String
Svg_parser::get_id(){
if(!id_name.empty()) return id_name;
- return "id_arbitrario";
+ return "random_id";
}
void
Svg_parser::set_id(String source){
const char bad_chars[]=" :#@$^&()*";
- int inicio= source.find_last_of('/')+1;
- int fin= source.find_last_of('.');
- String x=source.substr(inicio,fin-inicio);
+ int start= source.find_last_of('/')+1;
+ int end= source.find_last_of('.');
+ String x=source.substr(start,end-start);
if(!x.empty()){
for(unsigned int i=0;i<sizeof(bad_chars);i++){
unsigned int pos=x.find_first_of(bad_chars[i]);
parser_canvas(node);
}else if(nodename.compare("defs")==0){
parser_defs (node);
- }else if(nodename.compare("g")==0){
- if(set_canvas==0) parser_canvas (node);
- parser_layer (node,nodeRoot->add_child("layer"),"",NULL);
- return;
- }else if(nodename.compare("rect")==0){
- if(set_canvas==0) parser_canvas (node);
- parser_rect(node,nodeRoot,"",NULL);
- }else if(nodename.compare("polygon")==0){
- if(set_canvas==0) parser_canvas (node);
- parser_polygon(node,nodeRoot,"",NULL);
- }else if(nodename.compare("path")==0){
+ }else{
if(set_canvas==0) parser_canvas (node);
- parser_path (node,nodeRoot,"",NULL);
+ parser_graphics(node,nodeRoot,"",NULL);
+ if(nodename.compare("g")==0) return;
}
}
if(!nodeContent){
//parser elements
void
Svg_parser::parser_svg (const xmlpp::Node* node){
- //printf("un dia en algun lugar de la tierra media\n");
if(const xmlpp::Element* nodeElement = dynamic_cast<const xmlpp::Element*>(node)){
width =etl::strprintf("%f",getDimension(nodeElement->get_attribute_value("width")));
height =etl::strprintf("%f",getDimension(nodeElement->get_attribute_value("height")));
}
void
Svg_parser::parser_canvas (const xmlpp::Node* node){
- //printf("el campo de batalla parecia un lienzo de pintura\n");
if(const xmlpp::Element* nodeElement = dynamic_cast<const xmlpp::Element*>(node)){
if(width.compare("")==0){
width=nodeElement->get_attribute_value("width","");
nodeRoot->set_attribute("begin-time","0f");
nodeRoot->set_attribute("end-time","5s");
nodeRoot->set_attribute("bgcolor","0.500000 0.500000 0.500000 1.000000");
- //nodeRoot->add_child("name")->set_child_text("Synfig Animation 1");
if(!id_name.empty()) nodeRoot->add_child("name")->set_child_text(id_name);
else nodeRoot->add_child("name")->set_child_text("Synfig Animation 1");
}
set_canvas=1;
AdjustPointUrl ();
}
+//Toplevel parser
-void
-Svg_parser::parser_rect(const xmlpp::Node* node,xmlpp::Element* root,String parent_style,Matrix* mtx_parent){
- if(const xmlpp::Element* nodeElement = dynamic_cast<const xmlpp::Element*>(node)){
- Glib::ustring rect_id =nodeElement->get_attribute_value("id");
- Glib::ustring rect_style =nodeElement->get_attribute_value("style");
- Glib::ustring rect_x =nodeElement->get_attribute_value("x");
- Glib::ustring rect_y =nodeElement->get_attribute_value("y");
- Glib::ustring rect_width =nodeElement->get_attribute_value("width");
- Glib::ustring rect_height =nodeElement->get_attribute_value("height");
- //style
- String fill =loadAttribute("fill",rect_style,parent_style,"none");
- String fill_opacity =loadAttribute("fill-opacity",rect_style,parent_style,"1");
- String opacity =loadAttribute("opacity",rect_style,parent_style,"1");
- //matrix
- //it's some complicated
-
- //build
+//parser preferences
+//Seperate transformations: apply transformations on a per-layer basis, rather than on canvases
+//Resolve BLine transformations: resolve transformations instead of creating transformation layers
+#define SVG_SEP_TRANSFORMS 1
+#define SVG_RESOLVE_BLINE 1
- int typeFill=0;
- if(fill.compare(0,3,"url")==0){
- typeFill=2;
- root=nodeStartBasicLayer(root->add_child("layer"));
- }
- xmlpp::Element *child_rect=root->add_child("layer");
- child_rect->set_attribute("type","rectangle");
- child_rect->set_attribute("active","true");
- child_rect->set_attribute("version","0.2");
- child_rect->set_attribute("desc",rect_id);
-
- build_real(child_rect->add_child("param"),"z_depth",0.0);
- build_real(child_rect->add_child("param"),"amount",1.0);
- build_integer(child_rect->add_child("param"),"blend_method",0);
- build_color (child_rect->add_child("param"),getRed (fill),getGreen (fill),getBlue(fill),atof(opacity.data())*atof(fill_opacity.data()));
-
- float auxx=atof(rect_x.c_str());
- float auxy=atof(rect_y.c_str());
- coor2vect(&auxx,&auxy);
- build_vector (child_rect->add_child("param"),"point1",auxx,auxy);
- auxx= atof(rect_x.c_str()) + atof(rect_width.c_str());
- auxy= atof(rect_y.c_str()) + atof(rect_height.c_str());
- coor2vect(&auxx,&auxy);
- build_vector (child_rect->add_child("param"),"point2",auxx,auxy);
- if(typeFill==2){
- build_url (root->add_child("layer"),fill,mtx_parent);
- }
- }
-}
void
-Svg_parser::parser_layer(const xmlpp::Node* node,xmlpp::Element* root,String parent_style,Matrix* mtx_parent){
+Svg_parser::parser_graphics(const xmlpp::Node* node,xmlpp::Element* root,String parent_style,Matrix* mtx_parent){
if(const xmlpp::Element* nodeElement = dynamic_cast<const xmlpp::Element*>(node)){
- Glib::ustring label =nodeElement->get_attribute_value("label");
- Glib::ustring style =nodeElement->get_attribute_value("style");
- Glib::ustring fill =nodeElement->get_attribute_value("fill");
+ Glib::ustring nodename = node->get_name();
+ if (nodename.compare("g")==0 || nodename.compare("path")==0 || nodename.compare("polygon")==0 || nodename.compare("rect")==0){} else return;
+
+ //load sub-attributes
+ Glib::ustring id =nodeElement->get_attribute_value("id");
Glib::ustring transform =nodeElement->get_attribute_value("transform");
- String layer_style;
- if(!style.empty()){
- layer_style=style;
- }else if(!fill.empty()){
- layer_style.append("fill:");
- layer_style.append(fill);
- }else if(!parent_style.empty()){
- layer_style=parent_style;
- }
+ //resolve transformations
Matrix* mtx=NULL;
if(!transform.empty())
mtx=build_transform (transform);
- if(mtx_parent){
- if(mtx)
- composeMatrix(&mtx,mtx_parent,mtx);
- else
- mtx=newMatrix (mtx_parent);
- }
- //build
- root->set_attribute("type","PasteCanvas");
- root->set_attribute("active","true");
- root->set_attribute("version","0.1");
- if(!label.empty()) root->set_attribute("desc",label);
- else root->set_attribute("desc","unknow layer");
-
- build_real(root->add_child("param"),"z_depth",0.0);
- build_real(root->add_child("param"),"amount",1.0);
- build_integer(root->add_child("param"),"blend_method",0);
- build_vector (root->add_child("param"),"origin",0,0);
-
- //printf(" atributos canvas ");
- //canvas
- xmlpp::Element *child_canvas=root->add_child("param");
- child_canvas->set_attribute("name","canvas");
- child_canvas=child_canvas->add_child("canvas");
- const xmlpp::ContentNode* nodeContent = dynamic_cast<const xmlpp::ContentNode*>(node);
- if(!nodeContent){
- xmlpp::Node::NodeList list = node->get_children();
- for(xmlpp::Node::NodeList::iterator iter = list.begin(); iter != list.end(); ++iter){
- Glib::ustring name =(*iter)->get_name();
- if(name.compare("g")==0){
- parser_layer (*iter,child_canvas->add_child("layer"),layer_style,mtx);
