Merge pull request #114 from TheBlueMatt/main
[ldk-java] / ts / structs / ChannelManager.mts
1 import { TxOut } from '../structs/TxOut.mjs';
2 import { AccessError } from '../enums/AccessError.mjs';
3 import { COption_NoneZ } from '../enums/COption_NoneZ.mjs';
4 import { ChannelMonitorUpdateErr } from '../enums/ChannelMonitorUpdateErr.mjs';
5 import { ConfirmationTarget } from '../enums/ConfirmationTarget.mjs';
6 import { CreationError } from '../enums/CreationError.mjs';
7 import { Currency } from '../enums/Currency.mjs';
8 import { IOError } from '../enums/IOError.mjs';
9 import { Level } from '../enums/Level.mjs';
10 import { Network } from '../enums/Network.mjs';
11 import { Recipient } from '../enums/Recipient.mjs';
12 import { Secp256k1Error } from '../enums/Secp256k1Error.mjs';
13 import { SemanticError } from '../enums/SemanticError.mjs';
14 import { SiPrefix } from '../enums/SiPrefix.mjs';
15 import { Bech32Error } from '../structs/Bech32Error.mjs';
16 import { Result_NoneNoneZ } from '../structs/Result_NoneNoneZ.mjs';
17 import { CounterpartyCommitmentSecrets } from '../structs/CounterpartyCommitmentSecrets.mjs';
18 import { DecodeError } from '../structs/DecodeError.mjs';
19 import { Result_CounterpartyCommitmentSecretsDecodeErrorZ } from '../structs/Result_CounterpartyCommitmentSecretsDecodeErrorZ.mjs';
20 import { Result_SecretKeyErrorZ } from '../structs/Result_SecretKeyErrorZ.mjs';
21 import { Result_PublicKeyErrorZ } from '../structs/Result_PublicKeyErrorZ.mjs';
22 import { TxCreationKeys } from '../structs/TxCreationKeys.mjs';
23 import { Result_TxCreationKeysDecodeErrorZ } from '../structs/Result_TxCreationKeysDecodeErrorZ.mjs';
24 import { ChannelPublicKeys } from '../structs/ChannelPublicKeys.mjs';
25 import { Result_ChannelPublicKeysDecodeErrorZ } from '../structs/Result_ChannelPublicKeysDecodeErrorZ.mjs';
26 import { Result_TxCreationKeysErrorZ } from '../structs/Result_TxCreationKeysErrorZ.mjs';
27 import { Option_u32Z } from '../structs/Option_u32Z.mjs';
28 import { HTLCOutputInCommitment } from '../structs/HTLCOutputInCommitment.mjs';
29 import { Result_HTLCOutputInCommitmentDecodeErrorZ } from '../structs/Result_HTLCOutputInCommitmentDecodeErrorZ.mjs';
30 import { CounterpartyChannelTransactionParameters } from '../structs/CounterpartyChannelTransactionParameters.mjs';
31 import { Result_CounterpartyChannelTransactionParametersDecodeErrorZ } from '../structs/Result_CounterpartyChannelTransactionParametersDecodeErrorZ.mjs';
32 import { ChannelTransactionParameters } from '../structs/ChannelTransactionParameters.mjs';
33 import { Result_ChannelTransactionParametersDecodeErrorZ } from '../structs/Result_ChannelTransactionParametersDecodeErrorZ.mjs';
34 import { HolderCommitmentTransaction } from '../structs/HolderCommitmentTransaction.mjs';
35 import { Result_HolderCommitmentTransactionDecodeErrorZ } from '../structs/Result_HolderCommitmentTransactionDecodeErrorZ.mjs';
36 import { BuiltCommitmentTransaction } from '../structs/BuiltCommitmentTransaction.mjs';
37 import { Result_BuiltCommitmentTransactionDecodeErrorZ } from '../structs/Result_BuiltCommitmentTransactionDecodeErrorZ.mjs';
38 import { TrustedClosingTransaction } from '../structs/TrustedClosingTransaction.mjs';
39 import { Result_TrustedClosingTransactionNoneZ } from '../structs/Result_TrustedClosingTransactionNoneZ.mjs';
40 import { CommitmentTransaction } from '../structs/CommitmentTransaction.mjs';
41 import { Result_CommitmentTransactionDecodeErrorZ } from '../structs/Result_CommitmentTransactionDecodeErrorZ.mjs';
42 import { TrustedCommitmentTransaction } from '../structs/TrustedCommitmentTransaction.mjs';
43 import { Result_TrustedCommitmentTransactionNoneZ } from '../structs/Result_TrustedCommitmentTransactionNoneZ.mjs';
44 import { Result_CVec_SignatureZNoneZ } from '../structs/Result_CVec_SignatureZNoneZ.mjs';
45 import { ShutdownScript } from '../structs/ShutdownScript.mjs';
46 import { Result_ShutdownScriptDecodeErrorZ } from '../structs/Result_ShutdownScriptDecodeErrorZ.mjs';
47 import { InvalidShutdownScript } from '../structs/InvalidShutdownScript.mjs';
48 import { Result_ShutdownScriptInvalidShutdownScriptZ } from '../structs/Result_ShutdownScriptInvalidShutdownScriptZ.mjs';
49 import { RouteHop } from '../structs/RouteHop.mjs';
50 import { Result_RouteHopDecodeErrorZ } from '../structs/Result_RouteHopDecodeErrorZ.mjs';
51 import { Route } from '../structs/Route.mjs';
52 import { Result_RouteDecodeErrorZ } from '../structs/Result_RouteDecodeErrorZ.mjs';
53 import { RouteParameters } from '../structs/RouteParameters.mjs';
54 import { Result_RouteParametersDecodeErrorZ } from '../structs/Result_RouteParametersDecodeErrorZ.mjs';
55 import { RouteHint } from '../structs/RouteHint.mjs';
56 import { Option_u64Z } from '../structs/Option_u64Z.mjs';
57 import { PaymentParameters } from '../structs/PaymentParameters.mjs';
58 import { Result_PaymentParametersDecodeErrorZ } from '../structs/Result_PaymentParametersDecodeErrorZ.mjs';
59 import { RouteHintHop } from '../structs/RouteHintHop.mjs';
60 import { Result_RouteHintDecodeErrorZ } from '../structs/Result_RouteHintDecodeErrorZ.mjs';
61 import { Result_RouteHintHopDecodeErrorZ } from '../structs/Result_RouteHintHopDecodeErrorZ.mjs';
62 import { ChannelDetails } from '../structs/ChannelDetails.mjs';
63 import { LightningError } from '../structs/LightningError.mjs';
64 import { Result_RouteLightningErrorZ } from '../structs/Result_RouteLightningErrorZ.mjs';
65 import { PaymentPurpose } from '../structs/PaymentPurpose.mjs';
66 import { Result_PaymentPurposeDecodeErrorZ } from '../structs/Result_PaymentPurposeDecodeErrorZ.mjs';
67 import { ClosureReason } from '../structs/ClosureReason.mjs';
68 import { Option_ClosureReasonZ } from '../structs/Option_ClosureReasonZ.mjs';
69 import { Result_COption_ClosureReasonZDecodeErrorZ } from '../structs/Result_COption_ClosureReasonZDecodeErrorZ.mjs';
70 import { HTLCDestination } from '../structs/HTLCDestination.mjs';
71 import { Option_HTLCDestinationZ } from '../structs/Option_HTLCDestinationZ.mjs';
72 import { Result_COption_HTLCDestinationZDecodeErrorZ } from '../structs/Result_COption_HTLCDestinationZDecodeErrorZ.mjs';
73 import { ChannelUpdate } from '../structs/ChannelUpdate.mjs';
74 import { NetworkUpdate } from '../structs/NetworkUpdate.mjs';
75 import { Option_NetworkUpdateZ } from '../structs/Option_NetworkUpdateZ.mjs';
76 import { OutPoint } from '../structs/OutPoint.mjs';
77 import { DelayedPaymentOutputDescriptor } from '../structs/DelayedPaymentOutputDescriptor.mjs';
78 import { StaticPaymentOutputDescriptor } from '../structs/StaticPaymentOutputDescriptor.mjs';
79 import { SpendableOutputDescriptor } from '../structs/SpendableOutputDescriptor.mjs';
80 import { ChannelTypeFeatures } from '../structs/ChannelTypeFeatures.mjs';
81 import { Event } from '../structs/Event.mjs';
82 import { Option_EventZ } from '../structs/Option_EventZ.mjs';
83 import { Result_COption_EventZDecodeErrorZ } from '../structs/Result_COption_EventZDecodeErrorZ.mjs';
84 import { AcceptChannel } from '../structs/AcceptChannel.mjs';
85 import { OpenChannel } from '../structs/OpenChannel.mjs';
86 import { FundingCreated } from '../structs/FundingCreated.mjs';
87 import { FundingSigned } from '../structs/FundingSigned.mjs';
88 import { ChannelReady } from '../structs/ChannelReady.mjs';
89 import { AnnouncementSignatures } from '../structs/AnnouncementSignatures.mjs';
90 import { CommitmentUpdate } from '../structs/CommitmentUpdate.mjs';
91 import { RevokeAndACK } from '../structs/RevokeAndACK.mjs';
92 import { ClosingSigned } from '../structs/ClosingSigned.mjs';
93 import { Shutdown } from '../structs/Shutdown.mjs';
94 import { ChannelReestablish } from '../structs/ChannelReestablish.mjs';
95 import { ChannelAnnouncement } from '../structs/ChannelAnnouncement.mjs';
96 import { NodeAnnouncement } from '../structs/NodeAnnouncement.mjs';
97 import { ErrorMessage } from '../structs/ErrorMessage.mjs';
98 import { WarningMessage } from '../structs/WarningMessage.mjs';
99 import { ErrorAction } from '../structs/ErrorAction.mjs';
100 import { QueryChannelRange } from '../structs/QueryChannelRange.mjs';
101 import { QueryShortChannelIds } from '../structs/QueryShortChannelIds.mjs';
102 import { ReplyChannelRange } from '../structs/ReplyChannelRange.mjs';
103 import { GossipTimestampFilter } from '../structs/GossipTimestampFilter.mjs';
104 import { MessageSendEvent } from '../structs/MessageSendEvent.mjs';
105 import { Result_TxOutAccessErrorZ } from '../structs/Result_TxOutAccessErrorZ.mjs';
106 import { TwoTuple_usizeTransactionZ } from '../structs/TwoTuple_usizeTransactionZ.mjs';
107 import { Result_NoneChannelMonitorUpdateErrZ } from '../structs/Result_NoneChannelMonitorUpdateErrZ.mjs';
108 import { HTLCUpdate } from '../structs/HTLCUpdate.mjs';
109 import { MonitorEvent } from '../structs/MonitorEvent.mjs';
110 import { ThreeTuple_OutPointCVec_MonitorEventZPublicKeyZ } from '../structs/ThreeTuple_OutPointCVec_MonitorEventZPublicKeyZ.mjs';
111 import { Option_C2Tuple_usizeTransactionZZ } from '../structs/Option_C2Tuple_usizeTransactionZZ.mjs';
112 import { FixedPenaltyScorer } from '../structs/FixedPenaltyScorer.mjs';
