| |
| """Complete a hand-authored Track B timeline source into a full per-segment GT. |
| |
| The human authors only a partial skeleton (present + semantic events); this |
| script *completes* it by deriving every memory label (op/gap/probe/forbidden) |
| that would be error-prone to hand-write at 50-200 segments. |
| |
| Author layer (gt_source/<story>.json): a human writes only |
| * entities + state machines + lookalike pairs, and |
| * a list of scenes, each carrying `present` (who is on screen), hand-written |
| 5s `actions` (one prose line == one segment), optional `lookalike_present`, |
| and semantic `events` (state_change / remove). |
| |
| This builder derives everything a human would otherwise hand-label and get |
| wrong at 50-200 segments: |
| * memory_op per (segment, entity): introduce / recall / recall_after_gap / |
| transform / persist / forbid, |
| * gap (segments since last appearance) and last_seen, |
| * memory_probes per segment, |
| * forbidden roster entries (permanent removals + absent-lookalike twins + |
| auto-detected reference_indirect where a removed entity's name still |
| appears in the prose), |
| * a manifest with probe/op counts, gap histogram, longest gap, etc. |
| |
| It ONLY propagates and classifies; it never invents semantics. The human must |
| author the state changes and removals. The builder then ENFORCES the memory |
| rules and fails loudly on violations: |
| * every forbid must be grounded by a prior removal event, |
| * every persist must follow a prior transform, |
| * a removed entity must never re-enter `present`, |
| * state_change targets must exist in the entity's state machine. |
| |
| Design decisions (documented, not "truth"): |
| * gap_long_threshold: gap (segments absent) >= threshold => recall_after_gap. |
| * avoidance_probe_window: mark deprecation_avoidance probe only within this |
| many segments after a removal (plus always at reference_indirect segments), |
| so the manifest highlights avoidance tests instead of tagging every tail |
| segment. |
| |
| Usage: |
| python complete_gt.py # all gt_source/*.json -> gt/ |
| python complete_gt.py --story 0001_lighthouse_keeper |
| """ |
| from __future__ import annotations |
|
|
| import argparse |
| import json |
| from pathlib import Path |
| from typing import Any |
|
|
| HERE = Path(__file__).resolve().parent.parent |
| SRC_DIR = HERE / "gt_source" |
| OUT_DIR = HERE / "gt" |
|
|
| DEFAULT_GAP_LONG = 30 |
| DEFAULT_AVOID_WINDOW = 4 |
|
|
|
|
| class BuildError(Exception): |
| pass |
|
|
|
|
| def _segid(idx: int) -> str: |
| return f"seg_{idx + 1:03d}" |
|
|
|
|
| def _present_pairs(present: list) -> list[tuple[str, dict[str, Any]]]: |
| """A `present` item is either an eid string or an object with `eid` plus |
| per-(segment,entity) metadata: `confusable_with` (false-friend / C), |
| `count` (quantity memory / E), `anchor` (temporal/intent recall / A).""" |
| out: list[tuple[str, dict[str, Any]]] = [] |
| for it in present: |
| if isinstance(it, str): |
| out.append((it, {})) |
| else: |
| out.append((it["eid"], {k: v for k, v in it.items() if k != "eid"})) |
| return out |
|
|
|
|
| def _flatten(src: dict[str, Any]) -> list[dict[str, Any]]: |
| """Turn scenes into a flat ordered segment list (no memory labels yet). |
| |
| A scene's `actions` item may be either a plain string (uses scene-level |
| `present` / `lookalike_present`) or an object |
| {"action": str, "present"?: [...], "events"?: [...], "lookalike_present"?: {...}} |
| for per-segment control (mid-scene intercuts, deaths, state changes). |
