lotus/api/api_full.go

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package api
import (
"context"
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"time"
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"github.com/ipfs/go-cid"
"github.com/ipfs/go-filestore"
"github.com/libp2p/go-libp2p-core/peer"
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"github.com/filecoin-project/go-address"
"github.com/filecoin-project/go-fil-markets/storagemarket"
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"github.com/filecoin-project/specs-actors/actors/abi"
"github.com/filecoin-project/specs-actors/actors/abi/big"
"github.com/filecoin-project/specs-actors/actors/builtin/market"
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"github.com/filecoin-project/specs-actors/actors/builtin/miner"
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"github.com/filecoin-project/specs-actors/actors/builtin/paych"
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"github.com/filecoin-project/specs-actors/actors/builtin/power"
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"github.com/filecoin-project/specs-actors/actors/crypto"
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"github.com/filecoin-project/lotus/chain/types"
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"github.com/filecoin-project/lotus/node/modules/dtypes"
)
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// FullNode API is a low-level interface to the Filecoin network full node
type FullNode interface {
Common
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// TODO: TipSetKeys
// MethodGroup: Chain
// The Chain method group contains methods for interacting with the
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// blockchain, but that do not require any form of state computation.
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// ChainNotify returns channel with chain head updates.
// First message is guaranteed to be of len == 1, and type == 'current'.
ChainNotify(context.Context) (<-chan []*HeadChange, error)
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// ChainHead returns the current head of the chain.
ChainHead(context.Context) (*types.TipSet, error)
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// ChainGetRandomness is used to sample the chain for randomness.
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ChainGetRandomness(ctx context.Context, tsk types.TipSetKey, personalization crypto.DomainSeparationTag, randEpoch abi.ChainEpoch, entropy []byte) (abi.Randomness, error)
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// ChainGetBlock returns the block specified by the given CID.
ChainGetBlock(context.Context, cid.Cid) (*types.BlockHeader, error)
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// ChainGetTipSet returns the tipset specified by the given TipSetKey.
ChainGetTipSet(context.Context, types.TipSetKey) (*types.TipSet, error)
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// ChainGetBlockMessages returns messages stored in the specified block.
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ChainGetBlockMessages(ctx context.Context, blockCid cid.Cid) (*BlockMessages, error)
// ChainGetParentReceipts returns receipts for messages in parent tipset of
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// the specified block.
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ChainGetParentReceipts(ctx context.Context, blockCid cid.Cid) ([]*types.MessageReceipt, error)
// ChainGetParentReceipts returns messages stored in parent tipset of the
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// specified block.
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ChainGetParentMessages(ctx context.Context, blockCid cid.Cid) ([]Message, error)
// ChainGetTipSetByHeight looks back for a tipset at the specified epoch.
// If there are no blocks at the specified epoch, a tipset at higher epoch
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// will be returned.
ChainGetTipSetByHeight(context.Context, abi.ChainEpoch, types.TipSetKey) (*types.TipSet, error)
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// ChainReadObj reads ipld nodes referenced by the specified CID from chain
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// blockstore and returns raw bytes.
ChainReadObj(context.Context, cid.Cid) ([]byte, error)
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// ChainHasObj checks if a given CID exists in the chain blockstore.
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ChainHasObj(context.Context, cid.Cid) (bool, error)
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ChainStatObj(context.Context, cid.Cid, cid.Cid) (ObjStat, error)
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// ChainSetHead forcefully sets current chain head. Use with caution.
ChainSetHead(context.Context, types.TipSetKey) error
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// ChainGetGenesis returns the genesis tipset.
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ChainGetGenesis(context.Context) (*types.TipSet, error)
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// ChainTipSetWeight computes weight for the specified tipset.
ChainTipSetWeight(context.Context, types.TipSetKey) (types.BigInt, error)
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ChainGetNode(ctx context.Context, p string) (*IpldObject, error)
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// ChainGetMessage reads a message referenced by the specified CID from the
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// chain blockstore.
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ChainGetMessage(context.Context, cid.Cid) (*types.Message, error)
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// ChainGetPath returns a set of revert/apply operations needed to get from
// one tipset to another, for example:
//```
// to
// ^
// from tAA
// ^ ^
// tBA tAB
// ^---*--^
// ^
// tRR
//```
// Would return `[revert(tBA), apply(tAB), apply(tAA)]`
ChainGetPath(ctx context.Context, from types.TipSetKey, to types.TipSetKey) ([]*HeadChange, error)
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// ChainExport returns a stream of bytes with CAR dump of chain data.
