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Extend TxProcessor documentation and explanation

tmp/txsel-fix
arnaucube 3 years ago
parent
commit
97fdbfe037
3 changed files with 82 additions and 2 deletions
  1. +1
    -1
      common/float40.go
  2. +1
    -1
      common/zk.go
  3. +80
    -0
      txprocessor/txprocessor.go

+ 1
- 1
common/float40.go

@ -1,4 +1,4 @@
// Package common Float40 provides methods to work with Hermez custom half
// Package common float40.go provides methods to work with Hermez custom half
// float precision, 40 bits, codification internally called Float40 has been
// adopted to encode large integers. This is done in order to save bits when L2
// transactions are published.

+ 1
- 1
common/zk.go

@ -1,4 +1,4 @@
// Package common contains all the common data structures used at the
// Package common zk.go contains all the common data structures used at the
// hermez-node, zk.go contains the zkSnark inputs used to generate the proof
package common

+ 80
- 0
txprocessor/txprocessor.go

@ -1,3 +1,81 @@
/*
Package txprocessor is the module that takes the transactions from the input and
processes them, updating the Balances and Nonces of the Accounts in the StateDB.
It's a package used by 3 other different packages, and its behaviour will differ
depending on the Type of the StateDB of the TxProcessor:
- TypeSynchronizer:
- The StateDB contains the full State MerkleTree, where the leafs are
the accounts
- Updates the StateDB and as output returns: ExitInfos, CreatedAccounts,
CoordinatorIdxsMap, CollectedFees, UpdatedAccounts
- Internally computes the ExitTree
- TypeTxSelector:
- The StateDB contains only the Accounts, which are the equivalent to
only the leafs of the State MerkleTree
- Updates the Accounts from the StateDB
- TypeBatchBuilder:
- The StateDB contains the full State MerkleTree, where the leafs are
the accounts
- Updates the StateDB. As output returns: ZKInputs, CoordinatorIdxsMap
- Internally computes the ZKInputs
Packages dependency overview:
Outputs: + ExitInfos + + +
| CreatedAccounts | | |
| CoordinatorIdxsMap | | ZKInputs |
| CollectedFees | | CoordinatorIdxsMap |
| UpdatedAccounts | | |
+------------------------+----------------+ +-----------------------+
+------------+ +----------+ +------------+
|Synchronizer| |TxSelector| |BatchBuilder|
+-----+------+ +-----+----+ +-----+------+
| | |
v v v
TxProcessor TxProcessor TxProcessor
+ + +
| | |
+----+----+ v +----+----+
| | StateDB | |
v v + v v
StateDB ExitTree | StateDB ExitTree
+ +----+----+ +
| | | |
+----+----+ v v +----+----+
| | KVDB AccountsDB | |
v v v v
KVDB MerkleTree KVDB MerkleTree
The structure of the TxProcessor can be understand as:
- StateDB: where the Rollup state is stored. It contains the Accounts &
MerkleTree.
- Config: parameters of the configuration of the circuit
- ZKInputs: computed inputs for the circuit, depends on the Config parameters
- ExitTree: only in the TypeSynchronizer & TypeBatchBuilder, contains
the MerkleTree with the processed Exits of the Batch
The main exposed method of the TxProcessor is `ProcessTxs`, which as general
lines does:
- if type==(Synchronizer || BatchBuilder), creates an ephemeral ExitTree
- processes:
- L1UserTxs --> for each tx calls ProcessL1Tx()
- L1CoordinatorTxs --> for each tx calls ProcessL1Tx()
- L2Txs --> for each tx calls ProcessL2Tx()
- internally, it computes the Fees
- each transaction processment includes:
- updating the Account Balances (for sender & receiver, and in
case that there is fee, updates the fee receiver account)
- which includes updating the State MerkleTree (except
for the type==TxSelector, which only updates the
Accounts (leafs))
- in case of Synchronizer & BatchBuilder, updates the ExitTree
for the txs of type Exit (L1 & L2)
- in case of BatchBuilder, computes the ZKInputs while processing the txs
- if type==Synchronizer, once all the txs are processed, for each Exit
it generates the ExitInfo data
*/
package txprocessor
import (
@ -352,6 +430,8 @@ func (tp *TxProcessor) ProcessTxs(coordIdxs []common.Idx, l1usertxs, l1coordinat
}
if tp.zki != nil {
// Fill the empty slots in the ZKInputs remaining after
// processing all L1 & L2 txs
txCompressedDataEmpty := common.TxCompressedDataEmpty(tp.config.ChainID)
last := tp.i - 1
if tp.i == 0 {

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