mirror of
https://github.com/1f349/dendrite.git
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a49c9f01e2
This reduces the API requirements for the Events database to align with what is actually required.
334 lines
10 KiB
Go
334 lines
10 KiB
Go
// Copyright 2017 Vector Creations Ltd
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// Package types provides the types that are used internally within the roomserver.
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package types
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import (
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"encoding/json"
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"fmt"
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"sort"
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"strings"
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"sync"
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"github.com/matrix-org/gomatrixserverlib"
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"github.com/matrix-org/util"
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"golang.org/x/crypto/blake2b"
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)
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// EventTypeNID is a numeric ID for an event type.
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type EventTypeNID int64
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// EventStateKeyNID is a numeric ID for an event state_key.
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type EventStateKeyNID int64
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// EventNID is a numeric ID for an event.
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type EventNID int64
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// RoomNID is a numeric ID for a room.
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type RoomNID int64
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type EventMetadata struct {
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EventNID EventNID
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RoomNID RoomNID
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}
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// StateSnapshotNID is a numeric ID for the state at an event.
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type StateSnapshotNID int64
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// StateBlockNID is a numeric ID for a block of state data.
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// These blocks of state data are combined to form the actual state.
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type StateBlockNID int64
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// EventNIDs is used to sort and dedupe event NIDs.
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type EventNIDs []EventNID
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func (a EventNIDs) Len() int { return len(a) }
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func (a EventNIDs) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
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func (a EventNIDs) Less(i, j int) bool { return a[i] < a[j] }
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func (a EventNIDs) Hash() []byte {
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j, err := json.Marshal(a)
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if err != nil {
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return nil
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}
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h := blake2b.Sum256(j)
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return h[:]
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}
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// StateBlockNIDs is used to sort and dedupe state block NIDs.
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type StateBlockNIDs []StateBlockNID
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func (a StateBlockNIDs) Len() int { return len(a) }
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func (a StateBlockNIDs) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
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func (a StateBlockNIDs) Less(i, j int) bool { return a[i] < a[j] }
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func (a StateBlockNIDs) Hash() []byte {
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j, err := json.Marshal(a)
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if err != nil {
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return nil
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}
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h := blake2b.Sum256(j)
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return h[:]
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}
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// A StateKeyTuple is a pair of a numeric event type and a numeric state key.
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// It is used to lookup state entries.
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type StateKeyTuple struct {
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// The numeric ID for the event type.
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EventTypeNID EventTypeNID
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// The numeric ID for the state key.
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EventStateKeyNID EventStateKeyNID
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}
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func (a StateKeyTuple) IsCreate() bool {
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return a.EventTypeNID == MRoomCreateNID && a.EventStateKeyNID == EmptyStateKeyNID
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}
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// LessThan returns true if this state key is less than the other state key.
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// The ordering is arbitrary and is used to implement binary search and to efficiently deduplicate entries.
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func (a StateKeyTuple) LessThan(b StateKeyTuple) bool {
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if a.EventTypeNID != b.EventTypeNID {
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return a.EventTypeNID < b.EventTypeNID
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}
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return a.EventStateKeyNID < b.EventStateKeyNID
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}
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type StateKeyTupleSorter []StateKeyTuple
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func (s StateKeyTupleSorter) Len() int { return len(s) }
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func (s StateKeyTupleSorter) Less(i, j int) bool { return s[i].LessThan(s[j]) }
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func (s StateKeyTupleSorter) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
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// Check whether a tuple is in the list. Assumes that the list is sorted.
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func (s StateKeyTupleSorter) contains(value StateKeyTuple) bool {
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i := sort.Search(len(s), func(i int) bool { return !s[i].LessThan(value) })
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return i < len(s) && s[i] == value
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}
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// List the unique eventTypeNIDs and eventStateKeyNIDs.
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// Assumes that the list is sorted.
