518 lines
20 KiB
Nim
518 lines
20 KiB
Nim
# beacon_chain
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# Copyright (c) 2018-2024 Status Research & Development GmbH
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# Licensed and distributed under either of
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# * MIT license (license terms in the root directory or at https://opensource.org/licenses/MIT).
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# * Apache v2 license (license terms in the root directory or at https://www.apache.org/licenses/LICENSE-2.0).
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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{.push raises: [].}
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import
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chronicles, chronos, snappy, snappy/codec,
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../spec/datatypes/[phase0, altair, bellatrix, capella, deneb, eip7594],
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../spec/[helpers, forks, network],
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".."/[beacon_clock],
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../networking/eth2_network,
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../consensus_object_pools/blockchain_dag,
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../rpc/rest_constants
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logScope:
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topics = "sync_proto"
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const
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blockResponseCost = allowedOpsPerSecondCost(64)
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## Allow syncing ~64 blocks/sec (minus request costs)
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blobResponseCost = allowedOpsPerSecondCost(1000)
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## Multiple can exist per block, they are much smaller than blocks
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dataColumnResponseCost = allowedOpsPerSecondCost(8000)
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## 1 blob has an equivalent memory of 8 data columns
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type
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BeaconSyncNetworkState* {.final.} = ref object of RootObj
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dag: ChainDAGRef
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cfg: RuntimeConfig
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genesisBlockRoot: Eth2Digest
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BlockRootSlot* = object
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blockRoot: Eth2Digest
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slot: Slot
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BlockRootsList* = List[Eth2Digest, Limit MAX_REQUEST_BLOCKS]
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BlobIdentifierList* = List[BlobIdentifier, Limit MAX_REQUEST_BLOB_SIDECARS]
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DataColumnIdentifierList* = List[DataColumnIdentifier, Limit MAX_REQUEST_DATA_COLUMNS]
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proc readChunkPayload*(
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conn: Connection, peer: Peer, MsgType: type (ref ForkedSignedBeaconBlock)):
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Future[NetRes[MsgType]] {.async: (raises: [CancelledError]).} =
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var contextBytes: ForkDigest
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try:
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await conn.readExactly(addr contextBytes, sizeof contextBytes)
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except CancelledError as exc:
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raise exc
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except CatchableError:
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return neterr UnexpectedEOF
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static: doAssert ConsensusFork.high == ConsensusFork.Electra
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if contextBytes == peer.network.forkDigests.phase0:
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let res = await readChunkPayload(conn, peer, phase0.SignedBeaconBlock)
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if res.isOk:
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return ok newClone(ForkedSignedBeaconBlock.init(res.get))
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else:
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return err(res.error)
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elif contextBytes == peer.network.forkDigests.altair:
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let res = await readChunkPayload(conn, peer, altair.SignedBeaconBlock)
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if res.isOk:
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return ok newClone(ForkedSignedBeaconBlock.init(res.get))
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else:
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return err(res.error)
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elif contextBytes == peer.network.forkDigests.bellatrix:
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let res = await readChunkPayload(conn, peer, bellatrix.SignedBeaconBlock)
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if res.isOk:
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return ok newClone(ForkedSignedBeaconBlock.init(res.get))
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else:
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return err(res.error)
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elif contextBytes == peer.network.forkDigests.capella:
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let res = await readChunkPayload(conn, peer, capella.SignedBeaconBlock)
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if res.isOk:
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return ok newClone(ForkedSignedBeaconBlock.init(res.get))
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else:
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return err(res.error)
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elif contextBytes == peer.network.forkDigests.deneb:
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let res = await readChunkPayload(conn, peer, deneb.SignedBeaconBlock)
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if res.isOk:
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return ok newClone(ForkedSignedBeaconBlock.init(res.get))
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else:
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return err(res.error)
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elif contextBytes == peer.network.forkDigests.electra:
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let res = await readChunkPayload(conn, peer, electra.SignedBeaconBlock)
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if res.isOk:
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return ok newClone(ForkedSignedBeaconBlock.init(res.get))
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else:
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return err(res.error)
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else:
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return neterr InvalidContextBytes
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proc readChunkPayload*(
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conn: Connection, peer: Peer, MsgType: type (ref BlobSidecar)):
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Future[NetRes[MsgType]] {.async: (raises: [CancelledError]).} =
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var contextBytes: ForkDigest
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try:
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await conn.readExactly(addr contextBytes, sizeof contextBytes)
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except CancelledError as exc:
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raise exc
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except CatchableError:
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return neterr UnexpectedEOF
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if contextBytes == peer.network.forkDigests.deneb:
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let res = await readChunkPayload(conn, peer, BlobSidecar)
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if res.isOk:
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return ok newClone(res.get)
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else:
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return err(res.error)
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else:
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return neterr InvalidContextBytes
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proc readChunkPayload*(
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conn: Connection, peer: Peer, MsgType: type (ref DataColumnSidecar)):
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Future[NetRes[MsgType]] {.async: (raises: [CancelledError]).} =
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var contextBytes: ForkDigest
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try:
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await conn.readExactly(addr contextBytes, sizeof contextBytes)
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except CancelledError as exc:
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raise exc
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except CatchableError:
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return neterr UnexpectedEOF
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if contextBytes == peer.network.forkDigests.deneb:
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let res = await readChunkPayload(conn, peer, DataColumnSidecar)
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if res.isOk:
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return ok newClone(res.get)
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else:
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return err(res.error)
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else:
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return neterr InvalidContextBytes
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{.pop.} # TODO fix p2p macro for raises
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p2pProtocol BeaconSync(version = 1,
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networkState = BeaconSyncNetworkState):
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proc beaconBlocksByRange_v2(
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peer: Peer,
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startSlot: Slot,
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reqCount: uint64,
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reqStep: uint64,
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response: MultipleChunksResponse[
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ref ForkedSignedBeaconBlock, Limit MAX_REQUEST_BLOCKS])
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{.async, libp2pProtocol("beacon_blocks_by_range", 2).} =
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# TODO Semantically, this request should return a non-ref, but doing so
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# runs into extreme inefficiency due to the compiler introducing
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# hidden copies - in future nim versions with move support, this should
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# be revisited
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# TODO This code is more complicated than it needs to be, since the type
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# of the multiple chunks response is not actually used in this server
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# implementation (it's used to derive the signature of the client
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# function, not in the code below!)
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# TODO although you can't tell from this function definition, a magic
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# client call that returns `seq[ref ForkedSignedBeaconBlock]` will
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# will be generated by the libp2p macro - we guarantee that seq items
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# are `not-nil` in the implementation
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# TODO reqStep is deprecated - future versions can remove support for
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# values != 1: https://github.com/ethereum/consensus-specs/pull/2856
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trace "got range request", peer, startSlot,
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count = reqCount, step = reqStep
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if reqCount == 0 or reqStep == 0:
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raise newException(InvalidInputsError, "Empty range requested")
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var blocks: array[MAX_REQUEST_BLOCKS.int, BlockId]
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let
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dag = peer.networkState.dag
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# Limit number of blocks in response
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count = int min(reqCount, blocks.lenu64)
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endIndex = count - 1
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startIndex =
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dag.getBlockRange(startSlot, reqStep,
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blocks.toOpenArray(0, endIndex))
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var
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found = 0
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bytes: seq[byte]
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for i in startIndex..endIndex:
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if dag.getBlockSZ(blocks[i], bytes):
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# In general, there is not much intermediate time between post-merge
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# blocks all being optimistic and none of them being optimistic. The
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# EL catches up, tells the CL the head is verified, and that's it.
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if blocks[i].slot.epoch >= dag.cfg.BELLATRIX_FORK_EPOCH and
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not dag.head.executionValid:
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continue
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let uncompressedLen = uncompressedLenFramed(bytes).valueOr:
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warn "Cannot read block size, database corrupt?",
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bytes = bytes.len(), blck = shortLog(blocks[i])
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continue
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# TODO extract from libp2pProtocol
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peer.awaitQuota(blockResponseCost, "beacon_blocks_by_range/2")
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peer.network.awaitQuota(blockResponseCost, "beacon_blocks_by_range/2")
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await response.writeBytesSZ(
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uncompressedLen, bytes,
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peer.network.forkDigestAtEpoch(blocks[i].slot.epoch).data)
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inc found
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debug "Block range request done",
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peer, startSlot, count, reqStep
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proc beaconBlocksByRoot_v2(
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peer: Peer,
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# Please note that the SSZ list here ensures that the
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# spec constant MAX_REQUEST_BLOCKS is enforced:
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blockRoots: BlockRootsList,
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response: MultipleChunksResponse[
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ref ForkedSignedBeaconBlock, Limit MAX_REQUEST_BLOCKS])
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{.async, libp2pProtocol("beacon_blocks_by_root", 2).} =
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# TODO Semantically, this request should return a non-ref, but doing so
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# runs into extreme inefficiency due to the compiler introducing
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# hidden copies - in future nim versions with move support, this should
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# be revisited
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# TODO This code is more complicated than it needs to be, since the type
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# of the multiple chunks response is not actually used in this server
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# implementation (it's used to derive the signature of the client
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# function, not in the code below!)
