Transactor.h
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1 /* Copyright (C) 2008 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.
9 
10  TerraLib is distributed in the hope that it will be useful,
11  but WITHOUT ANY WARRANTY; without even the implied warranty of
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13  GNU Lesser General Public License for more details.
14 
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>.
18  */
19 
20 /*!
21  \file terralib/ado/Transactor.h
22 
23  \brief DataSourceTransactor class implementation for Microsoft Access driver.
24 */
25 
26 #ifndef __TERRALIB_ADO_INTERNAL_DATASOURCETRANSACTOR_H
27 #define __TERRALIB_ADO_INTERNAL_DATASOURCETRANSACTOR_H
28 
29 // TerraLib
30 #include "../dataaccess/datasource/DataSourceTransactor.h"
31 #include "Config.h"
32 #include "DataSource.h"
33 
34 // STL
35 #include <memory>
36 #include <map>
37 #include <string>
38 
39 namespace te
40 {
41 // Forward declarations
42  namespace dt { class Property; }
43  namespace gm { class Envelope; class Geometry; }
44 
45  namespace ado
46  {
47  // Forward declarations
48  class BatchExecutor;
49  class Connection;
50  class DataSet;
51  class ObjectIdSet;
52  class PreparedQuery;
53  class Query;
54 
55  /*!
56  \class Transactor
57 
58  \brief The transactor class for the Microsoft Access driver.
59 
60  \sa te::da::DataSourceTransactor, DataSource
61  */
63  {
64  public:
65 
67 
69 
71 
72  void begin();
73 
74  void commit();
75 
76  void rollBack();
77 
78  bool isInTransaction() const;
79 
80  std::unique_ptr<te::da::DataSet> getDataSet(const std::string& name,
82  bool connected = false,
83  const te::common::AccessPolicy accessPolicy = te::common::RAccess);
84 
85  std::unique_ptr<te::da::DataSet> getDataSet(const std::string& name,
86  const std::string& propertyName,
87  const te::gm::Envelope* e,
90  bool connected = false,
91  const te::common::AccessPolicy accessPolicy = te::common::RAccess);
92 
93  std::unique_ptr<te::da::DataSet> getDataSet(const std::string& name,
94  const std::string& propertyName,
95  const te::gm::Geometry* g,
98  bool connected = false,
99  const te::common::AccessPolicy accessPolicy = te::common::RAccess);
100 
101  std::unique_ptr<te::da::DataSet> getDataSet(const std::string& name,
102  const ObjectIdSet* oids,
104  bool connected = false,
105  const te::common::AccessPolicy accessPolicy = te::common::RAccess);
106 
107  std::unique_ptr<te::da::DataSet> query(const te::da::Select& q,
109  bool connected = false,
110  const te::common::AccessPolicy accessPolicy = te::common::RAccess);
111 
112  std::unique_ptr<te::da::DataSet> query(const std::string& query,
114  bool connected = false,
115  const te::common::AccessPolicy accessPolicy = te::common::RAccess);
116 
117  void execute(const te::da::Query& command);
118 
119  void execute(const std::string& command);
120 
121  std::unique_ptr<te::da::PreparedQuery> getPrepared(const std::string& qName = std::string(""));
122 
123  std::unique_ptr<te::da::BatchExecutor> getBatchExecutor();
124 
125  void cancel();
126 
127  boost::int64_t getLastGeneratedId();
128 
129  std::string escape(const std::string& value);
130 
131  std::vector<std::string> getDataSetNames();
132 
133  std::size_t getNumberOfDataSets();
134 
135  std::unique_ptr<te::da::DataSetType> getDataSetType(const std::string& name);
136 
137  boost::ptr_vector<te::dt::Property> getProperties(const std::string& datasetName);
138 
139  std::unique_ptr<te::dt::Property> getProperty(const std::string& datasetName, const std::string& name);
140 
141  std::unique_ptr<te::dt::Property> getProperty(const std::string& datasetName, std::size_t propertyPos);
142 
143  std::vector<std::string> getPropertyNames(const std::string& datasetName);
144 
145  std::size_t getNumberOfProperties(const std::string& datasetName);
146 
147  bool propertyExists(const std::string& datasetName, const std::string& name);
