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ObservationDataSetLayer.cpp
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1 /* Copyright (C) 2010-2014 National Institute For Space Research (INPE) - Brazil.
2 
3  This file is part of the TerraLib - a Framework for building GIS enabled applications.
4 
5  TerraLib is free software: you can redistribute it and/or modify
6  it under the terms of the GNU Lesser General Public License as published by
7  the Free Software Foundation, either version 3 of the License,
8  or (at your option) any later version.
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10  TerraLib is distributed in the hope that it will be useful,
11  but WITHOUT ANY WARRANTY; without even the implied warranty of
12  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13  GNU Lesser General Public License for more details.
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15  You should have received a copy of the GNU Lesser General Public License
16  along with TerraLib. See COPYING. If not, write to
17  TerraLib Team at <terralib-team@terralib.org>.
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19 
20 /*!
21  \file terralib/st/maptools/DataSetLayer.cpp
22 
23  \brief A layer with reference to an ObservationDataSet.
24 */
25 
26 // TerraLib
27 
28 #include "../../dataaccess/query/DataSetName.h"
29 #include "../../dataaccess/query/Field.h"
30 #include "../../dataaccess/query/Fields.h"
31 #include "../../dataaccess/query/From.h"
32 #include "../../dataaccess/query/FromItem.h"
33 #include "../../dataaccess/query/Select.h"
34 #include "../../dataaccess/query/SpatialQueryProcessor.h"
35 #include "../../dataaccess/query/Where.h"
36 #include "../../dataaccess/utils/Utils.h"
37 #include "../../maptools/Exception.h"
38 #include "../../maptools/RendererFactory.h"
39 #include "../core/observation/ObservationDataSet.h"
40 #include "../core/observation/ObservationDataSetInfo.h"
41 #include "../loader/STDataLoader.h"
43 
44 // Boost
45 #include <boost/format.hpp>
46 
47 const std::string te::st::ObservationDataSetLayer::sm_type("OBSERVATIONDATASETLAYER");
48 
50  : AbstractSTDataSetLayer(parent),
51  m_info(info)
52 {
53 }
54 
55 te::st::ObservationDataSetLayer::ObservationDataSetLayer(const std::string& id, AbstractLayer* parent, ObservationDataSetInfo* info)
56  : AbstractSTDataSetLayer(id, parent),
57  m_info(info)
58 {
59 }
60 
62  const std::string& title, AbstractLayer* parent,
64  : AbstractSTDataSetLayer(id, title, parent),
65  m_info(info)
66 {
67 }
68 
70 {
71 }
72 
73 std::auto_ptr<te::map::LayerSchema> te::st::ObservationDataSetLayer::getSchema() const
74 {
75  assert(!m_info->getDataSetName().empty());
76 
77  te::da::DataSourcePtr ds = te::da::GetDataSource(m_info->getDataSourceInfo().getId(), true);
78 
79  return ds->getDataSetType(m_info->getDataSetName());
80 }
81 
83  const te::common::AccessPolicy accessPolicy) const
84 {
85  std::auto_ptr<te::st::ObservationDataSet> ods = te::st::ObservationDataSetLayer::getObservationDataset(travType);
86  std::auto_ptr<te::da::DataSet> result = ods->release();
87  return result;
88 }
89 
90 std::auto_ptr<te::da::DataSet> te::st::ObservationDataSetLayer::getData(const std::string& propertyName,
91  const te::gm::Envelope* e,
93  te::common::TraverseType travType,
94  const te::common::AccessPolicy accessPolicy) const
95 {
96  std::auto_ptr<te::st::ObservationDataSet> ods = te::st::ObservationDataSetLayer::getObservationDataset(*e, r, travType);
97  std::auto_ptr<te::da::DataSet> result = ods->release();
98  return result;
99 }
100 
103  te::common::TraverseType travType,
104  te::common::AccessPolicy rwRole) const
105 {
106  std::auto_ptr<te::st::ObservationDataSet> ods = te::st::ObservationDataSetLayer::getObservationDataset(dt, tr, e, sr, travType);
107  std::auto_ptr<te::da::DataSet> result = ods->release();
108  return result;
109 }
110 
111 std::auto_ptr<te::da::DataSet> te::st::ObservationDataSetLayer::getData(const std::string& propertyName,
112  const te::gm::Geometry* g,
114  te::common::TraverseType travType,
115  const te::common::AccessPolicy accessPolicy) const
116 {
117  std::auto_ptr<te::st::ObservationDataSet> ods = te::st::ObservationDataSetLayer::getObservationDataset(*g, r, travType);
118  std::auto_ptr<te::da::DataSet> result = ods->release();
119  return result;
120 }
121 
122 std::auto_ptr<te::st::ObservationDataSet> te::st::ObservationDataSetLayer::getObservationDataset(te::common::TraverseType travType) const
123 {
124  return te::st::STDataLoader::getDataSet(*m_info.get(), travType);
125 }
126 
127 std::auto_ptr<te::st::ObservationDataSet> te::st::ObservationDataSetLayer::getObservationDataset(const te::gm::Envelope& e,
129  te::common::TraverseType travType) const
