Files
nadlan-mcp/nadlan_mcp/govmap/statistics.py
T
Nitzan Pomerantz e4aa6487ff Ruff fixes
2025-10-30 22:24:40 +02:00

182 lines
5.5 KiB
Python

"""
Statistical calculation functions for deal data.
This module provides pure mathematical functions for analyzing real estate deal data.
"""
from collections import Counter
import logging
from typing import List
from .models import Deal, DealStatistics
logger = logging.getLogger(__name__)
def calculate_deal_statistics(deals: List[Deal]) -> DealStatistics:
"""
Calculate statistical aggregations on deal data.
Args:
deals: List of Deal model instances
Returns:
DealStatistics model with comprehensive metrics
Raises:
ValueError: If deals is not a valid list
"""
if not isinstance(deals, list):
raise ValueError("deals must be a list")
if not deals:
return DealStatistics(
total_deals=0,
price_statistics={},
area_statistics={},
price_per_sqm_statistics={},
property_type_distribution={},
date_range=None,
)
# Extract numeric values
prices = []
areas = []
price_per_sqm_values = []
property_types = []
deal_dates = []
for deal in deals:
# Prices
if deal.deal_amount and deal.deal_amount > 0:
prices.append(deal.deal_amount)
# Areas
if deal.asset_area and deal.asset_area > 0:
areas.append(deal.asset_area)
# Price per sqm (use computed field)
if deal.price_per_sqm:
price_per_sqm_values.append(deal.price_per_sqm)
# Property types
if deal.property_type_description:
property_types.append(deal.property_type_description)
# Deal dates
if deal.deal_date:
deal_dates.append(deal.deal_date)
# Calculate statistics
price_stats = {}
area_stats = {}
price_per_sqm_stats = {}
# Price statistics
if prices:
sorted_prices = sorted(prices)
price_stats = {
"mean": round(sum(prices) / len(prices), 2),
"median": (
sorted_prices[len(sorted_prices) // 2]
+ sorted_prices[(len(sorted_prices) - 1) // 2]
)
/ 2,
"min": min(prices),
"max": max(prices),
"p25": sorted_prices[len(sorted_prices) // 4],
"p75": sorted_prices[(3 * len(sorted_prices)) // 4],
"std_dev": round(calculate_std_dev(prices), 2) if len(prices) > 1 else 0,
"total": sum(prices),
}
# Area statistics
if areas:
sorted_areas = sorted(areas)
area_stats = {
"mean": round(sum(areas) / len(areas), 2),
"median": sorted_areas[len(sorted_areas) // 2],
"min": min(areas),
"max": max(areas),
"p25": sorted_areas[len(sorted_areas) // 4],
"p75": sorted_areas[(3 * len(sorted_areas)) // 4],
}
# Price per sqm statistics
if price_per_sqm_values:
sorted_pps = sorted(price_per_sqm_values)
price_per_sqm_stats = {
"mean": round(sum(price_per_sqm_values) / len(price_per_sqm_values), 2),
"median": round(sorted_pps[len(sorted_pps) // 2], 2),
"min": round(min(price_per_sqm_values), 2),
"max": round(max(price_per_sqm_values), 2),
"p25": round(sorted_pps[len(sorted_pps) // 4], 2),
"p75": round(sorted_pps[(3 * len(sorted_pps)) // 4], 2),
}
# Property type distribution
property_type_dist = {}
if property_types:
type_counts = Counter(property_types)
property_type_dist = dict(sorted(type_counts.items()))
# Date range
date_range_dict = None
if deal_dates:
try:
# Convert dates to ISO strings for consistent formatting
from datetime import date as date_type
parsed_dates = []
for d in deal_dates:
try:
# Handle date objects (from Pydantic models)
if isinstance(d, date_type):
parsed_dates.append(d.isoformat())
else:
# Handle string dates
date_str = str(d)
# Handle ISO format with timezone (e.g., "2025-01-01T00:00:00.000Z")
if "T" in date_str:
date_str = date_str.split("T")[0]
parsed_dates.append(date_str)
except (ValueError, TypeError):
logger.warning(f"Invalid date format: {d}")
continue
if parsed_dates:
sorted_dates = sorted(parsed_dates)
date_range_dict = {
"earliest": sorted_dates[0],
"latest": sorted_dates[-1],
}
except (ValueError, TypeError):
logger.warning("Invalid date format in date range calculation")
pass
return DealStatistics(
total_deals=len(deals),
price_statistics=price_stats,
area_statistics=area_stats,
price_per_sqm_statistics=price_per_sqm_stats,
property_type_distribution=property_type_dist,
date_range=date_range_dict,
)
def calculate_std_dev(values: List[float]) -> float:
"""
Calculate standard deviation of a list of values.
Args:
values: List of numeric values
Returns:
Standard deviation
"""
if len(values) < 2:
return 0.0
mean = sum(values) / len(values)
variance = sum((x - mean) ** 2 for x in values) / (len(values) - 1)
return variance**0.5