563 lines
16 KiB
Nim
563 lines
16 KiB
Nim
## Nim-Codex
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## Copyright (c) 2021 Status Research & Development GmbH
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## Licensed under either of
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## * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE))
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## * MIT license ([LICENSE-MIT](LICENSE-MIT))
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## at your option.
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## This file may not be copied, modified, or distributed except according to
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## those terms.
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import std/sequtils
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import std/sets
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import std/options
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import std/algorithm
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import pkg/chronos
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import pkg/chronicles
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import pkg/libp2p
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import pkg/stint
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import ../../stores/blockstore
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import ../../blocktype as bt
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import ../../utils
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import ../protobuf/blockexc
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import ../protobuf/presence
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import ../network
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import ../peers
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import ./payments
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import ./discovery
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import ./pendingblocks
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export peers, pendingblocks, payments, discovery
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logScope:
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topics = "codex blockexcengine"
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const
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DefaultMaxPeersPerRequest* = 10
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DefaultTaskQueueSize = 100
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DefaultConcurrentTasks = 10
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# DefaultMaxRetries = 3
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# DefaultConcurrentDiscRequests = 10
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# DefaultConcurrentAdvertRequests = 10
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# DefaultDiscoveryTimeout = 1.minutes
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# DefaultMaxQueriedBlocksCache = 1000
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# DefaultMinPeersPerBlock = 3
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type
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TaskHandler* = proc(task: BlockExcPeerCtx): Future[void] {.gcsafe.}
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TaskScheduler* = proc(task: BlockExcPeerCtx): bool {.gcsafe.}
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BlockExcEngine* = ref object of RootObj
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localStore*: BlockStore # Local block store for this instance
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network*: BlockExcNetwork # Petwork interface
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peers*: PeerCtxStore # Peers we're currently actively exchanging with
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taskQueue*: AsyncHeapQueue[BlockExcPeerCtx] # Peers we're currently processing tasks for
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concurrentTasks: int # Number of concurrent peers we're serving at any given time
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blockexcTasks: seq[Future[void]] # Future to control blockexc task
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blockexcRunning: bool # Indicates if the blockexc task is running
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pendingBlocks*: PendingBlocksManager # Blocks we're awaiting to be resolved
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peersPerRequest: int # Max number of peers to request from
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wallet*: WalletRef # Nitro wallet for micropayments
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pricing*: ?Pricing # Optional bandwidth pricing
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discovery*: DiscoveryEngine
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Pricing* = object
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address*: EthAddress
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price*: UInt256
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proc contains*(a: AsyncHeapQueue[Entry], b: Cid): bool =
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## Convenience method to check for entry prepense
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##
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a.anyIt( it.cid == b )
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# attach task scheduler to engine
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proc scheduleTask(b: BlockExcEngine, task: BlockExcPeerCtx): bool {.gcsafe} =
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b.taskQueue.pushOrUpdateNoWait(task).isOk()
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proc blockexcTaskRunner(b: BlockExcEngine): Future[void] {.gcsafe.}
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proc start*(b: BlockExcEngine) {.async.} =
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## Start the blockexc task
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##
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await b.discovery.start()
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trace "Blockexc starting with concurrent tasks", tasks = b.concurrentTasks
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if b.blockexcRunning:
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warn "Starting blockexc twice"
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return
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b.blockexcRunning = true
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for i in 0..<b.concurrentTasks:
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b.blockexcTasks.add(blockexcTaskRunner(b))
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proc stop*(b: BlockExcEngine) {.async.} =
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## Stop the blockexc blockexc
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##
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await b.discovery.stop()
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trace "NetworkStore stop"
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if not b.blockexcRunning:
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warn "Stopping blockexc without starting it"
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return
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b.blockexcRunning = false
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for task in b.blockexcTasks:
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if not task.finished:
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trace "Awaiting task to stop"
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await task.cancelAndWait()
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trace "Task stopped"
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trace "NetworkStore stopped"
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proc requestBlock*(
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b: BlockExcEngine,
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cid: Cid,
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timeout = DefaultBlockTimeout): Future[bt.Block] {.async.} =
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## Request a block from remotes
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##
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trace "Requesting block", cid, peers = b.peers.len
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if b.pendingBlocks.isInFlight(cid):
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trace "Request handle already pending", cid
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return await b.pendingBlocks.getWantHandle(cid, timeout)
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let
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blk = b.pendingBlocks.getWantHandle(cid, timeout)
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var
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peers = b.peers.selectCheapest(cid)
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if peers.len <= 0:
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trace "No cheapest peers, selecting first in list", cid
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peers = toSeq(b.peers) # Get any peer
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if peers.len <= 0:
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trace "No peers to request blocks from", cid
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b.discovery.queueFindBlocksReq(@[cid])
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return await blk
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let
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blockPeer = peers[0] # get cheapest
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proc blockHandleMonitor() {.async.} =
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try:
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trace "Monigoring block handle", cid
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b.pendingBlocks.setInFlight(cid, true)
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discard await blk
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trace "Block handle success", cid
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except CatchableError as exc:
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trace "Error block handle, disconnecting peer", cid, exc = exc.msg
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# TODO: really, this is just a quick and dirty way of
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# preventing hitting the same "bad" peer every time, however,
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# we might as well discover this on or next iteration, so
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# it doesn't mean that we're never talking to this peer again.
