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lndrpc.proto
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lndrpc.proto
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syntax = "proto3";
import "google/api/annotations.proto";
package lnrpc;
/**
* Comments in this file will be directly parsed into the API
* Documentation as descriptions of the associated method, message, or field.
* These descriptions should go right above the definition of the object, and
* can be in either block or /// comment format.
*
* One edge case exists where a // comment followed by a /// comment in the
* next line will cause the description not to show up in the documentation. In
* that instance, simply separate the two comments with a blank line.
*
* An RPC method can be matched to an lncli command by placing a line in the
* beginning of the description in exactly the following format:
* lncli: `methodname`
*
* Failure to specify the exact name of the command will cause documentation
* generation to fail.
*
* More information on how exactly the gRPC documentation is generated from
* this proto file can be found here:
* https://github.com/MaxFangX/lightning-api
*/
// The WalletUnlocker service is used to set up a wallet password for
// lnd at first startup, and unlock a previously set up wallet.
service WalletUnlocker {
/** lncli: `create`
CreateWallet is used at lnd startup to set the encryption password for
the wallet database.
*/
rpc CreateWallet(CreateWalletRequest) returns (CreateWalletResponse) {
option (google.api.http) = {
post: "/v1/createwallet"
body: "*"
};
}
/** lncli: `unlock`
UnlockWallet is used at startup of lnd to provide a password to unlock
the wallet database.
*/
rpc UnlockWallet(UnlockWalletRequest) returns (UnlockWalletResponse) {
option (google.api.http) = {
post: "/v1/unlockwallet"
body: "*"
};
}
}
message CreateWalletRequest {
bytes password = 1;
}
message CreateWalletResponse {}
message UnlockWalletRequest {
bytes password = 1;
}
message UnlockWalletResponse {}
service Lightning {
/** lncli: `walletbalance`
WalletBalance returns total unspent outputs(confirmed and unconfirmed), all confirmed unspent outputs and all unconfirmed unspent outputs under control
by the wallet. This method can be modified by having the request specify
only witness outputs should be factored into the final output sum.
*/
rpc WalletBalance (WalletBalanceRequest) returns (WalletBalanceResponse) {
option (google.api.http) = {
get: "/v1/balance/blockchain"
};
}
/** lncli: `channelbalance`
ChannelBalance returns the total funds available across all open channels
in satoshis.
*/
rpc ChannelBalance (ChannelBalanceRequest) returns (ChannelBalanceResponse) {
option (google.api.http) = {
get: "/v1/balance/channels"
};
}
/** lncli: `listchaintxns`
GetTransactions returns a list describing all the known transactions
relevant to the wallet.
*/
rpc GetTransactions (GetTransactionsRequest) returns (TransactionDetails) {
option (google.api.http) = {
get: "/v1/transactions"
};
}
/** lncli: `sendcoins`
SendCoins executes a request to send coins to a particular address. Unlike
SendMany, this RPC call only allows creating a single output at a time. If
neither target_conf, or sat_per_byte are set, then the internal wallet will
consult its fee model to determine a fee for the default confirmation
target.
*/
rpc SendCoins (SendCoinsRequest) returns (SendCoinsResponse) {
option (google.api.http) = {
post: "/v1/transactions"
body: "*"
};
}
/**
SubscribeTransactions creates a uni-directional stream from the server to
the client in which any newly discovered transactions relevant to the
wallet are sent over.
*/
rpc SubscribeTransactions (GetTransactionsRequest) returns (stream Transaction);
/** lncli: `sendmany`
SendMany handles a request for a transaction that creates multiple specified
outputs in parallel. If neither target_conf, or sat_per_byte are set, then
the internal wallet will consult its fee model to determine a fee for the
default confirmation target.
*/
rpc SendMany (SendManyRequest) returns (SendManyResponse);
/** lncli: `newaddress`
NewAddress creates a new address under control of the local wallet.
*/
rpc NewAddress (NewAddressRequest) returns (NewAddressResponse);
/**
NewWitnessAddress creates a new witness address under control of the local wallet.