148 
149 // TODO: rever o caso colunas geometricas => adicionar automaticamente as colunas do box => atualizar o cache
150  void addProperty(const std::string& datasetName, te::dt::Property* p);
151 
152 // TODO: rever o caso colunas geometricas => remover as colunas do box => atualizar o cache
153  void dropProperty(const std::string& datasetName, const std::string& name);
154 
155 // TODO: rever o caso colunas geometricas => atualizar o cache e a tabela de metadados
156  void renameProperty(const std::string& datasetName,
157  const std::string& propertyName,
158  const std::string& newPropertyName);
159 
160  void changePropertyDefinition(const std::string& datasetName, const std::string& propName, te::dt::Property* newProp);
161 
162  std::unique_ptr<te::da::PrimaryKey> getPrimaryKey(const std::string& datasetName);
163 
164  bool primaryKeyExists(const std::string& datasetName, const std::string& name);
165 
166  void addPrimaryKey(const std::string& datasetName, te::da::PrimaryKey* pk);
167 
168  void dropPrimaryKey(const std::string& datasetName);
169 
170  std::unique_ptr<te::da::ForeignKey> getForeignKey(const std::string& datasetName, const std::string& name);
171 
172  std::vector<std::string> getForeignKeyNames(const std::string& datasetName);
173 
174  bool foreignKeyExists(const std::string& datasetName, const std::string& name);
175 
176  void addForeignKey(const std::string& datasetName, te::da::ForeignKey* fk);
177 
178  void dropForeignKey(const std::string& datasetName, const std::string& fkName);
179 
180  std::unique_ptr<te::da::UniqueKey> getUniqueKey(const std::string& datasetName, const std::string& name);
181 
182  std::vector<std::string> getUniqueKeyNames(const std::string& datasetName);
183 
184  bool uniqueKeyExists(const std::string& datasetName, const std::string& name);
185 
186  void addUniqueKey(const std::string& datasetName, te::da::UniqueKey* uk);
187 
188  void dropUniqueKey(const std::string& datasetName, const std::string& name);
189 
190  std::unique_ptr<te::da::CheckConstraint> getCheckConstraint(const std::string& datasetName, const std::string& name);
191 
192  std::vector<std::string> getCheckConstraintNames(const std::string& datasetName);
193 
194  bool checkConstraintExists(const std::string& datasetName, const std::string& name);
195 
196  void addCheckConstraint(const std::string& datasetName, te::da::CheckConstraint* cc);
197 
198  void dropCheckConstraint(const std::string& datasetName, const std::string& name);
199 
200  std::unique_ptr<te::da::Index> getIndex(const std::string& datasetName, const std::string& name);
201 
202  std::vector<std::string> getIndexNames(const std::string& datasetName);
203 
204  bool indexExists(const std::string& datasetName, const std::string& name);
205 
206  void addIndex(const std::string& datasetName, te::da::Index* idx,
207  const std::map<std::string, std::string>& options);
208 
209  void dropIndex(const std::string& datasetName, const std::string& idxName);
210 
211  std::unique_ptr<te::da::Sequence> getSequence(const std::string& name);
212 
213  std::vector<std::string> getSequenceNames();
214 
215  bool sequenceExists(const std::string& name);
216 
217  void addSequence(te::da::Sequence* sequence);
218 
219  void dropSequence(const std::string& name);
220 
221  std::unique_ptr<te::gm::Envelope> getExtent(const std::string& datasetName,
222  const std::string& propertyName);
223 
224  std::unique_ptr<te::gm::Envelope> getExtent(const std::string& datasetName,
225  std::size_t propertyPos);
226 
227  std::size_t getNumberOfItems(const std::string& datasetName);
228 
229  bool hasDataSets();
230 
231  bool dataSetExists(const std::string& name);
232 
233  void createDataSet(te::da::DataSetType* dt, const std::map<std::string, std::string>& options);
234 
235  void cloneDataSet(const std::string& name,
236  const std::string& cloneName,
