mirror of
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418 lines
17 KiB
Python
418 lines
17 KiB
Python
import re
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from datetime import date, datetime
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from typing import List, Optional
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from datatypes.epc.surveys.elmhurst_site_notes import (
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BathsAndShowers,
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BuildingPartDimensions,
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ElmhurstSiteNotes,
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FloorDetails,
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FloorDimension,
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Lighting,
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MainHeating,
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Meters,
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PropertyDetails,
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Renewables,
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RoofDetails,
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Shower,
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SurveyorInfo,
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VentilationAndCooling,
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WallDetails,
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WaterHeating,
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Window,
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)
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class ElmhurstSiteNotesExtractor:
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def __init__(self, pages: List[str]) -> None:
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self._text = "\n".join(pages)
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self._lines = [l.strip() for l in self._text.splitlines() if l.strip()]
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# --- generic helpers ---
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def _next_val(self, label: str) -> Optional[str]:
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lc = label.rstrip(":") + ":"
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lb = label.rstrip(":")
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for i, line in enumerate(self._lines):
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if line.startswith(lc) and len(line) > len(lc):
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return line[len(lc):].strip() or None
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if line == lc or line == lb:
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for j in range(i + 1, min(i + 4, len(self._lines))):
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v = self._lines[j]
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if v.endswith(":") or v.startswith("©"):
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return None
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if v:
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return v
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return None
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return None
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def _str_val(self, label: str) -> str:
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v = self._next_val(label)
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return " ".join(v.split()) if v else ""
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def _opt_str(self, label: str) -> Optional[str]:
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v = self._next_val(label)
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return " ".join(v.split()) if v else None
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def _bool_val(self, label: str) -> bool:
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v = self._next_val(label)
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return v is not None and v.lower() == "yes"
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def _int_val(self, label: str) -> int:
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v = self._next_val(label)
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try:
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return int(v.split()[0]) if v else 0
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except (ValueError, IndexError):
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return 0
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def _date_val(self, label: str) -> date:
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v = self._next_val(label)
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if not v:
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raise ValueError(f"Missing date for label: {label}")
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return datetime.strptime(v.strip(), "%d/%m/%Y").date()
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def _between(self, start: str, end: str) -> str:
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try:
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s = self._text.index(start) + len(start)
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e = self._text.index(end, s)
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return self._text[s:e]
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except ValueError:
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return ""
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def _section_lines(self, start: str, end: str) -> List[str]:
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text = self._between(start, end)
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return [l.strip() for l in text.splitlines() if l.strip()]
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def _local_val(self, lines: List[str], label: str) -> Optional[str]:
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lb = label.rstrip(":")
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lc = lb + ":"
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for i, line in enumerate(lines):
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if line.startswith(lc) and len(line) > len(lc):
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return line[len(lc):].strip() or None
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if line == lc or line == lb:
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for j in range(i + 1, min(i + 4, len(lines))):
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v = lines[j]
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if v.endswith(":") or v.startswith("©"):
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return None
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if v:
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return v
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return None
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return None
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def _local_str(self, lines: List[str], label: str) -> str:
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v = self._local_val(lines, label)
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return " ".join(v.split()) if v else ""
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def _local_bool(self, lines: List[str], label: str) -> bool:
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v = self._local_val(lines, label)
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return v is not None and v.lower() == "yes"
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# --- section extractors ---
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def _extract_surveyor_info(self) -> SurveyorInfo:
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return SurveyorInfo(
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surveyor_code=self._str_val("Surveyor"),
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name=self._str_val("Name"),
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title=self._str_val("Title"),
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tel_number=self._str_val("Tel Number"),
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survey_reference=self._str_val("Survey Reference"),
