commander needs same amount of exp as hero
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template <typename Handler> void serialize(Handler &h, const int version)
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{
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h & static_cast<CBonusSystemNode&>(*this);
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h & static_cast<CStackBasicDescriptor&>(*this);
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h & static_cast<CArtifactSet&>(*this);
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h & _armyObj & experience;
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BONUS_TREE_DESERIALIZATION_FIX
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}
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void writeJson(JsonNode & json) const;
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void readJson(const JsonNode & json);
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//overrides CBonusSystemNode
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std::string bonusToString(const Bonus *bonus, bool description) const override; // how would bonus description look for this particular type of node
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std::string bonusToGraphics(const Bonus *bonus) const; //file name of graphics from StackSkills , in future possibly others
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virtual ui64 getPower() const;
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int getQuantityID() const;
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std::string getQuantityTXT(bool capitalized = true) const;
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virtual int getExpRank() const;
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virtual int getLevel() const; //different for regular stack and commander
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si32 magicResistance() const override;
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CreatureID getCreatureID() const; //-1 if not available
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std::string getName() const; //plural or singular
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virtual void init();
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CStackInstance();
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CStackInstance(CreatureID id, TQuantity count);
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CStackInstance(const CCreature *cre, TQuantity count);
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~CStackInstance();
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void setType(CreatureID creID);
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void setType(const CCreature *c);
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void setArmyObj(const CArmedInstance *ArmyObj);
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virtual void giveStackExp(TExpType exp);
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bool valid(bool allowUnrandomized) const;
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ArtBearer::ArtBearer bearerType() const override; //from CArtifactSet
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virtual std::string nodeName() const override; //from CBonusSystemnode
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void deserializationFix();
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};
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class DLL_LINKAGE CCommanderInstance : public CStackInstance
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{
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public:
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//TODO: what if Commander is not a part of creature set?
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//commander class is determined by its base creature
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ui8 alive;
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ui8 level; //required only to count callbacks
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std::string name; // each Commander has different name
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std::vector <ui8> secondarySkills; //ID -> level
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std::set <ui8> specialSKills;
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//std::vector <CArtifactInstance *> arts;
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void init() override;
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CCommanderInstance();
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CCommanderInstance (CreatureID id);
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~CCommanderInstance();
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void setAlive (bool alive);
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void giveStackExp (TExpType exp) override;
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void levelUp ();
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bool gainsLevel() const; //true if commander has lower level than should upon his experience
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ui64 getPower() const override {return 0;};
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int getExpRank() const override;
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int getLevel() const override;
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ArtBearer::ArtBearer bearerType() const override; //from CArtifactSet
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template <typename Handler> void serialize(Handler &h, const int version)
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{
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h & static_cast<CStackInstance&>(*this);
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h & alive & level & name & secondarySkills & specialSKills;
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}
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};
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DLL_LINKAGE std::ostream & operator<<(std::ostream & str, const CStackInstance & sth);
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typedef std::map<SlotID, CStackInstance*> TSlots;
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typedef std::map<SlotID, CStackBasicDescriptor> TSimpleSlots;
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class IArmyDescriptor
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{
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public:
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virtual void clear() = 0;
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virtual bool setCreature(SlotID slot, CreatureID cre, TQuantity count) = 0;
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};
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//simplified version of CCreatureSet
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class DLL_LINKAGE CSimpleArmy : public IArmyDescriptor
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{
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public:
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TSimpleSlots army;
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void clear() override;
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bool setCreature(SlotID slot, CreatureID cre, TQuantity count) override;
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operator bool() const;
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template <typename Handler> void serialize(Handler &h, const int version)
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{
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h & army;
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}
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};
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class DLL_LINKAGE CCreatureSet : public IArmyDescriptor //seven combined creatures
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{
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CCreatureSet(const CCreatureSet&);
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CCreatureSet &operator=(const CCreatureSet&);
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public:
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TSlots stacks; //slots[slot_id]->> pair(creature_id,creature_quantity)
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ui8 formation; //false - wide, true - tight
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CCreatureSet();
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virtual ~CCreatureSet();
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virtual void armyChanged();
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const CStackInstance &operator[](SlotID slot) const;
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const TSlots &Slots() const {return stacks;}
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void addToSlot(SlotID slot, CreatureID cre, TQuantity count, bool allowMerging = true); //Adds stack to slot. Slot must be empty or with same type creature
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void addToSlot(SlotID slot, CStackInstance *stack, bool allowMerging = true); //Adds stack to slot. Slot must be empty or with same type creature
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void clear() override;
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void setFormation(bool tight);
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CArmedInstance *castToArmyObj();
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//basic operations
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void putStack(SlotID slot, CStackInstance *stack); //adds new stack to the army, slot must be empty
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void setStackCount(SlotID slot, TQuantity count); //stack must exist!
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CStackInstance *detachStack(SlotID slot); //removes stack from army but doesn't destroy it (so it can be moved somewhere else or safely deleted)
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void setStackType(SlotID slot, const CCreature *type);
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void giveStackExp(TExpType exp);
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void setStackExp(SlotID slot, TExpType exp);
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//derivative
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void eraseStack(SlotID slot); //slot must be occupied
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void joinStack(SlotID slot, CStackInstance * stack); //adds new stack to the existing stack of the same type
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void changeStackCount(SlotID slot, TQuantity toAdd); //stack must exist!
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bool setCreature (SlotID slot, CreatureID type, TQuantity quantity) override; //replaces creature in stack; slots 0 to 6, if quantity=0 erases stack
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void setToArmy(CSimpleArmy &src); //erases all our army and moves stacks from src to us; src MUST NOT be an armed object! WARNING: use it wisely. Or better do not use at all.
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const CStackInstance& getStack(SlotID slot) const; //stack must exist
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const CStackInstance* getStackPtr(SlotID slot) const; //if stack doesn't exist, returns nullptr
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const CCreature* getCreature(SlotID slot) const; //workaround of map issue;
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int getStackCount (SlotID slot) const;
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TExpType getStackExperience(SlotID slot) const;
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SlotID findStack(const CStackInstance *stack) const; //-1 if none
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SlotID getSlotFor(CreatureID creature, ui32 slotsAmount = GameConstants::ARMY_SIZE) const; //returns -1 if no slot available
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SlotID getSlotFor(const CCreature *c, ui32 slotsAmount = GameConstants::ARMY_SIZE) const; //returns -1 if no slot available
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SlotID getFreeSlot(ui32 slotsAmount = GameConstants::ARMY_SIZE) const;
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bool mergableStacks(std::pair<SlotID, SlotID> &out, SlotID preferable = SlotID()) const; //looks for two same stacks, returns slot positions;
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bool validTypes(bool allowUnrandomized = false) const; //checks if all types of creatures are set properly
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bool slotEmpty(SlotID slot) const;
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int stacksCount() const;
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virtual bool needsLastStack() const; //true if last stack cannot be taken
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ui64 getArmyStrength() const; //sum of AI values of creatures
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ui64 getPower (SlotID slot) const; //value of specific stack
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std::string getRoughAmount(SlotID slot, int mode = 0) const; //rough size of specific stack
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std::string getArmyDescription() const;
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bool hasStackAtSlot(SlotID slot) const;
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bool contains(const CStackInstance *stack) const;
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bool canBeMergedWith(const CCreatureSet &cs, bool allowMergingStacks = true) const;
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template <typename Handler> void serialize(Handler &h, const int version)
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{
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h & stacks & formation;
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}
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void serializeJson(JsonSerializeFormat & handler, const std::string & fieldName);
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operator bool() const
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{
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return !stacks.empty();
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}
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void sweep();
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};
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