cbb147de23
Update to graphsync to v0.10.0, enable seperate storage and retrieval transfer limits
385 lines
14 KiB
Go
385 lines
14 KiB
Go
package config
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import (
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"github.com/ipfs/go-cid"
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"github.com/filecoin-project/lotus/chain/types"
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sectorstorage "github.com/filecoin-project/lotus/extern/sector-storage"
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)
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// // NOTE: ONLY PUT STRUCT DEFINITIONS IN THIS FILE
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// //
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// // After making edits here, run 'make cfgdoc-gen' (or 'make gen')
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// Common is common config between full node and miner
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type Common struct {
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API API
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Backup Backup
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Libp2p Libp2p
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Pubsub Pubsub
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}
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// FullNode is a full node config
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type FullNode struct {
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Common
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Client Client
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Wallet Wallet
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Fees FeeConfig
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Chainstore Chainstore
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}
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// // Common
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type Backup struct {
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// When set to true disables metadata log (.lotus/kvlog). This can save disk
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// space by reducing metadata redundancy.
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//
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// Note that in case of metadata corruption it might be much harder to recover
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// your node if metadata log is disabled
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DisableMetadataLog bool
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}
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// StorageMiner is a miner config
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type StorageMiner struct {
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Common
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Subsystems MinerSubsystemConfig
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Dealmaking DealmakingConfig
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Sealing SealingConfig
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Storage sectorstorage.SealerConfig
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Fees MinerFeeConfig
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Addresses MinerAddressConfig
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DAGStore DAGStoreConfig
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}
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type DAGStoreConfig struct {
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// Path to the dagstore root directory. This directory contains three
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// subdirectories, which can be symlinked to alternative locations if
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// need be:
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// - ./transients: caches unsealed deals that have been fetched from the
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// storage subsystem for serving retrievals.
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// - ./indices: stores shard indices.
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// - ./datastore: holds the KV store tracking the state of every shard
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// known to the DAG store.
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// Default value: <LOTUS_MARKETS_PATH>/dagstore (split deployment) or
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// <LOTUS_MINER_PATH>/dagstore (monolith deployment)
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RootDir string
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// The maximum amount of indexing jobs that can run simultaneously.
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// 0 means unlimited.
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// Default value: 5.
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MaxConcurrentIndex int
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// The maximum amount of unsealed deals that can be fetched simultaneously
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// from the storage subsystem. 0 means unlimited.
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// Default value: 0 (unlimited).
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MaxConcurrentReadyFetches int
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// The maximum number of simultaneous inflight API calls to the storage
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// subsystem.
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// Default value: 100.
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MaxConcurrencyStorageCalls int
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// The time between calls to periodic dagstore GC, in time.Duration string
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// representation, e.g. 1m, 5m, 1h.
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// Default value: 1 minute.
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GCInterval Duration
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}
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type MinerSubsystemConfig struct {
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EnableMining bool
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EnableSealing bool
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EnableSectorStorage bool
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EnableMarkets bool
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SealerApiInfo string // if EnableSealing == false
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SectorIndexApiInfo string // if EnableSectorStorage == false
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}
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type DealmakingConfig struct {
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// When enabled, the miner can accept online deals
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ConsiderOnlineStorageDeals bool
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// When enabled, the miner can accept offline deals
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ConsiderOfflineStorageDeals bool
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// When enabled, the miner can accept retrieval deals
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ConsiderOnlineRetrievalDeals bool
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// When enabled, the miner can accept offline retrieval deals
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ConsiderOfflineRetrievalDeals bool
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// When enabled, the miner can accept verified deals
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ConsiderVerifiedStorageDeals bool
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// When enabled, the miner can accept unverified deals
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ConsiderUnverifiedStorageDeals bool
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// A list of Data CIDs to reject when making deals
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PieceCidBlocklist []cid.Cid
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// Maximum expected amount of time getting the deal into a sealed sector will take
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// This includes the time the deal will need to get transferred and published
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// before being assigned to a sector
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ExpectedSealDuration Duration
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// Maximum amount of time proposed deal StartEpoch can be in future
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MaxDealStartDelay Duration
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// When a deal is ready to publish, the amount of time to wait for more
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// deals to be ready to publish before publishing them all as a batch
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PublishMsgPeriod Duration
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// The maximum number of deals to include in a single PublishStorageDeals
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// message
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MaxDealsPerPublishMsg uint64
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// The maximum collateral that the provider will put up against a deal,
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// as a multiplier of the minimum collateral bound
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MaxProviderCollateralMultiplier uint64
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// The maximum allowed disk usage size in bytes of staging deals not yet
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// passed to the sealing node by the markets service. 0 is unlimited.
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MaxStagingDealsBytes int64
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// The maximum number of parallel online data transfers for storage deals
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SimultaneousTransfersForStorage uint64
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// The maximum number of parallel online data transfers for retrieval deals
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SimultaneousTransfersForRetrieval uint64
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// Minimum start epoch buffer to give time for sealing of sector with deal.