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my_reference=self._opt_str("My Reference"),
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)
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def _extract_property_details(self) -> PropertyDetails:
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epc_m = re.search(
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r"Check for the existence of\nan EPC:\n(Yes|No)", self._text
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)
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epc_exists = epc_m.group(1).lower() == "yes" if epc_m else False
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return PropertyDetails(
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rdsap_version=self._str_val("RdSAP version"),
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reference_number=self._str_val("Reference Number"),
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lodgement_required=self._bool_val("Lodgement Required"),
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regs_region=self._str_val("Regs Region"),
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epc_language=self._str_val("EPC Language"),
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postcode=self._str_val("Postcode"),
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region=self._str_val("Region"),
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street=self._str_val("Street"),
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town=self._str_val("Town"),
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tenure=self._str_val("Property Tenure"),
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transaction_type=self._str_val("Transaction Type"),
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inspection_date=self._date_val("Inspection Date"),
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process_date=self._date_val("Process date"),
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epc_exists=epc_exists,
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uprn=self._opt_str("UPRN"),
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house_name=self._opt_str("House Name"),
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house_number=self._opt_str("House No"),
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locality=self._opt_str("Locality"),
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county=self._opt_str("County"),
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)
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def _extract_attachment(self) -> str:
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m = re.search(r"1\.0 Property type:\n[^\n]+\n([^\n]+)", self._text)
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return " ".join(m.group(1).strip().split()) if m else ""
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def _extract_dimensions(self) -> BuildingPartDimensions:
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dim_type = self._str_val("Dimension type")
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section = self._between("4.0 Dimensions:", "5.0 Conservatory:")
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floor_matches = re.findall(
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r"([A-Za-z ]+Floor):\n([\d.]+)\n([\d.]+)\n([\d.]+)\n([\d.]+)",
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section,
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)
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floors = [
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FloorDimension(
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name=name.strip(),
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area_m2=float(area),
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room_height_m=float(height),
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heat_loss_perimeter_m=float(hlp),
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party_wall_length_m=float(pwl),
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)
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for name, area, height, hlp, pwl in floor_matches
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]
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return BuildingPartDimensions(dimension_type=dim_type, floors=floors)
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def _extract_walls(self) -> WallDetails:
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lines = self._section_lines("7.0 Walls:", "8.0 Roofs:")
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thickness_raw = self._local_val(lines, "Wall Thickness")
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thickness_mm = (
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int(thickness_raw.split()[0]) if thickness_raw else None
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)
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return WallDetails(
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wall_type=self._local_str(lines, "Type"),
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insulation=self._local_str(lines, "Insulation"),
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thickness_unknown=self._local_bool(lines, "Wall Thickness Unknown"),
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u_value_known=self._local_bool(lines, "U-value Known"),
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party_wall_type=self._local_str(lines, "Party Wall Type"),
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thickness_mm=thickness_mm,
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)
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def _extract_roof(self) -> RoofDetails:
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lines = self._section_lines("8.0 Roofs:", "8.1 Rooms in Roof:")
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thickness_raw = self._local_val(lines, "Insulation Thickness")
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thickness_mm = (
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int(thickness_raw.split()[0]) if thickness_raw else None
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)
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return RoofDetails(
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roof_type=self._local_str(lines, "Type"),
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insulation=self._local_str(lines, "Insulation"),
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u_value_known=self._local_bool(lines, "U-value Known"),
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insulation_thickness_mm=thickness_mm,
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)
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def _extract_floor(self) -> FloorDetails:
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lines = self._section_lines("9.0 Floors:", "10.0 Doors:")
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u_val_raw = self._local_val(lines, "Default U-value")
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default_u = float(u_val_raw) if u_val_raw else None
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return FloorDetails(
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location=self._local_str(lines, "Location"),
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floor_type=self._local_str(lines, "Type"),
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insulation=self._local_str(lines, "Insulation"),
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u_value_known=self._local_bool(lines, "U-value Known"),
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default_u_value=default_u,
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)
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def _extract_windows(self) -> List[Window]:
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m = re.search(
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r"Permanent\s+Shutters\n(.*?)Draught Proofing",
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self._text,
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re.DOTALL,
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)
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if not m:
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return []