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# TODO: we need a lot more work around peer selection and
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# prioritization
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# drop unresponsive peer
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await b.network.switch.disconnect(blockPeer.id)
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trace "Sending block request to peer", peer = blockPeer.id, cid
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# monitor block handle
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asyncSpawn blockHandleMonitor()
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# request block
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await b.network.request.sendWantList(
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blockPeer.id,
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@[cid],
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wantType = WantType.WantBlock) # we want this remote to send us a block
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if (peers.len - 1) == 0:
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trace "No peers to send want list to", cid
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b.discovery.queueFindBlocksReq(@[cid])
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return await blk # no peers to send wants to
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# filter out the peer we've already requested from
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let remaining = peers[1..min(peers.high, b.peersPerRequest)]
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trace "Sending want list to remaining peers", count = remaining.len
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for p in remaining:
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if cid notin p.peerHave:
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# just send wants
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await b.network.request.sendWantList(
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p.id,
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@[cid],
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wantType = WantType.WantHave) # we only want to know if the peer has the block
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return await blk
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proc blockPresenceHandler*(
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b: BlockExcEngine,
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peer: PeerId,
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blocks: seq[BlockPresence]) {.async.} =
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## Handle block presence
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##
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trace "Received presence update for peer", peer, blocks = blocks.len
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let
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peerCtx = b.peers.get(peer)
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wantList = toSeq(b.pendingBlocks.wantList)
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if peerCtx.isNil:
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return
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for blk in blocks:
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if presence =? Presence.init(blk):
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logScope:
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cid = presence.cid
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have = presence.have
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price = presence.price
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trace "Updating precense"
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peerCtx.setPresence(presence)
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let
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peerHave = peerCtx.peerHave
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dontWantCids = peerHave.filterIt(
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it notin wantList
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)
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if dontWantCids.len > 0:
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trace "Cleaning peer haves", peer, count = dontWantCids.len
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peerCtx.cleanPresence(dontWantCids)
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trace "Peer want/have", items = peerHave.len, wantList = wantList.len
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let
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wantCids = wantList.filterIt(
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it in peerHave
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)
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if wantCids.len > 0:
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trace "Getting blocks based on updated precense", peer, count = wantCids.len
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discard await allFinished(
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wantCids.mapIt(b.requestBlock(it)))
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trace "Requested blocks based on updated precense", peer, count = wantCids.len
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# if none of the connected peers report our wants in their have list,
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# fire up discovery
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b.discovery.queueFindBlocksReq(
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toSeq(b.pendingBlocks.wantList)
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.filter do(cid: Cid) -> bool:
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not b.peers.anyIt( cid in it.peerHave ))
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proc scheduleTasks(b: BlockExcEngine, blocks: seq[bt.Block]) {.async.} =
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trace "Schedule a task for new blocks", items = blocks.len
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let
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cids = blocks.mapIt( it.cid )
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# schedule any new peers to provide blocks to
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for p in b.peers:
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for c in cids: # for each cid
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# schedule a peer if it wants at least one cid
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# and we have it in our local store
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if c in p.peerWants:
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if await (c in b.localStore):
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if b.scheduleTask(p):
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trace "Task scheduled for peer", peer = p.id
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else:
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trace "Unable to schedule task for peer", peer = p.id
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break # do next peer
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proc resolveBlocks*(b: BlockExcEngine, blocks: seq[bt.Block]) {.async.} =
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## Resolve pending blocks from the pending blocks manager
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## and schedule any new task to be ran
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##
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trace "Resolving blocks", blocks = blocks.len
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b.pendingBlocks.resolve(blocks)
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await b.scheduleTasks(blocks)
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b.discovery.queueProvideBlocksReq(blocks.mapIt( it.cid ))
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proc payForBlocks(engine: BlockExcEngine,
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peer: BlockExcPeerCtx,
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blocks: seq[bt.Block]) {.async.} =
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trace "Paying for blocks", blocks = blocks.len
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let
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sendPayment = engine.network.request.sendPayment
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price = peer.price(blocks.mapIt(it.cid))
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if payment =? engine.wallet.pay(peer, price):
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trace "Sending payment for blocks", price