237  const std::map<std::string, std::string>& options);
238 
239  void dropDataSet(const std::string& name);
240 
241  void renameDataSet(const std::string& name, const std::string& newName);
242 
243  void add(const std::string& datasetName,
244  te::da::DataSet* d,
245  const std::map<std::string, std::string>& options,
246  std::size_t limit = 0,
247  bool enableProgress = true);
248 
249  void remove(const std::string& datasetName, const te::da::ObjectIdSet* oids = 0);
250 
251  void update(const std::string& datasetName,
252  te::da::DataSet* dataset,
253  const std::vector<std::size_t>& properties,
254  const te::da::ObjectIdSet* oids,
255  const std::map<std::string, std::string>& options,
256  std::size_t limit = 0);
257 
258  void update(const std::string& datasetName,
259  te::da::DataSet* dataset,
260  const std::vector< std::set<int> >& properties,
261  const std::vector<size_t>& ids);
262 
263  void optimize(const std::map<std::string, std::string>& opInfo);
264 
265  DataSource* getAdoDataSource() const;
266 
267  protected:
268 
269  /*!
270  \brief It update the DataSetType about the Primary Key.
271 
272  \param dt The DataSetType that will be updated.
273 
274  \exception Exception It throws an exception if the query execution fails.
275  */
277 
278  /*!
279  \brief It update the DataSetType about the Properties.
280 
281  \param dt The DataSetType that will be updated.
282 
283  \exception Exception It throws an exception if the query execution fails.
284  */
286 
287  /*!
288  \brief It update the DataSetType about the Unique Keys.
289 
290  \param dt The DataSetType that will be updated.
291 
292  \exception Exception It throws an exception if the query execution fails.
293  */
295 
296  /*!
297  \brief It update the DataSetType about the Indexes.
298 
299  \param dt The DataSetType that will be updated.
300 
301  \exception Exception It throws an exception if the query execution fails.
302  */
304 
305  /*!
306  \brief It update the DataSetType about the Check Constraints.
307 
308  \param dt The DataSetType that will be updated.
309 
310  \exception Exception It throws an exception if the query execution fails.
311  */
313 
314  /*!
315  \brief It insert a geometry property in the geometry_clumns (SFS Schema).
316 
317  \param datasetName The DataSet name.
318  \param geomProp The geometry property.
319 
320  \exception Exception It throws an exception if the query execution fails.
321  */
322  void insertIntoGeometryColumns(const std::string& datasetName,
323  te::gm::GeometryProperty* geomProp);
324 
325  private:
326 
327  DataSource* m_ds; //!< The ADO data source associated to this transactor.
328  Connection* m_conn; //!< The connection used by this transactor.
329  bool m_isInTransaction; //!< Tells if there is a transaction in progress.
330 
331  };
332 
334  {
335  return m_ds;
336  }
337 
338  } // end namespace ado
339 } // end namespace te
340 
341 #endif // __TERRALIB_ADO_INTERNAL_DATASOURCETRANSACTOR_H
342 
343 
A class that implements a connection to a ADO database.
Definition: Connection.h:61
The ADO driver.
Definition: DataSource.h:62
The transactor class for the Microsoft Access driver.
Definition: Transactor.h:63
std::unique_ptr< te::da::DataSet > query(const te::da::Select &q, te::common::TraverseType travType=te::common::FORWARDONLY, bool connected=false, const te::common::AccessPolicy accessPolicy=te::common::RAccess)
It executes a query that may return some data using a generic query. A dataset can be connected or di...
void execute(const std::string &command)
It executes the specifed command in the data source native language.
std::unique_ptr< te::da::PrimaryKey > getPrimaryKey(const std::string &datasetName)
It retrieves the primary key of the dataset.
bool foreignKeyExists(const std::string &datasetName, const std::string &name)
It checks if a foreign key with the given name exists in the data source.
