mirror of
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1524 lines
48 KiB
Java
1524 lines
48 KiB
Java
package io.ebean;
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import io.avaje.lang.NonNullApi;
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import io.avaje.lang.Nullable;
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import io.ebean.annotation.Platform;
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import io.ebean.annotation.TxIsolation;
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import io.ebean.cache.ServerCacheManager;
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import io.ebean.config.DatabaseConfig;
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import io.ebean.meta.MetaInfoManager;
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import io.ebean.plugin.Property;
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import io.ebean.plugin.SpiServer;
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import io.ebean.text.json.JsonContext;
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import jakarta.persistence.OptimisticLockException;
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import jakarta.persistence.PersistenceException;
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import javax.sql.DataSource;
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import java.util.Collection;
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import java.util.List;
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import java.util.Map;
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import java.util.Set;
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import java.util.concurrent.Callable;
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/**
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* Provides the API for fetching and saving beans to a particular database.
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*
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* <h5>Registration with the DB singleton</h5>
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* <p>
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* When a Database instance is created it can be registered with the DB
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* singleton (see {@link DatabaseConfig#setRegister(boolean)}). The DB
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* singleton is essentially a map of Database's that have been registered
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* with it.
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* <p>
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* The Database can then be retrieved later via {@link DB#byName(String)}.
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*
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* <h5>The 'default' Database</h5>
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* <p>
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* One Database can be designated as the 'default' or 'primary' Database
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* (see {@link DatabaseConfig#setDefaultServer(boolean)}). Many methods on DB
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* such as {@link DB#find(Class)} etc are actually just a convenient way to
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* call methods on the 'default/primary' Database.
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*
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* <h5>Constructing a Database</h5>
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* <p>
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* Databases are constructed by the DatabaseFactory. They can be created
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* programmatically via {@link DatabaseFactory#create(DatabaseBuilder)} or they
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* can be automatically constructed on demand using configuration information in
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* the application.properties file.
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*
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* <h5>Example: Get a Database</h5>
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* <pre>{@code
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*
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* // Get access to the Human Resources Database
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* Database hrDatabase = DB.byName("hr");
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*
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*
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* // fetch contact 3 from the HR database
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* Contact contact = hrDatabase.find(Contact.class, new Integer(3));
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*
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* contact.setStatus("INACTIVE"); ...
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*
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* // save the contact back to the HR database
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* hrDatabase.save(contact);
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*
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* }</pre>
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*
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* <h5>Database vs DB API</h5>
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* <p>
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* Database provides additional API compared with DB. For example, it
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* provides more control over the use of Transactions that is not available in
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* the DB API.
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*
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* <p>
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* <em>External Transactions:</em> If you wanted to use transactions created
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* externally to Ebean then Database provides additional methods where you
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* can explicitly pass a transaction (that can be created externally).
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*
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* <p>
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* <em>Bypass ThreadLocal Mechanism:</em> If you want to bypass the built-in
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* ThreadLocal transaction management you can use the createTransaction()
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* method. Example: a single thread requires more than one transaction.
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*
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* @see DB
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* @see DatabaseFactory
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* @see DatabaseConfig
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*/
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@NonNullApi
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public interface Database {
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/**
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* Return a new database builder.
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* <pre>{@code
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*
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* // build the 'default' database using configuration
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* // from application.properties / application.yaml
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*
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* Database db = Database.builder()
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* .loadFromProperties()
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* .build();
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*
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* }</pre>
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*/
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static DatabaseBuilder builder() {
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return new DatabaseConfig();
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}
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/**
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* Shutdown the Database instance.
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*/
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void shutdown();
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/**
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* Shutdown the Database instance programmatically.
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* <p>
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* This method is not normally required. Ebean registers a shutdown hook and shuts down cleanly.
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* <p>
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* If the under underlying DataSource is the Ebean implementation then you
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* also have the option of shutting down the DataSource and de-registering the
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* JDBC driver.
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*
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* @param shutdownDataSource if true then shutdown the underlying DataSource if it is the Ebean
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* DataSource implementation.
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* @param deregisterDriver if true then deregister the JDBC driver if it is the Ebean
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* DataSource implementation.
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*/
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void shutdown(boolean shutdownDataSource, boolean deregisterDriver);
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/**
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* Return AutoTune which is used to control the AutoTune service at runtime.
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*/
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AutoTune autoTune();
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/**
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* Return the associated DataSource for this Database instance.
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*/
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DataSource dataSource();
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/**
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* Return the associated read only DataSource for this Database instance (can be null).
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*/
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DataSource readOnlyDataSource();
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/**
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* Return the name. This is used with {@link DB#byName(String)} to get a
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* Database that was registered with the DB singleton.
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*/
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String name();
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/**
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* Return the ExpressionFactory for this database.
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*/
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ExpressionFactory expressionFactory();
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/**
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* Return the MetaInfoManager which is used to get meta data from the Database
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* such as query execution statistics.
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*/
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MetaInfoManager metaInfo();
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/**
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* Return the platform used for this database instance.
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* <p>
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* Note many platforms have multiple specific platform types so often we want to
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* get the base platform via {@link Platform#base()}.
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*
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* <pre>{@code
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*
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* Platform platform = database.platform().base();
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* if (platform == Platform.MYSQL) {
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* // do MySql specific function
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* }
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*
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* }</pre>
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*
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* @return platform for this database instance
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*/
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Platform platform();
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/**
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* Return the extended API intended for use by plugins.
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*/
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SpiServer pluginApi();
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/**
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* Return the BeanState for a given entity bean.
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* <p>
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* This will throw an IllegalArgumentException if the bean is not an enhanced entity bean.
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*/
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BeanState beanState(Object bean);
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/**
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* Return the value of the Id property for a given bean.
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*/
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Object beanId(Object bean);
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/**
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* Set the Id value onto the bean converting the type of the id value if necessary.
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* <p>
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* For example, if the id value passed in is a String but ought to be a Long or UUID etc
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* then it will automatically be converted.
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*
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* @param bean The entity bean to set the id value on.
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* @param id The id value to set.
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*/
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Object beanId(Object bean, Object id);
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/**
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* Return a map of the differences between two objects of the same type.
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* <p>
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* When null is passed in for b, then the 'OldValues' of a is used for the
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* difference comparison.
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*/
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Map<String, ValuePair> diff(Object newBean, Object oldBean);
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/**
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* Create a new instance of T that is an EntityBean.
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* <p>
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* Useful if you use BeanPostConstructListeners or @PostConstruct Annotations.