- }else if(name.compare("path")==0){
- parser_path (*iter,child_canvas,layer_style,mtx);
- }else if(name.compare("polygon")==0){
- parser_polygon (*iter,child_canvas,layer_style,mtx);
- }else if(name.compare("rect")==0){
- parser_rect (*iter,child_canvas,layer_style,mtx);
- }
- }
- }
- }
-}
-void
-Svg_parser::parser_polygon(const xmlpp::Node* node,xmlpp::Element* root,String parent_style,Matrix* mtx_parent){
- //printf("sus escudos parecian rombos y sus naves unos triangulos\n");
- if(const xmlpp::Element* nodeElement = dynamic_cast<const xmlpp::Element*>(node)){
- //load sub-attributes
- Glib::ustring polygon_style =nodeElement->get_attribute_value("style");
- Glib::ustring polygon_id =nodeElement->get_attribute_value("id");
- Glib::ustring polygon_points =nodeElement->get_attribute_value("points");
- Glib::ustring polygon_transform =nodeElement->get_attribute_value("transform");
- Glib::ustring polygon_fill =nodeElement->get_attribute_value("fill");
- String fill =loadAttribute("fill",polygon_style,parent_style,polygon_fill,"none");
- String fill_rule =loadAttribute("fill-rule",polygon_style,parent_style,"evenodd");
- String fill_opacity =loadAttribute("fill-opacity",polygon_style,parent_style,"1");
- String opacity =loadAttribute("opacity",polygon_style,parent_style,"1");
-
- //transforms
- Matrix* mtx=NULL;
- if(!polygon_transform.empty())
- mtx=build_transform (polygon_transform);
- if(mtx_parent){
- if(mtx)
- composeMatrix(&mtx,mtx_parent,mtx);
- else
- mtx=newMatrix (mtx_parent);
+ if (SVG_SEP_TRANSFORMS)
+ {
+ if(mtx_parent){
+ if(mtx)
+ composeMatrix(&mtx,mtx_parent,mtx);
+ else
+ mtx=newMatrix(mtx_parent);
+ }
}
- //points
- if(polygon_points.empty())
+ if(nodename.compare("g")==0){
+ parser_layer (node,root->add_child("layer"),parent_style,mtx);
return;
- std::list<Vertice*> k;
- std::vector<String> tokens=get_tokens_path (polygon_points);
- unsigned int i;
- float ax,ay; ax=ay=0;
- for(i=0;i<tokens.size();i++){
- ax=atof(tokens.at(i).data());
- i++; if(tokens.at(i).compare(",")==0) i++;
- ay=atof(tokens.at(i).data());
- //mtx
- if(mtx) transformPoint2D(mtx,&ax,&ay);
- //adjust
- coor2vect(&ax,&ay);
- //save
- k.push_back(nuevoVertice(ax,ay));
- }
- //escritura
- xmlpp::Element *child_polygon;
-
- //gradient
- int typeFill=0;
- if(fill.compare(0,3,"url")==0){
- typeFill=2;//gradient
- root=nodeStartBasicLayer(root->add_child("layer"));
}
- child_polygon=root->add_child("layer");
- child_polygon->set_attribute("type","polygon");
- child_polygon->set_attribute("active","true");
- child_polygon->set_attribute("version","0.1");
- child_polygon->set_attribute("desc",polygon_id);
- build_param (child_polygon->add_child("param"),"z_depth","real","0.0000000000");
- build_param (child_polygon->add_child("param"),"amount","real","1.0000000000");
- build_param (child_polygon->add_child("param"),"blend_method","integer","0");
- build_color (child_polygon->add_child("param"),getRed(fill),getGreen(fill),getBlue(fill),atof(fill_opacity.data())*atof(opacity.data()));
- build_vector(child_polygon->add_child("param"),"offset",0,0);
- build_param (child_polygon->add_child("param"),"invert","bool","false");
- build_param (child_polygon->add_child("param"),"antialias","bool","true");
- build_param (child_polygon->add_child("param"),"feather","real","0.0000000000");
- build_param (child_polygon->add_child("param"),"blurtype","integer","1");
- if(fill_rule.compare("evenodd")==0) build_param (child_polygon->add_child("param"),"winding_style","integer","1");
- else build_param (child_polygon->add_child("param"),"winding_style","integer","0");
- build_points (child_polygon->add_child("param"),k);
- if(typeFill==2){
- build_url(root->add_child("layer"),fill,mtx);
- }
- }
-}
-void
-Svg_parser::parser_path(const xmlpp::Node* node,xmlpp::Element* root,String parent_style,Matrix* mtx_parent){
- //printf("pensamos que atacarian de frente pero hicieron una curva\n");
- if(const xmlpp::Element* nodeElement = dynamic_cast<const xmlpp::Element*>(node)){
- //load sub-attributes
- Glib::ustring path_style =nodeElement->get_attribute_value("style");
- Glib::ustring path_id =nodeElement->get_attribute_value("id");
- Glib::ustring path_d =nodeElement->get_attribute_value("d");
- Glib::ustring path_transform =nodeElement->get_attribute_value("transform");
- Glib::ustring path_fill =nodeElement->get_attribute_value("fill");
-
- String fill =loadAttribute("fill",path_style,parent_style,path_fill,"none");
- String fill_rule =loadAttribute("fill-rule",path_style,parent_style,"evenodd");
- String stroke =loadAttribute("stroke",path_style,parent_style,"none");
- String stroke_width =loadAttribute("stroke-width",path_style,parent_style,"1px");
- String stroke_linecap =loadAttribute("stroke-linecap",path_style,parent_style,"butt");
- String stroke_linejoin =loadAttribute("stroke-linejoin",path_style,parent_style,"miter");
- String stroke_opacity =loadAttribute("stroke-opacity",path_style,parent_style,"1");
- String fill_opacity =loadAttribute("fill-opacity",path_style,parent_style,"1");
- String opacity =loadAttribute("opacity",path_style,parent_style,"1");
+ Glib::ustring obj_style =nodeElement->get_attribute_value("style");
+ Glib::ustring obj_fill =nodeElement->get_attribute_value("fill");
+
+ //style
+ String fill =loadAttribute("fill",obj_style,parent_style,obj_fill,"none");
+ String fill_rule =loadAttribute("fill-rule",obj_style,parent_style,"evenodd");
+ String stroke =loadAttribute("stroke",obj_style,parent_style,"none");
+ String stroke_width =loadAttribute("stroke-width",obj_style,parent_style,"1px");
+ String stroke_linecap =loadAttribute("stroke-linecap",obj_style,parent_style,"butt");
+ String stroke_linejoin =loadAttribute("stroke-linejoin",obj_style,parent_style,"miter");
+ String stroke_opacity =loadAttribute("stroke-opacity",obj_style,parent_style,"1");
+ String fill_opacity =loadAttribute("fill-opacity",obj_style,parent_style,"1");
+ String opacity =loadAttribute("opacity",obj_style,parent_style,"1");
- //resolve transformations
- Matrix* mtx=NULL;
- if(!path_transform.empty())
- mtx=build_transform (path_transform);
- if(mtx_parent){
- if(mtx)
- composeMatrix(&mtx,mtx_parent,mtx);
- else
- mtx=newMatrix(mtx_parent);
- }
- //parser path_d attribute, this is obviously important
- std::list<std::list<Vertice*> > k;
- k=parser_path_d (path_d,mtx);
- //escribir
- int typeFill=0; //nothing
- int typeStroke=0;//nothing
//Fill
+ int typeFill=0; //nothing
+
if(fill.compare("none")!=0){
typeFill=1; //simple
}
typeFill=2; //gradient
}
//Stroke
+ int typeStroke=0;//nothing
+
if(stroke.compare("none")!=0){
typeStroke=1; //simple
}
if(typeStroke==1 && stroke.compare(0,3,"url")==0){
typeStroke=2; //gradient
}
- String bline_id;
- String offset_id;
- int n=k.size();
- if(n!=1){ //if n is > than 1 then we must create a paste canvas for all paths
- root=nodeStartBasicLayer(root->add_child("layer"));
+
+ xmlpp::Element* child_layer = nodeStartBasicLayer(root->add_child("layer"));
