544 lines
15 KiB
Go
544 lines
15 KiB
Go
/*
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* Copyright (c) 2013 Conformal Systems LLC <info@conformal.com>
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*
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* Permission to use, copy, modify, and 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 appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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package main
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import (
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"code.google.com/p/go.net/websocket"
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"encoding/base64"
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"encoding/json"
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"errors"
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"fmt"
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"github.com/conformal/btcjson"
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"github.com/conformal/btcwire"
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"net"
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"net/http"
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"sync"
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)
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var (
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// ErrConnRefused represents an error where a connection to another
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// process cannot be established.
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ErrConnRefused = errors.New("connection refused")
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// ErrConnLost represents an error where a connection to another
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// process cannot be established.
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ErrConnLost = errors.New("connection lost")
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// Channel to close to notify that connection to btcd has been lost.
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btcdConnected = struct {
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b bool
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c chan bool
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}{
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c: make(chan bool),
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}
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// Channel to send messages btcwallet does not understand and requests
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// from btcwallet to btcd.
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btcdMsgs = make(chan []byte, 100)
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// Adds a frontend listener channel
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addFrontendListener = make(chan (chan []byte))
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// Removes a frontend listener channel
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deleteFrontendListener = make(chan (chan []byte))
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// Messages sent to this channel are sent to each connected frontend.
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frontendNotificationMaster = make(chan []byte, 100)
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// replyHandlers maps between a unique number (passed as part of
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// the JSON Id field) and a function to handle a reply or notification
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// from btcd. As requests are received, this map is checked for a
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// handler function to route the reply to. If the function returns
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// true, the handler is removed from the map.
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replyHandlers = struct {
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sync.Mutex
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m map[uint64]func(interface{}, *btcjson.Error) bool
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}{
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m: make(map[uint64]func(interface{}, *btcjson.Error) bool),
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}
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// replyRouter maps unique uint64 ids to reply channels, so btcd
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// replies can be routed to the correct frontend.
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replyRouter = struct {
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sync.Mutex
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m map[uint64]chan []byte
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}{
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m: make(map[uint64]chan []byte),
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}
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)
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// frontendListenerDuplicator listens for new wallet listener channels
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// and duplicates messages sent to frontendNotificationMaster to all
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// connected listeners.
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func frontendListenerDuplicator() {
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// frontendListeners is a map holding each currently connected frontend
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// listener as the key. The value is ignored, as this is only used as
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// a set.
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frontendListeners := make(map[chan []byte]bool)
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// Don't want to add or delete a wallet listener while iterating
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// through each to propigate to every attached wallet. Use a mutex to
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// prevent this.
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var mtx sync.Mutex
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// Check for listener channels to add or remove from set.
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go func() {
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for {
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select {
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case c := <-addFrontendListener:
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mtx.Lock()
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frontendListeners[c] = true
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mtx.Unlock()
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case c := <-deleteFrontendListener:
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mtx.Lock()
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delete(frontendListeners, c)
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mtx.Unlock()
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}
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}
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}()
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// Duplicate all messages sent across frontendNotificationMaster, as
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// well as internal btcwallet notifications, to each listening wallet.
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for {
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var ntfn []byte
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select {
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case conn := <-btcdConnected.c:
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btcdConnected.b = conn
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var idStr interface{} = "btcwallet:btcdconnected"
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r := btcjson.Reply{
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Result: conn,
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Id: &idStr,
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}
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ntfn, _ = json.Marshal(r)
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case ntfn = <-frontendNotificationMaster:
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}
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mtx.Lock()
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for c := range frontendListeners {
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c <- ntfn
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}
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mtx.Unlock()
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}
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}
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// frontendReqsNotifications is the handler function for websocket
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// connections from a btcwallet instance. It reads messages from wallet and
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// sends back replies, as well as notififying wallets of chain updates.
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// There can possibly be many of these running, one for each currently
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// connected frontend.
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func frontendReqsNotifications(ws *websocket.Conn) {
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// Add frontend notification channel to set so this handler receives
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// updates.