*/
rpc NewWitnessAddress (NewWitnessAddressRequest) returns (NewAddressResponse) {
option (google.api.http) = {
get: "/v1/newaddress"
};
}
/** lncli: `signmessage`
SignMessage signs a message with this node's private key. The returned
signature string is `zbase32` encoded and pubkey recoverable, meaning that
only the message digest and signature are needed for verification.
*/
rpc SignMessage (SignMessageRequest) returns (SignMessageResponse);
/** lncli: `verifymessage`
VerifyMessage verifies a signature over a msg. The signature must be
zbase32 encoded and signed by an active node in the resident node's
channel database. In addition to returning the validity of the signature,
VerifyMessage also returns the recovered pubkey from the signature.
*/
rpc VerifyMessage (VerifyMessageRequest) returns (VerifyMessageResponse);
/** lncli: `connect`
ConnectPeer attempts to establish a connection to a remote peer. This is at
the networking level, and is used for communication between nodes. This is
distinct from establishing a channel with a peer.
*/
rpc ConnectPeer (ConnectPeerRequest) returns (ConnectPeerResponse) {
option (google.api.http) = {
post: "/v1/peers"
body: "*"
};
}
/** lncli: `disconnect`
DisconnectPeer attempts to disconnect one peer from another identified by a
given pubKey. In the case that we currently have a pending or active channel
with the target peer, then this action will be not be allowed.
*/
rpc DisconnectPeer (DisconnectPeerRequest) returns (DisconnectPeerResponse) {
option (google.api.http) = {
delete: "/v1/peers/{pub_key}"
};
}
/** lncli: `listpeers`
ListPeers returns a verbose listing of all currently active peers.
*/
rpc ListPeers (ListPeersRequest) returns (ListPeersResponse) {
option (google.api.http) = {
get: "/v1/peers"
};
}
/** lncli: `getinfo`
GetInfo returns general information concerning the lightning node including
it's identity pubkey, alias, the chains it is connected to, and information
concerning the number of open+pending channels.
*/
rpc GetInfo (GetInfoRequest) returns (GetInfoResponse) {
option (google.api.http) = {
get: "/v1/getinfo"
};
}
// TODO(roasbeef): merge with below with bool?
/** lncli: `pendingchannels`
PendingChannels returns a list of all the channels that are currently
considered "pending". A channel is pending if it has finished the funding
workflow and is waiting for confirmations for the funding txn, or is in the
process of closure, either initiated cooperatively or non-cooperatively.
*/
rpc PendingChannels (PendingChannelsRequest) returns (PendingChannelsResponse) {
option (google.api.http) = {
get: "/v1/channels/pending"
};
}
/** lncli: `listchannels`
ListChannels returns a description of all the open channels that this node
is a participant in.
*/
rpc ListChannels (ListChannelsRequest) returns (ListChannelsResponse) {
option (google.api.http) = {
get: "/v1/channels"
};
}
/**
OpenChannelSync is a synchronous version of the OpenChannel RPC call. This
call is meant to be consumed by clients to the REST proxy. As with all
other sync calls, all byte slices are intended to be populated as hex
encoded strings.
*/
rpc OpenChannelSync (OpenChannelRequest) returns (ChannelPoint) {
option (google.api.http) = {
post: "/v1/channels"
body: "*"
};
}
/** lncli: `openchannel`
OpenChannel attempts to open a singly funded channel specified in the
request to a remote peer. Users are able to specify a target number of
blocks that the funding transaction should be confirmed in, or a manual fee
rate to us for the funding transaction. If neither are specified, then a
lax block confirmation target is used.
*/
rpc OpenChannel (OpenChannelRequest) returns (stream OpenStatusUpdate);
/** lncli: `closechannel`
CloseChannel attempts to close an active channel identified by its channel
outpoint (ChannelPoint). The actions of this method can additionally be
augmented to attempt a force close after a timeout period in the case of an
inactive peer. If a non-force close (cooperative closure) is requested,
then the user can specify either a target number of blocks until the
closure transaction is confirmed, or a manual fee rate. If neither are
specified, then a default lax, block confirmation target is used.
