Add code to assemble the piecewise linear segments in a group into
a polygon, and to fill that polygon. [git-p4: depot-paths = "//depot/solvespace/": change = 1686]solver
parent
1331457928
commit
a7cec38656
1
Makefile
1
Makefile
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@ -21,6 +21,7 @@ SSOBJS = $(OBJDIR)\solvespace.obj \
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$(OBJDIR)\drawconstraint.obj \
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$(OBJDIR)\file.obj \
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$(OBJDIR)\system.obj \
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$(OBJDIR)\polygon.obj \
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LIBS = user32.lib gdi32.lib comctl32.lib advapi32.lib opengl32.lib glu32.lib
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@ -33,7 +33,7 @@ void Constraint::DrawOrGetDistance(Vector *labelPos) {
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Vector gu = SS.GW.projUp;
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Vector gn = gr.Cross(gu);
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glxColor(1, 0.2, 1);
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glxColor3d(1, 0.2, 1);
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switch(type) {
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case PT_PT_DISTANCE: {
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Vector ap = SS.GetEntity(ptA)->PointGetCoords();
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@ -86,7 +86,7 @@ void Constraint::DrawOrGetDistance(Vector *labelPos) {
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for(int i = 0; i < 2; i++) {
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Vector p = SS.GetEntity(i == 0 ? ptA : ptB)->
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PointGetCoords();
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glxColor(0.4, 0, 0.4);
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glxColor3d(0.4, 0, 0.4);
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glBegin(GL_QUADS);
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glxVertex3v(p.Plus (r).Plus (d));
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glxVertex3v(p.Plus (r).Minus(d));
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1
dsc.h
1
dsc.h
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@ -33,6 +33,7 @@ public:
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static Vector MakeFrom(double x, double y, double z);
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bool Equals(Vector v);
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Vector Plus(Vector b);
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Vector Minus(Vector b);
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Vector Negated(void);
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26
entity.cpp
26
entity.cpp
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@ -211,13 +211,31 @@ void Entity::LineDrawOrGetDistance(Vector a, Vector b) {
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}
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}
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void Entity::LineDrawOrGetDistanceOrEdge(Vector a, Vector b) {
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LineDrawOrGetDistance(a, b);
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if(dogd.edges) {
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SEdge edge;
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edge.a = a; edge.b = b;
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dogd.edges->l.Add(&edge);
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}
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}
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void Entity::Draw(int order) {
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dogd.drawing = true;
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dogd.edges = NULL;
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DrawOrGetDistance(order);
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}
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void Entity::GenerateEdges(SEdgeList *el) {
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dogd.drawing = false;
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dogd.edges = el;
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DrawOrGetDistance(-1);
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dogd.edges = NULL;
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}
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double Entity::GetDistance(Point2d mp) {
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dogd.drawing = false;
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dogd.edges = NULL;
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dogd.mp = mp;
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dogd.dmin = 1e12;
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@ -227,7 +245,7 @@ double Entity::GetDistance(Point2d mp) {
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}
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void Entity::DrawOrGetDistance(int order) {
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glxColor(1, 1, 1);
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glxColor3d(1, 1, 1);
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switch(type) {
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case POINT_IN_3D:
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@ -245,7 +263,7 @@ void Entity::DrawOrGetDistance(int order) {
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Vector r = SS.GW.projRight.ScaledBy(s/SS.GW.scale);
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Vector d = SS.GW.projUp.ScaledBy(s/SS.GW.scale);
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glxColor(0, 0.8, 0);
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glxColor3d(0, 0.8, 0);
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glBegin(GL_QUADS);
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glxVertex3v(v.Plus (r).Plus (d));
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glxVertex3v(v.Plus (r).Minus(d));
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@ -279,7 +297,7 @@ void Entity::DrawOrGetDistance(int order) {
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Vector mm = p.Minus(us).Minus(vs);
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Vector mp = p.Minus(us).Plus (vs);
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glxColor(0, 0.4, 0.4);
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glxColor3d(0, 0.4, 0.4);
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LineDrawOrGetDistance(pp, pm);
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LineDrawOrGetDistance(pm, mm);
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LineDrawOrGetDistance(mm, mp);
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@ -299,7 +317,7 @@ void Entity::DrawOrGetDistance(int order) {
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if(order >= 0 && order != 1) break;
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Vector a = SS.GetEntity(assoc[0])->PointGetCoords();
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Vector b = SS.GetEntity(assoc[1])->PointGetCoords();
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LineDrawOrGetDistance(a, b);
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LineDrawOrGetDistanceOrEdge(a, b);
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break;
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}
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44
glhelper.cpp
44
glhelper.cpp
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@ -60,7 +60,7 @@ void glxOntoCsys(Vector u, Vector v)