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frontendNotification := make(chan []byte)
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addFrontendListener <- frontendNotification
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defer func() {
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deleteFrontendListener <- frontendNotification
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}()
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// jsonMsgs receives JSON messages from the currently connected frontend.
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jsonMsgs := make(chan []byte)
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// Receive messages from websocket and send across jsonMsgs until
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// connection is lost
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go func() {
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for {
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var m []byte
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if err := websocket.Message.Receive(ws, &m); err != nil {
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close(jsonMsgs)
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return
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}
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jsonMsgs <- m
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}
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}()
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for {
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select {
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case m, ok := <-jsonMsgs:
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if !ok {
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// frontend disconnected.
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return
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}
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// Handle JSON message here.
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go ProcessFrontendMsg(frontendNotification, m)
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case ntfn, _ := <-frontendNotification:
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if err := websocket.Message.Send(ws, ntfn); err != nil {
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// Frontend disconnected.
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return
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}
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}
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}
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}
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// BtcdHandler listens for replies and notifications from btcd over a
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// websocket and sends messages that btcwallet does not understand to
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// btcd. Unlike FrontendHandler, exactly one BtcdHandler goroutine runs.
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func BtcdHandler(ws *websocket.Conn) {
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// Notification channel to return from listener goroutine when
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// btcd disconnects.
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disconnected := make(chan int)
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defer func() {
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close(disconnected)
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}()
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// Listen for replies/notifications from btcd, and decide how to handle them.
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replies := make(chan []byte)
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go func() {
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defer close(replies)
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for {
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select {
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case <-disconnected:
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return
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default:
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var m []byte
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if err := websocket.Message.Receive(ws, &m); err != nil {
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return
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}
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replies <- m
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}
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}
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}()
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for {
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select {
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case rply, ok := <-replies:
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if !ok {
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// btcd disconnected
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return
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}
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// Handle message here.
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go ProcessBtcdNotificationReply(rply)
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case r := <-btcdMsgs:
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if err := websocket.Message.Send(ws, r); err != nil {
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// btcd disconnected.
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log.Errorf("Unable to send message to btcd: %v", err)
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return
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}
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}
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}
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}
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// ProcessBtcdNotificationReply unmarshalls the JSON notification or
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// reply received from btcd and decides how to handle it. Replies are
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// routed back to the frontend who sent the message, and wallet
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// notifications are processed by btcwallet, and frontend notifications
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// are sent to every connected frontend.
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func ProcessBtcdNotificationReply(b []byte) {
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// Check if the json id field was set by btcwallet.
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var routeID uint64
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var origID string
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var r btcjson.Reply
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if err := json.Unmarshal(b, &r); err != nil {
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log.Errorf("Unable to unmarshal btcd message: %v", err)
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return
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}
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idStr, ok := (*r.Id).(string)
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if !ok {
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// btcd should only ever be sending JSON messages with a string in
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// the id field. Log the error and drop the message.
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log.Error("Unable to process btcd notification or reply.")
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return
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}
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n, _ := fmt.Sscanf(idStr, "btcwallet(%d)-%s", &routeID, &origID)
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if n == 1 {
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// Request originated from btcwallet. Run and remove correct
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// handler.
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replyHandlers.Lock()
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f := replyHandlers.m[routeID]
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replyHandlers.Unlock()
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if f != nil {
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go func() {
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if f(r.Result, r.Error) {
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replyHandlers.Lock()
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delete(replyHandlers.m, routeID)
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replyHandlers.Unlock()
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}
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}()
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}
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} else if n == 2 {
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// Attempt to route btcd reply to correct frontend.
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replyRouter.Lock()
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c := replyRouter.m[routeID]
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if c != nil {
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delete(replyRouter.m, routeID)
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} else {
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// Can't route to a frontend, drop reply.
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log.Info("Unable to route btcd reply to frontend. Dropping.")
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return
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}
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replyRouter.Unlock()
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// Convert string back to number if possible.