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StartEpochSealingBuffer uint64
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// A command used for fine-grained evaluation of storage deals
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// see https://docs.filecoin.io/mine/lotus/miner-configuration/#using-filters-for-fine-grained-storage-and-retrieval-deal-acceptance for more details
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Filter string
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// A command used for fine-grained evaluation of retrieval deals
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// see https://docs.filecoin.io/mine/lotus/miner-configuration/#using-filters-for-fine-grained-storage-and-retrieval-deal-acceptance for more details
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RetrievalFilter string
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RetrievalPricing *RetrievalPricing
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}
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type RetrievalPricing struct {
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Strategy string // possible values: "default", "external"
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Default *RetrievalPricingDefault
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External *RetrievalPricingExternal
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}
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type RetrievalPricingExternal struct {
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// Path of the external script that will be run to price a retrieval deal.
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// This parameter is ONLY applicable if the retrieval pricing policy strategy has been configured to "external".
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Path string
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}
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type RetrievalPricingDefault struct {
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// VerifiedDealsFreeTransfer configures zero fees for data transfer for a retrieval deal
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// of a payloadCid that belongs to a verified storage deal.
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// This parameter is ONLY applicable if the retrieval pricing policy strategy has been configured to "default".
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// default value is true
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VerifiedDealsFreeTransfer bool
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}
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type SealingConfig struct {
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// Upper bound on how many sectors can be waiting for more deals to be packed in it before it begins sealing at any given time.
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// If the miner is accepting multiple deals in parallel, up to MaxWaitDealsSectors of new sectors will be created.
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// If more than MaxWaitDealsSectors deals are accepted in parallel, only MaxWaitDealsSectors deals will be processed in parallel
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// Note that setting this number too high in relation to deal ingestion rate may result in poor sector packing efficiency
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// 0 = no limit
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MaxWaitDealsSectors uint64
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// Upper bound on how many sectors can be sealing at the same time when creating new CC sectors (0 = unlimited)
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MaxSealingSectors uint64
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// Upper bound on how many sectors can be sealing at the same time when creating new sectors with deals (0 = unlimited)
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MaxSealingSectorsForDeals uint64
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// CommittedCapacitySectorLifetime is the duration a Committed Capacity (CC) sector will
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// live before it must be extended or converted into sector containing deals before it is
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// terminated. Value must be between 180-540 days inclusive
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CommittedCapacitySectorLifetime Duration
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// Period of time that a newly created sector will wait for more deals to be packed in to before it starts to seal.
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// Sectors which are fully filled will start sealing immediately
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WaitDealsDelay Duration
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// Whether to keep unsealed copies of deal data regardless of whether the client requested that. This lets the miner
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// avoid the relatively high cost of unsealing the data later, at the cost of more storage space
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AlwaysKeepUnsealedCopy bool
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// Run sector finalization before submitting sector proof to the chain
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FinalizeEarly bool
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// Whether to use available miner balance for sector collateral instead of sending it with each message
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CollateralFromMinerBalance bool
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// Minimum available balance to keep in the miner actor before sending it with messages
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AvailableBalanceBuffer types.FIL
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// Don't send collateral with messages even if there is no available balance in the miner actor
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DisableCollateralFallback bool
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// enable / disable precommit batching (takes effect after nv13)
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BatchPreCommits bool
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// maximum precommit batch size - batches will be sent immediately above this size
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MaxPreCommitBatch int
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// how long to wait before submitting a batch after crossing the minimum batch size
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PreCommitBatchWait Duration
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// time buffer for forceful batch submission before sectors/deal in batch would start expiring
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PreCommitBatchSlack Duration
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// enable / disable commit aggregation (takes effect after nv13)
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AggregateCommits bool
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// maximum batched commit size - batches will be sent immediately above this size
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MinCommitBatch int
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MaxCommitBatch int
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// how long to wait before submitting a batch after crossing the minimum batch size
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CommitBatchWait Duration
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// time buffer for forceful batch submission before sectors/deals in batch would start expiring
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CommitBatchSlack Duration
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// network BaseFee below which to stop doing precommit batching, instead
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// sending precommit messages to the chain individually
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BatchPreCommitAboveBaseFee types.FIL
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// network BaseFee below which to stop doing commit aggregation, instead
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// submitting proofs to the chain individually
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AggregateAboveBaseFee types.FIL
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TerminateBatchMax uint64
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TerminateBatchMin uint64
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TerminateBatchWait Duration
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// Keep this many sectors in sealing pipeline, start CC if needed
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// todo TargetSealingSectors uint64
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// todo TargetSectors - stop auto-pleding new sectors after this many sectors are sealed, default CC upgrade for deals sectors if above
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}
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type BatchFeeConfig struct {
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Base types.FIL
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PerSector types.FIL
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}
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type MinerFeeConfig struct {
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MaxPreCommitGasFee types.FIL
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MaxCommitGasFee types.FIL
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// maxBatchFee = maxBase + maxPerSector * nSectors
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MaxPreCommitBatchGasFee BatchFeeConfig
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MaxCommitBatchGasFee BatchFeeConfig
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MaxTerminateGasFee types.FIL
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// WindowPoSt is a high-value operation, so the default fee should be high.
