associations.rb 109.8 KB
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require 'active_record/associations/association_proxy'
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require 'active_record/associations/association_collection'
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require 'active_record/associations/belongs_to_association'
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require 'active_record/associations/belongs_to_polymorphic_association'
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require 'active_record/associations/has_one_association'
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require 'active_record/associations/has_many_association'
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require 'active_record/associations/has_many_through_association'
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require 'active_record/associations/has_and_belongs_to_many_association'
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require 'active_record/associations/has_one_through_association'
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module ActiveRecord
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  class HasManyThroughAssociationNotFoundError < ActiveRecordError #:nodoc:
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    def initialize(owner_class_name, reflection)
      super("Could not find the association #{reflection.options[:through].inspect} in model #{owner_class_name}")
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    end
  end

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  class HasManyThroughAssociationPolymorphicError < ActiveRecordError #:nodoc:
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    def initialize(owner_class_name, reflection, source_reflection)
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      super("Cannot have a has_many :through association '#{owner_class_name}##{reflection.name}' on the polymorphic object '#{source_reflection.class_name}##{source_reflection.name}'.")
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    end
  end
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  class HasManyThroughAssociationPointlessSourceTypeError < ActiveRecordError #:nodoc:
    def initialize(owner_class_name, reflection, source_reflection)
      super("Cannot have a has_many :through association '#{owner_class_name}##{reflection.name}' with a :source_type option if the '#{reflection.through_reflection.class_name}##{source_reflection.name}' is not polymorphic.  Try removing :source_type on your association.")
    end
  end
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  class HasManyThroughSourceAssociationNotFoundError < ActiveRecordError #:nodoc:
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    def initialize(reflection)
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      through_reflection      = reflection.through_reflection
      source_reflection_names = reflection.source_reflection_names
      source_associations     = reflection.through_reflection.klass.reflect_on_all_associations.collect { |a| a.name.inspect }
      super("Could not find the source association(s) #{source_reflection_names.collect(&:inspect).to_sentence :connector => 'or'} in model #{through_reflection.klass}.  Try 'has_many #{reflection.name.inspect}, :through => #{through_reflection.name.inspect}, :source => <name>'.  Is it one of #{source_associations.to_sentence :connector => 'or'}?")
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    end
  end

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  class HasManyThroughSourceAssociationMacroError < ActiveRecordError #:nodoc:
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    def initialize(reflection)
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      through_reflection = reflection.through_reflection
      source_reflection  = reflection.source_reflection
      super("Invalid source reflection macro :#{source_reflection.macro}#{" :through" if source_reflection.options[:through]} for has_many #{reflection.name.inspect}, :through => #{through_reflection.name.inspect}.  Use :source to specify the source reflection.")
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    end
  end

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  class HasManyThroughCantAssociateThroughHasManyReflection < ActiveRecordError #:nodoc:
    def initialize(owner, reflection)
      super("Cannot modify association '#{owner.class.name}##{reflection.name}' because the source reflection class '#{reflection.source_reflection.class_name}' is associated to '#{reflection.through_reflection.class_name}' via :#{reflection.source_reflection.macro}.")
    end
  end
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  class HasManyThroughCantAssociateNewRecords < ActiveRecordError #:nodoc:
    def initialize(owner, reflection)
      super("Cannot associate new records through '#{owner.class.name}##{reflection.name}' on '#{reflection.source_reflection.class_name rescue nil}##{reflection.source_reflection.name rescue nil}'. Both records must have an id in order to create the has_many :through record associating them.")
    end
  end

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  class HasManyThroughCantDissociateNewRecords < ActiveRecordError #:nodoc:
    def initialize(owner, reflection)
      super("Cannot dissociate new records through '#{owner.class.name}##{reflection.name}' on '#{reflection.source_reflection.class_name rescue nil}##{reflection.source_reflection.name rescue nil}'. Both records must have an id in order to delete the has_many :through record associating them.")
    end
  end

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  class EagerLoadPolymorphicError < ActiveRecordError #:nodoc:
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    def initialize(reflection)
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      super("Can not eagerly load the polymorphic association #{reflection.name.inspect}")
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    end
  end

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  class ReadOnlyAssociation < ActiveRecordError #:nodoc:
    def initialize(reflection)
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      super("Can not add to a has_many :through association.  Try adding to #{reflection.through_reflection.name.inspect}.")
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    end
  end

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  # See ActiveRecord::Associations::ClassMethods for documentation.
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  module Associations # :nodoc:
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    def self.included(base)
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      base.extend(ClassMethods)
    end

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    # Clears out the association cache
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    def clear_association_cache #:nodoc:
      self.class.reflect_on_all_associations.to_a.each do |assoc|
        instance_variable_set "@#{assoc.name}", nil
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      end unless self.new_record?
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    end
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    # Associations are a set of macro-like class methods for tying objects together through foreign keys. They express relationships like
    # "Project has one Project Manager" or "Project belongs to a Portfolio". Each macro adds a number of methods to the class which are
    # specialized according to the collection or association symbol and the options hash. It works much the same way as Ruby's own <tt>attr*</tt>
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    # methods. Example:
    #
    #   class Project < ActiveRecord::Base
    #     belongs_to              :portfolio
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    #     has_one                 :project_manager
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    #     has_many                :milestones
    #     has_and_belongs_to_many :categories
    #   end
    #
    # The project class now has the following methods (and more) to ease the traversal and manipulation of its relationships:
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    # * <tt>Project#portfolio, Project#portfolio=(portfolio), Project#portfolio.nil?</tt>
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    # * <tt>Project#project_manager, Project#project_manager=(project_manager), Project#project_manager.nil?,</tt>
    # * <tt>Project#milestones.empty?, Project#milestones.size, Project#milestones, Project#milestones<<(milestone),</tt>
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    #   <tt>Project#milestones.delete(milestone), Project#milestones.find(milestone_id), Project#milestones.find(:all, options),</tt>
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    #   <tt>Project#milestones.build, Project#milestones.create</tt>
    # * <tt>Project#categories.empty?, Project#categories.size, Project#categories, Project#categories<<(category1),</tt>
    #   <tt>Project#categories.delete(category1)</tt>
    #
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    # === A word of warning
    #
    # Don't create associations that have the same name as instance methods of ActiveRecord::Base. Since the association
    # adds a method with that name to its model, it will override the inherited method and break things.
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    # For instance, +attributes+ and +connection+ would be bad choices for association names.
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    #
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    # == Auto-generated methods
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    #
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    # === Singular associations (one-to-one)
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    #                                     |            |  belongs_to  |
    #   generated methods                 | belongs_to | :polymorphic | has_one
    #   ----------------------------------+------------+--------------+---------
    #   #other                            |     X      |      X       |    X
    #   #other=(other)                    |     X      |      X       |    X
    #   #build_other(attributes={})       |     X      |              |    X
    #   #create_other(attributes={})      |     X      |              |    X
    #   #other.create!(attributes={})     |            |              |    X
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    #   #other.nil?                       |     X      |      X       |
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    #
    # ===Collection associations (one-to-many / many-to-many)
    #                                     |       |          | has_many
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    #   generated methods                 | habtm | has_many | :through
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    #   ----------------------------------+-------+----------+----------
    #   #others                           |   X   |    X     |    X
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    #   #others=(other,other,...)         |   X   |    X     |    X
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    #   #other_ids                        |   X   |    X     |    X
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    #   #other_ids=(id,id,...)            |   X   |    X     |    X
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    #   #others<<                         |   X   |    X     |    X
    #   #others.push                      |   X   |    X     |    X
    #   #others.concat                    |   X   |    X     |    X
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    #   #others.build(attributes={})      |   X   |    X     |    X
    #   #others.create(attributes={})     |   X   |    X     |    X
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    #   #others.create!(attributes={})    |   X   |    X     |    X
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    #   #others.size                      |   X   |    X     |    X
    #   #others.length                    |   X   |    X     |    X
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    #   #others.count                     |   X   |    X     |    X
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    #   #others.sum(args*,&block)         |   X   |    X     |    X
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    #   #others.empty?                    |   X   |    X     |    X
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    #   #others.clear                     |   X   |    X     |    X
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    #   #others.delete(other,other,...)   |   X   |    X     |    X
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    #   #others.delete_all                |   X   |    X     |
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    #   #others.destroy_all               |   X   |    X     |    X
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    #   #others.find(*args)               |   X   |    X     |    X
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    #   #others.find_first                |   X   |          |
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    #   #others.exist?                    |   X   |    X     |    X
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    #   #others.uniq                      |   X   |    X     |    X
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    #   #others.reset                     |   X   |    X     |    X
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    #
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    # == Cardinality and associations
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    #
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    # Active Record associations can be used to describe one-to-one, one-to-many and many-to-many
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    # relationships between models. Each model uses an association to describe its role in
    # the relation. The +belongs_to+ association is always used in the model that has
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    # the foreign key.