| Scene-level `events` with an integer `at` (local index) are still supported |
| and merged with any per-item events. |
| """ |
| segs: list[dict[str, Any]] = [] |
| for scene in src.get("scenes", []): |
| actions = scene.get("actions", []) |
| if not actions: |
| raise BuildError(f"scene {scene.get('id')} has no actions") |
| present_default = list(scene.get("present", [])) |
| scene_lp = scene.get("lookalike_present") |
| n = len(actions) |
| ev_by_local: dict[int, list[dict[str, Any]]] = {} |
| for ev in scene.get("events", []): |
| at = int(ev.get("at", 0)) |
| if not (0 <= at < n): |
| raise BuildError( |
| f"scene {scene['id']} event at={at} out of range (0..{n - 1})") |
| ev_by_local.setdefault(at, []).append(ev) |
| for local, item in enumerate(actions): |
| if isinstance(item, str): |
| action, present = item, present_default |
| item_events: list[dict[str, Any]] = [] |
| lp = scene_lp |
| else: |
| action = item["action"] |
| present = list(item.get("present", present_default)) |
| item_events = list(item.get("events", [])) |
| lp = item.get("lookalike_present", scene_lp) |
| segs.append({ |
| "scene_id": scene["id"], |
| "action": str(action).strip(), |
| "present": present, |
| "transition": "cut" if local == 0 else "continue", |
| "events": ev_by_local.get(local, []) + item_events, |
| "lookalike_present": lp, |
| }) |
| return segs |
|
|
|
|
| def build(src: dict[str, Any]) -> dict[str, Any]: |
| entities: dict[str, dict[str, Any]] = src.get("entities", {}) |
| state_machines: dict[str, list[str]] = src.get("state_machines", {}) |
| lookalike_pairs: list[dict[str, Any]] = src.get("lookalike_pairs", []) |
| seg_sec = float(src.get("segment_sec", 5.0)) |
| gap_long = int(src.get("gap_long_threshold", DEFAULT_GAP_LONG)) |
| avoid_window = int(src.get("avoidance_probe_window", DEFAULT_AVOID_WINDOW)) |
|
|
| pair_lookup = {tuple(p["pair"]): p for p in lookalike_pairs} |
| errors: list[str] = [] |
| warnings: list[str] = [] |
|
|
| def initial_state(eid: str) -> str | None: |
| e = entities.get(eid, {}) |
| if e.get("initial_state"): |
| return e["initial_state"] |
| if eid in state_machines: |
| return state_machines[eid][0] |
| return None |
|
|
| def appearance_of(eid: str, label: str | None = None) -> str: |
| """Resolve the appearance for an entity in a given state. Stateful entities |
| carry per-state descriptions under ``states``; stateless ones a single |
| ``appearance``. One state == one description; never concatenated.""" |
| e = entities.get(eid, {}) |
| states = e.get("states") |
| if states: |
| if label is None: |
| label = initial_state(eid) |
| return states.get(label, "") |
| return e.get("appearance", "") |
|
|
| flat = _flatten(src) |
|
|
| |
| removed_after: dict[str, int] = {} |
| for i, seg in enumerate(flat): |
| for ev in seg["events"]: |
| if ev["type"] == "remove": |
| removed_after.setdefault(ev["eid"], i) |
| for i, seg in enumerate(flat): |
| for eid, _ in _present_pairs(seg["present"]): |
| if eid in removed_after and i > removed_after[eid]: |
| errors.append( |
| f"{_segid(i)}: removed entity {eid} re-enters present " |
| f"(removed at {_segid(removed_after[eid])})") |
|
|
| last_seen: dict[str, int] = {} |
| current_state: dict[str, str] = {} |
| removal: dict[str, dict[str, Any]] = {} |
|
|
| out_segments: list[dict[str, Any]] = [] |
| op_counts: dict[str, int] = {} |
| probe_counts: dict[str, int] = {} |
| gaps_recorded: list[dict[str, Any]] = [] |
|
|
| for i, seg in enumerate(flat): |
| seg_id = _segid(i) |
| action = seg["action"] |
