mirror of
https://github.com/lightninglabs/loop
synced 2024-11-09 19:10:47 +00:00
655 lines
19 KiB
Protocol Buffer
655 lines
19 KiB
Protocol Buffer
syntax = "proto3";
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// We can't change this to swapserverrpc, it would be a breaking change because
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// the package name is also contained in the HTTP URIs and old clients would
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// call the wrong endpoints. Luckily with the go_package option we can have
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// different golang and RPC package names to fix protobuf namespace conflicts.
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package looprpc;
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import "common.proto";
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option go_package = "github.com/lightninglabs/loop/swapserverrpc";
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service SwapServer {
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rpc LoopOutTerms (ServerLoopOutTermsRequest) returns (ServerLoopOutTerms);
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rpc NewLoopOutSwap (ServerLoopOutRequest) returns (ServerLoopOutResponse);
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rpc LoopOutPushPreimage (ServerLoopOutPushPreimageRequest)
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returns (ServerLoopOutPushPreimageResponse);
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rpc LoopOutQuote (ServerLoopOutQuoteRequest) returns (ServerLoopOutQuote);
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rpc LoopInTerms (ServerLoopInTermsRequest) returns (ServerLoopInTerms);
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rpc NewLoopInSwap (ServerLoopInRequest) returns (ServerLoopInResponse);
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rpc LoopInQuote (ServerLoopInQuoteRequest)
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returns (ServerLoopInQuoteResponse);
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rpc SubscribeLoopOutUpdates (SubscribeUpdatesRequest)
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returns (stream SubscribeLoopOutUpdatesResponse);
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rpc SubscribeLoopInUpdates (SubscribeUpdatesRequest)
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returns (stream SubscribeLoopInUpdatesResponse);
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rpc CancelLoopOutSwap (CancelLoopOutSwapRequest)
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returns (CancelLoopOutSwapResponse);
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rpc Probe (ServerProbeRequest) returns (ServerProbeResponse);
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rpc RecommendRoutingPlugin (RecommendRoutingPluginReq)
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returns (RecommendRoutingPluginRes);
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rpc ReportRoutingResult (ReportRoutingResultReq)
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returns (ReportRoutingResultRes);
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rpc MuSig2SignSweep (MuSig2SignSweepReq) returns (MuSig2SignSweepRes);
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rpc PushKey (ServerPushKeyReq) returns (ServerPushKeyRes);
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// FetchL402 is a simple non-l402-allowlisted request that is required
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// in order to force the creation of an l402.
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rpc FetchL402 (FetchL402Request) returns (FetchL402Response);
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}
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/**
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This enum defines the protocol versions that clients may adhere to. Note that
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this is not a flagged enum. If a particular protocol version adds a feature,
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then in general all the preceding features are also supported. Exception to this
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is when features get deprecated.
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*/
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enum ProtocolVersion {
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/// No protocol version reported at all.
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LEGACY = 0;
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/// Client may attempt to send the loop out payment in multiple parts.
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MULTI_LOOP_OUT = 1;
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/**
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Loop will use native segwit (P2WSH) htlcs by default, while externally
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published htlcs may use native (P2WSH) or nested (NP2WSH) segwit as well.
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*/
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NATIVE_SEGWIT_LOOP_IN = 2;
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/*
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Once the on chain loop out htlc is confirmed, the client can push the swap
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preimage to the server to speed up claim of their off chain htlc (acquiring
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incoming liquidity more quickly than if the server waited for the on chain
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claim tx).
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*/
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PREIMAGE_PUSH_LOOP_OUT = 3;
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// The client will propose a cltv expiry height for loop out.
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USER_EXPIRY_LOOP_OUT = 4;
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// The client will use the new v2 HTLC scripts.
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HTLC_V2 = 5;
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// The client creates a probe invoice so that the server can perform a
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// multi-path probe.
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MULTI_LOOP_IN = 6;
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// The client supports loop out swap cancelation.
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LOOP_OUT_CANCEL = 7;
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// The client is able to ask the server to probe to test inbound liquidity
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// and provide more accurate loop-in fees.
