242 lines
6.9 KiB
Nim
242 lines
6.9 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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## In-memory backend for Aristo DB
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## ===============================
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##
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## The iterators provided here are currently available only by direct
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## backend access
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## ::
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## import
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## aristo/aristo_init,
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## aristo/aristo_init/aristo_memory
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##
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## let rc = newAristoDbRef(BackendMemory)
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## if rc.isOk:
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## let be = rc.value.to(MemBackendRef)
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## for (n, key, vtx) in be.walkVtx:
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## ...
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##
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{.push raises: [].}
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import
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std/[algorithm, sequtils, tables],
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chronicles,
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eth/common,
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stew/results,
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../aristo_constants,
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../aristo_desc,
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../aristo_desc/aristo_types_backend,
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../aristo_transcode,
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./aristo_init_common
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type
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MemBackendRef* = ref object of TypedBackendRef
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## Inheriting table so access can be extended for debugging purposes
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sTab: Table[VertexID,VertexRef] ## Structural vertex table making up a trie
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kMap: Table[VertexID,HashKey] ## Merkle hash key mapping
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vGen: seq[VertexID]
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MemPutHdlRef = ref object of TypedPutHdlRef
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sTab: Table[VertexID,VertexRef]
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kMap: Table[VertexID,HashKey]
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vGen: seq[VertexID]
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vGenOk: bool
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# ------------------------------------------------------------------------------
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# Private helpers
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# ------------------------------------------------------------------------------
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template logTxt(info: static[string]): static[string] =
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"MemoryDB " & info
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proc newSession(db: MemBackendRef): MemPutHdlRef =
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new result
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result.TypedPutHdlRef.beginSession db
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proc getSession(hdl: PutHdlRef; db: MemBackendRef): MemPutHdlRef =
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hdl.TypedPutHdlRef.verifySession db
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hdl.MemPutHdlRef
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proc endSession(hdl: PutHdlRef; db: MemBackendRef): MemPutHdlRef =
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hdl.TypedPutHdlRef.finishSession db
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hdl.MemPutHdlRef
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# ------------------------------------------------------------------------------
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# Private functions: interface
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# ------------------------------------------------------------------------------
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proc getVtxFn(db: MemBackendRef): GetVtxFn =
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result =
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proc(vid: VertexID): Result[VertexRef,AristoError] =
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let vtx = db.sTab.getOrVoid vid
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if vtx.isValid:
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return ok vtx.dup
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err(GetVtxNotFound)
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proc getKeyFn(db: MemBackendRef): GetKeyFn =
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result =
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proc(vid: VertexID): Result[HashKey,AristoError] =
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let key = db.kMap.getOrDefault(vid, VOID_HASH_KEY)
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if key.isValid:
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return ok key
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err(GetKeyNotFound)
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proc getIdgFn(db: MemBackendRef): GetIdgFn =
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result =
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proc(): Result[seq[VertexID],AristoError]=
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ok db.vGen
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# -------------
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proc putBegFn(db: MemBackendRef): PutBegFn =
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result =
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proc(): PutHdlRef =
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db.newSession()
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proc putVtxFn(db: MemBackendRef): PutVtxFn =
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result =
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proc(hdl: PutHdlRef; vrps: openArray[(VertexID,VertexRef)]) =
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let hdl = hdl.getSession db
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if hdl.error.isNil:
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for (vid,vtx) in vrps:
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if not vtx.isNil:
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let rc = vtx.blobify # verify data record
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if rc.isErr:
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hdl.error = TypedPutHdlErrRef(
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pfx: VtxPfx,
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vid: vid,
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code: rc.error)
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return
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hdl.sTab[vid] = vtx.dup
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proc putKeyFn(db: MemBackendRef): PutKeyFn =
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result =
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proc(hdl: PutHdlRef; vkps: openArray[(VertexID,HashKey)]) =
