Avoid std::endl in the writers to avoid flushing the output stream on every line. (Thanks to Roman Zoller for the hint).
git-svn-id: http://www.openmesh.org/svnrepo/OpenMesh/trunk@1209 fdac6126-5c0c-442c-9429-916003d36597
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@@ -177,18 +177,18 @@ writeMaterial(std::ostream& _out, BaseExporter& _be, Options _opt) const
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//write the materials
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if ( _opt.color_has_alpha() )
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for (size_t i=0; i < materialA_.size(); i++){
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_out << "newmtl " << "mat" << i << std::endl;
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_out << "Ka 0.5000 0.5000 0.5000" << std::endl;
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_out << "Kd " << materialA_[i][0] << materialA_[i][1] << materialA_[i][2] << std::endl;;
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_out << "Tr " << materialA_[i][3] << std::endl;
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_out << "illum 1" << std::endl;
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_out << "newmtl " << "mat" << i << '\n';
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_out << "Ka 0.5000 0.5000 0.5000" << '\n';
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_out << "Kd " << materialA_[i][0] << materialA_[i][1] << materialA_[i][2] << '\n';;
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_out << "Tr " << materialA_[i][3] << '\n';
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_out << "illum 1" << '\n';
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}
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else
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for (size_t i=0; i < material_.size(); i++){
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_out << "newmtl " << "mat" << i << std::endl;
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_out << "Ka 0.5000 0.5000 0.5000" << std::endl;
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_out << "Kd " << material_[i][0] << material_[i][1] << material_[i][2] << std::endl;;
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_out << "illum 1" << std::endl;
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_out << "newmtl " << "mat" << i << '\n';
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_out << "Ka 0.5000 0.5000 0.5000" << '\n';
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_out << "Kd " << material_[i][0] << material_[i][1] << material_[i][2] << '\n';;
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_out << "illum 1" << '\n';
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}
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return true;
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@@ -246,11 +246,11 @@ write(std::ostream& _out, BaseExporter& _be, Options _opt, std::streamsize _prec
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// header
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_out << "# " << _be.n_vertices() << " vertices, ";
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_out << _be.n_faces() << " faces" << std::endl;
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_out << _be.n_faces() << " faces" << '\n';
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// material file
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if (useMatrial && _opt.check(Options::FaceColor) )
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_out << "mtllib " << objName_ << ".mat" << std::endl;
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_out << "mtllib " << objName_ << ".mat" << '\n';
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// vertex data (point, normals, texcoords)
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for (i=0, nV=_be.n_vertices(); i<nV; ++i)
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@@ -260,13 +260,13 @@ write(std::ostream& _out, BaseExporter& _be, Options _opt, std::streamsize _prec
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n = _be.normal(vh);
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t = _be.texcoord(vh);
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_out << "v " << v[0] <<" "<< v[1] <<" "<< v[2] << std::endl;
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_out << "v " << v[0] <<" "<< v[1] <<" "<< v[2] << '\n';
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if (_opt.check(Options::VertexNormal))
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_out << "vn " << n[0] <<" "<< n[1] <<" "<< n[2] << std::endl;
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_out << "vn " << n[0] <<" "<< n[1] <<" "<< n[2] << '\n';
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if (_opt.check(Options::VertexTexCoord))
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_out << "vt " << t[0] <<" "<< t[1] << std::endl;
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_out << "vt " << t[0] <<" "<< t[1] << '\n';
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}
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size_t lastMat = std::numeric_limits<std::size_t>::max();
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@@ -294,7 +294,7 @@ write(std::ostream& _out, BaseExporter& _be, Options _opt, std::streamsize _prec
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// if we are ina a new material block, specify in the file which material to use
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if(lastMat != material) {
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_out << "usemtl mat" << material << std::endl;
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_out << "usemtl mat" << material << '\n';
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lastMat = material;
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}
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}
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@@ -327,7 +327,7 @@ write(std::ostream& _out, BaseExporter& _be, Options _opt, std::streamsize _prec
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}
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}
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_out << std::endl;
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_out << '\n';
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}
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material_.clear();
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@@ -242,7 +242,7 @@ write_ascii(std::ostream& _out, BaseExporter& _be, Options _opt) const
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_out << " " << t[0] << " " << t[1];
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}
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_out << "\n";
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_out << '\n';
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}
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@@ -281,7 +281,7 @@ write_ascii(std::ostream& _out, BaseExporter& _be, Options _opt) const
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}
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}
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}
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_out << "\n";
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_out << '\n';
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}
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}
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else
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@@ -318,7 +318,7 @@ write_ascii(std::ostream& _out, BaseExporter& _be, Options _opt) const
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}
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}
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_out << "\n";
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_out << '\n';
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}
