// Matrix Construct // // Copyright (C) Matrix Construct Developers, Authors & Contributors // Copyright (C) 2016-2018 Jason Volk // // Permission to use, copy, modify, and/or distribute this software for any // purpose with or without fee is hereby granted, provided that the above // copyright notice and this permission notice is present in all copies. The // full license for this software is available in the LICENSE file. #pragma once #define HAVE_IRCD_BUFFER_UNIQUE_BUFFER_H /// Like unique_ptr, this template holds ownership of an allocated buffer /// template struct ircd::buffer::unique_buffer :buffer { static char *allocate(const size_t &size); buffer release(); unique_buffer(const size_t &size); explicit unique_buffer(const buffer &); unique_buffer(); unique_buffer(unique_buffer &&) noexcept; unique_buffer(const unique_buffer &) = delete; unique_buffer &operator=(unique_buffer &&) noexcept; unique_buffer &operator=(const unique_buffer &) = delete; ~unique_buffer() noexcept; }; template ircd::buffer::unique_buffer::unique_buffer() :buffer { nullptr, nullptr } {} template ircd::buffer::unique_buffer::unique_buffer(const buffer &src) :unique_buffer { size(src) } { const mutable_buffer dst { const_cast(data(*this)), size(*this) }; copy(dst, src); } template ircd::buffer::unique_buffer::unique_buffer(const size_t &size) :buffer { allocate(size), size } { } template ircd::buffer::unique_buffer::unique_buffer(unique_buffer &&other) noexcept :buffer { std::move(static_cast(other)) } { get<0>(other) = nullptr; } template ircd::buffer::unique_buffer & ircd::buffer::unique_buffer::operator=(unique_buffer &&other) noexcept { this->~unique_buffer(); static_cast(*this) = std::move(static_cast(other)); get<0>(other) = nullptr; return *this; } template ircd::buffer::unique_buffer::~unique_buffer() noexcept { std::free(const_cast(data(*this))); } template buffer ircd::buffer::unique_buffer::release() { const buffer ret{static_cast(*this)}; static_cast(*this) = buffer{}; return ret; } template char * ircd::buffer::unique_buffer::allocate(const size_t &size) { int errc; void *ret; if(unlikely((errc = ::posix_memalign(&ret, alignment, size)) != 0)) throw std::system_error { errc, std::system_category() }; assert(errc == 0); assert(ret != nullptr); return reinterpret_cast(ret); }