113 import { Result_FixedPenaltyScorerDecodeErrorZ } from '../structs/Result_FixedPenaltyScorerDecodeErrorZ.mjs';
114 import { TwoTuple_u64u64Z } from '../structs/TwoTuple_u64u64Z.mjs';
115 import { Option_C2Tuple_u64u64ZZ } from '../structs/Option_C2Tuple_u64u64ZZ.mjs';
116 import { NodeId } from '../structs/NodeId.mjs';
117 import { Record } from '../structs/Record.mjs';
118 import { Logger, LoggerInterface } from '../structs/Logger.mjs';
119 import { NetworkGraph } from '../structs/NetworkGraph.mjs';
120 import { ProbabilisticScorer } from '../structs/ProbabilisticScorer.mjs';
121 import { Result_ProbabilisticScorerDecodeErrorZ } from '../structs/Result_ProbabilisticScorerDecodeErrorZ.mjs';
122 import { InitFeatures } from '../structs/InitFeatures.mjs';
123 import { Result_InitFeaturesDecodeErrorZ } from '../structs/Result_InitFeaturesDecodeErrorZ.mjs';
124 import { ChannelFeatures } from '../structs/ChannelFeatures.mjs';
125 import { Result_ChannelFeaturesDecodeErrorZ } from '../structs/Result_ChannelFeaturesDecodeErrorZ.mjs';
126 import { NodeFeatures } from '../structs/NodeFeatures.mjs';
127 import { Result_NodeFeaturesDecodeErrorZ } from '../structs/Result_NodeFeaturesDecodeErrorZ.mjs';
128 import { InvoiceFeatures } from '../structs/InvoiceFeatures.mjs';
129 import { Result_InvoiceFeaturesDecodeErrorZ } from '../structs/Result_InvoiceFeaturesDecodeErrorZ.mjs';
130 import { Result_ChannelTypeFeaturesDecodeErrorZ } from '../structs/Result_ChannelTypeFeaturesDecodeErrorZ.mjs';
131 import { Result_NodeIdDecodeErrorZ } from '../structs/Result_NodeIdDecodeErrorZ.mjs';
132 import { Result_COption_NetworkUpdateZDecodeErrorZ } from '../structs/Result_COption_NetworkUpdateZDecodeErrorZ.mjs';
133 import { Access, AccessInterface } from '../structs/Access.mjs';
134 import { Option_AccessZ } from '../structs/Option_AccessZ.mjs';
135 import { Result_boolLightningErrorZ } from '../structs/Result_boolLightningErrorZ.mjs';
136 import { ThreeTuple_ChannelAnnouncementChannelUpdateChannelUpdateZ } from '../structs/ThreeTuple_ChannelAnnouncementChannelUpdateChannelUpdateZ.mjs';
137 import { Result_NoneLightningErrorZ } from '../structs/Result_NoneLightningErrorZ.mjs';
138 import { ChannelUpdateInfo } from '../structs/ChannelUpdateInfo.mjs';
139 import { Result_ChannelUpdateInfoDecodeErrorZ } from '../structs/Result_ChannelUpdateInfoDecodeErrorZ.mjs';
140 import { ChannelInfo } from '../structs/ChannelInfo.mjs';
141 import { Result_ChannelInfoDecodeErrorZ } from '../structs/Result_ChannelInfoDecodeErrorZ.mjs';
142 import { RoutingFees } from '../structs/RoutingFees.mjs';
143 import { Result_RoutingFeesDecodeErrorZ } from '../structs/Result_RoutingFeesDecodeErrorZ.mjs';
144 import { Hostname } from '../structs/Hostname.mjs';
145 import { NetAddress } from '../structs/NetAddress.mjs';
146 import { NodeAnnouncementInfo } from '../structs/NodeAnnouncementInfo.mjs';
147 import { Result_NodeAnnouncementInfoDecodeErrorZ } from '../structs/Result_NodeAnnouncementInfoDecodeErrorZ.mjs';
148 import { NodeAlias } from '../structs/NodeAlias.mjs';
149 import { Result_NodeAliasDecodeErrorZ } from '../structs/Result_NodeAliasDecodeErrorZ.mjs';
150 import { NodeInfo } from '../structs/NodeInfo.mjs';
151 import { Result_NodeInfoDecodeErrorZ } from '../structs/Result_NodeInfoDecodeErrorZ.mjs';
152 import { Result_NetworkGraphDecodeErrorZ } from '../structs/Result_NetworkGraphDecodeErrorZ.mjs';
153 import { Option_CVec_NetAddressZZ } from '../structs/Option_CVec_NetAddressZZ.mjs';
154 import { Result_DelayedPaymentOutputDescriptorDecodeErrorZ } from '../structs/Result_DelayedPaymentOutputDescriptorDecodeErrorZ.mjs';
155 import { Result_StaticPaymentOutputDescriptorDecodeErrorZ } from '../structs/Result_StaticPaymentOutputDescriptorDecodeErrorZ.mjs';
156 import { Result_SpendableOutputDescriptorDecodeErrorZ } from '../structs/Result_SpendableOutputDescriptorDecodeErrorZ.mjs';
157 import { TwoTuple_SignatureCVec_SignatureZZ } from '../structs/TwoTuple_SignatureCVec_SignatureZZ.mjs';
158 import { Result_C2Tuple_SignatureCVec_SignatureZZNoneZ } from '../structs/Result_C2Tuple_SignatureCVec_SignatureZZNoneZ.mjs';
159 import { Result_SignatureNoneZ } from '../structs/Result_SignatureNoneZ.mjs';
160 import { TwoTuple_SignatureSignatureZ } from '../structs/TwoTuple_SignatureSignatureZ.mjs';
161 import { Result_C2Tuple_SignatureSignatureZNoneZ } from '../structs/Result_C2Tuple_SignatureSignatureZNoneZ.mjs';
162 import { Result_SecretKeyNoneZ } from '../structs/Result_SecretKeyNoneZ.mjs';
163 import { ClosingTransaction } from '../structs/ClosingTransaction.mjs';
164 import { UnsignedChannelAnnouncement } from '../structs/UnsignedChannelAnnouncement.mjs';
165 import { BaseSign, BaseSignInterface } from '../structs/BaseSign.mjs';
166 import { Sign, SignInterface } from '../structs/Sign.mjs';
167 import { Result_SignDecodeErrorZ } from '../structs/Result_SignDecodeErrorZ.mjs';
168 import { Result_RecoverableSignatureNoneZ } from '../structs/Result_RecoverableSignatureNoneZ.mjs';
169 import { Result_CVec_CVec_u8ZZNoneZ } from '../structs/Result_CVec_CVec_u8ZZNoneZ.mjs';
170 import { InMemorySigner } from '../structs/InMemorySigner.mjs';
171 import { Result_InMemorySignerDecodeErrorZ } from '../structs/Result_InMemorySignerDecodeErrorZ.mjs';
172 import { Result_TransactionNoneZ } from '../structs/Result_TransactionNoneZ.mjs';
173 import { Option_u16Z } from '../structs/Option_u16Z.mjs';
174 import { APIError } from '../structs/APIError.mjs';
175 import { Result_NoneAPIErrorZ } from '../structs/Result_NoneAPIErrorZ.mjs';
176 import { Result__u832APIErrorZ } from '../structs/Result__u832APIErrorZ.mjs';
177 import { PaymentSendFailure } from '../structs/PaymentSendFailure.mjs';
178 import { Result_PaymentIdPaymentSendFailureZ } from '../structs/Result_PaymentIdPaymentSendFailureZ.mjs';
179 import { Result_NonePaymentSendFailureZ } from '../structs/Result_NonePaymentSendFailureZ.mjs';
180 import { TwoTuple_PaymentHashPaymentIdZ } from '../structs/TwoTuple_PaymentHashPaymentIdZ.mjs';
181 import { Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ } from '../structs/Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ.mjs';
182 import { TwoTuple_PaymentHashPaymentSecretZ } from '../structs/TwoTuple_PaymentHashPaymentSecretZ.mjs';
183 import { Result_C2Tuple_PaymentHashPaymentSecretZNoneZ } from '../structs/Result_C2Tuple_PaymentHashPaymentSecretZNoneZ.mjs';
184 import { Result_C2Tuple_PaymentHashPaymentSecretZAPIErrorZ } from '../structs/Result_C2Tuple_PaymentHashPaymentSecretZAPIErrorZ.mjs';
185 import { Result_PaymentSecretNoneZ } from '../structs/Result_PaymentSecretNoneZ.mjs';
186 import { Result_PaymentSecretAPIErrorZ } from '../structs/Result_PaymentSecretAPIErrorZ.mjs';
187 import { Result_PaymentPreimageAPIErrorZ } from '../structs/Result_PaymentPreimageAPIErrorZ.mjs';
188 import { CounterpartyForwardingInfo } from '../structs/CounterpartyForwardingInfo.mjs';
189 import { Result_CounterpartyForwardingInfoDecodeErrorZ } from '../structs/Result_CounterpartyForwardingInfoDecodeErrorZ.mjs';
190 import { ChannelCounterparty } from '../structs/ChannelCounterparty.mjs';
191 import { Result_ChannelCounterpartyDecodeErrorZ } from '../structs/Result_ChannelCounterpartyDecodeErrorZ.mjs';
192 import { Result_ChannelDetailsDecodeErrorZ } from '../structs/Result_ChannelDetailsDecodeErrorZ.mjs';
193 import { PhantomRouteHints } from '../structs/PhantomRouteHints.mjs';
194 import { Result_PhantomRouteHintsDecodeErrorZ } from '../structs/Result_PhantomRouteHintsDecodeErrorZ.mjs';
195 import { ChannelMonitor } from '../structs/ChannelMonitor.mjs';
196 import { ChannelMonitorUpdate } from '../structs/ChannelMonitorUpdate.mjs';
197 import { Watch, WatchInterface } from '../structs/Watch.mjs';
198 import { BroadcasterInterface, BroadcasterInterfaceInterface } from '../structs/BroadcasterInterface.mjs';
199 import { KeysInterface, KeysInterfaceInterface } from '../structs/KeysInterface.mjs';
200 import { FeeEstimator, FeeEstimatorInterface } from '../structs/FeeEstimator.mjs';
201 import { TwoTuple_BlockHashChannelManagerZ } from '../structs/TwoTuple_BlockHashChannelManagerZ.mjs';
202 import { Result_C2Tuple_BlockHashChannelManagerZDecodeErrorZ } from '../structs/Result_C2Tuple_BlockHashChannelManagerZDecodeErrorZ.mjs';
203 import { ChannelConfig } from '../structs/ChannelConfig.mjs';
204 import { Result_ChannelConfigDecodeErrorZ } from '../structs/Result_ChannelConfigDecodeErrorZ.mjs';
205 import { Result_OutPointDecodeErrorZ } from '../structs/Result_OutPointDecodeErrorZ.mjs';
206 import { Type, TypeInterface } from '../structs/Type.mjs';
207 import { Option_TypeZ } from '../structs/Option_TypeZ.mjs';
208 import { Result_COption_TypeZDecodeErrorZ } from '../structs/Result_COption_TypeZDecodeErrorZ.mjs';
209 import { PaymentError } from '../structs/PaymentError.mjs';
210 import { Result_PaymentIdPaymentErrorZ } from '../structs/Result_PaymentIdPaymentErrorZ.mjs';
211 import { ParseError } from '../structs/ParseError.mjs';
212 import { Result_SiPrefixParseErrorZ } from '../structs/Result_SiPrefixParseErrorZ.mjs';
213 import { Invoice } from '../structs/Invoice.mjs';
214 import { ParseOrSemanticError } from '../structs/ParseOrSemanticError.mjs';
215 import { Result_InvoiceParseOrSemanticErrorZ } from '../structs/Result_InvoiceParseOrSemanticErrorZ.mjs';
