mirror of
https://github.com/freqtrade/freqtrade.git
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443 lines
17 KiB
Python
443 lines
17 KiB
Python
# pragma pylint: disable=missing-docstring, C0103
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import logging
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from pathlib import Path
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from shutil import copyfile
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import numpy as np
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import pytest
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from freqtrade.configuration.timerange import TimeRange
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from freqtrade.data.converter import (convert_ohlcv_format, convert_trades_format,
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ohlcv_fill_up_missing_data, ohlcv_to_dataframe,
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reduce_dataframe_footprint, trades_dict_to_list,
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trades_remove_duplicates, trades_to_ohlcv, trim_dataframe)
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from freqtrade.data.history import (get_timerange, load_data, load_pair_history,
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validate_backtest_data)
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from freqtrade.data.history.idatahandler import IDataHandler
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from freqtrade.enums import CandleType
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from tests.conftest import generate_test_data, log_has, log_has_re
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from tests.data.test_history import _clean_test_file
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def test_dataframe_correct_columns(dataframe_1m):
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assert dataframe_1m.columns.tolist() == ['date', 'open', 'high', 'low', 'close', 'volume']
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def test_ohlcv_to_dataframe(ohlcv_history_list, caplog):
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columns = ['date', 'open', 'high', 'low', 'close', 'volume']
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caplog.set_level(logging.DEBUG)
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# Test file with BV data
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dataframe = ohlcv_to_dataframe(ohlcv_history_list, '5m', pair="UNITTEST/BTC",
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fill_missing=True)
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assert dataframe.columns.tolist() == columns
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assert log_has('Converting candle (OHLCV) data to dataframe for pair UNITTEST/BTC.', caplog)
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def test_trades_to_ohlcv(trades_history, caplog):
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caplog.set_level(logging.DEBUG)
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with pytest.raises(ValueError, match="Trade-list empty."):
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trades_to_ohlcv([], '1m')
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df = trades_to_ohlcv(trades_history, '1m')
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assert not df.empty
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assert len(df) == 1
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assert 'open' in df.columns
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assert 'high' in df.columns
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assert 'low' in df.columns
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assert 'close' in df.columns
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assert df.loc[:, 'high'][0] == 0.019627
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assert df.loc[:, 'low'][0] == 0.019626
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def test_ohlcv_fill_up_missing_data(testdatadir, caplog):
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data = load_pair_history(datadir=testdatadir,
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timeframe='1m',
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pair='UNITTEST/BTC',
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fill_up_missing=False)
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caplog.set_level(logging.DEBUG)
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data2 = ohlcv_fill_up_missing_data(data, '1m', 'UNITTEST/BTC')
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assert len(data2) > len(data)
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# Column names should not change
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assert (data.columns == data2.columns).all()
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assert log_has_re(f"Missing data fillup for UNITTEST/BTC: before: "
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f"{len(data)} - after: {len(data2)}.*", caplog)
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# Test fillup actually fixes invalid backtest data
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min_date, max_date = get_timerange({'UNITTEST/BTC': data})
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assert validate_backtest_data(data, 'UNITTEST/BTC', min_date, max_date, 1)
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assert not validate_backtest_data(data2, 'UNITTEST/BTC', min_date, max_date, 1)
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def test_ohlcv_fill_up_missing_data2(caplog):
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timeframe = '5m'
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ticks = [
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[
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1511686200000, # 8:50:00
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8.794e-05, # open
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8.948e-05, # high
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8.794e-05, # low
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8.88e-05, # close
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2255, # volume (in quote currency)
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],
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[
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1511686500000, # 8:55:00