*/
rpc CloseChannel (CloseChannelRequest) returns (stream CloseStatusUpdate) {
option (google.api.http) = {
delete: "/v1/channels/{channel_point.funding_txid_str}/{channel_point.output_index}"
};
}
/** lncli: `sendpayment`
SendPayment dispatches a bi-directional streaming RPC for sending payments
through the Lightning Network. A single RPC invocation creates a persistent
bi-directional stream allowing clients to rapidly send payments through the
Lightning Network with a single persistent connection.
*/
rpc SendPayment (stream SendRequest) returns (stream SendResponse);
/**
SendPaymentSync is the synchronous non-streaming version of SendPayment.
This RPC is intended to be consumed by clients of the REST proxy.
Additionally, this RPC expects the destination's public key and the payment
hash (if any) to be encoded as hex strings.
*/
rpc SendPaymentSync (SendRequest) returns (SendResponse) {
option (google.api.http) = {
post: "/v1/channels/transactions"
body: "*"
};
}
/** lncli: `addinvoice`
AddInvoice attempts to add a new invoice to the invoice database. Any
duplicated invoices are rejected, therefore all invoices *must* have a
unique payment preimage.
*/
rpc AddInvoice (Invoice) returns (AddInvoiceResponse) {
option (google.api.http) = {
post: "/v1/invoices"
body: "*"
};
}
/** lncli: `listinvoices`
ListInvoices returns a list of all the invoices currently stored within the
database. Any active debug invoices are ignored.
*/
rpc ListInvoices (ListInvoiceRequest) returns (ListInvoiceResponse) {
option (google.api.http) = {
get: "/v1/invoices"
};
}
/** lncli: `lookupinvoice`
LookupInvoice attemps to look up an invoice according to its payment hash.
The passed payment hash *must* be exactly 32 bytes, if not, an error is
returned.
*/
rpc LookupInvoice (PaymentHash) returns (Invoice) {
option (google.api.http) = {
get: "/v1/invoice/{r_hash_str}"
};
}
/**
SubscribeInvoices returns a uni-directional stream (sever -> client) for
notifying the client of newly added/settled invoices.
*/
rpc SubscribeInvoices (InvoiceSubscription) returns (stream Invoice) {
option (google.api.http) = {
get: "/v1/invoices/subscribe"
};
}
/** lncli: `decodepayreq`
DecodePayReq takes an encoded payment request string and attempts to decode
it, returning a full description of the conditions encoded within the
payment request.
*/
rpc DecodePayReq (PayReqString) returns (PayReq) {
option (google.api.http) = {
get: "/v1/payreq/{pay_req}"
};
}
/** lncli: `listpayments`
ListPayments returns a list of all outgoing payments.
*/
rpc ListPayments (ListPaymentsRequest) returns (ListPaymentsResponse) {
option (google.api.http) = {
get: "/v1/payments"
};
};
/**
DeleteAllPayments deletes all outgoing payments from DB.
*/
rpc DeleteAllPayments (DeleteAllPaymentsRequest) returns (DeleteAllPaymentsResponse) {
option (google.api.http) = {
delete: "/v1/payments"
};
};
/** lncli: `describegraph`
DescribeGraph returns a description of the latest graph state from the
point of view of the node. The graph information is partitioned into two
components: all the nodes/vertexes, and all the edges that connect the
vertexes themselves. As this is a directed graph, the edges also contain
the node directional specific routing policy which includes: the time lock
delta, fee information, etc.
*/
rpc DescribeGraph (ChannelGraphRequest) returns (ChannelGraph) {
option (google.api.http) = {
get: "/v1/graph"
};
}
/** lncli: `getchaninfo`
GetChanInfo returns the latest authenticated network announcement for the
given channel identified by its channel ID: an 8-byte integer which
uniquely identifies the location of transaction's funding output within the
blockchain.
