mirror of
https://github.com/silverstripe/silverstripe-framework
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6ccd6d61bd
git-svn-id: svn://svn.silverstripe.com/silverstripe/open/modules/sapphire/trunk@114077 467b73ca-7a2a-4603-9d3b-597d59a354a9
170 lines
5.7 KiB
PHP
170 lines
5.7 KiB
PHP
<?php
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/**
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* Calculate an Aggregate on a particular field of a particular DataObject type (possibly with
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* an additional filter before the aggregate)
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*
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* Implemented as a class to provide a semi-DSL method of calculating Aggregates. DataObject has a function
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* that will create & return an instance of this class with the DataObject type and filter set,
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* but at that point we don't yet know the aggregate function or field
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*
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* This class captures any XML_val or unknown call, and uses that to get the field & aggregate function &
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* then return the result
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*
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* Two ways of calling
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*
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* $aggregate->XML_val(aggregate_function, array(field)) - For templates
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* $aggregate->aggregate_function(field) - For PHP
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*
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* Aggregate functions are uppercased by this class, but are otherwise assumed to be valid SQL functions. Some
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* examples: Min, Max, Avg
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*
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* Aggregates are often used as portions of a cacheblock key. They are therefore cached themselves, in the 'aggregate'
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* cache, although the invalidation logic prefers speed over keeping valid data.
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* The aggregate cache is cleared through {@link DataObject::flushCache()}, which in turn is called on
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* {@link DataObject->write()} and other write operations.
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* This means most write operations to the database will invalidate the cache correctly.
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* Use {@link Aggregate::flushCache()} to manually clear.
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*
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* NOTE: The cache logic uses tags, and so a backend that supports tags is required. Currently only the File
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* backend (and the two-level backend with the File backend as the slow store) meets this requirement
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*
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* @author hfried
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* @package sapphire
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* @subpackage core
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*/
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class Aggregate extends ViewableData {
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static $cache = null;
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/** Build & cache the cache object */
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protected static function cache() {
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return self::$cache ? self::$cache : (self::$cache = SS_Cache::factory('aggregate'));
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}
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/** Clear the aggregate cache for a given type, or pass nothing to clear all aggregate caches */
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public static function flushCache($class=null) {
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$cache = self::cache();
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if (!$class || $class == 'DataObject') {
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$cache->clean(Zend_Cache::CLEANING_MODE_MATCHING_TAG, array('aggregate'));
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}
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else {
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$cache->clean(Zend_Cache::CLEANING_MODE_MATCHING_ANY_TAG, ClassInfo::ancestry($class));
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}
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}
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/**
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* Constructor
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*
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* @param string $type The DataObject type we are building an aggregate for
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* @param string $filter (optional) An SQL filter to apply to the selected rows before calculating the aggregate
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*/
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public function __construct($type, $filter = '') {
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$this->type = $type;
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$this->filter = $filter;
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parent::__construct();
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}
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/**
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* Build the SQLQuery to calculate the aggregate
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* This is a seperate function so that subtypes of Aggregate can change just this bit
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* @param string $attr - the SQL field statement for selection (i.e. "MAX(LastUpdated)")
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* @return SQLQuery
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*/
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protected function query($attr) {
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$singleton = singleton($this->type);
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$query = $singleton->buildSQL($this->filter);
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$query->select = array($attr);
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$query->orderby = null;
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$singleton->extend('augmentSQL', $query);
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return $query;
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}
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/**
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* Entry point for being called from a template.
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*
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* This gets the aggregate function
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*
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*/
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public function XML_val($name, $args) {
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$func = strtoupper( strpos($name, 'get') === 0 ? substr($name, 3) : $name );
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$attribute = $args ? $args[0] : 'ID';
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$table = null;
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foreach (ClassInfo::ancestry($this->type, true) as $class) {
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$fields = DataObject::database_fields($class);
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if (array_key_exists($attribute, $fields)) { $table = $class; break; }
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}
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if (!$table) user_error("Couldn't find table for field $attribute in type {$this->type}", E_USER_ERROR);
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$query = $this->query("$func(\"$table\".\"$attribute\")");
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// Cache results of this specific SQL query until flushCache() is triggered.
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$cachekey = sha1($query->sql());
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$cache = self::cache();
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if (!($result = $cache->load($cachekey))) {
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$result = (string)$query->execute()->value(); if (!$result) $result = '0';
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$cache->save($result, null, array('aggregate', $this->type));
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}
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return $result;
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}
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/**
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* Entry point for being called from PHP.
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*/
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public function __call($method, $arguments) {
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return $this->XML_val($method, $arguments);
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}
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}
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/**
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* A subclass of Aggregate that calculates aggregates for the result of a has_many query.
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*
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* @author hfried
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* @package sapphire
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* @subpackage core
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*/
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class Aggregate_Relationship extends Aggregate {
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/**
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* Constructor
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*
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* @param DataObject $object The object that has_many somethings that we're calculating the aggregate for
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* @param string $relationship The name of the relationship
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* @param string $filter (optional) An SQL filter to apply to the relationship rows before calculating the aggregate
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*/
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public function __construct($object, $relationship, $filter = '') {
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$this->object = $object;
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$this->relationship = $relationship;
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$this->has_many = $object->has_many($relationship);
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$this->many_many = $object->many_many($relationship);
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if (!$this->has_many && !$this->many_many) user_error("Could not find relationship $relationship on object class {$object->class} in Aggregate Relationship", E_USER_ERROR);
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parent::__construct($this->has_many ? $this->has_many : $this->many_many[1], $filter);
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}
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protected function query($attr) {
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if ($this->has_many) {
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$query = $this->object->getComponentsQuery($this->relationship, $this->filter);
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}
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else {
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$query = $this->object->getManyManyComponentsQuery($this->relationship, $this->filter);
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}
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$query->select = array($attr);
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$query->groupby = array();
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$singleton = singleton($this->type);
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$singleton->extend('augmentSQL', $query);
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return $query;
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}
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}
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