+ xmlpp::Element* child_fill = child_layer;
+ xmlpp::Element* child_stroke = child_layer;
+ if(typeFill==2){
+ child_fill=nodeStartBasicLayer(child_fill->add_child("layer"));
}
- std::list<std::list<Vertice*> >::iterator aux = k.begin();
- for (; aux!=k.end(); aux++){
- if(typeFill!=0 && typeStroke!=0){
- bline_id=new_guid();
- offset_id=new_guid();
+ if(typeStroke==2){
+ child_stroke=nodeStartBasicLayer(child_stroke->add_child("layer"));
+ }
+
+ //make simple fills
+ if(nodename.compare("rect")==0 && typeFill!=0){
+ rect_simple(nodeElement,child_fill,fill,fill_opacity,opacity);
+ if(typeFill==2){
+ build_url (child_fill,fill,NULL);
}
- if(typeFill==1 || typeFill==2){//region layer
- xmlpp::Element *child_fill=root;
- if(n==1 && typeFill==2){//open gradient or url (fill)
- child_fill=nodeStartBasicLayer(root->add_child("layer"));
- }
+ parser_effects(nodeElement,child_layer,parent_style,mtx);
+ return;
+ }
+
+
+ //=======================================================================
+ std::list<std::list<Vertice*> > k;
+ //if we are creating a bline
+
+ //First, create the list of vertices
+ if (SVG_RESOLVE_BLINE) {
+ if(nodename.compare("path")==0){
+ k=parser_path_d (nodeElement->get_attribute_value("d"),mtx);
+ } else if(nodename.compare("polygon")==0){
+ k=parser_polygon_path (nodeElement->get_attribute_value("points"),mtx);
+ }
+ } else {
+ if(nodename.compare("path")==0){
+ k=parser_path_d (nodeElement->get_attribute_value("d"),NULL);
+ } else if(nodename.compare("polygon")==0){
+ k=parser_polygon_path (nodeElement->get_attribute_value("points"),NULL);
+ }
+ }
+
+ int n = k.size();
+ String bline_id[n];
+ String offset_id[n];
+ for (int i=0;i<n;i++){
+ bline_id[i]=new_guid();
+ offset_id[i]=new_guid();
+ }
+
+ std::list<std::list<Vertice*> >::iterator aux = k.begin();
+ if(typeFill!=0){//region layer
+ for (int i=0; aux!=k.end(); aux++){
xmlpp::Element *child_region=child_fill->add_child("layer");
child_region->set_attribute("type","region");
child_region->set_attribute("active","true");
child_region->set_attribute("version","0.1");
- child_region->set_attribute("desc",path_id);
+ child_region->set_attribute("desc",id);
build_param (child_region->add_child("param"),"z_depth","real","0.0000000000");
build_param (child_region->add_child("param"),"amount","real","1.0000000000");
build_param (child_region->add_child("param"),"blend_method","integer","0");
build_color (child_region->add_child("param"),getRed(fill),getGreen(fill),getBlue(fill),atof(fill_opacity.data())*atof(opacity.data()));
- if(offset_id.empty()) build_vector (child_region->add_child("param"),"offset",0,0);
- else build_vector (child_region->add_child("param"),"offset",0,0,offset_id);
+ build_vector (child_region->add_child("param"),"offset",0,0,offset_id[i]);
build_param (child_region->add_child("param"),"invert","bool","false");
build_param (child_region->add_child("param"),"antialias","bool","true");
build_param (child_region->add_child("param"),"feather","real","0.0000000000");
if(fill_rule.compare("evenodd")==0) build_param (child_region->add_child("param"),"winding_style","integer","1");
else build_param (child_region->add_child("param"),"winding_style","integer","0");
- build_bline (child_region->add_child("param"),*aux,loop,bline_id);
-
- if(n==1 && typeFill==2){ //gradient in onto mode (fill)
- build_url(child_fill->add_child("layer"),fill,mtx);
- }
+ build_bline (child_region->add_child("param"),*aux,loop,bline_id[i]);
+ i++;
}
+ }
+ if(typeFill==2){ //gradient in onto mode (fill)
+ if (SVG_RESOLVE_BLINE)
+ build_url(child_fill,fill,mtx);
+ else
+ build_url(child_fill,fill,NULL);
+ }
- if(typeStroke==1 || typeStroke==2){ //layer outline
- xmlpp::Element *child_stroke=root;
- if(n==1 && typeStroke==2){//open gradient in straigth onto (stroke)
- child_stroke=nodeStartBasicLayer(root->add_child("layer"));
- }
+ if(typeStroke!=0){//outline layer
+ int i=0;
+ for (aux=k.begin(); aux!=k.end(); aux++){
xmlpp::Element *child_outline=child_stroke->add_child("layer");
child_outline->set_attribute("type","outline");
child_outline->set_attribute("active","true");
child_outline->set_attribute("version","0.2");
- child_outline->set_attribute("desc",path_id);
+ child_outline->set_attribute("desc",id);
build_param (child_outline->add_child("param"),"z_depth","real","0.0000000000");
build_param (child_outline->add_child("param"),"amount","real","1.0000000000");
build_param (child_outline->add_child("param"),"blend_method","integer","0");
build_color (child_outline->add_child("param"),getRed(stroke),getGreen(stroke),getBlue(stroke),atof(stroke_opacity.data())*atof(opacity.data()));
- if(offset_id.empty()) build_vector (child_outline->add_child("param"),"offset",0,0);
- else build_vector (child_outline->add_child("param"),"offset",0,0,offset_id);
+ build_vector (child_outline->add_child("param"),"offset",0,0,offset_id[i]);
build_param (child_outline->add_child("param"),"invert","bool","false");
build_param (child_outline->add_child("param"),"antialias","bool","true");
build_param (child_outline->add_child("param"),"feather","real","0.0000000000");
//outline in nonzero
build_param (child_outline->add_child("param"),"winding_style","integer","0");
- build_bline (child_outline->add_child("param"),*aux,loop,bline_id);
+ build_bline (child_outline->add_child("param"),*aux,loop,bline_id[i]);
stroke_width=etl::strprintf("%f",getDimension(stroke_width)/kux);
build_param (child_outline->add_child("param"),"width","real",stroke_width);
build_param (child_outline->add_child("param"),"loopyness","real","1.0000000000");
build_param (child_outline->add_child("param"),"homogeneous_width","bool","true");
- if(n==1 && typeStroke==2){ //gradient in onto mode (stroke)
- build_url(child_stroke->add_child("layer"),stroke,mtx);
- }
+
+ i++;
}
- }
- if(n!=1){//only fill for several canvas in one path
- if(typeFill==2){
- build_url(root->add_child("layer"),fill,mtx);
+
+ if(typeStroke==2){ //gradient in onto mode (stroke)
+ if (SVG_RESOLVE_BLINE)
+ build_url(child_stroke,fill,mtx);
+ else
+ build_url(child_stroke,fill,NULL);
}
+ if (SVG_RESOLVE_BLINE)
+ parser_effects(nodeElement,child_layer,parent_style,NULL);
+ else
+ parser_effects(nodeElement,child_layer,parent_style,mtx);
+
}
}
}
+void
+Svg_parser::rect_simple(const xmlpp::Element* nodeElement,xmlpp::Element* root,String fill, String fill_opacity, String opacity){
+ Glib::ustring rect_id =nodeElement->get_attribute_value("id");
+ Glib::ustring rect_x =nodeElement->get_attribute_value("x");
+ Glib::ustring rect_y =nodeElement->get_attribute_value("y");
+ Glib::ustring rect_width =nodeElement->get_attribute_value("width");
+ Glib::ustring rect_height =nodeElement->get_attribute_value("height");
+
+ xmlpp::Element *child_rect=root->add_child("layer");
+ child_rect->set_attribute("type","rectangle");
+ child_rect->set_attribute("active","true");
+ child_rect->set_attribute("version","0.2");
+ child_rect->set_attribute("desc",rect_id);
+
+ build_real(child_rect->add_child("param"),"z_depth",0.0);