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# TODO although you can't tell from this function definition, a magic
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# client call that returns `seq[ref ForkedSignedBeaconBlock]` will
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# will be generated by the libp2p macro - we guarantee that seq items
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# are `not-nil` in the implementation
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if blockRoots.len == 0:
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raise newException(InvalidInputsError, "No blocks requested")
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let
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dag = peer.networkState.dag
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count = blockRoots.len
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var
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found = 0
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bytes: seq[byte]
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for i in 0..<count:
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let
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blockRef = dag.getBlockRef(blockRoots[i]).valueOr:
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continue
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if dag.getBlockSZ(blockRef.bid, bytes):
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# In general, there is not much intermediate time between post-merge
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# blocks all being optimistic and none of them being optimistic. The
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# EL catches up, tells the CL the head is verified, and that's it.
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if blockRef.slot.epoch >= dag.cfg.BELLATRIX_FORK_EPOCH and
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not dag.head.executionValid:
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continue
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let uncompressedLen = uncompressedLenFramed(bytes).valueOr:
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warn "Cannot read block size, database corrupt?",
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bytes = bytes.len(), blck = shortLog(blockRef)
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continue
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# TODO extract from libp2pProtocol
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peer.awaitQuota(blockResponseCost, "beacon_blocks_by_root/2")
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peer.network.awaitQuota(blockResponseCost, "beacon_blocks_by_root/2")
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await response.writeBytesSZ(
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uncompressedLen, bytes,
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peer.network.forkDigestAtEpoch(blockRef.slot.epoch).data)
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inc found
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debug "Block root request done",
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peer, roots = blockRoots.len, count, found
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# https://github.com/ethereum/consensus-specs/blob/v1.3.0/specs/deneb/p2p-interface.md#blobsidecarsbyroot-v1
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proc blobSidecarsByRoot(
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peer: Peer,
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blobIds: BlobIdentifierList,
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response: MultipleChunksResponse[
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ref BlobSidecar, Limit(MAX_REQUEST_BLOB_SIDECARS)])
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{.async, libp2pProtocol("blob_sidecars_by_root", 1).} =
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# TODO Semantically, this request should return a non-ref, but doing so
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# runs into extreme inefficiency due to the compiler introducing
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# hidden copies - in future nim versions with move support, this should
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# be revisited
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# TODO This code is more complicated than it needs to be, since the type
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# of the multiple chunks response is not actually used in this server
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# implementation (it's used to derive the signature of the client
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# function, not in the code below!)
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# TODO although you can't tell from this function definition, a magic
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# client call that returns `seq[ref BlobSidecar]` will
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# will be generated by the libp2p macro - we guarantee that seq items
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# are `not-nil` in the implementation
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trace "got blobs range request", peer, len = blobIds.len
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if blobIds.len == 0:
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raise newException(InvalidInputsError, "No blobs requested")
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let
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dag = peer.networkState.dag
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count = blobIds.len
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var
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found = 0
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bytes: seq[byte]
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for i in 0..<count:
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let blockRef = dag.getBlockRef(blobIds[i].block_root).valueOr:
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continue
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let index = blobIds[i].index
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if dag.db.getBlobSidecarSZ(blockRef.bid.root, index, bytes):
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let uncompressedLen = uncompressedLenFramed(bytes).valueOr:
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warn "Cannot read blob size, database corrupt?",
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bytes = bytes.len(), blck = shortLog(blockRef), blobindex = index
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continue
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peer.awaitQuota(blobResponseCost, "blob_sidecars_by_root/1")
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peer.network.awaitQuota(blobResponseCost, "blob_sidecars_by_root/1")
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await response.writeBytesSZ(
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uncompressedLen, bytes,
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peer.network.forkDigestAtEpoch(blockRef.slot.epoch).data)
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inc found
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debug "Blob root request done",
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peer, roots = blobIds.len, count, found
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# https://github.com/ethereum/consensus-specs/blob/v1.3.0/specs/deneb/p2p-interface.md#blobsidecarsbyrange-v1
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proc blobSidecarsByRange(
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peer: Peer,
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startSlot: Slot,
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reqCount: uint64,
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response: MultipleChunksResponse[
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ref BlobSidecar, Limit(MAX_REQUEST_BLOB_SIDECARS)])
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{.async, libp2pProtocol("blob_sidecars_by_range", 1).} =
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# TODO This code is more complicated than it needs to be, since the type
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# of the multiple chunks response is not actually used in this server
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# implementation (it's used to derive the signature of the client
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# function, not in the code below!)