130 {
131  return te::st::STDataLoader::getDataSet(*m_info.get(), e, r, travType);
132 }
133 
134 std::auto_ptr<te::st::ObservationDataSet> te::st::ObservationDataSetLayer::getObservationDataset(const te::gm::Geometry& g,
136  te::common::TraverseType travType) const
137 {
138  return te::st::STDataLoader::getDataSet(*m_info.get(), g, r, travType);
139 }
140 
141 
143  te::common::TraverseType travType,
144  te::common::AccessPolicy rwRole) const
145 {
146  std::auto_ptr<te::st::ObservationDataSet> ods = te::st::ObservationDataSetLayer::getObservationDataset(dt, r, travType);
147  std::auto_ptr<te::da::DataSet> result = ods->release();
148  return result;
149 }
150 
153  te::common::TraverseType travType,
154  te::common::AccessPolicy rwRole) const
155 {
156  std::auto_ptr<te::st::ObservationDataSet> ods = te::st::ObservationDataSetLayer::getObservationDataset(dt, tr, g, sr, travType);
157  std::auto_ptr<te::da::DataSet> result = ods->release();
158  return result;
159 }
160 
162  te::common::TraverseType travType) const
163 {
164  return te::st::STDataLoader::getDataSet(*m_info.get(), dt, r, travType);
165 }
166 
167 std::auto_ptr<te::st::ObservationDataSet>
170  te::common::TraverseType travType) const
171 {
172  return te::st::STDataLoader::getDataSet(*m_info, dt, tr, e, sr, travType);
173 }
174 
177  te::common::TraverseType travType) const
178 {
179  return te::st::STDataLoader::getDataSet(*m_info.get(),g, sr, dt, tr, travType);
180 }
181 
183 {
184  return true;
185 }
186 
188 {
189  if(m_rendererType.empty())
190  throw te::map::Exception((boost::format(TR_MAP("Could not draw the data set layer %1%. The renderer type is empty!")) % getTitle()).str());
191 
192  // Try get the defined renderer
193  std::auto_ptr<te::map::AbstractRenderer> renderer(te::map::RendererFactory::make(m_rendererType));
194  if(renderer.get() == 0)
195  throw te::map::Exception((boost::format(TR_MAP("Could not draw the data set layer %1%. The renderer %2% could not be created!")) % getTitle() % m_rendererType).str());
196 
197  renderer->draw(this, canvas, bbox, srid);
198 }
199 
201 {
202  return sm_type;
203 }
204 
206 {
207  return m_rendererType;
208 }
209 
211 {
212  m_rendererType = t;
213 }
214 
TEDATAACCESSEXPORT DataSourcePtr GetDataSource(const std::string &datasourceId, const bool opened=true)
Search for a data source with the informed id in the DataSourceManager.
Definition: Utils.cpp:259
boost::shared_ptr< DataSource > DataSourcePtr
Definition: DataSource.h:1435
A class that contains infos about a DataSet that contains observations.
bool isValid() const
It returns true if the layer can be used for instance to draw, otherwise, it returns false...
std::auto_ptr< te::st::ObservationDataSet > getObservationDataset(te::common::TraverseType travType=te::common::FORWARDONLY) const
void setRendererType(const std::string &t)
TemporalRelation
Temporal relations between date and time (Source: Allen, 1991).
Definition: Enums.h:76
SpatialRelation
Spatial relations between geometric objects.
Definition: Enums.h:122
std::auto_ptr< te::da::DataSet > getData(te::common::TraverseType travType=te::common::FORWARDONLY, const te::common::AccessPolicy accessPolicy=te::common::RAccess) const
It gets the dataset identified by the layer name.
static const std::string sm_type
A static data member used in the implementation of getType method.
AccessPolicy
Supported data access policies (can be used as bitfield).
Definition: Enums.h:40
TraverseType
A dataset can be traversed in two ways:
Definition: Enums.h:53
A layer with reference to a dataset that contains spatiotemporal data.
An Envelope defines a 2D rectangular region.
Definition: Envelope.h:51
A layer with a reference to an ObservationDataSet.
const std::string & getType() const
It returns the layer type: DATASET_LAYER.
Geometry is the root class of the geometries hierarchy, it follows OGC and ISO standards.
Definition: Geometry.h:73
static AbstractRenderer * make(const std::string &factoryKey)
It creates an object with the appropriated factory.
A canvas is an abstraction of a drawing area.
Definition: Canvas.h:91
const std::string & getRendererType() const
std::auto_ptr< LayerSchema > getSchema() const
It returns the layer schema.
static std::auto_ptr< ObservationDataSet > getDataSet(const ObservationDataSetInfo &info, te::common::TraverseType travType=te::common::FORWARDONLY)
It returns a ObservationDataSet, that is, a DataSet that contains observations.
ObservationDataSetLayer(AbstractLayer *parent, ObservationDataSetInfo *info)
It initializes a new layer.
void draw(te::map::Canvas *canvas, const te::gm::Envelope &bbox, int srid)
It draws the layer geographic objects in the given canvas using the informed SRS. ...