*/
rpc GetChanInfo (ChanInfoRequest) returns (ChannelEdge) {
option (google.api.http) = {
get: "/v1/graph/edge/{chan_id}"
};
}
/** lncli: `getnodeinfo`
GetNodeInfo returns the latest advertised, aggregated, and authenticated
channel information for the specified node identified by its public key.
*/
rpc GetNodeInfo (NodeInfoRequest) returns (NodeInfo) {
option (google.api.http) = {
get: "/v1/graph/node/{pub_key}"
};
}
/** lncli: `queryroutes`
QueryRoutes attempts to query the daemon's Channel Router for a possible
route to a target destination capable of carrying a specific amount of
satoshis. The retuned route contains the full details required to craft and
send an HTLC, also including the necessary information that should be
present within the Sphinx packet encapsualted within the HTLC.
*/
rpc QueryRoutes(QueryRoutesRequest) returns (QueryRoutesResponse) {
option (google.api.http) = {
get: "/v1/graph/routes/{pub_key}/{amt}"
};
}
/** lncli: `getnetworkinfo`
GetNetworkInfo returns some basic stats about the known channel graph from
the point of view of the node.
*/
rpc GetNetworkInfo (NetworkInfoRequest) returns (NetworkInfo) {
option (google.api.http) = {
get: "/v1/graph/info"
};
}
/** lncli: `stop`
StopDaemon will send a shutdown request to the interrupt handler, triggering
a graceful shutdown of the daemon.
*/
rpc StopDaemon(StopRequest) returns (StopResponse);
/**
SubscribeChannelGraph launches a streaming RPC that allows the caller to
receive notifications upon any changes to the channel graph topology from
the point of view of the responding node. Events notified include: new
nodes coming online, nodes updating their authenticated attributes, new
channels being advertised, updates in the routing policy for a directional
channel edge, and when channels are closed on-chain.
*/
rpc SubscribeChannelGraph(GraphTopologySubscription) returns (stream GraphTopologyUpdate);
/** lncli: `debuglevel`
DebugLevel allows a caller to programmatically set the logging verbosity of
lnd. The logging can be targeted according to a coarse daemon-wide logging
level, or in a granular fashion to specify the logging for a target
sub-system.
*/
rpc DebugLevel (DebugLevelRequest) returns (DebugLevelResponse);
/** lncli: `feereport`
FeeReport allows the caller to obtain a report detailing the current fee
schedule enforced by the node globally for each channel.
*/
rpc FeeReport(FeeReportRequest) returns (FeeReportResponse) {
option (google.api.http) = {
get: "/v1/fees"
};
}
/** lncli: `updatechanpolicy`
UpdateChannelPolicy allows the caller to update the fee schedule and
channel policies for all channels globally, or a particular channel.
*/
rpc UpdateChannelPolicy(PolicyUpdateRequest) returns (PolicyUpdateResponse) {
option (google.api.http) = {
post: "/v1/chanpolicy"
body: "*"
};
}
}
message Transaction {
/// The transaction hash
string tx_hash = 1 [ json_name = "tx_hash" ];
/// The transaction ammount, denominated in satoshis
int64 amount = 2 [ json_name = "amount" ];
/// The number of confirmations
int32 num_confirmations = 3 [ json_name = "num_confirmations" ];
/// The hash of the block this transaction was included in
string block_hash = 4 [ json_name = "block_hash" ];
/// The height of the block this transaction was included in
int32 block_height = 5 [ json_name = "block_height" ];
/// Timestamp of this transaction
int64 time_stamp = 6 [ json_name = "time_stamp" ];
/// Fees paid for this transaction
int64 total_fees = 7 [ json_name = "total_fees" ];
/// Addresses that received funds for this transaction
repeated string dest_addresses = 8 [ json_name = "dest_addresses" ];
}
message GetTransactionsRequest {
}
message TransactionDetails {
/// The list of transactions relevant to the wallet.