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# TODO although you can't tell from this function definition, a magic
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# client call that returns `seq[ref BlobSidecar]` will
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# will be generated by the libp2p macro - we guarantee that seq items
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# are `not-nil` in the implementation
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trace "got blobs range request", peer, startSlot, count = reqCount
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if reqCount == 0:
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raise newException(InvalidInputsError, "Empty range requested")
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let
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dag = peer.networkState.dag
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epochBoundary =
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if dag.cfg.MIN_EPOCHS_FOR_BLOB_SIDECARS_REQUESTS >= dag.head.slot.epoch:
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GENESIS_EPOCH
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else:
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dag.head.slot.epoch - dag.cfg.MIN_EPOCHS_FOR_BLOB_SIDECARS_REQUESTS
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if startSlot.epoch < epochBoundary:
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raise newException(ResourceUnavailableError, BlobsOutOfRange)
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var blockIds: array[int(MAX_REQUEST_BLOB_SIDECARS), BlockId]
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let
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count = int min(reqCount, blockIds.lenu64)
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endIndex = count - 1
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startIndex =
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dag.getBlockRange(startSlot, 1, blockIds.toOpenArray(0, endIndex))
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var
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found = 0
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bytes: seq[byte]
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for i in startIndex..endIndex:
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for j in 0..<MAX_BLOBS_PER_BLOCK:
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if dag.db.getBlobSidecarSZ(blockIds[i].root, BlobIndex(j), bytes):
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# In general, there is not much intermediate time between post-merge
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# blocks all being optimistic and none of them being optimistic. The
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# EL catches up, tells the CL the head is verified, and that's it.
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if blockIds[i].slot.epoch >= dag.cfg.BELLATRIX_FORK_EPOCH and
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not dag.head.executionValid:
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continue
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let uncompressedLen = uncompressedLenFramed(bytes).valueOr:
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warn "Cannot read blobs sidecar size, database corrupt?",
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bytes = bytes.len(), blck = shortLog(blockIds[i])
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continue
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# TODO extract from libp2pProtocol
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peer.awaitQuota(blobResponseCost, "blobs_sidecars_by_range/1")
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peer.network.awaitQuota(blobResponseCost, "blobs_sidecars_by_range/1")
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await response.writeBytesSZ(
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uncompressedLen, bytes,
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peer.network.forkDigestAtEpoch(blockIds[i].slot.epoch).data)
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inc found
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else:
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break
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debug "BlobSidecar range request done",
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peer, startSlot, count = reqCount, found
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# https://github.com/ethereum/consensus-specs/blob/v1.5.0-alpha.2/specs/_features/eip7594/p2p-interface.md#datacolumnsidecarsbyroot-v1
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proc dataColumnSidecarsByRoot(
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peer: Peer,
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columnIds: DataColumnIdentifierList,
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response: MultipleChunksResponse[
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ref DataColumnSidecar, Limit(MAX_REQUEST_DATA_COLUMNS)])
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{.async, libp2pProtocol("data_column_sidecars_by_root", 1).} =
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trace "got data columns range request", peer, len = columnIds.len
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if columnIds.len == 0:
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raise newException(InvalidInputsError, "No data columns requested")
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if columnIds.lenu64 > MAX_REQUEST_DATA_COLUMNS:
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raise newException(InvalidInputsError, "Exceeding data column request limit")
