bug_excerpt.go

  1package cache
  2
  3import (
  4	"encoding/gob"
  5	"fmt"
  6
  7	"github.com/MichaelMure/git-bug/bug"
  8	"github.com/MichaelMure/git-bug/entity"
  9	"github.com/MichaelMure/git-bug/identity"
 10	"github.com/MichaelMure/git-bug/util/lamport"
 11)
 12
 13// Package initialisation used to register the type for (de)serialization
 14func init() {
 15	gob.Register(BugExcerpt{})
 16}
 17
 18// BugExcerpt hold a subset of the bug values to be able to sort and filter bugs
 19// efficiently without having to read and compile each raw bugs.
 20type BugExcerpt struct {
 21	Id entity.Id
 22
 23	CreateLamportTime lamport.Time
 24	EditLamportTime   lamport.Time
 25	CreateUnixTime    int64
 26	EditUnixTime      int64
 27
 28	Status       bug.Status
 29	Labels       []bug.Label
 30	Title        string
 31	LenComments  int
 32	Actors       []entity.Id
 33	Participants []entity.Id
 34
 35	// If author is identity.Bare, LegacyAuthor is set
 36	// If author is identity.Identity, AuthorId is set and data is deported
 37	// in a IdentityExcerpt
 38	LegacyAuthor LegacyAuthorExcerpt
 39	AuthorId     entity.Id
 40
 41	CreateMetadata map[string]string
 42}
 43
 44// identity.Bare data are directly embedded in the bug excerpt
 45type LegacyAuthorExcerpt struct {
 46	Name  string
 47	Login string
 48}
 49
 50func (l LegacyAuthorExcerpt) DisplayName() string {
 51	switch {
 52	case l.Name == "" && l.Login != "":
 53		return l.Login
 54	case l.Name != "" && l.Login == "":
 55		return l.Name
 56	case l.Name != "" && l.Login != "":
 57		return fmt.Sprintf("%s (%s)", l.Name, l.Login)
 58	}
 59
 60	panic("invalid person data")
 61}
 62
 63func NewBugExcerpt(b bug.Interface, snap *bug.Snapshot) *BugExcerpt {
 64	participantsIds := make([]entity.Id, len(snap.Participants))
 65	for i, participant := range snap.Participants {
 66		participantsIds[i] = participant.Id()
 67	}
 68
 69	actorsIds := make([]entity.Id, len(snap.Actors))
 70	for i, actor := range snap.Actors {
 71		actorsIds[i] = actor.Id()
 72	}
 73
 74	e := &BugExcerpt{
 75		Id:                b.Id(),
 76		CreateLamportTime: b.CreateLamportTime(),
 77		EditLamportTime:   b.EditLamportTime(),
 78		CreateUnixTime:    b.FirstOp().GetUnixTime(),
 79		EditUnixTime:      snap.LastEditUnix(),
 80		Status:            snap.Status,
 81		Labels:            snap.Labels,
 82		Actors:            actorsIds,
 83		Participants:      participantsIds,
 84		Title:             snap.Title,
 85		LenComments:       len(snap.Comments),
 86		CreateMetadata:    b.FirstOp().AllMetadata(),
 87	}
 88
 89	switch snap.Author.(type) {
 90	case *identity.Identity:
 91		e.AuthorId = snap.Author.Id()
 92	case *identity.Bare:
 93		e.LegacyAuthor = LegacyAuthorExcerpt{
 94			Login: snap.Author.Login(),
 95			Name:  snap.Author.Name(),
 96		}
 97	default:
 98		panic("unhandled identity type")
 99	}
100
101	return e
102}
103
104/*
105 * Sorting
106 */
107
108type BugsById []*BugExcerpt
109
110func (b BugsById) Len() int {
111	return len(b)
112}
113
114func (b BugsById) Less(i, j int) bool {
115	return b[i].Id < b[j].Id
116}
117
118func (b BugsById) Swap(i, j int) {
119	b[i], b[j] = b[j], b[i]
120}
121
122type BugsByCreationTime []*BugExcerpt
123
124func (b BugsByCreationTime) Len() int {
125	return len(b)
126}
127
128func (b BugsByCreationTime) Less(i, j int) bool {
129	if b[i].CreateLamportTime < b[j].CreateLamportTime {
130		return true
131	}
132
133	if b[i].CreateLamportTime > b[j].CreateLamportTime {
134		return false
135	}
136
137	// When the logical clocks are identical, that means we had a concurrent
138	// edition. In this case we rely on the timestamp. While the timestamp might
139	// be incorrect due to a badly set clock, the drift in sorting is bounded
140	// by the first sorting using the logical clock. That means that if users
141	// synchronize their bugs regularly, the timestamp will rarely be used, and
142	// should still provide a kinda accurate sorting when needed.
143	return b[i].CreateUnixTime < b[j].CreateUnixTime
144}
145
146func (b BugsByCreationTime) Swap(i, j int) {
147	b[i], b[j] = b[j], b[i]
148}
149
150type BugsByEditTime []*BugExcerpt
151
152func (b BugsByEditTime) Len() int {
153	return len(b)
154}
155
156func (b BugsByEditTime) Less(i, j int) bool {
157	if b[i].EditLamportTime < b[j].EditLamportTime {
158		return true
159	}
160
161	if b[i].EditLamportTime > b[j].EditLamportTime {
162		return false
163	}
164
165	// When the logical clocks are identical, that means we had a concurrent
166	// edition. In this case we rely on the timestamp. While the timestamp might
167	// be incorrect due to a badly set clock, the drift in sorting is bounded
168	// by the first sorting using the logical clock. That means that if users
169	// synchronize their bugs regularly, the timestamp will rarely be used, and
170	// should still provide a kinda accurate sorting when needed.
171	return b[i].EditUnixTime < b[j].EditUnixTime
172}
173
174func (b BugsByEditTime) Swap(i, j int) {
175	b[i], b[j] = b[j], b[i]
176}