ClippingInfo util class to pass and apply plane clippings #3774

Co-Authored-By: Carlos Villagrasa <carvillasil@gmail.com>
This commit is contained in:
Andrej730
2023-11-17 16:52:59 +05:00
parent 6750dd927c
commit dc438b2560
4 changed files with 77 additions and 60 deletions
@@ -18,6 +18,7 @@
import ifcopenshell.geom
import ifcopenshell.util.unit
from ifcopenshell.util.representation import ClippingInfo
class Usecase:
@@ -28,8 +29,8 @@ class Usecase:
"profile": None,
"depth": 1.0,
"cardinal_point": 5,
# Planes are defined as a matrix. The XY plane is the clipping boundary and +Z is removed.
# [{"type": "IfcBooleanClippingResult", "operand_type": "IfcHalfSpaceSolid", "matrix": [...]}, {...}]
# Planes are defined either by ClippingInfo objects
# or by dictionaries of arguments for `ClippingInfo.parse`
"clippings": [], # A list of planes that define clipping half space solids
"placement_zx_axes": (None, None),
}
@@ -38,6 +39,7 @@ class Usecase:
def execute(self):
self.settings["unit_scale"] = ifcopenshell.util.unit.calculate_unit_scale(self.file)
self.settings["clippings"] = [ClippingInfo.parse(c) for c in self.settings["clippings"]]
return self.file.createIfcShapeRepresentation(
self.settings["context"],
self.settings["context"].ContextIdentifier,
@@ -69,25 +71,8 @@ class Usecase:
new = ifcopenshell.util.element.copy(self.file, clipping)
new.FirstOperand = first_operand
first_operand = new
elif clipping["operand_type"] == "IfcHalfSpaceSolid":
matrix = clipping["matrix"]
second_operand = self.file.createIfcHalfSpaceSolid(
self.file.createIfcPlane(
self.file.createIfcAxis2Placement3D(
self.file.createIfcCartesianPoint(
(
self.convert_si_to_unit(matrix[0][3]),
self.convert_si_to_unit(matrix[1][3]),
self.convert_si_to_unit(matrix[2][3]),
)
),
self.file.createIfcDirection((matrix[0][2], matrix[1][2], matrix[2][2])),
self.file.createIfcDirection((matrix[0][0], matrix[1][0], matrix[2][0])),
)
),
False,
)
first_operand = self.file.create_entity(clipping["type"], "DIFFERENCE", first_operand, second_operand)
else: # ClippingInfo
first_operand = clipping.apply(self.file, first_operand, self.settings["unit_scale"])
return first_operand
def convert_si_to_unit(self, co):
@@ -27,7 +27,8 @@ class Usecase:
"context": None, # IfcGeometricRepresentationContext
"depth": 0.2,
"x_angle": 0, # Radians
# Planes are defined as a matrix. The XY plane is the clipping boundary and +Z is removed.
# Planes are defined either by ClippingInfo objects
# or by dictionaries of arguments for `ClippingInfo.parse`
"clippings": [], # A list of planes that define clipping half space solids
}
for key, value in settings.items():
@@ -78,23 +79,12 @@ class Usecase:
def apply_clippings(self, first_operand):
while self.settings["clippings"]:
clipping = self.settings["clippings"].pop()
second_operand = self.file.createIfcHalfSpaceSolid(
self.file.createIfcPlane(
self.file.createIfcAxis2Placement3D(
self.file.createIfcCartesianPoint(
(
self.convert_si_to_unit(clipping[0][3]),
self.convert_si_to_unit(clipping[1][3]),
self.convert_si_to_unit(clipping[2][3]),
)
),
self.file.createIfcDirection((clipping[0][2], clipping[1][2], clipping[2][2])),
self.file.createIfcDirection((clipping[0][0], clipping[1][0], clipping[2][0])),
)
),
False,
)
first_operand = self.file.createIfcBooleanClippingResult("DIFFERENCE", first_operand, second_operand)
if isinstance(clipping, ifcopenshell.entity_instance):
new = ifcopenshell.util.element.copy(self.file, clipping)
new.FirstOperand = first_operand
first_operand = new
else: # ClippingInfo
first_operand = clipping.apply(self.file, first_operand, self.settings["unit_scale"])
return first_operand
def convert_si_to_unit(self, co):
@@ -18,6 +18,7 @@
import ifcopenshell.util.unit
from math import sin, cos
from ifcopenshell.util.representation import ClippingInfo
class Usecase:
@@ -31,8 +32,8 @@ class Usecase:
"thickness": 0.2,
# Sloped walls along the wall's X axis, provided in radians
"x_angle": 0,
# Planes are defined as a matrix. The XY plane is the clipping boundary and +Z is removed.
# [{"type": "IfcBooleanClippingResult", "operand_type": "IfcHalfSpaceSolid", "matrix": [...]}, {...}]
# Planes are defined either by ClippingInfo objects
# or by dictionaries of arguments for `ClippingInfo.parse`
"clippings": [], # A list of planes that define clipping half space solids
"booleans": [], # Any existing IfcBooleanResults
}
@@ -41,6 +42,7 @@ class Usecase:
def execute(self):
self.settings["unit_scale"] = ifcopenshell.util.unit.calculate_unit_scale(self.file)
self.settings["clippings"] = [ClippingInfo.parse(c) for c in self.settings["clippings"]]
return self.file.createIfcShapeRepresentation(
self.settings["context"],
self.settings["context"].ContextIdentifier,
@@ -99,25 +101,8 @@ class Usecase:
new = ifcopenshell.util.element.copy(self.file, clipping)
new.FirstOperand = first_operand
first_operand = new
elif clipping["operand_type"] == "IfcHalfSpaceSolid":
matrix = clipping["matrix"]
second_operand = self.file.createIfcHalfSpaceSolid(
self.file.createIfcPlane(
self.file.createIfcAxis2Placement3D(
self.file.createIfcCartesianPoint(
(
self.convert_si_to_unit(matrix[0][3]),
self.convert_si_to_unit(matrix[1][3]),
self.convert_si_to_unit(matrix[2][3]),
)
),
self.file.createIfcDirection((matrix[0][2], matrix[1][2], matrix[2][2])),
self.file.createIfcDirection((matrix[0][0], matrix[1][0], matrix[2][0])),
)
),
False,
)
first_operand = self.file.create_entity(clipping["type"], "DIFFERENCE", first_operand, second_operand)
else: # ClippingInfo
first_operand = clipping.apply(self.file, first_operand, self.settings["unit_scale"])
return first_operand
def convert_si_to_unit(self, co):