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void glxLockColorTo(double r, double g, double b)
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{
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ColorLocked = false;
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glxColor(r, g, b);
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glxColor3d(r, g, b);
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ColorLocked = true;
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}
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@ -69,9 +69,45 @@ void glxUnlockColor(void)
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ColorLocked = false;
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}
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void glxColor(double r, double g, double b)
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void glxColor3d(double r, double g, double b)
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{
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if(!ColorLocked) {
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glColor3f((GLfloat)r, (GLfloat)g, (GLfloat)b);
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if(!ColorLocked) glColor3d(r, g, b);
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}
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void glxColor4d(double r, double g, double b, double a)
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{
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if(!ColorLocked) glColor4d(r, g, b, a);
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}
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static void __stdcall Vertex(Vector *p) {
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glxVertex3v(*p);
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}
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void glxFillPolygon(SPolygon *p)
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{
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int i, j;
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GLUtesselator *gt = gluNewTess();
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typedef void __stdcall cf(void);
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gluTessCallback(gt, GLU_TESS_BEGIN, (cf *)glBegin);
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gluTessCallback(gt, GLU_TESS_END, (cf *)glEnd);
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gluTessCallback(gt, GLU_TESS_VERTEX, (cf *)Vertex);
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gluTessProperty(gt, GLU_TESS_WINDING_RULE, GLU_TESS_WINDING_ODD);
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gluTessBeginPolygon(gt, NULL);
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for(i = 0; i < p->l.n; i++) {
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SContour *sc = &(p->l.elem[i]);
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gluTessBeginContour(gt);
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for(j = 0; j < (sc->l.n-1); j++) {
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SPoint *sp = &(sc->l.elem[j]);
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double ap[3];
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ap[0] = sp->p.x;
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ap[1] = sp->p.y;
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ap[2] = sp->p.z;
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gluTessVertex(gt, ap, &(sp->p));
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}
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gluTessEndContour(gt);
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}
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gluTessEndPolygon(gt);
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gluDeleteTess(gt);
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}
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@ -280,7 +280,21 @@ void GraphicsWindow::MenuEdit(int id) {
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if(s->entity.v) {
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r = s->entity.request();
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}
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if(r.v && !r.IsFromReferences()) SS.request.Tag(r, 1);
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if(r.v && !r.IsFromReferences()) {
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SS.request.Tag(r, 1);
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int j;
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for(j = 0; j < SS.constraint.n; j++) {
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Constraint *c = &(SS.constraint.elem[j]);
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if(((c->ptA).request().v == r.v) ||
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((c->ptB).request().v == r.v) ||
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((c->ptC).request().v == r.v) ||
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((c->entityA).request().v == r.v) ||
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((c->entityB).request().v == r.v))
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{
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SS.constraint.Tag(c->h, 1);
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}
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}
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}
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if(s->constraint.v) {
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SS.constraint.Tag(s->constraint, 1);
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}
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@ -561,19 +575,22 @@ void GraphicsWindow::MouseLeftDown(double mx, double my) {
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hRequest hr;
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switch(pendingOperation) {
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case MNU_DATUM_POINT:
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ClearSelection(); hover.Clear();
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hr = AddRequest(Request::DATUM_POINT);
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SS.GetEntity(hr.entity(0))->PointForceTo(v);
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ClearSelection(); hover.Clear();
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pendingOperation = 0;
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break;
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case MNU_LINE_SEGMENT:
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ClearSelection(); hover.Clear();
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hr = AddRequest(Request::LINE_SEGMENT);
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SS.GetEntity(hr.entity(1))->PointForceTo(v);
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if(hover.entity.v && SS.GetEntity(hover.entity)->IsPoint()) {
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Constraint::ConstrainCoincident(hover.entity, hr.entity(1));
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}
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ClearSelection(); hover.Clear();
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pendingOperation = DRAGGING_NEW_LINE_POINT;
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pendingPoint = hr.entity(2);
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@ -776,6 +793,11 @@ void GraphicsWindow::Paint(int w, int h) {
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SS.constraint.elem[i].Draw();
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}
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// Draw the groups; this fills the polygons, if requested.
