- Handle explicit attributes re-declared as derived in a subtype

- Update IfcOpenHouse to import correctly in Autodesk Autocad Architecture 2013
This commit is contained in:
Thomas Krijnen
2012-11-10 09:36:34 +00:00
parent e56281a72e
commit 2353c25fb8
8 changed files with 84 additions and 34 deletions
+20 -16
View File
@@ -34,7 +34,7 @@
#include "../ifcparse/IfcHierarchyHelper.h"
#include "../ifcgeom/IfcGeom.h"
// Some convinience typedefs and definitions.
// Some convenience typedefs and definitions.
typedef std::string S;
typedef IfcWrite::IfcGuidHelper guid;
typedef std::pair<double, double> XY;
@@ -45,8 +45,8 @@ void createGroundShape(TopoDS_Shape& shape);
int main(int argc, char** argv) {
// The IfcHierarchyHelper is a subclass of the regular IfcFile that provides several convience
// functions for working with geometry in IFC files.
// The IfcHierarchyHelper is a subclass of the regular IfcFile that provides several
// convenience functions for working with geometry in IFC files.
IfcHierarchyHelper file;
// Start by adding a wall to the file, initially leaving most attributes blank.
@@ -66,7 +66,7 @@ int main(int argc, char** argv) {
// structure: IfcProject > IfcSite > IfcBuilding > IfcBuildingStorey > IfcWall
// Lateron changing the name of the IfcProject can be done by obtaining a reference to the
// project, which was automatically created. since we know it exists.
// project, which has been created automatically.
file.getSingle<Ifc2x3::IfcProject>()->setName("IfcOpenHouse");
// An IfcOwnerHistory has been initialized as well, which should be assigned to the wall.
@@ -234,7 +234,7 @@ int main(int argc, char** argv) {
// can be a composition of multiple solids. The following door will be composed of four boxes
// which constitute the door and its frame.
Ifc2x3::IfcDoor* door = new Ifc2x3::IfcDoor(guid(), file.getSingle<Ifc2x3::IfcOwnerHistory>(), null, null, null,
file.addLocalPlacement(4800, 1600, 0, 0, 0, 1, 0, 1, 0), 0, null, 2120, 1000);
file.addLocalPlacement(4800, 1600, 0, 0, 0, 1, 0, 1, 0), 0, null, 2200, 1000);
door->setRepresentation(file.addBox(80, 80, 2120, 0, file.addPlacement3d(460, 0, 0)));
Ifc2x3::IfcRepresentation::list door_representations = door->Representation()->Representations();
Ifc2x3::IfcShapeRepresentation* door_body = 0;
@@ -258,6 +258,10 @@ int main(int argc, char** argv) {
// only the plate will have a transparent material assigned.
// The window frame will consists of four seperate beams.
// AutoCAD Architecture will create an internal window type for the IfcWindow created.
// Therefore the OverallWidth and OverallHeight of the window attributes will need to
// match the bounding box of the representation. Furthermore, the window placement needs
// to align with the lowerleft corner of the constituent parts.
Ifc2x3::IfcProductDefinitionShape::list frame_representations (new IfcTemplatedEntityList<Ifc2x3::IfcProductDefinitionShape>());
frame_representations->push(file.addBox(1860, 90, 90));
frame_representations->push(*frame_representations->begin()); // Add a reference to the shape created above
@@ -277,18 +281,18 @@ int main(int argc, char** argv) {
// This window will be placed at five locations within the building. A list of placements is
// created and is iterated over to create all window instances.