| present_pairs = _present_pairs(seg["present"]) |
| present_eids = [e for e, _ in present_pairs] |
| probes: set[str] = set() |
|
|
| ev_state: dict[str, str] = {} |
| ev_remove: dict[str, dict[str, Any]] = {} |
| for ev in seg["events"]: |
| if ev["type"] == "state_change": |
| ev_state[ev["eid"]] = ev["to"] |
| elif ev["type"] == "remove": |
| ev_remove[ev["eid"]] = ev |
| else: |
| errors.append(f"{seg_id}: unknown event type {ev['type']!r}") |
|
|
| |
| cast: list[dict[str, Any]] = [] |
| for eid, extras in present_pairs: |
| if eid not in entities: |
| errors.append(f"{seg_id}: present entity {eid} not in registry") |
| continue |
| entry: dict[str, Any] = {"eid": eid, "op": None} |
| st_override = extras.get("state") |
| if st_override is not None and eid in state_machines and st_override not in state_machines[eid]: |
| errors.append( |
| f"{seg_id}: flashback state '{st_override}' not in " |
| f"state_machine[{eid}]={state_machines[eid]}") |
| transforms_here = None |
| if eid in ev_state: |
| transforms_here = ev_state[eid] |
| elif eid in ev_remove and ev_remove[eid].get("shown", True): |
| transforms_here = ev_remove[eid].get("to") |
|
|
| if transforms_here is not None and st_override is None: |
| if eid in state_machines and transforms_here not in state_machines[eid]: |
| errors.append( |
| f"{seg_id}: state '{transforms_here}' not in " |
| f"state_machine[{eid}]={state_machines[eid]}") |
| entry["op"] = "transform" |
| entry["state"] = {"label": transforms_here, |
| "appearance": appearance_of(eid, transforms_here)} |
| current_state[eid] = transforms_here |
| probes.add("state_change") |
| |
| |
| if eid in last_seen: |
| gap = i - last_seen[eid] - 1 |
| entry["gap"] = gap |
| entry["last_seen"] = _segid(last_seen[eid]) |
| if gap >= gap_long: |
| probes.add("long_gap_reappearance") |
| gaps_recorded.append({"eid": eid, "gap": gap, "at": seg_id}) |
| elif eid not in last_seen: |
| entry["op"] = "introduce" |
| probes.add("first_appearance") |
| else: |
| gap = i - last_seen[eid] - 1 |
| changed = eid in current_state and current_state[eid] != initial_state(eid) |
| if st_override is not None: |
| |
| entry["op"] = "recall_after_gap" if gap >= gap_long else "recall" |
| entry["state"] = {"label": st_override, |
| "appearance": appearance_of(eid, st_override), |
| "flashback": True} |
| entry["gap"] = gap |
| entry["last_seen"] = _segid(last_seen[eid]) |
| probes.add("long_gap_reappearance" if gap >= gap_long else "continuity") |
| elif changed: |
| entry["op"] = "persist" |
| entry["state"] = {"label": current_state[eid], |
| "appearance": appearance_of(eid, current_state[eid])} |
| entry["gap"] = gap |
| entry["last_seen"] = _segid(last_seen[eid]) |
| probes.add("persist_state") |
| if gap >= gap_long: |
| probes.add("long_gap_reappearance") |
| elif gap >= gap_long: |
| entry["op"] = "recall_after_gap" |
| entry["gap"] = gap |
| entry["last_seen"] = _segid(last_seen[eid]) |
| probes.add("long_gap_reappearance") |
| else: |
| entry["op"] = "recall" |
| entry["gap"] = gap |
| entry["last_seen"] = _segid(last_seen[eid]) |
| probes.add("continuity") |
| if entry.get("gap") is not None: |
| gaps_recorded.append({"eid": eid, "gap": entry["gap"], "at": seg_id}) |
|
|
| |
| cw = extras.get("confusable_with") |
| if cw is not None: |
| entry["confusable_with"] = cw |
| if cw not in entities: |
| errors.append(f"{seg_id}: {eid} confusable_with unknown {cw}") |
| if entry["op"] == "introduce": |
| probes.add("false_friend") |
| cnt = extras.get("count") |
| if cnt is not None: |
| entry["count"] = cnt |
