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package config
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import (
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"fmt"
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"io/ioutil"
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"math/big"
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"time"
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"github.com/BurntSushi/toml"
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ethCommon "github.com/ethereum/go-ethereum/common"
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"github.com/hermeznetwork/hermez-node/common"
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"github.com/hermeznetwork/tracerr"
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"github.com/iden3/go-iden3-crypto/babyjub"
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"gopkg.in/go-playground/validator.v9"
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)
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// Duration is a wrapper type that parses time duration from text.
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type Duration struct {
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time.Duration `validate:"required"`
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}
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// UnmarshalText unmarshalls time duration from text.
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func (d *Duration) UnmarshalText(data []byte) error {
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duration, err := time.ParseDuration(string(data))
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if err != nil {
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return tracerr.Wrap(err)
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}
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d.Duration = duration
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return nil
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}
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// ServerProof is the server proof configuration data.
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type ServerProof struct {
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// URL is the server proof API URL
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URL string `validate:"required"`
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}
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// Coordinator is the coordinator specific configuration.
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type Coordinator struct {
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// ForgerAddress is the address under which this coordinator is forging
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ForgerAddress ethCommon.Address `validate:"required"`
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// FeeAccount is the Hermez account that the coordinator uses to receive fees
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FeeAccount struct {
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// Address is the ethereum address of the account to receive fees
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Address ethCommon.Address `validate:"required"`
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// BJJ is the baby jub jub public key of the account to receive fees
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BJJ babyjub.PublicKeyComp `validate:"required"`
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} `validate:"required"`
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// ConfirmBlocks is the number of confirmation blocks to wait for sent
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// ethereum transactions before forgetting about them
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ConfirmBlocks int64 `validate:"required"`
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// L1BatchTimeoutPerc is the portion of the range before the L1Batch
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// timeout that will trigger a schedule to forge an L1Batch
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L1BatchTimeoutPerc float64 `validate:"required"`
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// StartSlotBlocksDelay is the number of blocks of delay to wait before
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// starting the pipeline when we reach a slot in which we can forge.
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StartSlotBlocksDelay int64
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// ScheduleBatchBlocksAheadCheck is the number of blocks ahead in which
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// the forger address is checked to be allowed to forge (apart from
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// checking the next block), used to decide when to stop scheduling new
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// batches (by stopping the pipeline).
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// For example, if we are at block 10 and ScheduleBatchBlocksAheadCheck
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// is 5, eventhough at block 11 we canForge, the pipeline will be
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// stopped if we can't forge at block 15.
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// This value should be the expected number of blocks it takes between
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// scheduling a batch and having it mined.
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ScheduleBatchBlocksAheadCheck int64
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// SendBatchBlocksMarginCheck is the number of margin blocks ahead in
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// which the coordinator is also checked to be allowed to forge, apart
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// from the next block; used to decide when to stop sending batches to
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// the smart contract.
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// For example, if we are at block 10 and SendBatchBlocksMarginCheck is
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// 5, eventhough at block 11 we canForge, the batch will be discarded
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// if we can't forge at block 15.
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SendBatchBlocksMarginCheck int64
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// ProofServerPollInterval is the waiting interval between polling the
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// ProofServer while waiting for a particular status
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ProofServerPollInterval Duration `validate:"required"`
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// ForgeRetryInterval is the waiting interval between calls forge a
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// batch after an error
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ForgeRetryInterval Duration `validate:"required"`
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// ForgeDelay is the delay after which a batch is forged if the slot is
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// already committed. If set to 0s, the coordinator will continuously
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// forge at the maximum rate.
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ForgeDelay Duration `validate:"-"`
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// ForgeNoTxsDelay is the delay after which a batch is forged even if
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// there are no txs to forge if the slot is already committed. If set
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// to 0s, the coordinator will continuously forge even if the batches
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// are empty.
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ForgeNoTxsDelay Duration `validate:"-"`
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// SyncRetryInterval is the waiting interval between calls to the main
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// handler of a synced block after an error
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SyncRetryInterval Duration `validate:"required"`
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// PurgeByExtDelInterval is the waiting interval between calls
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// to the PurgeByExternalDelete function of the l2db which deletes
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// pending txs externally marked by the column `external_delete`
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PurgeByExtDelInterval Duration `validate:"required"`
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// L2DB is the DB that holds the pool of L2Txs
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L2DB struct {
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// SafetyPeriod is the number of batches after which
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// non-pending L2Txs are deleted from the pool
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SafetyPeriod common.BatchNum `validate:"required"`
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// MaxTxs is the maximum number of pending L2Txs that can be
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// stored in the pool. Once this number of pending L2Txs is
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// reached, inserts to the pool will be denied until some of
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// the pending txs are forged.