ChainExport(context.Context, types.TipSetKey) (<-chan []byte, error)
// MethodGroup: Sync
// The Sync method group contains methods for interacting with and
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// observing the lotus sync service.
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// SyncState returns the current status of the lotus sync system.
SyncState(context.Context) (*SyncState, error)
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// SyncSubmitBlock can be used to submit a newly created block to the.
// network through this node
SyncSubmitBlock(ctx context.Context, blk *types.BlockMsg) error
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// SyncIncomingBlocks returns a channel streaming incoming, potentially not
// yet synced block headers.
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SyncIncomingBlocks(ctx context.Context) (<-chan *types.BlockHeader, error)
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// SyncMarkBad marks a blocks as bad, meaning that it won't ever by synced.
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// Use with extreme caution.
SyncMarkBad(ctx context.Context, bcid cid.Cid) error
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// SyncCheckBad checks if a block was marked as bad, and if it was, returns
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// the reason.
SyncCheckBad(ctx context.Context, bcid cid.Cid) (string, error)
// MethodGroup: Mpool
// The Mpool methods are for interacting with the message pool. The message pool
// manages all incoming and outgoing 'messages' going over the network.
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// MpoolPending returns pending mempool messages.
MpoolPending(context.Context, types.TipSetKey) ([]*types.SignedMessage, error)
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// MpoolPush pushes a signed message to mempool.
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MpoolPush(context.Context, *types.SignedMessage) (cid.Cid, error)
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// MpoolPushMessage atomically assigns a nonce, signs, and pushes a message
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// to mempool.
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MpoolPushMessage(context.Context, *types.Message) (*types.SignedMessage, error)
// MpoolGetNonce gets next nonce for the specified sender.
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// Note that this method may not be atomic. Use MpoolPushMessage instead.
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MpoolGetNonce(context.Context, address.Address) (uint64, error)
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MpoolSub(context.Context) (<-chan MpoolUpdate, error)
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// MpoolEstimateGasPrice estimates what gas price should be used for a
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// message to have high likelihood of inclusion in `nblocksincl` epochs.
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MpoolEstimateGasPrice(ctx context.Context, nblocksincl uint64, sender address.Address, gaslimit int64, tsk types.TipSetKey) (types.BigInt, error)
// MethodGroup: Miner
MinerGetBaseInfo(context.Context, address.Address, abi.ChainEpoch, types.TipSetKey) (*MiningBaseInfo, error)
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MinerCreateBlock(context.Context, *BlockTemplate) (*types.BlockMsg, error)
// // UX ?
// MethodGroup: Wallet
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// WalletNew creates a new address in the wallet with the given sigType.
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WalletNew(context.Context, crypto.SigType) (address.Address, error)
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// WalletHas indicates whether the given address is in the wallet.
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WalletHas(context.Context, address.Address) (bool, error)
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// WalletHas indicates whether the given address is in the wallet.
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WalletList(context.Context) ([]address.Address, error)
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// WalletBalance returns the balance of the given address at the current head of the chain.
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WalletBalance(context.Context, address.Address) (types.BigInt, error)
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// WalletSign signs the given bytes using the given address.
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WalletSign(context.Context, address.Address, []byte) (*crypto.Signature, error)
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// WalletSignMessage signs the given message using the given address.
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WalletSignMessage(context.Context, address.Address, *types.Message) (*types.SignedMessage, error)
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// WalletVerify takes an address, a signature, and some bytes, and indicates whether the signature is valid.
// The address does not have to be in the wallet.
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WalletVerify(context.Context, address.Address, []byte, *crypto.Signature) bool
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// WalletDefaultAddress returns the address marked as default in the wallet.
WalletDefaultAddress(context.Context) (address.Address, error)
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// WalletSetDefault marks the given address as as the default one.
WalletSetDefault(context.Context, address.Address) error
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// WalletExport returns the private key of an address in the wallet.
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WalletExport(context.Context, address.Address) (*types.KeyInfo, error)
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// WalletImport receives a KeyInfo, which includes a private key, and imports it into the wallet.
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WalletImport(context.Context, *types.KeyInfo) (address.Address, error)
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// WalletDelete deletes an address from the wallet.
