310 lines
8.0 KiB
Go
310 lines
8.0 KiB
Go
package protocol
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import (
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"crypto/ecdsa"
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"encoding/hex"
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"errors"
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"math/rand"
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"github.com/status-im/status-go/eth-node/crypto"
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"github.com/status-im/status-go/eth-node/types"
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"github.com/status-im/status-go/protocol/common"
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"github.com/status-im/status-go/protocol/protobuf"
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v1protocol "github.com/status-im/status-go/protocol/v1"
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)
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var chatColors = []string{
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"#fa6565", // red
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"#887af9", // blue
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"#FE8F59", // orange
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"#7cda00", // green
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"#51d0f0", // light-blue
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"#d37ef4", // purple
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}
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type ChatType int
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const (
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ChatTypeOneToOne ChatType = iota + 1
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ChatTypePublic
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ChatTypePrivateGroupChat
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)
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type Chat struct {
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// ID is the id of the chat, for public chats it is the name e.g. status, for one-to-one
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// is the hex encoded public key and for group chats is a random uuid appended with
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// the hex encoded pk of the creator of the chat
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ID string `json:"id"`
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Name string `json:"name"`
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Color string `json:"color"`
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// Active indicates whether the chat has been soft deleted
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Active bool `json:"active"`
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ChatType ChatType `json:"chatType"`
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// Timestamp indicates the last time this chat has received/sent a message
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Timestamp int64 `json:"timestamp"`
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// LastClockValue indicates the last clock value to be used when sending messages
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LastClockValue uint64 `json:"lastClockValue"`
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// DeletedAtClockValue indicates the clock value at time of deletion, messages
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// with lower clock value of this should be discarded
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DeletedAtClockValue uint64 `json:"deletedAtClockValue"`
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// Denormalized fields
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UnviewedMessagesCount uint `json:"unviewedMessagesCount"`
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LastMessage *common.Message `json:"lastMessage"`
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// Group chat fields
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// Members are the members who have been invited to the group chat
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Members []ChatMember `json:"members"`
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// MembershipUpdates is all the membership events in the chat
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MembershipUpdates []v1protocol.MembershipUpdateEvent `json:"membershipUpdateEvents"`
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// Generated username name of the chat for one-to-ones
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Alias string `json:"alias,omitempty"`
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// Identicon generated from public key
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Identicon string `json:"identicon"`
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// Muted is used to check whether we want to receive
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// push notifications for this chat
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Muted bool `json:"muted,omitempty"`
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// Public key of administrator who created invitation link
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InvitationAdmin string `json:"invitationAdmin,omitempty"`
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}
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func (c *Chat) PublicKey() (*ecdsa.PublicKey, error) {
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// For one to one chatID is an encoded public key
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if c.ChatType != ChatTypeOneToOne {
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return nil, nil
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}
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pkey, err := hex.DecodeString(c.ID[2:])
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if err != nil {
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return nil, err
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}
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// Safety check, make sure is well formed
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return crypto.UnmarshalPubkey(pkey)
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}
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func (c *Chat) Public() bool {
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return c.ChatType == ChatTypePublic
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}
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func (c *Chat) OneToOne() bool {
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return c.ChatType == ChatTypeOneToOne
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}
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func (c *Chat) Validate() error {
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if c.ID == "" {
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return errors.New("chatID can't be blank")
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}
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if c.OneToOne() {
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_, err := c.PublicKey()
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return err
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}
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return nil
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}
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func (c *Chat) MembersAsPublicKeys() ([]*ecdsa.PublicKey, error) {
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publicKeys := make([]string, len(c.Members))
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for idx, item := range c.Members {
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publicKeys[idx] = item.ID
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}
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return stringSliceToPublicKeys(publicKeys, true)
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}
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func (c *Chat) JoinedMembersAsPublicKeys() ([]*ecdsa.PublicKey, error) {
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var publicKeys []string
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for _, member := range c.Members {
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if member.Joined {
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publicKeys = append(publicKeys, member.ID)
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}
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}
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return stringSliceToPublicKeys(publicKeys, true)
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}
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func (c *Chat) HasMember(memberID string) bool {
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for _, member := range c.Members {
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if memberID == member.ID {
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return true
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}
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}
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return false
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}
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func (c *Chat) updateChatFromGroupMembershipChanges(myID string, g *v1protocol.Group) {
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// Check if we were already in the chat
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hadJoined := c.HasMember(myID)
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// ID
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c.ID = g.ChatID()
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// Name
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c.Name = g.Name()
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// Members
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members := g.Members()
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admins := g.Admins()
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joined := g.Joined()
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chatMembers := make([]ChatMember, 0, len(members))
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for _, m := range members {
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// Check if we joined thanks to these changes, if so, make chat active
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if m == myID && !hadJoined {
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c.Active = true
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}
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chatMember := ChatMember{
