168 lines
5.7 KiB
Rust
168 lines
5.7 KiB
Rust
// SPDX-License-Identifier: CC0-1.0
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#[allow(unused_macros)]
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macro_rules! hex_psbt {
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($s:expr) => { $crate::consensus::deserialize::<$crate::psbt::PartiallySignedTransaction>(&<$crate::prelude::Vec<u8> as $crate::hashes::hex::FromHex>::from_hex($s).unwrap()) };
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}
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macro_rules! combine {
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($thing:ident, $slf:ident, $other:ident) => {
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if let (&None, Some($thing)) = (&$slf.$thing, $other.$thing) {
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$slf.$thing = Some($thing);
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}
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};
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}
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macro_rules! impl_psbt_de_serialize {
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($thing:ty) => {
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impl_psbt_serialize!($thing);
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impl_psbt_deserialize!($thing);
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};
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}
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macro_rules! impl_psbt_deserialize {
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($thing:ty) => {
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impl $crate::psbt::serialize::Deserialize for $thing {
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fn deserialize(bytes: &[u8]) -> Result<Self, $crate::consensus::encode::Error> {
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$crate::consensus::deserialize(&bytes[..])
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}
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}
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};
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}
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macro_rules! impl_psbt_serialize {
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($thing:ty) => {
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impl $crate::psbt::serialize::Serialize for $thing {
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fn serialize(&self) -> $crate::prelude::Vec<u8> {
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$crate::consensus::serialize(self)
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}
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}
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};
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}
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macro_rules! impl_psbtmap_consensus_encoding {
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($thing:ty) => {
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impl $crate::consensus::Encodable for $thing {
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fn consensus_encode<W: $crate::io::Write + ?Sized>(
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&self,
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w: &mut W,
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) -> Result<usize, $crate::io::Error> {
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self.consensus_encode_map(w)
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}
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}
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};
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}
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macro_rules! impl_psbtmap_consensus_decoding {
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($thing:ty) => {
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impl $crate::consensus::Decodable for $thing {
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fn consensus_decode<R: $crate::io::Read + ?Sized>(
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r: &mut R,
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) -> Result<Self, $crate::consensus::encode::Error> {
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let mut rv: Self = core::default::Default::default();
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loop {
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match $crate::consensus::Decodable::consensus_decode(r) {
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Ok(pair) => rv.insert_pair(pair)?,
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Err($crate::consensus::encode::Error::Psbt($crate::psbt::Error::NoMorePairs)) => return Ok(rv),
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Err(e) => return Err(e),
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}
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}
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}
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}
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};
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}
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macro_rules! impl_psbtmap_consensus_enc_dec_oding {
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($thing:ty) => {
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impl_psbtmap_consensus_decoding!($thing);
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impl_psbtmap_consensus_encoding!($thing);
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};
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}
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#[rustfmt::skip]
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macro_rules! impl_psbt_insert_pair {
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($slf:ident.$unkeyed_name:ident <= <$raw_key:ident: _>|<$raw_value:ident: $unkeyed_value_type:ty>) => {
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if $raw_key.key.is_empty() {
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if $slf.$unkeyed_name.is_none() {
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let val: $unkeyed_value_type = $crate::psbt::serialize::Deserialize::deserialize(&$raw_value)?;
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$slf.$unkeyed_name = Some(val)
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} else {
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return Err($crate::psbt::Error::DuplicateKey($raw_key).into());
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}
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} else {
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return Err($crate::psbt::Error::InvalidKey($raw_key).into());
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}
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};
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($slf:ident.$keyed_name:ident <= <$raw_key:ident: $keyed_key_type:ty>|<$raw_value:ident: $keyed_value_type:ty>) => {
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if !$raw_key.key.is_empty() {
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let key_val: $keyed_key_type = $crate::psbt::serialize::Deserialize::deserialize(&$raw_key.key)?;
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match $slf.$keyed_name.entry(key_val) {
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$crate::prelude::btree_map::Entry::Vacant(empty_key) => {
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let val: $keyed_value_type = $crate::psbt::serialize::Deserialize::deserialize(&$raw_value)?;
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empty_key.insert(val);
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}
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$crate::prelude::btree_map::Entry::Occupied(_) => return Err($crate::psbt::Error::DuplicateKey($raw_key).into()),
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}
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} else {
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return Err($crate::psbt::Error::InvalidKey($raw_key).into());
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}
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};
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}
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#[rustfmt::skip]
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macro_rules! impl_psbt_get_pair {
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($rv:ident.push($slf:ident.$unkeyed_name:ident, $unkeyed_typeval:ident)) => {
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if let Some(ref $unkeyed_name) = $slf.$unkeyed_name {
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$rv.push($crate::psbt::raw::Pair {
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key: $crate::psbt::raw::Key {
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type_value: $unkeyed_typeval,
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key: vec![],
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},
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value: $crate::psbt::serialize::Serialize::serialize($unkeyed_name),
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});
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}
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};
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($rv:ident.push_map($slf:ident.$keyed_name:ident, $keyed_typeval:ident)) => {
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for (key, val) in &$slf.$keyed_name {
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$rv.push($crate::psbt::raw::Pair {
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key: $crate::psbt::raw::Key {
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type_value: $keyed_typeval,
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key: $crate::psbt::serialize::Serialize::serialize(key),
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},
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value: $crate::psbt::serialize::Serialize::serialize(val),
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});
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}
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};
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}
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// macros for serde of hashes
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macro_rules! impl_psbt_hash_de_serialize {
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($hash_type:ty) => {
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impl_psbt_hash_serialize!($hash_type);
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impl_psbt_hash_deserialize!($hash_type);
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};
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}
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macro_rules! impl_psbt_hash_deserialize {
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($hash_type:ty) => {
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impl $crate::psbt::serialize::Deserialize for $hash_type {
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fn deserialize(bytes: &[u8]) -> Result<Self, $crate::consensus::encode::Error> {
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<$hash_type>::from_slice(&bytes[..]).map_err(|e| {
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$crate::psbt::Error::from(e).into()
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})
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}
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}
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};
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}
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macro_rules! impl_psbt_hash_serialize {
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($hash_type:ty) => {
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impl $crate::psbt::serialize::Serialize for $hash_type {
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fn serialize(&self) -> $crate::prelude::Vec<u8> {
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self.into_inner().to_vec()
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}
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}
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};
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}
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