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WalletDelete(context.Context, address.Address) error
// Other
// MethodGroup: Client
// The Client methods all have to do with interacting with the storage and
// retrieval markets as a client
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// ClientImport imports file under the specified path into filestore.
ClientImport(ctx context.Context, ref FileRef) (cid.Cid, error)
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// ClientStartDeal proposes a deal with a miner.
ClientStartDeal(ctx context.Context, params *StartDealParams) (*cid.Cid, error)
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// ClientGetDealInfo returns the latest information about a given deal.
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ClientGetDealInfo(context.Context, cid.Cid) (*DealInfo, error)
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// ClientListDeals returns information about the deals made by the local client.
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ClientListDeals(ctx context.Context) ([]DealInfo, error)
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// ClientHasLocal indicates whether a certain CID is locally stored.
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ClientHasLocal(ctx context.Context, root cid.Cid) (bool, error)
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// ClientFindData identifies peers that have a certain file, and returns QueryOffers (one per peer).
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ClientFindData(ctx context.Context, root cid.Cid) ([]QueryOffer, error)
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// ClientMinerQueryOffer returns a QueryOffer for the specific miner and file.
ClientMinerQueryOffer(ctx context.Context, root cid.Cid, miner address.Address) (QueryOffer, error)
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// ClientRetrieve initiates the retrieval of a file, as specified in the order.
ClientRetrieve(ctx context.Context, order RetrievalOrder, ref *FileRef) error
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// ClientQueryAsk returns a signed StorageAsk from the specified miner.
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ClientQueryAsk(ctx context.Context, p peer.ID, miner address.Address) (*storagemarket.SignedStorageAsk, error)
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// ClientCalcCommP calculates the CommP for a specified file, based on the sector size of the provided miner.
ClientCalcCommP(ctx context.Context, inpath string, miner address.Address) (*CommPRet, error)
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// ClientGenCar generates a CAR file for the specified file.
ClientGenCar(ctx context.Context, ref FileRef, outpath string) error
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// ClientUnimport removes references to the specified file from filestore
//ClientUnimport(path string)
// ClientListImports lists imported files and their root CIDs
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ClientListImports(ctx context.Context) ([]Import, error)
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//ClientListAsks() []Ask
// MethodGroup: State
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// The State methods are used to query, inspect, and interact with chain state.
// All methods take a TipSetKey as a parameter. The state looked up is the state at that tipset.
// A nil TipSetKey can be provided as a param, this will cause the heaviest tipset in the chain to be used.
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// StateCall runs the given message and returns its result without any persisted changes.
StateCall(context.Context, *types.Message, types.TipSetKey) (*InvocResult, error)
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// StateReplay returns the result of executing the indicated message, assuming it was executed in the indicated tipset.
StateReplay(context.Context, types.TipSetKey, cid.Cid) (*InvocResult, error)
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// StateGetActor returns the indicated actor's nonce and balance.
StateGetActor(ctx context.Context, actor address.Address, tsk types.TipSetKey) (*types.Actor, error)
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// StateReadState returns the indicated actor's state.
StateReadState(ctx context.Context, actor address.Address, tsk types.TipSetKey) (*ActorState, error)
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// StateListMessages looks back and returns all messages with a matching to or from address, stopping at the given height.
StateListMessages(ctx context.Context, match *types.Message, tsk types.TipSetKey, toht abi.ChainEpoch) ([]cid.Cid, error)
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// StateNetworkName returns the name of the network the node is synced to
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StateNetworkName(context.Context) (dtypes.NetworkName, error)
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// StateMinerSectors returns info about the given miner's sectors. If the filter bitfield is nil, all sectors are included.
// If the filterOut boolean is set to true, any sectors in the filter are excluded.
// If false, only those sectors in the filter are included.
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StateMinerSectors(context.Context, address.Address, *abi.BitField, bool, types.TipSetKey) ([]*ChainSectorInfo, error)
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// StateMinerProvingSet returns info about those sectors that a given miner is actively proving.
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StateMinerProvingSet(context.Context, address.Address, types.TipSetKey) ([]*ChainSectorInfo, error)
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// StateMinerProvingDeadline calculates the deadline at some epoch for a proving period
// and returns the deadline-related calculations.