repeated Transaction transactions = 1 [json_name = "transactions"];
}
message SendRequest {
/// The identity pubkey of the payment recipient
bytes dest = 1;
/// The hex-encoded identity pubkey of the payment recipient
string dest_string = 2;
/// Number of satoshis to send.
int64 amt = 3;
/// The hash to use within the payment's HTLC
bytes payment_hash = 4;
/// The hex-encoded hash to use within the payment's HTLC
string payment_hash_string = 5;
/**
A bare-bones invoice for a payment within the Lightning Network. With the
details of the invoice, the sender has all the data necessary to send a
payment to the recipient.
*/
string payment_request = 6;
/// The CLTV delta from the current height that should be used to set the timelock for the final hop.
int32 final_cltv_delta = 7;
}
message SendResponse {
string payment_error = 1 [json_name = "payment_error"];
bytes payment_preimage = 2 [json_name = "payment_preimage"];
Route payment_route = 3 [json_name = "payment_route"];
}
message ChannelPoint {
oneof funding_txid {
/// Txid of the funding transaction
bytes funding_txid_bytes = 1 [json_name = "funding_txid_bytes"];
/// Hex-encoded string representing the funding transaction
string funding_txid_str = 2 [json_name = "funding_txid_str"];
}
/// The index of the output of the funding transaction
uint32 output_index = 3 [json_name = "output_index"];
}
message LightningAddress {
/// The identity pubkey of the Lightning node
string pubkey = 1 [json_name = "pubkey"];
/// The network location of the lightning node, e.g. `69.69.69.69:1337` or `localhost:10011`
string host = 2 [json_name = "host"];
}
message SendManyRequest {
/// The map from addresses to amounts
map<string, int64> AddrToAmount = 1;
/// The target number of blocks that this transaction should be confirmed by.
int32 target_conf = 3;
/// A manual fee rate set in sat/byte that should be used when crafting the transaction.
int64 sat_per_byte = 5;
}
message SendManyResponse {
/// The id of the transaction
string txid = 1 [json_name = "txid"];
}
message SendCoinsRequest {
/// The address to send coins to
string addr = 1;
/// The amount in satoshis to send
int64 amount = 2;
/// The target number of blocks that this transaction should be confirmed by.
int32 target_conf = 3;
/// A manual fee rate set in sat/byte that should be used when crafting the transaction.
int64 sat_per_byte = 5;
}
message SendCoinsResponse {
/// The transaction ID of the transaction
string txid = 1 [json_name = "txid"];
}
/**
`AddressType` has to be one of:
- `p2wkh`: Pay to witness key hash (`WITNESS_PUBKEY_HASH` = 0)
- `np2wkh`: Pay to nested witness key hash (`NESTED_PUBKEY_HASH` = 1)
- `p2pkh`: Pay to public key hash (`PUBKEY_HASH` = 2)
*/
message NewAddressRequest {
enum AddressType {
WITNESS_PUBKEY_HASH = 0;
NESTED_PUBKEY_HASH = 1;
PUBKEY_HASH = 2;
}
/// The address type
AddressType type = 1;
}
message NewWitnessAddressRequest {
}
message NewAddressResponse {
/// The newly generated wallet address
string address = 1 [json_name = "address"];
}
message SignMessageRequest {
/// The message to be signed
bytes msg = 1 [ json_name = "msg" ];
}
message SignMessageResponse {
/// The signature for the given message
string signature = 1 [ json_name = "signature" ];
}
message VerifyMessageRequest {
/// The message over which the signature is to be verified
bytes msg = 1 [ json_name = "msg" ];
/// The signature to be verifed over the given message
string signature = 2 [ json_name = "signature" ];
}
message VerifyMessageResponse {
/// Whether the signature was valid over the given message
bool valid = 1 [ json_name = "valid" ];
/// The pubkey recovered from the signature
string pubkey = 2 [ json_name = "pubkey" ];
}
message ConnectPeerRequest {
/// Lightning address of the peer, in the format `<pubkey>@host`
LightningAddress addr = 1;
/** If set, the daemon will attempt to persistently connect to the target
* peer. Otherwise, the call will be synchronous. */
bool perm = 2;
}
message ConnectPeerResponse {
/// The id of the newly connected peer
int32 peer_id = 1 [json_name = "peer_id"];
}
message DisconnectPeerRequest {
/// The pubkey of the node to disconnect from
string pub_key = 1 [json_name = "pub_key"];
}
message DisconnectPeerResponse {
}
message HTLC {
bool incoming = 1 [json_name = "incoming"];
int64 amount = 2 [json_name = "amount"];
bytes hash_lock = 3 [json_name = "hash_lock"];
uint32 expiration_height = 4 [json_name = "expiration_height"];
}
message ActiveChannel {
/// Whether this channel is active or not
bool active = 1 [json_name = "active"];
/// The identity pubkey of the remote node
string remote_pubkey = 2 [json_name = "remote_pubkey"];
/**
The outpoint (txid:index) of the funding transaction. With this value, Bob
will be able to generate a signature for Alice's version of the commitment
transaction.
