mirror of
https://github.com/matrix-construct/construct
synced 2024-11-06 05:48:54 +01:00
132 lines
3.3 KiB
C++
132 lines
3.3 KiB
C++
// Matrix Construct
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//
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// Copyright (C) Matrix Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2018 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. The
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// full license for this software is available in the LICENSE file.
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#pragma once
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#define HAVE_AIO_H
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#include <linux/aio_abi.h>
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namespace ircd::fs::aio
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{
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struct system;
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struct request;
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void prefetch(const fd &, const size_t &, const read_opts &);
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size_t write(const fd &, const const_iovec_view &, const write_opts &);
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size_t read(const fd &, const const_iovec_view &, const read_opts &);
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void fdsync(const fd &, const sync_opts &);
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void fsync(const fd &, const sync_opts &);
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}
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/// AIO context instance from the system. Right now this is a singleton with
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/// an extern instance pointer at fs::aio::context maintained by fs::aio::init.
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struct ircd::fs::aio::system
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{
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static const int eventfd_flags;
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/// io_getevents vector (in)
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std::vector<io_event> event;
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uint64_t ecount {0};
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/// io_submit queue (out)
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std::vector<iocb *> queue;
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size_t qcount {0};
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/// other state
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ctx::dock dock;
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size_t in_flight {0};
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/// An eventfd which will be notified by the system; we integrate this with
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/// the ircd io_service core epoll() event loop. The EFD_SEMAPHORE flag is
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/// not used to reduce the number of triggers. The semaphore value is the
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/// ecount (above) which will reflect a hint for how many AIO's are done.
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asio::posix::stream_descriptor resfd;
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/// Handler to the io context we submit requests to the system with
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aio_context_t idp {0};
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size_t max_events() const;
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size_t max_submit() const;
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size_t request_count() const; // qcount + in_flight
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size_t request_avail() const; // max_events - request_count()
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// Callback stack invoked when the sigfd is notified of completed events.
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void handle_event(const io_event &) noexcept;
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void handle_events() noexcept;
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void handle(const boost::system::error_code &, const size_t) noexcept;
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void set_handle();
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size_t submit();
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void chase() noexcept;
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void submit(request &);
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void cancel(request &);
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void wait(request &);
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// Control panel
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bool wait();
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bool interrupt();
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system(const size_t &max_events,
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const size_t &max_submit);
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~system() noexcept;
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};
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/// Generic request control block.
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struct ircd::fs::aio::request
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:iocb
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{
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struct read;
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struct write;
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struct fdsync;
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struct fsync;
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ctx::ctx *waiter {ctx::current};
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ssize_t retval {std::numeric_limits<ssize_t>::min()};
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ssize_t errcode {0};
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const struct opts *opts {nullptr};
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public:
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const_iovec_view iovec() const;
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size_t operator()();
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void cancel();
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request(const int &fd, const struct opts *const &);
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~request() noexcept;
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};
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/// Read request control block
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struct ircd::fs::aio::request::read
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:request
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{
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read(const int &fd, const const_iovec_view &, const read_opts &);
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};
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/// Write request control block
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struct ircd::fs::aio::request::write
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:request
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{
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write(const int &fd, const const_iovec_view &, const write_opts &);
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};
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/// fdsync request control block
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struct ircd::fs::aio::request::fdsync
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:request
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{
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fdsync(const int &fd, const sync_opts &);
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};
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/// fsync request control block
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struct ircd::fs::aio::request::fsync
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:request
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{
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fsync(const int &fd, const sync_opts &);
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};
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