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* In this case you should not use "new Bean...()". Making all bean constructors protected
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* could be a good idea here.
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*/
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<T> T createEntityBean(Class<T> type);
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/**
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* Create an Update query to perform a bulk update.
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* <p>
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* <pre>{@code
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*
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* int rows = database
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* .update(Customer.class)
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* .set("status", Customer.Status.ACTIVE)
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* .set("updtime", new Timestamp(System.currentTimeMillis()))
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* .where()
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* .gt("id", 1000)
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* .update();
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*
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* }</pre>
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*
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* @param beanType The type of entity bean to update
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* @param <T> The type of entity bean
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* @return The update query to use
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*/
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<T> UpdateQuery<T> update(Class<T> beanType);
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/**
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* Create a named query.
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* <p>
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* For RawSql the named query is expected to be in ebean.xml.
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*
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* @param beanType The type of entity bean
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* @param namedQuery The name of the query
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* @param <T> The type of entity bean
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* @return The query
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*/
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<T> Query<T> createNamedQuery(Class<T> beanType, String namedQuery);
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/**
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* Create a query for an entity bean and synonym for {@link #find(Class)}.
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*
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* @see #find(Class)
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*/
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<T> Query<T> createQuery(Class<T> beanType);
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/**
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* Parse the Ebean query language statement returning the query which can then
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* be modified (add expressions, change order by clause, change maxRows, change
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* fetch and select paths etc).
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* <p>
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* <h3>Example</h3>
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* <pre>{@code
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*
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* // Find order additionally fetching the customer, details and details.product name.
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*
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* String ormQuery = "fetch customer fetch details fetch details.product (name) where id = :orderId ";
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*
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* Query<Order> query = DB.createQuery(Order.class, ormQuery);
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* query.setParameter("orderId", 2);
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*
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* Order order = query.findOne();
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*
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* // This is the same as:
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*
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* Order order = DB.find(Order.class)
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* .fetch("customer")
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* .fetch("details")
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* .fetch("detail.product", "name")
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* .setId(2)
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* .findOne();
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*
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* }</pre>
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*
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* @param beanType The type of bean to fetch
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* @param ormQuery The Ebean ORM query
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* @param <T> The type of the entity bean
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* @return The query with expressions defined as per the parsed query statement
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*/
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<T> Query<T> createQuery(Class<T> beanType, String ormQuery);
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/**
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* Create a query for a type of entity bean.
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* <p>
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* You can use the methods on the Query object to specify fetch paths,
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* predicates, order by, limits etc.
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* <p>
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* You then use findList(), findSet(), findMap() and findOne() to execute
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* the query and return the collection or bean.
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* <p>
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* Note that a query executed by {@link Query#findList()}
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* {@link Query#findSet()} etc will execute against the same Database from
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* which is was created.
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*
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* <pre>{@code
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*
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* // Find order 2 specifying explicitly the parts of the object graph to
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* // eagerly fetch. In this case eagerly fetch the associated customer,
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* // details and details.product.name
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*
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* Order order = database.find(Order.class)
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* .fetch("customer")
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* .fetch("details")
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* .fetch("detail.product", "name")
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* .setId(2)
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* .findOne();
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*
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* // find some new orders ... with firstRow/maxRows
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* List<Order> orders =
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* database.find(Order.class)
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* .where().eq("status", Order.Status.NEW)
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* .setFirstRow(20)
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* .setMaxRows(10)
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* .findList();
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*
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* }</pre>
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*/
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<T> Query<T> find(Class<T> beanType);
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/**
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* Create a query using native SQL.
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* <p>
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* The native SQL can contain named parameters or positioned parameters.
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*
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* <pre>{@code
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*
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* String sql = "select c.id, c.name from customer c where c.name like ? order by c.name";
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*
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* Query<Customer> query = database.findNative(Customer.class, sql);
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* query.setParameter(1, "Rob%");
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*
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* List<Customer> customers = query.findList();
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*
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* }</pre>
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*
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* @param beanType The type of entity bean to fetch
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* @param nativeSql The SQL that can contain named or positioned parameters
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* @return The query to set parameters and execute
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*/
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<T> Query<T> findNative(Class<T> beanType, String nativeSql);
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/**
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* Return the next unique identity value for a given bean type.
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* <p>
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* This will only work when a IdGenerator is on the bean such as for beans
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* that use a DB sequence or UUID.
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* <p>
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* For DB's supporting getGeneratedKeys and sequences such as Oracle10 you do
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* not need to use this method generally. It is made available for more
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* complex cases where it is useful to get an ID prior to some processing.
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*/
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Object nextId(Class<?> beanType);
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/**
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* Create a filter for sorting and filtering lists of entities locally without
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* going back to the database.
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* <p>
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* This produces and returns a new list with the sort and filters applied.
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* <p>
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* Refer to {@link Filter} for an example of its use.
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*/
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<T> Filter<T> filter(Class<T> beanType);
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/**
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* Sort the list in memory using the sortByClause which can contain a comma delimited
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* list of property names and keywords asc, desc, nullsHigh and nullsLow.
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* <ul>
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* <li>asc - ascending order (which is the default)</li>
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* <li>desc - Descending order</li>
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* <li>nullsHigh - Treat null values as high/large values (which is the
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* default)</li>
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* <li>nullsLow- Treat null values as low/very small values</li>
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* </ul>
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* <p>
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* If you leave off any keywords the defaults are ascending order and treating
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* nulls as high values.
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* <p>
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* Note that the sorting uses a Comparator and Collections.sort(); and does
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* not invoke a DB query.
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*
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* <pre>{@code
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*
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* // find orders and their customers
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* List<Order> list = database.find(Order.class)
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* .fetch("customer")
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* .order("id")
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* .findList();
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*
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* // sort by customer name ascending, then by order shipDate
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* // ... then by the order status descending
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* database.sort(list, "customer.name, shipDate, status desc");
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*
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* // sort by customer name descending (with nulls low)
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* // ... then by the order id
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* database.sort(list, "customer.name desc nullsLow, id");
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*
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* }</pre>
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*
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* @param list the list of entity beans
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* @param sortByClause the properties to sort the list by
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*/
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<T> void sort(List<T> list, String sortByClause);
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/**
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* Create an orm update where you will supply the insert/update or delete
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* statement (rather than using a named one that is already defined using the
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* @NamedUpdates annotation).
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* <p>
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* The orm update differs from the sql update in that it you can use the bean
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* name and bean property names rather than table and column names.