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8.88e-05,
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8.942e-05,
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8.88e-05,
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8.893e-05,
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9911,
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],
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[
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1511687100000, # 9:05:00
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8.891e-05,
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8.893e-05,
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8.875e-05,
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8.877e-05,
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2251
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],
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[
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1511687400000, # 9:10:00
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8.877e-05,
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8.883e-05,
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8.895e-05,
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8.817e-05,
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123551
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]
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]
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# Generate test-data without filling missing
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data = ohlcv_to_dataframe(ticks, timeframe, pair="UNITTEST/BTC",
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fill_missing=False)
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assert len(data) == 3
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caplog.set_level(logging.DEBUG)
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data2 = ohlcv_fill_up_missing_data(data, timeframe, "UNITTEST/BTC")
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assert len(data2) == 4
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# 3rd candle has been filled
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row = data2.loc[2, :]
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assert row['volume'] == 0
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# close should match close of previous candle
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assert row['close'] == data.loc[1, 'close']
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assert row['open'] == row['close']
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assert row['high'] == row['close']
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assert row['low'] == row['close']
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# Column names should not change
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assert (data.columns == data2.columns).all()
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assert log_has_re(f"Missing data fillup for UNITTEST/BTC: before: "
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f"{len(data)} - after: {len(data2)}.*", caplog)
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def test_ohlcv_to_dataframe_1M():
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# Monthly ticks from 2019-09-01 to 2023-07-01
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ticks = [
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[1567296000000, 8042.08, 10475.54, 7700.67, 8041.96, 608742.1109999999],
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[1569888000000, 8285.31, 10408.48, 7172.76, 9150.0, 2439561.887],
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[1572566400000, 9149.88, 9550.0, 6510.19, 7542.93, 4042674.725],
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[1575158400000, 7541.08, 7800.0, 6427.0, 7189.0, 4063882.296],
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[1577836800000, 7189.43, 9599.0, 6863.44, 9364.51, 5165281.358],
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[1580515200000, 9364.5, 10540.0, 8450.0, 8531.98, 4581788.124],
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[1583020800000, 8532.5, 9204.0, 3621.81, 6407.1, 10859497.479],
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[1585699200000, 6407.1, 9479.77, 6140.0, 8624.76, 11276526.968],
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[1588291200000, 8623.61, 10080.0, 7940.0, 9446.43, 12469561.02],
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[1590969600000, 9446.49, 10497.25, 8816.4, 9138.87, 6684044.201],
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[1593561600000, 9138.88, 11488.0, 8900.0, 11343.68, 5709327.926],
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[1596240000000, 11343.67, 12499.42, 10490.0, 11658.11, 6746487.129],
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[1598918400000, 11658.11, 12061.07, 9808.58, 10773.0, 6442697.051],
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[1601510400000, 10773.0, 14140.0, 10371.03, 13783.73, 7404103.004],
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[1604188800000, 13783.73, 19944.0, 13195.0, 19720.0, 12328272.549],
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[1606780800000, 19722.09, 29376.7, 17555.0, 28951.68, 10067314.24],
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[1609459200000, 28948.19, 42125.51, 27800.0, 33126.21, 12408873.079],
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[1612137600000, 33125.11, 58472.14, 32322.47, 45163.36, 8784474.482],
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[1614556800000, 45162.64, 61950.0, 44972.49, 58807.24, 9459821.267],
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[1617235200000, 58810.99, 64986.11, 46930.43, 57684.16, 7895051.389],
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[1619827200000, 57688.29, 59654.0, 28688.0, 37243.38, 16790964.443],
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[1622505600000, 37244.36, 41413.0, 28780.01, 35031.39, 23474519.886],
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[1625097600000, 35031.39, 48168.6, 29242.24, 41448.11, 16932491.175],
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[1627776000000, 41448.1, 50600.0, 37291.0, 47150.32, 13645800.254],
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[1630454400000, 47150.32, 52950.0, 39503.58, 43796.57, 10734742.869],
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[1633046400000, 43799.49, 67150.0, 43260.01, 61348.61, 9111112.847],