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    #
    # === One-to-one
    #
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    # Use +has_one+ in the base, and +belongs_to+ in the associated model.
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    #
    #   class Employee < ActiveRecord::Base
    #     has_one :office
    #   end
    #   class Office < ActiveRecord::Base
    #     belongs_to :employee    # foreign key - employee_id
    #   end
    #
    # === One-to-many
    #
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    # Use +has_many+ in the base, and +belongs_to+ in the associated model.
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    #
    #   class Manager < ActiveRecord::Base
    #     has_many :employees
    #   end
    #   class Employee < ActiveRecord::Base
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    #     belongs_to :manager     # foreign key - manager_id
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    #   end
    #
    # === Many-to-many
    #
    # There are two ways to build a many-to-many relationship.
    #
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    # The first way uses a +has_many+ association with the <tt>:through</tt> option and a join model, so
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    # there are two stages of associations.
    #
    #   class Assignment < ActiveRecord::Base
    #     belongs_to :programmer  # foreign key - programmer_id
    #     belongs_to :project     # foreign key - project_id
    #   end
    #   class Programmer < ActiveRecord::Base
    #     has_many :assignments
    #     has_many :projects, :through => :assignments
    #   end
    #   class Project < ActiveRecord::Base
    #     has_many :assignments
    #     has_many :programmers, :through => :assignments
    #   end
    #
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    # For the second way, use +has_and_belongs_to_many+ in both models. This requires a join table
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    # that has no corresponding model or primary key.
    #
    #   class Programmer < ActiveRecord::Base
    #     has_and_belongs_to_many :projects       # foreign keys in the join table
    #   end
    #   class Project < ActiveRecord::Base
    #     has_and_belongs_to_many :programmers    # foreign keys in the join table
    #   end
    #
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    # Choosing which way to build a many-to-many relationship is not always simple.
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    # If you need to work with the relationship model as its own entity,
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    # use <tt>has_many :through</tt>. Use +has_and_belongs_to_many+ when working with legacy schemas or when
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    # you never work directly with the relationship itself.
    #
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    # == Is it a +belongs_to+ or +has_one+ association?
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    #
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    # Both express a 1-1 relationship. The difference is mostly where to place the foreign key, which goes on the table for the class
    # declaring the +belongs_to+ relationship. Example:
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    #
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    #   class User < ActiveRecord::Base
    #     # I reference an account.
    #     belongs_to :account
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    #   end
    #
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    #   class Account < ActiveRecord::Base
    #     # One user references me.
    #     has_one :user
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    #   end
    #
    # The tables for these classes could look something like:
    #
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    #   CREATE TABLE users (
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    #     id int(11) NOT NULL auto_increment,
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    #     account_id int(11) default NULL,
    #     name varchar default NULL,
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    #     PRIMARY KEY  (id)
    #   )
    #
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    #   CREATE TABLE accounts (
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    #     id int(11) NOT NULL auto_increment,
    #     name varchar default NULL,
    #     PRIMARY KEY  (id)
    #   )
    #
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    # == Unsaved objects and associations
    #
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    # You can manipulate objects and associations before they are saved to the database, but there is some special behavior you should be
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    # aware of, mostly involving the saving of associated objects.
