/*
* Copyright (C) 2008-2016 TrinityCore
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the
* Free Software Foundation; either version 2 of the License, or (at your
* option) any later version.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
* You should have received a copy of the GNU General Public License along
* with this program. If not, see .
*/
#ifndef TRINITY_CONTAINERS_H
#define TRINITY_CONTAINERS_H
#include "Define.h"
#include "Random.h"
#include "Util.h"
#include
#include
#include
#include
namespace Trinity
{
namespace Containers
{
template
void RandomResizeList(std::list& list, uint32 size)
{
uint32 list_size = uint32(list.size());
while (list_size > size)
{
typename std::list::iterator itr = list.begin();
std::advance(itr, urand(0, list_size - 1));
list.erase(itr);
--list_size;
}
}
template
void RandomResizeList(std::list &list, Predicate& predicate, uint32 size)
{
//! First use predicate filter
std::list listCopy;
for (typename std::list::iterator itr = list.begin(); itr != list.end(); ++itr)
if (predicate(*itr))
listCopy.push_back(*itr);
if (size)
RandomResizeList(listCopy, size);
list = std::move(listCopy);
}
/*
* Select a random element from a container.
*
* Note: container cannot be empty
*/
template
typename C::value_type const& SelectRandomContainerElement(C const& container)
{
typename C::const_iterator it = container.begin();
std::advance(it, urand(0, uint32(container.size()) - 1));
return *it;
}
/*
* Select a random element from a container where each element has a different chance to be selected.
*
* @param container Container to select an element from
* @param weights Chances of each element to be selected, must be in the same order as elements in container.
* Caller is responsible for checking that sum of all weights is greater than 0.
*
* Note: container cannot be empty
*/
template
typename C::const_iterator SelectRandomWeightedContainerElement(C const& container, std::vector weights)
{
Trinity::discrete_distribution_param ddParam(weights.begin(), weights.end());
std::discrete_distribution dd(ddParam);
typename C::const_iterator it = container.begin();
std::advance(it, dd(SFMTEngine::Instance()));
return it;
}
/*
* Select a random element from a container where each element has a different chance to be selected.
*
* @param container Container to select an element from
* @param weightExtractor Function retrieving chance of each element in container, expected to take an element of the container and returning a double
*
* Note: container cannot be empty
*/
template
typename C::const_iterator SelectRandomWeightedContainerElement(C const& container, Fn weightExtractor)
{
std::vector weights;
weights.reserve(container.size());
double weightSum = 0.0;
for (auto itr = container.begin(); itr != container.end(); ++itr)
{
double weight = weightExtractor(*itr);
weights.push_back(weight);
weightSum += weight;
}
if (weightSum <= 0.0)
weights.assign(container.size(), 1.0);
return SelectRandomWeightedContainerElement(container, weights);
}
/**
* @fn void Trinity::Containers::RandomShuffle(C& container)
*
* @brief Reorder the elements of the container randomly.
*
* @param container Container to reorder
*/
template
void RandomShuffle(C& container)
{
std::shuffle(container.begin(), container.end(), SFMTEngine::Instance());
}
/**
* @fn bool Trinity::Containers::Intersects(Iterator first1, Iterator last1, Iterator first2, Iterator last2)
*
* @brief Checks if two SORTED containers have a common element
*
* @param first1 Iterator pointing to start of the first container
* @param last1 Iterator pointing to end of the first container
* @param first2 Iterator pointing to start of the second container
* @param last2 Iterator pointing to end of the second container
*
* @return true if containers have a common element, false otherwise.
*/
template
bool Intersects(Iterator1 first1, Iterator1 last1, Iterator2 first2, Iterator2 last2)
{
while (first1 != last1 && first2 != last2)
{
if (*first1 < *first2)
++first1;
else if (*first2 < *first1)
++first2;
else
return true;
}
return false;
}
template class M, class... Rest>
void MultimapErasePair(M& multimap, K const& key, V const& value)
{
auto range = multimap.equal_range(key);
for (auto itr = range.first; itr != range.second;)
{
if (itr->second == value)
itr = multimap.erase(itr);
else
++itr;
}
}
}
//! namespace Containers
}
//! namespace Trinity
#endif //! #ifdef TRINITY_CONTAINERS_H