+ build_real(child_rect->add_child("param"),"amount",1.0);
+ build_integer(child_rect->add_child("param"),"blend_method",0);
+ build_color (child_rect->add_child("param"),getRed (fill),getGreen (fill),getBlue(fill),atof(opacity.data())*atof(fill_opacity.data()));
+
+ float auxx=atof(rect_x.c_str());
+ float auxy=atof(rect_y.c_str());
+ coor2vect(&auxx,&auxy);
+ build_vector (child_rect->add_child("param"),"point1",auxx,auxy);
+ auxx= atof(rect_x.c_str()) + atof(rect_width.c_str());
+ auxy= atof(rect_y.c_str()) + atof(rect_height.c_str());
+ coor2vect(&auxx,&auxy);
+ build_vector (child_rect->add_child("param"),"point2",auxx,auxy);
+
+
+}
+
+void
+Svg_parser::parser_layer(const xmlpp::Node* node,xmlpp::Element* root,String parent_style,Matrix* mtx){
+ if(const xmlpp::Element* nodeElement = dynamic_cast<const xmlpp::Element*>(node)){
+ Glib::ustring label =nodeElement->get_attribute_value("label");
+ Glib::ustring style =nodeElement->get_attribute_value("style");
+ Glib::ustring fill =nodeElement->get_attribute_value("fill");
+
+ String layer_style;
+ if(!style.empty()){
+ layer_style=style;
+ }else if(!fill.empty()){
+ layer_style.append("fill:");
+ layer_style.append(fill);
+ }else if(!parent_style.empty()){
+ layer_style=parent_style;
+ }
+ //build
+ root->set_attribute("type","PasteCanvas");
+ root->set_attribute("active","true");
+ root->set_attribute("version","0.1");
+ if(!label.empty()) root->set_attribute("desc",label);
+ else root->set_attribute("desc","Inline Canvas");
+
+ build_real(root->add_child("param"),"z_depth",0.0);
+ build_real(root->add_child("param"),"amount",1.0);
+ build_integer(root->add_child("param"),"blend_method",0);
+ build_vector (root->add_child("param"),"origin",0,0);
+
+ //printf(" canvas attributes ");
+ //canvas
+ xmlpp::Element *child_canvas=root->add_child("param");
+ child_canvas->set_attribute("name","canvas");
+ child_canvas=child_canvas->add_child("canvas");
+ const xmlpp::ContentNode* nodeContent = dynamic_cast<const xmlpp::ContentNode*>(node);
+ if(!nodeContent){
+ xmlpp::Node::NodeList list = node->get_children();
+ for(xmlpp::Node::NodeList::iterator iter = list.begin(); iter != list.end(); ++iter){
+ Glib::ustring name =(*iter)->get_name();
+ parser_graphics (*iter,child_canvas,layer_style,mtx);
+ }
+ }
+ if (! SVG_SEP_TRANSFORMS) parser_effects(nodeElement,child_canvas,parent_style,mtx);
+ }
+}
+
+std::list<std::list<Vertice*> >
+Svg_parser::parser_polygon_path(Glib::ustring polygon_points, Matrix* mtx){
+ std::list<std::list<Vertice*> > k0;
+ if(polygon_points.empty())
+ return k0;
+ std::list<Vertice*> k;
+ std::vector<String> tokens=get_tokens_path (polygon_points);
+ unsigned int i;
+ float ax,ay; ax=ay=0;
+ for(i=0;i<tokens.size();i++){
+ ax=atof(tokens.at(i).data());
+ i++; if(tokens.at(i).compare(",")==0) i++;
+ ay=atof(tokens.at(i).data());
+ //mtx
+ if(mtx) transformPoint2D(mtx,&ax,&ay);
+ //adjust
+ coor2vect(&ax,&ay);
+ //save
+ k.push_back(newVertice(ax,ay));
+ }
+ k0.push_front(k);
+ return k0;
+}
+
std::vector<String>
Svg_parser::get_tokens_path(String path){ //mini path lexico-parser
std::vector<String> tokens;
Svg_parser::parser_path_d(String path_d,Matrix* mtx){
std::list<std::list<Vertice*> > k;
std::list<Vertice*> k1;
+ std::vector<String> tokens=get_tokens_path(path_d);
+ String command="M"; //the current command
float ax,ay,tgx,tgy,tgx2,tgy2;//each method
- float actual_x=0,actual_y=0;//for relative methods;
+ ax=ay=0;
+ float actual_x=0,actual_y=0; //in svg coordinate space
+ float old_x=0,old_y=0; //needed in rare cases
+ float init_x=0,init_y=0; //for closepath commands
loop=false;
- unsigned int i;
- std::vector<String> tokens=get_tokens_path(path_d);
- for(i=0;i<tokens.size();i++){
- if(tokens.at(i).compare("M")==0){//absolute move to
+
+ for(unsigned int i=0;i<tokens.size();i++){
+ //if the token is a command, change the current command
+ if(tokens.at(i).compare("M")==0 || tokens.at(i).compare("m")==0 || tokens.at(i).compare("L")==0 || tokens.at(i).compare("l")==0 || tokens.at(i).compare("H")==0 || tokens.at(i).compare("h")==0 || tokens.at(i).compare("V")==0 || tokens.at(i).compare("v")==0 || tokens.at(i).compare("C")==0 || tokens.at(i).compare("c")==0 || tokens.at(i).compare("S")==0 || tokens.at(i).compare("s")==0 || tokens.at(i).compare("Q")==0 || tokens.at(i).compare("q")==0 || tokens.at(i).compare("T")==0 || tokens.at(i).compare("t")==0 || tokens.at(i).compare("A")==0 || tokens.at(i).compare("a")==0 || tokens.at(i).compare("z")==0) {
+ command=tokens.at(i);
+ i++;
+ }
+
+ old_x=actual_x;
+ old_y=actual_y;
+ //if command is absolute, set actual_x/y to zero
+ if(command.compare("M")==0 || command.compare("L")==0 || command.compare("C")==0 || command.compare("S")==0 || command.compare("Q")==0 || command.compare("T")==0 || command.compare("A")==0 || command.compare("H")==0 || command.compare("V")==0) {
+ actual_x=0;
+ actual_y=0;
+ }
+
+ //now parse the commands
+ if(command.compare("M")==0 || command.compare("m")==0){ //move to
if(!k1.empty())
k.push_front(k1);
k1.clear();
//read
- i++; ax=atof(tokens.at(i).data());
+ actual_x+=atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- ay=atof(tokens.at(i).data());
- actual_x=ax;
- actual_y=ay;
+ actual_y+=atof(tokens.at(i).data());
+
+ init_x=actual_x;
+ init_y=actual_y;
+ ax=actual_x;
+ ay=actual_y;
//operate and save
if(mtx) transformPoint2D(mtx,&ax,&ay);
coor2vect(&ax,&ay);
- k1.push_back(nuevoVertice (ax,ay)); //first element
+ k1.push_back(newVertice (ax,ay)); //first element
setSplit(k1.back(),TRUE);
- }else if(tokens.at(i).compare("C")==0){ //absolute curve
+ //"If a moveto is followed by multiple pairs of coordinates,
+ // the subsequent pairs are treated as implicit lineto commands."
+ if (command.compare("M")==0)
+ command="L";
+ else
+ command="l";
+ }else if(command.compare("C")==0 || command.compare("c")==0){ //curve
//tg2
- i++; tgx2=atof(tokens.at(i).data());
+ tgx2=actual_x+atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- tgy2=atof(tokens.at(i).data());
+ tgy2=actual_y+atof(tokens.at(i).data());
//tg1
- i++; tgx=atof(tokens.at(i).data());
+ i++; tgx=actual_x+atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- tgy=atof(tokens.at(i).data());
+ tgy=actual_y+atof(tokens.at(i).data());
//point
- i++; ax=atof(tokens.at(i).data());
+ i++; actual_x+=atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- ay=atof(tokens.at(i).data());
- actual_x=ax;
- actual_y=ay;
+ actual_y+=atof(tokens.at(i).data());
+
+ ax=actual_x;
+ ay=actual_y;
//mtx
if(mtx){
transformPoint2D(mtx,&tgx2,&tgy2);
transformPoint2D(mtx,&ax,&ay);
transformPoint2D(mtx,&tgx,&tgy);
}
- //ajust
+ //adjust
coor2vect(&tgx2,&tgy2);
coor2vect(&ax,&ay);
coor2vect(&tgx,&tgy);
if(isFirst(k1.front(),ax,ay)){
setTg1(k1.front(),k1.front()->x,k1.front()->y,tgx,tgy);
}else{
- k1.push_back(nuevoVertice (ax,ay));
+ k1.push_back(newVertice (ax,ay));
setTg1(k1.back(),k1.back()->x,k1.back()->y,tgx,tgy);
setSplit(k1.back(),TRUE);
}
- }else if(tokens.at(i).compare("Q")==0){ //absolute quadractic curve