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[1635724800000, 61347.14, 69198.7, 53245.0, 56975.0, 7111424.463],
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[1638316800000, 56978.06, 59100.0, 40888.89, 46210.56, 8404449.024],
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[1640995200000, 46210.57, 48000.0, 32853.83, 38439.04, 11047479.277],
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[1643673600000, 38439.04, 45847.5, 34303.7, 43155.0, 10910339.91],
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[1646092800000, 43155.0, 48200.0, 37134.0, 45506.0, 10459721.586],
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[1648771200000, 45505.9, 47448.0, 37550.0, 37614.5, 8463568.862],
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[1651363200000, 37614.4, 40071.7, 26631.0, 31797.8, 14463715.774],
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[1654041600000, 31797.9, 31986.1, 17593.2, 19923.5, 20710810.306],
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[1656633600000, 19923.3, 24700.0, 18780.1, 23290.1, 20582518.513],
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[1659312000000, 23290.1, 25200.0, 19508.0, 20041.5, 17221921.557],
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[1661990400000, 20041.4, 22850.0, 18084.3, 19411.7, 21935261.414],
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[1664582400000, 19411.6, 21088.0, 17917.8, 20482.0, 16625843.584],
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[1667260800000, 20482.1, 21473.7, 15443.2, 17153.3, 18460614.013],
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[1669852800000, 17153.4, 18400.0, 16210.0, 16537.6, 9702408.711],
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[1672531200000, 16537.5, 23962.7, 16488.0, 23119.4, 14732180.645],
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[1675209600000, 23119.5, 25347.6, 21338.0, 23129.6, 15025197.415],
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[1677628800000, 23129.7, 29184.8, 19521.6, 28454.9, 23317458.541],
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[1680307200000, 28454.8, 31059.0, 26919.3, 29223.0, 14654208.219],
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[1682899200000, 29223.0, 29840.0, 25751.0, 27201.1, 13328157.284],
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[1685577600000, 27201.1, 31500.0, 24777.0, 30460.2, 14099299.273],
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[1688169600000, 30460.2, 31850.0, 28830.0, 29338.8, 8760361.377]
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]
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data = ohlcv_to_dataframe(ticks, '1M', pair="UNITTEST/USDT",
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fill_missing=False, drop_incomplete=False)
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assert len(data) == len(ticks)
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assert data.iloc[0]['date'].strftime('%Y-%m-%d') == '2019-09-01'
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assert data.iloc[-1]['date'].strftime('%Y-%m-%d') == '2023-07-01'
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# Test with filling missing data
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data = ohlcv_to_dataframe(ticks, '1M', pair="UNITTEST/USDT",
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fill_missing=True, drop_incomplete=False)
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assert len(data) == len(ticks)
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assert data.iloc[0]['date'].strftime('%Y-%m-%d') == '2019-09-01'
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assert data.iloc[-1]['date'].strftime('%Y-%m-%d') == '2023-07-01'
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def test_ohlcv_drop_incomplete(caplog):
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timeframe = '1d'
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ticks = [
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[
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1559750400000, # 2019-06-04
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8.794e-05, # open
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8.948e-05, # high
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8.794e-05, # low
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8.88e-05, # close
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2255, # volume (in quote currency)
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],
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[
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1559836800000, # 2019-06-05
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8.88e-05,
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8.942e-05,
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8.88e-05,
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8.893e-05,
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9911,
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],
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[
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1559923200000, # 2019-06-06
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8.891e-05,
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8.893e-05,
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8.875e-05,
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8.877e-05,
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2251
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],
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[
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1560009600000, # 2019-06-07
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8.877e-05,
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8.883e-05,
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8.895e-05,
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8.817e-05,
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123551
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]
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]
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caplog.set_level(logging.DEBUG)
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data = ohlcv_to_dataframe(ticks, timeframe, pair="UNITTEST/BTC",
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fill_missing=False, drop_incomplete=False)
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assert len(data) == 4