    #
    # === One-to-one associations
    #
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    # * Assigning an object to a +has_one+ association automatically saves that object and the object being replaced (if there is one), in
    #   order to update their primary keys - except if the parent object is unsaved (<tt>new_record? == true</tt>).
    # * If either of these saves fail (due to one of the objects being invalid) the assignment statement returns +false+ and the assignment
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    #   is cancelled.
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    # * If you wish to assign an object to a +has_one+ association without saving it, use the <tt>association.build</tt> method (documented below).
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    # * Assigning an object to a +belongs_to+ association does not save the object, since the foreign key field belongs on the parent. It
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    #   does not save the parent either.
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    #
    # === Collections
    #
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    # * Adding an object to a collection (+has_many+ or +has_and_belongs_to_many+) automatically saves that object, except if the parent object
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    #   (the owner of the collection) is not yet stored in the database.
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    # * If saving any of the objects being added to a collection (via <tt>push</tt> or similar) fails, then <tt>push</tt> returns +false+.
    # * You can add an object to a collection without automatically saving it by using the <tt>collection.build</tt> method (documented below).
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    # * All unsaved (<tt>new_record? == true</tt>) members of the collection are automatically saved when the parent is saved.
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    #
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    # === Association callbacks
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    #
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    # Similar to the normal callbacks that hook into the lifecycle of an Active Record object, you can also define callbacks that get
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    # triggered when you add an object to or remove an object from an association collection. Example:
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    #
    #   class Project
    #     has_and_belongs_to_many :developers, :after_add => :evaluate_velocity
    #
    #     def evaluate_velocity(developer)
    #       ...
    #     end
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    #   end
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    #
    # It's possible to stack callbacks by passing them as an array. Example:
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    #
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    #   class Project
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    #     has_and_belongs_to_many :developers, :after_add => [:evaluate_velocity, Proc.new { |p, d| p.shipping_date = Time.now}]
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    #   end
    #
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    # Possible callbacks are: +before_add+, +after_add+, +before_remove+ and +after_remove+.
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    #
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    # Should any of the +before_add+ callbacks throw an exception, the object does not get added to the collection. Same with
    # the +before_remove+ callbacks; if an exception is thrown the object doesn't get removed.
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    #
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    # === Association extensions
    #
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    # The proxy objects that control the access to associations can be extended through anonymous modules. This is especially
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    # beneficial for adding new finders, creators, and other factory-type methods that are only used as part of this association.
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    # Example:
    #
    #   class Account < ActiveRecord::Base
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    #     has_many :people do
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    #       def find_or_create_by_name(name)
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    #         first_name, last_name = name.split(" ", 2)
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    #         find_or_create_by_first_name_and_last_name(first_name, last_name)
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    #       end
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    #     end
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    #   end
    #
    #   person = Account.find(:first).people.find_or_create_by_name("David Heinemeier Hansson")
    #   person.first_name # => "David"
    #   person.last_name  # => "Heinemeier Hansson"
    #
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    # If you need to share the same extensions between many associations, you can use a named extension module. Example:
    #
    #   module FindOrCreateByNameExtension
    #     def find_or_create_by_name(name)
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    #       first_name, last_name = name.split(" ", 2)
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    #       find_or_create_by_first_name_and_last_name(first_name, last_name)
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    #     end
    #   end
    #
    #   class Account < ActiveRecord::Base
    #     has_many :people, :extend => FindOrCreateByNameExtension
    #   end
    #
    #   class Company < ActiveRecord::Base
    #     has_many :people, :extend => FindOrCreateByNameExtension
    #   end
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    #
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    # If you need to use multiple named extension modules, you can specify an array of modules with the <tt>:extend</tt> option.
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    # In the case of name conflicts between methods in the modules, methods in modules later in the array supercede
    # those earlier in the array. Example:
    #
    #   class Account < ActiveRecord::Base
    #     has_many :people, :extend => [FindOrCreateByNameExtension, FindRecentExtension]
    #   end
    #
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    # Some extensions can only be made to work with knowledge of the association proxy's internals.
    # Extensions can access relevant state using accessors on the association proxy:
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    #
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    # * +proxy_owner+ - Returns the object the association is part of.