Ifc2x3::IfcLocalPlacement::list window_placements (new IfcTemplatedEntityList<Ifc2x3::IfcLocalPlacement>());
window_placements->push(file.addLocalPlacement(2*-1770-430, 0, 400));
window_placements->push(file.addLocalPlacement( -1770-430, 0, 400));
window_placements->push(file.addLocalPlacement( -430, 0, 400));
window_placements->push(file.addLocalPlacement( 3000, 0, 400));
window_placements->push(file.addLocalPlacement( -4855, 885, 400, 0, 0, 1, 0, 1, 0));
window_placements->push(file.addLocalPlacement(2*-1770-430-930, -45, 400));
window_placements->push(file.addLocalPlacement( -1770-430-930, -45, 400));
window_placements->push(file.addLocalPlacement( -430-930, -45, 400));
window_placements->push(file.addLocalPlacement( 3000-930, -45, 400));
window_placements->push(file.addLocalPlacement( -4855+45, 885-930, 400, 0, 0, 1, 0, 1, 0));
for (Ifc2x3::IfcLocalPlacement::it it = window_placements->begin(); it != window_placements->end(); ++it) {
// Create the window at the current location
Ifc2x3::IfcLocalPlacement* place = *it;
Ifc2x3::IfcWindow* window = new Ifc2x3::IfcWindow(guid(), file.getSingle<Ifc2x3::IfcOwnerHistory>(),
null, null, null, place, 0, null, 2000, 1600);
null, null, null, place, 0, null, 1600, 1860);
file.addBuildingProduct(window);
// Initalize a list of parts for the window to be composed of
@@ -297,10 +301,10 @@ int main(int argc, char** argv) {
// The placements for the beams are not shared accross the different windows because every
// beam is placed relative to its parent window entity.
Ifc2x3::IfcLocalPlacement::list frame_placements (new IfcTemplatedEntityList<Ifc2x3::IfcLocalPlacement>());
frame_placements->push(file.addLocalPlacement());
frame_placements->push(file.addLocalPlacement( 0, 0, 1510));
frame_placements->push(file.addLocalPlacement(-885, 0, 90));
frame_placements->push(file.addLocalPlacement( 885, 0, 90));
frame_placements->push(file.addLocalPlacement( 930,45));
frame_placements->push(file.addLocalPlacement( 930, 45, 1510));
frame_placements->push(file.addLocalPlacement(-885+930, 45, 90));
frame_placements->push(file.addLocalPlacement( 885+930, 45, 90));
// Now iterate over the placements and representations of the beam and add them to list of parts
Ifc2x3::IfcLocalPlacement::it frame_placement;
@@ -318,7 +322,7 @@ int main(int argc, char** argv) {
// Add the glass plate to the list of parts
Ifc2x3::IfcPlate* glass_part = new Ifc2x3::IfcPlate(guid(), file.getSingle<Ifc2x3::IfcOwnerHistory>(), null,
null, null, file.addLocalPlacement(0, 0, 90), file.addBox(1680, 10, 1420), null);
null, null, file.addLocalPlacement(930, 45, 90), file.addBox(1680, 10, 1420), null);
file.AddEntity(glass_part);
window_parts->push(glass_part);
file.relatePlacements(window, glass_part);
+17 -10
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@@ -348,18 +348,22 @@ class InverseList:
return s
class Classdef:
def __init__(self,l):
self.class_name, self.parent_class, self.arguments, self.inverse = l
self.class_name, self.parent_class, self.arguments, derive, self.inverse = l
self.arguments.class_name = self.class_name
self.arguments.parent_class = self.parent_class
entity_names.add(self.class_name)
parent_relations[self.class_name] = self.parent_class
argument_count[self.class_name] = len(self.arguments)
entity_map[self.class_name] = self
def get_constructor_args(self):