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await sendPayment(peer.id, payment)
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proc blocksHandler*(
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b: BlockExcEngine,
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peer: PeerId,
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blocks: seq[bt.Block]) {.async.} =
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## handle incoming blocks
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##
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trace "Got blocks from peer", peer, len = blocks.len
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for blk in blocks:
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if isErr (await b.localStore.putBlock(blk)):
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trace "Unable to store block", cid = blk.cid
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await b.resolveBlocks(blocks)
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let
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peerCtx = b.peers.get(peer)
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if peerCtx != nil:
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# we don't care about this blocks anymore, lets cleanup the list
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await b.payForBlocks(peerCtx, blocks)
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peerCtx.cleanPresence(blocks.mapIt( it.cid ))
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proc wantListHandler*(
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b: BlockExcEngine,
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peer: PeerId,
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wantList: Wantlist) {.async.} =
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## Handle incoming want lists
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##
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trace "Got want list for peer", peer, items = wantList.entries.len
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let peerCtx = b.peers.get(peer)
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if isNil(peerCtx):
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return
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var
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precense: seq[BlockPresence]
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for e in wantList.entries:
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let
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idx = peerCtx.peerWants.find(e)
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logScope:
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peer = peerCtx.id
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cid = e.cid
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wantType = $e.wantType
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if idx < 0: # updating entry
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trace "Processing new want list entry", cid = e.cid
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let
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have = await e.cid in b.localStore
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price = @(
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b.pricing.get(Pricing(price: 0.u256))
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.price.toBytesBE)
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if not have and e.sendDontHave:
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trace "Adding dont have entry to precense response", cid = e.cid
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precense.add(
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BlockPresence(
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cid: e.cid.data.buffer,
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`type`: BlockPresenceType.DontHave,
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price: price))
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elif have and e.wantType == WantType.WantHave:
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trace "Adding have entry to precense response", cid = e.cid
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precense.add(
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BlockPresence(
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cid: e.cid.data.buffer,
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`type`: BlockPresenceType.Have,
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price: price))
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elif e.wantType == WantType.WantBlock:
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trace "Added entry to peer's want blocks list", cid = e.cid
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peerCtx.peerWants.add(e)
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else:
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# peer doesn't want this block anymore
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if e.cancel:
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trace "Removing entry from peer want list"
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peerCtx.peerWants.del(idx)
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else:
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trace "Updating entry in peer want list"
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# peer might want to ask for the same cid with
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# different want params
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peerCtx.peerWants[idx] = e # update entry
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if precense.len > 0:
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trace "Sending precense to remote", items = precense.len
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await b.network.request.sendPresence(peer, precense)
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if not b.scheduleTask(peerCtx):
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trace "Unable to schedule task for peer", peer
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proc accountHandler*(
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engine: BlockExcEngine,
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peer: PeerId,
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account: Account) {.async.} =
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let context = engine.peers.get(peer)
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if context.isNil:
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return
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context.account = account.some
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proc paymentHandler*(
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engine: BlockExcEngine,
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peer: PeerId,
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payment: SignedState) {.async.} =
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trace "Handling payments", peer
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without context =? engine.peers.get(peer).option and
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account =? context.account:
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trace "No context or account for peer", peer
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return
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if channel =? context.paymentChannel:
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let sender = account.address
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discard engine.wallet.acceptPayment(channel, Asset, sender, payment)
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else:
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context.paymentChannel = engine.wallet.acceptChannel(payment).option
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proc setupPeer*(b: BlockExcEngine, peer: PeerId) {.async.} =
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## Perform initial setup, such as want
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## list exchange
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##
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if peer notin b.peers:
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trace "Setting up new peer", peer
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b.peers.add(BlockExcPeerCtx(
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id: peer
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))
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trace "Added peer", peers = b.peers.len
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# broadcast our want list, the other peer will do the same
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if b.pendingBlocks.len > 0:
