-
Notifications
You must be signed in to change notification settings - Fork 0
/
Copy pathrpcadapters.go
executable file
·185 lines (157 loc) · 9.03 KB
/
rpcadapters.go
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
package main
import (
"github.com/parallelcointeam/pod/blockchain"
"github.com/parallelcointeam/pod/btcutil"
"github.com/parallelcointeam/pod/chaincfg/chainhash"
"github.com/parallelcointeam/pod/mempool"
"github.com/parallelcointeam/pod/netsync"
"github.com/parallelcointeam/pod/peer"
"github.com/parallelcointeam/pod/wire"
"sync/atomic"
)
// rpcPeer provides a peer for use with the RPC server and implements the rpcserverPeer interface.
type rpcPeer serverPeer
// Ensure rpcPeer implements the rpcserverPeer interface.
var _ rpcserverPeer = (*rpcPeer)(nil)
// ToPeer returns the underlying peer instance. This function is safe for concurrent access and is part of the rpcserverPeer interface implementation.
func (p *rpcPeer) ToPeer() *peer.Peer {
if p == nil {
return nil
}
return (*serverPeer)(p).Peer
}
// IsTxRelayDisabled returns whether or not the peer has disabled transaction relay. This function is safe for concurrent access and is part of the rpcserverPeer interface implementation.
func (p *rpcPeer) IsTxRelayDisabled() bool {
return (*serverPeer)(p).disableRelayTx
}
// BanScore returns the current integer value that represents how close the peer is to being banned. This function is safe for concurrent access and is part of the rpcserverPeer interface implementation.
func (p *rpcPeer) BanScore() uint32 {
return (*serverPeer)(p).banScore.Int()
}
// FeeFilter returns the requested current minimum fee rate for which transactions should be announced. This function is safe for concurrent access and is part of the rpcserverPeer interface implementation.
func (p *rpcPeer) FeeFilter() int64 {
return atomic.LoadInt64(&(*serverPeer)(p).feeFilter)
}
// rpcConnManager provides a connection manager for use with the RPC server and implements the rpcserver ConnManager interface.
type rpcConnManager struct {
server *server
}
// Ensure rpcConnManager implements the rpcserverConnManager interface.
var _ rpcserverConnManager = &rpcConnManager{}
// Connect adds the provided address as a new outbound peer. The permanent flag indicates whether or not to make the peer persistent and reconnect if the connection is lost. Attempting to connect to an already existing peer will return an error. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) Connect(addr string, permanent bool) error {
replyChan := make(chan error)
cm.server.query <- connectNodeMsg{
addr: addr,
permanent: permanent,
reply: replyChan,
}
return <-replyChan
}
// RemoveByID removes the peer associated with the provided id from the list of persistent peers. Attempting to remove an id that does not exist will return an error. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) RemoveByID(id int32) error {
replyChan := make(chan error)
cm.server.query <- removeNodeMsg{
cmp: func(sp *serverPeer) bool { return sp.ID() == id },
reply: replyChan,
}
return <-replyChan
}
// RemoveByAddr removes the peer associated with the provided address from the list of persistent peers. Attempting to remove an address that does not exist will return an error. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) RemoveByAddr(addr string) error {
replyChan := make(chan error)
cm.server.query <- removeNodeMsg{
cmp: func(sp *serverPeer) bool { return sp.Addr() == addr },
reply: replyChan,
}
return <-replyChan
}
// DisconnectByID disconnects the peer associated with the provided id. This applies to both inbound and outbound peers. Attempting to remove an id that does not exist will return an error. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) DisconnectByID(id int32) error {
replyChan := make(chan error)
cm.server.query <- disconnectNodeMsg{
cmp: func(sp *serverPeer) bool { return sp.ID() == id },
reply: replyChan,
}
return <-replyChan
}
// DisconnectByAddr disconnects the peer associated with the provided address. This applies to both inbound and outbound peers. Attempting to remove an address that does not exist will return an error. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) DisconnectByAddr(addr string) error {
replyChan := make(chan error)
cm.server.query <- disconnectNodeMsg{
cmp: func(sp *serverPeer) bool { return sp.Addr() == addr },
reply: replyChan,
}
return <-replyChan
}
// ConnectedCount returns the number of currently connected peers. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) ConnectedCount() int32 {
return cm.server.ConnectedCount()
}
// NetTotals returns the sum of all bytes received and sent across the network for all peers. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) NetTotals() (uint64, uint64) {
return cm.server.NetTotals()
}
// ConnectedPeers returns an array consisting of all connected peers. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) ConnectedPeers() []rpcserverPeer {
replyChan := make(chan []*serverPeer)
cm.server.query <- getPeersMsg{reply: replyChan}
serverPeers := <-replyChan
// Convert to RPC server peers.
peers := make([]rpcserverPeer, 0, len(serverPeers))
for _, sp := range serverPeers {
peers = append(peers, (*rpcPeer)(sp))
}
return peers
}
// PersistentPeers returns an array consisting of all the added persistent peers. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) PersistentPeers() []rpcserverPeer {
replyChan := make(chan []*serverPeer)
cm.server.query <- getAddedNodesMsg{reply: replyChan}
serverPeers := <-replyChan
// Convert to generic peers.
peers := make([]rpcserverPeer, 0, len(serverPeers))
for _, sp := range serverPeers {
peers = append(peers, (*rpcPeer)(sp))
}
return peers
}
// BroadcastMessage sends the provided message to all currently connected peers. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) BroadcastMessage(msg wire.Message) {
cm.server.BroadcastMessage(msg)
}
// AddRebroadcastInventory adds the provided inventory to the list of inventories to be rebroadcast at random intervals until they show up in a block. This function is safe for concurrent access and is part of the rpcserverConnManager interface implementation.
func (cm *rpcConnManager) AddRebroadcastInventory(iv *wire.InvVect, data interface{}) {
cm.server.AddRebroadcastInventory(iv, data)
}
// RelayTransactions generates and relays inventory vectors for all of the passed transactions to all connected peers.
func (cm *rpcConnManager) RelayTransactions(txns []*mempool.TxDesc) {
cm.server.relayTransactions(txns)
}
// rpcSyncMgr provides a block manager for use with the RPC server and implements the rpcserverSyncManager interface.
type rpcSyncMgr struct {
server *server
syncMgr *netsync.SyncManager
}
// Ensure rpcSyncMgr implements the rpcserverSyncManager interface.
var _ rpcserverSyncManager = (*rpcSyncMgr)(nil)
// IsCurrent returns whether or not the sync manager believes the chain is current as compared to the rest of the network. This function is safe for concurrent access and is part of the rpcserverSyncManager interface implementation.
func (b *rpcSyncMgr) IsCurrent() bool {
return b.syncMgr.IsCurrent()
}
// SubmitBlock submits the provided block to the network after processing it locally. This function is safe for concurrent access and is part of the rpcserverSyncManager interface implementation.
func (b *rpcSyncMgr) SubmitBlock(block *btcutil.Block, flags blockchain.BehaviorFlags) (bool, error) {
return b.syncMgr.ProcessBlock(block, flags)
}
// Pause pauses the sync manager until the returned channel is closed. This function is safe for concurrent access and is part of the rpcserverSyncManager interface implementation.
func (b *rpcSyncMgr) Pause() chan<- struct{} {
return b.syncMgr.Pause()
}
// SyncPeerID returns the peer that is currently the peer being used to sync from. This function is safe for concurrent access and is part of the rpcserverSyncManager interface implementation.
func (b *rpcSyncMgr) SyncPeerID() int32 {
return b.syncMgr.SyncPeerID()
}
// LocateBlocks returns the hashes of the blocks after the first known block in the provided locators until the provided stop hash or the current tip is reached, up to a max of wire.MaxBlockHeadersPerMsg hashes. This function is safe for concurrent access and is part of the rpcserverSyncManager interface implementation.
func (b *rpcSyncMgr) LocateHeaders(locators []*chainhash.Hash, hashStop *chainhash.Hash) []wire.BlockHeader {
return b.server.chain.LocateHeaders(locators, hashStop)
}