import subprocess import sys from pathlib import Path import numpy as np import pytest class TestOptionsAnalytics: def test_black_scholes_price_scalar(self): from ferro_ta.analysis.options import black_scholes_price price = black_scholes_price( 100.0, 100.0, 0.05, 1.0, 0.2, option_type="call", ) assert price == pytest.approx(10.4506, rel=1e-4) def test_black_76_price_vectorized(self): from ferro_ta.analysis.options import black_76_price price = black_76_price( np.array([100.0, 105.0]), np.array([100.0, 100.0]), 0.03, 1.0, np.array([0.2, 0.25]), option_type="call", ) assert isinstance(price, np.ndarray) assert price.shape == (2,) assert np.all(price > 0.0) def test_greeks_and_iv_recovery(self): from ferro_ta.analysis.options import greeks, implied_volatility, option_price price = option_price( 100.0, 100.0, 0.05, 1.0, 0.2, option_type="call", model="bsm", ) iv = implied_volatility( price, 100.0, 100.0, 0.05, 1.0, option_type="call", model="bsm", ) result = greeks( 100.0, 100.0, 0.05, 1.0, 0.2, option_type="call", model="bsm", ) assert iv == pytest.approx(0.2, rel=1e-6) assert result.delta == pytest.approx(0.6368, rel=1e-3) assert result.gamma > 0.0 assert result.vega > 0.0 def test_smile_and_chain_helpers(self): from ferro_ta.analysis.options import ( label_moneyness, select_strike, smile_metrics, term_structure_slope, ) strikes = np.array([80.0, 90.0, 100.0, 110.0, 120.0]) vols = np.array([0.30, 0.25, 0.20, 0.22, 0.27]) metrics = smile_metrics(strikes, vols, 100.0, 0.5) labels = label_moneyness(strikes, 100.0, option_type="call") assert metrics.atm_iv == pytest.approx(0.20, rel=1e-6) assert metrics.skew_slope < 0.0 assert labels.tolist() == ["ITM", "ITM", "ATM", "OTM", "OTM"] assert select_strike(strikes, 101.0, selector="ATM") == 100.0 assert ( select_strike(strikes, 101.0, option_type="call", selector="OTM2") == 120.0 ) assert select_strike( strikes, 100.0, selector="DELTA0.25", option_type="call", volatilities=vols, time_to_expiry=0.5, ) in set(strikes.tolist()) assert term_structure_slope([0.1, 0.5, 1.0], [0.18, 0.20, 0.22]) > 0.0 class TestFuturesAnalytics: def test_basis_and_curve_helpers(self): from ferro_ta.analysis.futures import ( annualized_basis, basis, calendar_spreads, carry_spread, curve_summary, implied_carry_rate, synthetic_forward, ) assert basis(100.0, 103.0) == pytest.approx(3.0) assert annualized_basis(100.0, 103.0, 0.25) > 0.0 assert implied_carry_rate(100.0, 103.0, 0.25) > 0.0 assert carry_spread(100.0, 103.0, 0.02, 0.25) > -1.0 assert synthetic_forward(8.0, 5.0, 100.0, 0.02, 0.5) > 100.0 assert np.allclose(calendar_spreads([100.0, 101.0, 103.0]), [1.0, 2.0]) summary = curve_summary(100.0, [0.1, 0.5, 1.0], [101.0, 102.0, 104.0]) assert summary.is_contango is True assert summary.slope > 0.0 def test_roll_helpers(self): from ferro_ta.analysis.futures import ( back_adjusted_continuous_contract, ratio_adjusted_continuous_contract, roll_yield, weighted_continuous_contract, ) front = np.array([100.0, 101.0, 102.0, 103.0]) nxt = np.array([101.0, 102.0, 103.0, 104.0]) weights = np.array([0.0, 0.25, 0.75, 1.0]) weighted = weighted_continuous_contract(front, nxt, weights) back_adjusted = back_adjusted_continuous_contract(front, nxt, weights) ratio_adjusted = ratio_adjusted_continuous_contract(front, nxt, weights) assert weighted.shape == front.shape assert back_adjusted.shape == front.shape assert ratio_adjusted.shape == front.shape assert roll_yield(100.0, 102.0, 30.0 / 365.0) > 0.0 class TestStrategyAndPayoff: def test_strategy_schema_and_preset(self): from ferro_ta.analysis.options_strategy import ( DerivativesStrategy, ExpirySelector, ExpirySelectorKind, LegPreset, StrategyLeg, StrikeSelector, StrikeSelectorKind, build_strategy_preset, ) preset = build_strategy_preset( LegPreset.STRADDLE, name="ATM Straddle", underlying="NIFTY", expiry_selector=ExpirySelector(ExpirySelectorKind.CURRENT_WEEK), ) custom = DerivativesStrategy( name="Custom Single", legs=( StrategyLeg( "NIFTY", ExpirySelector(ExpirySelectorKind.CURRENT_WEEK), StrikeSelector( StrikeSelectorKind.EXPLICIT, explicit_strike=22000.0 ), "call", ), ), ) assert len(preset.legs) == 2 assert custom.to_dict()["name"] == "Custom Single" def test_payoff_and_aggregate_greeks(self): from ferro_ta.analysis.derivatives_payoff import ( PayoffLeg, aggregate_greeks, strategy_payoff, ) spot_grid = np.array([90.0, 100.0, 110.0]) legs = [ PayoffLeg( instrument="option", side="long", option_type="call", strike=100.0, premium=5.0, volatility=0.2, time_to_expiry=0.5, ), PayoffLeg( instrument="option", side="short", option_type="call", strike=110.0, premium=2.0, volatility=0.22, time_to_expiry=0.5, ), PayoffLeg(instrument="future", side="long", entry_price=100.0), ] payoff = strategy_payoff(spot_grid, legs=legs) greeks = aggregate_greeks(100.0, legs=legs) assert payoff.shape == spot_grid.shape assert payoff[1] == pytest.approx(-3.0) assert greeks.delta > 0.0 assert greeks.gamma > 0.0 class TestDerivativesBenchmarking: def test_derivatives_benchmark_smoke(self, tmp_path): root = Path(__file__).resolve().parents[2] script = root / "benchmarks" / "bench_derivatives_compare.py" output_path = tmp_path / "derivatives_benchmark.json" completed = subprocess.run( [ sys.executable, str(script), "--sizes", "32", "--accuracy-size", "16", "--json", str(output_path), ], cwd=root, check=False, capture_output=True, text=True, ) assert completed.returncode == 0, completed.stdout + completed.stderr assert output_path.is_file() payload = output_path.read_text(encoding="utf-8") assert '"accuracy"' in payload assert '"speed"' in payload assert '"provider": "ferro_ta"' in payload