367 lines
12 KiB
Nim
367 lines
12 KiB
Nim
# nimbus-eth1
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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) 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
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# except according to those terms.
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import
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std/[sequtils, tables],
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chronicles,
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eth/[common, p2p, trie/db, trie/nibbles],
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../../../../db/[select_backend, storage_types],
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../../range_desc,
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"."/[hexary_desc, hexary_error, hexary_import, hexary_nearby,
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hexary_paths, rocky_bulk_load]
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{.push raises: [].}
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logScope:
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topics = "snap-db"
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const
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extraTraceMessages = false or true
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RockyBulkCache* = "accounts.sst"
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## Name of temporary file to accomodate SST records for `rocksdb`
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type
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SnapDbRef* = ref object
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## Global, re-usable descriptor
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keyMap: Table[RepairKey,uint] ## For debugging only (will go away)
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db: TrieDatabaseRef ## General database
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rocky: RocksStoreRef ## Set if rocksdb is available
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SnapDbBaseRef* = ref object of RootRef
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## Session descriptor
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xDb: HexaryTreeDbRef ## Hexary database, memory based
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base: SnapDbRef ## Back reference to common parameters
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root*: NodeKey ## Session DB root node key
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# ------------------------------------------------------------------------------
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# Private debugging helpers
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# ------------------------------------------------------------------------------
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template noPpError(info: static[string]; code: untyped) =
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try:
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code
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except ValueError as e:
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raiseAssert "Inconveivable (" & info & "): " & e.msg
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except KeyError as e:
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raiseAssert "Not possible (" & info & "): " & e.msg
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except CatchableError as e:
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raiseAssert "Ooops (" & info & ") " & $e.name & ": " & e.msg
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proc toKey(a: RepairKey; pv: SnapDbRef): uint =
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if not a.isZero:
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noPpError("pp(RepairKey)"):
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if not pv.keyMap.hasKey(a):
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pv.keyMap[a] = pv.keyMap.len.uint + 1
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result = pv.keyMap[a]
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proc toKey(a: RepairKey; ps: SnapDbBaseRef): uint =
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a.toKey(ps.base)
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proc toKey(a: NodeKey; ps: SnapDbBaseRef): uint =
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a.to(RepairKey).toKey(ps)
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#proc toKey(a: NodeTag; ps: SnapDbBaseRef): uint =
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# a.to(NodeKey).toKey(ps)
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proc ppImpl(a: RepairKey; pv: SnapDbRef): string =
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"$" & $a.toKey(pv)
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# ------------------------------------------------------------------------------
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# Debugging, pretty printing
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# ------------------------------------------------------------------------------
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proc pp*(a: NodeKey; ps: SnapDbBaseRef): string =
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if a.isZero: "ø" else:"$" & $a.toKey(ps)
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proc pp*(a: RepairKey; ps: SnapDbBaseRef): string =
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if a.isZero: "ø" elif a.isNodeKey: "$" & $a.toKey(ps) else: "@" & $a.toKey(ps)
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proc pp*(a: NodeTag; ps: SnapDbBaseRef): string =
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a.to(NodeKey).pp(ps)
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# ------------------------------------------------------------------------------
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# Private helper
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# ------------------------------------------------------------------------------
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proc clearRockyCacheFile(rocky: RocksStoreRef): bool =
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if not rocky.isNil:
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# A cache file might hang about from a previous crash
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try:
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discard rocky.clearCacheFile(RockyBulkCache)
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return true
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except OSError as e:
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error "Cannot clear rocksdb cache", exception=($e.name), msg=e.msg
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# ------------------------------------------------------------------------------
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# Public constructor
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# ------------------------------------------------------------------------------
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proc init*(
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T: type SnapDbRef;
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db: TrieDatabaseRef
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): T =
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## Main object constructor
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T(db: db)
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proc init*(
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T: type SnapDbRef;
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db: ChainDb
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): T =
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## Variant of `init()` allowing bulk import on rocksdb backend
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result = T(db: db.trieDB, rocky: db.rocksStoreRef)
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if not result.rocky.clearRockyCacheFile():
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result.rocky = nil
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proc init*(
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T: type HexaryTreeDbRef;
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pv: SnapDbRef;
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): T =
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## Constructor for inner hexary trie database
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let xDb = HexaryTreeDbRef()
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xDb.keyPp = proc(key: RepairKey): string = key.ppImpl(pv) # will go away
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return xDb
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proc init*(
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T: type HexaryTreeDbRef;
