mirror of
https://github.com/octoleo/syncthing.git
synced 2024-11-09 14:50:56 +00:00
558 lines
12 KiB
Go
558 lines
12 KiB
Go
// Copyright (C) 2014 The Syncthing Authors.
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//
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// This Source Code Form is subject to the terms of the Mozilla Public
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// License, v. 2.0. If a copy of the MPL was not distributed with this file,
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// You can obtain one at https://mozilla.org/MPL/2.0/.
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// Package events provides event subscription and polling functionality.
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package events
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import (
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"context"
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"encoding/json"
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"errors"
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"fmt"
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"runtime"
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"time"
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"github.com/thejerf/suture"
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"github.com/syncthing/syncthing/lib/sync"
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"github.com/syncthing/syncthing/lib/util"
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)
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type EventType int
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const (
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Starting EventType = 1 << iota
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StartupComplete
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DeviceDiscovered
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DeviceConnected
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DeviceDisconnected
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DeviceRejected
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DevicePaused
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DeviceResumed
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LocalChangeDetected
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RemoteChangeDetected
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LocalIndexUpdated
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RemoteIndexUpdated
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ItemStarted
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ItemFinished
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StateChanged
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FolderRejected
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ConfigSaved
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DownloadProgress
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RemoteDownloadProgress
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FolderSummary
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FolderCompletion
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FolderErrors
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FolderScanProgress
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FolderPaused
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FolderResumed
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FolderWatchStateChanged
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ListenAddressesChanged
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LoginAttempt
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AllEvents = (1 << iota) - 1
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)
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var (
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runningTests = false
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errNoop = errors.New("method of a noop object called")
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)
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const eventLogTimeout = 15 * time.Millisecond
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func (t EventType) String() string {
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switch t {
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case Starting:
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return "Starting"
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case StartupComplete:
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return "StartupComplete"
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case DeviceDiscovered:
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return "DeviceDiscovered"
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case DeviceConnected:
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return "DeviceConnected"
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case DeviceDisconnected:
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return "DeviceDisconnected"
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case DeviceRejected:
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return "DeviceRejected"
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case LocalChangeDetected:
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return "LocalChangeDetected"
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case RemoteChangeDetected:
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return "RemoteChangeDetected"
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case LocalIndexUpdated:
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return "LocalIndexUpdated"
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case RemoteIndexUpdated:
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return "RemoteIndexUpdated"
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case ItemStarted:
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return "ItemStarted"
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case ItemFinished:
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return "ItemFinished"
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case StateChanged:
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return "StateChanged"
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case FolderRejected:
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return "FolderRejected"
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case ConfigSaved:
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return "ConfigSaved"
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case DownloadProgress:
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return "DownloadProgress"
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case RemoteDownloadProgress:
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return "RemoteDownloadProgress"
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case FolderSummary:
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return "FolderSummary"
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case FolderCompletion:
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return "FolderCompletion"
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case FolderErrors:
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return "FolderErrors"
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case DevicePaused:
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return "DevicePaused"
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case DeviceResumed:
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return "DeviceResumed"
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case FolderScanProgress:
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return "FolderScanProgress"
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case FolderPaused:
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return "FolderPaused"
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case FolderResumed:
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return "FolderResumed"
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case ListenAddressesChanged:
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return "ListenAddressesChanged"
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case LoginAttempt:
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return "LoginAttempt"
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case FolderWatchStateChanged:
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return "FolderWatchStateChanged"
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default:
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return "Unknown"
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}
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}
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func (t EventType) MarshalText() ([]byte, error) {
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return []byte(t.String()), nil
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}
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func (t *EventType) UnmarshalJSON(b []byte) error {
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var s string
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if err := json.Unmarshal(b, &s); err != nil {
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return err
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}
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*t = UnmarshalEventType(s)
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return nil
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}
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func UnmarshalEventType(s string) EventType {
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switch s {
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case "Starting":
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return Starting
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case "StartupComplete":
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return StartupComplete
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case "DeviceDiscovered":
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return DeviceDiscovered
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case "DeviceConnected":
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return DeviceConnected
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case "DeviceDisconnected":
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return DeviceDisconnected
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case "DeviceRejected":
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return DeviceRejected
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case "LocalChangeDetected":
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return LocalChangeDetected
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case "RemoteChangeDetected":
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return RemoteChangeDetected
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case "LocalIndexUpdated":
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return LocalIndexUpdated
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case "RemoteIndexUpdated":
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return RemoteIndexUpdated
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case "ItemStarted":
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return ItemStarted
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case "ItemFinished":
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return ItemFinished
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case "StateChanged":
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return StateChanged
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case "FolderRejected":
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return FolderRejected
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case "ConfigSaved":
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return ConfigSaved
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case "DownloadProgress":
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return DownloadProgress
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case "RemoteDownloadProgress":
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return RemoteDownloadProgress