*/
string channel_point = 3 [json_name = "channel_point"];
/**
The unique channel ID for the channel. The first 3 bytes are the block
height, the next 3 the index within the block, and the last 2 bytes are the
output index for the channel.
*/
uint64 chan_id = 4 [json_name = "chan_id"];
/// The total amount of funds held in this channel
int64 capacity = 5 [json_name = "capacity"];
/// This node's current balance in this channel
int64 local_balance = 6 [json_name = "local_balance"];
/// The counterparty's current balance in this channel
int64 remote_balance = 7 [json_name = "remote_balance"];
/**
The amount calculated to be paid in fees for the current set of commitment
transactions. The fee amount is persisted with the channel in order to
allow the fee amount to be removed and recalculated with each channel state
update, including updates that happen after a system restart.
*/
int64 commit_fee = 8 [json_name = "commit_fee"];
/// The weight of the commitment transaction
int64 commit_weight = 9 [ json_name = "commit_weight" ];
/**
The required number of satoshis per kilo-weight that the requester will pay
at all times, for both the funding transaction and commitment transaction.
This value can later be updated once the channel is open.
*/
int64 fee_per_kw = 10 [json_name = "fee_per_kw"];
/// The unsettled balance in this channel
int64 unsettled_balance = 11 [json_name = "unsettled_balance"];
/**
The total number of satoshis we've sent within this channel.
*/
int64 total_satoshis_sent = 12 [json_name = "total_satoshis_sent"];
/**
The total number of satoshis we've received within this channel.
*/
int64 total_satoshis_received = 13 [json_name = "total_satoshis_received"];
/**
The total number of updates conducted within this channel.
*/
uint64 num_updates = 14 [json_name = "num_updates"];
/**
The list of active, uncleared HTLCs currently pending within the channel.
*/
repeated HTLC pending_htlcs = 15 [json_name = "pending_htlcs"];
/**
The CSV delay expressed in relative blocks. If the channel is force
closed, we'll need to wait for this many blocks before we can regain our
funds.
*/
uint32 csv_delay = 16 [ json_name = "csv_delay" ];
}
message ListChannelsRequest {
}
message ListChannelsResponse {
/// The list of active channels
repeated ActiveChannel channels = 11 [json_name = "channels"];
}
message Peer {
/// The identity pubkey of the peer
string pub_key = 1 [json_name = "pub_key"];
/// The peer's id from the local point of view
int32 peer_id = 2 [json_name = "peer_id"];
/// Network address of the peer; eg `127.0.0.1:10011`
string address = 3 [json_name = "address"];
/// Bytes of data transmitted to this peer
uint64 bytes_sent = 4 [json_name = "bytes_sent"];
/// Bytes of data transmitted from this peer
uint64 bytes_recv = 5 [json_name = "bytes_recv"];
/// Satoshis sent to this peer
int64 sat_sent = 6 [json_name = "sat_sent"];
/// Satoshis received from this peer
int64 sat_recv = 7 [json_name = "sat_recv"];
/// A channel is inbound if the counterparty initiated the channel
bool inbound = 8 [json_name = "inbound"];
/// Ping time to this peer
int64 ping_time = 9 [json_name = "ping_time"];
}
message ListPeersRequest {
}
message ListPeersResponse {
/// The list of currently connected peers
repeated Peer peers = 1 [json_name = "peers"];
}
message GetInfoRequest {
}
message GetInfoResponse {
/// The identity pubkey of the current node.