216 import { SignedRawInvoice } from '../structs/SignedRawInvoice.mjs';
217 import { Result_SignedRawInvoiceParseErrorZ } from '../structs/Result_SignedRawInvoiceParseErrorZ.mjs';
218 import { RawInvoice } from '../structs/RawInvoice.mjs';
219 import { InvoiceSignature } from '../structs/InvoiceSignature.mjs';
220 import { ThreeTuple_RawInvoice_u832InvoiceSignatureZ } from '../structs/ThreeTuple_RawInvoice_u832InvoiceSignatureZ.mjs';
221 import { PayeePubKey } from '../structs/PayeePubKey.mjs';
222 import { Result_PayeePubKeyErrorZ } from '../structs/Result_PayeePubKeyErrorZ.mjs';
223 import { PrivateRoute } from '../structs/PrivateRoute.mjs';
224 import { PositiveTimestamp } from '../structs/PositiveTimestamp.mjs';
225 import { Result_PositiveTimestampCreationErrorZ } from '../structs/Result_PositiveTimestampCreationErrorZ.mjs';
226 import { Result_NoneSemanticErrorZ } from '../structs/Result_NoneSemanticErrorZ.mjs';
227 import { Result_InvoiceSemanticErrorZ } from '../structs/Result_InvoiceSemanticErrorZ.mjs';
228 import { Description } from '../structs/Description.mjs';
229 import { Result_DescriptionCreationErrorZ } from '../structs/Result_DescriptionCreationErrorZ.mjs';
230 import { Result_PrivateRouteCreationErrorZ } from '../structs/Result_PrivateRouteCreationErrorZ.mjs';
231 import { Result_StringErrorZ } from '../structs/Result_StringErrorZ.mjs';
232 import { Result_ChannelMonitorUpdateDecodeErrorZ } from '../structs/Result_ChannelMonitorUpdateDecodeErrorZ.mjs';
233 import { Option_MonitorEventZ } from '../structs/Option_MonitorEventZ.mjs';
234 import { Result_COption_MonitorEventZDecodeErrorZ } from '../structs/Result_COption_MonitorEventZDecodeErrorZ.mjs';
235 import { Result_HTLCUpdateDecodeErrorZ } from '../structs/Result_HTLCUpdateDecodeErrorZ.mjs';
236 import { TwoTuple_OutPointScriptZ } from '../structs/TwoTuple_OutPointScriptZ.mjs';
237 import { TwoTuple_u32ScriptZ } from '../structs/TwoTuple_u32ScriptZ.mjs';
238 import { TwoTuple_TxidCVec_C2Tuple_u32ScriptZZZ } from '../structs/TwoTuple_TxidCVec_C2Tuple_u32ScriptZZZ.mjs';
239 import { TwoTuple_u32TxOutZ } from '../structs/TwoTuple_u32TxOutZ.mjs';
240 import { TwoTuple_TxidCVec_C2Tuple_u32TxOutZZZ } from '../structs/TwoTuple_TxidCVec_C2Tuple_u32TxOutZZZ.mjs';
241 import { Balance } from '../structs/Balance.mjs';
242 import { TwoTuple_BlockHashChannelMonitorZ } from '../structs/TwoTuple_BlockHashChannelMonitorZ.mjs';
243 import { Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ } from '../structs/Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ.mjs';
244 import { TwoTuple_PublicKeyTypeZ } from '../structs/TwoTuple_PublicKeyTypeZ.mjs';
245 import { Option_NetAddressZ } from '../structs/Option_NetAddressZ.mjs';
246 import { PeerHandleError } from '../structs/PeerHandleError.mjs';
247 import { Result_CVec_u8ZPeerHandleErrorZ } from '../structs/Result_CVec_u8ZPeerHandleErrorZ.mjs';
248 import { Result_NonePeerHandleErrorZ } from '../structs/Result_NonePeerHandleErrorZ.mjs';
249 import { Result_boolPeerHandleErrorZ } from '../structs/Result_boolPeerHandleErrorZ.mjs';
250 import { Result_NoneErrorZ } from '../structs/Result_NoneErrorZ.mjs';
251 import { Result_NetAddressDecodeErrorZ } from '../structs/Result_NetAddressDecodeErrorZ.mjs';
252 import { UpdateAddHTLC } from '../structs/UpdateAddHTLC.mjs';
253 import { UpdateFulfillHTLC } from '../structs/UpdateFulfillHTLC.mjs';
254 import { UpdateFailHTLC } from '../structs/UpdateFailHTLC.mjs';
255 import { UpdateFailMalformedHTLC } from '../structs/UpdateFailMalformedHTLC.mjs';
256 import { Result_AcceptChannelDecodeErrorZ } from '../structs/Result_AcceptChannelDecodeErrorZ.mjs';
257 import { Result_AnnouncementSignaturesDecodeErrorZ } from '../structs/Result_AnnouncementSignaturesDecodeErrorZ.mjs';
258 import { Result_ChannelReestablishDecodeErrorZ } from '../structs/Result_ChannelReestablishDecodeErrorZ.mjs';
259 import { Result_ClosingSignedDecodeErrorZ } from '../structs/Result_ClosingSignedDecodeErrorZ.mjs';
260 import { ClosingSignedFeeRange } from '../structs/ClosingSignedFeeRange.mjs';
261 import { Result_ClosingSignedFeeRangeDecodeErrorZ } from '../structs/Result_ClosingSignedFeeRangeDecodeErrorZ.mjs';
262 import { CommitmentSigned } from '../structs/CommitmentSigned.mjs';
263 import { Result_CommitmentSignedDecodeErrorZ } from '../structs/Result_CommitmentSignedDecodeErrorZ.mjs';
264 import { Result_FundingCreatedDecodeErrorZ } from '../structs/Result_FundingCreatedDecodeErrorZ.mjs';
265 import { Result_FundingSignedDecodeErrorZ } from '../structs/Result_FundingSignedDecodeErrorZ.mjs';
266 import { Result_ChannelReadyDecodeErrorZ } from '../structs/Result_ChannelReadyDecodeErrorZ.mjs';
267 import { Init } from '../structs/Init.mjs';
268 import { Result_InitDecodeErrorZ } from '../structs/Result_InitDecodeErrorZ.mjs';
269 import { Result_OpenChannelDecodeErrorZ } from '../structs/Result_OpenChannelDecodeErrorZ.mjs';
270 import { Result_RevokeAndACKDecodeErrorZ } from '../structs/Result_RevokeAndACKDecodeErrorZ.mjs';
271 import { Result_ShutdownDecodeErrorZ } from '../structs/Result_ShutdownDecodeErrorZ.mjs';
272 import { Result_UpdateFailHTLCDecodeErrorZ } from '../structs/Result_UpdateFailHTLCDecodeErrorZ.mjs';
273 import { Result_UpdateFailMalformedHTLCDecodeErrorZ } from '../structs/Result_UpdateFailMalformedHTLCDecodeErrorZ.mjs';
274 import { UpdateFee } from '../structs/UpdateFee.mjs';
275 import { Result_UpdateFeeDecodeErrorZ } from '../structs/Result_UpdateFeeDecodeErrorZ.mjs';
276 import { Result_UpdateFulfillHTLCDecodeErrorZ } from '../structs/Result_UpdateFulfillHTLCDecodeErrorZ.mjs';
277 import { Result_UpdateAddHTLCDecodeErrorZ } from '../structs/Result_UpdateAddHTLCDecodeErrorZ.mjs';
278 import { Ping } from '../structs/Ping.mjs';
279 import { Result_PingDecodeErrorZ } from '../structs/Result_PingDecodeErrorZ.mjs';
280 import { Pong } from '../structs/Pong.mjs';
281 import { Result_PongDecodeErrorZ } from '../structs/Result_PongDecodeErrorZ.mjs';
282 import { Result_UnsignedChannelAnnouncementDecodeErrorZ } from '../structs/Result_UnsignedChannelAnnouncementDecodeErrorZ.mjs';
283 import { Result_ChannelAnnouncementDecodeErrorZ } from '../structs/Result_ChannelAnnouncementDecodeErrorZ.mjs';
284 import { UnsignedChannelUpdate } from '../structs/UnsignedChannelUpdate.mjs';
285 import { Result_UnsignedChannelUpdateDecodeErrorZ } from '../structs/Result_UnsignedChannelUpdateDecodeErrorZ.mjs';
286 import { Result_ChannelUpdateDecodeErrorZ } from '../structs/Result_ChannelUpdateDecodeErrorZ.mjs';
287 import { Result_ErrorMessageDecodeErrorZ } from '../structs/Result_ErrorMessageDecodeErrorZ.mjs';
288 import { Result_WarningMessageDecodeErrorZ } from '../structs/Result_WarningMessageDecodeErrorZ.mjs';
289 import { UnsignedNodeAnnouncement } from '../structs/UnsignedNodeAnnouncement.mjs';
290 import { Result_UnsignedNodeAnnouncementDecodeErrorZ } from '../structs/Result_UnsignedNodeAnnouncementDecodeErrorZ.mjs';
291 import { Result_NodeAnnouncementDecodeErrorZ } from '../structs/Result_NodeAnnouncementDecodeErrorZ.mjs';
292 import { Result_QueryShortChannelIdsDecodeErrorZ } from '../structs/Result_QueryShortChannelIdsDecodeErrorZ.mjs';
293 import { ReplyShortChannelIdsEnd } from '../structs/ReplyShortChannelIdsEnd.mjs';
294 import { Result_ReplyShortChannelIdsEndDecodeErrorZ } from '../structs/Result_ReplyShortChannelIdsEndDecodeErrorZ.mjs';
295 import { Result_QueryChannelRangeDecodeErrorZ } from '../structs/Result_QueryChannelRangeDecodeErrorZ.mjs';
296 import { Result_ReplyChannelRangeDecodeErrorZ } from '../structs/Result_ReplyChannelRangeDecodeErrorZ.mjs';
297 import { Result_GossipTimestampFilterDecodeErrorZ } from '../structs/Result_GossipTimestampFilterDecodeErrorZ.mjs';
298 import { SignOrCreationError } from '../structs/SignOrCreationError.mjs';
299 import { Result_InvoiceSignOrCreationErrorZ } from '../structs/Result_InvoiceSignOrCreationErrorZ.mjs';
300 import { WatchedOutput } from '../structs/WatchedOutput.mjs';
301 import { Filter, FilterInterface } from '../structs/Filter.mjs';
302 import { Option_FilterZ } from '../structs/Option_FilterZ.mjs';
303 import { LockedChannelMonitor } from '../structs/LockedChannelMonitor.mjs';
304 import { Result_LockedChannelMonitorNoneZ } from '../structs/Result_LockedChannelMonitorNoneZ.mjs';
305 import { MessageSendEventsProvider, MessageSendEventsProviderInterface } from '../structs/MessageSendEventsProvider.mjs';
306 import { EventHandler, EventHandlerInterface } from '../structs/EventHandler.mjs';
307 import { EventsProvider, EventsProviderInterface } from '../structs/EventsProvider.mjs';
308 import { BigSize } from '../structs/BigSize.mjs';
309 import { ChannelUsage } from '../structs/ChannelUsage.mjs';
310 import { Score, ScoreInterface } from '../structs/Score.mjs';
311 import { MultiThreadedLockableScore } from '../structs/MultiThreadedLockableScore.mjs';
312 import { Persister, PersisterInterface } from '../structs/Persister.mjs';
313 import { ChannelHandshakeConfig } from '../structs/ChannelHandshakeConfig.mjs';
314 import { ChannelHandshakeLimits } from '../structs/ChannelHandshakeLimits.mjs';
315 import { UserConfig } from '../structs/UserConfig.mjs';
316 import { BestBlock } from '../structs/BestBlock.mjs';
