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https://github.com/lightningdevkit/rust-lightning.git
synced 2025-02-25 07:17:40 +01:00
Macro-ize OfferBuilder
OfferBuilder is not exported to bindings because it has methods that take `self` by value and are only implemented for certain type parameterizations. Define these methods using macros such that different builders and related methods can be defined for c_bindings.
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1 changed files with 81 additions and 59 deletions
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@ -134,9 +134,12 @@ pub struct ExplicitMetadata {}
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pub struct DerivedMetadata {}
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impl MetadataStrategy for ExplicitMetadata {}
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impl MetadataStrategy for DerivedMetadata {}
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impl<'a> OfferBuilder<'a, ExplicitMetadata, secp256k1::SignOnly> {
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macro_rules! offer_explicit_metadata_builder_methods { (
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$self: ident, $self_type: ty, $return_type: ty, $return_value: expr
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) => {
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/// Creates a new builder for an offer setting the [`Offer::description`] and using the
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/// [`Offer::signing_pubkey`] for signing invoices. The associated secret key must be remembered
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/// while the offer is valid.
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@ -151,7 +154,7 @@ impl<'a> OfferBuilder<'a, ExplicitMetadata, secp256k1::SignOnly> {
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/// [`ChannelManager`]: crate::ln::channelmanager::ChannelManager
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/// [`ChannelManager::create_offer_builder`]: crate::ln::channelmanager::ChannelManager::create_offer_builder
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pub fn new(description: String, signing_pubkey: PublicKey) -> Self {
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OfferBuilder {
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Self {
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offer: OfferContents {
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chains: None, metadata: None, amount: None, description,
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features: OfferFeatures::empty(), absolute_expiry: None, issuer: None, paths: None,
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@ -165,13 +168,13 @@ impl<'a> OfferBuilder<'a, ExplicitMetadata, secp256k1::SignOnly> {
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/// Sets the [`Offer::metadata`] to the given bytes.
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///
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/// Successive calls to this method will override the previous setting.
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pub fn metadata(mut self, metadata: Vec<u8>) -> Result<Self, Bolt12SemanticError> {
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self.offer.metadata = Some(Metadata::Bytes(metadata));
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Ok(self)
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pub fn metadata(mut $self: $self_type, metadata: Vec<u8>) -> Result<$return_type, Bolt12SemanticError> {
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$self.offer.metadata = Some(Metadata::Bytes(metadata));
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Ok($return_value)
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}
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}
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} }
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impl<'a, T: secp256k1::Signing> OfferBuilder<'a, DerivedMetadata, T> {
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macro_rules! offer_derived_metadata_builder_methods { () => {
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/// Similar to [`OfferBuilder::new`] except, if [`OfferBuilder::path`] is called, the signing
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/// pubkey is derived from the given [`ExpandedKey`] and [`EntropySource`]. This provides
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/// recipient privacy by using a different signing pubkey for each offer. Otherwise, the
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@ -190,7 +193,7 @@ impl<'a, T: secp256k1::Signing> OfferBuilder<'a, DerivedMetadata, T> {
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let nonce = Nonce::from_entropy_source(entropy_source);
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let derivation_material = MetadataMaterial::new(nonce, expanded_key, IV_BYTES, None);
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let metadata = Metadata::DerivedSigningPubkey(derivation_material);
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OfferBuilder {
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Self {
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offer: OfferContents {
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chains: None, metadata: Some(metadata), amount: None, description,
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features: OfferFeatures::empty(), absolute_expiry: None, issuer: None, paths: None,
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@ -200,17 +203,19 @@ impl<'a, T: secp256k1::Signing> OfferBuilder<'a, DerivedMetadata, T> {
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secp_ctx: Some(secp_ctx),
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}
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}
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}
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} }
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impl<'a, M: MetadataStrategy, T: secp256k1::Signing> OfferBuilder<'a, M, T> {
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macro_rules! offer_builder_methods { (
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$self: ident, $self_type: ty, $return_type: ty, $return_value: expr
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) => {
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/// Adds the chain hash of the given [`Network`] to [`Offer::chains`]. If not called,
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/// the chain hash of [`Network::Bitcoin`] is assumed to be the only one supported.
