mirror of
https://github.com/matrix-construct/construct
synced 2024-11-15 22:41:12 +01:00
304 lines
8.8 KiB
C++
304 lines
8.8 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_IRCD_M_VM_H
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/// Matrix Virtual Machine
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///
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namespace ircd::m::vm
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{
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struct error; // custom exception
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struct opts;
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struct copts;
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struct eval;
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struct phase;
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struct accepted;
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enum fault :uint;
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using fault_t = std::underlying_type<fault>::type;
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extern log::log log;
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extern ctx::shared_view<accepted> accept;
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extern uint64_t current_sequence;
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extern const opts default_opts;
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extern const copts default_copts;
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string_view reflect(const fault &);
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const uint64_t &sequence(const eval &);
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uint64_t retired_sequence(id::event::buf &);
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uint64_t retired_sequence();
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}
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/// Event Evaluation Device
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///
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/// This object conducts the evaluation of an event or a tape of multiple
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/// events. An event is evaluated in an attempt to execute it. Events which
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/// fail during evaluation won't be executed; such is the case for events which
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/// have already been executed, or events which are invalid or lead to invalid
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/// transitions or actions of the machine etc.
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///
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struct ircd::m::vm::eval
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:instance_list<eval>
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{
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static uint64_t id_ctr; // monotonic
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const vm::opts *opts {&default_opts};
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const vm::copts *copts {nullptr};
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ctx::ctx *ctx {ctx::current};
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uint64_t id {++id_ctr};
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string_view room_id;
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const json::iov *issue {nullptr};
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const event *event_ {nullptr};
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vm::phase *phase {nullptr};
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uint64_t sequence {0};
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db::txn *txn {nullptr};
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event::id::buf event_id;
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public:
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operator const event::id::buf &() const;
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fault operator()(const event &);
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fault operator()(json::iov &event, const json::iov &content);
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fault operator()(const room &, json::iov &event, const json::iov &content);
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eval(const vm::opts &);
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eval(const vm::copts &);
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eval(const event &, const vm::opts & = default_opts);
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eval(json::iov &event, const json::iov &content, const vm::copts & = default_copts);
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eval(const room &, json::iov &event, const json::iov &content);
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eval() = default;
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eval(eval &&) = delete;
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eval(const eval &) = delete;
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~eval() noexcept;
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};
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/// Evaluation faults. These are reasons which evaluation has halted but may
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/// continue after the user defaults the fault. They are basically types of
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/// interrupts and traps, which are supposed to be recoverable. Only the
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/// GENERAL protection fault (#gp) is an abort and is not supposed to be
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/// recoverable. The fault codes have the form of bitflags so they can be
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/// used in masks; outside of that case only one fault is dealt with at
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/// a time so they can be switched as they appear in the enum.
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///
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enum ircd::m::vm::fault
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:uint
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{
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ACCEPT = 0x00, ///< No fault.
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EXISTS = 0x01, ///< Replaying existing event. (#ex)
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INVALID = 0x02, ///< Non-conforming event format. (#ud)
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DEBUGSTEP = 0x04, ///< Debug step. (#db)
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BREAKPOINT = 0x08, ///< Debug breakpoint. (#bp)
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GENERAL = 0x10, ///< General protection fault. (#gp)
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EVENT = 0x20, ///< Eval requires addl events in the ef register (#ef)
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STATE = 0x40, ///< Required state is missing (#st)
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INTERRUPT = 0x80, ///< ctx::interrupted (#nmi)
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};
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/// Evaluation Options
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struct ircd::m::vm::opts
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{
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/// Make writes to database
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bool write {true};
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/// Apply effects of the eval
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bool effects {true};
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/// Broadcast to clients/servers. When true, individual notify options
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/// that follow are considered. When false, no notifications occur.
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short notify {true};
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/// Broadcast to local clients (/sync stream).
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bool notify_clients {true};
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/// Broadcast to federation servers (/federation/send/).
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bool notify_servers {true};
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/// False to allow a dirty conforms report (not recommended).
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bool conforming {true};
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/// Mask of conformity failures to allow without considering dirty.
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event::conforms non_conform;
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/// If the event was already checked before the eval, set this to true
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/// and include the report (see below).
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bool conformed {false};
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/// When conformed=true, this report will be included instead of generating
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/// one during the eval. This is useful if a conformity check was already
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/// done before eval.