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ps: SnapDbBaseRef;
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): T =
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## Constructor variant
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HexaryTreeDbRef.init(ps.base)
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# ---------------
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proc init*(
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ps: SnapDbBaseRef;
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pv: SnapDbRef;
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root: NodeKey;
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) =
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## Session base constructor
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ps.base = pv
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ps.root = root
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ps.xDb = HexaryTreeDbRef.init(pv)
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proc init*(
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T: type SnapDbBaseRef;
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ps: SnapDbBaseRef;
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root: NodeKey;
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): T =
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## Variant of session base constructor
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new result
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result.init(ps.base, root)
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# ------------------------------------------------------------------------------
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# Public getters
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# ------------------------------------------------------------------------------
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proc hexaDb*(ps: SnapDbBaseRef): HexaryTreeDbRef =
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## Getter, low level access to underlying session DB
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ps.xDb
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proc rockDb*(ps: SnapDbBaseRef): RocksStoreRef =
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## Getter, low level access to underlying persistent rock DB interface
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ps.base.rocky
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proc kvDb*(ps: SnapDbBaseRef): TrieDatabaseRef =
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## Getter, low level access to underlying persistent key-value DB
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ps.base.db
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proc kvDb*(pv: SnapDbRef): TrieDatabaseRef =
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## Getter, low level access to underlying persistent key-value DB
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pv.db
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# ------------------------------------------------------------------------------
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# Public functions, select sub-tables for persistent storage
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# ------------------------------------------------------------------------------
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proc toAccountsKey*(a: NodeKey): ByteArray33 =
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a.ByteArray32.snapSyncAccountKey.data
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proc toStorageSlotsKey*(a: NodeKey): ByteArray33 =
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a.ByteArray32.snapSyncStorageSlotKey.data
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proc toStateRootKey*(a: NodeKey): ByteArray33 =
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a.ByteArray32.snapSyncStateRootKey.data
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template toOpenArray*(k: ByteArray32): openArray[byte] =
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k.toOpenArray(0, 31)
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template toOpenArray*(k: ByteArray33): openArray[byte] =
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k.toOpenArray(0, 32)
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# ------------------------------------------------------------------------------
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# Public functions
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# ------------------------------------------------------------------------------
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proc dbBackendRocksDb*(pv: SnapDbRef): bool =
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## Returns `true` if rocksdb features are available
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not pv.rocky.isNil
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proc dbBackendRocksDb*(ps: SnapDbBaseRef): bool =
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## Returns `true` if rocksdb features are available
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not ps.base.rocky.isNil
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proc mergeProofs*(
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ps: SnapDbBaseRef; ## Session database
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peer: Peer; ## For log messages
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proof: seq[Blob]; ## Node records
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freeStandingOk = false; ## Remove freestanding nodes
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): Result[void,HexaryError]
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{.gcsafe, raises: [RlpError,KeyError].} =
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## Import proof records (as received with snap message) into a hexary trie
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## of the repair table. These hexary trie records can be extended to a full
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## trie at a later stage and used for validating account data.
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let
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db = ps.hexaDb
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var
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nodes: HashSet[RepairKey]
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refs = @[ps.root.to(RepairKey)].toHashSet
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for n,rlpRec in proof:
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let report = db.hexaryImport(rlpRec, nodes, refs)
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if report.error != NothingSerious:
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let error = report.error
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trace "mergeProofs()", peer, item=n, proofs=proof.len, error
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return err(error)
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# Remove free standing nodes (if any)
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if 0 < nodes.len:
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let rest = nodes - refs
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if 0 < rest.len:
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if freeStandingOk:
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trace "mergeProofs() detected unrelated nodes", peer, nodes=nodes.len
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discard
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else:
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# Delete unreferenced nodes
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for nodeKey in nodes:
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db.tab.del(nodeKey)
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trace "mergeProofs() ignoring unrelated nodes", peer, nodes=nodes.len
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ok()
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proc verifyLowerBound*(
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ps: SnapDbBaseRef; ## Database session descriptor
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peer: Peer; ## For log messages
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base: NodeTag; ## Before or at first account entry in `data`
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first: NodeTag; ## First account key
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): Result[void,HexaryError]
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{.gcsafe, raises: [CatchableError].} =
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## Verify that `base` is to the left of the first leaf entry and there is
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## nothing in between.