s = entity_map[self.parent_class].get_constructor_args() if self.parent_class else []
# For derived attributes only a reference is kepts to overridden attributes in parent classes
self.derive = [x[0].split('.')[-1] for x in derive[1] if x[0].startswith("SELF\\")] if derive else []
def list_constructor_args(self):
s = entity_map[self.parent_class].list_constructor_args() if self.parent_class else []
i = len(s) + 1
s += ["%s v%d_%s"%(a.type_str(),b+i,a.name) for a,b in zip(self.arguments.l,range(len(self.arguments)))]
s += [(a.type_str(),b+i,a.name) for a,b in zip(self.arguments.l,range(len(self.arguments)))]
return s
def get_constructor_args(self):
return ["%s v%d_%s"%x for x in self.list_constructor_args() if x[2] not in self.get_derived()]
def get_constructor_implementation(self):
s = entity_map[self.parent_class].get_constructor_implementation() if self.parent_class else []
i = len(s) + 1
@@ -378,10 +382,13 @@ class Classdef:
else:
impl = "e->setArgument(%d,(%sv%d_%s)%s)"%(b+i-1,dereference,b+i,a.name,generalize)
if use_boost_optional:
s.append("if (v%d_%s) { %s; } else { e->setArgument(%d); } "%(b+i,a.name,impl,b+i-1))
else: s.append(impl)
s.append(["if (v%d_%s) { %s; } else { e->setArgument(%d); } "%(b+i,a.name,impl,b+i-1),a.name,i-1])
else: s.append([impl,a.name,i-1])
b += 1
return s#"; ".join(s)
return s
def get_derived(self):
s = entity_map[self.parent_class].get_derived() if self.parent_class else []
return s + self.derive
def __str__(self):
self.constructor_args_list = self.get_constructor_args()
self.constructor_args = ", ".join(self.constructor_args_list)
@@ -403,7 +410,7 @@ class Classdef:
)
elif generator_mode == 'SOURCE':
self.arguments.argstart = argument_start(self.class_name)
self.constructor_implementation = "; ".join(self.get_constructor_implementation())
self.constructor_implementation = "; ".join([x[0] if x[1] not in self.get_derived() else "e->setArgumentDerived(%d)"%x[2] for x in self.get_constructor_implementation()])
return (("\n// Function implementations for %(class_name)s"+str(self.arguments)+str(self.inverse)+
("\nbool %(class_name)s::is(Type::Enum v) const { return v == Type::%(class_name)s; }" if self.parent_class is None else
"\nbool %(class_name)s::is(Type::Enum v) const { return v == Type::%(class_name)s || %(parent_class)s::is(v); }")+
@@ -462,9 +469,9 @@ unique_value = s + x(':') + s + many(a(',')+s) + a(';')
unique = skip(a('UNIQUE') + many(unique_value))
inverse_def = s + x(':') + (array|single) + x('FOR') + s + x(';') >> inverse_type
inverse = maybe(x('INVERSE') + many( inverse_def )) >> inverse_list
derive = skip(a('DERIVE') + many(clause))
derive = a('DERIVE') + many(clause)
entity = entity_start + arguments + skip(maybe(unique)) + skip(maybe(derive)) + inverse + skip(maybe(where)) + entity_end >> Classdef
entity = entity_start + arguments + skip(maybe(unique)) + maybe(derive) + inverse + skip(maybe(where)) + entity_end >> Classdef
schema = skip(a('SCHEMA')) + s + x(';')
+3 -3
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@@ -7539,7 +7539,7 @@ bool IfcGeometricRepresentationSubContext::is(Type::Enum v) const { return v ==
Type::Enum IfcGeometricRepresentationSubContext::type() const { return Type::IfcGeometricRepresentationSubContext; }
Type::Enum IfcGeometricRepresentationSubContext::Class() { return Type::IfcGeometricRepresentationSubContext; }