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var origIDNum float64
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n, _ := fmt.Sscanf(origID, "%f", &origIDNum)
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var id interface{}
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if n == 1 {
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id = origIDNum
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} else {
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id = origID
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}
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r.Id = &id
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b, err := json.Marshal(r)
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if err != nil {
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log.Error("Error marshalling btcd reply. Dropping.")
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return
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}
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c <- b
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} else {
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// btcd notification must either be handled by btcwallet or sent
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// to all frontends if btcwallet can not handle it.
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switch idStr {
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case "btcd:blockconnected":
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NtfnBlockConnected(r.Result)
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case "btcd:blockdisconnected":
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NtfnBlockDisconnected(r.Result)
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default:
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frontendNotificationMaster <- b
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}
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}
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}
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// NtfnBlockConnected handles btcd notifications resulting from newly
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// connected blocks to the main blockchain. Currently, this only creates
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// a new notification for frontends with the new blockchain height.
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func NtfnBlockConnected(r interface{}) {
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result, ok := r.(map[string]interface{})
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if !ok {
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log.Error("blockconnected notification: invalid result")
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return
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}
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hashBE, ok := result["hash"].(string)
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if !ok {
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log.Error("blockconnected notification: invalid hash")
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return
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}
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hash, err := btcwire.NewShaHashFromStr(hashBE)
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if err != nil {
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log.Error("btcd:blockconnected handler: invalid hash string")
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return
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}
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heightf, ok := result["height"].(float64)
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if !ok {
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log.Error("blockconnected notification: invalid height")
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}
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height := int64(heightf)
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curHeight.Lock()
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curHeight.h = height
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curHeight.Unlock()
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// TODO(jrick): update TxStore and UtxoStore with new hash
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_ = hash
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var id interface{} = "btcwallet:newblockchainheight"
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msgRaw := &btcjson.Reply{
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Result: height,
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Id: &id,
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}
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msg, err := json.Marshal(msgRaw)
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if err != nil {
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log.Error("btcd:blockconnected handler: unable to marshal reply")
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return
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}
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frontendNotificationMaster <- msg
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wallets.RLock()
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for _, w := range wallets.m {
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confirmed := w.CalculateBalance(6)
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unconfirmed := w.CalculateBalance(0) - confirmed
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NotifyWalletBalance(frontendNotificationMaster, w.name, confirmed)
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NotifyWalletBalanceUnconfirmed(frontendNotificationMaster, w.name, unconfirmed)
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}
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wallets.RUnlock()
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}
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// NtfnBlockDisconnected handles btcd notifications resulting from
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// blocks disconnected from the main chain in the event of a chain
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// switch and notifies frontends of the new blockchain height.
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//
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// TODO(jrick): Rollback Utxo and Tx data
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func NtfnBlockDisconnected(r interface{}) {
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result, ok := r.(map[string]interface{})
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if !ok {
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log.Error("blockdisconnected notification: invalid result")
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return
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}
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hashBE, ok := result["hash"].(string)
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if !ok {
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log.Error("blockdisconnected notification: invalid hash")
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return
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}
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hash, err := btcwire.NewShaHashFromStr(hashBE)
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if err != nil {
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log.Error("btcd:blockdisconnected handler: invalid hash string")
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return
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}
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heightf, ok := result["height"].(float64)
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if !ok {
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log.Error("blockdisconnected notification: invalid height")
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}
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height := int64(heightf)
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// Rollback Utxo and Tx data stores.
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go func() {
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wallets.Rollback(height, hash)
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}()
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var id interface{} = "btcwallet:newblockchainheight"
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msgRaw := &btcjson.Reply{
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Result: height,
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Id: &id,
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}
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msg, err := json.Marshal(msgRaw)
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if err != nil {
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log.Error("btcd:blockdisconnected handler: unable to marshal reply")
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return
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}
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frontendNotificationMaster <- msg
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wallets.RLock()
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for _, w := range wallets.m {
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confirmed := w.CalculateBalance(6)
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unconfirmed := w.CalculateBalance(0) - confirmed
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NotifyWalletBalance(frontendNotificationMaster, w.name, confirmed)
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NotifyWalletBalanceUnconfirmed(frontendNotificationMaster, w.name, unconfirmed)
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}
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wallets.RUnlock()
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}
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var duplicateOnce sync.Once
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// FrontendListenAndServe starts a HTTP server to provide websocket
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// connections for any number of btcwallet frontends.
