mirror of
https://github.com/matrix-construct/construct
synced 2024-11-26 00:32:35 +01:00
603 lines
10 KiB
C++
603 lines
10 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) 2016-2019 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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#include <sys/syscall.h>
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#include <sys/eventfd.h>
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#include <ircd/asio.h>
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#include "fs_iou.h"
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decltype(ircd::fs::iou::MAX_EVENTS)
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ircd::fs::iou::MAX_EVENTS
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{
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128L //TODO: get this info
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};
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decltype(ircd::fs::iou::max_events)
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ircd::fs::iou::max_events
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{
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{ "name", "ircd.fs.iou.max_events" },
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{ "default", long(iou::MAX_EVENTS) },
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{ "persist", false },
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};
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decltype(ircd::fs::iou::max_submit)
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ircd::fs::iou::max_submit
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{
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{ "name", "ircd.fs.iou.max_submit" },
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{ "default", 0L },
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{ "persist", false },
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};
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//
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// init
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//
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ircd::fs::iou::init::init()
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{
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assert(!system);
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if(!iou::enable)
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return;
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system = new struct iou::system
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(
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size_t(max_events),
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size_t(max_submit)
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);
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}
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ircd::fs::iou::init::~init()
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noexcept
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{
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delete system;
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system = nullptr;
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}
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///////////////////////////////////////////////////////////////////////////////
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//
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// ircd/fs/op.h
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//
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// The contents of this section override weak symbols in ircd/fs.cc when this
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// unit is conditionally compiled and linked on IOU-supporting platforms.
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ircd::fs::op
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ircd::fs::iou::translate(const int &val)
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{
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switch(val)
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{
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case IORING_OP_NOP: return op::NOOP;
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case IORING_OP_READV: return op::READ;
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case IORING_OP_WRITEV: return op::WRITE;
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case IORING_OP_FSYNC: return op::SYNC;
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case IORING_OP_READ_FIXED: return op::READ;
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case IORING_OP_WRITE_FIXED: return op::WRITE;
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case IORING_OP_POLL_ADD: return op::NOOP;
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case IORING_OP_POLL_REMOVE: return op::NOOP;
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case IORING_OP_SYNC_FILE_RANGE: return op::SYNC;
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}
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return op::NOOP;
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}
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///////////////////////////////////////////////////////////////////////////////
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//
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// fs/iou.h
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//
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size_t
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ircd::fs::iou::count(const op &op)
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{
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return 0;
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}
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size_t
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ircd::fs::iou::count(const state &state)
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{
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return 0;
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}
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size_t
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ircd::fs::iou::count(const state &state,
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const op &op)
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{
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return 0;
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}
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bool
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ircd::fs::iou::for_each(const state &state,
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const std::function<bool (const request &)> &closure)
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{
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assert(system);
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return true;
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}
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bool
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ircd::fs::iou::for_each(const std::function<bool (const request &)> &closure)
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{
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assert(system);
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return true;
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}
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struct ::io_uring_sqe &
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ircd::fs::iou::sqe(request &request)
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{
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assert(system);
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::io_uring_sqe *const ret
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{
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nullptr
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};
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if(request.id < 0)
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throw std::out_of_range
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{
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"request has no entry on the submit queue."
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};
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assert(ret);
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return *ret;
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}
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const struct ::io_uring_sqe &
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ircd::fs::iou::sqe(const request &request)
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{
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assert(system);
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const ::io_uring_sqe *const ret
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{
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nullptr
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};
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if(request.id < 0)
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throw std::out_of_range
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{
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"request has no entry on the submit queue."