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for(i = 0; i < SS.group.n; i++) {
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SS.group.elem[i].Draw();
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}
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// Then redraw whatever the mouse is hovering over, highlighted.
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glDisable(GL_DEPTH_TEST);
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glxLockColorTo(1, 1, 0);
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@ -0,0 +1,78 @@
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#include "solvespace.h"
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bool SEdgeList::AssemblePolygon(SPolygon *dest, SEdge *errorAt) {
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dest->Clear();
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l.ClearTags();
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for(;;) {
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Vector first, last;
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int i;
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for(i = 0; i < l.n; i++) {
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if(!l.elem[i].tag) {
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first = l.elem[i].a;
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last = l.elem[i].b;
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l.elem[i].tag = 1;
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break;
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}
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}
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if(i >= l.n) {
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return true;
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}
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dest->AddEmptyContour();
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dest->AddPoint(first);
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dest->AddPoint(last);
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do {
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for(i = 0; i < l.n; i++) {
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SEdge *se = &(l.elem[i]);
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if(se->tag) continue;
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if(se->a.Equals(last)) {
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dest->AddPoint(se->b);
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last = se->b;
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se->tag = 1;
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break;
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}
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if(se->b.Equals(last)) {
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dest->AddPoint(se->a);
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last = se->a;
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se->tag = 1;
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break;
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}
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}
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if(i >= l.n) {
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// Couldn't assemble a closed contour; mark where.
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errorAt->a = first;
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errorAt->b = last;
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return false;
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}
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} while(!last.Equals(first));
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}
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}
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void SPolygon::Clear(void) {
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int i;
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for(i = 0; i < l.n; i++) {
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(l.elem[i]).l.Clear();
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}
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l.Clear();
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}
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void SPolygon::AddEmptyContour(void) {
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SContour c;
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memset(&c, 0, sizeof(c));
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l.Add(&c);
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}
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void SPolygon::AddPoint(Vector p) {
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if(l.n < 1) oops();
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SPoint sp;
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sp.tag = 0;
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sp.p = p;
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// Add to the last contour in the list
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(l.elem[l.n-1]).l.Add(&sp);
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}
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37
polygon.h
37
polygon.h
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@ -2,16 +2,40 @@
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#ifndef __POLYGON_H
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#define __POLYGON_H
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class SPolygon;
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template <class T>
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class SList {
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public:
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T *elem;
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int n;
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int elemsAllocated;
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void Add(T *t) {
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if(n >= elemsAllocated) {
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elemsAllocated = (elemsAllocated + 32)*2;
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elem = (T *)MemRealloc(elem, elemsAllocated*sizeof(elem[0]));
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}
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elem[n++] = *t;
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}
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void ClearTags(void) {
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int i;
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for(i = 0; i < n; i++) {
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elem[i].tag = 0;
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}
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}
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void Clear(void) {
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if(elem) MemFree(elem);
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elem = NULL;
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n = elemsAllocated = 0;
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}
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};
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class SEdge {
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public:
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int tag;
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Vector a, b;
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};
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@ -19,16 +43,27 @@ class SEdgeList {
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public:
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SList<SEdge> l;
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bool AssemblePolygon(SPolygon *dest, SEdge *errorAt);
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};
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class SPoint {
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public:
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int tag;
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Vector p;
