mirror of https://github.com/apache/openjpa.git
264 lines
9.1 KiB
XML
264 lines
9.1 KiB
XML
<?xml version="1.0" encoding="UTF-8"?>
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<!--
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Licensed to the Apache Software Foundation (ASF) under one
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or more contributor license agreements. See the NOTICE file
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distributed with this work for additional information
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regarding copyright ownership. The ASF licenses this file
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to you under the Apache License, Version 2.0 (the
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"License"); you may not use this file except in compliance
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with the License. You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing,
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software distributed under the License is distributed on an
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"AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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KIND, either express or implied. See the License for the
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specific language governing permissions and limitations
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under the License.
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-->
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<chapter id="jpa_overview_sqlquery">
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<title>
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SQL Queries
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</title>
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<indexterm zone="jpa_overview_sqlquery">
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<primary>
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SQL queries
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</primary>
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<seealso>
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Query
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</seealso>
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</indexterm>
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<indexterm>
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<primary>
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Query
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</primary>
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<secondary>
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SQL
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</secondary>
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<see>
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SQL queries
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</see>
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</indexterm>
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<indexterm>
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<primary>
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SQL
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</primary>
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<secondary>
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queries
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</secondary>
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<see>
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SQL queries
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</see>
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</indexterm>
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<indexterm>
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<primary>
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Native
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</primary>
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<secondary>
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queries
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</secondary>
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<see>
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SQL queries
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</see>
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</indexterm>
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<para>
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JPQL is a powerful query language, but there are times when it is not enough.
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Maybe you're migrating a JDBC application to JPA on a strict deadline, and you
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don't have time to translate your existing SQL selects to JPQL. Or maybe a
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certain query requires database-specific SQL your JPA implementation doesn't
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support. Or maybe your DBA has spent hours crafting the perfect select statement
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for a query in your application's critical path. Whatever the reason, SQL
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queries can remain an essential part of an application.
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</para>
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<para>
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You are probably familiar with executing SQL queries by obtaining a <classname>
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java.sql.Connection</classname>, using the JDBC APIs to create a <classname>
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Statement</classname>, and executing that <classname>Statement</classname> to
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obtain a <classname>ResultSet</classname>. And of course, you are free to
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continue using this low-level approach to SQL execution in your JPA
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applications. However, JPA also supports executing SQL queries through the
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<classname>javax.persistence.Query</classname> interface introduced in
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<xref linkend="jpa_overview_query"/>. Using a JPA SQL query, you can
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retrieve either persistent objects or projections of column values. The
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following sections detail each use.
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</para>
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<section id="jpa_overview_sqlquery_create">
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<title>
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Creating SQL Queries
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</title>
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<indexterm zone="jpa_overview_sqlquery_create">
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<primary>
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SQL queries
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</primary>
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<secondary>
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creating
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</secondary>
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</indexterm>
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<para>
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The <classname>EntityManager</classname> has two factory methods suitable for
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creating SQL queries:
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</para>
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<programlisting>
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public Query createNativeQuery(String sqlString, Class resultClass);
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public Query createNativeQuery(String sqlString, String resultSetMapping);
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</programlisting>
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<para>
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The first method is used to create a new <classname>Query</classname> instance
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that will return instances of the specified class.
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</para>
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<para>
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The second method uses a <literal>SqlResultSetMapping</literal> to determine the
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type of object or objects to return. The example below shows these methods in
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action.
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</para>
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<example id="jpa_overview_sqlquery_createex">
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<title>
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Creating a SQL Query
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</title>
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<programlisting>
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EntityManager em = ...;
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Query query = em.createNativeQuery("SELECT * FROM MAG", Magazine.class);
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processMagazines(query.getResultList());
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</programlisting>
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</example>
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<note>
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<para>
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<indexterm>
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<primary>
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SQL queries
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</primary>
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<secondary>
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stored procedures
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</secondary>
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</indexterm>
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<indexterm>
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<primary>
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stored procedures
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</primary>
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<secondary>
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as queries
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</secondary>
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<seealso>
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Query
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</seealso>
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</indexterm>
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In addition to SELECT statements, OpenJPA supports stored procedure invocations
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as SQL queries. OpenJPA will assume any SQL that does not begin with the
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<literal>SELECT</literal> keyword (ignoring case) is a stored procedure call,
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and invoke it as such at the JDBC level.