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* <p>
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* An example:
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*
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* <pre>{@code
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*
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* // The bean name and properties - "topic","postCount" and "id"
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*
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* // will be converted into their associated table and column names
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* String updStatement = "update topic set postCount = :pc where id = :id";
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*
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* Update<Topic> update = database.createUpdate(Topic.class, updStatement);
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*
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* update.set("pc", 9);
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* update.set("id", 3);
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*
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* int rows = update.execute();
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* System.out.println("rows updated:" + rows);
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*
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* }</pre>
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*/
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<T> Update<T> createUpdate(Class<T> beanType, String ormUpdate);
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/**
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* Create a Query for DTO beans.
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* <p>
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* DTO beans are just normal bean like classes with public constructor(s) and setters.
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* They do not need to be registered with DB before use.
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*
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* @param dtoType The type of the DTO bean the rows will be mapped into.
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* @param sql The SQL query to execute.
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* @param <T> The type of the DTO bean.
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*/
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<T> DtoQuery<T> findDto(Class<T> dtoType, String sql);
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/**
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* Create a named Query for DTO beans.
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* <p>
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* DTO beans are just normal bean like classes with public constructor(s) and setters.
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* They do not need to be registered with DB before use.
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*
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* @param dtoType The type of the DTO bean the rows will be mapped into.
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* @param namedQuery The name of the query
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* @param <T> The type of the DTO bean.
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*/
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<T> DtoQuery<T> createNamedDtoQuery(Class<T> dtoType, String namedQuery);
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/**
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* Look to execute a native sql query that does not return beans but instead
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* returns SqlRow or direct access to ResultSet.
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*
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* <p>
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* Refer to {@link DtoQuery} for native sql queries returning DTO beans.
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* <p>
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* Refer to {@link #findNative(Class, String)} for native sql queries returning entity beans.
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*/
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SqlQuery sqlQuery(String sql);
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/**
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* Look to execute a native sql insert update or delete statement.
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* <p>
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* Use this to execute a Insert Update or Delete statement. The statement will
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* be native to the database and contain database table and column names.
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*
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* <p>
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* See {@link SqlUpdate} for example usage.
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*
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* @return The SqlUpdate instance to set parameters and execute
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*/
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SqlUpdate sqlUpdate(String sql);
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/**
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* Create a CallableSql to execute a given stored procedure.
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*/
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CallableSql createCallableSql(String callableSql);
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/**
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* Register a TransactionCallback on the currently active transaction.
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* <p>
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* If there is no currently active transaction then a PersistenceException is thrown.
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*
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* @param transactionCallback The transaction callback to be registered with the current transaction.
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* @throws PersistenceException If there is no currently active transaction
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*/
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void register(TransactionCallback transactionCallback) throws PersistenceException;
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/**
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* Create a new transaction that is not held in TransactionThreadLocal.
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* <p>
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* You will want to do this if you want multiple Transactions in a single
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* thread or generally use transactions outside of the TransactionThreadLocal
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* management.
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*/
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Transaction createTransaction();
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/**
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* Create a new transaction additionally specifying the isolation level.
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* <p>
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* Note that this transaction is NOT stored in a thread local.
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*/
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Transaction createTransaction(TxIsolation isolation);
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/**
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* Start a transaction with 'REQUIRED' semantics.
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* <p>
|
|
* With REQUIRED semantics if an active transaction already exists that transaction will be used.
|
|
* <p>
|
|
* The transaction is stored in a ThreadLocal variable and typically you only
|
|
* need to use the returned Transaction <em>IF</em> you wish to do things like
|
|
* use batch mode, change the transaction isolation level, use savepoints or
|
|
* log comments to the transaction log.
|
|
* <p>
|
|
* Example of using a transaction to span multiple calls to find(), save() etc.
|
|
*
|
|
* <h3>Using try with resources</h3>
|
|
* <pre>{@code
|
|
*
|
|
* // start a transaction (stored in a ThreadLocal)
|
|
* try (Transaction txn = database.beginTransaction()) {
|
|
*
|
|
* Order order = database.find(Order.class, 10);
|
|
* ...
|
|
* database.save(order);
|
|
*
|
|
* txn.commit();
|
|
* }
|
|
*
|
|
* }</pre>
|
|
*
|
|
* <h3>Using try finally block</h3>
|
|
* <pre>{@code
|
|
*
|
|
* // start a transaction (stored in a ThreadLocal)
|
|
* Transaction txn = database.beginTransaction();
|
|
* try {
|
|
* Order order = database.find(Order.class,10);
|
|
*
|
|
* database.save(order);
|
|
* txn.commit();
|
|
*
|
|
* } finally {
|
|
* txn.end();
|
|
* }
|
|
* }</pre>
|
|
*
|
|
* <h3>Transaction options</h3>
|
|
* <pre>{@code
|
|
*
|
|
* try (Transaction txn = database.beginTransaction()) {
|
|
*
|
|
* // explicitly turn on/off JDBC batch use
|
|
* txn.setBatchMode(true);
|
|
* txn.setBatchSize(50);
|
|
*
|
|
* // control flushing when mixing save and queries
|
|
* txn.setBatchFlushOnQuery(false);
|
|
*
|
|
* // turn off persist cascade if needed
|
|
* txn.setPersistCascade(false);
|
|
*
|
|
* // for large batch insert processing when we do not
|
|
* // ... need the generatedKeys, don't get them
|
|
* txn.setBatchGetGeneratedKeys(false);
|
|
*
|
|
* // explicitly flush the JDBC batch buffer
|
|
* txn.flush();
|
|
*
|
|
* ...
|
|
*
|
|
* txn.commit();
|
|
* }
|
|
*
|
|
* }</pre>
|
|
* <p>
|
|
* If you want to externalise the transaction management then you use
|
|
* createTransaction() and pass the transaction around to the various methods on
|
|
* Database yourself.
|
|
*/
|
|
Transaction beginTransaction();
|
|
|
|
/**
|
|
* Start a transaction additionally specifying the isolation level.
|
|
*/
|
|
Transaction beginTransaction(TxIsolation isolation);
|
|
|
|
/**
|
|
* Start a transaction typically specifying REQUIRES_NEW or REQUIRED semantics.
|
|
* <p>
|
|
* Note that this provides an try finally alternative to using {@link #executeCall(TxScope, Callable)} or
|
|
* {@link #execute(TxScope, Runnable)}.