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ID: m,
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}
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chatMember.Admin = stringSliceContains(admins, m)
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chatMember.Joined = stringSliceContains(joined, m)
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chatMembers = append(chatMembers, chatMember)
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}
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c.Members = chatMembers
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// MembershipUpdates
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c.MembershipUpdates = g.Events()
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}
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// NextClockAndTimestamp returns the next clock value
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// and the current timestamp
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func (c *Chat) NextClockAndTimestamp(timesource TimeSource) (uint64, uint64) {
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clock := c.LastClockValue
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timestamp := timesource.GetCurrentTime()
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if clock == 0 || clock < timestamp {
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clock = timestamp
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} else {
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clock = clock + 1
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}
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return clock, timestamp
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}
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func (c *Chat) UpdateFromMessage(message *common.Message, timesource TimeSource) error {
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c.Timestamp = int64(timesource.GetCurrentTime())
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// If the clock of the last message is lower, we set the message
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if c.LastMessage == nil || c.LastMessage.Clock <= message.Clock {
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c.LastMessage = message
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}
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// If the clock is higher we set the clock
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if c.LastClockValue < message.Clock {
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c.LastClockValue = message.Clock
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}
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return nil
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}
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// ChatMembershipUpdate represent an event on membership of the chat
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type ChatMembershipUpdate struct {
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// Unique identifier for the event
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ID string `json:"id"`
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// Type indicates the kind of event
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Type protobuf.MembershipUpdateEvent_EventType `json:"type"`
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// Name represents the name in the event of changing name events
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Name string `json:"name,omitempty"`
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// Clock value of the event
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ClockValue uint64 `json:"clockValue"`
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// Signature of the event
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Signature string `json:"signature"`
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// Hex encoded public key of the creator of the event
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From string `json:"from"`
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// Target of the event for single-target events
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Member string `json:"member,omitempty"`
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// Target of the event for multi-target events
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Members []string `json:"members,omitempty"`
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}
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// ChatMember represents a member who participates in a group chat
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type ChatMember struct {
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// ID is the hex encoded public key of the member
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ID string `json:"id"`
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// Admin indicates if the member is an admin of the group chat
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Admin bool `json:"admin"`
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// Joined indicates if the member has joined the group chat
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Joined bool `json:"joined"`
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}
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func (c ChatMember) PublicKey() (*ecdsa.PublicKey, error) {
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b, err := types.DecodeHex(c.ID)
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if err != nil {
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return nil, err
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}
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return crypto.UnmarshalPubkey(b)
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}
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func oneToOneChatID(publicKey *ecdsa.PublicKey) string {
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return types.EncodeHex(crypto.FromECDSAPub(publicKey))
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}
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func OneToOneFromPublicKey(pk *ecdsa.PublicKey, timesource TimeSource) *Chat {
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chatID := types.EncodeHex(crypto.FromECDSAPub(pk))
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newChat := CreateOneToOneChat(chatID[:8], pk, timesource)
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return &newChat
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}
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func CreateOneToOneChat(name string, publicKey *ecdsa.PublicKey, timesource TimeSource) Chat {
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return Chat{
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ID: oneToOneChatID(publicKey),
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Name: name,
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Timestamp: int64(timesource.GetCurrentTime()),
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Active: true,
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ChatType: ChatTypeOneToOne,
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}
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}
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func CreatePublicChat(name string, timesource TimeSource) Chat {
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return Chat{
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ID: name,
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Name: name,
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Active: true,
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Timestamp: int64(timesource.GetCurrentTime()),
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Color: chatColors[rand.Intn(len(chatColors))],
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ChatType: ChatTypePublic,
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}
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}
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func CreateGroupChat(timesource TimeSource) Chat {
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return Chat{
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Active: true,
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Color: chatColors[rand.Intn(len(chatColors))],
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Timestamp: int64(timesource.GetCurrentTime()),
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ChatType: ChatTypePrivateGroupChat,
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}
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}
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func stringSliceToPublicKeys(slice []string, prefixed bool) ([]*ecdsa.PublicKey, error) {
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result := make([]*ecdsa.PublicKey, len(slice))
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for idx, item := range slice {
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var (
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b []byte
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err error
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)
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if prefixed {
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b, err = types.DecodeHex(item)
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} else {
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b, err = hex.DecodeString(item)
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}
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if err != nil {
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return nil, err
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}
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result[idx], err = crypto.UnmarshalPubkey(b)
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if err != nil {
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return nil, err
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}
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}
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return result, nil
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}
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func stringSliceContains(slice []string, item string) bool {
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for _, s := range slice {
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if s == item {
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return true
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}
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}
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return false
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}
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