201 lines
7.4 KiB
Python
201 lines
7.4 KiB
Python
"""Read-only minimal HTTP model over prospective RCON historical persistence."""
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from __future__ import annotations
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from datetime import datetime, timezone
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from .historical_storage import ALL_SERVERS_SLUG
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from .normalizers import normalize_map_name
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from .rcon_historical_storage import (
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list_rcon_historical_target_statuses,
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list_recent_rcon_historical_samples,
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)
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def list_rcon_historical_server_summaries(
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*,
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server_key: str | None = None,
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) -> list[dict[str, object]]:
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"""Return per-target coverage and freshness from prospective RCON storage."""
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items = list_rcon_historical_target_statuses()
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if server_key and server_key != ALL_SERVERS_SLUG:
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normalized = server_key.strip()
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items = [
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item
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for item in items
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if item["target_key"] == normalized or item["external_server_id"] == normalized
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]
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summaries = [_build_server_summary(item) for item in items]
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if server_key == ALL_SERVERS_SLUG:
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return [_build_all_servers_summary(summaries)]
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return summaries
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def list_rcon_historical_recent_activity(
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*,
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server_key: str | None = None,
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limit: int = 20,
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) -> list[dict[str, object]]:
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"""Return recent persisted RCON activity samples for one or all targets."""
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normalized_server_key = None if server_key == ALL_SERVERS_SLUG else server_key
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items = list_recent_rcon_historical_samples(target_key=normalized_server_key, limit=limit)
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return [
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{
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**item,
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"current_map": normalize_map_name(item.get("current_map")),
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"minutes_since_capture": _minutes_since_timestamp(item.get("captured_at")),
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}
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for item in items
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]
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def describe_rcon_historical_read_model() -> dict[str, object]:
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"""Describe what the minimal RCON historical read model currently supports."""
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return {
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"source": "rcon-historical-read-model",
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"supported_endpoints": [
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"/api/historical/server-summary",
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"/api/historical/recent-matches",
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],
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"unsupported_endpoints": [
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"/api/historical/weekly-top-kills",
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"/api/historical/weekly-leaderboard",
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"/api/historical/leaderboard",
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"/api/historical/monthly-mvp",
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"/api/historical/monthly-mvp-v2",
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"/api/historical/elo-mmr/leaderboard",
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"/api/historical/elo-mmr/player",
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"/api/historical/player-events",
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"/api/historical/player-profile",
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"/api/historical/snapshots/*",
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],
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"capabilities": [
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"coverage by configured RCON target",
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"recent persisted live activity",
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"freshness and last successful capture metadata",
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],
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"limitations": [
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"No retroactive backfill of closed matches.",
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"No weekly or monthly competitive leaderboards.",
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"No MVP or player-event parity with public-scoreboard.",
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"No precomputed historical snapshots for the RCON read model yet.",
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],
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}
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def _build_server_summary(item: dict[str, object]) -> dict[str, object]:
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sample_count = int(item.get("sample_count") or 0)
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first_last_points = list_rcon_historical_recent_activity(
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server_key=str(item["target_key"]),
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limit=1,
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)
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last_sample_at = item.get("last_sample_at")
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latest_activity = first_last_points[0] if first_last_points else None
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return {
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"server": {
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"slug": item["target_key"],
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"name": item["display_name"],
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"external_server_id": item["external_server_id"],
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"region": item["region"],
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},
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"coverage": {
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"basis": "prospective-rcon-samples",
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"status": "available" if sample_count > 0 else "empty",
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"sample_count": sample_count,
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"first_sample_at": item.get("first_sample_at"),
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"last_sample_at": last_sample_at,
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"coverage_hours": _calculate_coverage_hours(item.get("first_sample_at"), last_sample_at),
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},
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"freshness": {
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"last_successful_capture_at": item.get("last_successful_capture_at"),
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"minutes_since_last_capture": _minutes_since_timestamp(last_sample_at),
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"last_run_id": item.get("last_run_id"),
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"last_run_status": item.get("last_run_status"),
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"last_error": item.get("last_error"),
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"last_error_at": item.get("last_error_at"),
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},
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"activity": {
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"latest_players": latest_activity.get("players") if latest_activity else None,
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"latest_max_players": latest_activity.get("max_players") if latest_activity else None,
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"latest_map": latest_activity.get("current_map") if latest_activity else None,
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"latest_status": latest_activity.get("status") if latest_activity else None,
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},
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"time_range": {
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"start": None,
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"end": last_sample_at,
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},
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}
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def _build_all_servers_summary(items: list[dict[str, object]]) -> dict[str, object]:
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total_samples = sum(int(item["coverage"].get("sample_count") or 0) for item in items)
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last_points = [
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item["time_range"].get("end")
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for item in items
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if item["time_range"].get("end")
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]
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last_capture_at = max(last_points) if last_points else None
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return {
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"server": {
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"slug": ALL_SERVERS_SLUG,
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"name": "Todos",
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"external_server_id": None,
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"region": None,
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},
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"coverage": {
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"basis": "prospective-rcon-samples-aggregate",
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"status": "available" if total_samples > 0 else "empty",
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"sample_count": total_samples,
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"first_sample_at": None,
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"last_sample_at": last_capture_at,
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"coverage_hours": None,
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},
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"freshness": {
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"last_successful_capture_at": last_capture_at,
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"minutes_since_last_capture": _minutes_since_timestamp(last_capture_at),
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"last_run_id": None,
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"last_run_status": None,
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"last_error": None,
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"last_error_at": None,
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},
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"activity": {
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"latest_players": None,
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"latest_max_players": None,
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"latest_map": None,
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"latest_status": None,
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},
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"time_range": {
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"start": None,
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"end": last_capture_at,
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},
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"server_count": len(items),
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}
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def _minutes_since_timestamp(timestamp: str | None) -> int | None:
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if not timestamp:
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return None
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captured_at = datetime.fromisoformat(timestamp.replace("Z", "+00:00"))
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if captured_at.tzinfo is None:
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captured_at = captured_at.replace(tzinfo=timezone.utc)
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delta = datetime.now(timezone.utc) - captured_at.astimezone(timezone.utc)
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return max(0, int(delta.total_seconds() // 60))
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def _calculate_coverage_hours(
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first_sample_at: str | None,
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last_sample_at: str | None,
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) -> float | None:
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if not first_sample_at or not last_sample_at:
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return None
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first_point = datetime.fromisoformat(first_sample_at.replace("Z", "+00:00"))
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last_point = datetime.fromisoformat(last_sample_at.replace("Z", "+00:00"))
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if first_point.tzinfo is None:
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first_point = first_point.replace(tzinfo=timezone.utc)
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if last_point.tzinfo is None:
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last_point = last_point.replace(tzinfo=timezone.utc)
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delta = last_point.astimezone(timezone.utc) - first_point.astimezone(timezone.utc)
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return round(delta.total_seconds() / 3600, 2)
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