| if entry["op"] in ("recall", "recall_after_gap", "persist"): |
| probes.add("count_memory") |
| anch = extras.get("anchor") |
| if anch is not None: |
| entry["anchor"] = anch |
| if anch.get("type") == "temporal": |
| probes.add("temporal_reference") |
| rt = anch.get("resolves_to") |
| if rt and rt not in entities: |
| errors.append(f"{seg_id}: {eid} anchor.resolves_to unknown {rt}") |
| nm = entities.get(eid, {}).get("name", "") |
| if nm and nm in action: |
| warnings.append( |
| f"{seg_id}: temporal-anchored {eid} name『{nm}』appears in " |
| "action; a temporal reference should be name-free") |
|
|
| cast.append(entry) |
| op_counts[entry["op"]] = op_counts.get(entry["op"], 0) + 1 |
| last_seen[eid] = i |
|
|
| |
| for eid, ev in ev_remove.items(): |
| if eid not in entities: |
| errors.append(f"{seg_id}: remove of unknown entity {eid}") |
| continue |
| if ev.get("shown", True) and eid not in present_eids: |
| errors.append( |
| f"{seg_id}: shown removal of {eid} but it is not in present") |
| removal[eid] = { |
| "idx": i, |
| "reason": ev.get("reason", "removed"), |
| "seg_id": seg_id, |
| } |
|
|
| |
| forbidden: list[dict[str, Any]] = [] |
| for eid, info in removal.items(): |
| if i <= info["idx"]: |
| continue |
| fentry = { |
| "eid": eid, |
| "reason": info["reason"], |
| "grounded_by": info["seg_id"], |
| } |
| name = entities.get(eid, {}).get("name", "") |
| if name and name in action: |
| fentry["reference_indirect"] = True |
| probes.add("reference_indirect") |
| probes.add("deprecation_avoidance") |
| elif i - info["idx"] <= avoid_window: |
| probes.add("deprecation_avoidance") |
| forbidden.append(fentry) |
|
|
| |
| lookalike_active: list[dict[str, Any]] = [] |
| lp = seg.get("lookalike_present") |
| if lp: |
| pair = tuple(lp["pair"]) |
| if pair not in pair_lookup: |
| errors.append(f"{seg_id}: lookalike pair {pair} not declared") |
| members = lp.get("members", []) |
| for m in members: |
| if m not in pair: |
| errors.append(f"{seg_id}: lookalike member {m} not in pair {pair}") |
| probes.add("lookalike_disambiguation") |
| lookalike_active.append({ |
| "pair": list(pair), |
| "features": pair_lookup.get(pair, {}).get("features", {}), |
| "present_members": members, |
| }) |
| for m in pair: |
| if m not in members: |
| forbidden.append({ |
| "eid": m, |
| "reason": "lookalike_absent", |
| "grounded_by": f"lookalike:{'/'.join(pair)}", |
| }) |
|
|
| for p in probes: |
| probe_counts[p] = probe_counts.get(p, 0) + 1 |
|
|
| out_seg: dict[str, Any] = { |
| "segment_id": seg_id, |
| "scene_id": seg["scene_id"], |
| "duration_sec": seg_sec, |
| "transition": seg["transition"], |
| "action": action, |
| "memory_probes": sorted(probes), |
| "cast": cast, |
| "forbidden": forbidden, |
| } |
| if lookalike_active: |
| out_seg["lookalike_active"] = lookalike_active |
| out_segments.append(out_seg) |
|
|
| |
| seen_transform: set[str] = set() |
| for seg in out_segments: |
| for c in seg["cast"]: |
| if c["op"] == "transform": |
| seen_transform.add(c["eid"]) |
| if c["op"] == "persist" and c["eid"] not in seen_transform: |
| errors.append( |
| f"{seg['segment_id']}: persist of {c['eid']} without prior transform") |
|
|
| if errors: |
| raise BuildError("memory-rule validation failed:\n - " + "\n - ".join(errors)) |
|
|
| |
| gap_hist = {"1-4": 0, "5-29": 0, ">=30": 0} |
| for g in gaps_recorded: |
| v = g["gap"] |
| if v <= 4: |
| gap_hist["1-4"] += 1 |
| elif v < 30: |
| gap_hist["5-29"] += 1 |
| else: |
| gap_hist[">=30"] += 1 |
| longest = max(gaps_recorded, key=lambda x: x["gap"], default=None) |