|
|
*
|
|
* <h3>REQUIRES_NEW example:</h3>
|
|
* <pre>{@code
|
|
* // Start a new transaction. If there is a current transaction
|
|
* // suspend it until this transaction ends
|
|
* try (Transaction txn = database.beginTransaction(TxScope.requiresNew())) {
|
|
*
|
|
* ...
|
|
*
|
|
* // commit the transaction
|
|
* txn.commit();
|
|
*
|
|
* // At end this transaction will:
|
|
* // A) will rollback transaction if it has not been committed
|
|
* // B) will restore a previously suspended transaction
|
|
* }
|
|
*
|
|
* }</pre>
|
|
* <p>
|
|
* <h3>REQUIRED example:</h3>
|
|
* <pre>{@code
|
|
*
|
|
* // start a new transaction if there is not a current transaction
|
|
* try (Transaction txn = database.beginTransaction(TxScope.required())) {
|
|
*
|
|
* ...
|
|
*
|
|
* // commit the transaction if it was created or
|
|
* // do nothing if there was already a current transaction
|
|
* txn.commit();
|
|
* }
|
|
*
|
|
* }</pre>
|
|
*/
|
|
Transaction beginTransaction(TxScope scope);
|
|
|
|
/**
|
|
* Returns the current transaction or null if there is no current transaction in scope.
|
|
*/
|
|
Transaction currentTransaction();
|
|
|
|
/**
|
|
* Flush the JDBC batch on the current transaction.
|
|
* <p>
|
|
* This only is useful when JDBC batch is used. Flush occurs automatically when the
|
|
* transaction commits or batch size is reached. This manually flushes the JDBC batch
|
|
* buffer.
|
|
* <p>
|
|
* This is the same as <code>currentTransaction().flush()</code>.
|
|
*/
|
|
void flush();
|
|
|
|
/**
|
|
* Refresh the values of a bean.
|
|
* <p>
|
|
* Note that this resets OneToMany and ManyToMany properties so that if they
|
|
* are accessed a lazy load will refresh the many property.
|
|
*/
|
|
void refresh(Object bean);
|
|
|
|
/**
|
|
* Refresh a many property of an entity bean.
|
|
*
|
|
* @param bean the entity bean containing the 'many' property
|
|
* @param propertyName the 'many' property to be refreshed
|
|
*/
|
|
void refreshMany(Object bean, String propertyName);
|
|
|
|
/**
|
|
* Find a bean using its unique id.
|
|
* <p>
|
|
* <pre>{@code
|
|
* // Fetch order 1
|
|
* Order order = database.find(Order.class, 1);
|
|
* }</pre>
|
|
*
|
|
* <p>
|
|
* If you want more control over the query then you can use createQuery() and
|
|
* Query.findOne();
|
|
*
|
|
* <pre>{@code
|
|
* // ... additionally fetching customer, customer shipping address,
|
|
* // order details, and the product associated with each order detail.
|
|
* // note: only product id and name is fetch (its a "partial object").
|
|
* // note: all other objects use "*" and have all their properties fetched.
|
|
*
|
|
* Query<Order> query = database.find(Order.class)
|
|
* .setId(1)
|
|
* .fetch("customer")
|
|
* .fetch("customer.shippingAddress")
|
|
* .fetch("details")
|
|
* .query();
|
|
*
|
|
* // fetch associated products but only fetch their product id and name
|
|
* query.fetch("details.product", "name");
|
|
*
|
|
*
|
|
* Order order = query.findOne();
|
|
*
|
|
* // traverse the object graph...
|
|
*
|
|
* Customer customer = order.getCustomer();
|
|
* Address shippingAddress = customer.getShippingAddress();
|
|
* List<OrderDetail> details = order.getDetails();
|
|
* OrderDetail detail0 = details.get(0);
|
|
* Product product = detail0.getProduct();
|
|
* String productName = product.getName();
|
|
*
|
|
* }</pre>
|
|
*
|
|
* @param beanType the type of entity bean to fetch
|
|
* @param id the id value
|
|
*/
|
|
@Nullable
|
|
<T> T find(Class<T> beanType, Object id);
|
|
|
|
/**
|
|
* Get a reference object.
|
|
* <p>
|
|
* This will not perform a query against the database unless some property other
|
|
* that the id property is accessed.
|
|
* <p>
|
|
* It is most commonly used to set a 'foreign key' on another bean like:
|
|
*
|
|
* <pre>{@code
|
|
*
|
|
* Product product = database.getReference(Product.class, 1);
|
|
*
|
|
* OrderDetail orderDetail = new OrderDetail();
|
|
* // set the product 'foreign key'
|
|
* orderDetail.setProduct(product);
|
|
* orderDetail.setQuantity(42);
|
|
* ...
|
|
*
|
|
* database.save(orderDetail);
|
|
*
|
|
*
|
|
* }</pre>
|
|
* <p>
|
|
* <h3>Lazy loading characteristics</h3>
|
|
* <pre>{@code
|
|
*
|
|
* Product product = database.getReference(Product.class, 1);
|
|
*
|
|
* // You can get the id without causing a fetch/lazy load
|
|
* Long productId = product.getId();
|
|
*
|
|
* // If you try to get any other property a fetch/lazy loading will occur
|
|
* // This will cause a query to execute...
|
|
* String name = product.getName();
|
|
*
|
|
* }</pre>
|
|
*
|
|
* @param beanType the type of entity bean
|
|
* @param id the id value
|
|
*/
|
|
<T> T reference(Class<T> beanType, Object id);
|
|
|
|
/**
|
|
* Return the extended API for Database.
|
|
* <p>
|
|
* The extended API has the options for executing queries that take an explicit
|
|
* transaction as an argument.
|
|
* <p>
|
|
* Typically, we only need to use the extended API when we do NOT want to use the
|
|
* usual ThreadLocal based mechanism to obtain the current transaction but instead
|
|
* supply the transaction explicitly.
|
|
*/
|
|
ExtendedServer extended();
|
|
|
|
/**
|
|
* Either Insert or Update the bean depending on its state.
|
|
* <p>
|
|
* If there is no current transaction one will be created and committed for
|
|
* you automatically.
|
|
* <p>
|
|
* Save can cascade along relationships. For this to happen you need to
|
|
* specify a cascade of CascadeType.ALL or CascadeType.PERSIST on the
|
|
* OneToMany, OneToOne or ManyToMany annotation.
|
|
* <p>
|
|
* In this example below the details property has a CascadeType.ALL set so
|
|
* saving an order will also save all its details.
