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wickra/bindings/python/tests/test_lifecycle.py
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Python

"""Tests for the indicator lifecycle methods: reset, is_ready, warmup_period, repr."""
from __future__ import annotations
import numpy as np
import pytest
import wickra as ta
SCALAR_INDICATORS = [
(ta.SMA, (14,)),
(ta.EMA, (14,)),
(ta.WMA, (14,)),
(ta.RSI, (14,)),
(ta.MACD, ()),
(ta.BollingerBands, ()),
]
@pytest.mark.parametrize("cls, args", SCALAR_INDICATORS)
def test_is_ready_transitions_after_warmup(cls, args):
ind = cls(*args)
assert not ind.is_ready()
series = np.linspace(1.0, 200.0, 200)
ind.batch(series)
assert ind.is_ready()
@pytest.mark.parametrize("cls, args", SCALAR_INDICATORS)
def test_reset_returns_to_initial_state(cls, args):
ind = cls(*args)
ind.batch(np.linspace(1.0, 200.0, 200))
assert ind.is_ready()
ind.reset()
assert not ind.is_ready()
@pytest.mark.parametrize(
"cls, args, period",
[
(ta.SMA, (14,), 14),
(ta.EMA, (14,), 14),
(ta.WMA, (14,), 14),
(ta.RSI, (14,), 15),
(ta.BollingerBands, (20, 2.0), 20),
],
)
def test_warmup_period(cls, args, period):
assert cls(*args).warmup_period() == period
def test_repr_contains_class_and_parameters():
assert "SMA" in repr(ta.SMA(14))
assert "14" in repr(ta.SMA(14))
assert "BollingerBands" in repr(ta.BollingerBands(20, 2.0))
def test_constructor_rejects_zero_period():
with pytest.raises(ValueError):
ta.SMA(0)
with pytest.raises(ValueError):
ta.RSI(0)
def test_macd_rejects_fast_geq_slow():
with pytest.raises(ValueError):
ta.MACD(fast=26, slow=12, signal=9)
def test_bollinger_rejects_non_positive_multiplier():
with pytest.raises(ValueError):
ta.BollingerBands(20, 0.0)
with pytest.raises(ValueError):
ta.BollingerBands(20, -1.0)
def test_candle_dict_input_supported():
atr = ta.ATR(2)
atr.update({"open": 10.0, "high": 11.0, "low": 9.0, "close": 10.5, "volume": 1.0})
v = atr.update({"open": 10.5, "high": 12.0, "low": 10.0, "close": 11.0, "volume": 1.0})
assert v is not None
def test_candle_tuple_input_supported():
atr = ta.ATR(2)
atr.update((10.0, 11.0, 9.0, 10.5, 1.0, 0))
v = atr.update((10.5, 12.0, 10.0, 11.0, 1.0, 1))
assert v is not None
def test_initial_balance_reset_unlocks():
ib = ta.InitialBalance(2)
assert not ib.is_ready()
ib.update((101.0, 102.0, 100.0, 101.0, 0.0, 0))
ib.update((102.0, 103.0, 101.0, 102.0, 0.0, 1))
assert ib.is_ready()
assert ib.is_locked()
ib.reset()
assert not ib.is_ready()
assert not ib.is_locked()
def test_opening_range_reset_unlocks():
or_ind = ta.OpeningRange(2)
or_ind.update((101.0, 102.0, 100.0, 101.0, 0.0, 0))
or_ind.update((102.0, 103.0, 101.0, 102.0, 0.0, 1))
assert or_ind.is_locked()
or_ind.reset()
assert not or_ind.is_locked()
def test_value_area_warmup_equals_period():
assert ta.ValueArea(20, 50, 0.70).warmup_period() == 20
assert ta.ValueArea(10, 30, 0.80).warmup_period() == 10
def test_ehlers_indicators_lifecycle():
# Spot-check a few Family-10 entries beyond what test_new_indicators covers.
series = np.linspace(1.0, 200.0, 200) + np.sin(np.arange(200) * 0.3) * 5.0
for ind in [
ta.SuperSmoother(10),
ta.FisherTransform(10),
ta.MAMA(),
ta.HilbertDominantCycle(),
ta.SineWave(),
]:
assert not ind.is_ready()
ind.batch(series)
assert ind.is_ready()
ind.reset()
assert not ind.is_ready()
def test_orderbook_lifecycle():
snapshot = ([100.0], [1.0], [101.0], [1.0])
for ind in [
ta.OrderBookImbalanceTop1(),
ta.OrderBookImbalanceTopN(3),
ta.OrderBookImbalanceFull(),
ta.Microprice(),
ta.QuotedSpread(),
ta.DepthSlope(),
]:
assert ind.warmup_period() == 1
assert not ind.is_ready()
ind.update(*snapshot)
assert ind.is_ready()
ind.reset()
assert not ind.is_ready()
def test_orderbook_topn_repr():
assert repr(ta.OrderBookImbalanceTopN(5)) == "OrderBookImbalanceTopN(levels=5)"
def test_tradeflow_lifecycle():
for ind in [ta.SignedVolume(), ta.CumulativeVolumeDelta()]:
assert ind.warmup_period() == 1
assert not ind.is_ready()
ind.update(100.0, 1.0, True)
assert ind.is_ready()
ind.reset()
assert not ind.is_ready()
def test_trade_imbalance_lifecycle_and_repr():
ti = ta.TradeImbalance(3)
assert ti.warmup_period() == 3
assert not ti.is_ready()
for _ in range(3):
ti.update(100.0, 1.0, True)
assert ti.is_ready()
ti.reset()
assert not ti.is_ready()
assert repr(ta.TradeImbalance(4)) == "TradeImbalance(window=4)"
def test_effective_spread_lifecycle():
es = ta.EffectiveSpread()
assert es.warmup_period() == 1
assert not es.is_ready()
es.update(100.05, 1.0, True, 100.0)
assert es.is_ready()
es.reset()
assert not es.is_ready()
def test_realized_spread_lifecycle_and_repr():
rs = ta.RealizedSpread(3)
assert rs.warmup_period() == 4
assert not rs.is_ready()
for _ in range(4):
rs.update(100.0, 1.0, True, 100.0)
assert rs.is_ready()
rs.reset()
assert not rs.is_ready()
assert repr(ta.RealizedSpread(5)) == "RealizedSpread(horizon=5)"
def test_kyles_lambda_lifecycle_and_repr():
kl = ta.KylesLambda(3)
assert kl.warmup_period() == 4
assert not kl.is_ready()
for i in range(4):
kl.update(100.0 + i, 1.0 + (i % 2), i % 2 == 0, 100.0 + i)
assert kl.is_ready()
kl.reset()
assert not kl.is_ready()
assert repr(ta.KylesLambda(7)) == "KylesLambda(window=7)"
def test_footprint_lifecycle_and_repr():
fp = ta.Footprint(0.5)
assert fp.warmup_period() == 1
assert not fp.is_ready()
fp.update(100.0, 1.0, True)
assert fp.is_ready()
fp.reset()
assert not fp.is_ready()
assert repr(ta.Footprint(0.25)) == "Footprint(tick_size=0.25)"