+ }else if(command.compare("Q")==0 || command.compare("q")==0){ //quadractic curve
//tg1 and tg2
- i++; tgx=ax=atof(tokens.at(i).data());
+ tgx=actual_x+atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- tgy=ay=atof(tokens.at(i).data());
+ tgy=actual_y+atof(tokens.at(i).data());
//point
- i++; ax=atof(tokens.at(i).data());
+ i++; actual_x+=atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- ay=atof(tokens.at(i).data());
- actual_x=ax;
- actual_y=ay;
+ actual_y+=atof(tokens.at(i).data());
+
+ ax=actual_x;
+ ay=actual_y;
//mtx
if(mtx){
transformPoint2D(mtx,&ax,&ay);
//save
setTg1(k1.back(),k1.back()->x,k1.back()->y,tgx,tgy);
setSplit(k1.back(),FALSE);
- k1.push_back(nuevoVertice (ax,ay));
+ k1.push_back(newVertice (ax,ay));
setTg1(k1.back(),k1.back()->x,k1.back()->y,tgx,tgy);
- }else if(tokens.at(i).compare("L")==0){ //absolute line to
+ }else if(command.compare("L")==0 || command.compare("l")==0){ //line to
//point
- i++; ax=atof(tokens.at(i).data());
+ actual_x+=atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- ay=atof(tokens.at(i).data());
- actual_x=ax;
- actual_y=ay;
- //mtx
- if(mtx) transformPoint2D(mtx,&ax,&ay);
- //adjust
- coor2vect(&ax,&ay);
- //save
- setTg2(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
- if(isFirst(k1.front(),ax,ay)){
- setTg1(k1.front(),k1.front()->x,k1.front()->y,k1.front()->x,k1.front()->y);
- }else{
- k1.push_back(nuevoVertice(ax,ay));
- setTg1(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
- }
- }else if(tokens.at(i).compare("l")==0){//relative line to
- //point read
- i++; ax=atof(tokens.at(i).data());
- i++; if(tokens.at(i).compare(",")==0) i++;
- ay=atof(tokens.at(i).data());
- //relative
- ax=actual_x+ax;
- ay=actual_y+ay;
- actual_x=ax;
- actual_y=ay;
- //mtx
- if(mtx) transformPoint2D(mtx,&ax,&ay);
- //adjust
- coor2vect(&ax,&ay);
- //save
- setTg2(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
- if(isFirst(k1.front(),ax,ay)){
- setTg1(k1.front(),k1.front()->x,k1.front()->y,k1.front()->x,k1.front()->y);
- }else{
- k1.push_back(nuevoVertice(ax,ay));
- setTg1(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
- }
- }else if(tokens.at(i).compare("H")==0){//absolute horizontal move
- //the same that L but only Horizontal movement
- //point
- i++; ax=atof(tokens.at(i).data());
- ay=actual_y;
- actual_x=ax;
- actual_y=ay;
- //mtx
- if(mtx) transformPoint2D(mtx,&ax,&ay);
- //adjust
- coor2vect(&ax,&ay);
- //save
- setTg2(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
- if(isFirst(k1.front(),ax,ay)){
- setTg1(k1.front(),k1.front()->x,k1.front()->y,k1.front()->x,k1.front()->y);
- }else{
- k1.push_back(nuevoVertice(ax,ay));
- setTg1(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
- }
- }else if(tokens.at(i).compare("h")==0){//horizontal relative
- i++; ax=atof(tokens.at(i).data());
- ax=actual_x+ax;
+ actual_y+=atof(tokens.at(i).data());
+
+ ax=actual_x;
ay=actual_y;
- actual_x=ax;
- actual_y=ay;
//mtx
if(mtx) transformPoint2D(mtx,&ax,&ay);
//adjust
if(isFirst(k1.front(),ax,ay)){
setTg1(k1.front(),k1.front()->x,k1.front()->y,k1.front()->x,k1.front()->y);
}else{
- k1.push_back(nuevoVertice(ax,ay));
+ k1.push_back(newVertice(ax,ay));
setTg1(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
}
- }else if(tokens.at(i).compare("V")==0){//vertical absolute
+ }else if(command.compare("H")==0 || command.compare("h")==0){// horizontal move
+ //the same that L but only Horizontal movement
//point
- i++; ay=atof(tokens.at(i).data());
+ actual_x+=atof(tokens.at(i).data());
+
ax=actual_x;
- actual_x=ax;
- actual_y=ay;
+ ay=old_y;
//mtx
if(mtx) transformPoint2D(mtx,&ax,&ay);
//adjust
if(isFirst(k1.front(),ax,ay)){
setTg1(k1.front(),k1.front()->x,k1.front()->y,k1.front()->x,k1.front()->y);
}else{
- k1.push_back(nuevoVertice(ax,ay));
+ k1.push_back(newVertice(ax,ay));
setTg1(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
}
- }else if(tokens.at(i).compare("v")==0){//relative
+ }else if(command.compare("V")==0 || command.compare("v")==0){//vertical
//point
- i++; ay=atof(tokens.at(i).data());
- ax=actual_x;
- ay=actual_y+ay;
- actual_x=ax;
- actual_y=ay;
+ actual_y+=atof(tokens.at(i).data());
+
+ ax=old_x;
+ ay=actual_y;
//mtx
if(mtx) transformPoint2D(mtx,&ax,&ay);
//adjust
if(isFirst(k1.front(),ax,ay)){
setTg1(k1.front(),k1.front()->x,k1.front()->y,k1.front()->x,k1.front()->y);
}else{
- k1.push_back(nuevoVertice(ax,ay));
+ k1.push_back(newVertice(ax,ay));
setTg1(k1.back(),k1.back()->x,k1.back()->y,k1.back()->x,k1.back()->y);
}
- }else if(tokens.at(i).compare("T")==0){// I don't know what does it
- }else if(tokens.at(i).compare("A")==0){//elliptic arc
+ }else if(command.compare("T")==0 || command.compare("t")==0){// I don't know what does it
+ actual_x+=atof(tokens.at(i).data());
+ i++; if(tokens.at(i).compare(",")==0) i++;
+ actual_y+=atof(tokens.at(i).data());
+ }else if(command.compare("A")==0 || command.compare("a")==0){//elliptic arc
//isn't complete support, is only for circles
float angle;
bool sweep,large;
//radio
- i++; radio_x=atof(tokens.at(i).data());
+ radio_x=atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
radio_y=atof(tokens.at(i).data());
//angle
i++; large=atoi(tokens.at(i).data());
i++; sweep=atoi(tokens.at(i).data());
//point
- i++; ax=atof(tokens.at(i).data());
+ i++; actual_x+=atof(tokens.at(i).data());
i++; if(tokens.at(i).compare(",")==0) i++;
- ay=atof(tokens.at(i).data());
+ actual_y+=atof(tokens.at(i).data());
//how to draw?
if(!large && !sweep){
//points
- tgx2 = actual_x + radio_x*0.5;
- tgy2 = actual_y ;
- tgx = ax;
- tgy = ay + radio_y*0.5;
- actual_x=ax;
- actual_y=ay;
+ tgx2 = old_x + radio_x*0.5;
+ tgy2 = old_y ;
+ tgx = actual_x;
+ tgy = actual_y + radio_y*0.5;
+
+ ax=actual_x;
+ ay=actual_y;
//transformations
if(mtx){
transformPoint2D(mtx,&tgx2,&tgy2);
if(isFirst(k1.front(),ax,ay)){
setTg1(k1.front(),k1.front()->x,k1.front()->y,tgx,tgy);
}else{
- k1.push_back(nuevoVertice (ax,ay));
+ k1.push_back(newVertice (ax,ay));
setTg1(k1.back(),k1.back()->x,k1.back()->y,tgx,tgy);
setSplit(k1.back(),TRUE);
}
}else if(!large && sweep){
//points
- tgx2 = actual_x;
- tgy2 = actual_y + radio_y*0.5;
- tgx = ax + radio_x*0.5;
- tgy = ay ;
- actual_x=ax;
- actual_y=ay;
+ tgx2 = old_x;
+ tgy2 = old_y + radio_y*0.5;
+ tgx = actual_x + radio_x*0.5;
+ tgy = actual_y ;
+
+ ax=actual_x;
+ ay=actual_y;
//transformations
if(mtx){
transformPoint2D(mtx,&tgx2,&tgy2);
if(isFirst(k1.front(),ax,ay)){
setTg1(k1.front(),k1.front()->x,k1.front()->y,tgx,tgy);
}else{
- k1.push_back(nuevoVertice (ax,ay));
+ k1.push_back(newVertice (ax,ay));
setTg1(k1.back(),k1.back()->x,k1.back()->y,tgx,tgy);
setSplit(k1.back(),TRUE);
}
}else if( large && !sweep){//rare
//this need more than one vertex
}else if( large && sweep){//circles in inkscape are made with this kind of arc
- if(actual_y==ay){//circles
- //intermediate point
- int sense=1;
- if(actual_x>ax) sense =-1;
- float in_x,in_y,in_tgx1,in_tgy1,in_tgx2,in_tgy2;
- in_x = (actual_x+ax)/2;
- in_y = actual_y - sense*radio_y;
- in_tgx1 = in_x - sense*(radio_x*0.5);