|
|
*
|
|
* <pre>{@code
|
|
* public class Order { ...
|
|
*
|
|
* @OneToMany(cascade=CascadeType.ALL, mappedBy="order")
|
|
* List<OrderDetail> details;
|
|
* ...
|
|
* }
|
|
* }</pre>
|
|
* <p>
|
|
* When a save cascades via a OneToMany or ManyToMany Ebean will automatically
|
|
* set the 'parent' object to the 'detail' object. In the example below in
|
|
* saving the order and cascade saving the order details the 'parent' order
|
|
* will be set against each order detail when it is saved.
|
|
*/
|
|
void save(Object bean) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Save all the beans in the collection.
|
|
*/
|
|
int saveAll(Collection<?> beans) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Save all the beans.
|
|
*/
|
|
int saveAll(Object... beans) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete the bean.
|
|
* <p>
|
|
* This will return true if the bean was deleted successfully or JDBC batch is being used.
|
|
* <p>
|
|
* If there is no current transaction one will be created and committed for
|
|
* you automatically.
|
|
* <p>
|
|
* If the Bean does not have a version property (or loaded version property) and
|
|
* the bean does not exist then this returns false indicating that nothing was
|
|
* deleted. Note that, if JDBC batch mode is used then this always returns true.
|
|
*/
|
|
boolean delete(Object bean) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete the bean with an explicit transaction.
|
|
* <p>
|
|
* This will return true if the bean was deleted successfully or JDBC batch is being used.
|
|
* <p>
|
|
* If the Bean does not have a version property (or loaded version property) and
|
|
* the bean does not exist then this returns false indicating that nothing was
|
|
* deleted. However, if JDBC batch mode is used then this always returns true.
|
|
*/
|
|
boolean delete(Object bean, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete a bean permanently without soft delete.
|
|
*/
|
|
boolean deletePermanent(Object bean) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete a bean permanently without soft delete using an explicit transaction.
|
|
*/
|
|
boolean deletePermanent(Object bean, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete all the beans in the collection permanently without soft delete.
|
|
*/
|
|
int deleteAllPermanent(Collection<?> beans) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete all the beans in the collection permanently without soft delete using an explicit transaction.
|
|
*/
|
|
int deleteAllPermanent(Collection<?> beans, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete the bean given its type and id.
|
|
*/
|
|
int delete(Class<?> beanType, Object id);
|
|
|
|
/**
|
|
* Delete the bean given its type and id with an explicit transaction.
|
|
*/
|
|
int delete(Class<?> beanType, Object id, Transaction transaction);
|
|
|
|
/**
|
|
* Delete permanent given the bean type and id.
|
|
*/
|
|
int deletePermanent(Class<?> beanType, Object id);
|
|
|
|
/**
|
|
* Delete permanent given the bean type and id with an explicit transaction.
|
|
*/
|
|
int deletePermanent(Class<?> beanType, Object id, Transaction transaction);
|
|
|
|
/**
|
|
* Delete all the beans in the collection.
|
|
*/
|
|
int deleteAll(Collection<?> beans) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete all the beans in the collection using an explicit transaction.
|
|
*/
|
|
int deleteAll(Collection<?> beans, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Delete several beans given their type and id values.
|
|
*/
|
|
int deleteAll(Class<?> beanType, Collection<?> ids);
|
|
|
|
/**
|
|
* Delete several beans given their type and id values with an explicit transaction.
|
|
*/
|
|
int deleteAll(Class<?> beanType, Collection<?> ids, Transaction transaction);
|
|
|
|
/**
|
|
* Delete permanent for several beans given their type and id values.
|
|
*/
|
|
int deleteAllPermanent(Class<?> beanType, Collection<?> ids);
|
|
|
|
/**
|
|
* Delete permanent for several beans given their type and id values with an explicit transaction.
|
|
*/
|
|
int deleteAllPermanent(Class<?> beanType, Collection<?> ids, Transaction transaction);
|
|
|
|
/**
|
|
* Execute a Sql Update Delete or Insert statement. This returns the number of
|
|
* rows that where updated, deleted or inserted. If is executed in batch then
|
|
* this returns -1. You can get the actual rowCount after commit() from
|
|
* updateSql.getRowCount().
|
|
* <p>
|
|
* If you wish to execute a Sql Select natively then you should use the
|
|
* SqlQuery object or DtoQuery.
|
|
* <p>
|
|
* Note that the table modification information is automatically deduced and
|
|
* you do not need to call the DB.externalModification() method when you
|
|
* use this method.
|
|
* <p>
|
|
* Example:
|
|
*
|
|
* <pre>{@code
|
|
*
|
|
* // example that uses 'named' parameters
|
|
* String s = "UPDATE f_topic set post_count = :count where id = :id"
|
|
*
|
|
* SqlUpdate update = database.createSqlUpdate(s);
|
|
*
|
|
* update.setParameter("id", 1);
|
|
* update.setParameter("count", 50);
|
|
*
|
|
* int modifiedCount = database.execute(update);
|
|
*
|
|
* String msg = "There where " + modifiedCount + "rows updated";
|
|
*
|
|
* }</pre>
|
|
*
|
|
* @param sqlUpdate the update sql potentially with bind values
|
|
* @return the number of rows updated or deleted. -1 if executed in batch.
|
|
* @see CallableSql
|
|
*/
|
|
int execute(SqlUpdate sqlUpdate);
|
|
|
|
/**
|
|
* Execute a ORM insert update or delete statement using the current
|
|
* transaction.
|
|
* <p>
|
|
* This returns the number of rows that where inserted, updated or deleted.
|
|
*/
|
|
int execute(Update<?> update);
|
|
|
|
/**
|
|
* Execute a ORM insert update or delete statement with an explicit
|
|
* transaction.
|
|
*/
|
|
int execute(Update<?> update, Transaction transaction);
|
|
|
|
/**
|
|
* For making calls to stored procedures.
|
|
* <p>
|
|
* Example:
|
|
*
|
|
* <pre>{@code
|
|
*
|
|
* String sql = "{call sp_order_modify(?,?,?)}";
|
|
*
|
|
* CallableSql cs = database.createCallableSql(sql);
|
|
* cs.setParameter(1, 27);
|
|
* cs.setParameter(2, "SHIPPED");
|
|
* cs.registerOut(3, Types.INTEGER);
|
|
* cs.execute();
|
|
*
|
|
* // read the out parameter
|
|
* Integer returnValue = (Integer) cs.getObject(3);
|
|
*
|
|
* }</pre>
|
|
*/
|
|
int execute(CallableSql callableSql);
|
|
|
|
/**
|
|
* Inform Ebean that tables have been modified externally. These could be the
|
|
* result of from calling a stored procedure, other JDBC calls or external
|
|
* programs including other frameworks.
