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btcposbal2csv.py
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btcposbal2csv.py
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import os
import tempfile
import argparse
import sqlite3
from utils import parse_ldb
def input_args():
parser = argparse.ArgumentParser(description='Process UTXO set from chainstate and return unspent output per'
' address for P2PKH and P2SH addresses')
parser.add_argument(
'chainstate',
metavar='PATH_TO_CHAINSTATE_DIR',
type=str,
help='path to bitcoin chainstate directory (usually in full node data dir)'
)
parser.add_argument(
'--bitcoin_version',
type=float,
default=0.15,
help='versions of bitcoin node, acceptable values 0.08 - 0.15, default 0.15 should be OK'
)
parser.add_argument(
'out',
metavar='OUTFILE',
type=str,
default=None,
help='output file in .csv'
)
parser.add_argument(
'--keep_sqlite',
metavar='PATH_TO_SQLITE_FILE)',
type=str,
default=None,
help='output sqlite database file'
)
parser.add_argument(
'--lowmem',
action='store_true',
help='use sqlite for aggregation of addresses instead of doing it in memory'
)
parser.add_argument(
'--P2PKH',
metavar='bool',
type=bool,
default=True,
help='include P2PKH transactions, default 1'
)
parser.add_argument(
'--P2SH',
metavar='bool',
type=bool,
default=True,
help='include P2PSH transactions, default 1'
)
parser.add_argument(
'--P2PK',
metavar='bool',
type=bool,
default=False,
help='include P2PK transactions, default 0 '
'warning - cannot decode address for this type of transactions, the total output'
'for these addresses will be included under P2PK entry in output csv file'
)
parser.add_argument(
'--sort',
metavar='ASC/DESC',
type=str,
default=None,
help='sort addresses by output ammount '
'ASCending / DESCending '
'if not given not sorting will be done'
)
a = parser.parse_args()
if a.sort not in {None, 'ASC', 'DESC'}:
raise AssertionError('--sort can be only "ASC" or "DESC"')
if a.keep_sqlite and not a.lowmem:
raise AssertionError('--keep_sqlite cannot be used with --lowmem')
return a
def get_types(in_args):
keep_types = set()
if in_args.P2PKH:
keep_types.add(0)
if in_args.P2SH:
keep_types.add(1)
if in_args.P2PK:
keep_types |= {2, 3, 4, 5}
return keep_types
def in_mem(in_args):
add_dict = dict()
for add, val, height in parse_ldb(
fin_name=in_args.chainstate,
version=in_args.bitcoin_version,
types=get_types(in_args)):
if add in add_dict:
add_dict[add][0] += val
add_dict[add][1] = height
else:
add_dict[add] = [val, height]
for key in add_dict.iterkeys():
ll = add_dict[key]
yield key, ll[0], ll[1]
def low_mem(in_args):
keep_types = []
if in_args.P2PKH:
keep_types.append(0)
if in_args.P2SH:
keep_types.append(1)
if in_args.P2PK:
keep_types += [2, 3, 4, 5]
if in_args.keep_sqlite:
dbfile = in_args.keep_sqlite
else:
fd, dbfile = tempfile.mkstemp()
os.close(fd)
with sqlite3.connect(dbfile) as conn:
curr = conn.cursor()
curr.execute(
"""
DROP TABLE IF EXISTS balance
"""
)
curr.execute(
"""
CREATE TABLE balance (
address TEXT PRIMARY KEY,
amount BIGINT NOT NULL,
height BIGINT NOT NULL
)
"""
)
curr.execute('BEGIN TRANSACTION')
expinsert = """
INSERT OR IGNORE INTO balance (address, amount, height) VALUES (?, ?, ?)"""
expupdate = """
UPDATE balance SET
amount = amount + ?,
height = ?
WHERE address = ?
"""
for add, val, height in parse_ldb(
fin_name=in_args.chainstate,
version=in_args.bitcoin_version,
types=get_types(in_args)):
curr.execute(expinsert, (add, 0, 0))
curr.execute(expupdate, (val, height, add))
if in_args.sort is None:
exp = 'SELECT * FROM balance'
elif in_args.sort == 'ASC':
exp = 'SELECT * FROM balance ORDER BY amount ASC'
elif in_args.sort == 'DESC':
exp = 'SELECT * FROM balance ORDER BY amount DESC'
else:
raise Exception
curr.execute(exp)
for j in curr:
yield j[0], j[1], j[2]
conn.commit()
curr.close()
if not in_args.keep_sqlite:
os.remove(dbfile)
if __name__ == '__main__':
args = input_args()
print('reading chainstate database')
if args.lowmem:
print('lowmem')
add_iter = low_mem(args)
else:
print('inmem')
add_iter = in_mem(args)
if args.out:
w = ['address,value_satoshi,last_height']
with open(args.out, 'w') as f:
c = 0
for address, sat_val, block_height in add_iter:
if sat_val == 0:
continue
w.append(
address + ',' + str(sat_val) + ',' + str(block_height)
)
c += 1
if c == 1000:
f.write('\n'.join(w) + '\n')
w = []
c = 0
if c > 0:
f.write('\n'.join(w) + '\n')
f.write('\n')
print('writen to %s' % args.out)