- in_tgx2 = in_x + sense*(radio_x*0.5);
- in_tgy1 = in_y;
- in_tgy2 = in_y;
- //start/end points
- tgx2=actual_x;
- tgy2=ay - sense*(radio_y*0.5);
- tgx =ax;
- tgy =ay - sense*(radio_y*0.5);
-
- actual_x=ax;
- actual_y=ay;
- //transformations
- if(mtx){
- transformPoint2D(mtx,&tgx2,&tgy2);
- transformPoint2D(mtx,&tgx ,&tgy );
- transformPoint2D(mtx,&ax,&ay);
-
- transformPoint2D(mtx,&in_tgx2,&in_tgy2);
- transformPoint2D(mtx,&in_tgx1,&in_tgy1);
- transformPoint2D(mtx,&in_x,&in_y);
- }
- //adjust
- coor2vect(&tgx2 , &tgy2);
- coor2vect(&ax , &ay );
- coor2vect(&tgx , &tgy );
-
- coor2vect(&in_tgx2 , &in_tgy2);
- coor2vect(&in_tgx1 , &in_tgy1);
- coor2vect(&in_x , &in_y );
-
- //save the last tg2
- setTg2(k1.back(),k1.back()->x,k1.back()->y,tgx2,tgy2);
- //save the intermediate point
- k1.push_back(nuevoVertice (in_x,in_y));
- setTg1(k1.back(),k1.back()->x,k1.back()->y, in_tgx1 , in_tgy1);
- setTg2(k1.back(),k1.back()->x,k1.back()->y, in_tgx2 , in_tgy2);
- setSplit(k1.back(),TRUE); //this could be changed
- //save the new point
- if(isFirst(k1.front(),ax,ay)){
- setTg1(k1.front(),k1.front()->x,k1.front()->y,tgx,tgy);
- }else{
- k1.push_back(nuevoVertice (ax,ay));
- setTg1(k1.back(),k1.back()->x,k1.back()->y,tgx,tgy);
- setSplit(k1.back(),TRUE);
- }
+ //intermediate point
+ int sense=1;
+ if(old_x>actual_x) sense =-1;
+ float in_x,in_y,in_tgx1,in_tgy1,in_tgx2,in_tgy2;
+ in_x = (old_x+actual_x)/2;
+ in_y = old_y - sense*radio_y;
+ in_tgx1 = in_x - sense*(radio_x*0.5);
+ in_tgx2 = in_x + sense*(radio_x*0.5);
+ in_tgy1 = in_y;
+ in_tgy2 = in_y;
+ //start/end points
+ tgx2=old_x;
+ tgy2=actual_y - sense*(radio_y*0.5);
+ tgx =actual_x;
+ tgy =actual_y - sense*(radio_y*0.5);
+
+ ax=actual_x;
+ ay=actual_y;
+ //transformations
+ if(mtx){
+ transformPoint2D(mtx,&tgx2,&tgy2);
+ transformPoint2D(mtx,&tgx ,&tgy );
+ transformPoint2D(mtx,&ax,&ay);
+
+ transformPoint2D(mtx,&in_tgx2,&in_tgy2);
+ transformPoint2D(mtx,&in_tgx1,&in_tgy1);
+ transformPoint2D(mtx,&in_x,&in_y);
+ }
+ //adjust
+ coor2vect(&tgx2 , &tgy2);
+ coor2vect(&ax , &ay );
+ coor2vect(&tgx , &tgy );
+
+ coor2vect(&in_tgx2 , &in_tgy2);
+ coor2vect(&in_tgx1 , &in_tgy1);
+ coor2vect(&in_x , &in_y );
+
+ //save the last tg2
+ setTg2(k1.back(),k1.back()->x,k1.back()->y,tgx2,tgy2);
+ //save the intermediate point
+ k1.push_back(newVertice (in_x,in_y));
+ setTg1(k1.back(),k1.back()->x,k1.back()->y, in_tgx1 , in_tgy1);
+ setTg2(k1.back(),k1.back()->x,k1.back()->y, in_tgx2 , in_tgy2);
+ setSplit(k1.back(),TRUE); //this could be changed
+ //save the new point
+ if(isFirst(k1.front(),ax,ay)){
+ setTg1(k1.front(),k1.front()->x,k1.front()->y,tgx,tgy);
+ }else{
+ k1.push_back(newVertice (ax,ay));
+ setTg1(k1.back(),k1.back()->x,k1.back()->y,tgx,tgy);
+ setSplit(k1.back(),TRUE);
}
}
- }else if(tokens.at(i).compare("z")==0){
+ }else if(command.compare("z")==0){
loop=true;
+ if(!k1.empty())
+ k.push_front(k1);
+ k1.clear();
+ if (i<tokens.size() && tokens.at(i).compare("M")!=0 && tokens.at(i).compare("m")!=0) {
+ //starting a new path, but not with a moveto
+ actual_x=init_x;
+ actual_y=init_y;
+ ax=actual_x;
+ ay=actual_y;
+ //operate and save
+ if(mtx) transformPoint2D(mtx,&ax,&ay);
+ coor2vect(&ax,&ay);
+ k1.push_back(newVertice (ax,ay)); //first element
+ setSplit(k1.back(),TRUE);
+ }
+ i--; //decrement i to balance "i++" at command change
}else{
- std::cout<<"don't supported: "<<tokens.at(i)<<std::endl;
+ std::cout<<"unsupported path token: "<<tokens.at(i)<<std::endl;
}
}
if(!k1.empty())
}
void
+Svg_parser::parser_effects(const xmlpp::Element* nodeElement,xmlpp::Element* root,String parent_style,Matrix* mtx){
+ parser_transform(root, mtx);
+}
+
+void
+Svg_parser::parser_transform(xmlpp::Element* root,Matrix* mtx){
+ if (mtx) {
+ xmlpp::Element *child_transform=root->add_child("layer");
+ child_transform->set_attribute("type","warp");
+ child_transform->set_attribute("active","true");
+ child_transform->set_attribute("version","0.1");
+ child_transform->set_attribute("desc","Transform");
+
+ float x,y;
+ x=100;y=100;coor2vect(&x,&y);
+ build_vector (child_transform->add_child("param"),"src_tl",x,y);
+
+ x=200;y=200;coor2vect(&x,&y);
+ build_vector (child_transform->add_child("param"),"src_br",x,y);
+
+
+ x=100;y=100;
+ transformPoint2D(mtx,&x,&y);coor2vect(&x,&y);
+ build_vector (child_transform->add_child("param"),"dest_tl",x,y);
+
+ x=200;y=100;
+ transformPoint2D(mtx,&x,&y);coor2vect(&x,&y);
+ build_vector (child_transform->add_child("param"),"dest_tr",x,y);
+
+ x=200;y=200;
+ transformPoint2D(mtx,&x,&y);coor2vect(&x,&y);
+ build_vector (child_transform->add_child("param"),"dest_br",x,y);
+
+ x=100;y=200;
+ transformPoint2D(mtx,&x,&y);coor2vect(&x,&y);
+ build_vector (child_transform->add_child("param"),"dest_bl",x,y);
+
+ build_param (child_transform->add_child("param"),"clip","bool","false");
+ build_param (child_transform->add_child("param"),"horizon","real","4.0");
+ }
+}
+
+
+void
Svg_parser::parser_defs(const xmlpp::Node* node){
const xmlpp::ContentNode* nodeContent = dynamic_cast<const xmlpp::ContentNode*>(node);
if(!nodeContent){
}
}
}
+
void
Svg_parser::AdjustPointUrl(){
/*
if(lg.empty()&& rg.empty())
return NULL;
- String buscar= name;
- if(buscar.at(0)=='#') buscar.erase(0,1);
+ String find= name;
+ if(find.at(0)=='#') find.erase(0,1);
else return NULL;
std::list<LinearGradient*>::iterator aux=lg.begin();
while(aux!=lg.end()){//only find into linear gradients
- if(buscar.compare((*aux)->name)==0){
+ if(find.compare((*aux)->name)==0){
return (*aux)->stops;
}
aux++;
void
Svg_parser::build_url(xmlpp::Element* root, String name,Matrix *mtx){
if(!name.empty()){
- if(lg.empty()&& rg.empty())
- root->get_parent()->remove_child(root);
-
- int inicio=name.find_first_of("#")+1;
- int fin=name.find_first_of(")");
- String buscar= name.substr(inicio,fin-inicio);
- bool encontro=false;
+ int start=name.find_first_of("#")+1;
+ int end=name.find_first_of(")");
+ String find= name.substr(start,end-start);
+ bool encounter=false;
if(!lg.empty()){
std::list<LinearGradient*>::iterator aux=lg.begin();
while(aux!=lg.end()){
- if(buscar.compare((*aux)->name)==0){
+ if(find.compare((*aux)->name)==0){
build_linearGradient (root,*aux,mtx);
- encontro=true;
+ encounter=true;
}
aux++;
}
}
- if(!encontro && !rg.empty()){
+ if(!encounter && !rg.empty()){
std::list<RadialGradient*>::iterator aux=rg.begin();
while(aux!=rg.end()){
- if(buscar.compare((*aux)->name)==0){
+ if(find.compare((*aux)->name)==0){
build_radialGradient (root,*aux,mtx);
- encontro=true;
+ encounter=true;
}
aux++;
}
}
- if(!encontro)
- root->get_parent()->remove_child(root);
- }else{
- root->get_parent()->remove_child(root);
}
}
void
void
Svg_parser::build_linearGradient(xmlpp::Element* root,LinearGradient* data,Matrix* mtx){
if(data){
- root->set_attribute("type","linear_gradient");
- root->set_attribute("active","true");
- root->set_attribute("desc","Gradient004");
- build_param (root->add_child("param"),"z_depth","real","0");
- build_param (root->add_child("param"),"amount","real","1");