StateMinerProvingDeadline(context.Context, address.Address, types.TipSetKey) (*miner.DeadlineInfo, error)
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// StateMinerPower returns the power of the indicated miner
StateMinerPower(context.Context, address.Address, types.TipSetKey) (*MinerPower, error)
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// StateMinerInfo returns info about the indicated miner
StateMinerInfo(context.Context, address.Address, types.TipSetKey) (MinerInfo, error)
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// StateMinerDeadlines returns all the proving deadlines for the given miner
StateMinerDeadlines(context.Context, address.Address, types.TipSetKey) (*miner.Deadlines, error)
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// StateMinerFaults returns a bitfield indicating the faulty sectors of the given miner
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StateMinerFaults(context.Context, address.Address, types.TipSetKey) (*abi.BitField, error)
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// StateAllMinerFaults returns all non-expired Faults that occur within lookback epochs of the given tipset
StateAllMinerFaults(ctx context.Context, lookback abi.ChainEpoch, ts types.TipSetKey) ([]*Fault, error)
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// StateMinerRecoveries returns a bitfield indicating the recovering sectors of the given miner
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StateMinerRecoveries(context.Context, address.Address, types.TipSetKey) (*abi.BitField, error)
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// StateMinerInitialPledgeCollateral returns the initial pledge collateral for the specified miner's sector
StateMinerInitialPledgeCollateral(context.Context, address.Address, abi.SectorNumber, types.TipSetKey) (types.BigInt, error)
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// StateMinerAvailableBalance returns the portion of a miner's balance that can be withdrawn or spent
StateMinerAvailableBalance(context.Context, address.Address, types.TipSetKey) (types.BigInt, error)
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// StateSectorPreCommitInfo returns the PreCommit info for the specified miner's sector
StateSectorPreCommitInfo(context.Context, address.Address, abi.SectorNumber, types.TipSetKey) (miner.SectorPreCommitOnChainInfo, error)
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// StateSectorGetInfo returns the on-chain info for the specified miner's sector
StateSectorGetInfo(context.Context, address.Address, abi.SectorNumber, types.TipSetKey) (*miner.SectorOnChainInfo, error)
StatePledgeCollateral(context.Context, types.TipSetKey) (types.BigInt, error)
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// StateSearchMsg searches for a message in the chain, and returns its receipt and the tipset where it was executed
StateSearchMsg(context.Context, cid.Cid) (*MsgLookup, error)
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// StateWaitMsg looks back in the chain for a message. If not found, it blocks until the
// message arrives on chain, and gets to the indicated confidence depth.
StateWaitMsg(ctx context.Context, cid cid.Cid, confidence uint64) (*MsgLookup, error)
// StateListMiners returns the addresses of every miner that has claimed power in the Power Actor
StateListMiners(context.Context, types.TipSetKey) ([]address.Address, error)
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// StateListActors returns the addresses of every actor in the state
StateListActors(context.Context, types.TipSetKey) ([]address.Address, error)
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// StateMarketBalance looks up the Escrow and Locked balances of the given address in the Storage Market
StateMarketBalance(context.Context, address.Address, types.TipSetKey) (MarketBalance, error)
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// StateMarketParticipants returns the Escrow and Locked balances of every participant in the Storage Market
StateMarketParticipants(context.Context, types.TipSetKey) (map[string]MarketBalance, error)
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// StateMarketDeals returns information about every deal in the Storage Market
StateMarketDeals(context.Context, types.TipSetKey) (map[string]MarketDeal, error)
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// StateMarketStorageDeal returns information about the indicated deal
StateMarketStorageDeal(context.Context, abi.DealID, types.TipSetKey) (*MarketDeal, error)
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// StateLookupID retrieves the ID address of the given address
StateLookupID(context.Context, address.Address, types.TipSetKey) (address.Address, error)
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// StateAccountKey returns the public key address of the given ID address
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StateAccountKey(context.Context, address.Address, types.TipSetKey) (address.Address, error)
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// StateChangedActors returns all the actors whose states change between the two given state CIDs
// TODO: Should this take tipset keys instead?
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StateChangedActors(context.Context, cid.Cid, cid.Cid) (map[string]types.Actor, error)
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// StateGetReceipt returns the message receipt for the given message
StateGetReceipt(context.Context, cid.Cid, types.TipSetKey) (*types.MessageReceipt, error)
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// StateMinerSectorCount returns the number of sectors in a miner's sector set and proving set
StateMinerSectorCount(context.Context, address.Address, types.TipSetKey) (MinerSectors, error)
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// StateCompute is a flexible command that applies the given messages on the given tipset.
// The messages are run as though the VM were at the provided height.