|
|
* <p>
|
|
* If you use database.execute(UpdateSql) then the table modification information
|
|
* is automatically deduced and you do not need to call this method yourself.
|
|
* <p>
|
|
* This information is used to invalidate objects out of the cache and
|
|
* potentially text indexes. This information is also automatically broadcast
|
|
* across the cluster.
|
|
* <p>
|
|
* If there is a transaction then this information is placed into the current
|
|
* transactions event information. When the transaction is committed this
|
|
* information is registered (with the transaction manager). If this
|
|
* transaction is rolled back then none of the transaction event information
|
|
* registers including the information you put in via this method.
|
|
* <p>
|
|
* If there is NO current transaction when you call this method then this
|
|
* information is registered immediately (with the transaction manager).
|
|
*
|
|
* @param tableName the name of the table that was modified
|
|
* @param inserted true if rows where inserted into the table
|
|
* @param updated true if rows on the table where updated
|
|
* @param deleted true if rows on the table where deleted
|
|
*/
|
|
void externalModification(String tableName, boolean inserted, boolean updated, boolean deleted);
|
|
|
|
/**
|
|
* Find a entity bean with an explicit transaction.
|
|
*
|
|
* @param <T> the type of entity bean to find
|
|
* @param beanType the type of entity bean to find
|
|
* @param id the bean id value
|
|
* @param transaction the transaction to use (can be null)
|
|
*/
|
|
@Nullable
|
|
<T> T find(Class<T> beanType, Object id, Transaction transaction);
|
|
|
|
/**
|
|
* Insert or update a bean with an explicit transaction.
|
|
*/
|
|
void save(Object bean, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Save all the beans in the collection with an explicit transaction.
|
|
*/
|
|
int saveAll(Collection<?> beans, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* This method checks the uniqueness of a bean. I.e. if the save will work. It will return the
|
|
* properties that violates an unique / primary key. This may be done in an UI save action to
|
|
* validate if the user has entered correct values.
|
|
* <p>
|
|
* Note: This method queries the DB for uniqueness of all indices, so do not use it in a batch update.
|
|
* <p>
|
|
* Note: This checks only the root bean!
|
|
* <p>
|
|
* <pre>{@code
|
|
* // there is a unique constraint on title
|
|
*
|
|
* Document doc = new Document();
|
|
* doc.setTitle("One flew over the cuckoo's nest");
|
|
* doc.setBody("clashes with doc1");
|
|
*
|
|
* Set<Property> properties = DB.checkUniqueness(doc);
|
|
*
|
|
* if (properties.isEmpty()) {
|
|
* // it is unique ... carry on
|
|
*
|
|
* } else {
|
|
* // build a user friendly message
|
|
* // to return message back to user
|
|
*
|
|
* String uniqueProperties = properties.toString();
|
|
*
|
|
* StringBuilder msg = new StringBuilder();
|
|
*
|
|
* properties.forEach((it)-> {
|
|
* Object propertyValue = it.getVal(doc);
|
|
* String propertyName = it.getName();
|
|
* msg.append(" property["+propertyName+"] value["+propertyValue+"]");
|
|
* });
|
|
*
|
|
* // uniqueProperties > [title]
|
|
* // custom msg > property[title] value[One flew over the cuckoo's nest]
|
|
*
|
|
* }
|
|
*
|
|
* }</pre>
|
|
*
|
|
* @param bean The entity bean to check uniqueness on
|
|
* @return a set of Properties if constraint validation was detected or empty list.
|
|
*/
|
|
Set<Property> checkUniqueness(Object bean);
|
|
|
|
/**
|
|
* Same as {@link #checkUniqueness(Object)}. but with given transaction.
|
|
*/
|
|
Set<Property> checkUniqueness(Object bean, Transaction transaction);
|
|
|
|
/**
|
|
* Marks the entity bean as dirty.
|
|
* <p>
|
|
* This is used so that when a bean that is otherwise unmodified is updated the version
|
|
* property is updated.
|
|
* <p>
|
|
* An unmodified bean that is saved or updated is normally skipped and this marks the bean as
|
|
* dirty so that it is not skipped.
|
|
* <p>
|
|
* <pre>{@code
|
|
* Customer customer = database.find(Customer, id);
|
|
*
|
|
* // mark the bean as dirty so that a save() or update() will
|
|
* // increment the version property
|
|
* database.markAsDirty(customer);
|
|
* database.save(customer);
|
|
*
|
|
* }</pre>
|
|
*/
|
|
void markAsDirty(Object bean);
|
|
|
|
/**
|
|
* Saves the bean using an update. If you know you are updating a bean then it is preferable to
|
|
* use this update() method rather than save().
|
|
* <p>
|
|
* <b>Stateless updates:</b> Note that the bean does not have to be previously fetched to call
|
|
* update().You can create a new instance and set some of its properties programmatically for via
|
|
* JSON/XML marshalling etc. This is described as a 'stateless update'.
|
|
* <p>
|
|
* <b>Optimistic Locking: </b> Note that if the version property is not set when update() is
|
|
* called then no optimistic locking is performed (internally ConcurrencyMode.NONE is used).
|
|
*
|
|
* <pre>{@code
|
|
*
|
|
* // A 'stateless update' example
|
|
* Customer customer = new Customer();
|
|
* customer.setId(7);
|
|
* customer.setName("ModifiedNameNoOCC");
|
|
* database.update(customer);
|
|
*
|
|
* }</pre>
|
|
*/
|
|
void update(Object bean) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Update a bean additionally specifying a transaction.
|
|
*/
|
|
void update(Object bean, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Update a collection of beans. If there is no current transaction one is created and used to
|
|
* update all the beans in the collection.
|
|
*/
|
|
void updateAll(Collection<?> beans) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Update a collection of beans with an explicit transaction.
|
|
*/
|
|
void updateAll(Collection<?> beans, Transaction transaction) throws OptimisticLockException;
|
|
|
|
/**
|
|
* Merge the bean using the default merge options (no paths specified, default delete).
|
|
*
|
|
* @param bean The bean to merge
|
|
*/
|
|
void merge(Object bean);
|
|
|
|
/**
|
|
* Merge the bean using the given merge options.