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};
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class SContour {
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public:
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SList<Vector> l;
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SList<SPoint> l;
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};
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class SPolygon {
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public:
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SList<SContour> l;
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void AddEmptyContour(void);
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void AddPoint(Vector p);
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void Clear(void);
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};
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class SPolyhedron {
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28
sketch.cpp
28
sketch.cpp
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@ -17,6 +17,34 @@ char *Group::DescriptionString(void) {
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return ret;
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}
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void Group::Draw(void) {
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edges.l.Clear();
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int i;
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for(i = 0; i < SS.entity.n; i++) {
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Entity *e = &(SS.entity.elem[i]);
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hRequest hr = e->h.request();
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if(SS.GetRequest(hr)->group.v != h.v) continue;
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e->GenerateEdges(&edges);
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}
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SPolygon poly;
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memset(&poly, 0, sizeof(poly));
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SEdge error;
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if(edges.AssemblePolygon(&poly, &error)) {
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glxColor4d(0, 0, 1, 0.15);
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glxFillPolygon(&poly);
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} else {
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glxColor4d(1, 0, 0, 0.3);
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glLineWidth(10);
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glBegin(GL_LINES);
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glxVertex3v(error.a);
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glxVertex3v(error.b);
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glEnd();
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glLineWidth(1);
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}
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poly.Clear();
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}
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hParam Request::AddParam(IdList<Param,hParam> *param, hParam hp) {
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Param pa;
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memset(&pa, 0, sizeof(pa));
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11
sketch.h
11
sketch.h
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@ -65,10 +65,15 @@ public:
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bool visible;
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SEdgeList edges;
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SPolygon poly;
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NameStr name;
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char *DescriptionString(void);
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void Draw(void);
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SPolygon GetPolygon(void);
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};
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@ -173,11 +178,15 @@ public:
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bool drawing;
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Point2d mp;
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double dmin;
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} dogd;
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SEdgeList *edges;
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} dogd; // state for drawing or getting distance (for hit testing)
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void LineDrawOrGetDistance(Vector a, Vector b);
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void LineDrawOrGetDistanceOrEdge(Vector a, Vector b);
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void DrawOrGetDistance(int order);
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void Draw(int order);
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double GetDistance(Point2d mp);
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void GenerateEdges(SEdgeList *el);
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char *DescriptionString(void);
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};
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@ -156,6 +156,8 @@ void SolveSpace::MenuFile(int id) {
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case GraphicsWindow::MNU_NEW:
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SS.NewFile();
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SS.GenerateAll();
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SS.GW.Init();
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SS.TW.Init();
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break;
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case GraphicsWindow::MNU_OPEN:
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@ -64,12 +64,14 @@ void MemFree(void *p);
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// Utility functions that are provided in the platform-independent code.
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void glxVertex3v(Vector u);
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void glxFillPolygon(SPolygon *p);
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void glxWriteText(char *str);
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void glxTranslatev(Vector u);
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void glxOntoCsys(Vector u, Vector v);
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void glxLockColorTo(double r, double g, double b);
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void glxUnlockColor(void);
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void glxColor(double r, double g, double b);
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void glxColor3d(double r, double g, double b);
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void glxColor4d(double r, double g, double b, double a);
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#define arraylen(x) (sizeof((x))/sizeof((x)[0]))
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7
util.cpp
7
util.cpp
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@ -102,6 +102,13 @@ Vector Vector::MakeFrom(double x, double y, double z) {
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return v;
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}
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bool Vector::Equals(Vector v) {
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double tol = 0.1;
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if(fabs(x - v.x) > tol) return false;
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if(fabs(y - v.y) > tol) return false;
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if(fabs(z - v.z) > tol) return false;
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return true;
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}
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Vector Vector::Plus(Vector b) {
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Vector r;
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Reference in New Issue