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assert not log_has("Dropping last candle", caplog)
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# Drop last candle
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data = ohlcv_to_dataframe(ticks, timeframe, pair="UNITTEST/BTC",
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fill_missing=False, drop_incomplete=True)
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assert len(data) == 3
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assert log_has("Dropping last candle", caplog)
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def test_trim_dataframe(testdatadir) -> None:
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data = load_data(
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datadir=testdatadir,
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timeframe='1m',
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pairs=['UNITTEST/BTC']
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)['UNITTEST/BTC']
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min_date = int(data.iloc[0]['date'].timestamp())
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max_date = int(data.iloc[-1]['date'].timestamp())
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data_modify = data.copy()
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# Remove first 30 minutes (1800 s)
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tr = TimeRange('date', None, min_date + 1800, 0)
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data_modify = trim_dataframe(data_modify, tr)
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assert not data_modify.equals(data)
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assert len(data_modify) < len(data)
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assert len(data_modify) == len(data) - 30
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assert all(data_modify.iloc[-1] == data.iloc[-1])
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assert all(data_modify.iloc[0] == data.iloc[30])
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data_modify = data.copy()
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tr = TimeRange('date', None, min_date + 1800, 0)
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# Remove first 20 candles - ignores min date
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data_modify = trim_dataframe(data_modify, tr, startup_candles=20)
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assert not data_modify.equals(data)
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assert len(data_modify) < len(data)
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assert len(data_modify) == len(data) - 20
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assert all(data_modify.iloc[-1] == data.iloc[-1])
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assert all(data_modify.iloc[0] == data.iloc[20])
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data_modify = data.copy()
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# Remove last 30 minutes (1800 s)
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tr = TimeRange(None, 'date', 0, max_date - 1800)
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data_modify = trim_dataframe(data_modify, tr)
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assert not data_modify.equals(data)
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assert len(data_modify) < len(data)
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assert len(data_modify) == len(data) - 30
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assert all(data_modify.iloc[0] == data.iloc[0])
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assert all(data_modify.iloc[-1] == data.iloc[-31])
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data_modify = data.copy()
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# Remove first 25 and last 30 minutes (1800 s)
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tr = TimeRange('date', 'date', min_date + 1500, max_date - 1800)
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data_modify = trim_dataframe(data_modify, tr)
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assert not data_modify.equals(data)
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assert len(data_modify) < len(data)
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assert len(data_modify) == len(data) - 55
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# first row matches 25th original row
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assert all(data_modify.iloc[0] == data.iloc[25])
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def test_trades_remove_duplicates(trades_history):
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trades_history1 = trades_history * 3
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assert len(trades_history1) == len(trades_history) * 3
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res = trades_remove_duplicates(trades_history1)
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assert len(res) == len(trades_history)
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for i, t in enumerate(res):
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assert t == trades_history[i]
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def test_trades_dict_to_list(fetch_trades_result):
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res = trades_dict_to_list(fetch_trades_result)
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assert isinstance(res, list)
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assert isinstance(res[0], list)
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for i, t in enumerate(res):
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assert t[0] == fetch_trades_result[i]['timestamp']
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assert t[1] == fetch_trades_result[i]['id']
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assert t[2] == fetch_trades_result[i]['type']
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assert t[3] == fetch_trades_result[i]['side']
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assert t[4] == fetch_trades_result[i]['price']
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assert t[5] == fetch_trades_result[i]['amount']
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assert t[6] == fetch_trades_result[i]['cost']