|
|
*
|
|
* @param bean The bean to merge
|
|
* @param options The options to control the merge
|
|
*/
|
|
void merge(Object bean, MergeOptions options);
|
|
|
|
/**
|
|
* Merge the bean using the given merge options and a transaction.
|
|
*
|
|
* @param bean The bean to merge
|
|
* @param options The options to control the merge
|
|
*/
|
|
void merge(Object bean, MergeOptions options, Transaction transaction);
|
|
|
|
/**
|
|
* Insert the bean.
|
|
* <p>
|
|
* Compared to save() this forces bean to perform an insert rather than trying to decide
|
|
* based on the bean state. As such this is useful when you fetch beans from one database
|
|
* and want to insert them into another database (and you want to explicitly insert them).
|
|
*/
|
|
void insert(Object bean);
|
|
|
|
/**
|
|
* Insert the bean with options (ON CONFLICT DO UPDATE | DO NOTHING).
|
|
* <p>
|
|
* Currently, this is limited to use with Postgres only,
|
|
* <p>
|
|
* When using this ebean will look to determine the unique columns by looking at
|
|
* the mapping like {@code @Column(unique=true} and {@code @Index(unique=true}.
|
|
*/
|
|
void insert(Object bean, InsertOptions insertOptions);
|
|
|
|
/**
|
|
* Insert the bean with a transaction.
|
|
*/
|
|
void insert(Object bean, Transaction transaction);
|
|
|
|
/**
|
|
* Insert the beans with options (ON CONFLICT DO UPDATE | DO NOTHING) and transaction.
|
|
* <p>
|
|
* Currently, this is limited to use with Postgres only,
|
|
*/
|
|
void insert(Object bean, InsertOptions insertOptions, Transaction transaction);
|
|
|
|
/**
|
|
* Insert a collection of beans. If there is no current transaction one is created and used to
|
|
* insert all the beans in the collection.
|
|
*/
|
|
void insertAll(Collection<?> beans);
|
|
|
|
/**
|
|
* Insert the beans with options - typically ON CONFLICT DO UPDATE | DO NOTHING.
|
|
* <p>
|
|
* Currently, this is limited to use with Postgres only,
|
|
*/
|
|
void insertAll(Collection<?> beans, InsertOptions options);
|
|
|
|
/**
|
|
* Insert a collection of beans with an explicit transaction.
|
|
*/
|
|
void insertAll(Collection<?> beans, Transaction transaction);
|
|
|
|
/**
|
|
* Insert the beans with options (ON CONFLICT DO UPDATE | DO NOTHING) and transaction.
|
|
* <p>
|
|
* Currently, this is limited to use with Postgres only,
|
|
*/
|
|
void insertAll(Collection<?> beans, InsertOptions options, Transaction transaction);
|
|
|
|
/**
|
|
* Execute explicitly passing a transaction.
|
|
*/
|
|
int execute(SqlUpdate updSql, Transaction transaction);
|
|
|
|
/**
|
|
* Execute explicitly passing a transaction.
|
|
*/
|
|
int execute(CallableSql callableSql, Transaction transaction);
|
|
|
|
/**
|
|
* Execute a Runnable in a Transaction with an explicit scope.
|
|
* <p>
|
|
* The scope can control the transaction type, isolation and rollback semantics.
|
|
*
|
|
* <pre>{@code
|
|
* // set specific transactional scope settings
|
|
* TxScope scope = TxScope.requiresNew().setIsolation(TxIsolation.SERIALIZABLE);
|
|
*
|
|
* database.execute(scope, new Runnable() {
|
|
* public void run() {
|
|
* User u1 = database.find(User.class, 1);
|
|
* ...
|
|
* }
|
|
* });
|
|
*
|
|
* }</pre>
|
|
*/
|
|
void execute(TxScope scope, Runnable runnable);
|
|
|
|
/**
|
|
* Execute a Runnable in a Transaction with the default scope.
|
|
* <p>
|
|
* The default scope runs with REQUIRED and by default will rollback on any
|
|
* exception (checked or runtime).
|
|
*
|
|
* <pre>{@code
|
|
* database.execute(() -> {
|
|
*
|
|
* User u1 = database.find(User.class, 1);
|
|
* User u2 = database.find(User.class, 2);
|
|
*
|
|
* u1.setName("u1 mod");
|
|
* u2.setName("u2 mod");
|
|
*
|
|
* u1.save();
|
|
* u2.save();
|
|
* });
|
|
*
|
|
* }</pre>
|
|
*/
|
|
void execute(Runnable runnable);
|
|
|
|
/**
|
|
* Execute a TxCallable in a Transaction with an explicit scope.
|
|
* <p>
|
|
* The scope can control the transaction type, isolation and rollback
|
|
* semantics.
|
|
*
|
|
* <pre>{@code
|
|
* // set specific transactional scope settings
|
|
* TxScope scope = TxScope.requiresNew().setIsolation(TxIsolation.SERIALIZABLE);
|
|
*
|
|
* database.executeCall(scope, new Callable<String>() {
|
|
* public String call() {
|
|
* User u1 = database.find(User.class, 1);
|
|
* ...
|
|
* return u1.getEmail();
|
|
* }
|
|
* });
|
|
*
|
|
* }</pre>
|
|
*/
|
|
<T> T executeCall(TxScope scope, Callable<T> callable);
|
|
|
|
/**
|
|
* Execute a TxCallable in a Transaction with the default scope.
|
|
* <p>
|
|
* The default scope runs with REQUIRED and by default will rollback on any
|
|
* exception (checked or runtime).
|
|
*
|
|
* <pre>{@code
|
|
* database.executeCall(new Callable<String>() {
|
|
* public String call() {
|
|
* User u1 = database.find(User.class, 1);
|
|
* User u2 = database.find(User.class, 2);
|
|
*
|
|
* u1.setName("u1 mod");
|
|
* u2.setName("u2 mod");
|
|
*
|
|
* database.save(u1);
|
|
* database.save(u2);
|
|
*
|
|
* return u1.getEmail();
|
|
* }
|
|
* });
|
|
* }</pre>
|
|
*/
|
|
<T> T executeCall(Callable<T> callable);
|
|
|
|
/**
|
|
* Return the manager of the server cache ("L2" cache).
|
|
*/
|
|
ServerCacheManager cacheManager();
|
|
|
|
/**
|
|
* Return the BackgroundExecutor service for asynchronous processing of queries.