DataSource * getAdoDataSource() const
Definition: Transactor.h:333
std::unique_ptr< te::da::BatchExecutor > getBatchExecutor()
It creates a batch command executor.
std::unique_ptr< te::da::ForeignKey > getForeignKey(const std::string &datasetName, const std::string &name)
It retrieves the foreign key from the given dataset.
std::vector< std::string > getDataSetNames()
It It gets the dataset names available in the data source.
void rollBack()
It aborts the transaction. Any changes will be rolled-back.
std::size_t getNumberOfProperties(const std::string &datasetName)
It gets the number of properties of the given dataset.
void cancel()
It requests that the data source stop the processing of the current command.
boost::int64_t getLastGeneratedId()
It returns the last id generated by an insertion command.
std::unique_ptr< te::da::Sequence > getSequence(const std::string &name)
It gets the sequence with the given name in the data source.
std::unique_ptr< te::da::CheckConstraint > getCheckConstraint(const std::string &datasetName, const std::string &name)
It gets the check constraint of the dataset with the given name.
void execute(const te::da::Query &command)
It executes the specified command using a generic query representation.
void addCheckConstraint(const std::string &datasetName, te::da::CheckConstraint *cc)
It adds a check constraint to the dataset.
std::size_t getNumberOfDataSets()
It retrieves the number of data sets available in the data source.
std::unique_ptr< te::da::DataSet > getDataSet(const std::string &name, const std::string &propertyName, const te::gm::Geometry *g, te::gm::SpatialRelation r, te::common::TraverseType travType=te::common::FORWARDONLY, bool connected=false, const te::common::AccessPolicy accessPolicy=te::common::RAccess)
It gets the dataset identified by the given name using a spatial filter over the given geometric prop...
Connection * m_conn
The connection used by this transactor.
Definition: Transactor.h:328
void dropPrimaryKey(const std::string &datasetName)
It removes the primary key constraint from the dataset schema.
std::unique_ptr< te::gm::Envelope > getExtent(const std::string &datasetName, const std::string &propertyName)
It retrieves the bounding rectangle of the spatial property for the given dataset.
void dropProperty(const std::string &datasetName, const std::string &name)
It removes a property from the given dataset.
bool sequenceExists(const std::string &name)
It checks if a sequence with the given name exists in the data source.
std::vector< std::string > getCheckConstraintNames(const std::string &datasetName)
It gets the check constraint names of the given dataset.
void update(const std::string &datasetName, te::da::DataSet *dataset, const std::vector< std::size_t > &properties, const te::da::ObjectIdSet *oids, const std::map< std::string, std::string > &options, std::size_t limit=0)
It updates the contents of a dataset for the set of data items.
void insertIntoGeometryColumns(const std::string &datasetName, te::gm::GeometryProperty *geomProp)
It insert a geometry property in the geometry_clumns (SFS Schema).
std::unique_ptr< te::da::Index > getIndex(const std::string &datasetName, const std::string &name)
It gets the index with the given name from the dataset.
std::unique_ptr< te::da::DataSetType > getDataSetType(const std::string &name)
It gets information about the given dataset.
std::unique_ptr< te::da::DataSet > getDataSet(const std::string &name, te::common::TraverseType travType=te::common::FORWARDONLY, bool connected=false, const te::common::AccessPolicy accessPolicy=te::common::RAccess)
It gets the dataset identified by the given name. A dataset can be connected or disconnected....
std::unique_ptr< te::dt::Property > getProperty(const std::string &datasetName, std::size_t propertyPos)
It retrieves the property lying in the given position from the dataset.
void begin()
It starts a new transaction.
void dropDataSet(const std::string &name)
It removes the dataset schema from the data source.
void getUniqueKeys(te::da::DataSetType *dt)
It update the DataSetType about the Unique Keys.
void cloneDataSet(const std::string &name, const std::string &cloneName, const std::map< std::string, std::string > &options)
It clones the dataset in the data source.
void remove(const std::string &datasetName, const te::da::ObjectIdSet *oids=0)
It removes all the informed items from the dataset.
std::vector< std::string > getSequenceNames()
It gets the sequence names available in the data source.