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tokens = [t.strip() for t in m.group(1).splitlines() if t.strip()]
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windows: List[Window] = []
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i = 0
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while i + 12 < len(tokens):
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try:
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width_m = float(tokens[i])
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height_m = float(tokens[i + 1])
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area_m2 = float(tokens[i + 2])
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except (ValueError, IndexError):
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i += 1
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continue
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i += 3
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# Collect glazing type until frame_factor (0 < v ≤ 1.0)
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glazing_parts: List[str] = []
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while i < len(tokens):
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try:
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v = float(tokens[i])
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if 0.0 < v <= 1.0:
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break
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glazing_parts.append(tokens[i])
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except ValueError:
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glazing_parts.append(tokens[i])
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i += 1
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glazing_type = " ".join(glazing_parts).strip()
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if i >= len(tokens):
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break
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frame_factor = float(tokens[i]); i += 1
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building_part = tokens[i]; i += 1
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location = tokens[i]; i += 1
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orientation = tokens[i]; i += 1
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data_source = tokens[i]; i += 1
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u_value = float(tokens[i]); i += 1
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g_value = float(tokens[i]); i += 1
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draught_proofed = tokens[i].lower() == "yes"; i += 1
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permanent_shutters = tokens[i]; i += 1
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windows.append(
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Window(
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width_m=width_m,
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height_m=height_m,
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area_m2=area_m2,
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glazing_type=glazing_type,
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frame_factor=frame_factor,
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building_part=building_part,
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location=location,
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orientation=orientation,
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data_source=data_source,
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u_value=u_value,
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g_value=g_value,
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draught_proofed=draught_proofed,
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permanent_shutters=permanent_shutters,
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)
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)
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return windows
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def _extract_ventilation(self) -> VentilationAndCooling:
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return VentilationAndCooling(
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open_chimneys_count=self._int_val("No. of open chimneys"),
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open_flues_count=self._int_val("No. of open flues"),
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open_chimneys_closed_fire_count=self._int_val(
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"No. of open chimneys/open flues attached to closed fire"
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),
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solid_fuel_boiler_flues_count=self._int_val(
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"No. of flues attached to solid fuel boiler"
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),
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other_heater_flues_count=self._int_val(
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"No. of open flues attached to other heater"
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),
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blocked_chimneys_count=self._int_val("No. of blocked chimneys"),
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extract_fans_count=self._int_val("No. of intermittent extract fans"),
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passive_vents_count=self._int_val("No. of passive vents"),
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flueless_gas_fires_count=self._int_val("No. of flueless gas fires"),
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fixed_space_cooling=self._bool_val("Fixed Space Cooling"),
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draught_lobby=self._str_val("Draught Lobby"),
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mechanical_ventilation=self._bool_val("Mechanical Ventilation"),
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pressure_test_method=self._str_val("Test Method"),
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)
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def _extract_lighting(self) -> Lighting:
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return Lighting(
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total_bulbs=self._int_val("Total number of bulbs"),
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led_cfl_count_known=self._bool_val("Number of LED and CFL Known"),
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led_count=self._int_val("Number of LED lights"),
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cfl_count=self._int_val("Number of CFL lights"),
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incandescent_count=self._int_val("Total number of incandescents"),
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)
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def _extract_main_heating(self) -> MainHeating:
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lines = self._section_lines("14.0 Main Heating1", "14.1 Main Heating2")
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pct_raw = self._local_val(lines, "Percentage of Heat")
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pct = int(pct_raw.split()[0]) if pct_raw else 0
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return MainHeating(
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heat_emitter=self._local_str(lines, "Heat Emitter"),
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fuel_type=self._local_str(lines, "Fuel Type"),
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flue_type=self._local_str(lines, "Flue Type"),
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fan_assisted_flue=self._local_bool(lines, "Fan Assisted Flue"),
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design_flow_temperature=self._local_str(lines, "Design flow temperature"),
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heating_controls_ees=self._local_str(lines, "Main Heating Controls EES"),
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heating_controls_sap=self._local_str(lines, "Main Heating Controls Sap"),