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MaxWindowPoStGasFee types.FIL
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MaxPublishDealsFee types.FIL
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MaxMarketBalanceAddFee types.FIL
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}
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type MinerAddressConfig struct {
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// Addresses to send PreCommit messages from
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PreCommitControl []string
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// Addresses to send Commit messages from
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CommitControl []string
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TerminateControl []string
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DealPublishControl []string
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// DisableOwnerFallback disables usage of the owner address for messages
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// sent automatically
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DisableOwnerFallback bool
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// DisableWorkerFallback disables usage of the worker address for messages
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// sent automatically, if control addresses are configured.
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// A control address that doesn't have enough funds will still be chosen
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// over the worker address if this flag is set.
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DisableWorkerFallback bool
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}
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// API contains configs for API endpoint
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type API struct {
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// Binding address for the Lotus API
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ListenAddress string
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RemoteListenAddress string
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Timeout Duration
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}
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// Libp2p contains configs for libp2p
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type Libp2p struct {
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// Binding address for the libp2p host - 0 means random port.
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// Format: multiaddress; see https://multiformats.io/multiaddr/
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ListenAddresses []string
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// Addresses to explicitally announce to other peers. If not specified,
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// all interface addresses are announced
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// Format: multiaddress
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AnnounceAddresses []string
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// Addresses to not announce
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// Format: multiaddress
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NoAnnounceAddresses []string
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BootstrapPeers []string
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ProtectedPeers []string
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// When not disabled (default), lotus asks NAT devices (e.g., routers), to
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// open up an external port and forward it to the port lotus is running on.
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// When this works (i.e., when your router supports NAT port forwarding),
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// it makes the local lotus node accessible from the public internet
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DisableNatPortMap bool
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// ConnMgrLow is the number of connections that the basic connection manager
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// will trim down to.
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ConnMgrLow uint
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// ConnMgrHigh is the number of connections that, when exceeded, will trigger
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// a connection GC operation. Note: protected/recently formed connections don't
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// count towards this limit.
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ConnMgrHigh uint
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// ConnMgrGrace is a time duration that new connections are immune from being
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// closed by the connection manager.
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ConnMgrGrace Duration
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}
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type Pubsub struct {
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// Run the node in bootstrap-node mode
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Bootstrapper bool
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// DirectPeers specifies peers with direct peering agreements. These peers are
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// connected outside of the mesh, with all (valid) message unconditionally
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// forwarded to them. The router will maintain open connections to these peers.
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// Note that the peering agreement should be reciprocal with direct peers
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// symmetrically configured at both ends.
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// Type: Array of multiaddress peerinfo strings, must include peerid (/p2p/12D3K...
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DirectPeers []string
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IPColocationWhitelist []string
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RemoteTracer string
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}
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type Chainstore struct {
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EnableSplitstore bool
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Splitstore Splitstore
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}
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type Splitstore struct {
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// ColdStoreType specifies the type of the coldstore.
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// It can be "universal" (default) or "discard" for discarding cold blocks.
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ColdStoreType string
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// HotStoreType specifies the type of the hotstore.
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// Only currently supported value is "badger".
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HotStoreType string
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// MarkSetType specifies the type of the markset.
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// It can be "map" (default) for in memory marking or "badger" for on-disk marking.
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MarkSetType string
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// HotStoreMessageRetention specifies the retention policy for messages, in finalities beyond
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// the compaction boundary; default is 0.
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HotStoreMessageRetention uint64
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// HotStoreFullGCFrequency specifies how often to perform a full (moving) GC on the hotstore.
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// A value of 0 disables, while a value 1 will do full GC in every compaction.
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// Default is 20 (about once a week).
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HotStoreFullGCFrequency uint64
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}
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// // Full Node
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type Client struct {
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UseIpfs bool
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IpfsOnlineMode bool
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IpfsMAddr string
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IpfsUseForRetrieval bool
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// The maximum number of simultaneous data transfers between the client
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// and storage providers for storage deals
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SimultaneousTransfersForStorage uint64
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// The maximum number of simultaneous data transfers between the client
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// and storage providers for retrieval deals
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SimultaneousTransfersForRetrieval uint64
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}
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type Wallet struct {
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RemoteBackend string
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EnableLedger bool
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DisableLocal bool
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}
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type FeeConfig struct {
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DefaultMaxFee types.FIL
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}
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