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func (s StateKeyTupleSorter) TypesAndStateKeysAsArrays() (eventTypeNIDs []int64, eventStateKeyNIDs []int64) {
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eventTypeNIDs = make([]int64, len(s))
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eventStateKeyNIDs = make([]int64, len(s))
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for i := range s {
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eventTypeNIDs[i] = int64(s[i].EventTypeNID)
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eventStateKeyNIDs[i] = int64(s[i].EventStateKeyNID)
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}
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eventTypeNIDs = eventTypeNIDs[:util.SortAndUnique(int64Sorter(eventTypeNIDs))]
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eventStateKeyNIDs = eventStateKeyNIDs[:util.SortAndUnique(int64Sorter(eventStateKeyNIDs))]
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return
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}
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type int64Sorter []int64
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func (s int64Sorter) Len() int { return len(s) }
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func (s int64Sorter) Less(i, j int) bool { return s[i] < s[j] }
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func (s int64Sorter) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
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// A StateEntry is an entry in the room state of a matrix room.
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type StateEntry struct {
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StateKeyTuple
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// The numeric ID for the event.
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EventNID EventNID
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}
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type StateEntries []StateEntry
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func (a StateEntries) Len() int { return len(a) }
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func (a StateEntries) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
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func (a StateEntries) Less(i, j int) bool { return a[i].EventNID < a[j].EventNID }
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// LessThan returns true if this state entry is less than the other state entry.
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// The ordering is arbitrary and is used to implement binary search and to efficiently deduplicate entries.
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func (a StateEntry) LessThan(b StateEntry) bool {
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if a.StateKeyTuple != b.StateKeyTuple {
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return a.StateKeyTuple.LessThan(b.StateKeyTuple)
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}
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return a.EventNID < b.EventNID
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}
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// Deduplicate takes a set of state entries and ensures that there are no
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// duplicate (event type, state key) tuples. If there are then we dedupe
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// them, making sure that the latest/highest NIDs are always chosen.
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func DeduplicateStateEntries(a []StateEntry) []StateEntry {
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if len(a) < 2 {
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return a
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}
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sort.SliceStable(a, func(i, j int) bool {
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return a[i].LessThan(a[j])
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})
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for i := 0; i < len(a)-1; i++ {
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if a[i].StateKeyTuple == a[i+1].StateKeyTuple {
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a = append(a[:i], a[i+1:]...)
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i--
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}
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}
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return a
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}
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// StateAtEvent is the state before and after a matrix event.
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type StateAtEvent struct {
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// The state before the event.
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BeforeStateSnapshotNID StateSnapshotNID
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// True if this StateEntry is rejected. State resolution should then treat this
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// StateEntry as being a message event (not a state event).
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IsRejected bool
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// The state entry for the event itself, allows us to calculate the state after the event.
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StateEntry
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}
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// IsStateEvent returns whether the event the state is at is a state event.
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func (s StateAtEvent) IsStateEvent() bool {
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return s.EventStateKeyNID != 0
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}
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// StateAtEventAndReference is StateAtEvent and gomatrixserverlib.EventReference glued together.
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// It is used when looking up the latest events in a room in the database.
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// The gomatrixserverlib.EventReference is used to check whether a new event references the event.
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// The StateAtEvent is used to construct the current state of the room from the latest events.
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type StateAtEventAndReference struct {
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StateAtEvent
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gomatrixserverlib.EventReference
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}
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type StateAtEventAndReferences []StateAtEventAndReference
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func (s StateAtEventAndReferences) Less(a, b int) bool {
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return strings.Compare(s[a].EventID, s[b].EventID) < 0
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}
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func (s StateAtEventAndReferences) Len() int {
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return len(s)
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}
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func (s StateAtEventAndReferences) Swap(a, b int) {
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s[a], s[b] = s[b], s[a]
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}
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func (s StateAtEventAndReferences) EventIDs() string {
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strs := make([]string, 0, len(s))
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for _, r := range s {
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strs = append(strs, r.EventID)
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}
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return "[" + strings.Join(strs, " ") + "]"
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}
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// An Event is a gomatrixserverlib.Event with the numeric event ID attached.