IfcGeometricRepresentationSubContext::IfcGeometricRepresentationSubContext(IfcAbstractEntityPtr e) { if (!is(Type::IfcGeometricRepresentationSubContext)) throw IfcException("Unable to find find keyword in schema"); entity = e; }
IfcGeometricRepresentationSubContext::IfcGeometricRepresentationSubContext(optional< IfcLabel > v1_ContextIdentifier, optional< IfcLabel > v2_ContextType, IfcDimensionCount v3_CoordinateSpaceDimension, optional< double > v4_Precision, IfcAxis2Placement v5_WorldCoordinateSystem, IfcDirection* v6_TrueNorth, IfcGeometricRepresentationContext* v7_ParentContext, optional< IfcPositiveRatioMeasure > v8_TargetScale, IfcGeometricProjectionEnum::IfcGeometricProjectionEnum v9_TargetView, optional< IfcLabel > v10_UserDefinedTargetView) { IfcWritableEntity* e = new IfcWritableEntity(Class()); if (v1_ContextIdentifier) { e->setArgument(0,(*v1_ContextIdentifier)); } else { e->setArgument(0); } ; if (v2_ContextType) { e->setArgument(1,(*v2_ContextType)); } else { e->setArgument(1); } ; e->setArgument(2,(v3_CoordinateSpaceDimension)); if (v4_Precision) { e->setArgument(3,(*v4_Precision)); } else { e->setArgument(3); } ; e->setArgument(4,(v5_WorldCoordinateSystem)); e->setArgument(5,(v6_TrueNorth)); e->setArgument(6,(v7_ParentContext)); if (v8_TargetScale) { e->setArgument(7,(*v8_TargetScale)); } else { e->setArgument(7); } ; e->setArgument(8,v9_TargetView,IfcGeometricProjectionEnum::ToString(v9_TargetView)); if (v10_UserDefinedTargetView) { e->setArgument(9,(*v10_UserDefinedTargetView)); } else { e->setArgument(9); } ; entity = e; EntityBuffer::Add(this); }
IfcGeometricRepresentationSubContext::IfcGeometricRepresentationSubContext(optional< IfcLabel > v1_ContextIdentifier, optional< IfcLabel > v2_ContextType, IfcGeometricRepresentationContext* v7_ParentContext, optional< IfcPositiveRatioMeasure > v8_TargetScale, IfcGeometricProjectionEnum::IfcGeometricProjectionEnum v9_TargetView, optional< IfcLabel > v10_UserDefinedTargetView) { IfcWritableEntity* e = new IfcWritableEntity(Class()); if (v1_ContextIdentifier) { e->setArgument(0,(*v1_ContextIdentifier)); } else { e->setArgument(0); } ; if (v2_ContextType) { e->setArgument(1,(*v2_ContextType)); } else { e->setArgument(1); } ; e->setArgumentDerived(2); e->setArgumentDerived(2); e->setArgumentDerived(2); e->setArgumentDerived(2); e->setArgument(6,(v7_ParentContext)); if (v8_TargetScale) { e->setArgument(7,(*v8_TargetScale)); } else { e->setArgument(7); } ; e->setArgument(8,v9_TargetView,IfcGeometricProjectionEnum::ToString(v9_TargetView)); if (v10_UserDefinedTargetView) { e->setArgument(9,(*v10_UserDefinedTargetView)); } else { e->setArgument(9); } ; entity = e; EntityBuffer::Add(this); }
// Function implementations for IfcGeometricSet
SHARED_PTR< IfcTemplatedEntityList< IfcAbstractSelect > > IfcGeometricSet::Elements() { RETURN_AS_LIST(IfcAbstractSelect,0) }
void IfcGeometricSet::setElements(SHARED_PTR< IfcTemplatedEntityList< IfcAbstractSelect > > v) { if ( ! entity->isWritable() ) { entity = new IfcWritableEntity(entity); } ((IfcWritableEntity*)entity)->setArgument(0,v->generalize()); }
@@ -8405,7 +8405,7 @@ bool IfcOrientedEdge::is(Type::Enum v) const { return v == Type::IfcOrientedEdge
Type::Enum IfcOrientedEdge::type() const { return Type::IfcOrientedEdge; }