    # * +proxy_reflection+ - Returns the reflection object that describes the association.
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    # * +proxy_target+ - Returns the associated object for +belongs_to+ and +has_one+, or the collection of associated objects for +has_many+ and +has_and_belongs_to_many+.
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    #
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    # === Association Join Models
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    #
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    # Has Many associations can be configured with the <tt>:through</tt> option to use an explicit join model to retrieve the data.  This
    # operates similarly to a +has_and_belongs_to_many+ association.  The advantage is that you're able to add validations,
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    # callbacks, and extra attributes on the join model.  Consider the following schema:
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    #
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    #   class Author < ActiveRecord::Base
    #     has_many :authorships
    #     has_many :books, :through => :authorships
    #   end
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    #
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    #   class Authorship < ActiveRecord::Base
    #     belongs_to :author
    #     belongs_to :book
    #   end
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    #
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    #   @author = Author.find :first
    #   @author.authorships.collect { |a| a.book } # selects all books that the author's authorships belong to.
    #   @author.books                              # selects all books by using the Authorship join model
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    #
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    # You can also go through a +has_many+ association on the join model:
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    #
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    #   class Firm < ActiveRecord::Base
    #     has_many   :clients
    #     has_many   :invoices, :through => :clients
    #   end
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    #
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    #   class Client < ActiveRecord::Base
    #     belongs_to :firm
    #     has_many   :invoices
    #   end
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    #
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    #   class Invoice < ActiveRecord::Base
    #     belongs_to :client
    #   end
    #
    #   @firm = Firm.find :first
    #   @firm.clients.collect { |c| c.invoices }.flatten # select all invoices for all clients of the firm
    #   @firm.invoices                                   # selects all invoices by going through the Client join model.
    #
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    # === Polymorphic Associations
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    #
    # Polymorphic associations on models are not restricted on what types of models they can be associated with.  Rather, they
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    # specify an interface that a +has_many+ association must adhere to.
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    #
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    #   class Asset < ActiveRecord::Base
    #     belongs_to :attachable, :polymorphic => true
    #   end
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    #
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    #   class Post < ActiveRecord::Base
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    #     has_many :assets, :as => :attachable         # The :as option specifies the polymorphic interface to use.
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    #   end
    #
    #   @asset.attachable = @post
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    #
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    # This works by using a type column in addition to a foreign key to specify the associated record.  In the Asset example, you'd need
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    # an +attachable_id+ integer column and an +attachable_type+ string column.
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    #
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    # Using polymorphic associations in combination with single table inheritance (STI) is a little tricky. In order
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    # for the associations to work as expected, ensure that you store the base model for the STI models in the
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    # type column of the polymorphic association. To continue with the asset example above, suppose there are guest posts
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    # and member posts that use the posts table for STI. In this case, there must be a +type+ column in the posts table.
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    #
    #   class Asset < ActiveRecord::Base
    #     belongs_to :attachable, :polymorphic => true
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    #
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    #     def attachable_type=(sType)
    #        super(sType.to_s.classify.constantize.base_class.to_s)
    #     end
    #   end
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    #
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    #   class Post < ActiveRecord::Base
    #     # because we store "Post" in attachable_type now :dependent => :destroy will work
    #     has_many :assets, :as => :attachable, :dependent => :destroy
    #   end
    #
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    #   class GuestPost < Post
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    #   end
    #
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    #   class MemberPost < Post
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    #   end
    #
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    # == Caching
    #
    # All of the methods are built on a simple caching principle that will keep the result of the last query around unless specifically
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    # instructed not to. The cache is even shared across methods to make it even cheaper to use the macro-added methods without
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    # worrying too much about performance at the first go. Example:
    #
    #   project.milestones             # fetches milestones from the database
    #   project.milestones.size        # uses the milestone cache
    #   project.milestones.empty?      # uses the milestone cache
    #   project.milestones(true).size  # fetches milestones from the database
    #   project.milestones             # uses the milestone cache
    #
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    # == Eager loading of associations
    #
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    # Eager loading is a way to find objects of a certain class and a number of named associations. This is
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    # one of the easiest ways of to prevent the dreaded 1+N problem in which fetching 100 posts that each need to display their author
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    # triggers 101 database queries. Through the use of eager loading, the 101 queries can be reduced to 2. Example:
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    #
    #   class Post < ActiveRecord::Base
    #     belongs_to :author
    #     has_many   :comments
    #   end
    #
    # Consider the following loop using the class above:
    #
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    #   for post in Post.all
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    #     puts "Post:            " + post.title
    #     puts "Written by:      " + post.author.name
    #     puts "Last comment on: " + post.comments.first.created_on
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    #   end
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    #
    # To iterate over these one hundred posts, we'll generate 201 database queries. Let's first just optimize it for retrieving the author:
    #
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    #   for post in Post.find(:all, :include => :author)
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    #
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    # This references the name of the +belongs_to+ association that also used the <tt>:author</tt> symbol. After loading the posts, find
    # will collect the +author_id+ from each one and load all the referenced authors with one query. Doing so will cut down the number of queries from 201 to 102.
