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answers.py
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answers.py
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'''
# tag::exercise5[]
==== Exercise 5
What is the ScriptSig from the second input, ScriptPubKey from the first output and the amount of the second output for this transaction?
```
010000000456919960ac691763688d3d3bcea9ad6ecaf875df5339e148a1fc61c6ed7a069e0100
00006a47304402204585bcdef85e6b1c6af5c2669d4830ff86e42dd205c0e089bc2a821657e951
c002201024a10366077f87d6bce1f7100ad8cfa8a064b39d4e8fe4ea13a7b71aa8180f012102f0
da57e85eec2934a82a585ea337ce2f4998b50ae699dd79f5880e253dafafb7feffffffeb8f51f4
038dc17e6313cf831d4f02281c2a468bde0fafd37f1bf882729e7fd3000000006a473044022078
99531a52d59a6de200179928ca900254a36b8dff8bb75f5f5d71b1cdc26125022008b422690b84
61cb52c3cc30330b23d574351872b7c361e9aae3649071c1a7160121035d5c93d9ac96881f19ba
1f686f15f009ded7c62efe85a872e6a19b43c15a2937feffffff567bf40595119d1bb8a3037c35
6efd56170b64cbcc160fb028fa10704b45d775000000006a47304402204c7c7818424c7f7911da
6cddc59655a70af1cb5eaf17c69dadbfc74ffa0b662f02207599e08bc8023693ad4e9527dc42c3
4210f7a7d1d1ddfc8492b654a11e7620a0012102158b46fbdff65d0172b7989aec8850aa0dae49
abfb84c81ae6e5b251a58ace5cfeffffffd63a5e6c16e620f86f375925b21cabaf736c779f88fd
04dcad51d26690f7f345010000006a47304402200633ea0d3314bea0d95b3cd8dadb2ef79ea833
1ffe1e61f762c0f6daea0fabde022029f23b3e9c30f080446150b23852028751635dcee2be669c
2a1686a4b5edf304012103ffd6f4a67e94aba353a00882e563ff2722eb4cff0ad6006e86ee20df
e7520d55feffffff0251430f00000000001976a914ab0c0b2e98b1ab6dbf67d4750b0a56244948
a87988ac005a6202000000001976a9143c82d7df364eb6c75be8c80df2b3eda8db57397088ac46
430600
```
# end::exercise5[]
# tag::answer5[]
>>> from io import BytesIO
>>> from tx import Tx
>>> hex_transaction = '010000000456919960ac691763688d3d3bcea9ad6ecaf875df5339e\
148a1fc61c6ed7a069e010000006a47304402204585bcdef85e6b1c6af5c2669d4830ff86e42dd\
205c0e089bc2a821657e951c002201024a10366077f87d6bce1f7100ad8cfa8a064b39d4e8fe4e\
a13a7b71aa8180f012102f0da57e85eec2934a82a585ea337ce2f4998b50ae699dd79f5880e253\
dafafb7feffffffeb8f51f4038dc17e6313cf831d4f02281c2a468bde0fafd37f1bf882729e7fd\
3000000006a47304402207899531a52d59a6de200179928ca900254a36b8dff8bb75f5f5d71b1c\
dc26125022008b422690b8461cb52c3cc30330b23d574351872b7c361e9aae3649071c1a716012\
1035d5c93d9ac96881f19ba1f686f15f009ded7c62efe85a872e6a19b43c15a2937feffffff567\
bf40595119d1bb8a3037c356efd56170b64cbcc160fb028fa10704b45d775000000006a4730440\
2204c7c7818424c7f7911da6cddc59655a70af1cb5eaf17c69dadbfc74ffa0b662f02207599e08\
bc8023693ad4e9527dc42c34210f7a7d1d1ddfc8492b654a11e7620a0012102158b46fbdff65d0\
172b7989aec8850aa0dae49abfb84c81ae6e5b251a58ace5cfeffffffd63a5e6c16e620f86f375\
925b21cabaf736c779f88fd04dcad51d26690f7f345010000006a47304402200633ea0d3314bea\
0d95b3cd8dadb2ef79ea8331ffe1e61f762c0f6daea0fabde022029f23b3e9c30f080446150b23\
852028751635dcee2be669c2a1686a4b5edf304012103ffd6f4a67e94aba353a00882e563ff272\
2eb4cff0ad6006e86ee20dfe7520d55feffffff0251430f00000000001976a914ab0c0b2e98b1a\
b6dbf67d4750b0a56244948a87988ac005a6202000000001976a9143c82d7df364eb6c75be8c80\
df2b3eda8db57397088ac46430600'
>>> stream = BytesIO(bytes.fromhex(hex_transaction))
>>> tx_obj = Tx.parse(stream)
>>> print(tx_obj.tx_ins[1].script_sig)
304402207899531a52d59a6de200179928ca900254a36b8dff8bb75f5f5d71b1cdc26125022008\
b422690b8461cb52c3cc30330b23d574351872b7c361e9aae3649071c1a71601 035d5c93d9ac9\
6881f19ba1f686f15f009ded7c62efe85a872e6a19b43c15a2937
>>> print(tx_obj.tx_outs[0].script_pubkey)
OP_DUP OP_HASH160 ab0c0b2e98b1ab6dbf67d4750b0a56244948a879 OP_EQUALVERIFY OP_CHECKSIG
>>> print(tx_obj.tx_outs[1].amount)
40000000
# end::answer5[]
'''
from unittest import TestCase
from helper import little_endian_to_int, read_varint
from script import Script
from tx import Tx, TxIn, TxOut
methods = []
'''
# tag::exercise1[]
==== Exercise 1
Write the version parsing part of the `parse` method that we've defined. To do this properly, you'll have to convert 4 bytes into a Little-Endian integer.