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PROBE = 8;
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// The client may ask the server to use a custom routing helper plugin in
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// order to enhance off-chain payments corresponding to a swap.
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ROUTING_PLUGIN = 9;
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// The client will use the new v3 (taproot) HTLC scripts.
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HTLC_V3 = 10;
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// Enables MuSig2 signature scheme for swaps.
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MUSIG2 = 11;
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}
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message ServerLoopOutRequest {
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bytes receiver_key = 1;
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bytes swap_hash = 2;
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uint64 amt = 3;
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/// The unix time in seconds we want the on-chain swap to be published by.
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int64 swap_publication_deadline = 4;
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/// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 5;
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// The requested absolute block height of the on-chain htlc. This is
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// subjected to min and max constraints as reported in the LoopOutTerms
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// response.
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int32 expiry = 6;
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// The user agent string that identifies the software running on the user's
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// side. This can be changed in the user's client software but it _SHOULD_
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// conform to the following pattern:
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// Agent-Name/semver-version(/additional-info)
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// Examples:
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// loopd/v0.10.0-beta/commit=3b635821
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// litd/v0.2.0-alpha/commit=326d754
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string user_agent = 7;
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}
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message ServerLoopOutResponse {
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string swap_invoice = 1;
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string prepay_invoice = 2;
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bytes sender_key = 3;
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// The height at which the on-chain htlc will expire. Deprecated because the
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// field is already specified in the request.
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int32 expiry = 4 [deprecated = true];
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// A human-readable message from the loop server.
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string server_message = 5;
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}
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message ServerLoopOutQuoteRequest {
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/// The swap amount. If zero, a quote for a maximum amt swap will be given.
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uint64 amt = 1;
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/// The unix time in seconds we want the on-chain swap to be published by.
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int64 swap_publication_deadline = 2;
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/// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 3;
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// The requested absolute block height of the on-chain htlc. This is
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// subjected to min and max constraints as reported in the LoopOutTerms
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// response.
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int32 expiry = 4;
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// The user agent string that identifies the software running on the user's
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// side. This can be changed in the user's client software but it _SHOULD_
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// conform to the following pattern:
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// Agent-Name/semver-version(/additional-info)
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// Examples:
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// loopd/v0.10.0-beta/commit=3b635821
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// litd/v0.2.0-alpha/commit=326d754
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string user_agent = 5;
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}
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message ServerLoopOutQuote {
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string swap_payment_dest = 1;
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/// The total estimated swap fee given the quote amt.
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int64 swap_fee = 2;
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/// Deprecated, total swap fee given quote amt is calculated in swap_fee.
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int64 swap_fee_rate = 3 [deprecated = true];
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uint64 prepay_amt = 4;
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uint64 min_swap_amount = 5 [deprecated = true];
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uint64 max_swap_amount = 6 [deprecated = true];
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// The server-proposed cltv delta of the on-chain htlc. Deprecated because
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// the field is already specified in the request.
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int32 cltv_delta = 7 [deprecated = true];
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}
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message ServerLoopOutTermsRequest {
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/// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 1;
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// The user agent string that identifies the software running on the user's
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// side. This can be changed in the user's client software but it _SHOULD_
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// conform to the following pattern:
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// Agent-Name/semver-version(/additional-info)
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// Examples:
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// loopd/v0.10.0-beta/commit=3b635821
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// litd/v0.2.0-alpha/commit=326d754
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string user_agent = 2;
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}
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message ServerLoopOutTerms {
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uint64 min_swap_amount = 1;
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uint64 max_swap_amount = 2;
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// The minimally accepted cltv delta of the on-chain htlc.
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int32 min_cltv_delta = 3;
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// The maximally accepted cltv delta of the on-chain htlc.
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int32 max_cltv_delta = 4;
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}
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message ServerLoopInRequest {
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bytes sender_key = 1;
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bytes sender_internal_pubkey = 9;
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bytes swap_hash = 2;
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uint64 amt = 3;
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string swap_invoice = 4;
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bytes last_hop = 5;
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/// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 6;
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// An invoice that can be used for the purpose of probing.
