2024-05-03 17:38:17 +00:00
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# nimbus-eth1
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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
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# except according to those terms.
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## Aristo DB -- Transaction frames helper
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## ======================================
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##
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{.push raises: [].}
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import
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std/tables,
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results,
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2024-06-28 18:43:04 +00:00
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".."/[aristo_desc, aristo_layers]
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2024-05-03 17:38:17 +00:00
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func txFrameIsTop*(tx: AristoTxRef): bool
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# ------------------------------------------------------------------------------
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# Private helpers
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# ------------------------------------------------------------------------------
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func getDbDescFromTopTx(tx: AristoTxRef): Result[AristoDbRef,AristoError] =
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if not tx.txFrameIsTop():
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return err(TxNotTopTx)
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let db = tx.db
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if tx.level != db.stack.len:
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return err(TxStackGarbled)
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ok db
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proc getTxUid(db: AristoDbRef): uint =
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if db.txUidGen == high(uint):
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db.txUidGen = 0
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db.txUidGen.inc
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db.txUidGen
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# ------------------------------------------------------------------------------
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# Public functions, getters
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# ------------------------------------------------------------------------------
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func txFrameTop*(db: AristoDbRef): Result[AristoTxRef,AristoError] =
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## Getter, returns top level transaction if there is any.
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if db.txRef.isNil:
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err(TxNoPendingTx)
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else:
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ok(db.txRef)
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func txFrameIsTop*(tx: AristoTxRef): bool =
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## Getter, returns `true` if the argument `tx` referes to the current top
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## level transaction.
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tx.db.txRef == tx and tx.db.top.txUid == tx.txUid
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func txFrameLevel*(tx: AristoTxRef): int =
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## Getter, positive nesting level of transaction argument `tx`
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tx.level
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func txFrameLevel*(db: AristoDbRef): int =
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## Getter, non-negative nesting level (i.e. number of pending transactions)
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if not db.txRef.isNil:
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result = db.txRef.level
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# ------------------------------------------------------------------------------
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# Public functions
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# ------------------------------------------------------------------------------
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proc txFrameBegin*(db: AristoDbRef): Result[AristoTxRef,AristoError] =
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## Starts a new transaction.
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##
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## Example:
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## ::
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## proc doSomething(db: AristoDbRef) =
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## let tx = db.begin
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## defer: tx.rollback()
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## ... continue using db ...
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## tx.commit()
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##
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if db.txFrameLevel != db.stack.len:
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return err(TxStackGarbled)
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2024-06-04 15:05:13 +00:00
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let vTop = db.top.delta.vTop
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2024-05-03 17:38:17 +00:00
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db.stack.add db.top
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db.top = LayerRef(
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2024-06-04 15:05:13 +00:00
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delta: LayerDeltaRef(vTop: vTop),
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2024-05-03 17:38:17 +00:00
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txUid: db.getTxUid)
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db.txRef = AristoTxRef(
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db: db,
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txUid: db.top.txUid,
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parent: db.txRef,
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level: db.stack.len)
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ok db.txRef
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proc txFrameRollback*(
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tx: AristoTxRef; # Top transaction on database
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): Result[void,AristoError] =
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## Given a *top level* handle, this function discards all database operations
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## performed for this transactio. The previous transaction is returned if
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## there was any.
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##
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let db = ? tx.getDbDescFromTopTx()
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# Roll back to previous layer.
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db.top = db.stack[^1]
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db.stack.setLen(db.stack.len-1)
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db.txRef = db.txRef.parent
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ok()
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proc txFrameCommit*(
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tx: AristoTxRef; # Top transaction on database
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): Result[void,AristoError] =
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## Given a *top level* handle, this function accepts all database operations
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## performed through this handle and merges it to the previous layer. The
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## previous transaction is returned if there was any.
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##
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let db = ? tx.getDbDescFromTopTx()
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# Pop layer from stack and merge database top layer onto it
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let merged = block:
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if db.top.delta.sTab.len == 0 and
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db.top.delta.kMap.len == 0:
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# Avoid `layersMergeOnto()`
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db.top.delta = db.stack[^1].delta
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db.stack.setLen(db.stack.len-1)
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db.top
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else:
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let layer = db.stack[^1]
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db.stack.setLen(db.stack.len-1)
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db.top.layersMergeOnto layer[]
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layer
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# Install `merged` stack top layer and update stack
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db.top = merged
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db.txRef = tx.parent
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if 0 < db.stack.len:
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db.txRef.txUid = db.getTxUid
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db.top.txUid = db.txRef.txUid
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ok()
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proc txFrameCollapse*(
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tx: AristoTxRef; # Top transaction on database
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commit: bool; # Commit if `true`, otherwise roll back
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): Result[void,AristoError] =
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## Iterated application of `commit()` or `rollback()` performing the
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## something similar to
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## ::
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## while true:
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## discard tx.commit() # ditto for rollback()
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## if db.txTop.isErr: break
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## tx = db.txTop.value
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##
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let db = ? tx.getDbDescFromTopTx()
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db.top.txUid = 0
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db.stack.setLen(0)
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db.txRef = AristoTxRef(nil)
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ok()
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# ------------------------------------------------------------------------------
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# Public iterators
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# ------------------------------------------------------------------------------
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iterator txFrameWalk*(tx: AristoTxRef): (int,AristoTxRef,LayerRef,AristoError) =
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## Walk down the transaction stack chain.
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let db = tx.db
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var tx = tx
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block body:
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# Start at top layer if tx refers to that
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if tx.level == db.stack.len:
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if tx.txUid != db.top.txUid:
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yield (-1,tx,db.top,TxStackGarbled)
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break body
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# Yield the top level
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yield (0,tx,db.top,AristoError(0))
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# Walk down the transaction stack
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for level in (tx.level-1).countDown(1):
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tx = tx.parent
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if tx.isNil or tx.level != level:
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yield (-1,tx,LayerRef(nil),TxStackGarbled)
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break body
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var layer = db.stack[level]
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if tx.txUid != layer.txUid:
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yield (-1,tx,layer,TxStackGarbled)
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break body
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yield (db.stack.len-level,tx,layer,AristoError(0))
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# ------------------------------------------------------------------------------
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# End
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# ------------------------------------------------------------------------------
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