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MaxTxs uint32 `validate:"required"`
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// MinFeeUSD is the minimum fee in USD that a tx must pay in
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// order to be accepted into the pool. Txs with lower than
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// minimum fee will be rejected at the API level.
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MinFeeUSD float64
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// TTL is the Time To Live for L2Txs in the pool. Once MaxTxs
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// L2Txs is reached, L2Txs older than TTL will be deleted.
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TTL Duration `validate:"required"`
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// PurgeBatchDelay is the delay between batches to purge
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// outdated transactions. Oudated L2Txs are those that have
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// been forged or marked as invalid for longer than the
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// SafetyPeriod and pending L2Txs that have been in the pool
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// for longer than TTL once there are MaxTxs.
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PurgeBatchDelay int64 `validate:"required"`
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// InvalidateBatchDelay is the delay between batches to mark
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// invalid transactions due to nonce lower than the account
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// nonce.
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InvalidateBatchDelay int64 `validate:"required"`
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// PurgeBlockDelay is the delay between blocks to purge
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// outdated transactions. Oudated L2Txs are those that have
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// been forged or marked as invalid for longer than the
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// SafetyPeriod and pending L2Txs that have been in the pool
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// for longer than TTL once there are MaxTxs.
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PurgeBlockDelay int64 `validate:"required"`
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// InvalidateBlockDelay is the delay between blocks to mark
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// invalid transactions due to nonce lower than the account
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// nonce.
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InvalidateBlockDelay int64 `validate:"required"`
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} `validate:"required"`
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TxSelector struct {
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// Path where the TxSelector StateDB is stored
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Path string `validate:"required"`
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} `validate:"required"`
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BatchBuilder struct {
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// Path where the BatchBuilder StateDB is stored
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Path string `validate:"required"`
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} `validate:"required"`
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ServerProofs []ServerProof `validate:"required"`
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Circuit struct {
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// MaxTx is the maximum number of txs supported by the circuit
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MaxTx int64 `validate:"required"`
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// NLevels is the maximum number of merkle tree levels
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// supported by the circuit
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NLevels int64 `validate:"required"`
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} `validate:"required"`
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EthClient struct {
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// MaxGasPrice is the maximum gas price allowed for ethereum
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// transactions
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MaxGasPrice *big.Int `validate:"required"`
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// GasPriceIncPerc is the percentage increase of gas price set
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// in an ethereum transaction from the suggested gas price by
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// the ehtereum node
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GasPriceIncPerc int64
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// CheckLoopInterval is the waiting interval between receipt
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// checks of ethereum transactions in the TxManager
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CheckLoopInterval Duration `validate:"required"`
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// Attempts is the number of attempts to do an eth client RPC
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// call before giving up
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Attempts int `validate:"required"`
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// AttemptsDelay is delay between attempts do do an eth client
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// RPC call
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AttemptsDelay Duration `validate:"required"`
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// TxResendTimeout is the timeout after which a non-mined
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// ethereum transaction will be resent (reusing the nonce) with
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// a newly calculated gas price
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TxResendTimeout Duration `validate:"required"`
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// NoReuseNonce disables reusing nonces of pending transactions for
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// new replacement transactions
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NoReuseNonce bool
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// Keystore is the ethereum keystore where private keys are kept
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Keystore struct {
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// Path to the keystore
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Path string `validate:"required"`
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// Password used to decrypt the keys in the keystore
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Password string `validate:"required"`
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} `validate:"required"`
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} `validate:"required"`
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API struct {
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// Coordinator enables the coordinator API endpoints
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Coordinator bool
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} `validate:"required"`
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Debug struct {
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// BatchPath if set, specifies the path where batchInfo is stored
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// in JSON in every step/update of the pipeline
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BatchPath string
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// LightScrypt if set, uses light parameters for the ethereum
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// keystore encryption algorithm.
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LightScrypt bool
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// RollupVerifierIndex is the index of the verifier to use in
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// the Rollup smart contract. The verifier chosen by index
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// must match with the Circuit parameters.
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RollupVerifierIndex *int
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}
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}
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// Node is the hermez node configuration.