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case "FolderSummary":
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return FolderSummary
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case "FolderCompletion":
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return FolderCompletion
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case "FolderErrors":
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return FolderErrors
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case "DevicePaused":
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return DevicePaused
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case "DeviceResumed":
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return DeviceResumed
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case "FolderScanProgress":
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return FolderScanProgress
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case "FolderPaused":
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return FolderPaused
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case "FolderResumed":
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return FolderResumed
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case "ListenAddressesChanged":
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return ListenAddressesChanged
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case "LoginAttempt":
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return LoginAttempt
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case "FolderWatchStateChanged":
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return FolderWatchStateChanged
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default:
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return 0
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}
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}
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const BufferSize = 64
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type Logger interface {
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suture.Service
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Log(t EventType, data interface{})
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Subscribe(mask EventType) Subscription
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}
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type logger struct {
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suture.Service
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subs []*subscription
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nextSubscriptionIDs []int
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nextGlobalID int
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timeout *time.Timer
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events chan Event
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funcs chan func(context.Context)
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toUnsubscribe chan *subscription
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stop chan struct{}
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}
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type Event struct {
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// Per-subscription sequential event ID. Named "id" for backwards compatibility with the REST API
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SubscriptionID int `json:"id"`
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// Global ID of the event across all subscriptions
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GlobalID int `json:"globalID"`
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Time time.Time `json:"time"`
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Type EventType `json:"type"`
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Data interface{} `json:"data"`
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}
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type Subscription interface {
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C() <-chan Event
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Poll(timeout time.Duration) (Event, error)
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Mask() EventType
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Unsubscribe()
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}
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type subscription struct {
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mask EventType
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events chan Event
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toUnsubscribe chan *subscription
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timeout *time.Timer
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ctx context.Context
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}
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var (
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ErrTimeout = errors.New("timeout")
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ErrClosed = errors.New("closed")
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)
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func NewLogger() Logger {
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l := &logger{
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timeout: time.NewTimer(time.Second),
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events: make(chan Event, BufferSize),
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funcs: make(chan func(context.Context)),
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toUnsubscribe: make(chan *subscription),
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}
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l.Service = util.AsService(l.serve, l.String())
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// Make sure the timer is in the stopped state and hasn't fired anything
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// into the channel.
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if !l.timeout.Stop() {
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<-l.timeout.C
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}
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return l
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}
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func (l *logger) serve(ctx context.Context) {
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loop:
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for {
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select {
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case e := <-l.events:
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// Incoming events get sent
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l.sendEvent(e)
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case fn := <-l.funcs:
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// Subscriptions are handled here.
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fn(ctx)
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case s := <-l.toUnsubscribe:
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l.unsubscribe(s)
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case <-ctx.Done():
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break loop
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}
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}
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// Closing the event channels corresponds to what happens when a
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// subscription is unsubscribed; this stops any BufferedSubscription,
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// makes Poll() return ErrClosed, etc.
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for _, s := range l.subs {
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close(s.events)
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}
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}
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func (l *logger) Log(t EventType, data interface{}) {
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l.events <- Event{
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Time: time.Now(),
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Type: t,
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Data: data,
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// SubscriptionID and GlobalID are set in sendEvent
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}
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}
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func (l *logger) sendEvent(e Event) {
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l.nextGlobalID++
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dl.Debugln("log", l.nextGlobalID, e.Type, e.Data)
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e.GlobalID = l.nextGlobalID
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for i, s := range l.subs {
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if s.mask&e.Type != 0 {
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e.SubscriptionID = l.nextSubscriptionIDs[i]
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l.nextSubscriptionIDs[i]++
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l.timeout.Reset(eventLogTimeout)
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timedOut := false
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select {
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case s.events <- e:
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case <-l.timeout.C:
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// if s.events is not ready, drop the event
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timedOut = true
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}
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// If stop returns false it already sent something to the
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// channel. If we didn't already read it above we must do so now
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// or we get a spurious timeout on the next loop.
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if !l.timeout.Stop() && !timedOut {
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<-l.timeout.C
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}
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}
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}
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}
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func (l *logger) Subscribe(mask EventType) Subscription {
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res := make(chan Subscription)
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l.funcs <- func(ctx context.Context) {
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dl.Debugln("subscribe", mask)
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s := &subscription{
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mask: mask,
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events: make(chan Event, BufferSize),
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toUnsubscribe: l.toUnsubscribe,
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timeout: time.NewTimer(0),
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ctx: ctx,
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}
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// We need to create the timeout timer in the stopped, non-fired state so
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// that Subscription.Poll() can safely reset it and select on the timeout
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// channel. This ensures the timer is stopped and the channel drained.
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if runningTests {
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// Make the behavior stable when running tests to avoid randomly
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// varying test coverage. This ensures, in practice if not in
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// theory, that the timer fires and we take the true branch of the
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// next if.
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runtime.Gosched()
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}
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if !s.timeout.Stop() {
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<-s.timeout.C
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}
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l.subs = append(l.subs, s)
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l.nextSubscriptionIDs = append(l.nextSubscriptionIDs, 1)
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res <- s
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}
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return <-res
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}
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func (l *logger) unsubscribe(s *subscription) {
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dl.Debugln("unsubscribe", s.mask)
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for i, ss := range l.subs {
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if s == ss {
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last := len(l.subs) - 1
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l.subs[i] = l.subs[last]
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l.subs[last] = nil
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l.subs = l.subs[:last]
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l.nextSubscriptionIDs[i] = l.nextSubscriptionIDs[last]
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l.nextSubscriptionIDs[last] = 0
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l.nextSubscriptionIDs = l.nextSubscriptionIDs[:last]
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break
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}
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}
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close(s.events)
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}
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func (l *logger) String() string {
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return fmt.Sprintf("events.Logger/@%p", l)
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}
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// Poll returns an event from the subscription or an error if the poll times
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// out of the event channel is closed. Poll should not be called concurrently
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// from multiple goroutines for a single subscription.
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func (s *subscription) Poll(timeout time.Duration) (Event, error) {
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dl.Debugln("poll", timeout)
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s.timeout.Reset(timeout)
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select {
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case e, ok := <-s.events:
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if !ok {
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return e, ErrClosed
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}
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if runningTests {
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// Make the behavior stable when running tests to avoid randomly
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// varying test coverage. This ensures, in practice if not in
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// theory, that the timer fires and we take the true branch of
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// the next if.
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s.timeout.Reset(0)
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runtime.Gosched()
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}
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if !s.timeout.Stop() {
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// The timeout must be stopped and possibly drained to be ready
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// for reuse in the next call.
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<-s.timeout.C
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}
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return e, nil
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case <-s.timeout.C:
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return Event{}, ErrTimeout
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}
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}
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func (s *subscription) C() <-chan Event {
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return s.events
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}
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func (s *subscription) Mask() EventType {
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return s.mask
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}
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func (s *subscription) Unsubscribe() {
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select {
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case s.toUnsubscribe <- s:
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case <-s.ctx.Done():
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}
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}
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type bufferedSubscription struct {
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sub Subscription
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buf []Event
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next int
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cur int // Current SubscriptionID
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mut sync.Mutex
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cond *sync.TimeoutCond
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}
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type BufferedSubscription interface {
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Since(id int, into []Event, timeout time.Duration) []Event
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Mask() EventType
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}
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func NewBufferedSubscription(s Subscription, size int) BufferedSubscription {
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bs := &bufferedSubscription{
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sub: s,
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buf: make([]Event, size),
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mut: sync.NewMutex(),
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}
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bs.cond = sync.NewTimeoutCond(bs.mut)
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go bs.pollingLoop()
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return bs
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}
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func (s *bufferedSubscription) pollingLoop() {
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for ev := range s.sub.C() {
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s.mut.Lock()
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s.buf[s.next] = ev
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s.next = (s.next + 1) % len(s.buf)
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s.cur = ev.SubscriptionID
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s.cond.Broadcast()
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s.mut.Unlock()
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}
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}
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func (s *bufferedSubscription) Since(id int, into []Event, timeout time.Duration) []Event {
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s.mut.Lock()
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defer s.mut.Unlock()
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// Check once first before generating the TimeoutCondWaiter
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if id >= s.cur {
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waiter := s.cond.SetupWait(timeout)
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defer waiter.Stop()
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for id >= s.cur {
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if eventsAvailable := waiter.Wait(); !eventsAvailable {
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// Timed out
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return into
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}
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}
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}
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for i := s.next; i < len(s.buf); i++ {
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if s.buf[i].SubscriptionID > id {
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into = append(into, s.buf[i])
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}
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}
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for i := 0; i < s.next; i++ {
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if s.buf[i].SubscriptionID > id {
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into = append(into, s.buf[i])
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}
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}
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return into
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}
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func (s *bufferedSubscription) Mask() EventType {
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return s.sub.Mask()
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}
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// Error returns a string pointer suitable for JSON marshalling errors. It
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// retains the "null on success" semantics, but ensures the error result is a
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// string regardless of the underlying concrete error type.
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func Error(err error) *string {
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if err == nil {
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return nil
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}
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str := err.Error()
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return &str
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}
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|
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type noopLogger struct{}
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var NoopLogger Logger = &noopLogger{}
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|
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func (*noopLogger) Serve() {}
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func (*noopLogger) Stop() {}
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func (*noopLogger) Log(t EventType, data interface{}) {}
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func (*noopLogger) Subscribe(mask EventType) Subscription {
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return &noopSubscription{}
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}
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type noopSubscription struct{}
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func (*noopSubscription) C() <-chan Event {
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return nil
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}
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func (*noopSubscription) Poll(timeout time.Duration) (Event, error) {
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return Event{}, errNoop
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}
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func (s *noopSubscription) Mask() EventType {
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return 0
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}
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func (*noopSubscription) Unsubscribe() {}
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