+ xmlpp::Element* gradient=root->add_child("layer");
+
+ gradient->set_attribute("type","linear_gradient");
+ gradient->set_attribute("active","true");
+ gradient->set_attribute("desc","Gradient004");
+ build_param (gradient->add_child("param"),"z_depth","real","0");
+ build_param (gradient->add_child("param"),"amount","real","1");
//straight onto
- build_param (root->add_child("param"),"blend_method","integer","21");
+ build_param (gradient->add_child("param"),"blend_method","integer","21");
float x1,y1,x2,y2;
x1=data->x1;
y1=data->y1;
x2=data->x2;
y2=data->y2;
- if(mtx){
- transformPoint2D(mtx,&x1,&y1);
- transformPoint2D(mtx,&x2,&y2);
+
+
+ if (mtx || data->transform){
+ Matrix *mtx2=NULL;
+ if (mtx && data->transform){
+ composeMatrix(&mtx2,mtx,data->transform);
+ }else if (mtx){
+ mtx2=mtx;
+ }else if (data->transform){
+ mtx2=data->transform;
+ }
+ //matrix transforms the gradient as a whole
+ //it does not preserve angles, so we cant' simply transform both points
+ float x3, y3, k;
+ //set point (x3,y3) on the same gradient line as (x2,y2)
+ //the gradient line is perpendicular to (x1,y1)(x2,y2)
+ x3=x2+(y2-y1);
+ y3=y2-(x2-x1);
+ //transform everything
+ transformPoint2D(mtx2,&x1,&y1);
+ transformPoint2D(mtx2,&x2,&y2);
+ transformPoint2D(mtx2,&x3,&y3);
+
+ if (x2!=x3 && y2!=y3) {//divide by zero check
+
+ //set k as slope between (x2,y2) and (x3,y3)
+ //k is the slope of gradient lines post-transformation
+ k=(y3-y2)/(x3-x2);
+ //set point (x2,y2) on the gradient line passing through (x3,y3)
+ //so that the line (x1,y1)(x2,y2) is perpendicular to (x2,y2)(x3,y3)
+ x2= (x3*k+x1/k+y1-y3)/(k+(1/k));
+ y2= k*(x2-x3)+y3;
+ } else if (x2==x3 && y2!=y3) {
+ y2=y1;
+ } else if (x2!=x3 && y2==y3) {
+ x2=x1;
+ } else {
+ std::cout<<"SVG Import warning: gradient points equal each other"<<std::endl;
+ }
}
+
coor2vect (&x1,&y1);
coor2vect (&x2,&y2);
- build_vector (root->add_child("param"),"p1",x1,y1);
- build_vector (root->add_child("param"),"p2",x2,y2);
+ build_vector (gradient->add_child("param"),"p1",x1,y1);
+ build_vector (gradient->add_child("param"),"p2",x2,y2);
//gradient link
- xmlpp::Element *child=root->add_child("param");
- child->set_attribute("name","gradient");
- build_stop_color (child->add_child("gradient"),data->stops);
- build_param (root->add_child("param"),"loop","bool","false");
- build_param (root->add_child("param"),"zigzag","bool","false");
+ xmlpp::Element *child_stops=gradient->add_child("param");
+ child_stops->set_attribute("name","gradient");
+ build_stop_color (child_stops->add_child("gradient"),data->stops);
+ build_param (gradient->add_child("param"),"loop","bool","false");
+ build_param (gradient->add_child("param"),"zigzag","bool","false");
}
}
void
Svg_parser::build_radialGradient(xmlpp::Element* root,RadialGradient* data,Matrix* mtx){
-//not completed
if(data){
- root->set_attribute("type","radial_gradient");
- root->set_attribute("active","true");
- build_param (root->add_child("param"),"z_depth","real","0");
- build_param (root->add_child("param"),"amount","real","1");
- //straight onto
- build_param (root->add_child("param"),"blend_method","integer","21");
+ xmlpp::Element* gradient;
+
+ if (mtx || data->transform) {
+ xmlpp::Element* layer=root->add_child("layer");
+
+ layer->set_attribute("type","PasteCanvas");
+ layer->set_attribute("active","true");
+ layer->set_attribute("version","0.1");
+ layer->set_attribute("desc","Composite");
+ build_param (layer->add_child("param"),"z_depth","real","0");
+ build_param (layer->add_child("param"),"amount","real","1");
+ build_param (layer->add_child("param"),"blend_method","integer","21"); //straight onto
+ build_vector (layer->add_child("param"),"origin",0,0);
+ xmlpp::Element *child=layer->add_child("param");
+ child->set_attribute("name","canvas");
+ xmlpp::Element* child_layer=child->add_child("canvas");
+
+ gradient=child_layer->add_child("layer");
+ build_param (gradient->add_child("param"),"blend_method","integer","0"); //composite
+ Matrix *mtx2=NULL;
+ if (mtx && data->transform){
+ composeMatrix(&mtx2,mtx,data->transform);
+ }else if (mtx){
+ mtx2=mtx;
+ }else if (data->transform){
+ mtx2=data->transform;
+ }
+ parser_transform(child_layer,mtx2);
+
+ }else {
+ gradient=root->add_child("layer");
+ build_param (gradient->add_child("param"),"blend_method","integer","21"); //straight onto
+ }
+
+ gradient->set_attribute("type","radial_gradient");
+ gradient->set_attribute("active","true");
+ build_param (gradient->add_child("param"),"z_depth","real","0");
+ build_param (gradient->add_child("param"),"amount","real","1");
//gradient link
- xmlpp::Element *child=root->add_child("param");
- child->set_attribute("name","gradient");
- build_stop_color (child->add_child("gradient"),data->stops);
+ xmlpp::Element *child_stops=gradient->add_child("param");
+ child_stops->set_attribute("name","gradient");
+ build_stop_color (child_stops->add_child("gradient"),data->stops);
+
//here the center point and radio
float cx=data->cx;
float cy=data->cy;
float r =data->r;
- //transform
- if(mtx){
- transformPoint2D(mtx,&cx,&cy);
- }
+
//adjust
coor2vect (&cx,&cy);
r=r/kux;
- build_vector (root->add_child("param"),"center",cx,cy);
- build_param (root->add_child("param"),"radius","real",r);
+ build_vector (gradient->add_child("param"),"center",cx,cy);
+ build_param (gradient->add_child("param"),"radius","real",r);
- build_param (root->add_child("param"),"loop","bool","false");
- build_param (root->add_child("param"),"zigzag","bool","false");
+ build_param (gradient->add_child("param"),"loop","bool","false");
+ build_param (gradient->add_child("param"),"zigzag","bool","false");
}
}
float x2 =atof(nodeElement->get_attribute_value("x2").data());
float y2 =atof(nodeElement->get_attribute_value("y2").data());
Glib::ustring link =nodeElement->get_attribute_value("href");
+ Glib::ustring transform =nodeElement->get_attribute_value("gradientTransform");
+
+ //resolve transformations
+ Matrix* mtx=NULL;
+ if(!transform.empty())
+ mtx=build_transform (transform);
std::list<ColorStop*> *stops;
if(!link.empty()){
}
}
if(stops)
- lg.push_back(newLinearGradient(id,x1,y1,x2,y2,stops));
+ lg.push_back(newLinearGradient(id,x1,y1,x2,y2,stops,mtx));
}
}
Glib::ustring id =nodeElement->get_attribute_value("id");
float cx =atof(nodeElement->get_attribute_value("cx").data());
float cy =atof(nodeElement->get_attribute_value("cy").data());
+ float fx =atof(nodeElement->get_attribute_value("fx").data());
+ float fy =atof(nodeElement->get_attribute_value("fy").data());
float r =atof(nodeElement->get_attribute_value("r").data());
Glib::ustring link =nodeElement->get_attribute_value("href");//basic
+ Glib::ustring transform =nodeElement->get_attribute_value("gradientTransform");
+
+ if (cx!=fx || cy!=fy)
+ std::cout<<"SVG Parser: ignoring focus attributes for radial gradient";
+
+ //resolve transformations
+ Matrix* mtx=NULL;
+ if(!transform.empty())
+ mtx=build_transform (transform);
+
std::list<ColorStop*> *stops=NULL;
if(!link.empty()){