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// It is when performing bulk event lookup in the database.
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type Event struct {
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EventNID EventNID
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gomatrixserverlib.PDU
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}
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const (
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// MRoomCreateNID is the numeric ID for the "m.room.create" event type.
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MRoomCreateNID = 1
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// MRoomPowerLevelsNID is the numeric ID for the "m.room.power_levels" event type.
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MRoomPowerLevelsNID = 2
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// MRoomJoinRulesNID is the numeric ID for the "m.room.join_rules" event type.
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MRoomJoinRulesNID = 3
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// MRoomThirdPartyInviteNID is the numeric ID for the "m.room.third_party_invite" event type.
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MRoomThirdPartyInviteNID = 4
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// MRoomMemberNID is the numeric ID for the "m.room.member" event type.
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MRoomMemberNID = 5
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// MRoomRedactionNID is the numeric ID for the "m.room.redaction" event type.
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MRoomRedactionNID = 6
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// MRoomHistoryVisibilityNID is the numeric ID for the "m.room.history_visibility" event type.
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MRoomHistoryVisibilityNID = 7
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)
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const (
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// EmptyStateKeyNID is the numeric ID for the empty state key.
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EmptyStateKeyNID = 1
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)
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// StateBlockNIDList is used to return the result of bulk StateBlockNID lookups from the database.
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type StateBlockNIDList struct {
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StateSnapshotNID StateSnapshotNID
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StateBlockNIDs []StateBlockNID
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}
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// StateEntryList is used to return the result of bulk state entry lookups from the database.
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type StateEntryList struct {
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StateBlockNID StateBlockNID
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StateEntries []StateEntry
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}
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// A MissingEventError is an error that happened because the roomserver was
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// missing requested events from its database.
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type MissingEventError string
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func (e MissingEventError) Error() string { return string(e) }
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// A MissingStateError is an error that happened because the roomserver was
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// missing requested state snapshots from its databases.
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type MissingStateError string
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func (e MissingStateError) Error() string { return string(e) }
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// A RejectedError is returned when an event is stored as rejected. The error
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// contains the reason why.
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type RejectedError string
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func (e RejectedError) Error() string { return string(e) }
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// RoomInfo contains metadata about a room
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type RoomInfo struct {
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mu sync.RWMutex
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RoomNID RoomNID
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RoomVersion gomatrixserverlib.RoomVersion
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stateSnapshotNID StateSnapshotNID
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isStub bool
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}
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func (r *RoomInfo) StateSnapshotNID() StateSnapshotNID {
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r.mu.RLock()
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defer r.mu.RUnlock()
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return r.stateSnapshotNID
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}
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func (r *RoomInfo) IsStub() bool {
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r.mu.RLock()
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defer r.mu.RUnlock()
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return r.isStub
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}
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func (r *RoomInfo) SetStateSnapshotNID(nid StateSnapshotNID) {
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r.mu.Lock()
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defer r.mu.Unlock()
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r.stateSnapshotNID = nid
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}
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func (r *RoomInfo) SetIsStub(isStub bool) {
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r.mu.Lock()
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defer r.mu.Unlock()
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r.isStub = isStub
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}
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func (r *RoomInfo) CopyFrom(r2 *RoomInfo) {
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r.mu.Lock()
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defer r.mu.Unlock()
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r2.mu.RLock()
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defer r2.mu.RUnlock()
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r.RoomNID = r2.RoomNID
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r.RoomVersion = r2.RoomVersion
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r.stateSnapshotNID = r2.stateSnapshotNID
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r.isStub = r2.isStub
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}
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var ErrorInvalidRoomInfo = fmt.Errorf("room info is invalid")
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