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    #
    # We can improve upon the situation further by referencing both associations in the finder with:
    #
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    #   for post in Post.find(:all, :include => [ :author, :comments ])
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    #
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    # This will load all comments with a single query. This reduces the total number of queries to 3. More generally the number of queries
    # will be 1 plus the number of associations named (except if some of the associations are polymorphic +belongs_to+ - see below).
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    #
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    # To include a deep hierarchy of associations, use a hash:
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    #
    #   for post in Post.find(:all, :include => [ :author, { :comments => { :author => :gravatar } } ])
    #
    # That'll grab not only all the comments but all their authors and gravatar pictures.  You can mix and match
    # symbols, arrays and hashes in any combination to describe the associations you want to load.
    #
    # All of this power shouldn't fool you into thinking that you can pull out huge amounts of data with no performance penalty just because you've reduced
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    # the number of queries. The database still needs to send all the data to Active Record and it still needs to be processed. So it's no
    # catch-all for performance problems, but it's a great way to cut down on the number of queries in a situation as the one described above.
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    #
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    # Since only one table is loaded at a time, conditions or orders cannot reference tables other than the main one. If this is the case
    # Active Record falls back to the previously used LEFT OUTER JOIN based strategy. For example
    #  
    #   Post.find(:all, :include => [ :author, :comments ], :conditions => ['comments.approved = ?', true])
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    #
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    # will result in a single SQL query with joins along the lines of: <tt>LEFT OUTER JOIN comments ON comments.post_id = posts.id</tt> and
    # <tt>LEFT OUTER JOIN authors ON authors.id = posts.author_id</tt>. Note that using conditions like this can have unintended consequences.
    # In the above example posts with no approved comments are not returned at all, because the conditions apply to the SQL statement as a whole
    # and not just to the association. You must disambiguate column references for this fallback to happen, for example
    # <tt>:order => "author.name DESC"</tt> will work but <tt>:order => "name DESC"</tt> will not. 
    #
    # If you do want eagerload only some members of an association it is usually more natural to <tt>:include</tt> an association
    # which has conditions defined on it:
    #
    #   class Post < ActiveRecord::Base
    #     has_many :approved_comments, :class_name => 'Comment', :conditions => ['approved = ?', true]
    #   end
    #
    #   Post.find(:all, :include => :approved_comments)
    #
    # will load posts and eager load the +approved_comments+ association, which contains only those comments that have been approved.
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    #
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    # When eager loaded, conditions are interpolated in the context of the model class, not the model instance.  Conditions are lazily interpolated
    # before the actual model exists.
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    #
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    # Eager loading is supported with polymorphic associations.
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    #
    #   class Address < ActiveRecord::Base
    #     belongs_to :addressable, :polymorphic => true
    #   end
    #
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    # A call that tries to eager load the addressable model
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    #
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    #   Address.find(:all, :include => :addressable)
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    #
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    # will execute one query to load the addresses and load the addressables with one query per addressable type. 
    # For example if all the addressables are either of class Person or Company then a total of 3 queries will be executed. The list of
    # addressable types to load is determined on the back of the addresses loaded. This is not supported if Active Record has to fallback
    # to the previous implementation of eager loading and will raise ActiveRecord::EagerLoadPolymorphicError. The reason is that the parent 
    # model's type is a column value so its corresponding table name cannot be put in the +FROM+/+JOIN+ clauses of that query.