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event::conforms report;
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/// Toggles whether event may be considered a "present event" and may
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/// update the optimized present state table of the room if it is proper.
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bool present {true};
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/// Toggles whether event may be added to the room head table which means
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/// it is considered unreferenced by any other event at this time. It is
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/// safe for this to always be true if events are evaluated in order. If
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/// `present` is false this should be set to false but they are not tied.
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bool head {true};
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/// Toggles whether the prev_events of this event are removed from the
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/// room head table, now that this event has referenced them. It is safe
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/// for this to always be true.
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bool refs {true};
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/// Toggles whether the state btree is updated; this should be consistently
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/// true or false for all events in a room.
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bool history {true};
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/// Bypass check for event having already been evaluated so it can be
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/// replayed through the system (not recommended).
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bool replays {false};
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// Verify the origin signature
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bool verify {true};
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/// TODO: Y
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bool prev_check_exists {true};
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/// TODO: Y
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bool head_must_exist {false};
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/// Evaluators can set this value to optimize the creation of the database
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/// transaction where the event will be stored. This value should be set
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/// to the amount of space the event consumes; the JSON-serialized size is
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/// a good value here. Default of -1 will automatically use serialized().
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size_t reserve_bytes = -1;
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/// This value is added to reserve_bytes to account for indexing overhead
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/// in the database transaction allocation. Most evaluators have little
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/// reason to ever adjust this.
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size_t reserve_index {1024};
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/// Mask of faults that are not thrown as exceptions out of eval(). If
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/// masked, the fault is returned from eval(). By default, the EXISTS
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/// fault is masked which means existing events won't kill eval loops
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/// as well as the debug related.
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fault_t nothrows
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{
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EXISTS | DEBUGSTEP | BREAKPOINT
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};
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/// Mask of faults that are logged to the error facility in vm::log.
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fault_t errorlog
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{
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~(EXISTS | DEBUGSTEP | BREAKPOINT)
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};
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/// Mask of faults that are logged to the warning facility in vm::log
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fault_t warnlog
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{
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EXISTS
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};
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/// Whether to log a debug message on successful eval.
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bool debuglog_accept {false};
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/// Whether to log an info message on successful eval.
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bool infolog_accept {false};
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};
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/// Extension structure to vm::opts which includes additional options for
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/// commissioning events originating from this server which are then passed
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/// through eval (this process is committing).
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struct ircd::m::vm::copts
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:opts
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{
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/// Hash and include hashes object.
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bool add_hash {true};
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/// Sign and include signatures object
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bool add_sig {true};
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/// Generate and include event_id
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bool add_event_id {true};
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/// Include our origin
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bool add_origin {true};
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/// Include origin_server_ts
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bool add_origin_server_ts {true};
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/// Add prev_events
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bool add_prev_events {true};
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/// Add prev_state
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bool add_prev_state {true};
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/// Add auth_events
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bool add_auth_events {true};
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/// Whether to log a debug message before commit
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bool debuglog_precommit {false};
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/// Whether to log an info message after commit accepted
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bool infolog_postcommit {false};
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};
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struct ircd::m::vm::phase
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:instance_list<phase>
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{
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string_view name;
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std::function<void (eval &)> function;
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void operator()(eval &);
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phase(const string_view &name, decltype(function) = nullptr);
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};
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struct ircd::m::vm::accepted
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:m::event
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{
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ctx::ctx *context;
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const vm::opts *opts;
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const event::conforms *report;
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shared_buffer<mutable_buffer> strung;
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accepted(const m::event &event,
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const vm::opts *const &opts,
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const event::conforms *const &report);
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};
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struct ircd::m::vm::error
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:m::error
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{
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vm::fault code;
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template<class... args> error(const fault &code, const char *const &fmt, args&&... a);
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template<class... args> error(const char *const &fmt, args&&... a);
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};
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template<class... args>
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ircd::m::vm::error::error(const fault &code,
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const char *const &fmt,
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args&&... a)
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:m::error
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{
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http::NOT_MODIFIED, "M_VM_FAULT", fmt, std::forward<args>(a)...
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}
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,code
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{
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code
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}
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{}
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template<class... args>
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ircd::m::vm::error::error(const char *const &fmt,
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args&&... a)
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:m::error
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{
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http::INTERNAL_SERVER_ERROR, "M_VM_FAULT", fmt, std::forward<args>(a)...
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}
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,code
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{
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fault::GENERAL
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}
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{}
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