Type::Enum IfcOrientedEdge::Class() { return Type::IfcOrientedEdge; }
IfcOrientedEdge::IfcOrientedEdge(IfcAbstractEntityPtr e) { if (!is(Type::IfcOrientedEdge)) throw IfcException("Unable to find find keyword in schema"); entity = e; }
IfcOrientedEdge::IfcOrientedEdge(IfcVertex* v1_EdgeStart, IfcVertex* v2_EdgeEnd, IfcEdge* v3_EdgeElement, bool v4_Orientation) { IfcWritableEntity* e = new IfcWritableEntity(Class()); e->setArgument(0,(v1_EdgeStart)); e->setArgument(1,(v2_EdgeEnd)); e->setArgument(2,(v3_EdgeElement)); e->setArgument(3,(v4_Orientation)); entity = e; EntityBuffer::Add(this); }
IfcOrientedEdge::IfcOrientedEdge(IfcEdge* v3_EdgeElement, bool v4_Orientation) { IfcWritableEntity* e = new IfcWritableEntity(Class()); e->setArgumentDerived(0); e->setArgumentDerived(0); e->setArgument(2,(v3_EdgeElement)); e->setArgument(3,(v4_Orientation)); entity = e; EntityBuffer::Add(this); }
// Function implementations for IfcOutletType
IfcOutletTypeEnum::IfcOutletTypeEnum IfcOutletType::PredefinedType() { return IfcOutletTypeEnum::FromString(*entity->getArgument(9)); }
void IfcOutletType::setPredefinedType(IfcOutletTypeEnum::IfcOutletTypeEnum v) { if ( ! entity->isWritable() ) { entity = new IfcWritableEntity(entity); } ((IfcWritableEntity*)entity)->setArgument(9,v,IfcOutletTypeEnum::ToString(v)); }
@@ -10110,7 +10110,7 @@ bool IfcSIUnit::is(Type::Enum v) const { return v == Type::IfcSIUnit || IfcNamed
Type::Enum IfcSIUnit::type() const { return Type::IfcSIUnit; }
Type::Enum IfcSIUnit::Class() { return Type::IfcSIUnit; }
IfcSIUnit::IfcSIUnit(IfcAbstractEntityPtr e) { if (!is(Type::IfcSIUnit)) throw IfcException("Unable to find find keyword in schema"); entity = e; }
IfcSIUnit::IfcSIUnit(IfcDimensionalExponents* v1_Dimensions, IfcUnitEnum::IfcUnitEnum v2_UnitType, optional< IfcSIPrefix::IfcSIPrefix > v3_Prefix, IfcSIUnitName::IfcSIUnitName v4_Name) { IfcWritableEntity* e = new IfcWritableEntity(Class()); e->setArgument(0,(v1_Dimensions)); e->setArgument(1,v2_UnitType,IfcUnitEnum::ToString(v2_UnitType)); if (v3_Prefix) { e->setArgument(2,*v3_Prefix,IfcSIPrefix::ToString(*v3_Prefix)); } else { e->setArgument(2); } ; e->setArgument(3,v4_Name,IfcSIUnitName::ToString(v4_Name)); entity = e; EntityBuffer::Add(this); }
IfcSIUnit::IfcSIUnit(IfcUnitEnum::IfcUnitEnum v2_UnitType, optional< IfcSIPrefix::IfcSIPrefix > v3_Prefix, IfcSIUnitName::IfcSIUnitName v4_Name) { IfcWritableEntity* e = new IfcWritableEntity(Class()); e->setArgumentDerived(0); e->setArgument(1,v2_UnitType,IfcUnitEnum::ToString(v2_UnitType)); if (v3_Prefix) { e->setArgument(2,*v3_Prefix,IfcSIPrefix::ToString(*v3_Prefix)); } else { e->setArgument(2); } ; e->setArgument(3,v4_Name,IfcSIUnitName::ToString(v4_Name)); entity = e; EntityBuffer::Add(this); }
// Function implementations for IfcSanitaryTerminalType
IfcSanitaryTerminalTypeEnum::IfcSanitaryTerminalTypeEnum IfcSanitaryTerminalType::PredefinedType() { return IfcSanitaryTerminalTypeEnum::FromString(*entity->getArgument(9)); }
void IfcSanitaryTerminalType::setPredefinedType(IfcSanitaryTerminalTypeEnum::IfcSanitaryTerminalTypeEnum v) { if ( ! entity->isWritable() ) { entity = new IfcWritableEntity(entity); } ((IfcWritableEntity*)entity)->setArgument(9,v,IfcSanitaryTerminalTypeEnum::ToString(v)); }
+3 -3
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@@ -9733,7 +9733,7 @@ public:
Type::Enum type() const;
static Type::Enum Class();
IfcSIUnit (IfcAbstractEntityPtr e = IfcAbstractEntityPtr());
IfcSIUnit (IfcDimensionalExponents* v1_Dimensions, IfcUnitEnum::IfcUnitEnum v2_UnitType, optional< IfcSIPrefix::IfcSIPrefix > v3_Prefix, IfcSIUnitName::IfcSIUnitName v4_Name);
IfcSIUnit (IfcUnitEnum::IfcUnitEnum v2_UnitType, optional< IfcSIPrefix::IfcSIPrefix > v3_Prefix, IfcSIUnitName::IfcSIUnitName v4_Name);
typedef IfcSIUnit* ptr;
typedef SHARED_PTR< IfcTemplatedEntityList< IfcSIUnit > > list;
typedef IfcTemplatedEntityList< IfcSIUnit >::it it;
@@ -13205,7 +13205,7 @@ public:
Type::Enum type() const;
static Type::Enum Class();
IfcGeometricRepresentationSubContext (IfcAbstractEntityPtr e = IfcAbstractEntityPtr());
IfcGeometricRepresentationSubContext (optional< IfcLabel > v1_ContextIdentifier, optional< IfcLabel > v2_ContextType, IfcDimensionCount v3_CoordinateSpaceDimension, optional< double > v4_Precision, IfcAxis2Placement v5_WorldCoordinateSystem, IfcDirection* v6_TrueNorth, IfcGeometricRepresentationContext* v7_ParentContext, optional< IfcPositiveRatioMeasure > v8_TargetScale, IfcGeometricProjectionEnum::IfcGeometricProjectionEnum v9_TargetView, optional< IfcLabel > v10_UserDefinedTargetView);
IfcGeometricRepresentationSubContext (optional< IfcLabel > v1_ContextIdentifier, optional< IfcLabel > v2_ContextType, IfcGeometricRepresentationContext* v7_ParentContext, optional< IfcPositiveRatioMeasure > v8_TargetScale, IfcGeometricProjectionEnum::IfcGeometricProjectionEnum v9_TargetView, optional< IfcLabel > v10_UserDefinedTargetView);
typedef IfcGeometricRepresentationSubContext* ptr;
typedef SHARED_PTR< IfcTemplatedEntityList< IfcGeometricRepresentationSubContext > > list;
typedef IfcTemplatedEntityList< IfcGeometricRepresentationSubContext >::it it;
@@ -14111,7 +14111,7 @@ public:
Type::Enum type() const;
static Type::Enum Class();
IfcOrientedEdge (IfcAbstractEntityPtr e = IfcAbstractEntityPtr());
IfcOrientedEdge (IfcVertex* v1_EdgeStart, IfcVertex* v2_EdgeEnd, IfcEdge* v3_EdgeElement, bool v4_Orientation);
IfcOrientedEdge (IfcEdge* v3_EdgeElement, bool v4_Orientation);
typedef IfcOrientedEdge* ptr;
typedef SHARED_PTR< IfcTemplatedEntityList< IfcOrientedEdge > > list;
typedef IfcTemplatedEntityList< IfcOrientedEdge >::it it;
+2 -2
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@@ -98,9 +98,9 @@ Ifc2x3::IfcProject* IfcHierarchyHelper::addProject(Ifc2x3::IfcOwnerHistory* owne
IfcEntities units (new IfcEntityList());
Ifc2x3::IfcDimensionalExponents* dimexp = new Ifc2x3::IfcDimensionalExponents(0, 0, 0, 0, 0, 0, 0);
Ifc2x3::IfcSIUnit* unit1 = new Ifc2x3::IfcSIUnit(dimexp, Ifc2x3::IfcUnitEnum::IfcUnit_LENGTHUNIT,
Ifc2x3::IfcSIUnit* unit1 = new Ifc2x3::IfcSIUnit(Ifc2x3::IfcUnitEnum::IfcUnit_LENGTHUNIT,
Ifc2x3::IfcSIPrefix::IfcSIPrefix_MILLI, Ifc2x3::IfcSIUnitName::IfcSIUnitName_METRE);
Ifc2x3::IfcSIUnit* unit2a = new Ifc2x3::IfcSIUnit(dimexp, Ifc2x3::IfcUnitEnum::IfcUnit_PLANEANGLEUNIT,
Ifc2x3::IfcSIUnit* unit2a = new Ifc2x3::IfcSIUnit(Ifc2x3::IfcUnitEnum::IfcUnit_PLANEANGLEUNIT,
boost::none, Ifc2x3::IfcSIUnitName::IfcSIUnitName_RADIAN);
Ifc2x3::IfcMeasureWithUnit* unit2b = new Ifc2x3::IfcMeasureWithUnit(
new IfcWrite::IfcSelectHelper(0.017453293, Ifc2x3::Type::IfcPlaneAngleMeasure), unit2a);
+1
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@@ -59,6 +59,7 @@ namespace IfcWrite {
