## Nim-Dagger ## Copyright (c) 2021 Status Research & Development GmbH ## Licensed under either of ## * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE)) ## * MIT license ([LICENSE-MIT](LICENSE-MIT)) ## at your option. ## This file may not be copied, modified, or distributed except according to ## those terms. import std/tables import pkg/chronicles import pkg/chronos import pkg/libp2p import pkg/questionable import pkg/questionable/results import ../blocktype as bt import ./protobuf/blockexc as pb import ./protobuf/payments import ./networkpeer export networkpeer, payments logScope: topics = "dagger blockexc network" const Codec* = "/dagger/blockexc/1.0.0" type WantListHandler* = proc(peer: PeerID, wantList: WantList): Future[void] {.gcsafe.} BlocksHandler* = proc(peer: PeerID, blocks: seq[bt.Block]): Future[void] {.gcsafe.} BlockPresenceHandler* = proc(peer: PeerID, precense: seq[BlockPresence]): Future[void] {.gcsafe.} AccountHandler* = proc(peer: PeerID, account: Account): Future[void] {.gcsafe.} PaymentHandler* = proc(peer: PeerID, payment: SignedState): Future[void] {.gcsafe.} BlockExcHandlers* = object onWantList*: WantListHandler onBlocks*: BlocksHandler onPresence*: BlockPresenceHandler onAccount*: AccountHandler onPayment*: PaymentHandler WantListBroadcaster* = proc( id: PeerID, cids: seq[Cid], priority: int32 = 0, cancel: bool = false, wantType: WantType = WantType.wantHave, full: bool = false, sendDontHave: bool = false) {.gcsafe.} BlocksBroadcaster* = proc(peer: PeerID, presence: seq[bt.Block]) {.gcsafe.} PresenceBroadcaster* = proc(peer: PeerID, presence: seq[BlockPresence]) {.gcsafe.} AccountBroadcaster* = proc(peer: PeerID, account: Account) {.gcsafe.} PaymentBroadcaster* = proc(peer: PeerID, payment: SignedState) {.gcsafe.} BlockExcRequest* = object sendWantList*: WantListBroadcaster sendBlocks*: BlocksBroadcaster sendPresence*: PresenceBroadcaster sendAccount*: AccountBroadcaster sendPayment*: PaymentBroadcaster BlockExcNetwork* = ref object of LPProtocol peers*: Table[PeerID, NetworkPeer] switch*: Switch handlers*: BlockExcHandlers request*: BlockExcRequest getConn: ConnProvider proc handleWantList( b: BlockExcNetwork, peer: NetworkPeer, list: WantList): Future[void] = ## Handle incoming want list ## if isNil(b.handlers.onWantList): return trace "Handling want list for peer", peer = peer.id b.handlers.onWantList(peer.id, list) # TODO: make into a template proc makeWantList*( cids: seq[Cid], priority: int = 0, cancel: bool = false, wantType: WantType = WantType.wantHave, full: bool = false, sendDontHave: bool = false): WantList = var entries: seq[Entry] for cid in cids: entries.add(Entry( `block`: cid.data.buffer, priority: priority.int32, cancel: cancel, wantType: wantType, sendDontHave: sendDontHave)) WantList(entries: entries, full: full) proc broadcastWantList*( b: BlockExcNetwork, id: PeerID, cids: seq[Cid], priority: int32 = 0, cancel: bool = false, wantType: WantType = WantType.wantHave, full: bool = false, sendDontHave: bool = false) = ## send a want message to peer ## if id notin b.peers: return trace "Sending want list to peer", peer = id, `type` = $wantType, len = cids.len let wantList = makeWantList( cids, priority, cancel, wantType, full, sendDontHave) b.peers[id].broadcast(Message(wantlist: wantList)) proc handleBlocks( b: BlockExcNetwork, peer: NetworkPeer, blocks: seq[pb.Block]): Future[void] = ## Handle incoming blocks ## if isNil(b.handlers.onBlocks): return trace "Handling blocks for peer", peer = peer.id var blks: seq[bt.Block] for blob in blocks: without cid =? Cid.init(blob.prefix): trace "Unable to initialize Cid from protobuf message" without blk =? bt.Block.new(cid, blob.data, verify = true): trace "Unable to initialize Block from data" blks.add(blk) b.handlers.onBlocks(peer.id, blks) template makeBlocks*( blocks: seq[bt.Block]): seq[pb.Block] = var blks: seq[pb.Block] for blk in blocks: blks.add(pb.Block( prefix: blk.cid.data.buffer, data: blk.data )) blks proc broadcastBlocks*( b: BlockExcNetwork, id: PeerID, blocks: seq[bt.Block]) = ## Send blocks to remote ## if id notin b.peers: return trace "Sending blocks to peer", peer = id, len = blocks.len b.peers[id].broadcast(pb.Message(payload: makeBlocks(blocks))) proc handleBlockPresence( b: BlockExcNetwork, peer: NetworkPeer, presence: seq[BlockPresence]): Future[void] = ## Handle block presence ## if isNil(b.handlers.onPresence): return trace "Handling block presence for peer", peer = peer.id b.handlers.onPresence(peer.id, presence) proc broadcastBlockPresence*( b: BlockExcNetwork, id: PeerID, presence: seq[BlockPresence]) = ## Send presence to remote ## if id notin b.peers: return trace "Sending presence to peer", peer = id b.peers[id].broadcast(Message(blockPresences: presence)) proc handleAccount(network: BlockExcNetwork, peer: NetworkPeer, account: Account): Future[void] = if network.handlers.onAccount.isNil: return network.handlers.onAccount(peer.id, account) proc broadcastAccount*(network: BlockExcNetwork, id: PeerId, account: Account) = if id notin network.peers: return let message = Message(account: AccountMessage.init(account)) network.peers[id].broadcast(message) proc broadcastPayment*(network: BlockExcNetwork, id: PeerId, payment: SignedState) = if id notin network.peers: return let message = Message(payment: StateChannelUpdate.init(payment)) network.peers[id].broadcast(message) proc handlePayment(network: BlockExcNetwork, peer: NetworkPeer, payment: SignedState): Future[void] = if network.handlers.onPayment.isNil: return network.handlers.onPayment(peer.id, payment) proc rpcHandler(b: BlockExcNetwork, peer: NetworkPeer, msg: Message) {.async.} = try: if msg.wantlist.entries.len > 0: await b.handleWantList(peer, msg.wantlist) if msg.payload.len > 0: await b.handleBlocks(peer, msg.payload) if msg.blockPresences.len > 0: await b.handleBlockPresence(peer, msg.blockPresences) if account =? Account.init(msg.account): await b.handleAccount(peer, account) if payment =? SignedState.init(msg.payment): await b.handlePayment(peer, payment) except CatchableError as exc: trace "Exception in blockexc rpc handler", exc = exc.msg proc getOrCreatePeer(b: BlockExcNetwork, peer: PeerID): NetworkPeer = ## Creates or retrieves a BlockExcNetwork Peer ## if peer in b.peers: return b.peers[peer] var getConn = proc(): Future[Connection] {.async.} = try: return await b.switch.dial(peer, Codec) except CatchableError as exc: trace "unable to connect to blockexc peer", exc = exc.msg if not isNil(b.getConn): getConn = b.getConn let rpcHandler = proc (p: NetworkPeer, msg: Message): Future[void] = b.rpcHandler(p, msg) # create new pubsub peer let blockExcPeer = NetworkPeer.new(peer, getConn, rpcHandler) debug "created new blockexc peer", peer b.peers[peer] = blockExcPeer return blockExcPeer proc setupPeer*(b: BlockExcNetwork, peer: PeerID) = ## Perform initial setup, such as want ## list exchange ## discard b.getOrCreatePeer(peer) proc dropPeer*(b: BlockExcNetwork, peer: PeerID) = ## Cleanup disconnected peer ## b.peers.del(peer) method init*(b: BlockExcNetwork) = ## Perform protocol initialization ## proc peerEventHandler(peerId: PeerID, event: PeerEvent) {.async.} = if event.kind == PeerEventKind.Joined: b.setupPeer(peerId) else: b.dropPeer(peerId) b.switch.addPeerEventHandler(peerEventHandler, PeerEventKind.Joined) b.switch.addPeerEventHandler(peerEventHandler, PeerEventKind.Left) proc handle(conn: Connection, proto: string) {.async, gcsafe, closure.} = let peerId = conn.peerId let blockexcPeer = b.getOrCreatePeer(peerId) await blockexcPeer.readLoop(conn) # attach read loop b.handler = handle b.codec = Codec proc new*( T: type BlockExcNetwork, switch: Switch, connProvider: ConnProvider = nil): T = ## Create a new BlockExcNetwork instance ## let b = BlockExcNetwork( switch: switch, getConn: connProvider) proc sendWantList( id: PeerID, cids: seq[Cid], priority: int32 = 0, cancel: bool = false, wantType: WantType = WantType.wantHave, full: bool = false, sendDontHave: bool = false) {.gcsafe.} = b.broadcastWantList( id, cids, priority, cancel, wantType, full, sendDontHave) proc sendBlocks(id: PeerID, blocks: seq[bt.Block]) {.gcsafe.} = b.broadcastBlocks(id, blocks) proc sendPresence(id: PeerID, presence: seq[BlockPresence]) {.gcsafe.} = b.broadcastBlockPresence(id, presence) proc sendAccount(id: PeerID, account: Account) = b.broadcastAccount(id, account) proc sendPayment(id: PeerID, payment: SignedState) = b.broadcastPayment(id, payment) b.request = BlockExcRequest( sendWantList: sendWantList, sendBlocks: sendBlocks, sendPresence: sendPresence, sendAccount: sendAccount, sendPayment: sendPayment ) b.init() return b