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};
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assert(ret);
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return *ret;
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}
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ircd::string_view
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ircd::fs::iou::reflect(const state &s)
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{
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switch(s)
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{
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case state::INVALID: return "INVALID";
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case state::QUEUED: return "QUEUED";
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case state::SUBMITTED: return "SUBMITTED";
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case state::COMPLETED: return "COMPLETED";
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case state::_NUM: break;
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}
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return "?????";
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}
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ircd::fs::const_iovec_view
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ircd::fs::iou::iovec(const request &request)
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{
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return
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{
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//reinterpret_cast<const ::iovec *>(iou_buf), iou_nbytes
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};
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}
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//
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// request::request
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//
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ircd::fs::iou::request::request(const fs::fd &fd,
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const const_iovec_view &iov,
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const fs::opts *const &opts)
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:opts
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{
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opts
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}
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,op
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{
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fs::op::NOOP
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}
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{
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}
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ircd::fs::iou::request::~request()
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noexcept
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{
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}
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//
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// system::system
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//
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ircd::fs::iou::system::system(const size_t &max_events,
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const size_t &max_submit)
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try
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:p
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{
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0
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}
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,fd
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{
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int(syscall<__NR_io_uring_setup>(max_events, &p))
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}
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,sq_len
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{
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p.sq_off.array + p.sq_entries * sizeof(uint32_t)
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}
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,cq_len
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{
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p.cq_off.cqes + p.cq_entries * sizeof(::io_uring_cqe)
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}
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,sqe_len
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{
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p.sq_entries * sizeof(::io_uring_sqe)
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}
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,sq_p
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{
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[this]
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{
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static const auto prot(PROT_READ | PROT_WRITE);
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static const auto flags(MAP_SHARED | MAP_POPULATE);
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void *const &map
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{
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::mmap(NULL, sq_len, prot, flags, fd, IORING_OFF_SQ_RING)
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};
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if(unlikely(map == MAP_FAILED))
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{
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throw_system_error(errno);
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__builtin_unreachable();
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}
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return reinterpret_cast<uint8_t *>(map);
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}(),
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[this](uint8_t *const ptr)
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{
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syscall(::munmap, ptr, sq_len);
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}
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}
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,cq_p
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{
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[this]
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{
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static const auto prot(PROT_READ | PROT_WRITE);
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static const auto flags(MAP_SHARED | MAP_POPULATE);
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void *const &map
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{
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::mmap(NULL, cq_len, prot, flags, fd, IORING_OFF_CQ_RING)
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};
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if(unlikely(map == MAP_FAILED))
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{
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throw_system_error(errno);
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__builtin_unreachable();
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}
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return reinterpret_cast<uint8_t *>(map);
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}(),
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[this](uint8_t *const ptr)
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{
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syscall(::munmap, ptr, cq_len);
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}
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}
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,sqe_p
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{
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[this]
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{
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static const auto prot(PROT_READ | PROT_WRITE);
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static const auto flags(MAP_SHARED | MAP_POPULATE);
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void *const &map
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{
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::mmap(NULL, sqe_len, prot, flags, fd, IORING_OFF_SQES)
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};
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if(unlikely(map == MAP_FAILED))
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{
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throw_system_error(errno);
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__builtin_unreachable();
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}
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return reinterpret_cast<uint8_t *>(map);
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}(),
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[this](uint8_t *const ptr)
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{
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syscall(::munmap, ptr, sqe_len);
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}
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}
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,head
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{
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reinterpret_cast<uint32_t *>(sq_p.get() + p.sq_off.head),
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reinterpret_cast<uint32_t *>(cq_p.get() + p.cq_off.head),
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}
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,tail
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{
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reinterpret_cast<uint32_t *>(sq_p.get() + p.sq_off.tail),
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reinterpret_cast<uint32_t *>(cq_p.get() + p.cq_off.tail),
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}
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,ring_mask
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{
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reinterpret_cast<uint32_t *>(sq_p.get() + p.sq_off.ring_mask),
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reinterpret_cast<uint32_t *>(cq_p.get() + p.cq_off.ring_mask),
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}
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,ring_entries
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{
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reinterpret_cast<uint32_t *>(sq_p.get() + p.sq_off.ring_entries),
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reinterpret_cast<uint32_t *>(cq_p.get() + p.cq_off.ring_entries),
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}
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,flags
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{
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reinterpret_cast<uint32_t *>(sq_p.get() + p.sq_off.flags),
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nullptr
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}
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,dropped
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{
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reinterpret_cast<uint32_t *>(sq_p.get() + p.sq_off.dropped),
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nullptr
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}
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,overflow
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{
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nullptr,
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reinterpret_cast<uint32_t *>(cq_p.get() + p.cq_off.overflow),
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}
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,sq
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{
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reinterpret_cast<uint32_t *>(sq_p.get() + p.sq_off.array)
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}
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,sqe
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{
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reinterpret_cast<::io_uring_sqe *>(sqe_p.get())
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}
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,cqe
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{
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reinterpret_cast<::io_uring_cqe *>(cq_p.get() + p.cq_off.cqes)
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}
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,ev_count
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{
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0
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}
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,ev_fd
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{
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ios::get(), int(syscall(::eventfd, ev_count, EFD_CLOEXEC | EFD_NONBLOCK))
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}
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,handle_set
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{
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false
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}
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,handle_size
