679 lines
22 KiB
Nim
679 lines
22 KiB
Nim
# Nimbus
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# Copyright (c) 2023-2024 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) or
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# http://www.apache.org/licenses/LICENSE-2.0)
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# * MIT license ([LICENSE-MIT](LICENSE-MIT) or
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# http://opensource.org/licenses/MIT)
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# at your option. This file may not be copied, modified, or distributed except
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# according to those terms.
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import
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std/[times, json, strutils],
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stew/byteutils,
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eth/[common, common/eth_types, rlp], chronos,
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json_rpc/[rpcclient, errors, jsonmarshal],
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../../../nimbus/beacon/web3_eth_conv,
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./types
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import
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web3/eth_api_types,
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web3/engine_api_types,
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web3/execution_types,
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web3/engine_api,
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web3/eth_api
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export
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execution_types,
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rpcclient
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type
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Hash256 = eth_types.Hash256
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VersionedHash = engine_api_types.VersionedHash
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template wrapTry(body: untyped) =
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try:
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body
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except ValueError as e:
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return err(e.msg)
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except JsonRpcError as ex:
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return err(ex.msg)
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template wrapTrySimpleRes(body: untyped) =
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wrapTry:
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let res = waitFor body
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return ok(res)
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proc forkchoiceUpdatedV1*(client: RpcClient,
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update: ForkchoiceStateV1,
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payloadAttributes = Opt.none(PayloadAttributesV1)):
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Result[ForkchoiceUpdatedResponse, string] =
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wrapTrySimpleRes:
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client.engine_forkchoiceUpdatedV1(update, payloadAttributes)
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proc forkchoiceUpdatedV2*(client: RpcClient,
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update: ForkchoiceStateV1,
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payloadAttributes = Opt.none(PayloadAttributes)):
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Result[ForkchoiceUpdatedResponse, string] =
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wrapTrySimpleRes:
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client.engine_forkchoiceUpdatedV2(update, payloadAttributes)
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proc forkchoiceUpdatedV3*(client: RpcClient,
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update: ForkchoiceStateV1,
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payloadAttributes = Opt.none(PayloadAttributes)):
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Result[ForkchoiceUpdatedResponse, string] =
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wrapTrySimpleRes:
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client.engine_forkchoiceUpdatedV3(update, payloadAttributes)
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proc getPayloadV1*(client: RpcClient, payloadId: PayloadID): Result[ExecutionPayloadV1, string] =
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wrapTrySimpleRes:
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client.engine_getPayloadV1(payloadId)
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proc getPayloadV2*(client: RpcClient, payloadId: PayloadID): Result[GetPayloadV2Response, string] =
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wrapTrySimpleRes:
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client.engine_getPayloadV2(payloadId)
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proc getPayloadV3*(client: RpcClient, payloadId: PayloadID): Result[GetPayloadV3Response, string] =
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wrapTrySimpleRes:
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client.engine_getPayloadV3(payloadId)
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proc getPayloadV4*(client: RpcClient, payloadId: PayloadID): Result[GetPayloadV4Response, string] =
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wrapTrySimpleRes:
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client.engine_getPayloadV4(payloadId)
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proc getPayload*(client: RpcClient,
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payloadId: PayloadID,
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version: Version): Result[GetPayloadResponse, string] =
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if version == Version.V4:
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let x = client.getPayloadV4(payloadId).valueOr:
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return err(error)
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ok(GetPayloadResponse(
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executionPayload: executionPayload(x.executionPayload),
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blockValue: Opt.some(x.blockValue),
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blobsBundle: Opt.some(x.blobsBundle),
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shouldOverrideBuilder: Opt.some(x.shouldOverrideBuilder),
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))
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elif version == Version.V3:
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let x = client.getPayloadV3(payloadId).valueOr:
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return err(error)
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ok(GetPayloadResponse(
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executionPayload: executionPayload(x.executionPayload),
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blockValue: Opt.some(x.blockValue),
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blobsBundle: Opt.some(x.blobsBundle),
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shouldOverrideBuilder: Opt.some(x.shouldOverrideBuilder),
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))
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elif version == Version.V2:
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let x = client.getPayloadV2(payloadId).valueOr:
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return err(error)
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ok(GetPayloadResponse(
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executionPayload: executionPayload(x.executionPayload),
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blockValue: Opt.some(x.blockValue)
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))
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else:
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let x = client.getPayloadV1(payloadId).valueOr:
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return err(error)
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ok(GetPayloadResponse(
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executionPayload: executionPayload(x),
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))
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proc forkchoiceUpdated*(client: RpcClient,
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update: ForkchoiceStateV1,
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attr: PayloadAttributes):
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Result[ForkchoiceUpdatedResponse, string] =
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case attr.version
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of Version.V1: return client.forkchoiceUpdatedV1(update, Opt.some attr.V1)
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of Version.V2: return client.forkchoiceUpdatedV2(update, Opt.some attr)
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of Version.V3: return client.forkchoiceUpdatedV3(update, Opt.some attr)
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of Version.V4: discard
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proc forkchoiceUpdated*(client: RpcClient,
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version: Version,
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update: ForkchoiceStateV1,
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attr = Opt.none(PayloadAttributes)):
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Result[ForkchoiceUpdatedResponse, string] =
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case version
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of Version.V1: return client.forkchoiceUpdatedV1(update, attr.V1)
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of Version.V2: return client.forkchoiceUpdatedV2(update, attr)
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of Version.V3: return client.forkchoiceUpdatedV3(update, attr)
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of Version.V4: discard
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proc newPayloadV1*(client: RpcClient,
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payload: ExecutionPayloadV1):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV1(payload)
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proc newPayloadV2*(client: RpcClient,
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payload: ExecutionPayloadV2):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV2(payload)
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proc newPayloadV2*(client: RpcClient,
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payload: ExecutionPayloadV1OrV2):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV2(payload)
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proc newPayloadV3*(client: RpcClient,
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payload: ExecutionPayloadV3,
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versionedHashes: seq[VersionedHash],
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parentBeaconBlockRoot: FixedBytes[32]
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):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV3(payload, versionedHashes, parentBeaconBlockRoot)
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proc newPayloadV4*(client: RpcClient,
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payload: ExecutionPayloadV4,
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versionedHashes: seq[VersionedHash],
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parentBeaconBlockRoot: FixedBytes[32]
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):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV4(payload, versionedHashes, parentBeaconBlockRoot)
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proc newPayloadV1*(client: RpcClient,
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payload: ExecutionPayload):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV1(payload)
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proc newPayloadV2*(client: RpcClient,
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payload: ExecutionPayload):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV2(payload)
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proc newPayloadV3*(client: RpcClient,
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payload: ExecutionPayload,
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versionedHashes: Opt[seq[VersionedHash]],
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parentBeaconBlockRoot: Opt[FixedBytes[32]]
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):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV3(payload, versionedHashes, parentBeaconBlockRoot)
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proc newPayloadV4*(client: RpcClient,
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payload: ExecutionPayload,
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versionedHashes: Opt[seq[VersionedHash]],
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parentBeaconBlockRoot: Opt[FixedBytes[32]]
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):
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Result[PayloadStatusV1, string] =
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wrapTrySimpleRes:
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client.engine_newPayloadV4(payload, versionedHashes, parentBeaconBlockRoot)
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proc collectBlobHashes(list: openArray[Web3Tx]): seq[Web3Hash] =
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for w3tx in list:
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let tx = ethTx(w3tx)
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for h in tx.versionedHashes:
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result.add w3Hash(h)
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proc newPayload*(client: RpcClient,
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payload: ExecutionPayload,
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beaconRoot = Opt.none(common.Hash256)): Result[PayloadStatusV1, string] =
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case payload.version
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of Version.V1: return client.newPayloadV1(payload.V1)
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of Version.V2: return client.newPayloadV2(payload.V2)
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of Version.V3:
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if beaconRoot.isNone:
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# fallback
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return client.newPayloadV2(payload.V2)
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let versionedHashes = collectBlobHashes(payload.transactions)
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return client.newPayloadV3(payload.V3,
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versionedHashes,
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w3Hash beaconRoot.get)
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of Version.V4:
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let versionedHashes = collectBlobHashes(payload.transactions)
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return client.newPayloadV4(payload.V4,
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versionedHashes,
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w3Hash beaconRoot.get)
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proc newPayload*(client: RpcClient,
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version: Version,
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payload: ExecutionPayload,
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beaconRoot = Opt.none(common.Hash256)): Result[PayloadStatusV1, string] =
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case version
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of Version.V1: return client.newPayloadV1(payload)
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of Version.V2: return client.newPayloadV2(payload)
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of Version.V3:
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let versionedHashes = collectBlobHashes(payload.transactions)
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return client.newPayloadV3(payload,
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Opt.some(versionedHashes),
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w3Hash beaconRoot)
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of Version.V4:
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let versionedHashes = collectBlobHashes(payload.transactions)
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return client.newPayloadV4(payload,
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Opt.some(versionedHashes),
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w3Hash beaconRoot)
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proc newPayload*(client: RpcClient,
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version: Version,
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payload: ExecutableData): Result[PayloadStatusV1, string] =
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case version
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of Version.V1: return client.newPayloadV1(payload.basePayload)
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of Version.V2: return client.newPayloadV2(payload.basePayload)
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of Version.V3:
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return client.newPayloadV3(payload.basePayload,
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w3Hashes payload.versionedHashes,
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w3Hash payload.beaconRoot)
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of Version.V4:
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return client.newPayloadV4(payload.basePayload,
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w3Hashes payload.versionedHashes,
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w3Hash payload.beaconRoot)
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proc exchangeCapabilities*(client: RpcClient,
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methods: seq[string]):
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Result[seq[string], string] =
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wrapTrySimpleRes:
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client.engine_exchangeCapabilities(methods)
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proc toBlockNonce(n: Opt[FixedBytes[8]]): common.BlockNonce =
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if n.isNone:
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return default(BlockNonce)
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n.get.bytes
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proc maybeU64(n: Opt[Quantity]): Opt[uint64] =
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if n.isNone:
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return Opt.none(uint64)
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Opt.some(n.get.uint64)
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proc maybeU64(n: Opt[Web3BlockNumber]): Opt[uint64] =
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if n.isNone:
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return Opt.none(uint64)
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Opt.some(n.get.uint64)
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proc maybeBool(n: Opt[Quantity]): Opt[bool] =
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if n.isNone:
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return Opt.none(bool)
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Opt.some(n.get.bool)
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proc maybeChainId(n: Opt[Quantity]): Opt[ChainId] =
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if n.isNone:
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return Opt.none(ChainId)
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Opt.some(n.get.ChainId)
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proc maybeInt(n: Opt[Quantity]): Opt[int] =
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if n.isNone:
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return Opt.none(int)
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Opt.some(n.get.int)
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proc toBlockHeader*(bc: BlockObject): common.BlockHeader =
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common.BlockHeader(
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number : common.BlockNumber bc.number,
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parentHash : ethHash bc.parentHash,
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nonce : toBlockNonce(bc.nonce),
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ommersHash : ethHash bc.sha3Uncles,
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logsBloom : BloomFilter bc.logsBloom,
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txRoot : ethHash bc.transactionsRoot,
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stateRoot : ethHash bc.stateRoot,
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receiptsRoot : ethHash bc.receiptsRoot,
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coinbase : ethAddr bc.miner,
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difficulty : bc.difficulty,
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extraData : bc.extraData.bytes,
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mixHash : ethHash bc.mixHash,
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gasLimit : bc.gasLimit.GasInt,
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gasUsed : bc.gasUsed.GasInt,
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timestamp : EthTime bc.timestamp,
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baseFeePerGas : bc.baseFeePerGas,
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withdrawalsRoot: ethHash bc.withdrawalsRoot,
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blobGasUsed : maybeU64(bc.blobGasUsed),
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excessBlobGas : maybeU64(bc.excessBlobGas),
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parentBeaconBlockRoot: ethHash bc.parentBeaconBlockRoot,
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)
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func vHashes(x: Opt[seq[Web3Hash]]): seq[common.Hash256] =
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if x.isNone: return
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else: ethHashes(x.get)
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proc toTransaction(tx: TransactionObject): Transaction =
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common.Transaction(
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txType : tx.`type`.get(0.Web3Quantity).TxType,
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chainId : tx.chainId.get(0.Web3Quantity).ChainId,
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nonce : tx.nonce.AccountNonce,
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gasPrice : tx.gasPrice.GasInt,
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maxPriorityFeePerGas: tx.maxPriorityFeePerGas.get(0.Web3Quantity).GasInt,
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maxFeePerGas : tx.maxFeePerGas.get(0.Web3Quantity).GasInt,
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gasLimit : tx.gas.GasInt,
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to : ethAddr tx.to,
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value : tx.value,
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payload : tx.input,
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accessList : ethAccessList(tx.accessList),
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maxFeePerBlobGas: tx.maxFeePerBlobGas.get(0.u256),
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versionedHashes : vHashes(tx.blobVersionedHashes),
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V : tx.v.uint64,
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R : tx.r,
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S : tx.s,
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)
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proc toTransactions*(txs: openArray[TxOrHash]): seq[Transaction] =
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for x in txs:
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doAssert x.kind == tohTx
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result.add toTransaction(x.tx)
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proc toWithdrawal(wd: WithdrawalObject): Withdrawal =
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Withdrawal(
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index: wd.index.uint64,
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validatorIndex: wd.validatorIndex.uint64,
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address: ethAddr wd.address,
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amount: wd.amount.uint64,
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)
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proc toWithdrawals(list: seq[WithdrawalObject]): seq[Withdrawal] =
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result = newSeqOfCap[Withdrawal](list.len)
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for wd in list:
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result.add toWithdrawal(wd)
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proc toWithdrawals*(list: Opt[seq[WithdrawalObject]]): Opt[seq[Withdrawal]] =
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if list.isNone:
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return Opt.none(seq[Withdrawal])
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Opt.some(toWithdrawals(list.get))
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type
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RPCReceipt* = object
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txHash*: Hash256
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txIndex*: int
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blockHash*: Hash256
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blockNumber*: uint64
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sender*: EthAddress
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to*: Opt[EthAddress]
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cumulativeGasUsed*: GasInt
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gasUsed*: GasInt
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contractAddress*: Opt[EthAddress]
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logs*: seq[LogObject]
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logsBloom*: FixedBytes[256]
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recType*: ReceiptType
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stateRoot*: Opt[Hash256]
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status*: Opt[bool]
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effectiveGasPrice*: GasInt
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blobGasUsed*: Opt[uint64]
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blobGasPrice*: Opt[UInt256]
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RPCTx* = object
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txType*: TxType
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blockHash*: Opt[Hash256] # none if pending
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blockNumber*: Opt[uint64]
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sender*: EthAddress
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gasLimit*: GasInt
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gasPrice*: GasInt
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maxFeePerGas*: GasInt
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maxPriorityFeePerGas*: GasInt
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hash*: Hash256
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payload*: seq[byte]
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nonce*: AccountNonce
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to*: Opt[EthAddress]
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txIndex*: Opt[int]
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value*: UInt256
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v*: uint64
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r*: UInt256
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s*: UInt256
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chainId*: Opt[ChainId]
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accessList*: Opt[seq[AccessTuple]]
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maxFeePerBlobGas*: Opt[UInt256]
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versionedHashes*: Opt[VersionedHashes]
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proc toRPCReceipt(rec: ReceiptObject): RPCReceipt =
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RPCReceipt(
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txHash: ethHash rec.transactionHash,
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txIndex: rec.transactionIndex.int,
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blockHash: ethHash rec.blockHash,
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blockNumber: rec.blockNumber.uint64,
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sender: ethAddr rec.`from`,
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to: ethAddr rec.to,
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cumulativeGasUsed: rec.cumulativeGasUsed.GasInt,
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gasUsed: rec.gasUsed.GasInt,
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contractAddress: ethAddr rec.contractAddress,
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logs: rec.logs,
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logsBloom: rec.logsBloom,
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recType: rec.`type`.get(0.Web3Quantity).ReceiptType,
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stateRoot: ethHash rec.root,
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status: maybeBool(rec.status),
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effectiveGasPrice: rec.effectiveGasPrice.GasInt,
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blobGasUsed: maybeU64(rec.blobGasUsed),
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blobGasPrice: rec.blobGasPrice,
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)
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proc toRPCTx(tx: eth_api.TransactionObject): RPCTx =
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RPCTx(
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txType: tx.`type`.get(0.Web3Quantity).TxType,
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blockHash: ethHash tx.blockHash,
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blockNumber: maybeU64 tx.blockNumber,
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sender: ethAddr tx.`from`,
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gasLimit: tx.gas.GasInt,
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gasPrice: tx.gasPrice.GasInt,
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maxFeePerGas: tx.maxFeePerGas.get(0.Web3Quantity).GasInt,
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maxPriorityFeePerGas: tx.maxPriorityFeePerGas.get(0.Web3Quantity).GasInt,
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hash: ethHash tx.hash,
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payload: tx.input,
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nonce: tx.nonce.AccountNonce,
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to: ethAddr tx.to,
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txIndex: maybeInt(tx.transactionIndex),
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value: tx.value,
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v: tx.v.uint64,
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r: tx.r,
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s: tx.s,
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chainId: maybeChainId(tx.chainId),
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accessList: tx.accessList,
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maxFeePerBlobGas: tx.maxFeePerBlobGas,
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versionedHashes: ethHashes tx.blobVersionedHashes,
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)
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proc waitForTTD*(client: RpcClient,
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ttd: DifficultyInt): Future[(common.BlockHeader, bool)] {.async.} =
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let period = chronos.seconds(5)
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var loop = 0
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var emptyHeader: common.BlockHeader
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while loop < 5:
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let bc = await client.eth_getBlockByNumber("latest", false)
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if bc.isNil:
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return (emptyHeader, false)
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if bc.totalDifficulty >= ttd:
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return (toBlockHeader(bc), true)
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await sleepAsync(period)
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inc loop
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return (emptyHeader, false)
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proc blockNumber*(client: RpcClient): Result[uint64, string] =
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wrapTry:
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let res = waitFor client.eth_blockNumber()
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return ok(res.uint64)
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proc headerByNumber*(client: RpcClient, number: uint64): Result[common.BlockHeader, string] =
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wrapTry:
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let res = waitFor client.eth_getBlockByNumber(blockId(number), false)
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if res.isNil:
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return err("failed to get blockHeader: " & $number)
|
|
return ok(res.toBlockHeader)
|
|
|
|
#proc blockByNumber*(client: RpcClient, number: uint64, output: var common.EthBlock): Result[void, string] =
|
|
# wrapTry:
|
|
# let res = waitFor client.eth_getBlockByNumber(blockId(number), true)
|
|
# if res.isNil:
|
|
# return err("failed to get block: " & $number)
|
|
# output.header = toBlockHeader(res)
|
|
# output.txs = toTransactions(res.transactions)
|
|
# output.withdrawals = toWithdrawals(res.withdrawals)
|
|
# return ok()
|
|
|
|
proc headerByHash*(client: RpcClient, hash: Hash256): Result[common.BlockHeader, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getBlockByHash(w3Hash hash, false)
|
|
if res.isNil:
|
|
return err("failed to get block: " & hash.data.toHex)
|
|
return ok(res.toBlockHeader)
|
|
|
|
proc latestHeader*(client: RpcClient): Result[common.BlockHeader, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getBlockByNumber(blockId("latest"), false)
