construction.concrete-volume@1.0.0
impl/python.py
3,891 bytes · the Python implementation · view raw
Imports name this capability’s declared dependencies, which fune builds next to it in your project; each one links to its page.
import math
from typing import List, Optional, Sequence
from .construction_concrete_volume_types import ConcreteElement, ConcreteVolume
from .math_round_div import round_div ← from math.round-div ^1.0.0 · built alongside by fune
from .math_round_float import round_float ← from math.round-float ^1.0.0 · built alongside by fune
MAX_SAFE = 9007199254740991
MM3_PER_LITRE = 1000000
PI = 3.141592653589793
def _millimetres(element: int, name: str, value: Optional[float]) -> int:
if (
value is None
or isinstance(value, bool)
or not isinstance(value, (int, float))
or not math.isfinite(value)
or value <= 0
or value > 1000
):
raise ValueError(
"element %d: %s must be a finite number greater than 0 and at most 1000 metres, received %r" % (element, name, value)
)
mm = int(round(round_float(value, 3) * 1000))
if mm < 1:
raise ValueError("element %d: %s must be at least 1 millimetre, received %r" % (element, name, value))
return mm
def _too_large() -> None:
raise ValueError("the total volume is too large (more than 9 million cubic metres)")
def concrete_volume(elements: Sequence[ConcreteElement], wastage_basis_points: int) -> ConcreteVolume:
"""Concrete volume for a set of pours, and the quantity to order.
Dimensions are taken to the nearest millimetre and rectangular volumes are
exact integers of cubic millimetres; a round column is pi d^2 / 4 h in
floating point, rounded to a whole cubic millimetre. Working in metres and
rounding up the float is the naive way: 3 x 1 x 0.1 is 0.30000000000000004,
which orders 0.4 m3.
"""
if len(elements) == 0:
raise ValueError("elements must not be empty")
if (
isinstance(wastage_basis_points, bool)
or not isinstance(wastage_basis_points, int)
or not (0 <= wastage_basis_points <= 10000)
):
raise ValueError("wastageBasisPoints must be a whole number from 0 to 10000, received %r" % (wastage_basis_points,))
volumes: List[float] = []
total = 0
for i, el in enumerate(elements):
n = i + 1
if isinstance(el.count, bool) or not isinstance(el.count, int) or el.count < 1:
raise ValueError("element %d: count must be a whole number of at least 1, received %r" % (n, el.count))
if el.kind in ("slab", "strip-footing", "pad"):
if el.length is None or el.width is None or el.depth is None:
raise ValueError("element %d: %s needs length, width and depth" % (n, el.kind))
one = _millimetres(n, "length", el.length) * _millimetres(n, "width", el.width) * _millimetres(n, "depth", el.depth)
# Python could carry on, but TypeScript cannot, and all three must agree.
if one > MAX_SAFE:
_too_large()
elif el.kind == "column":
if el.diameter is None or el.height is None:
raise ValueError("element %d: column needs diameter and height" % (n,))
d = _millimetres(n, "diameter", el.diameter)
h = _millimetres(n, "height", el.height)
one = int(round_float(((PI * d * d) / 4) * h, 0))
if one > MAX_SAFE:
_too_large()
else:
raise ValueError('element %d: unknown kind "%s"' % (n, el.kind))
volume = one * el.count
if volume > MAX_SAFE:
_too_large()
total += volume
if total > MAX_SAFE:
_too_large()
volumes.append(round_div(volume, MM3_PER_LITRE, "half-up") / 1000)
# Up to the whole litre, add the wastage, then up to the next 100 litres.
litres_up = round_div(total, MM3_PER_LITRE, "up")
tenths = round_div(litres_up * (10000 + wastage_basis_points), 100 * 10000, "up")
return ConcreteVolume(
element_cubic_metres=volumes,
cubic_metres=round_div(total, MM3_PER_LITRE, "half-up") / 1000,
order_cubic_metres=tenths / 10,
)