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StateCompute(context.Context, abi.ChainEpoch, []*types.Message, types.TipSetKey) (*ComputeStateOutput, error)
// MethodGroup: Msig
// The Msig methods are used to interact with multisig wallets on the
// filecoin network
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// MsigGetAvailableBalance returns the portion of a multisig's balance that can be withdrawn or spent
MsigGetAvailableBalance(context.Context, address.Address, types.TipSetKey) (types.BigInt, error)
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// MsigGetAvailableBalance creates a multisig wallet
// It takes the following params: <required number of senders>, <approving addresses>, <initial balance>,
// <sender address of the create msg>, <gas price>
MsigCreate(context.Context, int64, []address.Address, types.BigInt, address.Address, types.BigInt) (cid.Cid, error)
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// MsigPropose proposes a multisig message
// It takes the following params: <multisig address>, <recipient address>, <value to transfer>,
// <sender address of the propose msg>, <method to call in the proposed message>, <params to include in the proposed message>
MsigPropose(context.Context, address.Address, address.Address, types.BigInt, address.Address, uint64, []byte) (cid.Cid, error)
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// MsigApprove approves a previously-proposed multisig message
// It takes the following params: <multisig address>, <proposed message ID>, <proposer address>, <recipient address>, <value to transfer>,
// <sender address of the approve msg>, <method to call in the proposed message>, <params to include in the proposed message>
MsigApprove(context.Context, address.Address, uint64, address.Address, address.Address, types.BigInt, address.Address, uint64, []byte) (cid.Cid, error)
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// MsigCancel cancels a previously-proposed multisig message
// It takes the following params: <multisig address>, <proposed message ID>, <proposer address>, <recipient address>, <value to transfer>,
// <sender address of the cancel msg>, <method to call in the proposed message>, <params to include in the proposed message>
// TODO: You can't cancel someone else's proposed message, so "src" and "proposer" here are redundant
MsigCancel(context.Context, address.Address, uint64, address.Address, address.Address, types.BigInt, address.Address, uint64, []byte) (cid.Cid, error)
MarketEnsureAvailable(context.Context, address.Address, address.Address, types.BigInt) (cid.Cid, error)
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// MarketFreeBalance
// MethodGroup: Paych
// The Paych methods are for interacting with and managing payment channels
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PaychGet(ctx context.Context, from, to address.Address, ensureFunds types.BigInt) (*ChannelInfo, error)
PaychList(context.Context) ([]address.Address, error)
PaychStatus(context.Context, address.Address) (*PaychStatus, error)
PaychClose(context.Context, address.Address) (cid.Cid, error)
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PaychAllocateLane(ctx context.Context, ch address.Address) (uint64, error)
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PaychNewPayment(ctx context.Context, from, to address.Address, vouchers []VoucherSpec) (*PaymentInfo, error)
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PaychVoucherCheckValid(context.Context, address.Address, *paych.SignedVoucher) error
PaychVoucherCheckSpendable(context.Context, address.Address, *paych.SignedVoucher, []byte, []byte) (bool, error)
PaychVoucherCreate(context.Context, address.Address, types.BigInt, uint64) (*paych.SignedVoucher, error)
PaychVoucherAdd(context.Context, address.Address, *paych.SignedVoucher, []byte, types.BigInt) (types.BigInt, error)
PaychVoucherList(context.Context, address.Address) ([]*paych.SignedVoucher, error)
PaychVoucherSubmit(context.Context, address.Address, *paych.SignedVoucher) (cid.Cid, error)
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}
type FileRef struct {
Path string
IsCAR bool
}
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type MinerSectors struct {
Sset uint64
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Pset uint64
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}
type Import struct {
Status filestore.Status
Key cid.Cid
FilePath string
Size uint64
}
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type DealInfo struct {
ProposalCid cid.Cid
State storagemarket.StorageDealStatus
Message string // more information about deal state, particularly errors
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Provider address.Address
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PieceCID cid.Cid
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Size uint64
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PricePerEpoch types.BigInt
Duration uint64
DealID abi.DealID
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}
type MsgLookup struct {
Receipt types.MessageReceipt
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// TODO: This should probably a tipsetkey?