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string probe_invoice = 7;
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// The user agent string that identifies the software running on the user's
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// side. This can be changed in the user's client software but it _SHOULD_
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// conform to the following pattern:
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// Agent-Name/semver-version(/additional-info)
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// Examples:
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// loopd/v0.10.0-beta/commit=3b635821
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// litd/v0.2.0-alpha/commit=326d754
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string user_agent = 8;
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}
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message ServerLoopInResponse {
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bytes receiver_key = 1;
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bytes receiver_internal_pubkey = 9;
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int32 expiry = 2;
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// A human-readable message from the loop server.
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string server_message = 3;
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}
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message ServerLoopInQuoteRequest {
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/// The swap amount. If zero, a quote for a maximum amt swap will be given.
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uint64 amt = 1;
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// The destination pubkey.
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bytes pubkey = 3;
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// Optional last hop to use.
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bytes last_hop = 4;
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// Optional route hints to reach the destination through private channels.
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repeated RouteHint route_hints = 5;
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/// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 2;
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// The user agent string that identifies the software running on the user's
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// side. This can be changed in the user's client software but it _SHOULD_
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// conform to the following pattern:
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// Agent-Name/semver-version(/additional-info)
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// Examples:
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// loopd/v0.10.0-beta/commit=3b635821
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// litd/v0.2.0-alpha/commit=326d754
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string user_agent = 6;
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}
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message ServerLoopInQuoteResponse {
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int64 swap_fee = 1;
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int64 swap_fee_rate = 2 [deprecated = true];
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uint64 min_swap_amount = 4 [deprecated = true];
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uint64 max_swap_amount = 5 [deprecated = true];
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int32 cltv_delta = 6;
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}
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message ServerLoopInTermsRequest {
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/// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 1;
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// The user agent string that identifies the software running on the user's
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// side. This can be changed in the user's client software but it _SHOULD_
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// conform to the following pattern:
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// Agent-Name/semver-version(/additional-info)
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// Examples:
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// loopd/v0.10.0-beta/commit=3b635821
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// litd/v0.2.0-alpha/commit=326d754
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string user_agent = 2;
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}
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message ServerLoopInTerms {
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uint64 min_swap_amount = 1;
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uint64 max_swap_amount = 2;
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}
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// ServerLoopOutPushPreimageRequest pushes a preimage to the server. Note that
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// this call returns with no error after the server acknowledges the preimage
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// and does not block until the invoice is settled.
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message ServerLoopOutPushPreimageRequest {
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// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 1;
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/*
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Preimage is the preimage of the loop out swap that we wish to push to the
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server to speed up off-chain claim once the on-chain htlc has confirmed.
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*/
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bytes preimage = 2;
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}
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message ServerLoopOutPushPreimageResponse {
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}
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message SubscribeUpdatesRequest {
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// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 1;
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// Swap hash is the hash of the swap to subscribe to updates for.
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bytes swap_hash = 2;
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}
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// ServerSwapState is an enum which represents all the states a swap may have
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// from the server's perspective.
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enum ServerSwapState {
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// The server has created the swap.
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SERVER_INITIATED = 0;
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// The server has published the loop out on chain htlc.
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SERVER_HTLC_PUBLISHED = 1;
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// The swap completed successfully.
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SERVER_SUCCESS = 2;
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/*
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The swap failed for a reason that is unknown to the server, this is only
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set for older swaps.
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*/
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SERVER_FAILED_UNKNOWN = 3;
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// No htlc was confirmed in time for the loop in swap to complete.
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SERVER_FAILED_NO_HTLC = 4;
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// A loop in htlc confirmed on chain, but it did not have the correct value.
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SERVER_FAILED_INVALID_HTLC_AMOUNT = 5;
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/*
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We did not succeed in completing the loop in off chain payment before the
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timeout.
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*/
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SERVER_FAILED_OFF_CHAIN_TIMEOUT = 6;
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// The on chain timeout was claimed.
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SERVER_FAILED_TIMEOUT = 7;
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/*
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The server could not publish the loop out on chain htlc before the deadline
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provided.