317 import { Listen, ListenInterface } from '../structs/Listen.mjs';
318 import { Confirm, ConfirmInterface } from '../structs/Confirm.mjs';
319 import { MonitorUpdateId } from '../structs/MonitorUpdateId.mjs';
320 import { Persist, PersistInterface } from '../structs/Persist.mjs';
321 import { ChainMonitor } from '../structs/ChainMonitor.mjs';
322 import { KeysManager } from '../structs/KeysManager.mjs';
323 import { PhantomKeysManager } from '../structs/PhantomKeysManager.mjs';
324 import { ChainParameters } from '../structs/ChainParameters.mjs';
325 import { ChannelMessageHandler, ChannelMessageHandlerInterface } from '../structs/ChannelMessageHandler.mjs';
326 import { ChannelManagerReadArgs } from '../structs/ChannelManagerReadArgs.mjs';
327 import { ExpandedKey } from '../structs/ExpandedKey.mjs';
328 import { DataLossProtect } from '../structs/DataLossProtect.mjs';
329 import { RoutingMessageHandler, RoutingMessageHandlerInterface } from '../structs/RoutingMessageHandler.mjs';
330 import { CustomMessageReader, CustomMessageReaderInterface } from '../structs/CustomMessageReader.mjs';
331 import { CustomMessageHandler, CustomMessageHandlerInterface } from '../structs/CustomMessageHandler.mjs';
332 import { IgnoringMessageHandler } from '../structs/IgnoringMessageHandler.mjs';
333 import { ErroringMessageHandler } from '../structs/ErroringMessageHandler.mjs';
334 import { MessageHandler } from '../structs/MessageHandler.mjs';
335 import { SocketDescriptor, SocketDescriptorInterface } from '../structs/SocketDescriptor.mjs';
336 import { PeerManager } from '../structs/PeerManager.mjs';
337 import { DirectedChannelTransactionParameters } from '../structs/DirectedChannelTransactionParameters.mjs';
338 import { ReadOnlyNetworkGraph } from '../structs/ReadOnlyNetworkGraph.mjs';
339 import { P2PGossipSync } from '../structs/P2PGossipSync.mjs';
340 import { DirectedChannelInfo } from '../structs/DirectedChannelInfo.mjs';
341 import { EffectiveCapacity } from '../structs/EffectiveCapacity.mjs';
342 import { LockableScore, LockableScoreInterface } from '../structs/LockableScore.mjs';
343 import { ProbabilisticScoringParameters } from '../structs/ProbabilisticScoringParameters.mjs';
344 import { RawDataPart } from '../structs/RawDataPart.mjs';
345 import { Sha256 } from '../structs/Sha256.mjs';
346 import { ExpiryTime } from '../structs/ExpiryTime.mjs';
347 import { MinFinalCltvExpiry } from '../structs/MinFinalCltvExpiry.mjs';
348 import { Fallback } from '../structs/Fallback.mjs';
349 import { Payer, PayerInterface } from '../structs/Payer.mjs';
350 import { Router, RouterInterface } from '../structs/Router.mjs';
351 import { InvoicePayer } from '../structs/InvoicePayer.mjs';
352 import { Retry } from '../structs/Retry.mjs';
353 import { DefaultRouter } from '../structs/DefaultRouter.mjs';
354
355 import { CommonBase, UInt5, WitnessVersion, UnqualifiedError } from './CommonBase.mjs';
356 import * as bindings from '../bindings.mjs'
357
358
359 /**
360  * Manager which keeps track of a number of channels and sends messages to the appropriate
361  * channel, also tracking HTLC preimages and forwarding onion packets appropriately.
362  * 
363  * Implements ChannelMessageHandler, handling the multi-channel parts and passing things through
364  * to individual Channels.
365  * 
366  * Implements Writeable to write out all channel state to disk. Implies peer_disconnected() for
367  * all peers during write/read (though does not modify this instance, only the instance being
368  * serialized). This will result in any channels which have not yet exchanged funding_created (ie
369  * called funding_transaction_generated for outbound channels).
370  * 
371  * Note that you can be a bit lazier about writing out ChannelManager than you can be with
372  * ChannelMonitors. With ChannelMonitors you MUST write each monitor update out to disk before
373  * returning from chain::Watch::watch_/update_channel, with ChannelManagers, writing updates
374  * happens out-of-band (and will prevent any other ChannelManager operations from occurring during
375  * the serialization process). If the deserialized version is out-of-date compared to the
376  * ChannelMonitors passed by reference to read(), those channels will be force-closed based on the
377  * ChannelMonitor state and no funds will be lost (mod on-chain transaction fees).
378  * 
379  * Note that the deserializer is only implemented for (BlockHash, ChannelManager), which
380  * tells you the last block hash which was block_connect()ed. You MUST rescan any blocks along
381  * the \"reorg path\" (ie call block_disconnected() until you get to a common block and then call
382  * block_connected() to step towards your best block) upon deserialization before using the
383  * object!
384  * 
385  * Note that ChannelManager is responsible for tracking liveness of its channels and generating
386  * ChannelUpdate messages informing peers that the channel is temporarily disabled. To avoid
387  * spam due to quick disconnection/reconnection, updates are not sent until the channel has been
388  * offline for a full minute. In order to track this, you must call
389  * timer_tick_occurred roughly once per minute, though it doesn't have to be perfect.
390  * 
391  * Rather than using a plain ChannelManager, it is preferable to use either a SimpleArcChannelManager
392  * a SimpleRefChannelManager, for conciseness. See their documentation for more details, but
393  * essentially you should default to using a SimpleRefChannelManager, and use a
394  * SimpleArcChannelManager when you require a ChannelManager with a static lifetime, such as when
395  * you're using lightning-net-tokio.
396  */
397 export class ChannelManager extends CommonBase {
398         /* @internal */
399         public constructor(_dummy: object, ptr: bigint) {
400                 super(ptr, bindings.ChannelManager_free);
401         }
402
403         /**
404          * Constructs a new ChannelManager to hold several channels and route between them.
405          * 
406          * This is the main \"logic hub\" for all channel-related actions, and implements
407          * ChannelMessageHandler.
408          * 
409          * Non-proportional fees are fixed according to our risk using the provided fee estimator.
410          * 
411          * Users need to notify the new ChannelManager when a new block is connected or
412          * disconnected using its `block_connected` and `block_disconnected` methods, starting
413          * from after `params.latest_hash`.
414          */
415         public static constructor_new(fee_est: FeeEstimator, chain_monitor: Watch, tx_broadcaster: BroadcasterInterface, logger: Logger, keys_manager: KeysInterface, config: UserConfig, params: ChainParameters): ChannelManager {
416                 const ret: bigint = bindings.ChannelManager_new(fee_est == null ? 0n : CommonBase.get_ptr_of(fee_est), chain_monitor == null ? 0n : CommonBase.get_ptr_of(chain_monitor), tx_broadcaster == null ? 0n : CommonBase.get_ptr_of(tx_broadcaster), logger == null ? 0n : CommonBase.get_ptr_of(logger), keys_manager == null ? 0n : CommonBase.get_ptr_of(keys_manager), config == null ? 0n : CommonBase.get_ptr_of(config), params == null ? 0n : CommonBase.get_ptr_of(params));
417                 const ret_hu_conv: ChannelManager = new ChannelManager(null, ret);
418                 CommonBase.add_ref_from(ret_hu_conv, ret_hu_conv);
419                 CommonBase.add_ref_from(ret_hu_conv, fee_est);
420                 CommonBase.add_ref_from(ret_hu_conv, chain_monitor);
421                 CommonBase.add_ref_from(ret_hu_conv, tx_broadcaster);
422                 CommonBase.add_ref_from(ret_hu_conv, logger);
423                 CommonBase.add_ref_from(ret_hu_conv, keys_manager);
424                 CommonBase.add_ref_from(ret_hu_conv, config);
425                 CommonBase.add_ref_from(ret_hu_conv, params);
426                 return ret_hu_conv;
427         }
428
429         /**
430          * Gets the current configuration applied to all new channels,  as
431          */
432         public get_current_default_configuration(): UserConfig {
433                 const ret: bigint = bindings.ChannelManager_get_current_default_configuration(this.ptr);
434                 const ret_hu_conv: UserConfig = new UserConfig(null, ret);
435                 CommonBase.add_ref_from(ret_hu_conv, this);
436                 return ret_hu_conv;
437         }
438
439         /**
440          * Creates a new outbound channel to the given remote node and with the given value.
441          * 
442          * `user_channel_id` will be provided back as in
443          * [`Event::FundingGenerationReady::user_channel_id`] to allow tracking of which events
444          * correspond with which `create_channel` call. Note that the `user_channel_id` defaults to 0
445          * for inbound channels, so you may wish to avoid using 0 for `user_channel_id` here.
446          * `user_channel_id` has no meaning inside of LDK, it is simply copied to events and otherwise
447          * ignored.
448          * 
449          * Raises [`APIError::APIMisuseError`] when `channel_value_satoshis` > 2**24 or `push_msat` is
450          * greater than `channel_value_satoshis * 1k` or `channel_value_satoshis < 1000`.