string identity_pubkey = 1 [json_name = "identity_pubkey"];
/// If applicable, the alias of the current node, e.g. "bob"
string alias = 2 [json_name = "alias"];
/// Number of pending channels
uint32 num_pending_channels = 3 [json_name = "num_pending_channels"];
/// Number of active channels
uint32 num_active_channels = 4 [json_name = "num_active_channels"];
/// Number of peers
uint32 num_peers = 5 [json_name = "num_peers"];
/// The node's current view of the height of the best block
uint32 block_height = 6 [json_name = "block_height"];
/// The node's current view of the hash of the best block
string block_hash = 8 [json_name = "block_hash"];
/// Whether the wallet's view is synced to the main chain
bool synced_to_chain = 9 [json_name = "synced_to_chain"];
/// Whether the current node is connected to testnet
bool testnet = 10 [json_name = "testnet"];
/// A list of active chains the node is connected to
repeated string chains = 11 [json_name = "chains"];
/// The URIs of the current node.
repeated string uris = 12 [json_name = "uris"];
}
message ConfirmationUpdate {
bytes block_sha = 1;
int32 block_height = 2;
uint32 num_confs_left = 3;
}
message ChannelOpenUpdate {
ChannelPoint channel_point = 1 [json_name = "channel_point"];
}
message ChannelCloseUpdate {
bytes closing_txid = 1 [json_name = "closing_txid"];
bool success = 2 [json_name = "success"];
}
message CloseChannelRequest {
/**
The outpoint (txid:index) of the funding transaction. With this value, Bob
will be able to generate a signature for Alice's version of the commitment
transaction.
*/
ChannelPoint channel_point = 1;
/// If true, then the channel will be closed forcibly. This means the current commitment transaction will be signed and broadcast.
bool force = 2;
/// The target number of blocks that the closure transaction should be confirmed by.
int32 target_conf = 3;
/// A manual fee rate set in sat/byte that should be used when crafting the closure transaction.
int64 sat_per_byte = 4;
}
message CloseStatusUpdate {
oneof update {
PendingUpdate close_pending = 1 [json_name = "close_pending"];
ConfirmationUpdate confirmation = 2 [json_name = "confirmation"];
ChannelCloseUpdate chan_close = 3 [json_name = "chan_close"];
}
}
message PendingUpdate {
bytes txid = 1 [json_name = "txid"];
uint32 output_index = 2 [json_name = "output_index"];
}
message OpenChannelRequest {
/// The peer_id of the node to open a channel with
int32 target_peer_id = 1 [json_name = "target_peer_id"];
/// The pubkey of the node to open a channel with
bytes node_pubkey = 2 [json_name = "node_pubkey"];
/// The hex encorded pubkey of the node to open a channel with
string node_pubkey_string = 3 [json_name = "node_pubkey_string"];
/// The number of satoshis the wallet should commit to the channel
int64 local_funding_amount = 4 [json_name = "local_funding_amount"];
/// The number of satoshis to push to the remote side as part of the initial commitment state
int64 push_sat = 5 [json_name = "push_sat"];
/// The target number of blocks that the closure transaction should be confirmed by.
int32 target_conf = 6;
/// A manual fee rate set in sat/byte that should be used when crafting the closure transaction.
int64 sat_per_byte = 7;
/// Whether this channel should be private, not announced to the greater network.
