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* Split `core_db/base.nim` into several sources * Rename `core_db/legacy.nim` => `core_db/legacy_db.nim` * Update `CoreDb` API, dual methods returning `Result[]` or plain value detail: Plain value methods implemet the legacy API, they defect on error results * Redesign `CoreDB` direct backend access why: Made the `backend` directive integral part of the API * Discontinue providing unused or otherwise available functions details: + setTransactionID() removed, not used and not easily replicable in Aristo + maybeGet() removed, available via direct backend access + newPhk() removed, never used & was experimental anyway * Update/reorg backend API why: + Added error print function `$$()` + General descriptor completion (and optional validation) via `bless()` * Update `Aristo`/`Kvt` exception handling why: Avoid `CatchableError` exceptions, rather pass them as error code where appropriate. * More `CoreDB` compliant `Aristo` and `Kvt` methods details: + Providing functions like `contains()`, `getVtxRc()` (returns `Result[]`). + Additional error code: `NotImplemented` * Rewrite/reorg of Aristo DB constructor why: Previously used global object `DefaultQidLayoutRef` as default initialiser. This object was created at compile time which lead to non-gc safe functions. * Update nimbus/db/core_db/legacy_db.nim Co-authored-by: Kim De Mey <kim.demey@gmail.com> * Update nimbus/db/aristo/aristo_transcode.nim Co-authored-by: Kim De Mey <kim.demey@gmail.com> * Update nimbus/db/core_db/legacy_db.nim Co-authored-by: Kim De Mey <kim.demey@gmail.com> --------- Co-authored-by: Kim De Mey <kim.demey@gmail.com>
112 lines
3.8 KiB
Nim
112 lines
3.8 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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## Non persistent constructors for Aristo DB
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## =========================================
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##
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{.push raises: [].}
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import
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../aristo_desc,
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../aristo_desc/desc_backend,
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"."/[init_common, memory_db]
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type
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VoidBackendRef* = ref object of TypedBackendRef
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## Dummy descriptor type, used as `nil` reference
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MemOnlyBackend* = VoidBackendRef|MemBackendRef
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export
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BackendType,
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MemBackendRef,
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QidLayoutRef
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# ------------------------------------------------------------------------------
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# Public helpers
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# ------------------------------------------------------------------------------
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proc kind*(
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be: BackendRef;
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): BackendType =
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## Retrieves the backend type symbol for a `be` backend database argument
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## where `BackendVoid` is returned for the`nil` backend.
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if be.isNil:
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BackendVoid
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else:
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be.TypedBackendRef.beKind
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# ------------------------------------------------------------------------------
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# Public database constuctors, destructor
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# ------------------------------------------------------------------------------
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proc init*(
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T: type AristoDbRef; # Target type
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B: type MemBackendRef; # Backend type
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qidLayout: QidLayoutRef; # Optional fifo schedule
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): T =
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## Memory backend constructor.
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##
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## If the `qidLayout` argument is set `QidLayoutRef(nil)`, the a backend
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## database will not provide filter history management. Providing a different
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## scheduler layout shoud be used with care as table access with different
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## layouts might render the filter history data unmanageable.
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##
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when B is MemBackendRef:
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AristoDbRef(top: LayerRef(), backend: memoryBackend(qidLayout))
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proc init*(
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T: type AristoDbRef; # Target type
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B: type MemOnlyBackend; # Backend type
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): T =
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## Memory backend constructor.
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##
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## If the `qidLayout` argument is set `QidLayoutRef(nil)`, the a backend
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## database will not provide filter history management. Providing a different
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## scheduler layout shoud be used with care as table access with different
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## layouts might render the filter history data unmanageable.
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##
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when B is VoidBackendRef:
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AristoDbRef(top: LayerRef())
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elif B is MemBackendRef:
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let qidLayout = DEFAULT_QID_QUEUES.to(QidLayoutRef)
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AristoDbRef(top: LayerRef(), backend: memoryBackend(qidLayout))
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proc init*(
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T: type AristoDbRef; # Target type
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): T =
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## Shortcut for `AristoDbRef.init(VoidBackendRef)`
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AristoDbRef.init VoidBackendRef
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proc finish*(db: AristoDbRef; flush = false) =
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## Backend destructor. The argument `flush` indicates that a full database
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## deletion is requested. If set `false` the outcome might differ depending
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## on the type of backend (e.g. the `BackendMemory` backend will always
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## flush on close.)
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##
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## In case of distributed descriptors accessing the same backend, all
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## distributed descriptors will be destroyed.
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##
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## This distructor may be used on already *destructed* descriptors.
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##
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if not db.isNil:
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if not db.backend.isNil:
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db.backend.closeFn flush
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let lebo = db.getCentre
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discard lebo.forgetOthers()
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lebo[] = AristoDbObj(top: LayerRef())
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# ------------------------------------------------------------------------------
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# End
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# ------------------------------------------------------------------------------
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