451          * 
452          * Note that we do not check if you are currently connected to the given peer. If no
453          * connection is available, the outbound `open_channel` message may fail to send, resulting in
454          * the channel eventually being silently forgotten (dropped on reload).
455          * 
456          * Returns the new Channel's temporary `channel_id`. This ID will appear as
457          * [`Event::FundingGenerationReady::temporary_channel_id`] and in
458          * [`ChannelDetails::channel_id`] until after
459          * [`ChannelManager::funding_transaction_generated`] is called, swapping the Channel's ID for
460          * one derived from the funding transaction's TXID. If the counterparty rejects the channel
461          * immediately, this temporary ID will appear in [`Event::ChannelClosed::channel_id`].
462          * 
463          * [`Event::FundingGenerationReady::user_channel_id`]: events::Event::FundingGenerationReady::user_channel_id
464          * [`Event::FundingGenerationReady::temporary_channel_id`]: events::Event::FundingGenerationReady::temporary_channel_id
465          * [`Event::ChannelClosed::channel_id`]: events::Event::ChannelClosed::channel_id
466          * 
467          * Note that override_config (or a relevant inner pointer) may be NULL or all-0s to represent None
468          */
469         public create_channel(their_network_key: Uint8Array, channel_value_satoshis: bigint, push_msat: bigint, user_channel_id: bigint, override_config: UserConfig): Result__u832APIErrorZ {
470                 const ret: bigint = bindings.ChannelManager_create_channel(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(their_network_key, 33)), channel_value_satoshis, push_msat, user_channel_id, override_config == null ? 0n : CommonBase.get_ptr_of(override_config));
471                 const ret_hu_conv: Result__u832APIErrorZ = Result__u832APIErrorZ.constr_from_ptr(ret);
472                 CommonBase.add_ref_from(this, override_config);
473                 return ret_hu_conv;
474         }
475
476         /**
477          * Gets the list of open channels, in random order. See ChannelDetail field documentation for
478          * more information.
479          */
480         public list_channels(): ChannelDetails[] {
481                 const ret: number = bindings.ChannelManager_list_channels(this.ptr);
482                 const ret_conv_16_len: number = bindings.getArrayLength(ret);
483                 const ret_conv_16_arr: ChannelDetails[] = new Array(ret_conv_16_len).fill(null);
484                 for (var q = 0; q < ret_conv_16_len; q++) {
485                         const ret_conv_16: bigint = bindings.getU64ArrayElem(ret, q);
486                         const ret_conv_16_hu_conv: ChannelDetails = new ChannelDetails(null, ret_conv_16);
487                         CommonBase.add_ref_from(ret_conv_16_hu_conv, this);
488                         ret_conv_16_arr[q] = ret_conv_16_hu_conv;
489                 }
490                 bindings.freeWasmMemory(ret)
491                 return ret_conv_16_arr;
492         }
493
494         /**
495          * Gets the list of usable channels, in random order. Useful as an argument to [`find_route`]
496          * to ensure non-announced channels are used.
497          * 
498          * These are guaranteed to have their [`ChannelDetails::is_usable`] value set to true, see the
499          * documentation for [`ChannelDetails::is_usable`] for more info on exactly what the criteria
500          * are.
501          * 
502          * [`find_route`]: crate::routing::router::find_route
503          */
504         public list_usable_channels(): ChannelDetails[] {
505                 const ret: number = bindings.ChannelManager_list_usable_channels(this.ptr);
506                 const ret_conv_16_len: number = bindings.getArrayLength(ret);
507                 const ret_conv_16_arr: ChannelDetails[] = new Array(ret_conv_16_len).fill(null);
508                 for (var q = 0; q < ret_conv_16_len; q++) {
509                         const ret_conv_16: bigint = bindings.getU64ArrayElem(ret, q);
510                         const ret_conv_16_hu_conv: ChannelDetails = new ChannelDetails(null, ret_conv_16);
511                         CommonBase.add_ref_from(ret_conv_16_hu_conv, this);
512                         ret_conv_16_arr[q] = ret_conv_16_hu_conv;
513                 }
514                 bindings.freeWasmMemory(ret)
515                 return ret_conv_16_arr;
516         }
517
518         /**
519          * Begins the process of closing a channel. After this call (plus some timeout), no new HTLCs
520          * will be accepted on the given channel, and after additional timeout/the closing of all
521          * pending HTLCs, the channel will be closed on chain.
522          * 
523          * If we are the channel initiator, we will pay between our [`Background`] and
524          * [`ChannelConfig::force_close_avoidance_max_fee_satoshis`] plus our [`Normal`] fee
525          * estimate.
526          * If our counterparty is the channel initiator, we will require a channel closing
527          * transaction feerate of at least our [`Background`] feerate or the feerate which
528          * would appear on a force-closure transaction, whichever is lower. We will allow our
529          * counterparty to pay as much fee as they'd like, however.
530          * 
531          * May generate a SendShutdown message event on success, which should be relayed.
532          * 
533          * [`ChannelConfig::force_close_avoidance_max_fee_satoshis`]: crate::util::config::ChannelConfig::force_close_avoidance_max_fee_satoshis
534          * [`Background`]: crate::chain::chaininterface::ConfirmationTarget::Background
535          * [`Normal`]: crate::chain::chaininterface::ConfirmationTarget::Normal
536          */
537         public close_channel(channel_id: Uint8Array, counterparty_node_id: Uint8Array): Result_NoneAPIErrorZ {
538                 const ret: bigint = bindings.ChannelManager_close_channel(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(channel_id, 32)), bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)));
539                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
540                 return ret_hu_conv;
541         }
542
543         /**
544          * Begins the process of closing a channel. After this call (plus some timeout), no new HTLCs
545          * will be accepted on the given channel, and after additional timeout/the closing of all
546          * pending HTLCs, the channel will be closed on chain.
547          * 
548          * `target_feerate_sat_per_1000_weight` has different meanings depending on if we initiated
549          * the channel being closed or not:
550          * If we are the channel initiator, we will pay at least this feerate on the closing
551          * transaction. The upper-bound is set by
552          * [`ChannelConfig::force_close_avoidance_max_fee_satoshis`] plus our [`Normal`] fee
553          * estimate (or `target_feerate_sat_per_1000_weight`, if it is greater).
554          * If our counterparty is the channel initiator, we will refuse to accept a channel closure
555          * transaction feerate below `target_feerate_sat_per_1000_weight` (or the feerate which
556          * will appear on a force-closure transaction, whichever is lower).
557          * 
558          * May generate a SendShutdown message event on success, which should be relayed.
559          * 
560          * [`ChannelConfig::force_close_avoidance_max_fee_satoshis`]: crate::util::config::ChannelConfig::force_close_avoidance_max_fee_satoshis
561          * [`Background`]: crate::chain::chaininterface::ConfirmationTarget::Background
562          * [`Normal`]: crate::chain::chaininterface::ConfirmationTarget::Normal
563          */
564         public close_channel_with_target_feerate(channel_id: Uint8Array, counterparty_node_id: Uint8Array, target_feerate_sats_per_1000_weight: number): Result_NoneAPIErrorZ {
565                 const ret: bigint = bindings.ChannelManager_close_channel_with_target_feerate(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(channel_id, 32)), bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)), target_feerate_sats_per_1000_weight);
566                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
567                 return ret_hu_conv;
568         }
569
570         /**
571          * Force closes a channel, immediately broadcasting the latest local transaction(s) and
572          * rejecting new HTLCs on the given channel. Fails if `channel_id` is unknown to
573          * the manager, or if the `counterparty_node_id` isn't the counterparty of the corresponding
574          * channel.
575          */
576         public force_close_broadcasting_latest_txn(channel_id: Uint8Array, counterparty_node_id: Uint8Array): Result_NoneAPIErrorZ {
577                 const ret: bigint = bindings.ChannelManager_force_close_broadcasting_latest_txn(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(channel_id, 32)), bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)));
578                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
579                 return ret_hu_conv;
580         }
581
582         /**
583          * Force closes a channel, rejecting new HTLCs on the given channel but skips broadcasting
584          * the latest local transaction(s). Fails if `channel_id` is unknown to the manager, or if the
585          * `counterparty_node_id` isn't the counterparty of the corresponding channel.
586          * 
587          * You can always get the latest local transaction(s) to broadcast from
588          * [`ChannelMonitor::get_latest_holder_commitment_txn`].
589          */
590         public force_close_without_broadcasting_txn(channel_id: Uint8Array, counterparty_node_id: Uint8Array): Result_NoneAPIErrorZ {
591                 const ret: bigint = bindings.ChannelManager_force_close_without_broadcasting_txn(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(channel_id, 32)), bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)));
592                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
593                 return ret_hu_conv;
594         }
595
596         /**
597          * Force close all channels, immediately broadcasting the latest local commitment transaction
598          * for each to the chain and rejecting new HTLCs on each.
599          */
600         public force_close_all_channels_broadcasting_latest_txn(): void {
601                 bindings.ChannelManager_force_close_all_channels_broadcasting_latest_txn(this.ptr);
602         }
603
604         /**
605          * Force close all channels rejecting new HTLCs on each but without broadcasting the latest
606          * local transaction(s).
607          */
608         public force_close_all_channels_without_broadcasting_txn(): void {
609                 bindings.ChannelManager_force_close_all_channels_without_broadcasting_txn(this.ptr);
610         }
611
612         /**
613          * Sends a payment along a given route.
614          * 
615          * Value parameters are provided via the last hop in route, see documentation for RouteHop
616          * fields for more info.
617          * 
618          * Note that if the payment_hash already exists elsewhere (eg you're sending a duplicative
619          * payment), we don't do anything to stop you! We always try to ensure that if the provided
620          * next hop knows the preimage to payment_hash they can claim an additional amount as
621          * specified in the last hop in the route! Thus, you should probably do your own
622          * payment_preimage tracking (which you should already be doing as they represent \"proof of
623          * payment\") and prevent double-sends yourself.
624          * 
625          * May generate SendHTLCs message(s) event on success, which should be relayed.
626          * 
627          * Each path may have a different return value, and PaymentSendValue may return a Vec with
628          * each entry matching the corresponding-index entry in the route paths, see
629          * PaymentSendFailure for more info.
630          * 
631          * In general, a path may raise:
632          * APIError::RouteError when an invalid route or forwarding parameter (cltv_delta, fee,
633          * node public key) is specified.
634          * APIError::ChannelUnavailable if the next-hop channel is not available for updates
635          * (including due to previous monitor update failure or new permanent monitor update
636          * failure).
637          * APIError::MonitorUpdateFailed if a new monitor update failure prevented sending the
638          * relevant updates.
639          * 
640          * Note that depending on the type of the PaymentSendFailure the HTLC may have been
641          * irrevocably committed to on our end. In such a case, do NOT retry the payment with a
642          * different route unless you intend to pay twice!