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*/
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SERVER_FAILED_SWAP_DEADLINE = 8;
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// The server could not publish the loop out on chain htlc.
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SERVER_FAILED_HTLC_PUBLICATION = 9;
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// The server has published the loop out on chain timeout tx.
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SERVER_TIMEOUT_PUBLISHED = 10;
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// The swap has failed for unknown reasons, it will not be completed.
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SERVER_UNEXPECTED_FAILURE = 11;
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// The swap htlc has confirmed on chain.
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SERVER_HTLC_CONFIRMED = 12;
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// The client canceled the swap because they could not route the prepay.
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SERVER_CLIENT_PREPAY_CANCEL = 13;
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// The client canceled the swap because they could not route the swap
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// payment.
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SERVER_CLIENT_INVOICE_CANCEL = 14;
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/*
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A loop in swap was rejected because it contained multiple outputs for a
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single swap.
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*/
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SERVER_FAILED_MULTIPLE_SWAP_SCRIPTS = 15;
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/*
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The swap failed during creation.
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*/
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SERVER_FAILED_INITIALIZATION = 16;
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}
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message SubscribeLoopOutUpdatesResponse {
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// The unix timestamp in nanoseconds when the swap was updated.
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int64 timestamp_ns = 1;
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// The swap's current state.
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ServerSwapState state = 2;
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}
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message SubscribeLoopInUpdatesResponse {
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// The unix timestamp in nanoseconds when the swap was updated.
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int64 timestamp_ns = 1;
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// The swap's current state.
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ServerSwapState state = 2;
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}
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enum RoutePaymentType {
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// No reason, used to distinguish from the default value.
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ROUTE_UNKNOWN = 0;
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// Prepay route indicates that the swap was canceled because the client
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// could not find a route to the server for the prepay.
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PREPAY_ROUTE = 1;
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// Invoice route indicates that the swap was canceled because the client
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// could not find a route to the server for the swap invoice.
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INVOICE_ROUTE = 2;
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}
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// PaymentFailureReason describes the reason that a payment failed. These
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// values are copied directly from lnd.
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enum PaymentFailureReason {
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/*
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Payment isn't failed (yet).
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*/
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LND_FAILURE_REASON_NONE = 0;
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/*
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There are more routes to try, but the payment timeout was exceeded.
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*/
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LND_FAILURE_REASON_TIMEOUT = 1;
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/*
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All possible routes were tried and failed permanently. Or were no
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routes to the destination at all.
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*/
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LND_FAILURE_REASON_NO_ROUTE = 2;
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/*
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A non-recoverable error has occured.
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*/
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LND_FAILURE_REASON_ERROR = 3;
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/*
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Payment details incorrect (unknown hash, invalid amt or
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invalid final cltv delta)
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*/
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LND_FAILURE_REASON_INCORRECT_PAYMENT_DETAILS = 4;
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/*
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Insufficient local balance.
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*/
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LND_FAILURE_REASON_INSUFFICIENT_BALANCE = 5;
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}
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message RouteCancel {
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// The type of the payment that failed.
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RoutePaymentType route_type = 1;
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// The htlcs that the client tried to pay the server with, if any.
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repeated HtlcAttempt attempts = 2;
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// The reason that the payment failed.
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PaymentFailureReason failure = 3;
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}
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message HtlcAttempt {
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// The number of hops from the htlc's failure hop that it needed to take
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// to reach the server's node.
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uint32 remaining_hops = 1;
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}
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message CancelLoopOutSwapRequest {
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// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 1;
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// The swap hash.
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bytes swap_hash = 2;
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// The payment address for the swap invoice, used to ensure that only the
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// swap owner can cancel the payment.
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bytes payment_address = 3;
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// Additional information about the swap cancelation.
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oneof cancel_info {
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RouteCancel route_cancel = 5;
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}
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}
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message CancelLoopOutSwapResponse {
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}
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message ServerProbeRequest {
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// The protocol version that the client adheres to.
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ProtocolVersion protocol_version = 1;
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uint64 amt = 2;
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// The target node for the probe.
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bytes target = 3;
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// Optional last hop to use when probing the client.