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await b.network.request.sendWantList(
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peer, toSeq(b.pendingBlocks.wantList), full = true)
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if address =? b.pricing.?address:
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await b.network.request.sendAccount(peer, Account(address: address))
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proc dropPeer*(b: BlockExcEngine, peer: PeerId) =
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## Cleanup disconnected peer
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##
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trace "Dropping peer", peer
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# drop the peer from the peers table
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b.peers.remove(peer)
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proc taskHandler*(b: BlockExcEngine, task: BlockExcPeerCtx) {.gcsafe, async.} =
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trace "Handling task for peer", peer = task.id
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# Send to the peer blocks he wants to get,
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# if they present in our local store
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# TODO: There should be all sorts of accounting of
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# bytes sent/received here
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var
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wantsBlocks = task.peerWants.filterIt(
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it.wantType == WantType.WantBlock
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)
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if wantsBlocks.len > 0:
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trace "Got peer want blocks list", items = wantsBlocks.len
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wantsBlocks.sort(SortOrder.Descending)
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let
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blockFuts = await allFinished(wantsBlocks.mapIt(
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b.localStore.getBlock(it.cid)
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))
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# Extract successfully received blocks
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let
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blocks = blockFuts
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.filterIt(it.completed and it.read.isOk)
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.mapIt(it.read.get)
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if blocks.len > 0:
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trace "Sending blocks to peer", peer = task.id, blocks = blocks.len
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await b.network.request.sendBlocks(
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task.id,
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blocks)
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trace "About to remove entries from peerWants", blocks = blocks.len, items = task.peerWants.len
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# Remove successfully sent blocks
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task.peerWants.keepIf(
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proc(e: Entry): bool =
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not blocks.anyIt( it.cid == e.cid )
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)
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trace "Removed entries from peerWants", items = task.peerWants.len
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proc blockexcTaskRunner(b: BlockExcEngine) {.async.} =
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## process tasks
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##
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trace "Starting blockexc task runner"
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while b.blockexcRunning:
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let
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peerCtx = await b.taskQueue.pop()
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trace "Got new task from queue", peerId = peerCtx.id
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await b.taskHandler(peerCtx)
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trace "Exiting blockexc task runner"
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proc new*(
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T: type BlockExcEngine,
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localStore: BlockStore,
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wallet: WalletRef,
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network: BlockExcNetwork,
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discovery: DiscoveryEngine,
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peerStore: PeerCtxStore,
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pendingBlocks: PendingBlocksManager,
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concurrentTasks = DefaultConcurrentTasks,
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peersPerRequest = DefaultMaxPeersPerRequest
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): BlockExcEngine =
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## Create new block exchange engine instance
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##
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let
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engine = BlockExcEngine(
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localStore: localStore,
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peers: peerStore,
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pendingBlocks: pendingBlocks,
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peersPerRequest: peersPerRequest,
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network: network,
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wallet: wallet,
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concurrentTasks: concurrentTasks,
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taskQueue: newAsyncHeapQueue[BlockExcPeerCtx](DefaultTaskQueueSize),
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discovery: discovery)
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proc peerEventHandler(peerId: PeerId, event: PeerEvent) {.async.} =
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if event.kind == PeerEventKind.Joined:
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await engine.setupPeer(peerId)
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else:
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engine.dropPeer(peerId)
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if not isNil(network.switch):
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network.switch.addPeerEventHandler(peerEventHandler, PeerEventKind.Joined)
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network.switch.addPeerEventHandler(peerEventHandler, PeerEventKind.Left)
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proc blockWantListHandler(
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peer: PeerId,
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wantList: Wantlist): Future[void] {.gcsafe.} =
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engine.wantListHandler(peer, wantList)
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proc blockPresenceHandler(
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peer: PeerId,
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presence: seq[BlockPresence]): Future[void] {.gcsafe.} =
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engine.blockPresenceHandler(peer, presence)
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|
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proc blocksHandler(
|
|
peer: PeerId,
|
|
blocks: seq[bt.Block]): Future[void] {.gcsafe.} =
|
|
engine.blocksHandler(peer, blocks)
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|
|
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proc accountHandler(peer: PeerId, account: Account): Future[void] {.gcsafe.} =
|
|
engine.accountHandler(peer, account)
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|
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proc paymentHandler(peer: PeerId, payment: SignedState): Future[void] {.gcsafe.} =
|
|
engine.paymentHandler(peer, payment)
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|
|
|
network.handlers = BlockExcHandlers(
|
|
onWantList: blockWantListHandler,
|
|
onBlocks: blocksHandler,
|
|
onPresence: blockPresenceHandler,
|
|
onAccount: accountHandler,
|
|
onPayment: paymentHandler)
|
|
|
|
return engine
|