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/*
 * Author: Sven Gothel <sgothel@jausoft.com>
 * Copyright (c) 2020 Gothel Software e.K.
 *
 * Permission is hereby granted, free of charge, to any person obtaining
 * a copy of this software and associated documentation files (the
 * "Software"), to deal in the Software without restriction, including
 * without limitation the rights to use, copy, modify, merge, publish,
 * distribute, sublicense, and/or sell copies of the Software, and to
 * permit persons to whom the Software is furnished to do so, subject to
 * the following conditions:
 *
 * The above copyright notice and this permission notice shall be
 * included in all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
 * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
 * OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
 * WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
 */

#ifndef TEST_ALLOCATOR_HPP
#define TEST_ALLOCATOR_HPP

#include <cinttypes>
#include <memory>

#include <jau/basic_types.hpp>
// #include <jau/ordered_atomic.hpp>

namespace jau {

template <class T>
struct counting_allocator : public std::allocator<T>
{
  public:
    template <class U> struct rebind {typedef counting_allocator<U> other;};
    // std::size_t id;
    bool old_stats;
    std::size_t memory_usage;
    std::size_t alloc_count;
    std::size_t dealloc_count;
    ssize_t alloc_balance;

  private:
    // inline static relaxed_atomic_size_t next_id = 1;

    /**
     * vector<T>::get_allocator() returns a copy of the allocator instance,
     * where we desire to access the copied statistics.
     * <p>
     * However, vector<T>(const vector<T>&) also copies the allocator instance,
     * but here the copied statistics shall be flushed since the elements are
     * copied into the new vector<T> instance using the new allocator.<br>
     * Without flushing the stats, we would see a size + size allocator stats,
     * the former size from the copied allocator and the latter from the
     * copied elements into the new vector<T> instance.
     * </p>
     */
    constexpr void flush_stats() noexcept {
        if( old_stats ) {
            old_stats = false;
            memory_usage = 0;
            alloc_count = 0;
            dealloc_count = 0;
            alloc_balance = 0;
        }
    }

  public:
    std::string toString(const nsize_t mem_width=0, const nsize_t count_width=0) {
        return "CAlloc["/*+std::to_string(id)+", "*/+uint64DecString(memory_usage, ',', mem_width)+" bytes, alloc[balance "+
                int64DecString(alloc_balance, ',', count_width)+" = "+
                uint64DecString(alloc_count, ',', count_width)+" - "+uint64DecString(dealloc_count, ',', count_width)+"]]";
    }

    counting_allocator() noexcept
    : std::allocator<T>(),
      // id(next_id++),
      old_stats(false),
      memory_usage(0), alloc_count(0), dealloc_count(0), alloc_balance(0)
      { } // C++11

#if __cplusplus > 201703L
    constexpr counting_allocator(const counting_allocator& other) noexcept
    : std::allocator<T>(other),
      // id(next_id++),
      old_stats(true),
      memory_usage(other.memory_usage),
      alloc_count(other.alloc_count), dealloc_count(other.dealloc_count),
      alloc_balance(other.alloc_balance)
      {} // C++20
#else
    counting_allocator(const counting_allocator& other) noexcept
    : std::allocator<T>(other),
      // id(next_id++),
      old_stats(true),
      memory_usage(other.memory_usage),
      alloc_count(other.alloc_count), dealloc_count(other.dealloc_count),
      alloc_balance(other.alloc_balance)
      { }
#endif
    constexpr counting_allocator(const counting_allocator& other, const bool keep_stats) noexcept
    : std::allocator<T>(other),
      // id(next_id++),
      old_stats(keep_stats ? false : true),
      memory_usage(other.memory_usage),
      alloc_count(other.alloc_count), dealloc_count(other.dealloc_count),
      alloc_balance(other.alloc_balance)
      {}

#if __cplusplus > 201703L
    template <typename U>
    constexpr counting_allocator(const counting_allocator<U>& other) noexcept
    : std::allocator<T>(other),
      // id(next_id++),
      old_stats(true),
      memory_usage(other.memory_usage),
      alloc_count(other.alloc_count), dealloc_count(other.dealloc_count),
      alloc_balance(other.alloc_balance)
      {} // C++20
#else
    template <typename U>
    counting_allocator(const counting_allocator<U>& other) noexcept
    : std::allocator<T>(other),
      // id(next_id++),
      old_stats(true),
      memory_usage(other.memory_usage),
      alloc_count(other.alloc_count), dealloc_count(other.dealloc_count),
      alloc_balance(other.alloc_balance)
      { }
#endif

#if __cplusplus > 201703L
    constexpr ~counting_allocator() {} // C++20
#else
    ~counting_allocator() {}
#endif

#if __cplusplus <= 201703L
    T* allocate(std::size_t n, const void * hint) { // C++17 deprecated; C++20 removed
        flush_stats();
        memory_usage += n * sizeof(T);
        alloc_count++;
        alloc_balance++;
        return std::allocator<T>::allocate(n, hint);
    }
#endif

#if __cplusplus > 201703L
    [[nodiscard]] constexpr T* allocate(std::size_t n) { // C++17
        flush_stats();
        memory_usage += n * sizeof(T);
        alloc_count++;
        alloc_balance++;
        return std::allocator<T>::allocate(n);
    }
#else
    T* allocate(std::size_t n) { // C++17
        flush_stats();
        memory_usage += n * sizeof(T);
        alloc_count++;
        alloc_balance++;
        return std::allocator<T>::allocate(n);
    }
#endif

#if __cplusplus > 201703L
    constexpr void deallocate(T* p, std::size_t n ) {
        flush_stats();
        memory_usage -= n * sizeof(T);
        dealloc_count++;
        alloc_balance--;
        std::allocator<T>::deallocate(p, n);
    }
#else
    void deallocate(T* p, std::size_t n ) {
        flush_stats();
        memory_usage -= n * sizeof(T);
        dealloc_count++;
        alloc_balance--;
        std::allocator<T>::deallocate(p, n);
    }
#endif
};

#if __cplusplus > 201703L
template <class T1, class T2>
    constexpr bool operator==(const counting_allocator<T1>& lhs, const counting_allocator<T2>& rhs) noexcept {
        if( &lhs == &rhs ) {
            return true;
        }
        return lhs.memory_usage == rhs.memory_usage;
    }
#else
    template <class T1, class T2>
    bool operator==(const counting_allocator<T1>& lhs, const counting_allocator<T2>& rhs) noexcept {
#if 0
        if( &lhs == &rhs ) {
            return true;
        }
        return lhs.memory_usage == rhs.memory_usage;
#else
        return true;
#endif
    }
    template <class T1, class T2>
    bool operator!=(const counting_allocator<T1>& lhs, const counting_allocator<T2>& rhs) noexcept {
        return !(lhs==rhs);
    }
#endif

} /* namespace jau */

#endif // TEST_ALLOCATOR_HPP