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bytes last_hop = 4;
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// Optional route hints to reach the destination through private channels.
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repeated RouteHint route_hints = 5;
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}
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message ServerProbeResponse {
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}
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message RecommendRoutingPluginReq {
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ProtocolVersion protocol_version = 1;
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// The hash of the swap requesting a routing plugin.
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bytes swap_hash = 2;
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// The payment address for the swap invoice, used to ensure that only the
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// swap owner can request routing plugin recommendation.
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bytes payment_address = 3;
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}
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enum RoutingPlugin {
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// Client won't use any plugins to help with payment routing.
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NONE = 0;
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// Client will try more expensive routes for off-chain payments.
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LOW_HIGH = 1;
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}
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|
||
message RecommendRoutingPluginRes {
|
||
// The routing plugin to use for off-chain payments.
|
||
RoutingPlugin plugin = 1;
|
||
}
|
||
|
||
message ReportRoutingResultReq {
|
||
ProtocolVersion protocol_version = 1;
|
||
|
||
// The swap hash.
|
||
bytes swap_hash = 2;
|
||
|
||
// The payment address for the swap invoice, used to ensure that only the
|
||
// swap owner can report routing result.
|
||
bytes payment_address = 3;
|
||
|
||
// The routing plugin that was used.
|
||
RoutingPlugin plugin = 4;
|
||
|
||
// Whether this payment succeeded.
|
||
bool success = 5;
|
||
|
||
// The number of payment attempts using the plugin.
|
||
int32 attempts = 6;
|
||
|
||
// Total time used in milliseconds.
|
||
int64 total_time = 7;
|
||
}
|
||
|
||
message ReportRoutingResultRes {
|
||
}
|
||
|
||
message MuSig2SignSweepReq {
|
||
reserved 5;
|
||
|
||
ProtocolVersion protocol_version = 1;
|
||
|
||
// The swap hash.
|
||
bytes swap_hash = 2;
|
||
|
||
// The payment address for the swap invoice, used to ensure that only the
|
||
// swap owner can obtain the partial signature.
|
||
bytes payment_address = 3;
|
||
|
||
// The local public nonce.
|
||
bytes nonce = 4;
|
||
|
||
// The psbt of the sweep txn.
|
||
bytes sweep_tx_psbt = 6;
|
||
|
||
// The prevout information of the sweep txn.
|
||
repeated PrevoutInfo prevout_info = 7;
|
||
}
|
||
|
||
message PrevoutInfo {
|
||
// The value of the txout.
|
||
uint64 value = 1;
|
||
|
||
// The pk_script of the txout.
|
||
bytes pk_script = 2;
|
||
|
||
// The txid of the txout.
|
||
bytes txid_bytes = 3;
|
||
|
||
// The index of the txout.
|
||
uint32 output_index = 4;
|
||
}
|
||
|
||
message MuSig2SignSweepRes {
|
||
// The server side public nonce.
|
||
bytes nonce = 1;
|
||
|
||
// The partial signature of the server for the requested sighash.
|
||
bytes partial_signature = 2;
|
||
}
|
||
|
||
message ServerPushKeyReq {
|
||
// The protocol version that the client adheres to.
|
||
ProtocolVersion protocol_version = 1;
|
||
|
||
// The swap hash.
|
||
bytes swap_hash = 2;
|
||
|
||
// The client’s private key used in the HTLC’s aggregated internal key.
|
||
bytes internal_privkey = 3;
|
||
}
|
||
|
||
message ServerPushKeyRes {
|
||
}
|
||
|
||
// FetchL402Request is an empty request sent from the client to the server to
|
||
// fetch the lnd l402.
|
||
message FetchL402Request {
|
||
}
|
||
|
||
// FetchL402Response is an empty response sent from the server to the client to
|
||
// confirm the lnd l402.
|
||
message FetchL402Response {
|
||
}
|
||
|
||
// StaticAddressProtocolVersion represents the static address protocol version
|
||
// the client adheres to.
|
||
enum StaticAddressProtocolVersion {
|
||
// V0 is the initially released static address protocol version.
|
||
V0 = 0;
|
||
} |