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type Node struct {
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PriceUpdater struct {
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// Interval between price updater calls
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Interval Duration `valudate:"required"`
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// URL of the token prices provider
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URL string `valudate:"required"`
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// Type of the API of the token prices provider
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Type string `valudate:"required"`
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} `validate:"required"`
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StateDB struct {
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// Path where the synchronizer StateDB is stored
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Path string `validate:"required"`
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// Keep is the number of checkpoints to keep
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Keep int `validate:"required"`
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} `validate:"required"`
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PostgreSQL struct {
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// Port of the PostgreSQL server
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Port int `validate:"required"`
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// Host of the PostgreSQL server
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Host string `validate:"required"`
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// User of the PostgreSQL server
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User string `validate:"required"`
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// Password of the PostgreSQL server
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Password string `validate:"required"`
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// Name of the PostgreSQL server database
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Name string `validate:"required"`
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} `validate:"required"`
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Web3 struct {
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// URL is the URL of the web3 ethereum-node RPC server
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URL string `validate:"required"`
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} `validate:"required"`
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Synchronizer struct {
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// SyncLoopInterval is the interval between attempts to
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// synchronize a new block from an ethereum node
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SyncLoopInterval Duration `validate:"required"`
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// StatsRefreshPeriod is the interval between updates of the
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// synchronizer state Eth parameters (`Eth.LastBlock` and
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// `Eth.LastBatch`). This value only affects the reported % of
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// synchronization of blocks and batches, nothing else.
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StatsRefreshPeriod Duration `validate:"required"`
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// StoreAccountUpdates when set to true makes the synchronizer
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// store every account update in the account_update SQL table.
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// This allows querying nonces and balances from the HistoryDB
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// via SQL.
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StoreAccountUpdates bool
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} `validate:"required"`
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SmartContracts struct {
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// Rollup is the address of the Hermez.sol smart contract
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Rollup ethCommon.Address `validate:"required"`
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// Rollup is the address of the HermezAuctionProtocol.sol smart
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// contract
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Auction ethCommon.Address `validate:"required"`
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// WDelayer is the address of the WithdrawalDelayer.sol smart
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// contract
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WDelayer ethCommon.Address `validate:"required"`
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// TokenHEZ is the address of the HEZTokenFull.sol smart
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// contract
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TokenHEZ ethCommon.Address `validate:"required"`
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// TokenHEZName is the name of the HEZ token deployed at
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// TokenHEZ address
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TokenHEZName string `validate:"required"`
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} `validate:"required"`
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API struct {
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// Address where the API will listen if set
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Address string
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// Explorer enables the Explorer API endpoints
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Explorer bool
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// UpdateMetricsInterval is the interval between updates of the
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// API metrics
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UpdateMetricsInterval Duration
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// UpdateRecommendedFeeInterval is the interval between updates of the
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// recommended fees
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UpdateRecommendedFeeInterval Duration
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// Maximum concurrent connections allowed between API and SQL
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MaxSQLConnections int `validate:"required"`
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// SQLConnectionTimeout is the maximum amount of time that an API request
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// can wait to stablish a SQL connection
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SQLConnectionTimeout Duration
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} `validate:"required"`
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Debug struct {
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// APIAddress is the address where the debugAPI will listen if
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// set
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APIAddress string
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// MeddlerLogs enables meddler debug mode, where unused columns and struct
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// fields will be logged
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MeddlerLogs bool
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}
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Coordinator Coordinator `validate:"-"`
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}
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// Load loads a generic config.
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func Load(path string, cfg interface{}) error {
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bs, err := ioutil.ReadFile(path) //nolint:gosec
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if err != nil {
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return tracerr.Wrap(err)
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}
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cfgToml := string(bs)
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if _, err := toml.Decode(cfgToml, cfg); err != nil {
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return tracerr.Wrap(err)
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}
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return nil
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}
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// LoadCoordinator loads the Coordinator configuration from path.
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func LoadCoordinator(path string) (*Node, error) {
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var cfg Node
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if err := Load(path, &cfg); err != nil {
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return nil, tracerr.Wrap(fmt.Errorf("error loading node configuration file: %w", err))
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}
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validate := validator.New()
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if err := validate.Struct(cfg); err != nil {
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return nil, tracerr.Wrap(fmt.Errorf("error validating configuration file: %w", err))
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}
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if err := validate.Struct(cfg.Coordinator); err != nil {
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return nil, tracerr.Wrap(fmt.Errorf("error validating configuration file: %w", err))
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}
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return &cfg, nil
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}
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// LoadNode loads the Node configuration from path.
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func LoadNode(path string) (*Node, error) {
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var cfg Node
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if err := Load(path, &cfg); err != nil {
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return nil, tracerr.Wrap(fmt.Errorf("error loading node configuration file: %w", err))
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}
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validate := validator.New()
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if err := validate.Struct(cfg); err != nil {
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return nil, tracerr.Wrap(fmt.Errorf("error validating configuration file: %w", err))
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}
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return &cfg, nil
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}
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