Document `sighash_u32` of `Transaction::signature_hash`
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@ -307,6 +307,10 @@ impl Transaction {
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/// through an ECDSA signer, the SigHashType appended to the resulting sig, and a script
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/// written around this, but this is the general (and hard) part.
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///
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/// The `sighash_u32` supports arbitrary `u32` value, instead of just [`SigHashType`],
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/// because internally 4 bytes are being hashed, even though only lowest byte
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/// is appended to signature in a transaction.
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///
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/// *Warning* This does NOT attempt to support OP_CODESEPARATOR. In general this would require
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/// evaluating `script_pubkey` to determine which separators get evaluated and which don't,
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/// which we don't have the information to determine.
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@ -318,11 +322,11 @@ impl Transaction {
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mut writer: Write,
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input_index: usize,
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script_pubkey: &Script,
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sighash_u32: u32
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sighash_type: u32
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) -> Result<(), encode::Error> {
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assert!(input_index < self.input.len()); // Panic on OOB
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let (sighash, anyone_can_pay) = SigHashType::from_u32(sighash_u32).split_anyonecanpay_flag();
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let (sighash, anyone_can_pay) = SigHashType::from_u32(sighash_type).split_anyonecanpay_flag();
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// Special-case sighash_single bug because this is easy enough.
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if sighash == SigHashType::Single && input_index >= self.output.len() {
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@ -374,7 +378,7 @@ impl Transaction {
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};
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// hash the result
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tx.consensus_encode(&mut writer)?;
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let sighash_arr = endian::u32_to_array_le(sighash_u32);
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let sighash_arr = endian::u32_to_array_le(sighash_type);
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sighash_arr.consensus_encode(&mut writer)?;
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Ok(())
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}
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