191 lines
6.5 KiB
C++
191 lines
6.5 KiB
C++
/*****************************************************************************
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*
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* This file is part of Mapnik (c++ mapping toolkit)
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*
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* Copyright (C) 2006 Artem Pavlenko, Jean-Francois Doyon
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*
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*****************************************************************************/
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// boost
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#include <boost/python.hpp>
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#include <boost/python/detail/api_placeholder.hpp>
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// stl
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#include <sstream>
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#include <vector>
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// mapnik
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#include <mapnik/box2d.hpp>
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#include <mapnik/coord.hpp>
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#include <mapnik/query.hpp>
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#include <mapnik/datasource.hpp>
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#include <mapnik/datasource_cache.hpp>
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#include <mapnik/feature_layer_desc.hpp>
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#include <mapnik/memory_datasource.hpp>
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using mapnik::datasource;
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using mapnik::memory_datasource;
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using mapnik::layer_descriptor;
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using mapnik::attribute_descriptor;
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namespace
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{
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//user-friendly wrapper that uses Python dictionary
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using namespace boost::python;
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boost::shared_ptr<mapnik::datasource> create_datasource(const dict& d)
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{
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bool bind=true;
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mapnik::parameters params;
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boost::python::list keys=d.keys();
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for (int i=0; i<len(keys); ++i)
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{
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std::string key = extract<std::string>(keys[i]);
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object obj = d[key];
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if (key == "bind")
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{
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bind = extract<bool>(obj)();
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continue;
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}
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extract<std::string> ex0(obj);
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extract<int> ex1(obj);
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extract<double> ex2(obj);
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if (ex0.check())
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{
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params[key] = ex0();
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}
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else if (ex1.check())
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{
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params[key] = ex1();
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}
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else if (ex2.check())
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{
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params[key] = ex2();
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}
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}
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return mapnik::datasource_cache::instance().create(params, bind);
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}
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boost::python::dict describe(boost::shared_ptr<mapnik::datasource> const& ds)
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{
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boost::python::dict description;
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mapnik::layer_descriptor ld = ds->get_descriptor();
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description["type"] = ds->type();
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description["name"] = ld.get_name();
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description["geometry_type"] = ds->get_geometry_type();
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description["encoding"] = ld.get_encoding();
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return description;
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}
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boost::python::list fields(boost::shared_ptr<mapnik::datasource> const& ds)
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{
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boost::python::list flds;
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if (ds)
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{
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layer_descriptor ld = ds->get_descriptor();
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std::vector<attribute_descriptor> const& desc_ar = ld.get_descriptors();
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std::vector<attribute_descriptor>::const_iterator it = desc_ar.begin();
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std::vector<attribute_descriptor>::const_iterator end = desc_ar.end();
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for (; it != end; ++it)
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{
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flds.append(it->get_name());
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}
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}
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return flds;
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}
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boost::python::list field_types(boost::shared_ptr<mapnik::datasource> const& ds)
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{
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boost::python::list fld_types;
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if (ds)
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{
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layer_descriptor ld = ds->get_descriptor();
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std::vector<attribute_descriptor> const& desc_ar = ld.get_descriptors();
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std::vector<attribute_descriptor>::const_iterator it = desc_ar.begin();
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std::vector<attribute_descriptor>::const_iterator end = desc_ar.end();
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for (; it != end; ++it)
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{
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unsigned type = it->get_type();
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if (type == mapnik::Integer)
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// this crashes, so send back strings instead
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//fld_types.append(boost::python::object(boost::python::handle<>(&PyInt_Type)));
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fld_types.append(boost::python::str("int"));
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else if (type == mapnik::Float)
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fld_types.append(boost::python::str("float"));
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else if (type == mapnik::Double)
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fld_types.append(boost::python::str("float"));
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else if (type == mapnik::String)
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fld_types.append(boost::python::str("str"));
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else if (type == mapnik::Boolean)
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fld_types.append(boost::python::str("bool"));
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else if (type == mapnik::Geometry)
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fld_types.append(boost::python::str("geometry"));
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else if (type == mapnik::Object)
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fld_types.append(boost::python::str("object"));
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else
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fld_types.append(boost::python::str("unknown"));
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}
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}
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return fld_types;
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}}
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void export_datasource()
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{
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using namespace boost::python;
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enum_<mapnik::datasource::datasource_t>("DataType")
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.value("Vector",mapnik::datasource::Vector)
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.value("Raster",mapnik::datasource::Raster)
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;
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enum_<mapnik::datasource::geometry_t>("DataGeometryType")
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.value("Point",mapnik::datasource::Point)
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.value("LineString",mapnik::datasource::LineString)
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.value("Polygon",mapnik::datasource::Polygon)
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.value("Collection",mapnik::datasource::Collection)
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;
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class_<datasource,boost::shared_ptr<datasource>,
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boost::noncopyable>("Datasource",no_init)
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.def("type",&datasource::type)
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.def("geometry_type",&datasource::get_geometry_type)
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.def("describe",&describe)
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.def("envelope",&datasource::envelope)
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.def("features",&datasource::features)
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.def("bind",&datasource::bind)
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.def("fields",&fields)
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.def("field_types",&field_types)
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.def("features_at_point",&datasource::features_at_point)
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.def("params",&datasource::params,return_value_policy<copy_const_reference>(),
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"The configuration parameters of the data source. "
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"These vary depending on the type of data source.")
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;
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def("CreateDatasource",&create_datasource);
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class_<memory_datasource, bases<datasource>, boost::noncopyable>("MemoryDatasource", init<>())
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.def("add_feature",&memory_datasource::push,
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"Adds a Feature:\n"
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">>> ms = MemoryDatasource()\n"
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">>> feature = Feature(1)\n"
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">>> ms.add_feature(Feature(1))\n")
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.def("num_features",&memory_datasource::size)
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;
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}
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