TipSet *types.TipSet
}
type BlockMessages struct {
BlsMessages []*types.Message
SecpkMessages []*types.SignedMessage
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Cids []cid.Cid
}
type Message struct {
Cid cid.Cid
Message *types.Message
}
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type ChainSectorInfo struct {
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Info miner.SectorOnChainInfo
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ID abi.SectorNumber
}
type ActorState struct {
Balance types.BigInt
State interface{}
}
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type PCHDir int
const (
PCHUndef PCHDir = iota
PCHInbound
PCHOutbound
)
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type PaychStatus struct {
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ControlAddr address.Address
Direction PCHDir
}
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type ChannelInfo struct {
Channel address.Address
ChannelMessage cid.Cid
}
type PaymentInfo struct {
Channel address.Address
ChannelMessage *cid.Cid
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Vouchers []*paych.SignedVoucher
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}
type VoucherSpec struct {
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Amount types.BigInt
TimeLockMin abi.ChainEpoch
TimeLockMax abi.ChainEpoch
MinSettle abi.ChainEpoch
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Extra *paych.ModVerifyParams
}
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type MinerPower struct {
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MinerPower power.Claim
TotalPower power.Claim
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}
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type QueryOffer struct {
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Err string
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Root cid.Cid
Size uint64
MinPrice types.BigInt
PaymentInterval uint64
PaymentIntervalIncrease uint64
Miner address.Address
MinerPeerID peer.ID
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}
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func (o *QueryOffer) Order(client address.Address) RetrievalOrder {
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return RetrievalOrder{
Root: o.Root,
Size: o.Size,
Total: o.MinPrice,
PaymentInterval: o.PaymentInterval,
PaymentIntervalIncrease: o.PaymentIntervalIncrease,
Client: client,
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Miner: o.Miner,
MinerPeerID: o.MinerPeerID,
}
}
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type MarketBalance struct {
Escrow big.Int
Locked big.Int
}
type MarketDeal struct {
Proposal market.DealProposal
State market.DealState
}
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type RetrievalOrder struct {
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// TODO: make this less unixfs specific
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Root cid.Cid
Size uint64
// TODO: support offset
Total types.BigInt
PaymentInterval uint64
PaymentIntervalIncrease uint64
Client address.Address
Miner address.Address
MinerPeerID peer.ID
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}
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type InvocResult struct {
Msg *types.Message
MsgRct *types.MessageReceipt
ExecutionTrace types.ExecutionTrace
Error string
Duration time.Duration
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}
type MethodCall struct {
types.MessageReceipt
Error string
}
type StartDealParams struct {
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Data *storagemarket.DataRef
Wallet address.Address
Miner address.Address
EpochPrice types.BigInt
MinBlocksDuration uint64
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DealStartEpoch abi.ChainEpoch
}
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type IpldObject struct {
Cid cid.Cid
Obj interface{}
}
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type ActiveSync struct {
Base *types.TipSet
Target *types.TipSet
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Stage SyncStateStage
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Height abi.ChainEpoch
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Start time.Time
End time.Time
Message string
}
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type SyncState struct {
ActiveSyncs []ActiveSync
}
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type SyncStateStage int
const (
StageIdle = SyncStateStage(iota)
StageHeaders
StagePersistHeaders
StageMessages
StageSyncComplete
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StageSyncErrored
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)
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type MpoolChange int
const (
MpoolAdd MpoolChange = iota
MpoolRemove
)
type MpoolUpdate struct {
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Type MpoolChange
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Message *types.SignedMessage
}
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type ComputeStateOutput struct {
Root cid.Cid
Trace []*InvocResult
}
type MiningBaseInfo struct {
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MinerPower types.BigInt
NetworkPower types.BigInt
Sectors []abi.SectorInfo
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WorkerKey address.Address
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SectorSize abi.SectorSize
PrevBeaconEntry types.BeaconEntry
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BeaconEntries []types.BeaconEntry
}
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type BlockTemplate struct {
Miner address.Address
Parents types.TipSetKey
Ticket *types.Ticket
Eproof *types.ElectionProof
BeaconValues []types.BeaconEntry
Messages []*types.SignedMessage
Epoch abi.ChainEpoch
Timestamp uint64
WinningPoStProof []abi.PoStProof
}
type CommPRet struct {
Root cid.Cid
Size abi.UnpaddedPieceSize
}
type HeadChange struct {
Type string
Val *types.TipSet
}
type MsigProposeResponse int
const (
MsigApprove MsigProposeResponse = iota
MsigCancel
)
type Fault struct {
Miner address.Address
Epoch abi.ChainEpoch
}