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def test_convert_trades_format(default_conf, testdatadir, tmpdir):
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tmpdir1 = Path(tmpdir)
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files = [{'old': tmpdir1 / "XRP_ETH-trades.json.gz",
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'new': tmpdir1 / "XRP_ETH-trades.json"},
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{'old': tmpdir1 / "XRP_OLD-trades.json.gz",
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'new': tmpdir1 / "XRP_OLD-trades.json"},
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]
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for file in files:
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copyfile(testdatadir / file['old'].name, file['old'])
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assert not file['new'].exists()
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default_conf['datadir'] = tmpdir1
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convert_trades_format(default_conf, convert_from='jsongz',
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convert_to='json', erase=False)
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for file in files:
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assert file['new'].exists()
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assert file['old'].exists()
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# Remove original file
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file['old'].unlink()
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# Convert back
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convert_trades_format(default_conf, convert_from='json',
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convert_to='jsongz', erase=True)
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for file in files:
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assert file['old'].exists()
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assert not file['new'].exists()
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_clean_test_file(file['old'])
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if file['new'].exists():
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file['new'].unlink()
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@pytest.mark.parametrize('file_base,candletype', [
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(['XRP_ETH-5m', 'XRP_ETH-1m'], CandleType.SPOT),
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(['UNITTEST_USDT_USDT-1h-mark', 'XRP_USDT_USDT-1h-mark'], CandleType.MARK),
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(['XRP_USDT_USDT-1h-futures'], CandleType.FUTURES),
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])
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def test_convert_ohlcv_format(default_conf, testdatadir, tmpdir, file_base, candletype):
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tmpdir1 = Path(tmpdir)
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prependix = '' if candletype == CandleType.SPOT else 'futures/'
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files_orig = []
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files_temp = []
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files_new = []
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for file in file_base:
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file_orig = testdatadir / f"{prependix}{file}.feather"
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file_temp = tmpdir1 / f"{prependix}{file}.feather"
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file_new = tmpdir1 / f"{prependix}{file}.json.gz"
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IDataHandler.create_dir_if_needed(file_temp)
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copyfile(file_orig, file_temp)
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files_orig.append(file_orig)
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files_temp.append(file_temp)
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files_new.append(file_new)
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default_conf['datadir'] = tmpdir1
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default_conf['candle_types'] = [candletype]
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if candletype == CandleType.SPOT:
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default_conf['pairs'] = ['XRP/ETH', 'XRP/USDT', 'UNITTEST/USDT']
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else:
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default_conf['pairs'] = ['XRP/ETH:ETH', 'XRP/USDT:USDT', 'UNITTEST/USDT:USDT']
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default_conf['timeframes'] = ['1m', '5m', '1h']
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assert not file_new.exists()
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convert_ohlcv_format(
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default_conf,
|
|
convert_from='feather',
|
|
convert_to='jsongz',
|
|
erase=False,
|
|
)
|
|
for file in (files_temp + files_new):
|
|
assert file.exists()
|
|
|
|
# Remove original files
|
|
for file in (files_temp):
|
|
file.unlink()
|
|
# Convert back
|
|
convert_ohlcv_format(
|
|
default_conf,
|
|
convert_from='jsongz',
|
|
convert_to='feather',
|
|
erase=True,
|
|
)
|
|
for file in (files_temp):
|
|
assert file.exists()
|
|
for file in (files_new):
|
|
assert not file.exists()
|
|
|
|
|
|
def test_reduce_dataframe_footprint():
|
|
data = generate_test_data('15m', 40)
|
|
|
|
data['open_copy'] = data['open']
|
|
data['close_copy'] = data['close']
|
|
data['close_copy'] = data['close']
|
|
|
|
assert data['open'].dtype == np.float64
|
|
assert data['open_copy'].dtype == np.float64
|
|
assert data['close_copy'].dtype == np.float64
|
|
|
|
df2 = reduce_dataframe_footprint(data)
|
|
|
|
# Does not modify original dataframe
|
|
assert data['open'].dtype == np.float64
|
|
assert data['open_copy'].dtype == np.float64
|
|
assert data['close_copy'].dtype == np.float64
|
|
|
|
# skips ohlcv columns
|
|
assert df2['open'].dtype == np.float64
|
|
assert df2['high'].dtype == np.float64
|
|
assert df2['low'].dtype == np.float64
|
|
assert df2['close'].dtype == np.float64
|
|
assert df2['volume'].dtype == np.float64
|
|
|
|
# Changes dtype of returned dataframe
|
|
assert df2['open_copy'].dtype == np.float32
|
|
assert df2['close_copy'].dtype == np.float32
|