unsigned int id();
bool isWritable();
void setArgument(int i);
void setArgumentDerived(int i);
void setArgument(int i,bool v);
void setArgument(int i,int v);
void setArgument(int i,int v, const char* c);
+19
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@@ -105,6 +105,11 @@ void IfcWritableEntity::setArgument(int i) {
args[i] = new IfcWriteNullArgument(this);
arg_writable(i,true);
}
void IfcWritableEntity::setArgumentDerived(int i) {
if ( arg_writable(i) ) delete args[i];
args[i] = new IfcWriteDerivedArgument(this);
arg_writable(i,true);
}
void IfcWritableEntity::setArgument(int i,int v) {
if ( arg_writable(i) ) delete args[i];
args[i] = new IfcWriteIntegralArgument(this,v);
@@ -172,6 +177,20 @@ ArgumentPtr IfcWriteNullArgument::operator [] (unsigned int i) const { throw Ifc
std::string IfcWriteNullArgument::toString(bool upper) const { return "$"; }
unsigned int IfcWriteNullArgument::Size() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator int() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator bool() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator double() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator std::string() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator std::vector<double>() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator std::vector<int>() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator std::vector<std::string>() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator IfcUtil::IfcSchemaEntity() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteDerivedArgument::operator IfcEntities() const { throw IfcParse::IfcException("Invalid cast"); }
bool IfcWriteDerivedArgument::isNull() const { throw IfcParse::IfcException("Invalid cast"); }
ArgumentPtr IfcWriteDerivedArgument::operator [] (unsigned int i) const { throw IfcParse::IfcException("Invalid cast"); }
std::string IfcWriteDerivedArgument::toString(bool upper) const { return "*"; }
unsigned int IfcWriteDerivedArgument::Size() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteEntityListArgument::IfcWriteEntityListArgument(IfcAbstractEntity* e, const IfcEntities& v) : IfcWriteArgument(e) { value = v; }
IfcWriteEntityListArgument::operator int() const { throw IfcParse::IfcException("Invalid cast"); }
IfcWriteEntityListArgument::operator bool() const { throw IfcParse::IfcException("Invalid cast"); }
+19
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@@ -58,6 +58,25 @@ namespace IfcWrite {
std::string toString(bool upper=false) const;
unsigned int Size() const;
};
/// A derived argument. It will always serialize to *
class IfcWriteDerivedArgument : public IfcWriteArgument {
public:
IfcWriteDerivedArgument(IfcAbstractEntity* e) : IfcWriteArgument(e) {};
operator int() const;
operator bool() const;
operator double() const;
operator std::string() const;
operator std::vector<double>() const;
operator std::vector<int>() const;
operator std::vector<std::string>() const;
operator IfcUtil::IfcSchemaEntity() const;
operator IfcEntities() const;
bool isNull() const;
ArgumentPtr operator [] (unsigned int i) const;
std::string toString(bool upper=false) const;
unsigned int Size() const;
};
/// An entity list argument. It will serialize to (#1,#2,#3)
/// with possibly a datatype identifier for SELECT types, e.g: