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vcmi/lib/battle/BattleHexArray.h
MichalZr6 dbe82b94f6 Changes following review:
- shared_ptr for destructibleEnemyTurns instead of raw pointer
- drop implicit int conversion for BattleHex class
  and implement toInt() instead
- implement necessary operators in BattleHex
- adjust code to work properly with JSON serializer
2025-01-08 07:24:43 +01:00

318 lines
7.7 KiB
C++

/*
* BattleHexArray.h, part of VCMI engine
*
* Authors: listed in file AUTHORS in main folder
*
* License: GNU General Public License v2.0 or later
* Full text of license available in license.txt file, in main folder
*
*/
#pragma once
#include "BattleHex.h"
#include <boost/container/small_vector.hpp>
VCMI_LIB_NAMESPACE_BEGIN
/// Class representing an array of unique BattleHex objects
class DLL_LINKAGE BattleHexArray
{
public:
static constexpr uint8_t totalSize = GameConstants::BFIELD_SIZE;
using StorageType = boost::container::small_vector<BattleHex, 8>;
using ArrayOfBattleHexArrays = std::array<BattleHexArray, totalSize>;
using value_type = BattleHex;
using size_type = StorageType::size_type;
using reference = value_type &;
using const_reference = const value_type &;
using pointer = value_type *;
using const_pointer = const value_type *;
using difference_type = typename StorageType::difference_type;
using iterator = typename StorageType::iterator;
using const_iterator = typename StorageType::const_iterator;
using reverse_iterator = typename StorageType::reverse_iterator;
using const_reverse_iterator = typename StorageType::const_reverse_iterator;
BattleHexArray() = default;
template <typename Container, typename = std::enable_if_t<
std::is_convertible_v<typename Container::value_type, BattleHex>>>
BattleHexArray(const Container & container) noexcept
: BattleHexArray()
{
for(auto value : container)
{
insert(value);
}
}
void resize(size_type size)
{
clear();
internalStorage.resize(size);
}
BattleHexArray(std::initializer_list<BattleHex> initList) noexcept;
void checkAndPush(BattleHex tile)
{
if(tile.isAvailable() && !contains(tile))
{
presenceFlags[tile.toInt()] = true;
internalStorage.emplace_back(tile);
}
}
void insert(BattleHex hex) noexcept
{
if(contains(hex))
return;
presenceFlags[hex.toInt()] = true;
internalStorage.emplace_back(hex);
}
void set(size_type index, BattleHex hex)
{
if(index >= internalStorage.size())
{
logGlobal->error("Invalid BattleHexArray::set index parameter. It is " + std::to_string(index)
+ " and current size is " + std::to_string(internalStorage.size()));
throw std::out_of_range("Invalid BattleHexArray::set index parameter. It is " + std::to_string(index)
+ " and current size is " + std::to_string(internalStorage.size()));
}
if(contains(hex))
return;
presenceFlags[hex.toInt()] = true;
internalStorage[index] = hex;
}
iterator insert(iterator pos, BattleHex hex) noexcept
{
if(contains(hex))
return pos;
presenceFlags[hex.toInt()] = true;
return internalStorage.insert(pos, hex);
}
void insert(const BattleHexArray & other) noexcept;
template <typename Container, typename = std::enable_if_t<
std::is_convertible_v<typename Container::value_type, BattleHex>>>
void insert(const Container & container) noexcept
{
for(auto value : container)
{
insert(value);
}
}
void clear() noexcept;
inline void erase(size_type index) noexcept
{
assert(index < totalSize);
internalStorage[index] = BattleHex::INVALID;
presenceFlags[index] = 0;
}
void erase(iterator first, iterator last) noexcept;
inline void pop_back() noexcept
{
presenceFlags[internalStorage.back().toInt()] = false;
internalStorage.pop_back();
}
inline std::vector<BattleHex> toVector() const noexcept
{
return std::vector<BattleHex>(internalStorage.begin(), internalStorage.end());
}
template <typename Predicate>
iterator findIf(Predicate predicate) noexcept
{
return std::find_if(begin(), end(), predicate);
}
template <typename Predicate>
const_iterator findIf(Predicate predicate) const noexcept
{