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{
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0
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}
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{
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log::debug
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{
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log, "io_uring sq_entries:%u cq_entries:%u flags:%u sq_thread_cpu:%u sq_thread_idle:%u",
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p.sq_entries,
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p.cq_entries,
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p.flags,
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p.sq_thread_cpu,
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p.sq_thread_idle,
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};
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log::debug
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{
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log, "io_uring maps sq:%p len:%zu sqe:%p len:%zu cq:%p len:%zu",
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sq_p.get(),
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sq_len,
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sqe_p.get(),
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sqe_len,
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cq_p.get(),
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cq_len,
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};
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log::debug
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{
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log, "io_sqring head:%u tail:%u ring_mask:%u ring_entries:%u flags:%u dropped:%u array:%u map:%p len:%zu",
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p.sq_off.head,
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p.sq_off.tail,
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p.sq_off.ring_mask,
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p.sq_off.ring_entries,
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p.sq_off.flags,
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p.sq_off.dropped,
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p.sq_off.array,
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sq_p.get(),
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sq_len,
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};
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log::debug
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{
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log, "io_cqring head:%u tail:%u ring_mask:%u ring_entries:%u overflow:%u cqes:%u map:%p len:%zu",
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p.cq_off.head,
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p.cq_off.tail,
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p.cq_off.ring_mask,
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p.cq_off.ring_entries,
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p.cq_off.overflow,
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p.cq_off.cqes,
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cq_p.get(),
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cq_len,
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};
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assert(0);
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}
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catch(const std::exception &e)
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{
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log::error
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{
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log, "Error starting iou context %p :%s",
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(const void *)this,
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e.what()
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};
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}
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ircd::fs::iou::system::~system()
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noexcept try
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{
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const ctx::uninterruptible::nothrow ui;
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interrupt();
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wait();
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boost::system::error_code ec;
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ev_fd.close(ec);
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}
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catch(const std::exception &e)
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{
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log::critical
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{
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log, "Error shutting down iou context %p :%s",
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(const void *)this,
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e.what()
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};
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}
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bool
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ircd::fs::iou::system::interrupt()
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{
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if(!ev_fd.is_open())
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return false;
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if(handle_set)
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ev_fd.cancel();
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else
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ev_count = -1;
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return true;
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}
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bool
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ircd::fs::iou::system::wait()
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{
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if(!ev_fd.is_open())
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return false;
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log::debug
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{
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log, "Waiting for iou context %p", this
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};
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dock.wait([this]
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{
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return ev_count == uint64_t(-1);
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});
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return true;
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}
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void
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ircd::fs::iou::system::set_handle()
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try
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{
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assert(!handle_set);
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handle_set = true;
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ev_count = 0;
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const asio::mutable_buffers_1 bufs
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{
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&ev_count, sizeof(ev_count)
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};
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auto handler
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{
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std::bind(&system::handle, this, ph::_1, ph::_2)
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};
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ev_fd.async_read_some(bufs, ios::handle(handle_descriptor, std::move(handler)));
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}
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catch(...)
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{
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handle_set = false;
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throw;
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}
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decltype(ircd::fs::iou::system::handle_descriptor)
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ircd::fs::iou::system::handle_descriptor
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{
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"ircd::fs::iou sigfd",
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// allocator; custom allocation strategy because this handler
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// appears to excessively allocate and deallocate 120 bytes; this
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// is a simple asynchronous operation, we can do better (and perhaps
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// even better than this below).
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[](auto &handler, const size_t &size)
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{
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assert(ircd::fs::iou::system);
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auto &system(*ircd::fs::iou::system);
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if(unlikely(!system.handle_data))
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{
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system.handle_size = size;
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system.handle_data = std::make_unique<uint8_t[]>(size);
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}
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assert(system.handle_size == size);
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return system.handle_data.get();
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},
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// no deallocation; satisfied by class member unique_ptr
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[](auto &handler, void *const &ptr, const auto &size) {}
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};
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/// Handle notifications that requests are complete.
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void
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ircd::fs::iou::system::handle(const boost::system::error_code &ec,
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const size_t bytes)
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noexcept try
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{
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namespace errc = boost::system::errc;
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assert((bytes == 8 && !ec && ev_count >= 1) || (bytes == 0 && ec));
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assert(!ec || ec.category() == asio::error::get_system_category());
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assert(handle_set);
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handle_set = false;
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switch(ec.value())
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{
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case errc::success:
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handle_events();
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break;
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case errc::interrupted:
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break;
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case errc::operation_canceled:
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throw ctx::interrupted();
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__builtin_unreachable();
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default:
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throw_system_error(ec);
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__builtin_unreachable();
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}
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set_handle();
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}
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catch(const ctx::interrupted &)
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{
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log::debug
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{
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log, "iou context %p interrupted", this
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};
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ev_count = -1;
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dock.notify_all();
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}
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void
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ircd::fs::iou::system::handle_events()
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noexcept try
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{
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assert(!ctx::current);
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}
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|
catch(const std::exception &e)
|
|
{
|
|
log::error
|
|
{
|
|
log, "iou(%p) handle_events: %s",
|
|
this,
|
|
e.what()
|
|
};
|
|
}
|