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///
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/// See [`Offer::chains`] on how this relates to the payment currency.
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///
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/// Successive calls to this method will add another chain hash.
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pub fn chain(self, network: Network) -> Self {
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self.chain_hash(ChainHash::using_genesis_block(network))
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pub fn chain($self: $self_type, network: Network) -> $return_type {
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$self.chain_hash(ChainHash::using_genesis_block(network))
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}
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/// Adds the [`ChainHash`] to [`Offer::chains`]. If not called, the chain hash of
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@ -219,45 +224,45 @@ impl<'a, M: MetadataStrategy, T: secp256k1::Signing> OfferBuilder<'a, M, T> {
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/// See [`Offer::chains`] on how this relates to the payment currency.
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///
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/// Successive calls to this method will add another chain hash.
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pub(crate) fn chain_hash(mut self, chain: ChainHash) -> Self {
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let chains = self.offer.chains.get_or_insert_with(Vec::new);
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pub(crate) fn chain_hash(mut $self: $self_type, chain: ChainHash) -> $return_type {
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let chains = $self.offer.chains.get_or_insert_with(Vec::new);
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if !chains.contains(&chain) {
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chains.push(chain);
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}
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self
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$return_value
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}
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/// Sets the [`Offer::amount`] as an [`Amount::Bitcoin`].
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///
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/// Successive calls to this method will override the previous setting.
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pub fn amount_msats(self, amount_msats: u64) -> Self {
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self.amount(Amount::Bitcoin { amount_msats })
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pub fn amount_msats($self: $self_type, amount_msats: u64) -> $return_type {
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$self.amount(Amount::Bitcoin { amount_msats })
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}
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/// Sets the [`Offer::amount`].
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///
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/// Successive calls to this method will override the previous setting.
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pub(super) fn amount(mut self, amount: Amount) -> Self {
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self.offer.amount = Some(amount);
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self
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pub(super) fn amount(mut $self: $self_type, amount: Amount) -> $return_type {
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$self.offer.amount = Some(amount);
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$return_value
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}
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/// Sets the [`Offer::absolute_expiry`] as seconds since the Unix epoch. Any expiry that has
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/// already passed is valid and can be checked for using [`Offer::is_expired`].
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///
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/// Successive calls to this method will override the previous setting.
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pub fn absolute_expiry(mut self, absolute_expiry: Duration) -> Self {
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self.offer.absolute_expiry = Some(absolute_expiry);
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self
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pub fn absolute_expiry(mut $self: $self_type, absolute_expiry: Duration) -> $return_type {
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$self.offer.absolute_expiry = Some(absolute_expiry);
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$return_value
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}
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/// Sets the [`Offer::issuer`].
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///
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/// Successive calls to this method will override the previous setting.
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pub fn issuer(mut self, issuer: String) -> Self {
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self.offer.issuer = Some(issuer);
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self
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pub fn issuer(mut $self: $self_type, issuer: String) -> $return_type {
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$self.offer.issuer = Some(issuer);
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$return_value
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}
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/// Adds a blinded path to [`Offer::paths`]. Must include at least one path if only connected by
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@ -265,23 +270,23 @@ impl<'a, M: MetadataStrategy, T: secp256k1::Signing> OfferBuilder<'a, M, T> {
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///
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/// Successive calls to this method will add another blinded path. Caller is responsible for not
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/// adding duplicate paths.
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pub fn path(mut self, path: BlindedPath) -> Self {
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self.offer.paths.get_or_insert_with(Vec::new).push(path);
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self
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pub fn path(mut $self: $self_type, path: BlindedPath) -> $return_type {
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$self.offer.paths.get_or_insert_with(Vec::new).push(path);
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$return_value
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}
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/// Sets the quantity of items for [`Offer::supported_quantity`]. If not called, defaults to
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/// [`Quantity::One`].
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///
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/// Successive calls to this method will override the previous setting.
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pub fn supported_quantity(mut self, quantity: Quantity) -> Self {
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self.offer.supported_quantity = quantity;
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self
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pub fn supported_quantity(mut $self: $self_type, quantity: Quantity) -> $return_type {
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$self.offer.supported_quantity = quantity;
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$return_value
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}
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/// Builds an [`Offer`] from the builder's settings.
