mirror of
https://github.com/matrix-construct/construct
synced 2024-11-05 05:18:54 +01:00
274 lines
7.9 KiB
C++
274 lines
7.9 KiB
C++
/*
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* Copyright (C) 2016 Charybdis Development Team
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* Copyright (C) 2016 Jason Volk <jason@zemos.net>
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*
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* Permission to use, copy, modify, and/or distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice is present in all copies.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
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* INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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* STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
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* IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*
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*/
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#pragma once
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#define HAVE_IRCD_DB_ROW_H
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namespace ircd::db
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{
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struct row;
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// [SET] Delete row from DB (convenience to an op::DELETE delta)
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void del(row &, const sopts & = {});
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}
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// A `row` is a collection of cells from different columns which all share the same
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// key. This is an interface for dealing with those cells in the aggregate.
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//
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// Note that in a `row` each `cell` comes from a different `column`, but `cell::key()`
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// will all return the same index value across the whole `row`. To get the names
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// of the columns themselves to build ex. the key name of a JSON key-value pair,
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// use `cell::col()`, which will be different for each `cell` across the `row`.
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//
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// The db::row::iterator iterates over the cells in a row; to iterate over
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// multiple rows use the db::cursor
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struct ircd::db::row
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{
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struct delta;
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struct iterator;
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struct const_iterator;
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using value_type = cell &;
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using reference = cell &;
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using pointer = cell *;
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using difference_type = size_t;
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private: public:
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std::vector<cell> its;
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public:
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auto empty() const { return its.empty(); }
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auto size() const { return its.size(); }
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bool valid() const; // true on any cell valid; false on empty
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// [GET] Iterations
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const_iterator begin() const;
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const_iterator end() const;
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iterator begin();
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iterator end();
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// [GET] Get iterator to cell
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const_iterator find(const string_view &column) const;
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iterator find(const string_view &column);
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// [GET] Get cell
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const cell &operator[](const string_view &column) const;
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cell &operator[](const string_view &column);
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// [SET] Perform operation
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void operator()(const op &, const string_view &col, const string_view &val = {}, const sopts & = {});
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// All cells
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void load(const gopts & = {}); // !DANGER! not atomic
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row(std::vector<cell> cells = {})
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:its{std::move(cells)}
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{}
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row(database &,
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const string_view &key = {},
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const vector_view<string_view> &columns = {},
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gopts opts = {});
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template<class... T>
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row(database &,
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const string_view &key = {},
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const json::tuple<T...> & = {},
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gopts opts = {});
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template<class pos> friend bool seeka(row &, const pos &);
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template<class pos> friend bool seek(row &, const pos &);
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friend size_t trim(row &, const std::function<bool (cell &)> &);
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friend size_t trim(row &, const string_view &key); // remove invalid or not equal
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friend size_t trim(row &); // remove invalid
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};
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namespace ircd::db
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{
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// [SET] Perform operations in a sequence as a single transaction. No template
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// iterators supported yet, just a ptr range good for contiguous sequences.
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void write(const row::delta *const &begin, const row::delta *const &end, const sopts & = {});
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void write(const std::initializer_list<row::delta> &, const sopts & = {});
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void write(const sopts &, const std::initializer_list<row::delta> &);
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void write(const row::delta &, const sopts & = {});
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}
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struct ircd::db::row::const_iterator
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{
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using value_type = const cell &;
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using reference = const cell &;
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using pointer = const cell *;
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using iterator_category = std::bidirectional_iterator_tag;
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private:
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friend class row;
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decltype(row::its)::const_iterator it;
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const_iterator(decltype(row::its)::const_iterator it)
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:it{std::move(it)}
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{}
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public:
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reference operator*() const { return it.operator*(); }
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pointer operator->() const { return it.operator->(); }
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const_iterator &operator++() { ++it; return *this; }
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const_iterator &operator--() { --it; return *this; }
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const_iterator() = default;
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friend bool operator==(const const_iterator &, const const_iterator &);
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friend bool operator!=(const const_iterator &, const const_iterator &);
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};
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struct ircd::db::row::iterator
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{
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using value_type = cell &;
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using reference = cell &;
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using pointer = cell *;
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using iterator_category = std::bidirectional_iterator_tag;
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private:
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friend class row;
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decltype(row::its)::iterator it;
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iterator(decltype(row::its)::iterator it)
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:it{std::move(it)}
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{}
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public:
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reference operator*() const { return it.operator*(); }
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pointer operator->() const { return it.operator->(); }
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iterator &operator++() { ++it; return *this; }
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iterator &operator--() { --it; return *this; }
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iterator() = default;
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friend bool operator==(const iterator &, const iterator &);
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friend bool operator!=(const iterator &, const iterator &);
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};
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//
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// A delta is an element of a database transaction. You can use this to make
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// an all-succeed-or-all-fail commitment to multiple rows at once. It is also
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// useful to make a commitment on a single row as a convenient way to compose
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// all of a row's cells together.
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//
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struct ircd::db::row::delta
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:std::tuple<op, row *>
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{
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delta(row &r, const enum op &op = op::SET)
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:std::tuple<enum op, row *>{op, &r}
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{}
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delta(const enum op &op, row &r)
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:std::tuple<enum op, row *>{op, &r}
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{}
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};
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template<class... T>
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ircd::db::row::row(database &d,
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const string_view &key,
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const json::tuple<T...> &t,
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gopts opts)
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:row{[&d, &key, &t, &opts]
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() -> row
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{
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std::array<string_view, t.size()> cols;
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json::_key_transform(t, std::begin(cols), std::end(cols));
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return { d, key, cols, opts };
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}()}
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{
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}
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inline ircd::db::cell &
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ircd::db::row::operator[](const string_view &column)
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{
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const auto it(find(column));
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if(unlikely(it == end()))
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throw schema_error("column '%s' not specified in the descriptor schema", column);
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return *it;
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}
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inline const ircd::db::cell &
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ircd::db::row::operator[](const string_view &column)
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const
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{
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const auto it(find(column));
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if(unlikely(it == end()))
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throw schema_error("column '%s' not specified in the descriptor schema", column);
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return *it;
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}
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inline ircd::db::row::iterator
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ircd::db::row::end()
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{
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return { std::end(its) };
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}
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inline ircd::db::row::iterator
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ircd::db::row::begin()
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{
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return { std::begin(its) };
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}
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inline ircd::db::row::const_iterator
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ircd::db::row::end()
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const
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{
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return { std::end(its) };
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}
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inline ircd::db::row::const_iterator
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ircd::db::row::begin()
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const
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{
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return { std::begin(its) };
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}
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inline bool
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ircd::db::operator!=(const row::iterator &a, const row::iterator &b)
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{
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return a.it != b.it;
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}
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inline bool
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ircd::db::operator==(const row::iterator &a, const row::iterator &b)
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{
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return a.it == b.it;
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}
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inline bool
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ircd::db::operator!=(const row::const_iterator &a, const row::const_iterator &b)
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{
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return a.it != b.it;
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}
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inline bool
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ircd::db::operator==(const row::const_iterator &a, const row::const_iterator &b)
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{
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return a.it == b.it;
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}
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