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}
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@@ -171,7 +171,7 @@ write(std::ostream& _os, BaseExporter& _be, Options _opt, std::streamsize _preci
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void _PLYWriter_::write_header(std::ostream& _out, BaseExporter& _be, Options& _opt) const {
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//writing header
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_out << "ply" << std::endl;
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_out << "ply" << '\n';
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if (_opt.is_binary()) {
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_out << "format ";
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@@ -179,48 +179,48 @@ void _PLYWriter_::write_header(std::ostream& _out, BaseExporter& _be, Options& _
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_out << "binary_big_endian ";
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else
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_out << "binary_little_endian ";
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_out << "1.0" << std::endl;
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_out << "1.0" << '\n';
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} else
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_out << "format ascii 1.0" << std::endl;
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_out << "format ascii 1.0" << '\n';
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_out << "element vertex " << _be.n_vertices() << std::endl;
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_out << "element vertex " << _be.n_vertices() << '\n';
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_out << "property float x" << std::endl;
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_out << "property float y" << std::endl;
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_out << "property float z" << std::endl;
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_out << "property float x" << '\n';
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_out << "property float y" << '\n';
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_out << "property float z" << '\n';
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if ( _opt.vertex_has_normal() ){
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_out << "property float nx" << std::endl;
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_out << "property float ny" << std::endl;
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_out << "property float nz" << std::endl;
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_out << "property float nx" << '\n';
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_out << "property float ny" << '\n';
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_out << "property float nz" << '\n';
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}
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if ( _opt.vertex_has_texcoord() ){
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_out << "property float u" << std::endl;
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_out << "property float v" << std::endl;
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_out << "property float u" << '\n';
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_out << "property float v" << '\n';
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}
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if ( _opt.vertex_has_color() ){
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if ( _opt.color_is_float() ) {
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_out << "property float red" << std::endl;
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_out << "property float green" << std::endl;
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_out << "property float blue" << std::endl;
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_out << "property float red" << '\n';
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_out << "property float green" << '\n';
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_out << "property float blue" << '\n';
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if ( _opt.color_has_alpha() )
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_out << "property float alpha" << std::endl;
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_out << "property float alpha" << '\n';
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} else {
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_out << "property uchar red" << std::endl;
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_out << "property uchar green" << std::endl;
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_out << "property uchar blue" << std::endl;
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_out << "property uchar red" << '\n';
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_out << "property uchar green" << '\n';
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_out << "property uchar blue" << '\n';
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if ( _opt.color_has_alpha() )
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_out << "property uchar alpha" << std::endl;
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_out << "property uchar alpha" << '\n';
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}
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}
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_out << "element face " << _be.n_faces() << std::endl;
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_out << "property list uchar int vertex_indices" << std::endl;
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_out << "end_header" << std::endl;
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_out << "element face " << _be.n_faces() << '\n';
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_out << "property list uchar int vertex_indices" << '\n';
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_out << "end_header" << '\n';
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}
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@@ -81,11 +81,11 @@ bool _VTKWriter_::write(std::ostream& _out, BaseExporter& _be, Options _opt, std
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size_t nv = _be.n_vertices();
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for (size_t i = 0; i < nv; ++i) {
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Vec3f v = _be.point(VertexHandle(int(i)));
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_out << v[0] << ' ' << v[1] << ' ' << v[2] << std::endl;
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_out << v[0] << ' ' << v[1] << ' ' << v[2] << '\n';
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}
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// faces
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_out << "POLYGONS " << nf << ' ' << polygon_table_size << std::endl;
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_out << "POLYGONS " << nf << ' ' << polygon_table_size << '\n';
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for (size_t i = 0; i < nf; ++i) {
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_be.get_vhandles(FaceHandle(int(i)), vhandles);
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@@ -93,7 +93,7 @@ bool _VTKWriter_::write(std::ostream& _out, BaseExporter& _be, Options _opt, std
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for (size_t j = 0; j < vhandles.size(); ++j) {
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_out << " " << vhandles[j].idx();
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}
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_out << std::endl;
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_out << '\n';
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}
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return true;
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