643          * 
644          * payment_secret is unrelated to payment_hash (or PaymentPreimage) and exists to authenticate
645          * the sender to the recipient and prevent payment-probing (deanonymization) attacks. For
646          * newer nodes, it will be provided to you in the invoice. If you do not have one, the Route
647          * must not contain multiple paths as multi-path payments require a recipient-provided
648          * payment_secret.
649          * If a payment_secret *is* provided, we assume that the invoice had the payment_secret feature
650          * bit set (either as required or as available). If multiple paths are present in the Route,
651          * we assume the invoice had the basic_mpp feature set.
652          * 
653          * Note that payment_secret (or a relevant inner pointer) may be NULL or all-0s to represent None
654          */
655         public send_payment(route: Route, payment_hash: Uint8Array, payment_secret: Uint8Array): Result_PaymentIdPaymentSendFailureZ {
656                 const ret: bigint = bindings.ChannelManager_send_payment(this.ptr, route == null ? 0n : CommonBase.get_ptr_of(route), bindings.encodeUint8Array(bindings.check_arr_len(payment_hash, 32)), bindings.encodeUint8Array(bindings.check_arr_len(payment_secret, 32)));
657                 const ret_hu_conv: Result_PaymentIdPaymentSendFailureZ = Result_PaymentIdPaymentSendFailureZ.constr_from_ptr(ret);
658                 CommonBase.add_ref_from(this, route);
659                 return ret_hu_conv;
660         }
661
662         /**
663          * Retries a payment along the given [`Route`].
664          * 
665          * Errors returned are a superset of those returned from [`send_payment`], so see
666          * [`send_payment`] documentation for more details on errors. This method will also error if the
667          * retry amount puts the payment more than 10% over the payment's total amount, if the payment
668          * for the given `payment_id` cannot be found (likely due to timeout or success), or if
669          * further retries have been disabled with [`abandon_payment`].
670          * 
671          * [`send_payment`]: [`ChannelManager::send_payment`]
672          * [`abandon_payment`]: [`ChannelManager::abandon_payment`]
673          */
674         public retry_payment(route: Route, payment_id: Uint8Array): Result_NonePaymentSendFailureZ {
675                 const ret: bigint = bindings.ChannelManager_retry_payment(this.ptr, route == null ? 0n : CommonBase.get_ptr_of(route), bindings.encodeUint8Array(bindings.check_arr_len(payment_id, 32)));
676                 const ret_hu_conv: Result_NonePaymentSendFailureZ = Result_NonePaymentSendFailureZ.constr_from_ptr(ret);
677                 CommonBase.add_ref_from(this, route);
678                 return ret_hu_conv;
679         }
680
681         /**
682          * Signals that no further retries for the given payment will occur.
683          * 
684          * After this method returns, any future calls to [`retry_payment`] for the given `payment_id`
685          * will fail with [`PaymentSendFailure::ParameterError`]. If no such event has been generated,
686          * an [`Event::PaymentFailed`] event will be generated as soon as there are no remaining
687          * pending HTLCs for this payment.
688          * 
689          * Note that calling this method does *not* prevent a payment from succeeding. You must still
690          * wait until you receive either a [`Event::PaymentFailed`] or [`Event::PaymentSent`] event to
691          * determine the ultimate status of a payment.
692          * 
693          * [`retry_payment`]: Self::retry_payment
694          * [`Event::PaymentFailed`]: events::Event::PaymentFailed
695          * [`Event::PaymentSent`]: events::Event::PaymentSent
696          */
697         public abandon_payment(payment_id: Uint8Array): void {
698                 bindings.ChannelManager_abandon_payment(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(payment_id, 32)));
699         }
700
701         /**
702          * Send a spontaneous payment, which is a payment that does not require the recipient to have
703          * generated an invoice. Optionally, you may specify the preimage. If you do choose to specify
704          * the preimage, it must be a cryptographically secure random value that no intermediate node
705          * would be able to guess -- otherwise, an intermediate node may claim the payment and it will
706          * never reach the recipient.
707          * 
708          * See [`send_payment`] documentation for more details on the return value of this function.
709          * 
710          * Similar to regular payments, you MUST NOT reuse a `payment_preimage` value. See
711          * [`send_payment`] for more information about the risks of duplicate preimage usage.
712          * 
713          * Note that `route` must have exactly one path.
714          * 
715          * [`send_payment`]: Self::send_payment
716          * 
717          * Note that payment_preimage (or a relevant inner pointer) may be NULL or all-0s to represent None
718          */
719         public send_spontaneous_payment(route: Route, payment_preimage: Uint8Array): Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ {
720                 const ret: bigint = bindings.ChannelManager_send_spontaneous_payment(this.ptr, route == null ? 0n : CommonBase.get_ptr_of(route), bindings.encodeUint8Array(bindings.check_arr_len(payment_preimage, 32)));
721                 const ret_hu_conv: Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ = Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ.constr_from_ptr(ret);
722                 CommonBase.add_ref_from(this, route);
723                 return ret_hu_conv;
724         }
725
726         /**
727          * Send a payment that is probing the given route for liquidity. We calculate the
728          * [`PaymentHash`] of probes based on a static secret and a random [`PaymentId`], which allows
729          * us to easily discern them from real payments.
730          */
731         public send_probe(hops: RouteHop[]): Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ {
732                 const ret: bigint = bindings.ChannelManager_send_probe(this.ptr, bindings.encodeUint64Array(hops != null ? hops.map(hops_conv_10 => hops_conv_10 == null ? 0n : CommonBase.get_ptr_of(hops_conv_10)) : null));
733                 const ret_hu_conv: Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ = Result_C2Tuple_PaymentHashPaymentIdZPaymentSendFailureZ.constr_from_ptr(ret);
734                 hops.forEach((hops_conv_10: RouteHop) => { CommonBase.add_ref_from(this, hops_conv_10); });
735                 return ret_hu_conv;
736         }
737
738         /**
739          * Call this upon creation of a funding transaction for the given channel.
740          * 
741          * Returns an [`APIError::APIMisuseError`] if the funding_transaction spent non-SegWit outputs
742          * or if no output was found which matches the parameters in [`Event::FundingGenerationReady`].
743          * 
744          * Returns [`APIError::APIMisuseError`] if the funding transaction is not final for propagation
745          * across the p2p network.
746          * 
747          * Returns [`APIError::ChannelUnavailable`] if a funding transaction has already been provided
748          * for the channel or if the channel has been closed as indicated by [`Event::ChannelClosed`].
749          * 
750          * May panic if the output found in the funding transaction is duplicative with some other
751          * channel (note that this should be trivially prevented by using unique funding transaction
752          * keys per-channel).
753          * 
754          * Do NOT broadcast the funding transaction yourself. When we have safely received our
755          * counterparty's signature the funding transaction will automatically be broadcast via the
756          * [`BroadcasterInterface`] provided when this `ChannelManager` was constructed.
757          * 
758          * Note that this includes RBF or similar transaction replacement strategies - lightning does
759          * not currently support replacing a funding transaction on an existing channel. Instead,
760          * create a new channel with a conflicting funding transaction.
761          * 
762          * Note to keep the miner incentives aligned in moving the blockchain forward, we recommend
763          * the wallet software generating the funding transaction to apply anti-fee sniping as
764          * implemented by Bitcoin Core wallet. See <https://bitcoinops.org/en/topics/fee-sniping/>
765          * for more details.
766          * 
767          * [`Event::FundingGenerationReady`]: crate::util::events::Event::FundingGenerationReady
768          * [`Event::ChannelClosed`]: crate::util::events::Event::ChannelClosed
769          */
770         public funding_transaction_generated(temporary_channel_id: Uint8Array, counterparty_node_id: Uint8Array, funding_transaction: Uint8Array): Result_NoneAPIErrorZ {
771                 const ret: bigint = bindings.ChannelManager_funding_transaction_generated(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(temporary_channel_id, 32)), bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)), bindings.encodeUint8Array(funding_transaction));
772                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
773                 return ret_hu_conv;
774         }
775
776         /**
777          * Regenerates channel_announcements and generates a signed node_announcement from the given
778          * arguments, providing them in corresponding events via
779          * [`get_and_clear_pending_msg_events`], if at least one public channel has been confirmed
780          * on-chain. This effectively re-broadcasts all channel announcements and sends our node
781          * announcement to ensure that the lightning P2P network is aware of the channels we have and
782          * our network addresses.
783          * 
784          * `rgb` is a node \"color\" and `alias` is a printable human-readable string to describe this
785          * node to humans. They carry no in-protocol meaning.
786          * 
787          * `addresses` represent the set (possibly empty) of socket addresses on which this node
788          * accepts incoming connections. These will be included in the node_announcement, publicly
789          * tying these addresses together and to this node. If you wish to preserve user privacy,
790          * addresses should likely contain only Tor Onion addresses.
791          * 
792          * Panics if `addresses` is absurdly large (more than 100).
793          * 
794          * [`get_and_clear_pending_msg_events`]: MessageSendEventsProvider::get_and_clear_pending_msg_events
795          */
796         public broadcast_node_announcement(rgb: Uint8Array, alias: Uint8Array, addresses: NetAddress[]): void {
797                 bindings.ChannelManager_broadcast_node_announcement(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(rgb, 3)), bindings.encodeUint8Array(bindings.check_arr_len(alias, 32)), bindings.encodeUint64Array(addresses != null ? addresses.map(addresses_conv_12 => CommonBase.get_ptr_of(addresses_conv_12)) : null));
798         }
799
800         /**
801          * Atomically updates the [`ChannelConfig`] for the given channels.
802          * 
803          * Once the updates are applied, each eligible channel (advertised with a known short channel
804          * ID and a change in [`forwarding_fee_proportional_millionths`], [`forwarding_fee_base_msat`],
805          * or [`cltv_expiry_delta`]) has a [`BroadcastChannelUpdate`] event message generated
806          * containing the new [`ChannelUpdate`] message which should be broadcast to the network.
807          * 
808          * Returns [`ChannelUnavailable`] when a channel is not found or an incorrect
809          * `counterparty_node_id` is provided.
810          * 
811          * Returns [`APIMisuseError`] when a [`cltv_expiry_delta`] update is to be applied with a value
812          * below [`MIN_CLTV_EXPIRY_DELTA`].
813          * 
814          * If an error is returned, none of the updates should be considered applied.
