`cmd_double_transit_pac` placed the `D9_{N}宫` target on the D9 lagna sign
and the `D9_{lord}(宫主)` target on that planet's D1 longitude. Both now sit
on D9 signs (D9 house-N sign; the lord's navamsa sign), built in one
testable helper. Target names, D1 and Chandra Lagna layers are unchanged
(pre-fix golden, byte-identical). Evidence-card golden regenerated with the
capture script (one public chart: double-transit conclusions 9 -> 10).
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_017eEAG8HD3mm8gsKXgk8uU8
177 lines
7.3 KiB
Python
177 lines
7.3 KiB
Python
"""BUG-1060: Double Transit PAC D9 targets check the D9 signs their labels name.
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Real engine runs on the three public AA charts of the evidence-card research
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(`consult_evidence_card_lib.load_public_charts`, raman ayanamsa, mean nodes,
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reference date fixed in the library). The D1 and Chandra Lagna layers are
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compared with a golden captured from the engine before the fix (base
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5671039a); the fix only touches the D9 layer.
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Regenerate the golden (only when the D1 / CL layer is meant to change):
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PYTHONHASHSEED=0 python tests/test_double_transit_d9_targets.py --capture
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"""
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from __future__ import annotations
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import json
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import sys
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from pathlib import Path
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from types import SimpleNamespace
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import pytest
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ROOT = Path(__file__).resolve().parents[1]
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for path in (ROOT, ROOT / "scripts", ROOT / "scripts" / "research"):
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if str(path) not in sys.path:
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sys.path.insert(0, str(path))
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import jyotish_engine as engine # noqa: E402
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from consult_evidence_card_lib import load_public_charts # noqa: E402
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GOLDEN = ROOT / "tests" / "fixtures" / "double_transit_d1_cl_golden.json"
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HOUSES = range(1, 13)
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def _args(chart: dict, house: int) -> SimpleNamespace:
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body = chart["body"]
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return SimpleNamespace(
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year=body["year"], month=body["month"], day=body["day"], hour=body["hour"], minute=body["minute"],
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second=0, lat=body["lat"], lon=body["lon"], tz=float(body["tz"]), node_mode=body["node_mode"],
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ayanamsa=body["ayanamsa"], date=body["today"], house=house,
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)
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def _natal(chart: dict):
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natal_chart, asc_idx, _, _ = engine._compute_chart_from_args(_args(chart, 7))
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ascendant = natal_chart["ascendant"]
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asc_deg = ascendant.get("lon", ascendant.get("degree", 0))
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return natal_chart["planets"], asc_idx, asc_deg
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def _d9_targets(chart: dict, house: int):
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natal, asc_idx, asc_deg = _natal(chart)
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event_lord = engine.SIGN_LORDS[engine.SIGNS[(asc_idx + house - 1) % 12]]
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ll_name = engine.SIGN_LORDS[engine.SIGNS[asc_idx]]
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return engine._double_transit_d9_targets(asc_deg, natal, house, event_lord, ll_name), natal, asc_deg
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def _d1_cl_layers() -> dict:
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out = {}
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for chart in load_public_charts(ROOT):
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for house in HOUSES:
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result = engine.cmd_double_transit_pac(_args(chart, house))
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stats = result["stats"]
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out[f"{chart['id']}|{house}"] = {
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"d1": result["d1"],
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"cl": result["cl"],
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"d1_cl_double_transit": [row for row in result["double_transit"] if row["layer"] in ("D1", "CL")],
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"stats": {key: value for key, value in stats.items() if key.startswith(("d1_", "cl_")) or key == "chandra_lagna"},
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}
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return out
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@pytest.fixture(scope="module")
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def charts() -> list[dict]:
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return load_public_charts(ROOT)
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def test_quick_gate_runs_this_file() -> None:
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import run_quality_gate
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assert "tests/test_double_transit_d9_targets.py" in run_quality_gate.CORE_PYTEST_TARGETS
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def test_d9_house_target_is_the_d9_house_sign_not_the_d9_lagna(charts) -> None:
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for chart in charts:
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for house in range(2, 13):
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(d9_asc_idx, targets), _, _ = _d9_targets(chart, house)
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house_si = (d9_asc_idx + house - 1) % 12
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label = f"D9_{house}宫({engine.SIGNS[house_si]})"
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assert targets[label] == house_si * 30 + 15, (chart["id"], house)
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assert targets[label] != d9_asc_idx * 30 + 15, (chart["id"], house)
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def test_d9_house_1_target_is_still_the_d9_lagna(charts) -> None:
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for chart in charts:
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(d9_asc_idx, targets), _, asc_deg = _d9_targets(chart, 1)
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assert d9_asc_idx == engine._navamsa_idx(asc_deg)
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assert targets[f"D9_1宫({engine.SIGNS[d9_asc_idx]})"] == d9_asc_idx * 30 + 15
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def test_d9_lord_targets_are_navamsa_signs(charts) -> None:
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for chart in charts:
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for house in HOUSES:
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(d9_asc_idx, targets), natal, _ = _d9_targets(chart, house)
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d9_lord = engine.SIGN_LORDS[engine.SIGNS[(d9_asc_idx + house - 1) % 12]]
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lord_si = engine._navamsa_idx(natal[d9_lord]["degree"])
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# Before BUG-1060 this target was the lord's D1 degree.