DataSource * m_ds
The ADO data source associated to this transactor.
Definition: Transactor.h:327
std::vector< std::string > getForeignKeyNames(const std::string &datasetName)
It gets the foreign key names of the given dataset.
std::size_t getNumberOfItems(const std::string &datasetName)
It retrieves the number of items of the given dataset.
bool hasDataSets()
It checks if the data source has any dataset.
void renameDataSet(const std::string &name, const std::string &newName)
It renames a dataset.
std::unique_ptr< te::dt::Property > getProperty(const std::string &datasetName, const std::string &name)
It retrieves the property with the given name from the dataset.
void dropUniqueKey(const std::string &datasetName, const std::string &name)
It removes the unique key constraint from the dataset.
boost::ptr_vector< te::dt::Property > getProperties(const std::string &datasetName)
It retrieves the properties of the dataset.
void optimize(const std::map< std::string, std::string > &opInfo)
For some data access drivers, this method will perform some operations to optimize the data storage.
void addPrimaryKey(const std::string &datasetName, te::da::PrimaryKey *pk)
It adds a primary key constraint to the dataset schema.
std::unique_ptr< te::da::DataSet > getDataSet(const std::string &name, const ObjectIdSet *oids, te::common::TraverseType travType=te::common::FORWARDONLY, bool connected=false, const te::common::AccessPolicy accessPolicy=te::common::RAccess)
bool indexExists(const std::string &datasetName, const std::string &name)
It checks if an index with the given name exists in the dataset.
void dropIndex(const std::string &datasetName, const std::string &idxName)
It removes the index from the dataset schema.
bool primaryKeyExists(const std::string &datasetName, const std::string &name)
It checks if a primary key exists in the dataset.
bool checkConstraintExists(const std::string &datasetName, const std::string &name)
It checks if a check-constraint with the given name exists in the data source.
void getCheckConstraints(te::da::DataSetType *dt)
It update the DataSetType about the Check Constraints.
bool uniqueKeyExists(const std::string &datasetName, const std::string &name)
It checks if a unique key with the given name exists in the dataset.
void dropForeignKey(const std::string &datasetName, const std::string &fkName)
It removes the foreign key constraint from the dataset schema.
void update(const std::string &datasetName, te::da::DataSet *dataset, const std::vector< std::set< int > > &properties, const std::vector< size_t > &ids)
It updates the contents of a dataset.
void getIndexes(te::da::DataSetType *dt)
It update the DataSetType about the Indexes.
std::vector< std::string > getIndexNames(const std::string &datasetName)
It gets the index names of the given dataset.
bool propertyExists(const std::string &datasetName, const std::string &name)
It checks if a property with the given name exists in the dataset.
te::da::DataSource * getDataSource() const
It returns the parent data source of the transactor.
std::unique_ptr< te::da::PreparedQuery > getPrepared(const std::string &qName=std::string(""))
It creates a prepared query object that may be used for query commands (select, insert,...
bool isInTransaction() const
It returns true if a transaction is in progress, otherwise, it returns false.
std::unique_ptr< te::da::UniqueKey > getUniqueKey(const std::string &datasetName, const std::string &name)
It gets the unique key in the dataset with the given name.
std::unique_ptr< te::da::DataSet > query(const std::string &query, te::common::TraverseType travType=te::common::FORWARDONLY, bool connected=false, const te::common::AccessPolicy accessPolicy=te::common::RAccess)
It executes a query that may return some data using the data source native language....
void dropSequence(const std::string &name)
It removes the sequence from the data source.
std::vector< std::string > getUniqueKeyNames(const std::string &datasetName)
It gets the unique key names of the given dataset.
void renameProperty(const std::string &datasetName, const std::string &propertyName, const std::string &newPropertyName)
It renames a property of the given dataset.
void addProperty(const std::string &datasetName, te::dt::Property *p)
It adds a new property to the dataset schema.
void getPrimaryKey(te::da::DataSetType *dt)
It update the DataSetType about the Primary Key.
