1 <?php 2 3 // This file is part of Moodle - http://moodle.org/ 4 // 5 // Moodle is free software: you can redistribute it and/or modify 6 // it under the terms of the GNU General Public License as published by 7 // the Free Software Foundation, either version 3 of the License, or 8 // (at your option) any later version. 9 // 10 // Moodle is distributed in the hope that it will be useful, 11 // but WITHOUT ANY WARRANTY; without even the implied warranty of 12 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 13 // GNU General Public License for more details. 14 // 15 // You should have received a copy of the GNU General Public License 16 // along with Moodle. If not, see <http://www.gnu.org/licenses/>. 17 18 /** 19 * @package moodlecore 20 * @subpackage backup-structure 21 * @copyright 2010 onwards Eloy Lafuente (stronk7) {@link http://stronk7.com} 22 * @license http://www.gnu.org/copyleft/gpl.html GNU GPL v3 or later 23 * 24 * TODO: Finish phpdocs 25 */ 26 27 /** 28 * Instantiable class representing one optigroup element for conditional branching 29 * 30 * Objects of this class are internally nested elements, so they support having both 31 * final elements and children (more nested elements) and are able to have one source 32 * and all the stuff supported by nested elements. Their main differences are: 33 * 34 * - Support for conditional execution, using simple equality checks with outer values. 35 * - Don't have representation in the hierarchy, so: 36 * - Their level is the level of the parent of their enclosing optigroup. 37 * - Act as one "path bridge" when looking for parent path values 38 * - They don't support attributes 39 * 40 * Their main use is to allow conditional branching, basically for optional submodules 41 * like question types, assignment subtypes... where different subtrees of information 42 * must be exported. It's correct to assume that each submodule will define its own 43 * optigroup_element for backup purposes. 44 */ 45 class backup_optigroup extends base_optigroup implements processable { 46 47 public function add_child($element) { 48 if (!($element instanceof backup_optigroup_element)) { // parameter must be backup_optigroup_element 49 if (is_object($element)) { 50 $found = get_class($element); 51 } else { 52 $found = 'non object'; 53 } 54 throw new base_optigroup_exception('optigroup_element_incorrect', $found); 55 } 56 parent::add_child($element); 57 } 58 59 public function process($processor) { 60 if (!$processor instanceof base_processor) { // No correct processor, throw exception 61 throw new base_element_struct_exception('incorrect_processor'); 62 } 63 // Iterate over all the children backup_optigroup_elements, delegating the process 64 // an knowing it only handles final elements, so we'll delegate process of nested 65 // elements below. Tricky but we need to priorize finals BEFORE nested always. 66 foreach ($this->get_children() as $child) { 67 if ($child->condition_matches()) { // Only if the optigroup_element condition matches 68 $child->process($processor); 69 if (!$this->is_multiple()) { 70 break; // one match found and this optigroup is not multiple => break loop 71 } 72 } 73 } 74 // Now iterate again, but looking for nested elements what will go AFTER all the finals 75 // that have been processed above 76 foreach ($this->get_children() as $child) { 77 if ($child->condition_matches()) { // Only if the optigroup_element condition matches 78 foreach ($child->get_children() as $nested_element) { 79 $nested_element->process($processor); 80 } 81 if (!$this->is_multiple()) { 82 break; // one match found and this optigroup is not multiple => break loop 83 } 84 } 85 } 86 } 87 }
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