bool private = 8 [json_name = "private"];
/// The minimum value in millisatoshi we will require for incoming HTLCs on the channel.
int64 min_htlc_msat = 9 [json_name = "min_htlc_msat"];
}
message OpenStatusUpdate {
oneof update {
PendingUpdate chan_pending = 1 [json_name = "chan_pending"];
ConfirmationUpdate confirmation = 2 [json_name = "confirmation"];
ChannelOpenUpdate chan_open = 3 [json_name = "chan_open"];
}
}
message PendingHTLC {
/// The direction within the channel that the htlc was sent
bool incoming = 1 [ json_name = "incoming" ];
/// The total value of the htlc
int64 amount = 2 [ json_name = "amount" ];
/// The final output to be swept back to the user's wallet
string outpoint = 3 [ json_name = "outpoint" ];
/// The next block height at which we can spend the current stage
uint32 maturity_height = 4 [ json_name = "maturity_height" ];
/**
The number of blocks remaining until the current stage can be swept.
Negative values indicate how many blocks have passed since becoming
mature.
*/
int32 blocks_til_maturity = 5 [ json_name = "blocks_til_maturity" ];
/// Indicates whether the htlc is in its first or second stage of recovery
uint32 stage = 6 [ json_name = "stage" ];
}
message PendingChannelsRequest {}
message PendingChannelsResponse {
message PendingChannel {
string remote_node_pub = 1 [ json_name = "remote_node_pub" ];
string channel_point = 2 [ json_name = "channel_point" ];
int64 capacity = 3 [ json_name = "capacity" ];
int64 local_balance = 4 [ json_name = "local_balance" ];
int64 remote_balance = 5 [ json_name = "remote_balance" ];
}
message PendingOpenChannel {
/// The pending channel
PendingChannel channel = 1 [ json_name = "channel" ];
/// The height at which this channel will be confirmed
uint32 confirmation_height = 2 [ json_name = "confirmation_height" ];
/**
The amount calculated to be paid in fees for the current set of
commitment transactions. The fee amount is persisted with the channel
in order to allow the fee amount to be removed and recalculated with
each channel state update, including updates that happen after a system
restart.
*/
int64 commit_fee = 4 [json_name = "commit_fee" ];
/// The weight of the commitment transaction
int64 commit_weight = 5 [ json_name = "commit_weight" ];
/**
The required number of satoshis per kilo-weight that the requester will
pay at all times, for both the funding transaction and commitment
transaction. This value can later be updated once the channel is open.
*/
int64 fee_per_kw = 6 [ json_name = "fee_per_kw" ];
}
message ClosedChannel {
/// The pending channel to be closed
PendingChannel channel = 1;
/// The transaction id of the closing transaction
string closing_txid = 2 [ json_name = "closing_txid" ];
}
message ForceClosedChannel {
/// The pending channel to be force closed
PendingChannel channel = 1 [ json_name = "channel" ];
/// The transaction id of the closing transaction
string closing_txid = 2 [ json_name = "closing_txid" ];
/// The balance in satoshis encumbered in this pending channel
int64 limbo_balance = 3 [ json_name = "limbo_balance" ];
/// The height at which funds can be sweeped into the wallet
uint32 maturity_height = 4 [ json_name = "maturity_height" ];
/*
Remaining # of blocks until the commitment output can be swept.
Negative values indicate how many blocks have passed since becoming
mature.
*/
int32 blocks_til_maturity = 5 [ json_name = "blocks_til_maturity" ];
/// The total value of funds successfully recovered from this channel
int64 recovered_balance = 6 [ json_name = "recovered_balance" ];
repeated PendingHTLC pending_htlcs = 8 [ json_name = "pending_htlcs" ];
}
/// The balance in satoshis encumbered in pending channels
int64 total_limbo_balance = 1 [ json_name = "total_limbo_balance" ];
/// Channels pending opening
repeated PendingOpenChannel pending_open_channels = 2 [ json_name = "pending_open_channels" ];
/// Channels pending closing