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pub fn build(mut self) -> Result<Offer, Bolt12SemanticError> {
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match self.offer.amount {
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pub fn build(mut $self: $self_type) -> Result<Offer, Bolt12SemanticError> {
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match $self.offer.amount {
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Some(Amount::Bitcoin { amount_msats }) => {
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if amount_msats > MAX_VALUE_MSAT {
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return Err(Bolt12SemanticError::InvalidAmount);
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@ -291,62 +296,79 @@ impl<'a, M: MetadataStrategy, T: secp256k1::Signing> OfferBuilder<'a, M, T> {
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None => {},
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}
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if let Some(chains) = &self.offer.chains {
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if chains.len() == 1 && chains[0] == self.offer.implied_chain() {
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self.offer.chains = None;
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if let Some(chains) = &$self.offer.chains {
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if chains.len() == 1 && chains[0] == $self.offer.implied_chain() {
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$self.offer.chains = None;
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}
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}
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Ok(self.build_without_checks())
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Ok($self.build_without_checks())
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}
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fn build_without_checks(mut self) -> Offer {
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fn build_without_checks(mut $self: $self_type) -> Offer {
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// Create the metadata for stateless verification of an InvoiceRequest.
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if let Some(mut metadata) = self.offer.metadata.take() {
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if let Some(mut metadata) = $self.offer.metadata.take() {
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if metadata.has_derivation_material() {
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if self.offer.paths.is_none() {
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if $self.offer.paths.is_none() {
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metadata = metadata.without_keys();
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}
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let mut tlv_stream = self.offer.as_tlv_stream();
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let mut tlv_stream = $self.offer.as_tlv_stream();
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debug_assert_eq!(tlv_stream.metadata, None);
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tlv_stream.metadata = None;
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if metadata.derives_recipient_keys() {
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tlv_stream.node_id = None;
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}
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let (derived_metadata, keys) = metadata.derive_from(tlv_stream, self.secp_ctx);
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let (derived_metadata, keys) = metadata.derive_from(tlv_stream, $self.secp_ctx);
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metadata = derived_metadata;
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if let Some(keys) = keys {
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self.offer.signing_pubkey = keys.public_key();
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$self.offer.signing_pubkey = keys.public_key();
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}
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}
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self.offer.metadata = Some(metadata);
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$self.offer.metadata = Some(metadata);
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}
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let mut bytes = Vec::new();
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self.offer.write(&mut bytes).unwrap();
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$self.offer.write(&mut bytes).unwrap();
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Offer { bytes, contents: self.offer }
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Offer { bytes, contents: $self.offer }
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}
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}
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} }
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#[cfg(test)]
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macro_rules! offer_builder_test_methods { (
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$self: ident, $self_type: ty, $return_type: ty, $return_value: expr
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) => {
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fn features_unchecked(mut $self: $self_type, features: OfferFeatures) -> $return_type {
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$self.offer.features = features;
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$return_value
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}
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pub(crate) fn clear_paths(mut $self: $self_type) -> $return_type {
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$self.offer.paths = None;
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$return_value
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}
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pub(super) fn build_unchecked($self: $self_type) -> Offer {
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$self.build_without_checks()
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}
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} }
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impl<'a, M: MetadataStrategy, T: secp256k1::Signing> OfferBuilder<'a, M, T> {
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fn features_unchecked(mut self, features: OfferFeatures) -> Self {
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self.offer.features = features;
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self
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}
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offer_builder_methods!(self, Self, Self, self);
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pub(crate) fn clear_paths(mut self) -> Self {
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self.offer.paths = None;
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self
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}
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#[cfg(test)]
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offer_builder_test_methods!(self, Self, Self, self);
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}
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pub(super) fn build_unchecked(self) -> Offer {
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self.build_without_checks()
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}
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impl<'a> OfferBuilder<'a, ExplicitMetadata, secp256k1::SignOnly> {
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offer_explicit_metadata_builder_methods!(self, Self, Self, self);
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}
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impl<'a, T: secp256k1::Signing> OfferBuilder<'a, DerivedMetadata, T> {
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offer_derived_metadata_builder_methods!();
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}
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/// An `Offer` is a potentially long-lived proposal for payment of a good or service.
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