return std::find_if(begin(), end(), predicate);
}
template <typename Predicate>
BattleHexArray filterBy(Predicate predicate) const noexcept
{
BattleHexArray filtered;
for(auto hex : internalStorage)
{
if(predicate(hex))
{
filtered.insert(hex);
}
}
return filtered;
}
/// get (precomputed) all possible surrounding tiles
static const BattleHexArray & getAllNeighbouringTiles(BattleHex hex) noexcept
{
assert(hex.isValid());
return allNeighbouringTiles[hex.toInt()];
}
/// get (precomputed) only valid and available surrounding tiles
static const BattleHexArray & getNeighbouringTiles(BattleHex hex) noexcept
{
assert(hex.isValid());
return neighbouringTiles[hex.toInt()];
}
/// get (precomputed) only valid and available surrounding tiles for double wide creatures
static const BattleHexArray & getNeighbouringTilesDoubleWide(BattleHex hex, BattleSide side) noexcept
{
assert(hex.isValid() && (side == BattleSide::ATTACKER || side == BattleSide::DEFENDER));
return neighbouringTilesDoubleWide.at(side)[hex.toInt()];
}
[[nodiscard]] inline bool contains(BattleHex hex) const noexcept
{
if(hex.isValid())
return presenceFlags[hex.toInt()];
/*
if(!isTower(hex))
logGlobal->warn("BattleHexArray::contains( %d ) - invalid BattleHex!", hex);
*/
// returns true also for invalid hexes
return true;
}
template <typename Serializer>
void serialize(Serializer & s)
{
s & internalStorage;
if(!s.saving)
{
for(auto hex : internalStorage)
presenceFlags[hex.toInt()] = true;
}
}
[[nodiscard]] inline const BattleHex & back() const noexcept
{
return internalStorage.back();
}
[[nodiscard]] inline const BattleHex & front() const noexcept
{
return internalStorage.front();
}
[[nodiscard]] inline const BattleHex & operator[](size_type index) const noexcept
{
return internalStorage[index];
}
[[nodiscard]] inline const BattleHex & at(size_type index) const
{
return internalStorage.at(index);
}
[[nodiscard]] inline size_type size() const noexcept
{
return internalStorage.size();
}
[[nodiscard]] inline iterator begin() noexcept
{
return internalStorage.begin();
}
[[nodiscard]] inline const_iterator begin() const noexcept
{
return internalStorage.begin();
}
[[nodiscard]] inline bool empty() const noexcept
{
return internalStorage.empty();
}
[[nodiscard]] inline iterator end() noexcept
{
return internalStorage.end();
}
[[nodiscard]] inline const_iterator end() const noexcept
{
return internalStorage.end();
}
[[nodiscard]] inline reverse_iterator rbegin() noexcept
{
return reverse_iterator(end());
}
[[nodiscard]] inline const_reverse_iterator rbegin() const noexcept
{
return const_reverse_iterator(end());
}
[[nodiscard]] inline reverse_iterator rend() noexcept
{
return reverse_iterator(begin());
}
[[nodiscard]] inline const_reverse_iterator rend() const noexcept
{
return const_reverse_iterator(begin());
}
bool operator ==(const BattleHexArray & other) const noexcept
{
if(internalStorage != other.internalStorage || presenceFlags != other.presenceFlags)
return false;
return true;
}
private:
StorageType internalStorage;
std::bitset<totalSize> presenceFlags;
[[nodiscard]] inline bool isNotValidForInsertion(BattleHex hex) const
{
if(isTower(hex))
return true;
if(!hex.isValid())
{
//logGlobal->warn("BattleHexArray::insert( %d ) - invalid BattleHex!", hex);
return true;
}
return contains(hex) || internalStorage.size() >= totalSize;
}
[[nodiscard]] inline bool isTower(BattleHex hex) const
{
return hex == BattleHex::CASTLE_CENTRAL_TOWER || hex == BattleHex::CASTLE_UPPER_TOWER || hex == BattleHex::CASTLE_BOTTOM_TOWER;
}
static const ArrayOfBattleHexArrays neighbouringTiles;
static const ArrayOfBattleHexArrays allNeighbouringTiles;
static const std::map<BattleSide, ArrayOfBattleHexArrays> neighbouringTilesDoubleWide;
static ArrayOfBattleHexArrays precalculateNeighbouringTiles();
static ArrayOfBattleHexArrays precalculateAllNeighbouringTiles();
static ArrayOfBattleHexArrays precalculateNeighbouringTilesDoubleWide(BattleSide side);
};
VCMI_LIB_NAMESPACE_END