summaryrefslogtreecommitdiff
path: root/src/IGESSolid/IGESSolid_ToolTorus.cxx
blob: 520aa287d45a490efc73dbaa5d8fdba5a06bb549 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
//--------------------------------------------------------------------
//
//  File Name : IGESSolid_Torus.cxx
//  Date      :
//  Author    : CKY / Contract Toubro-Larsen
//  Copyright : MATRA-DATAVISION 1993
//
//--------------------------------------------------------------------

#include <IGESSolid_ToolTorus.ixx>
#include <IGESData_ParamCursor.hxx>
#include <gp_XYZ.hxx>
#include <gp_Pnt.hxx>
#include <gp_Dir.hxx>
#include <IGESData_Dump.hxx>


IGESSolid_ToolTorus::IGESSolid_ToolTorus ()    {  }


void  IGESSolid_ToolTorus::ReadOwnParams
  (const Handle(IGESSolid_Torus)& ent,
   const Handle(IGESData_IGESReaderData)& /* IR */, IGESData_ParamReader& PR) const
{
  Standard_Real r1, r2;
  Standard_Real tempreal;
  gp_XYZ tempPoint, tempAxis;
  //Standard_Boolean st; //szv#4:S4163:12Mar99 not needed

  PR.ReadReal(PR.Current(), "Radius of revolution", r1); //szv#4:S4163:12Mar99 `st=` not needed
  PR.ReadReal(PR.Current(), "Radius of disc", r2); //szv#4:S4163:12Mar99 `st=` not needed

  if (PR.DefinedElseSkip())
    {
      //st = PR.ReadReal(PR.Current(), "Center Point (X)", tempreal); //szv#4:S4163:12Mar99 moved in if
      if (PR.ReadReal(PR.Current(), "Center Point (X)", tempreal))
	tempPoint.SetX(tempreal);
    }
  else  tempPoint.SetX(0.0);

  if (PR.DefinedElseSkip())
    {
      //st = PR.ReadReal(PR.Current(), "Center Point (Y)", tempreal); //szv#4:S4163:12Mar99 moved in if
      if (PR.ReadReal(PR.Current(), "Center Point (Y)", tempreal))
	tempPoint.SetY(tempreal);
    }
  else  tempPoint.SetY(0.0);

  if (PR.DefinedElseSkip())
    {
      //st = PR.ReadReal(PR.Current(), "Center Point (Z)", tempreal); //szv#4:S4163:12Mar99 moved in if
      if (PR.ReadReal(PR.Current(), "Center Point (Z)", tempreal))
	tempPoint.SetZ(tempreal);
    }
  else  tempPoint.SetZ(0.0);

  if (PR.DefinedElseSkip())
    {
      //st = PR.ReadReal(PR.Current(), "Axis direction (I)", tempreal); //szv#4:S4163:12Mar99 moved in if
      if (PR.ReadReal(PR.Current(), "Axis direction (I)", tempreal))
	tempAxis.SetX(tempreal);
    }
  else  tempAxis.SetX(0.0);

  if (PR.DefinedElseSkip())
    {
      //st = PR.ReadReal(PR.Current(), "Axis direction (J)", tempreal); //szv#4:S4163:12Mar99 moved in if
      if (PR.ReadReal(PR.Current(), "Axis direction (J)", tempreal))
	tempAxis.SetY(tempreal);
    }
  else  tempAxis.SetY(0.0);

  if (PR.DefinedElseSkip())
    {
      //st = PR.ReadReal(PR.Current(), "Axis direction (K)", tempreal); //szv#4:S4163:12Mar99 moved in if
      if (PR.ReadReal(PR.Current(), "Axis direction (K)", tempreal))
	tempAxis.SetZ(tempreal);
    }
  else  tempAxis.SetZ(1.0);

  DirChecker(ent).CheckTypeAndForm(PR.CCheck(),ent);
  ent->Init (r1, r2, tempPoint, tempAxis);
  Standard_Real eps = 1.E-05;
  if (!tempAxis.IsEqual(ent->Axis().XYZ(),eps))
    PR.AddWarning("Axis poorly unitary, normalized");
}

void  IGESSolid_ToolTorus::WriteOwnParams
  (const Handle(IGESSolid_Torus)& ent, IGESData_IGESWriter& IW) const
{
  IW.Send(ent->MajorRadius());
  IW.Send(ent->DiscRadius());
  IW.Send(ent->AxisPoint().X());
  IW.Send(ent->AxisPoint().Y());
  IW.Send(ent->AxisPoint().Z());
  IW.Send(ent->Axis().X());
  IW.Send(ent->Axis().Y());
  IW.Send(ent->Axis().Z());
}

void  IGESSolid_ToolTorus::OwnShared
  (const Handle(IGESSolid_Torus)& /* ent */, Interface_EntityIterator& /* iter */) const
{
}

void  IGESSolid_ToolTorus::OwnCopy
  (const Handle(IGESSolid_Torus)& another,
   const Handle(IGESSolid_Torus)& ent, Interface_CopyTool& /* TC */) const
{
  ent->Init (another->MajorRadius(), another->DiscRadius(),
	     another->AxisPoint().XYZ(), another->Axis().XYZ());
}

IGESData_DirChecker  IGESSolid_ToolTorus::DirChecker
  (const Handle(IGESSolid_Torus)& /* ent */ ) const
{
  IGESData_DirChecker DC(160, 0);

  DC.Structure  (IGESData_DefVoid);
  DC.LineFont   (IGESData_DefAny);
  DC.Color      (IGESData_DefAny);

  DC.UseFlagRequired (0);
  DC.HierarchyStatusIgnored ();
  return DC;
}

void  IGESSolid_ToolTorus::OwnCheck
  (const Handle(IGESSolid_Torus)& ent,
   const Interface_ShareTool& , Handle(Interface_Check)& ach) const
{
  if (ent->MajorRadius() <= 0.0)
    ach->AddFail("Radius of revolution : Not Positive");
  if (ent->DiscRadius() <= 0.0)
    ach->AddFail("Radius of disc : Not Positive");
  if (ent->DiscRadius() >= ent->MajorRadius())
    ach->AddFail("Radius of disc : is not Less than Radius of revolution");
}

void  IGESSolid_ToolTorus::OwnDump
  (const Handle(IGESSolid_Torus)& ent, const IGESData_IGESDumper& /* dumper */,
   const Handle(Message_Messenger)& S, const Standard_Integer level) const
{
  S << "IGESSolid_Torus" << endl;

  S << "Radius of revolution : " << ent->MajorRadius() << "  ";
  S << "Radius of the disc   : " << ent->DiscRadius()  << endl;
  S << "Center Point   : ";
  IGESData_DumpXYZL(S,level, ent->AxisPoint(), ent->Location());
  S << endl << "Axis direction : ";
  IGESData_DumpXYZL(S,level, ent->Axis(), ent->VectorLocation());
  S << endl;
}