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var error: HexaryError
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let rc = base.hexaryNearbyRight(ps.root, ps.hexaDb)
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if rc.isErr:
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error = rc.error
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elif first == rc.value:
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return ok()
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else:
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error = LowerBoundProofError
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when extraTraceMessages:
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trace "verifyLowerBound()", peer, base=base.to(NodeKey).pp,
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first=first.to(NodeKey).pp, error
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err(error)
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proc verifyNoMoreRight*(
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ps: SnapDbBaseRef; ## Database session descriptor
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peer: Peer; ## For log messages
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base: NodeTag; ## Before or at first account entry in `data`
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): Result[void,HexaryError]
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{.gcsafe, raises: [CatchableError].} =
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## Verify that there is are no more leaf entries to the right of and
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## including `base`.
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let
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root = ps.root.to(RepairKey)
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base = base.to(NodeKey)
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if base.hexaryPath(root, ps.hexaDb).hexaryNearbyRightMissing(ps.hexaDb):
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return ok()
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let error = LowerBoundProofError
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when extraTraceMessages:
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trace "verifyLeftmostBound()", peer, base=base.pp, error
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err(error)
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# ------------------------------------------------------------------------------
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# Debugging (and playing with the hexary database)
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# ------------------------------------------------------------------------------
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proc assignPrettyKeys*(xDb: HexaryTreeDbRef; root: NodeKey) =
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## Prepare for pretty pringing/debugging. Run early enough this function
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## sets the root key to `"$"`, for instance.
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if not xDb.keyPp.isNil:
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noPpError("validate(1)"):
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# Make keys assigned in pretty order for printing
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let rootKey = root.to(RepairKey)
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discard xDb.keyPp rootKey
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var keysList = toSeq(xDb.tab.keys)
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if xDb.tab.hasKey(rootKey):
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keysList = @[rootKey] & keysList
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for key in keysList:
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let node = xDb.tab[key]
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discard xDb.keyPp key
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case node.kind:
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of Branch: (for w in node.bLink: discard xDb.keyPp w)
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of Extension: discard xDb.keyPp node.eLink
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of Leaf: discard
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proc assignPrettyKeys*(ps: SnapDbBaseRef) =
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## Variant of `assignPrettyKeys()`
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ps.hexaDb.assignPrettyKeys(ps.root)
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proc dumpPath*(ps: SnapDbBaseRef; key: NodeTag): seq[string] =
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## Pretty print helper compiling the path into the repair tree for the
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## argument `key`.
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noPpError("dumpPath"):
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let rPath= key.hexaryPath(ps.root, ps.hexaDb)
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result = rPath.path.mapIt(it.pp(ps.hexaDb)) & @["(" & rPath.tail.pp & ")"]
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proc dumpHexaDB*(xDb: HexaryTreeDbRef; root: NodeKey; indent = 4): string =
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## Dump the entries from the a generic accounts trie. These are
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## key value pairs for
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## ::
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## Branch: ($1,b(<$2,$3,..,$17>,))
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## Extension: ($18,e(832b5e..06e697,$19))
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## Leaf: ($20,l(cc9b5d..1c3b4,f84401..f9e5129d[#70]))
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##
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## where keys are typically represented as `$<id>` or `¶<id>` or `ø`
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## depending on whether a key is final (`$<id>`), temporary (`¶<id>`)
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## or unset/missing (`ø`).
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##
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## The node types are indicated by a letter after the first key before
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## the round brackets
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## ::
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## Branch: 'b', 'þ', or 'B'
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## Extension: 'e', '€', or 'E'
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## Leaf: 'l', 'ł', or 'L'
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##
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## Here a small letter indicates a `Static` node which was from the
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## original `proofs` list, a capital letter indicates a `Mutable` node
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## added on the fly which might need some change, and the decorated
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## letters stand for `Locked` nodes which are like `Static` ones but
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## added later (typically these nodes are update `Mutable` nodes.)
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##
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## Beware: dumping a large database is not recommended
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xDb.pp(root, indent)
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proc dumpHexaDB*(ps: SnapDbBaseRef; indent = 4): string =
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## Ditto
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ps.hexaDb.pp(ps.root, indent)
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proc hexaryPpFn*(ps: SnapDbBaseRef): HexaryPpFn =
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## Key mapping function used in `HexaryTreeDB`
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ps.hexaDb.keyPp
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# ------------------------------------------------------------------------------
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# End
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# ------------------------------------------------------------------------------
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