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let hdl = hdl.getSession db
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if hdl.error.isNil:
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for (vid,key) in vkps:
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hdl.kMap[vid] = key
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proc putIdgFn(db: MemBackendRef): PutIdgFn =
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result =
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proc(hdl: PutHdlRef; vs: openArray[VertexID]) =
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let hdl = hdl.getSession db
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if hdl.error.isNil:
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hdl.vGen = vs.toSeq
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hdl.vGenOk = true
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proc putEndFn(db: MemBackendRef): PutEndFn =
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result =
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proc(hdl: PutHdlRef): AristoError =
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let hdl = hdl.endSession db
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if not hdl.error.isNil:
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debug logTxt "putEndFn: failed",
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pfx=hdl.error.pfx, vid=hdl.error.vid, error=hdl.error.code
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return hdl.error.code
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for (vid,vtx) in hdl.sTab.pairs:
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if vtx.isValid:
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db.sTab[vid] = vtx
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else:
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db.sTab.del vid
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for (vid,key) in hdl.kMap.pairs:
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if key.isValid:
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db.kMap[vid] = key
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else:
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db.kMap.del vid
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if hdl.vGenOk:
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db.vGen = hdl.vGen
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AristoError(0)
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# -------------
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proc closeFn(db: MemBackendRef): CloseFn =
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result =
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proc(ignore: bool) =
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discard
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# ------------------------------------------------------------------------------
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# Public functions
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# ------------------------------------------------------------------------------
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proc memoryBackend*(): AristoBackendRef =
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let db = MemBackendRef(kind: BackendMemory)
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db.getVtxFn = getVtxFn db
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db.getKeyFn = getKeyFn db
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db.getIdgFn = getIdgFn db
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db.putBegFn = putBegFn db
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db.putVtxFn = putVtxFn db
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db.putKeyFn = putKeyFn db
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db.putIdgFn = putIdgFn db
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db.putEndFn = putEndFn db
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db.closeFn = closeFn db
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db
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# ------------------------------------------------------------------------------
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# Public iterators (needs direct backend access)
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# ------------------------------------------------------------------------------
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iterator walkIdg*(
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be: MemBackendRef;
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): tuple[n: int, vid: VertexID, vGen: seq[VertexID]] =
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## Iteration over the ID generator sub-table (there is at most one instance).
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if 0 < be.vGen.len:
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yield(0, VertexID(0), be.vGen)
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iterator walkVtx*(
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be: MemBackendRef;
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): tuple[n: int, vid: VertexID, vtx: VertexRef] =
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## Iteration over the vertex sub-table.
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for n,vid in be.sTab.keys.toSeq.mapIt(it.uint64).sorted.mapIt(it.VertexID):
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let vtx = be.sTab.getOrVoid vid
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if vtx.isValid:
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yield (n, vid, vtx)
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iterator walkKey*(
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be: MemBackendRef;
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): tuple[n: int, vid: VertexID, key: HashKey] =
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## Iteration over the Markle hash sub-table.
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for n,vid in be.kMap.keys.toSeq.mapIt(it.uint64).sorted.mapIt(it.VertexID):
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let key = be.kMap.getOrDefault(vid, VOID_HASH_KEY)
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if key.isValid:
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yield (n, vid, key)
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iterator walk*(
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be: MemBackendRef;
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): tuple[n: int, pfx: AristoStorageType, vid: VertexID, data: Blob] =
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## Walk over all key-value pairs of the database.
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##
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## Non-decodable entries are stepped over while the counter `n` of the
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## yield record is still incremented.
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for (n,vid,vGen) in be.walkIdg:
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yield (n, IdgPfx, vid, vGen.blobify)
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for (n,vid,vtx) in be.walkVtx:
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let rc = vtx.blobify
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if rc.isOk:
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yield (n, VtxPfx, vid, rc.value)
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for (n,vid,key) in be.walkKey:
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yield (n, KeyPfx, vid, key.to(Blob))
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# ------------------------------------------------------------------------------
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# End
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# ------------------------------------------------------------------------------
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