|
|
if res.isNil:
|
|
return err("failed to get latest blockHeader")
|
|
return ok(res.toBlockHeader)
|
|
|
|
proc latestBlock*(client: RpcClient): Result[common.EthBlock, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getBlockByNumber(blockId("latest"), true)
|
|
if res.isNil:
|
|
return err("failed to get latest blockHeader")
|
|
let output = EthBlock(
|
|
header: toBlockHeader(res),
|
|
transactions: toTransactions(res.transactions),
|
|
withdrawals: toWithdrawals(res.withdrawals),
|
|
)
|
|
return ok(output)
|
|
|
|
proc namedHeader*(client: RpcClient, name: string): Result[common.BlockHeader, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getBlockByNumber(name, false)
|
|
if res.isNil:
|
|
return err("failed to get named blockHeader")
|
|
return ok(res.toBlockHeader)
|
|
|
|
proc sendTransaction*(
|
|
client: RpcClient, tx: common.PooledTransaction): Result[void, string] =
|
|
wrapTry:
|
|
let encodedTx = rlp.encode(tx)
|
|
let res = waitFor client.eth_sendRawTransaction(encodedTx)
|
|
let txHash = rlpHash(tx)
|
|
let getHash = ethHash res
|
|
if txHash != getHash:
|
|
return err("sendTransaction: tx hash mismatch")
|
|
return ok()
|
|
|
|
proc balanceAt*(client: RpcClient, address: EthAddress): Result[UInt256, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getBalance(w3Addr(address), blockId("latest"))
|
|
return ok(res)
|
|
|
|
proc balanceAt*(client: RpcClient, address: EthAddress, number: common.BlockNumber): Result[UInt256, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getBalance(w3Addr(address), blockId(number))
|
|
return ok(res)
|
|
|
|
proc nonceAt*(client: RpcClient, address: EthAddress): Result[AccountNonce, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getTransactionCount(w3Addr(address), blockId("latest"))
|
|
return ok(res.AccountNonce)
|
|
|
|
proc txReceipt*(client: RpcClient, txHash: Hash256): Result[RPCReceipt, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getTransactionReceipt(w3Hash txHash)
|
|
if res.isNil:
|
|
return err("failed to get receipt: " & txHash.data.toHex)
|
|
return ok(res.toRPCReceipt)
|
|
|
|
proc txByHash*(client: RpcClient, txHash: Hash256): Result[RPCTx, string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getTransactionByHash(w3Hash txHash)
|
|
if res.isNil:
|
|
return err("failed to get transaction: " & txHash.data.toHex)
|
|
return ok(res.toRPCTx)
|
|
|
|
proc storageAt*(client: RpcClient, address: EthAddress, slot: UInt256): Result[FixedBytes[32], string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getStorageAt(w3Addr(address), slot, blockId("latest"))
|
|
return ok(res)
|
|
|
|
proc storageAt*(client: RpcClient, address: EthAddress, slot: UInt256, number: common.BlockNumber): Result[FixedBytes[32], string] =
|
|
wrapTry:
|
|
let res = waitFor client.eth_getStorageAt(w3Addr(address), slot, blockId(number))
|
|
return ok(res)
|
|
|
|
proc verifyPoWProgress*(client: RpcClient, lastBlockHash: Hash256): Future[Result[void, string]] {.async.} =
|
|
let res = await client.eth_getBlockByHash(w3Hash lastBlockHash, false)
|
|
if res.isNil:
|
|
return err("cannot get block by hash " & lastBlockHash.data.toHex)
|
|
|
|
let header = res
|
|
let number = header.number.u256
|
|
|
|
let period = chronos.seconds(3)
|
|
var loop = 0
|
|
while loop < 5:
|
|
let res = await client.eth_getBlockByNumber(blockId("latest"), false)
|
|
if res.isNil:
|
|
return err("cannot get latest block")
|
|
|
|
# Chain has progressed, check that the next block is also PoW
|
|
# Difficulty must NOT be zero
|
|
let bc = res
|
|
let diff = bc.difficulty
|
|
if diff.isZero:
|
|
return err("Expected PoW chain to progress in PoW mode, but following block difficulty: " & $diff)
|
|
|
|
if bc.number.u256 > number:
|
|
return ok()
|
|
|
|
await sleepAsync(period)
|
|
inc loop
|
|
|
|
return err("verify PoW Progress timeout")
|
|
|
|
type
|
|
TraceOpts = object
|
|
disableStorage: bool
|
|
disableMemory: bool
|
|
disableState: bool
|
|
disableStateDiff: bool
|
|
|
|
TraceOpts.useDefaultSerializationIn JrpcConv
|
|
|
|
createRpcSigsFromNim(RpcClient):
|
|
proc debug_traceTransaction(hash: TxHash, opts: TraceOpts): JsonNode
|
|
|
|
proc debugPrevRandaoTransaction*(
|
|
client: RpcClient,
|
|
tx: PooledTransaction,
|
|
expectedPrevRandao: Hash256): Result[void, string] =
|
|
wrapTry:
|
|
let hash = w3Hash tx.rlpHash
|
|
# we only interested in stack, disable all other elems
|
|
let opts = TraceOpts(
|
|
disableStorage: true,
|
|
disableMemory: true,
|
|
disableState: true,
|
|
disableStateDiff: true
|
|
)
|
|
|
|
let res = waitFor client.debug_traceTransaction(hash, opts)
|
|
let structLogs = res["structLogs"]
|
|
|
|
var prevRandaoFound = false
|
|
for i, x in structLogs.elems:
|
|
let op = x["op"].getStr
|
|
if op != "DIFFICULTY": continue
|
|
|
|
if i+1 >= structLogs.len:
|
|
return err("No information after PREVRANDAO operation")
|
|
|
|
prevRandaoFound = true
|
|
let stack = structLogs[i+1]["stack"]
|
|
if stack.len < 1:
|
|
return err("Invalid stack after PREVRANDAO operation")
|
|
|
|
let stackHash = Hash256(data: hextoByteArray[32](stack[0].getStr))
|
|
if stackHash != expectedPrevRandao:
|
|
return err("Invalid stack after PREVRANDAO operation $1 != $2" % [stackHash.data.toHex, expectedPrevRandao.data.toHex])
|
|
|
|
if not prevRandaoFound:
|
|
return err("PREVRANDAO opcode not found")
|
|
|
|
return ok()
|
|
|
|
template expectBalanceEqual*(res: Result[UInt256, string], account: EthAddress,
|
|
expectedBalance: UInt256): auto =
|
|
if res.isErr:
|
|
return err(res.error)
|
|
if res.get != expectedBalance:
|
|
return err("invalid wd balance at $1, expect $2, get $3" % [
|
|
account.toHex, $expectedBalance, $res.get])
|
|
|
|
template expectStorageEqual*(res: Result[FixedBytes[32], string], account: EthAddress,
|
|
expectedValue: FixedBytes[32]): auto =
|
|
if res.isErr:
|
|
return err(res.error)
|
|
if res.get != expectedValue:
|
|
return err("invalid wd storage at $1 is $2, expect $3" % [
|
|
account.toHex, $res.get, $expectedValue])
|