|
|
| |
| |
| |
| |
| gt_entities: dict[str, dict[str, Any]] = {} |
| for eid, e in entities.items(): |
| ge = dict(e) |
| if e.get("states"): |
| ge.pop("appearance", None) |
| ge["initial_state"] = initial_state(eid) |
| gt_entities[eid] = ge |
|
|
| kind_counts: dict[str, int] = {} |
| for e in entities.values(): |
| kind_counts[e.get("kind", "?")] = kind_counts.get(e.get("kind", "?"), 0) + 1 |
|
|
| |
| |
| |
| HARD_PROBES = ["long_gap_reappearance", "state_change", "lookalike_disambiguation", |
| "reference_indirect", "deprecation_avoidance", "count_memory", |
| "false_friend", "temporal_reference"] |
| default_target = int(src.get("probe_target_default", 4)) |
| probe_targets = src.get("probe_targets", {}) |
| balance: dict[str, dict[str, Any]] = {} |
| for p in HARD_PROBES: |
| tgt = int(probe_targets.get(p, default_target)) |
| got = probe_counts.get(p, 0) |
| balance[p] = {"count": got, "target": tgt, "ok": got >= tgt} |
| if got < tgt: |
| warnings.append(f"balance: probe '{p}' underrepresented ({got}<{tgt})") |
|
|
| gt = { |
| "story_id": src.get("story_id"), |
| "gt_version": "trackB-gt-2.0", |
| "title": src.get("title"), |
| "premise": src.get("premise"), |
| "built_from": f"gt_source/{src.get('story_id')}.json", |
| "params": { |
| "segment_sec": seg_sec, |
| "gap_long_threshold": gap_long, |
| "avoidance_probe_window": avoid_window, |
| }, |
| "entities": gt_entities, |
| "state_machines": state_machines, |
| "lookalike_pairs": lookalike_pairs, |
| "segments": out_segments, |
| "summary": { |
| "n_segments": len(out_segments), |
| "n_scenes": len(src.get("scenes", [])), |
| "n_entities": len(entities), |
| "kind_counts": kind_counts, |
| "n_state_threads": len(state_machines), |
| "n_removals": len(removal), |
| "op_counts": op_counts, |
| "probe_counts": probe_counts, |
| "hard_probe_balance": balance, |
| "gap_histogram": gap_hist, |
| "longest_gap": longest, |
| }, |
| "warnings": warnings, |
| } |
| return gt |
|
|
|
|
| def main() -> None: |
| ap = argparse.ArgumentParser(description=__doc__) |
| ap.add_argument("--story", help="story_id (basename); default: all in gt_source/") |
| ap.add_argument("--src-dir", default=str(SRC_DIR)) |
| ap.add_argument("--out-dir", default=str(OUT_DIR)) |
| a = ap.parse_args() |
|
|
| src_dir, out_dir = Path(a.src_dir), Path(a.out_dir) |
| out_dir.mkdir(parents=True, exist_ok=True) |
|
|
| if a.story: |
| src_files = [src_dir / f"{a.story}.json"] |
| else: |
| src_files = sorted(src_dir.glob("*.json")) |
| if not src_files: |
| raise SystemExit(f"no source files found in {src_dir}") |
|
|
| rc = 0 |
| for src_path in src_files: |
| src = json.loads(src_path.read_text(encoding="utf-8")) |
| try: |
| gt = build(src) |
| except BuildError as e: |
| print(f"[FAIL] {src_path.name}: {e}") |
| rc = 1 |
| continue |
| out_path = out_dir / f"{gt['story_id']}.json" |
| out_path.write_text( |
| json.dumps(gt, ensure_ascii=False, indent=2) + "\n", encoding="utf-8") |
| s = gt["summary"] |
| lg = s["longest_gap"] |
| lg_str = f"{lg['gap']}@{lg['at']}" if lg else "-" |
| print(f"[ok] {src_path.name} -> {out_path.relative_to(HERE)} " |
| f"{s['n_segments']} segs, {s['n_entities']} ents, " |
| f"longest_gap={lg_str}") |
| print(f" probes={s['probe_counts']}") |
| print(f" ops={s['op_counts']} gap_hist={s['gap_histogram']}") |
| bw = [w.split("balance: ", 1)[1] for w in gt["warnings"] if w.startswith("balance:")] |
| if bw: |
| print(f" ! balance underrepresented: {'; '.join(bw)}") |
| raise SystemExit(rc) |
|
|
|
|
| if __name__ == "__main__": |
| main() |
|
|