//inkscape always use link, i dont need parser stops here, but it's posible
stops=find_colorStop (link);
}
if(stops)
- rg.push_back(newRadialGradient(id,cx,cy,r,stops));
+ rg.push_back(newRadialGradient(id,cx,cy,r,stops,mtx));
}
}
}
LinearGradient*
-Svg_parser::newLinearGradient(String name,float x1,float y1, float x2,float y2,std::list<ColorStop*> *stops){
+Svg_parser::newLinearGradient(String name,float x1,float y1, float x2,float y2,std::list<ColorStop*> *stops, Matrix* transform){
LinearGradient* data;
data=(LinearGradient*)malloc(sizeof(LinearGradient));
sprintf(data->name,"%s",name.data());
data->x2=x2;
data->y2=y2;
data->stops=stops;
+ data->transform=transform;
return data;
}
RadialGradient*
-Svg_parser::newRadialGradient(String name,float cx,float cy,float r,std::list<ColorStop*> *stops){
+Svg_parser::newRadialGradient(String name,float cx,float cy,float r,std::list<ColorStop*> *stops, Matrix* transform){
RadialGradient* data;
data=(RadialGradient*)malloc(sizeof(RadialGradient));
sprintf(data->name,"%s",name.data());
data->cy=cy;
data->r=r;
data->stops=stops;
+ data->transform=transform;
return data;
}
while(aux!=tokens.end()){
if((*aux).compare(0,9,"translate")==0){
float dx,dy;
- int inicio,fin;
- inicio =(*aux).find_first_of("(")+1;
- fin =(*aux).find_first_of(",");
- dx =atof((*aux).substr(inicio,fin-inicio).data());
- inicio =(*aux).find_first_of(",")+1;
- fin =(*aux).size()-1;
- dy =atof((*aux).substr(inicio,fin-inicio).data());
- if(matrixVacia(a))
+ int start,end;
+ start =(*aux).find_first_of("(")+1;
+ end =(*aux).find_first_of(",");
+ dx =atof((*aux).substr(start,end-start).data());
+ start =(*aux).find_first_of(",")+1;
+ end =(*aux).size()-1;
+ dy =atof((*aux).substr(start,end-start).data());
+ if(matrixIsNull(a))
a=newMatrix(1,0,0,1,dx,dy);
else
multiplyMatrix(&a,newMatrix(1,0,0,1,dx,dy));
}else if((*aux).compare(0,5,"scale")==0){
- if(matrixVacia(a))
+ if(matrixIsNull(a))
a=newMatrix(1,0,0,1,0,0);
}else if((*aux).compare(0,6,"rotate")==0){
float angle,seno,coseno;
- int inicio,fin;
- inicio =(*aux).find_first_of("(")+1;
- fin =(*aux).size()-1;
- angle=getRadian (atof((*aux).substr(inicio,fin-inicio).data()));
+ int start,end;
+ start =(*aux).find_first_of("(")+1;
+ end =(*aux).size()-1;
+ angle=getRadian (atof((*aux).substr(start,end-start).data()));
seno =sin(angle);
coseno =cos(angle);
- if(matrixVacia(a))
+ if(matrixIsNull(a))
a=newMatrix(coseno,seno,-1*seno,coseno,0,0);
else
multiplyMatrix(&a,newMatrix(coseno,seno,-1*seno,coseno,0,0));
}else if((*aux).compare(0,6,"matrix")==0){
- int inicio =(*aux).find_first_of('(')+1;
- int fin =(*aux).find_first_of(')');
- if(matrixVacia(a))
- a=newMatrix((*aux).substr(inicio,fin-inicio));
+ int start =(*aux).find_first_of('(')+1;
+ int end =(*aux).find_first_of(')');
+ if(matrixIsNull(a))
+ a=newMatrix((*aux).substr(start,end-start));
else
- multiplyMatrix(&a,newMatrix((*aux).substr(inicio,fin-inicio)));
+ multiplyMatrix(&a,newMatrix((*aux).substr(start,end-start)));
}else{
a=newMatrix(1,0,0,1,0,0);
}
build_param (child_comp->add_child("origin"),"","real","0.5000000000");
if(p->split) build_param (child_comp->add_child("split"),"","bool","true");
else build_param (child_comp->add_child("split"),"","bool","false");
- //tangente 1
+ //tangent 1
xmlpp::Element *child_t1=child_comp->add_child("t1");
xmlpp::Element *child_rc=child_t1->add_child("radial_composite");
child_rc->set_attribute("type","vector");
build_param (child_rc->add_child("radius"),"","real",p->radio1);
build_param (child_rc->add_child("theta"),"","angle",p->angle1);
- //tangente 2
+ //tangent 2
xmlpp::Element *child_t2=child_comp->add_child("t2");
xmlpp::Element *child_rc2=child_t2->add_child("radial_composite");
child_rc2->set_attribute("type","vector");
return child->add_child("canvas");
}
-//metodos extras
+//extra methods
void
Svg_parser::coor2vect(float *x,float *y){
float sx, sy;
rd=sqrt(dx*dx + dy*dy);
if(dx>0 && dy>0){
ag=PI + atan(dy/dx);
- // printf("caso 180-270\n");
+ // printf("case 180-270\n");
}else if(dx>0 && dy<0){
ag=PI + atan(dy/dx);
- // printf("caso 90-180\n");
+ // printf("case 90-180\n");
}else if(dx<0 && dy<0){
ag=atan(dy/dx);
- // printf("caso 0-90\n");
+ // printf("case 0-90\n");
}else if(dx<0 && dy>0){
ag= 2*PI+atan(dy/dx);
- // printf("caso 270-360\n");
+ // printf("case 270-360\n");
}else if(dx==0 && dy>0){
ag=-1*PI/2;
}else if(dx==0 && dy<0){
}
Vertice*
-Svg_parser::nuevoVertice(float x,float y){
- Vertice* nuevo;
- nuevo=(Vertice*)malloc(sizeof(Vertice));
- nuevo->x=x;
- nuevo->y=y;
- nuevo->radio1=nuevo->radio2=nuevo->angle1=nuevo->angle2=0;
- return nuevo;
+Svg_parser::newVertice(float x,float y){
+ Vertice* vert;
+ vert=(Vertice*)malloc(sizeof(Vertice));
+ vert->x=x;
+ vert->y=y;
+ vert->radio1=vert->radio2=vert->angle1=vert->angle2=0;
+ return vert;
}
int
Svg_parser::extractSubAttribute(const String attribute, String name,String* value){
- int encontro=0;
+ int encounter=0;
if(!attribute.empty()){
String str(attribute);
removeS(&str);
std::vector<String> tokens=tokenize(str,";");
std::vector<String>::iterator aux=tokens.begin();
while(aux!=tokens.end()){
- int medio= (*aux).find_first_of(":");
- if((*aux).substr(0,medio).compare(name)==0){
- int fin=(*aux).size();
- *value=(*aux).substr(medio+1,fin-medio);
+ int mid= (*aux).find_first_of(":");
+ if((*aux).substr(0,mid).compare(name)==0){
+ int end=(*aux).size();
+ *value=(*aux).substr(mid+1,end-mid);
return 1;
}
aux++;
}
}
- return encontro;
+ return encounter;
}
String
Svg_parser::loadAttribute(String name,const String path_style,const String master_style,const String defaultVal){
if(hex.at(0)=='#'){
return hextodec(hex.substr(1,2));
}else if(hex.compare(0,3,"rgb")==0 || hex.compare(0,3,"RGB")==0){
- int inicio=hex.find_first_of("(")+1;
- int fin =hex.find_last_of(")");
- String aux=tokenize(hex.substr(inicio,fin-inicio),",").at(0);
+ int start=hex.find_first_of("(")+1;
+ int end =hex.find_last_of(")");
+ String aux=tokenize(hex.substr(start,end-start),",").at(0);
return atoi(aux.data());
}
return 0;
if(hex.at(0)=='#'){
return hextodec(hex.substr(3,2));
}else if(hex.compare(0,3,"rgb")==0 || hex.compare(0,3,"RGB")==0){
- int inicio=hex.find_first_of("(")+1;
- int fin =hex.find_last_of(")");
- String aux=tokenize(hex.substr(inicio,fin-inicio),",").at(1);
+ int start=hex.find_first_of("(")+1;
+ int end =hex.find_last_of(")");
+ String aux=tokenize(hex.substr(start,end-start),",").at(1);
return atoi(aux.data());
}
return 0;
if(hex.at(0)=='#'){
return hextodec(hex.substr(5,2));
}else if(hex.compare(0,3,"rgb")==0 || hex.compare(0,3,"RGB")==0){
- int inicio=hex.find_first_of("(")+1;
- int fin =hex.find_last_of(")");
- String aux=tokenize(hex.substr(inicio,fin-inicio),",").at(2);
+ int start=hex.find_first_of("(")+1;
+ int end =hex.find_last_of(")");
+ String aux=tokenize(hex.substr(start,end-start),",").at(2);
return atoi(aux.data());
}
return 0;
(*mtx1)->f=aux->f;
}
bool
-Svg_parser::matrixVacia(Matrix *mtx){
+Svg_parser::matrixIsNull(Matrix *mtx){
if(mtx == NULL) return true;
return false;
}