815          * 
816          * [`forwarding_fee_proportional_millionths`]: ChannelConfig::forwarding_fee_proportional_millionths
817          * [`forwarding_fee_base_msat`]: ChannelConfig::forwarding_fee_base_msat
818          * [`cltv_expiry_delta`]: ChannelConfig::cltv_expiry_delta
819          * [`BroadcastChannelUpdate`]: events::MessageSendEvent::BroadcastChannelUpdate
820          * [`ChannelUpdate`]: msgs::ChannelUpdate
821          * [`ChannelUnavailable`]: APIError::ChannelUnavailable
822          * [`APIMisuseError`]: APIError::APIMisuseError
823          */
824         public update_channel_config(counterparty_node_id: Uint8Array, channel_ids: Uint8Array[], config: ChannelConfig): Result_NoneAPIErrorZ {
825                 const ret: bigint = bindings.ChannelManager_update_channel_config(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)), bindings.encodeUint32Array(channel_ids != null ? channel_ids.map(channel_ids_conv_12 => bindings.encodeUint8Array(bindings.check_arr_len(channel_ids_conv_12, 32))) : null), config == null ? 0n : CommonBase.get_ptr_of(config));
826                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
827                 CommonBase.add_ref_from(this, config);
828                 return ret_hu_conv;
829         }
830
831         /**
832          * Processes HTLCs which are pending waiting on random forward delay.
833          * 
834          * Should only really ever be called in response to a PendingHTLCsForwardable event.
835          * Will likely generate further events.
836          */
837         public process_pending_htlc_forwards(): void {
838                 bindings.ChannelManager_process_pending_htlc_forwards(this.ptr);
839         }
840
841         /**
842          * Performs actions which should happen on startup and roughly once per minute thereafter.
843          * 
844          * This currently includes:
845          * Increasing or decreasing the on-chain feerate estimates for our outbound channels,
846          * Broadcasting `ChannelUpdate` messages if we've been disconnected from our peer for more
847          * than a minute, informing the network that they should no longer attempt to route over
848          * the channel.
849          * Expiring a channel's previous `ChannelConfig` if necessary to only allow forwarding HTLCs
850          * with the current `ChannelConfig`.
851          * 
852          * Note that this may cause reentrancy through `chain::Watch::update_channel` calls or feerate
853          * estimate fetches.
854          */
855         public timer_tick_occurred(): void {
856                 bindings.ChannelManager_timer_tick_occurred(this.ptr);
857         }
858
859         /**
860          * Indicates that the preimage for payment_hash is unknown or the received amount is incorrect
861          * after a PaymentReceived event, failing the HTLC back to its origin and freeing resources
862          * along the path (including in our own channel on which we received it).
863          * 
864          * Note that in some cases around unclean shutdown, it is possible the payment may have
865          * already been claimed by you via [`ChannelManager::claim_funds`] prior to you seeing (a
866          * second copy of) the [`events::Event::PaymentReceived`] event. Alternatively, the payment
867          * may have already been failed automatically by LDK if it was nearing its expiration time.
868          * 
869          * While LDK will never claim a payment automatically on your behalf (i.e. without you calling
870          * [`ChannelManager::claim_funds`]), you should still monitor for
871          * [`events::Event::PaymentClaimed`] events even for payments you intend to fail, especially on
872          * startup during which time claims that were in-progress at shutdown may be replayed.
873          */
874         public fail_htlc_backwards(payment_hash: Uint8Array): void {
875                 bindings.ChannelManager_fail_htlc_backwards(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(payment_hash, 32)));
876         }
877
878         /**
879          * Provides a payment preimage in response to [`Event::PaymentReceived`], generating any
880          * [`MessageSendEvent`]s needed to claim the payment.
881          * 
882          * Note that calling this method does *not* guarantee that the payment has been claimed. You
883          * must* wait for an [`Event::PaymentClaimed`] event which upon a successful claim will be
884          * provided to your [`EventHandler`] when [`process_pending_events`] is next called.
885          * 
886          * Note that if you did not set an `amount_msat` when calling [`create_inbound_payment`] or
887          * [`create_inbound_payment_for_hash`] you must check that the amount in the `PaymentReceived`
888          * event matches your expectation. If you fail to do so and call this method, you may provide
889          * the sender \"proof-of-payment\" when they did not fulfill the full expected payment.
890          * 
891          * [`Event::PaymentReceived`]: crate::util::events::Event::PaymentReceived
892          * [`Event::PaymentClaimed`]: crate::util::events::Event::PaymentClaimed
893          * [`process_pending_events`]: EventsProvider::process_pending_events
894          * [`create_inbound_payment`]: Self::create_inbound_payment
895          * [`create_inbound_payment_for_hash`]: Self::create_inbound_payment_for_hash
896          * [`get_and_clear_pending_msg_events`]: MessageSendEventsProvider::get_and_clear_pending_msg_events
897          */
898         public claim_funds(payment_preimage: Uint8Array): void {
899                 bindings.ChannelManager_claim_funds(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(payment_preimage, 32)));
900         }
901
902         /**
903          * Gets the node_id held by this ChannelManager
904          */
905         public get_our_node_id(): Uint8Array {
906                 const ret: number = bindings.ChannelManager_get_our_node_id(this.ptr);
907                 const ret_conv: Uint8Array = bindings.decodeUint8Array(ret);
908                 return ret_conv;
909         }
910
911         /**
912          * Accepts a request to open a channel after a [`Event::OpenChannelRequest`].
913          * 
914          * The `temporary_channel_id` parameter indicates which inbound channel should be accepted,
915          * and the `counterparty_node_id` parameter is the id of the peer which has requested to open
916          * the channel.
917          * 
918          * The `user_channel_id` parameter will be provided back in
919          * [`Event::ChannelClosed::user_channel_id`] to allow tracking of which events correspond
920          * with which `accept_inbound_channel`/`accept_inbound_channel_from_trusted_peer_0conf` call.
921          * 
922          * Note that this method will return an error and reject the channel, if it requires support
923          * for zero confirmations. Instead, `accept_inbound_channel_from_trusted_peer_0conf` must be
924          * used to accept such channels.
925          * 
926          * [`Event::OpenChannelRequest`]: events::Event::OpenChannelRequest
927          * [`Event::ChannelClosed::user_channel_id`]: events::Event::ChannelClosed::user_channel_id
928          */
929         public accept_inbound_channel(temporary_channel_id: Uint8Array, counterparty_node_id: Uint8Array, user_channel_id: bigint): Result_NoneAPIErrorZ {
930                 const ret: bigint = bindings.ChannelManager_accept_inbound_channel(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(temporary_channel_id, 32)), bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)), user_channel_id);
931                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
932                 return ret_hu_conv;
933         }
934
935         /**
936          * Accepts a request to open a channel after a [`events::Event::OpenChannelRequest`], treating
937          * it as confirmed immediately.
938          * 
939          * The `user_channel_id` parameter will be provided back in
940          * [`Event::ChannelClosed::user_channel_id`] to allow tracking of which events correspond
941          * with which `accept_inbound_channel`/`accept_inbound_channel_from_trusted_peer_0conf` call.
942          * 
943          * Unlike [`ChannelManager::accept_inbound_channel`], this method accepts the incoming channel
944          * and (if the counterparty agrees), enables forwarding of payments immediately.
945          * 
946          * This fully trusts that the counterparty has honestly and correctly constructed the funding
947          * transaction and blindly assumes that it will eventually confirm.
948          * 
949          * If it does not confirm before we decide to close the channel, or if the funding transaction
950          * does not pay to the correct script the correct amount, *you will lose funds*.
951          * 
952          * [`Event::OpenChannelRequest`]: events::Event::OpenChannelRequest
953          * [`Event::ChannelClosed::user_channel_id`]: events::Event::ChannelClosed::user_channel_id
954          */
955         public accept_inbound_channel_from_trusted_peer_0conf(temporary_channel_id: Uint8Array, counterparty_node_id: Uint8Array, user_channel_id: bigint): Result_NoneAPIErrorZ {
956                 const ret: bigint = bindings.ChannelManager_accept_inbound_channel_from_trusted_peer_0conf(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(temporary_channel_id, 32)), bindings.encodeUint8Array(bindings.check_arr_len(counterparty_node_id, 33)), user_channel_id);
957                 const ret_hu_conv: Result_NoneAPIErrorZ = Result_NoneAPIErrorZ.constr_from_ptr(ret);
958                 return ret_hu_conv;
959         }
960
961         /**
962          * Gets a payment secret and payment hash for use in an invoice given to a third party wishing
963          * to pay us.
964          * 
965          * This differs from [`create_inbound_payment_for_hash`] only in that it generates the
966          * [`PaymentHash`] and [`PaymentPreimage`] for you.
967          * 
968          * The [`PaymentPreimage`] will ultimately be returned to you in the [`PaymentReceived`], which
969          * will have the [`PaymentReceived::payment_preimage`] field filled in. That should then be
970          * passed directly to [`claim_funds`].
971          * 
972          * See [`create_inbound_payment_for_hash`] for detailed documentation on behavior and requirements.
973          * 
974          * Note that a malicious eavesdropper can intuit whether an inbound payment was created by
975          * `create_inbound_payment` or `create_inbound_payment_for_hash` based on runtime.
976          * 
977          * # Note
978          * 
979          * If you register an inbound payment with this method, then serialize the `ChannelManager`, then
980          * deserialize it with a node running 0.0.103 and earlier, the payment will fail to be received.
981          * 
982          * Errors if `min_value_msat` is greater than total bitcoin supply.
983          * 
984          * [`claim_funds`]: Self::claim_funds
985          * [`PaymentReceived`]: events::Event::PaymentReceived
986          * [`PaymentReceived::payment_preimage`]: events::Event::PaymentReceived::payment_preimage
987          * [`create_inbound_payment_for_hash`]: Self::create_inbound_payment_for_hash
988          */
989         public create_inbound_payment(min_value_msat: Option_u64Z, invoice_expiry_delta_secs: number): Result_C2Tuple_PaymentHashPaymentSecretZNoneZ {
990                 const ret: bigint = bindings.ChannelManager_create_inbound_payment(this.ptr, CommonBase.get_ptr_of(min_value_msat), invoice_expiry_delta_secs);
991                 const ret_hu_conv: Result_C2Tuple_PaymentHashPaymentSecretZNoneZ = Result_C2Tuple_PaymentHashPaymentSecretZNoneZ.constr_from_ptr(ret);
992                 return ret_hu_conv;
993         }
994
995         /**
996          * Legacy version of [`create_inbound_payment`]. Use this method if you wish to share
997          * serialized state with LDK node(s) running 0.0.103 and earlier.
998          * 
999          * May panic if `invoice_expiry_delta_secs` is greater than one year.
1000          * 
1001          * # Note
1002          * This method is deprecated and will be removed soon.
1003          * 
1004          * [`create_inbound_payment`]: Self::create_inbound_payment
1005          */
1006         public create_inbound_payment_legacy(min_value_msat: Option_u64Z, invoice_expiry_delta_secs: number): Result_C2Tuple_PaymentHashPaymentSecretZAPIErrorZ {
1007                 const ret: bigint = bindings.ChannelManager_create_inbound_payment_legacy(this.ptr, CommonBase.get_ptr_of(min_value_msat), invoice_expiry_delta_secs);
1008                 const ret_hu_conv: Result_C2Tuple_PaymentHashPaymentSecretZAPIErrorZ = Result_C2Tuple_PaymentHashPaymentSecretZAPIErrorZ.constr_from_ptr(ret);
1009                 return ret_hu_conv;
1010         }
1011
1012         /**
1013          * Gets a [`PaymentSecret`] for a given [`PaymentHash`], for which the payment preimage is
1014          * stored external to LDK.
