mirror of https://github.com/waku-org/nwaku.git
109 lines
4.1 KiB
Nim
109 lines
4.1 KiB
Nim
import
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confutils, chronicles, chronos, stew/byteutils, stew/shims/net as stewNet,
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eth/[keys, p2p],
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../../waku/v1/protocol/waku_protocol,
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../../waku/v1/node/waku_helpers,
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../../waku/common/utils/nat,
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./config_example
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## This is a simple Waku v1 example to show the Waku v1 API usage.
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const clientId = "Waku example v1"
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let
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# Load the cli configuration from `config_example.nim`.
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config = WakuNodeConf.load()
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# Seed the rng.
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rng = keys.newRng()
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# Set up the address according to NAT information.
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(ipExt, tcpPortExt, udpPortExt) = setupNat(config.nat, clientId,
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Port(config.tcpPort + config.portsShift),
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Port(config.udpPort + config.portsShift))
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# TODO: EthereumNode should have a better split of binding address and
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# external address. Also, can't have different ports as it stands now.
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address = if ipExt.isNone():
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Address(ip: parseIpAddress("0.0.0.0"),
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tcpPort: Port(config.tcpPort + config.portsShift),
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udpPort: Port(config.udpPort + config.portsShift))
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else:
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Address(ip: ipExt.get(),
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tcpPort: Port(config.tcpPort + config.portsShift),
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udpPort: Port(config.udpPort + config.portsShift))
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# Create Ethereum Node
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var node = newEthereumNode(config.nodekey, # Node identifier
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address, # Address reachable for incoming requests
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1, # Network Id, only applicable for ETH protocol
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nil, # Database, not required for Waku
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clientId, # Client id string
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addAllCapabilities = false, # Disable default all RLPx capabilities
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rng = rng)
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node.addCapability Waku # Enable only the Waku protocol.
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# Set up the Waku configuration.
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let wakuConfig = WakuConfig(powRequirement: 0.002,
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bloom: some(fullBloom()), # Full bloom filter
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isLightNode: false, # Full node
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maxMsgSize: waku_protocol.defaultMaxMsgSize,
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topics: none(seq[waku_protocol.Topic]) # empty topic interest
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)
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node.configureWaku(wakuConfig)
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# Optionally direct connect to a set of nodes.
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if config.staticnodes.len > 0:
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connectToNodes(node, config.staticnodes)
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# Connect to the network, which will make the node start listening and/or
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# connect to bootnodes, and/or start discovery.
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# This will block until first connection is made, which in this case can only
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# happen if we directly connect to nodes (step above) or if an incoming
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# connection occurs, which is why we use a callback to exit on errors instead of
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# using `await`.
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# TODO: This looks a bit awkward and the API should perhaps be altered here.
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let connectedFut = node.connectToNetwork(@[],
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true, # Enable listening
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false # Disable discovery (only discovery v4 is currently supported)
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)
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connectedFut.callback = proc(data: pointer) {.gcsafe.} =
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{.gcsafe.}:
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if connectedFut.failed:
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fatal "connectToNetwork failed", msg = connectedFut.readError.msg
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quit(1)
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# Using a hardcoded symmetric key for encryption of the payload for the sake of
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# simplicity.
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var symKey: SymKey
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symKey[31] = 1
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# Asymmetric keypair to sign the payload.
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let signKeyPair = KeyPair.random(rng[])
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# Code to be executed on receival of a message on filter.
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proc handler(msg: ReceivedMessage) =
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if msg.decoded.src.isSome():
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echo "Received message from ", $msg.decoded.src.get(), ": ",
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string.fromBytes(msg.decoded.payload)
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# Create and subscribe filter with above handler.
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let
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topic = [byte 0, 0, 0, 0]
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filter = initFilter(symKey = some(symKey), topics = @[topic])
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discard node.subscribeFilter(filter, handler)
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# Repeat the posting of a message every 5 seconds.
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proc repeatMessage(udata: pointer) {.gcsafe.} =
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{.gcsafe.}:
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# Post a waku message on the network, encrypted with provided symmetric key,
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# signed with asymmetric key, on topic and with ttl of 30 seconds.
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let posted = node.postMessage(
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symKey = some(symKey), src = some(signKeyPair.seckey),
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ttl = 30, topic = topic, payload = @[byte 0x48, 0x65, 0x6C, 0x6C, 0x6F])
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if posted: echo "Posted message as ", $signKeyPair.pubkey
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else: echo "Posting message failed."
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discard setTimer(Moment.fromNow(5.seconds), repeatMessage)
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discard setTimer(Moment.fromNow(5.seconds), repeatMessage)
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runForever()
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