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percentage_of_heat=pct,
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pcdf_boiler_reference=self._local_val(lines, "PCDF boiler Reference"),
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heat_pump_age=self._local_val(lines, "Heat pump age"),
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)
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def _extract_meters(self) -> Meters:
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return Meters(
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electricity_meter_type=self._str_val("Electricity meter type"),
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main_gas=self._bool_val("Main gas"),
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electricity_smart_meter=self._bool_val("Electricity Smart Meter Present"),
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gas_smart_meter=self._bool_val("Gas Smart Meter Present"),
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)
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def _extract_water_heating(self) -> WaterHeating:
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return WaterHeating(
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water_heating_code=self._str_val("Water Heating Code"),
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water_heating_sap_code=self._int_val("Water Heating SapCode"),
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water_heating_fuel_type=self._str_val("Water Heating Fuel Type"),
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hot_water_cylinder_present=self._bool_val("Hot Water Cylinder Present"),
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)
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def _extract_baths_and_showers(self) -> BathsAndShowers:
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n_baths = self._int_val("Total Number of Baths")
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n_connected = self._int_val("Number of Baths Connected")
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try:
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idx = self._lines.index("Connected")
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except ValueError:
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return BathsAndShowers(
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number_of_baths=n_baths,
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number_of_baths_connected=n_connected,
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showers=[],
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)
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showers: List[Shower] = []
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j = idx + 1
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while j + 2 <= len(self._lines) - 1:
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num_line = self._lines[j]
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if not num_line.isdigit():
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break
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showers.append(
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Shower(
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shower_number=int(num_line),
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outlet_type=self._lines[j + 1],
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connected=self._lines[j + 2],
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)
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)
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j += 3
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return BathsAndShowers(
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number_of_baths=n_baths,
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number_of_baths_connected=n_connected,
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showers=showers,
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)
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def _extract_renewables(self) -> Renewables:
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fghrs_lines = self._section_lines(
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"18.0 Flue Gas Heat Recovery System", "19.0 Photovoltaic Panel"
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)
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fghrs = self._local_bool(fghrs_lines, "Present")
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terrain = self._str_val("Terrain Type")
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hydro_raw = self._next_val("Electricity generated [kWh/year]")
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hydro = float(hydro_raw) if hydro_raw else 0.0
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return Renewables(
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solar_water_heating=self._bool_val("Solar Water Heating"),
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wwhrs_present=self._bool_val("Is WWHRS present in the property?"),
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flue_gas_heat_recovery_present=fghrs,
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photovoltaic_panel=self._str_val("Photovoltaic Panel"),
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export_capable_meter=self._bool_val("Export capable meter"),
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wind_turbine_present=self._bool_val("Wind turbine present?"),
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wind_turbines_terrain_type=terrain,
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hydro_electricity_generated_kwh=hydro,
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)
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def extract(self) -> ElmhurstSiteNotes:
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return ElmhurstSiteNotes(
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surveyor_info=self._extract_surveyor_info(),
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property_details=self._extract_property_details(),
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property_type=self._str_val("1.0 Property type"),
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attachment=self._extract_attachment(),
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number_of_storeys=self._int_val("Storeys"),
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habitable_rooms=self._int_val("Habitable Rooms"),
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heated_habitable_rooms=self._int_val("Heated Habitable Rooms"),
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construction_age_band=self._str_val("Main Property"),
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dimensions=self._extract_dimensions(),
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has_conservatory=self._bool_val("Is there a conservatory?"),
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walls=self._extract_walls(),
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roof=self._extract_roof(),
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floor=self._extract_floor(),
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door_count=self._int_val("Total Number of Doors"),
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insulated_door_count=self._int_val("Number of Insulated Doors"),
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windows=self._extract_windows(),
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draught_proofing_percent=self._int_val("Draught Proofing"),
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ventilation=self._extract_ventilation(),
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lighting=self._extract_lighting(),
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main_heating=self._extract_main_heating(),
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meters=self._extract_meters(),
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water_heating=self._extract_water_heating(),
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baths_and_showers=self._extract_baths_and_showers(),
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renewables=self._extract_renewables(),
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)
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