1015          * 
1016          * A [`PaymentReceived`] event will only be generated if the [`PaymentSecret`] matches a
1017          * payment secret fetched via this method or [`create_inbound_payment`], and which is at least
1018          * the `min_value_msat` provided here, if one is provided.
1019          * 
1020          * The [`PaymentHash`] (and corresponding [`PaymentPreimage`]) should be globally unique, though
1021          * note that LDK will not stop you from registering duplicate payment hashes for inbound
1022          * payments.
1023          * 
1024          * `min_value_msat` should be set if the invoice being generated contains a value. Any payment
1025          * received for the returned [`PaymentHash`] will be required to be at least `min_value_msat`
1026          * before a [`PaymentReceived`] event will be generated, ensuring that we do not provide the
1027          * sender \"proof-of-payment\" unless they have paid the required amount.
1028          * 
1029          * `invoice_expiry_delta_secs` describes the number of seconds that the invoice is valid for
1030          * in excess of the current time. This should roughly match the expiry time set in the invoice.
1031          * After this many seconds, we will remove the inbound payment, resulting in any attempts to
1032          * pay the invoice failing. The BOLT spec suggests 3,600 secs as a default validity time for
1033          * invoices when no timeout is set.
1034          * 
1035          * Note that we use block header time to time-out pending inbound payments (with some margin
1036          * to compensate for the inaccuracy of block header timestamps). Thus, in practice we will
1037          * accept a payment and generate a [`PaymentReceived`] event for some time after the expiry.
1038          * If you need exact expiry semantics, you should enforce them upon receipt of
1039          * [`PaymentReceived`].
1040          * 
1041          * Note that invoices generated for inbound payments should have their `min_final_cltv_expiry`
1042          * set to at least [`MIN_FINAL_CLTV_EXPIRY`].
1043          * 
1044          * Note that a malicious eavesdropper can intuit whether an inbound payment was created by
1045          * `create_inbound_payment` or `create_inbound_payment_for_hash` based on runtime.
1046          * 
1047          * # Note
1048          * 
1049          * If you register an inbound payment with this method, then serialize the `ChannelManager`, then
1050          * deserialize it with a node running 0.0.103 and earlier, the payment will fail to be received.
1051          * 
1052          * Errors if `min_value_msat` is greater than total bitcoin supply.
1053          * 
1054          * [`create_inbound_payment`]: Self::create_inbound_payment
1055          * [`PaymentReceived`]: events::Event::PaymentReceived
1056          */
1057         public create_inbound_payment_for_hash(payment_hash: Uint8Array, min_value_msat: Option_u64Z, invoice_expiry_delta_secs: number): Result_PaymentSecretNoneZ {
1058                 const ret: bigint = bindings.ChannelManager_create_inbound_payment_for_hash(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(payment_hash, 32)), CommonBase.get_ptr_of(min_value_msat), invoice_expiry_delta_secs);
1059                 const ret_hu_conv: Result_PaymentSecretNoneZ = Result_PaymentSecretNoneZ.constr_from_ptr(ret);
1060                 return ret_hu_conv;
1061         }
1062
1063         /**
1064          * Legacy version of [`create_inbound_payment_for_hash`]. Use this method if you wish to share
1065          * serialized state with LDK node(s) running 0.0.103 and earlier.
1066          * 
1067          * May panic if `invoice_expiry_delta_secs` is greater than one year.
1068          * 
1069          * # Note
1070          * This method is deprecated and will be removed soon.
1071          * 
1072          * [`create_inbound_payment_for_hash`]: Self::create_inbound_payment_for_hash
1073          */
1074         public create_inbound_payment_for_hash_legacy(payment_hash: Uint8Array, min_value_msat: Option_u64Z, invoice_expiry_delta_secs: number): Result_PaymentSecretAPIErrorZ {
1075                 const ret: bigint = bindings.ChannelManager_create_inbound_payment_for_hash_legacy(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(payment_hash, 32)), CommonBase.get_ptr_of(min_value_msat), invoice_expiry_delta_secs);
1076                 const ret_hu_conv: Result_PaymentSecretAPIErrorZ = Result_PaymentSecretAPIErrorZ.constr_from_ptr(ret);
1077                 return ret_hu_conv;
1078         }
1079
1080         /**
1081          * Gets an LDK-generated payment preimage from a payment hash and payment secret that were
1082          * previously returned from [`create_inbound_payment`].
1083          * 
1084          * [`create_inbound_payment`]: Self::create_inbound_payment
1085          */
1086         public get_payment_preimage(payment_hash: Uint8Array, payment_secret: Uint8Array): Result_PaymentPreimageAPIErrorZ {
1087                 const ret: bigint = bindings.ChannelManager_get_payment_preimage(this.ptr, bindings.encodeUint8Array(bindings.check_arr_len(payment_hash, 32)), bindings.encodeUint8Array(bindings.check_arr_len(payment_secret, 32)));
1088                 const ret_hu_conv: Result_PaymentPreimageAPIErrorZ = Result_PaymentPreimageAPIErrorZ.constr_from_ptr(ret);
1089                 return ret_hu_conv;
1090         }
1091
1092         /**
1093          * Gets a fake short channel id for use in receiving [phantom node payments]. These fake scids
1094          * are used when constructing the phantom invoice's route hints.
1095          * 
1096          * [phantom node payments]: crate::chain::keysinterface::PhantomKeysManager
1097          */
1098         public get_phantom_scid(): bigint {
1099                 const ret: bigint = bindings.ChannelManager_get_phantom_scid(this.ptr);
1100                 return ret;
1101         }
1102
1103         /**
1104          * Gets route hints for use in receiving [phantom node payments].
1105          * 
1106          * [phantom node payments]: crate::chain::keysinterface::PhantomKeysManager
1107          */
1108         public get_phantom_route_hints(): PhantomRouteHints {
1109                 const ret: bigint = bindings.ChannelManager_get_phantom_route_hints(this.ptr);
1110                 const ret_hu_conv: PhantomRouteHints = new PhantomRouteHints(null, ret);
1111                 CommonBase.add_ref_from(ret_hu_conv, this);
1112                 return ret_hu_conv;
1113         }
1114
1115         /**
1116          * Constructs a new MessageSendEventsProvider which calls the relevant methods on this_arg.
1117          * This copies the `inner` pointer in this_arg and thus the returned MessageSendEventsProvider must be freed before this_arg is
1118          */
1119         public as_MessageSendEventsProvider(): MessageSendEventsProvider {
1120                 const ret: bigint = bindings.ChannelManager_as_MessageSendEventsProvider(this.ptr);
1121                 const ret_hu_conv: MessageSendEventsProvider = new MessageSendEventsProvider(null, ret);
1122                 CommonBase.add_ref_from(ret_hu_conv, this);
1123                 return ret_hu_conv;
1124         }
1125
1126         /**
1127          * Constructs a new EventsProvider which calls the relevant methods on this_arg.
1128          * This copies the `inner` pointer in this_arg and thus the returned EventsProvider must be freed before this_arg is
1129          */
1130         public as_EventsProvider(): EventsProvider {
1131                 const ret: bigint = bindings.ChannelManager_as_EventsProvider(this.ptr);
1132                 const ret_hu_conv: EventsProvider = new EventsProvider(null, ret);
1133                 CommonBase.add_ref_from(ret_hu_conv, this);
1134                 return ret_hu_conv;
1135         }
1136
1137         /**
1138          * Constructs a new Listen which calls the relevant methods on this_arg.
1139          * This copies the `inner` pointer in this_arg and thus the returned Listen must be freed before this_arg is
1140          */
1141         public as_Listen(): Listen {
1142                 const ret: bigint = bindings.ChannelManager_as_Listen(this.ptr);
1143                 const ret_hu_conv: Listen = new Listen(null, ret);
1144                 CommonBase.add_ref_from(ret_hu_conv, this);
1145                 return ret_hu_conv;
1146         }
1147
1148         /**
1149          * Constructs a new Confirm which calls the relevant methods on this_arg.
1150          * This copies the `inner` pointer in this_arg and thus the returned Confirm must be freed before this_arg is
1151          */
1152         public as_Confirm(): Confirm {
1153                 const ret: bigint = bindings.ChannelManager_as_Confirm(this.ptr);
1154                 const ret_hu_conv: Confirm = new Confirm(null, ret);
1155                 CommonBase.add_ref_from(ret_hu_conv, this);
1156                 return ret_hu_conv;
1157         }
1158
1159         /**
1160          * Blocks until ChannelManager needs to be persisted. Only one listener on
1161          * `await_persistable_update` or `await_persistable_update_timeout` is guaranteed to be woken
1162          * up.
1163          */
1164         public await_persistable_update(): void {
1165                 bindings.ChannelManager_await_persistable_update(this.ptr);
1166         }
1167
1168         /**
1169          * Gets the latest best block which was connected either via the [`chain::Listen`] or
1170          * [`chain::Confirm`] interfaces.
1171          */
1172         public current_best_block(): BestBlock {
1173                 const ret: bigint = bindings.ChannelManager_current_best_block(this.ptr);
1174                 const ret_hu_conv: BestBlock = new BestBlock(null, ret);
1175                 CommonBase.add_ref_from(ret_hu_conv, this);
1176                 return ret_hu_conv;
1177         }
1178
1179         /**
1180          * Constructs a new ChannelMessageHandler which calls the relevant methods on this_arg.
1181          * This copies the `inner` pointer in this_arg and thus the returned ChannelMessageHandler must be freed before this_arg is
1182          */
1183         public as_ChannelMessageHandler(): ChannelMessageHandler {
1184                 const ret: bigint = bindings.ChannelManager_as_ChannelMessageHandler(this.ptr);
1185                 const ret_hu_conv: ChannelMessageHandler = new ChannelMessageHandler(null, ret);
1186                 CommonBase.add_ref_from(ret_hu_conv, this);
1187                 return ret_hu_conv;
1188         }
1189
1190         /**
1191          * Serialize the ChannelManager object into a byte array which can be read by ChannelManager_read
1192          */
1193         public write(): Uint8Array {
1194                 const ret: number = bindings.ChannelManager_write(this.ptr);
1195                 const ret_conv: Uint8Array = bindings.decodeUint8Array(ret);
1196                 return ret_conv;
1197         }
1198
1199         /**
1200          * Constructs a new Payer which calls the relevant methods on this_arg.
1201          * This copies the `inner` pointer in this_arg and thus the returned Payer must be freed before this_arg is
1202          */
1203         public as_Payer(): Payer {
1204                 const ret: bigint = bindings.ChannelManager_as_Payer(this.ptr);
1205                 const ret_hu_conv: Payer = new Payer(null, ret);
1206                 CommonBase.add_ref_from(ret_hu_conv, this);
1207                 return ret_hu_conv;
1208         }
1209
1210 }