# end::exercise1[]
# tag::answer1[]
@classmethod
def parse(cls, s, testnet=False):
version = little_endian_to_int(s.read(4))
return cls(version, None, None, None, testnet=testnet)
# end::answer1[]
# tag::exercise2[]
==== Exercise 2
Write the inputs parsing part of the `parse` method in `Tx` and the `parse` method for `TxIn`.
# end::exercise2[]
# tag::answer2.1[]
@classmethod
def parse(cls, s, testnet=False):
version = little_endian_to_int(s.read(4))
num_inputs = read_varint(s)
inputs = []
for _ in range(num_inputs):
inputs.append(TxIn.parse(s))
return cls(version, inputs, None, None, testnet=testnet)
# end::answer2.1[]
'''
# tag::answer2.2[]
@classmethod
def parse(cls, s):
'''Takes a byte stream and parses the tx_input at the start
return a TxIn object
'''
prev_tx = s.read(32)[::-1]
prev_index = little_endian_to_int(s.read(4))
script_sig = Script.parse(s)
sequence = little_endian_to_int(s.read(4))
return cls(prev_tx, prev_index, script_sig, sequence)
# end::answer2.2[]
methods.append(parse)
'''
# tag::exercise3[]
==== Exercise 3
Write the outputs parsing part of the `parse` method in `Tx` and the `parse` method for `TxOut`.
# end::exercise3[]
# tag::answer3.1[]
class Tx:
...
@classmethod
def parse(cls, s, testnet=False):
version = little_endian_to_int(s.read(4))
num_inputs = read_varint(s)
inputs = []
for _ in range(num_inputs):
inputs.append(TxIn.parse(s))
num_outputs = read_varint(s)
outputs = []
for _ in range(num_outputs):
outputs.append(TxOut.parse(s))
return cls(version, inputs, outputs, None, testnet=testnet)
# end::answer3.1[]
'''
# tag::answer3.2[]
@classmethod
def parse(cls, s):
'''Takes a byte stream and parses the tx_output at the start
return a TxOut object
'''
amount = little_endian_to_int(s.read(8))
script_pubkey = Script.parse(s)
return cls(amount, script_pubkey)
# end::answer3.2[]
methods.append(parse)
'''
# tag::exercise4[]
==== Exercise 4
Write the Locktime parsing part of the `parse` method in `Tx`.
# end::exercise4[]
'''
# tag::answer4[]
@classmethod
def parse(cls, s, testnet=False):
version = little_endian_to_int(s.read(4))
num_inputs = read_varint(s)
inputs = []
for _ in range(num_inputs):
inputs.append(TxIn.parse(s))
num_outputs = read_varint(s)
outputs = []
for _ in range(num_outputs):
outputs.append(TxOut.parse(s))
locktime = little_endian_to_int(s.read(4))
return cls(version, inputs, outputs, locktime, testnet=testnet)
# end::answer4[]
methods.append(parse)
'''
# tag::exercise6[]
==== Exercise 6
Write the `fee` method for the `Tx` class.
# end::exercise6[]
'''
# tag::answer6[]
def fee(self, testnet=False):
input_sum, output_sum = 0, 0
for tx_in in self.tx_ins:
input_sum += tx_in.value(testnet=testnet)
for tx_out in self.tx_outs:
output_sum += tx_out.amount
return input_sum - output_sum
# end::answer6[]
class ChapterTest(TestCase):
def test_apply(self):
TxIn.parse = methods[0]
TxOut.parse = methods[1]
Tx.parse = methods[2]
Tx.fee = fee