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output_stats.go
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/
output_stats.go
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package simulation
import (
"bytes"
"fmt"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ten-protocol/go-ten/go/common/log"
"github.com/ten-protocol/go-ten/integration/common/testlog"
"github.com/ten-protocol/go-ten/go/ethadapter"
"github.com/ten-protocol/go-ten/go/common"
)
// OutputStats decouples the processing of data and the collection of statistics
// there's a bit more to do around this, this serves as a first iteration
type OutputStats struct {
simulation *Simulation
l2RollupCountInHeaders int // Number of rollups counted while node rollup header traversing
l2RollupCountInL1Blocks int // Number of rollups counted while traversing the node block header and searching the txs
l2RollupTxCountInL1Blocks int // Number of rollup Txs counted while traversing the node block header
l1Height int // Last known l1 block height
l2Height int // Last known l2 block height
canonicalERC20DepositCount int // Number of erc20 deposits on the canonical chain
}
// NewOutputStats processes the simulation and retrieves the output statistics
func NewOutputStats(simulation *Simulation) *OutputStats {
outputStats := &OutputStats{
simulation: simulation,
}
outputStats.countBlockChain()
outputStats.populateHeights()
return outputStats
}
func (o *OutputStats) populateHeights() {
l1Height, err := o.simulation.RPCHandles.EthClients[0].BlockNumber()
if err != nil {
panic(fmt.Errorf("simulation failed because could not read L1 height. Cause: %w", err))
}
o.l1Height = int(l1Height)
tenClient := o.simulation.RPCHandles.TenClients[0]
hRollup, err := getHeadBatchHeader(tenClient)
if err != nil {
panic(err)
}
o.l2Height = int(hRollup.Number.Uint64())
}
func (o *OutputStats) countBlockChain() {
l1Node := o.simulation.RPCHandles.EthClients[0]
tenClient := o.simulation.RPCHandles.TenClients[0]
// iterate the Node Headers and get the rollups
header, err := getHeadBatchHeader(tenClient)
if err != nil {
panic(err)
}
for {
if header != nil && !bytes.Equal(header.Hash().Bytes(), (common.L1BlockHash{}).Bytes()) {
break
}
o.l2RollupCountInHeaders++
header, err = tenClient.GetBatchHeaderByHash(header.ParentHash)
if err != nil {
testlog.Logger().Crit("could not retrieve rollup by hash.", log.ErrKey, err)
}
}
// iterate the L1 Blocks and get the rollups
for block, _ := l1Node.FetchHeadBlock(); block != nil && !bytes.Equal(block.Hash().Bytes(), (common.L1BlockHash{}).Bytes()); block, _ = l1Node.BlockByHash(block.ParentHash()) {
o.incrementStats(block, l1Node)
}
}
func (o *OutputStats) incrementStats(block *types.Block, _ ethadapter.EthClient) {
for _, tx := range block.Transactions() {
t := o.simulation.Params.MgmtContractLib.DecodeTx(tx)
if t == nil {
t = o.simulation.Params.ERC20ContractLib.DecodeTx(tx)
}
if t == nil {
continue
}
switch l1Tx := t.(type) {
case *ethadapter.L1RollupTx:
_, err := common.DecodeRollup(l1Tx.Rollup)
if err != nil {
testlog.Logger().Crit("could not decode rollup.", log.ErrKey, err)
}
//if l1Node.IsBlockAncestor(block, r.Header.L1Proof) {
// o.l2RollupCountInL1Blocks++
// for _, batch := range r.BatchPayloads {
// o.l2RollupTxCountInL1Blocks += len(batch.TxHashes)
// }
//}
case *ethadapter.L1DepositTx:
o.canonicalERC20DepositCount++
}
}
}
func (o *OutputStats) String() string {
return fmt.Sprintf("\n"+
"nrMiners: %d\n"+
"l1Height: %d\n"+
"l2Height: %d\n"+
"totalL1Blocks: %d\n"+
"totalL2Blocks: %v\n"+
"l2RollupCountInHeaders: %d\n"+
"l2RollupCountInL1Blocks: %d\n"+
"l2RollupTxCountInL1Blocks: %d\n"+
"maxRollupsPerBlock: %d \n"+
"nrEmptyBlocks: %d\n"+
"noL1Reorgs: %+v\n"+
"noL2Recalcs: %+v\n"+
"totalDepositedAmount: %d\n"+
"totalWithdrawnAmount: %d\n"+
"rollupWithMoreRecentProof: %d\n"+
"nrTransferTransactions: %d\n"+
"nrNativeTransferTransactions: %d\n"+
"nrBlockParsedERC20Deposits: %d\n"+
"gasBridgeCount: %d\n",
o.simulation.Stats.NrMiners,
o.l1Height,
o.l2Height,
o.simulation.Stats.TotalL1Blocks,
o.simulation.Stats.NoL2Blocks,
o.l2RollupCountInHeaders,
o.l2RollupCountInL1Blocks,
o.l2RollupTxCountInL1Blocks,
o.simulation.Stats.MaxRollupsPerBlock,
o.simulation.Stats.NrEmptyBlocks,
o.simulation.Stats.NoL1Reorgs,
o.simulation.Stats.NoL2Recalcs,
o.simulation.Stats.TotalDepositedAmount,
o.simulation.Stats.TotalWithdrawalRequestedAmount,
o.simulation.Stats.RollupWithMoreRecentProofCount,
o.simulation.Stats.NrTransferTransactions,
o.simulation.Stats.NrNativeTransferTransactions,
o.canonicalERC20DepositCount,
len(o.simulation.TxInjector.TxTracker.GasBridgeTransactions),
)
}