case class BaseTransaction(version: Int32, inputs: Vector[TransactionInput], outputs: Vector[TransactionOutput], lockTime: UInt32) extends NonWitnessTransaction with Product with Serializable
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Instance Constructors
- new BaseTransaction(version: Int32, inputs: Vector[TransactionInput], outputs: Vector[TransactionOutput], lockTime: UInt32)
Value Members
- final def !=(arg0: Any): Boolean
- Definition Classes
- AnyRef → Any
- final def ##: Int
- Definition Classes
- AnyRef → Any
- final def ==(arg0: Any): Boolean
- Definition Classes
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- final def asInstanceOf[T0]: T0
- Definition Classes
- Any
- def baseSize: Long
Base transaction size is the size of the transaction serialised with the witness data stripped https://github.com/bitcoin/bips/blob/master/bip-0141.mediawiki#Transaction_size_calculations
Base transaction size is the size of the transaction serialised with the witness data stripped https://github.com/bitcoin/bips/blob/master/bip-0141.mediawiki#Transaction_size_calculations
- Definition Classes
- Transaction
- def byteSize: Long
The size of the NetworkElement in bytes.
The size of the NetworkElement in bytes.
- Definition Classes
- NetworkElement
- val bytes: ByteVector
The byte representation of the NetworkElement
The byte representation of the NetworkElement
- Definition Classes
- NonWitnessTransaction → NetworkElement
- def bytesLE: ByteVector
The byte representation of the NetworkElement in little endian
The byte representation of the NetworkElement in little endian
- Definition Classes
- NetworkElement
- def clone(): AnyRef
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- protected[lang]
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- @throws(classOf[java.lang.CloneNotSupportedException]) @native()
- final def eq(arg0: AnyRef): Boolean
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- def finalize(): Unit
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- @throws(classOf[java.lang.Throwable])
- final def getClass(): Class[_ <: AnyRef]
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- @native()
- def hex: String
The hexadecimal representation of the NetworkElement
The hexadecimal representation of the NetworkElement
- Definition Classes
- NetworkElement
- def hexLE: String
The hexadecimal representation of the NetworkElement in little endian
The hexadecimal representation of the NetworkElement in little endian
- Definition Classes
- NetworkElement
- val inputs: Vector[TransactionInput]
The inputs for this transaction
The inputs for this transaction
- Definition Classes
- BaseTransaction → Transaction
- def isCoinbase: Boolean
Determines if this transaction is a coinbase transaction.
Determines if this transaction is a coinbase transaction.
- Definition Classes
- Transaction
- final def isInstanceOf[T0]: Boolean
- Definition Classes
- Any
- val lockTime: UInt32
The locktime for this transaction
The locktime for this transaction
- Definition Classes
- BaseTransaction → Transaction
- final def ne(arg0: AnyRef): Boolean
- Definition Classes
- AnyRef
- final def notify(): Unit
- Definition Classes
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- @native()
- final def notifyAll(): Unit
- Definition Classes
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- @native()
- val outputs: Vector[TransactionOutput]
The outputs for this transaction
The outputs for this transaction
- Definition Classes
- BaseTransaction → Transaction
- def productElementNames: Iterator[String]
- Definition Classes
- Product
- final def synchronized[T0](arg0: => T0): T0
- Definition Classes
- AnyRef
- lazy val toBaseTx: BaseTransaction
- Definition Classes
- Transaction
- lazy val totalOutput: CurrencyUnit
- Definition Classes
- Transaction
- def totalSize: Long
- Definition Classes
- Transaction
- val txId: DoubleSha256Digest
The
sha256(sha256(tx))
of this transaction, Note that this is the little endian encoding of the hash, NOT the big endian encoding shown in block explorers.The
sha256(sha256(tx))
of this transaction, Note that this is the little endian encoding of the hash, NOT the big endian encoding shown in block explorers. See this link for more info- Definition Classes
- NonWitnessTransaction → Transaction
- def txIdBE: DoubleSha256DigestBE
This is the BIG ENDIAN encoding for the txid.
This is the BIG ENDIAN encoding for the txid. This is commonly used for RPC interfaces and block explorers, this encoding is NOT used at the protocol level For more info see: https://bitcoin.stackexchange.com/questions/2063/why-does-the-bitcoin-protocol-use-the-little-endian-notation
- Definition Classes
- Transaction
- def updateInput(idx: Int, i: TransactionInput): Transaction
Updates the input at the given index and returns the new transaction with that input updated
Updates the input at the given index and returns the new transaction with that input updated
- Definition Classes
- Transaction
- val version: Int32
The version number for this transaction
The version number for this transaction
- Definition Classes
- BaseTransaction → Transaction
- def vsize: Long
The transaction's virtual size https://github.com/bitcoin/bips/blob/master/bip-0141.mediawiki#Transaction_size_calculations
The transaction's virtual size https://github.com/bitcoin/bips/blob/master/bip-0141.mediawiki#Transaction_size_calculations
- Definition Classes
- Transaction
- final def wait(): Unit
- Definition Classes
- AnyRef
- Annotations
- @throws(classOf[java.lang.InterruptedException])
- final def wait(arg0: Long, arg1: Int): Unit
- Definition Classes
- AnyRef
- Annotations
- @throws(classOf[java.lang.InterruptedException])
- final def wait(arg0: Long): Unit
- Definition Classes
- AnyRef
- Annotations
- @throws(classOf[java.lang.InterruptedException]) @native()
- def weight: Long
This is used to indicate how 'expensive' the transction is on the blockchain.
This is used to indicate how 'expensive' the transction is on the blockchain. This use to be a simple calculation before segwit (BIP141). Each byte in the transaction counted as 4 'weight' units. Now with segwit, the TransactionWitness is counted as 1 weight unit per byte, while other parts of the transaction (outputs, inputs, locktime etc) count as 4 weight units. As we add more witness versions, this may be subject to change. BIP 141 https://github.com/bitcoin/bitcoin/blob/5961b23898ee7c0af2626c46d5d70e80136578d3/src/consensus/validation.h#L96
- Definition Classes
- NonWitnessTransaction → Transaction