#pragma once /* * Copyright (C) 2024 Brett Terpstra * * 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 3 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 <https://www.gnu.org/licenses/>. */ #ifndef BLT_GP_ALLOCATOR_H #define BLT_GP_ALLOCATOR_H #include <blt/std/types.h> #include <blt/std/logging.h> #include <blt/gp/util/trackers.h> #include <cstdlib> #include <vector> namespace blt::gp { namespace detail { static constexpr inline size_t MAX_ALIGNMENT = 8; #if BLT_DEBUG_LEVEL > 0 static void check_alignment(const size_t bytes, const std::string& message = "Invalid alignment") { if (bytes % MAX_ALIGNMENT != 0) { BLT_ABORT((message + ", expected multiple of " + std::to_string(detail::MAX_ALIGNMENT) + " got " + std::to_string(bytes)).c_str()); } } #endif } #ifdef BLT_TRACK_ALLOCATIONS inline allocation_tracker_t tracker; // population gen specifics inline call_tracker_t crossover_calls; inline call_tracker_t mutation_calls; inline call_tracker_t reproduction_calls; inline call_tracker_t crossover_allocations; inline call_tracker_t mutation_allocations; inline call_tracker_t reproduction_allocations; // for evaluating fitness inline call_tracker_t evaluation_calls; inline call_tracker_t evaluation_allocations; #endif class aligned_allocator { public: void* allocate(blt::size_t bytes) // NOLINT { #ifdef BLT_TRACK_ALLOCATIONSS tracker.allocate(bytes); // std::cout << "Hey our aligned allocator allocated " << bytes << " bytes!\n"; #endif #if (BLT_DEBUG_LEVEL > 0) detail::check_alignment(bytes); #endif return std::aligned_alloc(detail::MAX_ALIGNMENT, bytes); } void deallocate(void* ptr, blt::size_t bytes) // NOLINT { if (ptr == nullptr) return; #ifdef BLT_TRACK_ALLOCATIONS tracker.deallocate(bytes); // std::cout << "[Hey our aligned allocator deallocated " << bytes << " bytes!]\n"; #else (void)bytes; #endif std::free(ptr); } }; template <typename T> class tracked_allocator_t { public: using value_type = T; using reference = T&; using const_reference = const T&; using pointer = T*; using const_pointer = const T*; using void_pointer = void*; using const_void_pointer = const void*; using difference_type = blt::ptrdiff_t; using size_type = blt::size_t; template <class U> struct rebind { typedef tracked_allocator_t<U> other; }; pointer allocate(size_type n) { #ifdef BLT_TRACK_ALLOCATIONS tracker.allocate(n * sizeof(T)); // std::cout << "Hey our tracked allocator allocated " << (n * sizeof(T)) << " bytes!\n"; #endif return static_cast<pointer>(std::malloc(n * sizeof(T))); } pointer allocate(size_type n, const_void_pointer) { return allocate(n); } void deallocate(pointer p, size_type n) { #ifdef BLT_TRACK_ALLOCATIONS ::blt::gp::tracker.deallocate(n * sizeof(T)); // std::cout << "[Hey our tracked allocator deallocated " << (n * sizeof(T)) << " bytes!]\n"; #else (void)n; #endif std::free(p); } template <class U, class... Args> void construct(U* p, Args&&... args) { new(p) T(std::forward<Args>(args)...); } template <class U> void destroy(U* p) { p->~T(); } [[nodiscard]] size_type max_size() const noexcept { return std::numeric_limits<size_type>::max(); } }; template <class T1, class T2> inline static bool operator==(const tracked_allocator_t<T1>& lhs, const tracked_allocator_t<T2>& rhs) noexcept { return &lhs == &rhs; } template <class T1, class T2> inline static bool operator!=(const tracked_allocator_t<T1>& lhs, const tracked_allocator_t<T2>& rhs) noexcept { return &lhs != &rhs; } #ifdef BLT_TRACK_ALLOCATIONS template<typename T> using tracked_vector = std::vector<T, tracked_allocator_t<T>>; #else template <typename T> using tracked_vector = std::vector<T>; #endif } #endif //BLT_GP_ALLOCATOR_H