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let
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dag = peer.networkState.dag
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count = columnIds.len
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var
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found = 0
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bytes: seq[byte]
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for i in 0..<count:
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let blockRef = dag.getBlockRef(columnIds[i].block_root).valueOr:
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continue
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let index = columnIds[i].index
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if dag.db.getDataColumnSidecarSZ(blockRef.bid.root, index, bytes):
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let uncompressedLen = uncompressedLenFramed(bytes).valueOr:
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warn "Cannot read data column size, database corrupt?",
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bytes = bytes.len(), blck = shortLog(blockRef), columnIndex = index
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continue
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peer.awaitQuota(dataColumnResponseCost, "data_column_sidecars_by_root/1")
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peer.network.awaitQuota(dataColumnResponseCost, "data_column_sidecars_by_root/1")
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await response.writeBytesSZ(
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uncompressedLen, bytes,
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peer.network.forkDigestAtEpoch(blockRef.slot.epoch).data)
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inc found
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debug "Responded to Data Column Sidecar By Root",
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peer, blck = shortLog(blockRef), columnIndex = index
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debug "Data column root request done",
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peer, roots = columnIds.len, count, found
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# https://github.com/ethereum/consensus-specs/blob/v1.5.0-alpha.2/specs/_features/eip7594/p2p-interface.md#datacolumnsidecarsbyrange-v1
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proc dataColumnSidecarsByRange(
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peer: Peer,
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startSlot: Slot,
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reqCount: uint64,
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reqColumns: List[ColumnIndex, NUMBER_OF_COLUMNS],
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response: MultipleChunksResponse[
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ref DataColumnSidecar, Limit(MAX_REQUEST_DATA_COLUMNS)])
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{.async, libp2pProtocol("data_column_sidecars_by_range", 1).} =
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trace "got data columns range request", peer, startSlot,
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count = reqCount, columns = reqColumns
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if reqCount == 0 or reqColumns.len == 0:
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raise newException(InvalidInputsError, "Empty range requested")
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let
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dag = peer.networkState.dag
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epochBoundary =
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if dag.cfg.MIN_EPOCHS_FOR_DATA_COLUMN_SIDECARS_REQUESTS >= dag.head.slot.epoch:
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GENESIS_EPOCH
|
|
else:
|
|
dag.head.slot.epoch - dag.cfg.MIN_EPOCHS_FOR_DATA_COLUMN_SIDECARS_REQUESTS
|
|
|
|
if startSlot.epoch < epochBoundary:
|
|
raise newException(ResourceUnavailableError, DataColumnsOutOfRange)
|
|
|
|
var blockIds: array[int(MAX_REQUEST_DATA_COLUMNS), BlockId]
|
|
let
|
|
count = int min(reqCount, blockIds.lenu64)
|
|
endIndex = count - 1
|
|
startIndex =
|
|
dag.getBlockRange(startSlot, 1, blockIds.toOpenArray(0, endIndex))
|
|
|
|
var
|
|
found = 0
|
|
bytes: seq[byte]
|
|
|
|
for i in startIndex..endIndex:
|
|
for j in 0..<MAX_REQUEST_DATA_COLUMNS:
|
|
if ColumnIndex(j) in reqColumns:
|
|
if dag.db.getDataColumnSidecarSZ(blockIds[i].root, ColumnIndex(j), bytes):
|
|
if blockIds[i].slot.epoch >= dag.cfg.DENEB_FORK_EPOCH and
|
|
not dag.head.executionValid:
|
|
continue
|
|
|
|
let uncompressedLen = uncompressedLenFramed(bytes).valueOr:
|
|
warn "Cannot read data column sidecar size, database, corrupt",
|
|
bytes = bytes.len(), blck = shortLog(blockIds[i])
|
|
continue
|
|
|
|
# peer.awaitQuota(dataColumnResponseCost, "data_column_sidecars_by_range/1")
|
|
# peer.network.awaitQuota(dataColumnResponseCost, "data_column_sidecars_by_range/1")
|
|
|
|
await response.writeBytesSZ(
|
|
uncompressedLen, bytes,
|
|
peer.network.forkDigestAtEpoch(blockIds[i].slot.epoch).data)
|
|
inc found
|
|
var cols: seq[ColumnIndex]
|
|
cols.add(j)
|
|
debug "Responded to DataColumnSidecar range request",
|
|
peer, blck = shortLog(blockIds[i]), columns = cols
|
|
else:
|
|
break
|
|
|
|
else:
|
|
break
|
|
|
|
|
|
debug "DataColumnSidecar range request done",
|
|
peer, startSlot, count = reqCount, columns = reqColumns, found
|
|
|
|
proc init*(T: type BeaconSync.NetworkState, dag: ChainDAGRef): T =
|
|
T(
|
|
dag: dag,
|
|
)
|