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assert targets[f"D9_{d9_lord}(宫主)"] == lord_si * 30 + 15, (chart["id"], house)
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def test_command_checks_the_helper_targets_in_the_d9_frame(charts, monkeypatch) -> None:
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calls = []
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original = engine._check_pac
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def recording(planet_name, planet_lon, target_lon, asc_idx):
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calls.append((planet_name, target_lon, asc_idx))
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return original(planet_name, planet_lon, target_lon, asc_idx)
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monkeypatch.setattr(engine, "_check_pac", recording)
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for chart in charts:
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for house in (1, 7, 10):
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(d9_asc_idx, targets), _, _ = _d9_targets(chart, house)
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calls.clear()
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engine.cmd_double_transit_pac(_args(chart, house))
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for planet in ("Jupiter", "Saturn"):
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seen = [lon for name, lon, idx in calls if name == planet]
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# d1 (4 targets) → d9 → cl (2), in insertion order, per transit planet; for house 1
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# the D1 house lord is the lagna lord, so the D9 layer has 3 distinct targets.
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assert seen[4:4 + len(targets)] == list(targets.values()), (chart["id"], house, planet)
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assert {idx for name, _, idx in calls if name == planet} >= {d9_asc_idx}
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def test_public_chart_seventh_house_d9_row(charts) -> None:
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"""The BUG-1060 reproduction: Saturn's 10th aspect was on the D9 lagna, not on D9 house 7."""
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chart = next(item for item in charts if item["id"] == "steve_jobs")
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result = engine.cmd_double_transit_pac(_args(chart, 7))
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assert result["stats"]["d9_ascendant"] == "Capricorn"
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label = "D9_7宫(Cancer)"
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assert label not in result["d9"]["saturn"]
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assert result["d9"]["jupiter"][label] == [{"type": "Position", "desc": "同宫(7宫)"}]
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assert "D9_Moon(宫主)" not in result["d9"]["saturn"]
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def test_d1_and_chandra_lagna_layers_match_the_pre_fix_golden() -> None:
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golden = json.loads(GOLDEN.read_text(encoding="utf-8"))
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assert golden["provenance"]["charts"] == [chart["id"] for chart in load_public_charts(ROOT)]
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assert json.dumps(_d1_cl_layers(), ensure_ascii=False, sort_keys=True) == json.dumps(
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golden["layers"], ensure_ascii=False, sort_keys=True,
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)
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def _capture() -> None:
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import os
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if os.environ.get("PYTHONHASHSEED") != "0":
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raise SystemExit("Set PYTHONHASHSEED=0 before starting this process (ERR-111).")
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charts = load_public_charts(ROOT)
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payload = {
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"provenance": {
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"generator": "tests/test_double_transit_d9_targets.py --capture (jyotish_engine.cmd_double_transit_pac)",
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"charts": [chart["id"] for chart in charts],
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"reference_date": charts[0]["body"]["today"],
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"ayanamsa": charts[0]["body"]["ayanamsa"],
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"node_mode": charts[0]["body"]["node_mode"],
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"houses": list(HOUSES),
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"note": "D1 / Chandra Lagna layers only; captured before the BUG-1060 D9 fix and unchanged by it.",
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},
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"layers": _d1_cl_layers(),
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}
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GOLDEN.parent.mkdir(parents=True, exist_ok=True)
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GOLDEN.write_text(json.dumps(payload, ensure_ascii=False, sort_keys=True, indent=1) + "\n", encoding="utf-8")
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print(f"wrote {GOLDEN.relative_to(ROOT)}")
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if __name__ == "__main__" and "--capture" in sys.argv:
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_capture()
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