std::unique_ptr< te::gm::Envelope > getExtent(const std::string &datasetName, std::size_t propertyPos)
It retrieves the bounding rectangle for the spatial property lying in the given position in the datas...
std::string escape(const std::string &value)
It escapes a string for using in commands and queries.
std::unique_ptr< te::da::DataSet > getDataSet(const std::string &name, const std::string &propertyName, const te::gm::Envelope *e, te::gm::SpatialRelation r, te::common::TraverseType travType=te::common::FORWARDONLY, bool connected=false, const te::common::AccessPolicy accessPolicy=te::common::RAccess)
It gets the dataset identified by the given name using a spatial filter over the specified property....
Transactor(DataSource *ds)
void add(const std::string &datasetName, te::da::DataSet *d, const std::map< std::string, std::string > &options, std::size_t limit=0, bool enableProgress=true)
It adds data items to the dataset in the data source.
bool m_isInTransaction
Tells if there is a transaction in progress.
Definition: Transactor.h:329
void addSequence(te::da::Sequence *sequence)
It creates a new sequence in the data source.
bool dataSetExists(const std::string &name)
It checks if a dataset with the given name exists in the data source.
void commit()
It commits the transaction.
void dropCheckConstraint(const std::string &datasetName, const std::string &name)
It removes the check constraint from the dataset.
std::vector< std::string > getPropertyNames(const std::string &datasetName)
It gets the property names of the given dataset.
void addUniqueKey(const std::string &datasetName, te::da::UniqueKey *uk)
It adds a unique key constraint to the dataset.
void changePropertyDefinition(const std::string &datasetName, const std::string &propName, te::dt::Property *newProp)
void getProperties(te::da::DataSetType *dt)
It update the DataSetType about the Properties.
void createDataSet(te::da::DataSetType *dt, const std::map< std::string, std::string > &options)
It creates the dataset schema definition in the target data source.
void addForeignKey(const std::string &datasetName, te::da::ForeignKey *fk)
It adds a foreign key constraint to a dataset.
void addIndex(const std::string &datasetName, te::da::Index *idx, const std::map< std::string, std::string > &options)
It adds an index to the dataset.
A class that describes a check constraint.
A class that models the description of a dataset.
Definition: DataSetType.h:73
A dataset is the unit of information manipulated by the data access module of TerraLib.
Definition: DataSet.h:114
A DataSourceTransactor can be viewed as a connection to the data source for reading/writing things in...
An abstract class for data providers like a DBMS, Web Services or a regular file.
Definition: DataSource.h:120
It models a foreign key constraint for a DataSetType.
Definition: ForeignKey.h:49
It describes an index associated to a DataSetType.
Definition: Index.h:53
This class represents a set of unique ids created in the same context. i.e. from the same data set.
Definition: ObjectIdSet.h:56
It describes a primary key (pk) constraint.
Definition: PrimaryKey.h:49
A Query is independent from the data source language/dialect.
Definition: Query.h:47
A Select models a query to be used when retrieving data from a DataSource.
Definition: Select.h:67
It describes a sequence (a number generator).
Definition: Sequence.h:57
It describes a unique key (uk) constraint.
Definition: UniqueKey.h:50
It models a property definition.
Definition: Property.h:60
An Envelope defines a 2D rectangular region.
Definition: Envelope.h:52
Geometric property.
Geometry is the root class of the geometries hierarchy, it follows OGC and ISO standards.
Definition: Geometry.h:78
TraverseType
A dataset can be traversed in two ways:
Definition: Enums.h:54
@ FORWARDONLY
Definition: Enums.h:55
AccessPolicy
Supported data access policies (can be used as bitfield).
Definition: Enums.h:41
@ RAccess
Definition: Enums.h:43
SpatialRelation
Spatial relations between geometric objects.
Definition: Enums.h:128
TerraLib.
#define TEADOEXPORT
You can use this macro in order to export/import classes and functions from this module.
Definition: Config.h:130
Proxy configuration file for TerraView (see terraview_config.h).
Data Source for WS OGC WMS.