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</para>
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</note>
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</section>
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<section id="jpa_overview_sqlquery_obj">
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<title>
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Retrieving Persistent Objects with SQL
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</title>
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<indexterm zone="jpa_overview_sqlquery_obj">
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<primary>
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SQL queries
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</primary>
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<secondary>
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retrieving persistent objects
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</secondary>
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</indexterm>
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<indexterm zone="jpa_overview_sqlquery_obj">
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<primary>
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persistent objects
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</primary>
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<secondary>
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retrieving with SQL
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</secondary>
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<seealso>
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SQL queries
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</seealso>
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</indexterm>
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<para>
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When you give a SQL <classname>Query</classname> a candidate class, it will
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return persistent instances of that class. At a minimum, your SQL must select
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the class' primary key columns, discriminator column (if mapped), and version
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column (also if mapped). The JPA runtime uses the values of the primary key
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columns to construct each result object's identity, and possibly to match it
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with a persistent object already in the <classname>EntityManager</classname>'s
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cache. When an object is not already cached, the implementation creates a new
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object to represent the current result row. It might use the discriminator
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column value to make sure it constructs an object of the correct subclass.
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Finally, the query records available version column data for use in optimistic
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concurrency checking, should you later change the result object and flush it
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back to the database.
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</para>
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<para>
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Aside from the primary key, discriminator, and version columns, any columns you
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select are used to populate the persistent fields of each result object. JPA
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implementations will compete on how effectively they map your selected data to
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your persistent instance fields.
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</para>
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<para>
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Let's make the discussion above concrete with an example. It uses the following
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simple mapping between a class and the database:
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</para>
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<mediaobject>
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<imageobject>
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<!-- PNG image data, 320 x 149 (see README) -->
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<imagedata fileref="img/sqlquery-model.png" width="213px"/>
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</imageobject>
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</mediaobject>
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<example id="jpa_overview_sqlquery_objex">
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<title>
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Retrieving Persistent Objects
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</title>
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<programlisting>
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Query query = em.createNativeQuery("SELECT ISBN, TITLE, PRICE, "
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+ "VERS FROM MAG WHERE PRICE > 5 AND PRICE < 10", Magazine.class);
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List<Magazine> results = (List<Magazine>) query.getResultList();
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for (Magazine mag : results)
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processMagazine(mag);
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</programlisting>
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</example>
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<para>
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The query above works as advertised, but isn't very flexible. Let's update it to
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take in parameters for the minimum and maximum price, so we can reuse it to find
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magazines in any price range:
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</para>
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<example id="jpa_overview_sqlquery_obj_paramex">
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<title>
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SQL Query Parameters
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</title>
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<programlisting>
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Query query = em.createNativeQuery("SELECT ISBN, TITLE, PRICE, "
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+ "VERS FROM MAG WHERE PRICE > ?1 AND PRICE < ?2", Magazine.class);
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query.setParameter(1, 5d);
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query.setParameter(2, 10d);
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List<Magazine> results = (List<Magazine>) query.getResultList();
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for (Magazine mag : results)
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processMagazine (mag);
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</programlisting>
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</example>
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<para>
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<indexterm>
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<primary>
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SQL queries
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</primary>
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<secondary>
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parameters
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</secondary>
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</indexterm>
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<indexterm>
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<primary>
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parameters
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</primary>
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<secondary>
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in SQL queries
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</secondary>
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<seealso>
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SQL queries
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</seealso>
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</indexterm>
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Like JDBC prepared statements, SQL queries represent parameters with question
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marks, but are followed by an integer to represent its index.
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</para>
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</section>
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</chapter>
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