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func FrontendListenAndServe() error {
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// We'll need to duplicate replies to frontends to each frontend.
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// Replies are sent to frontendReplyMaster, and duplicated to each valid
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// channel in frontendReplySet. This runs a goroutine to duplicate
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// requests for each channel in the set.
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//
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// Use a sync.Once to insure no extra duplicators run.
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go duplicateOnce.Do(frontendListenerDuplicator)
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// TODO(jrick): We need some sort of authentication before websocket
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// connections are allowed, and perhaps TLS on the server as well.
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http.Handle("/frontend", websocket.Handler(frontendReqsNotifications))
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return http.ListenAndServe(net.JoinHostPort("", cfg.SvrPort), nil)
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}
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// BtcdConnect connects to a running btcd instance over a websocket
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// for sending and receiving chain-related messages, failing if the
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// connection cannot be established or is lost.
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func BtcdConnect(reply chan error) {
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// btcd requires basic authorization, so we use a custom config with
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// the Authorization header set.
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server := fmt.Sprintf("ws://%s/wallet", net.JoinHostPort("localhost", cfg.BtcdPort))
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login := cfg.Username + ":" + cfg.Password
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auth := "Basic " + base64.StdEncoding.EncodeToString([]byte(login))
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config, err := websocket.NewConfig(server, "http://localhost/")
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if err != nil {
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reply <- ErrConnRefused
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return
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}
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config.Header.Add("Authorization", auth)
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// Attempt to connect to running btcd instance. Bail if it fails.
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btcdws, err := websocket.DialConfig(config)
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if err != nil {
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reply <- ErrConnRefused
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return
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}
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reply <- nil
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// Remove all reply handlers (if any exist from an old connection).
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replyHandlers.Lock()
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for k := range replyHandlers.m {
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delete(replyHandlers.m, k)
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}
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replyHandlers.Unlock()
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handlerClosed := make(chan int)
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go func() {
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BtcdHandler(btcdws)
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close(handlerClosed)
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}()
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BtcdHandshake(btcdws)
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<-handlerClosed
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reply <- ErrConnLost
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}
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// BtcdHandshake first checks that the websocket connection between
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// btcwallet and btcd is valid, that is, that there are no mismatching
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// settings between the two processes (such as running on different
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// Bitcoin networks). If the sanity checks pass, all wallets are set to
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// be tracked against chain notifications from this btcd connection.
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func BtcdHandshake(ws *websocket.Conn) {
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n := <-NewJSONID
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msg := btcjson.Message{
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Method: "getcurrentnet",
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Id: fmt.Sprintf("btcwallet(%v)", n),
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}
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m, _ := json.Marshal(&msg)
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correctNetwork := make(chan bool)
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replyHandlers.Lock()
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replyHandlers.m[n] = func(result interface{}, err *btcjson.Error) bool {
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fnet, ok := result.(float64)
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if !ok {
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log.Error("btcd handshake: result is not a number")
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ws.Close()
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correctNetwork <- false
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return true
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}
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var walletNetwork btcwire.BitcoinNet
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if cfg.MainNet {
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walletNetwork = btcwire.MainNet
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} else {
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walletNetwork = btcwire.TestNet3
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}
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correctNetwork <- btcwire.BitcoinNet(fnet) == walletNetwork
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// No additional replies expected, remove handler.
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return true
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}
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replyHandlers.Unlock()
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btcdMsgs <- m
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if !<-correctNetwork {
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log.Error("btcd and btcwallet running on different Bitcoin networks")
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ws.Close()
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return
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}
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// Begin tracking wallets against this btcd instance.
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wallets.RLock()
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for _, w := range wallets.m {
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w.Track()
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}
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wallets.RUnlock()
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}
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