|
|
*/
|
|
BackgroundExecutor backgroundExecutor();
|
|
|
|
/**
|
|
* Return the JsonContext for reading/writing JSON.
|
|
* <p>
|
|
* This instance is safe to be used concurrently by multiple threads and this
|
|
* method is cheap to call.
|
|
*
|
|
* <h3>Simple example:</h3>
|
|
* <pre>{@code
|
|
* JsonContext json = database.json();
|
|
* String jsonOutput = json.toJson(list);
|
|
* System.out.println(jsonOutput);
|
|
* }</pre>
|
|
*
|
|
* <p>
|
|
* <h3>Using PathProperties:</h3>
|
|
* <pre>{@code
|
|
* // specify just the properties we want
|
|
* PathProperties paths = PathProperties.parse("name, status, anniversary");
|
|
*
|
|
* List<Customer> customers =
|
|
* database.find(Customer.class)
|
|
* // apply those paths to the query (only fetch what we need)
|
|
* .apply(paths)
|
|
* .where().ilike("name", "rob%")
|
|
* .findList();
|
|
*
|
|
* // ... get the json
|
|
* JsonContext jsonContext = database.json();
|
|
* String json = jsonContext.toJson(customers, paths);
|
|
*
|
|
* }</pre>
|
|
*
|
|
* @see FetchPath
|
|
* @see Query#apply(FetchPath)
|
|
*/
|
|
JsonContext json();
|
|
|
|
/**
|
|
* Return a ScriptRunner for running SQL or DDL scripts.
|
|
* <p/>
|
|
* Intended to use mostly in testing to run seed SQL scripts or truncate table scripts etc.
|
|
*/
|
|
ScriptRunner script();
|
|
|
|
/**
|
|
* Return the Document store.
|
|
*/
|
|
DocumentStore docStore();
|
|
|
|
/**
|
|
* Publish a single bean given its type and id returning the resulting live bean.
|
|
* <p>
|
|
* The values are published from the draft to the live bean.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param beanType the type of the entity bean
|
|
* @param id the id of the entity bean
|
|
* @param transaction the transaction the publish process should use (can be null)
|
|
*/
|
|
@Nullable
|
|
<T> T publish(Class<T> beanType, Object id, Transaction transaction);
|
|
|
|
/**
|
|
* Publish a single bean given its type and id returning the resulting live bean.
|
|
* This will use the current transaction or create one if required.
|
|
* <p>
|
|
* The values are published from the draft to the live bean.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param beanType the type of the entity bean
|
|
* @param id the id of the entity bean
|
|
*/
|
|
@Nullable
|
|
<T> T publish(Class<T> beanType, Object id);
|
|
|
|
/**
|
|
* Publish the beans that match the query returning the resulting published beans.
|
|
* <p>
|
|
* The values are published from the draft beans to the live beans.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param query the query used to select the draft beans to publish
|
|
* @param transaction the transaction the publish process should use (can be null)
|
|
*/
|
|
<T> List<T> publish(Query<T> query, Transaction transaction);
|
|
|
|
/**
|
|
* Publish the beans that match the query returning the resulting published beans.
|
|
* This will use the current transaction or create one if required.
|
|
* <p>
|
|
* The values are published from the draft beans to the live beans.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param query the query used to select the draft beans to publish
|
|
*/
|
|
<T> List<T> publish(Query<T> query);
|
|
|
|
/**
|
|
* Restore the draft bean back to the live state.
|
|
* <p>
|
|
* The values from the live beans are set back to the draft bean and the
|
|
* <code>@DraftDirty</code> and <code>@DraftReset</code> properties are reset.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param beanType the type of the entity bean
|
|
* @param id the id of the entity bean to restore
|
|
* @param transaction the transaction the restore process should use (can be null)
|
|
*/
|
|
@Nullable
|
|
<T> T draftRestore(Class<T> beanType, Object id, Transaction transaction);
|
|
|
|
/**
|
|
* Restore the draft bean back to the live state.
|
|
* <p>
|
|
* The values from the live beans are set back to the draft bean and the
|
|
* <code>@DraftDirty</code> and <code>@DraftReset</code> properties are reset.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param beanType the type of the entity bean
|
|
* @param id the id of the entity bean to restore
|
|
*/
|
|
@Nullable
|
|
<T> T draftRestore(Class<T> beanType, Object id);
|
|
|
|
/**
|
|
* Restore the draft beans matching the query back to the live state.
|
|
* <p>
|
|
* The values from the live beans are set back to the draft bean and the
|
|
* <code>@DraftDirty</code> and <code>@DraftReset</code> properties are reset.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param query the query used to select the draft beans to restore
|
|
* @param transaction the transaction the restore process should use (can be null)
|
|
*/
|
|
<T> List<T> draftRestore(Query<T> query, Transaction transaction);
|
|
|
|
/**
|
|
* Restore the draft beans matching the query back to the live state.
|
|
* <p>
|
|
* The values from the live beans are set back to the draft bean and the
|
|
* <code>@DraftDirty</code> and <code>@DraftReset</code> properties are reset.
|
|
*
|
|
* @param <T> the type of the entity bean
|
|
* @param query the query used to select the draft beans to restore
|
|
*/
|
|
<T> List<T> draftRestore(Query<T> query);
|
|
|
|
/**
|
|
* Returns the set of properties/paths that are unknown (do not map to known properties or paths).
|
|
* <p>
|
|
* Validate the query checking the where and orderBy expression paths to confirm if
|
|
* they represent valid properties/path for the given bean type.
|
|
*/
|
|
<T> Set<String> validateQuery(Query<T> query);
|
|
|
|
/**
|
|
* Load and lock the bean using {@code select for update}.
|
|
* <p>
|
|
* This should be executed inside a transaction and results in the bean being loaded or
|
|
* refreshed from the database and a database row lock held via {@code select for update}.
|
|
* <p>
|
|
* The bean needs to have an ID property set and can be a reference bean (only has ID)
|
|
* or partially or fully populated bean. This will load all the properties of the bean
|
|
* from the database using {@code select for update} obtaining a database row lock (using WAIT).
|
|
*
|
|
* @param bean The entity bean that we wish to obtain a database lock on.
|
|
*/
|
|
void lock(Object bean);
|
|
|
|
/**
|
|
* Truncate all the given tables.
|
|
*/
|
|
void truncate(String... tables);
|
|
|
|
/**
|
|
* Truncate the base tables for the given bean types.
|
|
*/
|
|
void truncate(Class<?>... beanTypes);
|
|
|
|
}
|