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    #
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    # == Table Aliasing
    #
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    # Active Record uses table aliasing in the case that a table is referenced multiple times in a join.  If a table is referenced only once,
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    # the standard table name is used.  The second time, the table is aliased as <tt>#{reflection_name}_#{parent_table_name}</tt>.  Indexes are appended
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    # for any more successive uses of the table name.
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    #
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    #   Post.find :all, :joins => :comments
    #   # => SELECT ... FROM posts INNER JOIN comments ON ...
    #   Post.find :all, :joins => :special_comments # STI
    #   # => SELECT ... FROM posts INNER JOIN comments ON ... AND comments.type = 'SpecialComment'
    #   Post.find :all, :joins => [:comments, :special_comments] # special_comments is the reflection name, posts is the parent table name
    #   # => SELECT ... FROM posts INNER JOIN comments ON ... INNER JOIN comments special_comments_posts
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    #
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    # Acts as tree example:
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    #
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    #   TreeMixin.find :all, :joins => :children
    #   # => SELECT ... FROM mixins INNER JOIN mixins childrens_mixins ...
    #   TreeMixin.find :all, :joins => {:children => :parent}
    #   # => SELECT ... FROM mixins INNER JOIN mixins childrens_mixins ...
    #                               INNER JOIN parents_mixins ...
    #   TreeMixin.find :all, :joins => {:children => {:parent => :children}}
    #   # => SELECT ... FROM mixins INNER JOIN mixins childrens_mixins ...
    #                               INNER JOIN parents_mixins ...
    #                               INNER JOIN mixins childrens_mixins_2
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    #
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    # Has and Belongs to Many join tables use the same idea, but add a <tt>_join</tt> suffix:
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    #
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    #   Post.find :all, :joins => :categories
    #   # => SELECT ... FROM posts INNER JOIN categories_posts ... INNER JOIN categories ...
    #   Post.find :all, :joins => {:categories => :posts}
    #   # => SELECT ... FROM posts INNER JOIN categories_posts ... INNER JOIN categories ...
    #                              INNER JOIN categories_posts posts_categories_join INNER JOIN posts posts_categories
    #   Post.find :all, :joins => {:categories => {:posts => :categories}}
    #   # => SELECT ... FROM posts INNER JOIN categories_posts ... INNER JOIN categories ...
    #                              INNER JOIN categories_posts posts_categories_join INNER JOIN posts posts_categories
    #                              INNER JOIN categories_posts categories_posts_join INNER JOIN categories categories_posts_2
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    #
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    # If you wish to specify your own custom joins using a <tt>:joins</tt> option, those table names will take precedence over the eager associations:
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    #
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    #   Post.find :all, :joins => :comments, :joins => "inner join comments ..."
    #   # => SELECT ... FROM posts INNER JOIN comments_posts ON ... INNER JOIN comments ...
    #   Post.find :all, :joins => [:comments, :special_comments], :joins => "inner join comments ..."
    #   # => SELECT ... FROM posts INNER JOIN comments comments_posts ON ...
    #                              INNER JOIN comments special_comments_posts ...
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    #                              INNER JOIN comments ...
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    #
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    # Table aliases are automatically truncated according to the maximum length of table identifiers according to the specific database.
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    #
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    # == Modules
    #
    # By default, associations will look for objects within the current module scope. Consider:
    #
    #   module MyApplication
    #     module Business
    #       class Firm < ActiveRecord::Base
    #          has_many :clients
    #        end
    #
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    #       class Client < ActiveRecord::Base; end
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    #     end
    #   end
    #
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    # When <tt>Firm#clients</tt> is called, it will in turn call <tt>MyApplication::Business::Client.find_all_by_firm_id(firm.id)</tt>.
    # If you want to associate with a class in another module scope, this can be done by specifying the complete class name.
    # Example:
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    #
    #   module MyApplication
    #     module Business
    #       class Firm < ActiveRecord::Base; end
    #     end
    #
    #     module Billing
    #       class Account < ActiveRecord::Base
    #         belongs_to :firm, :class_name => "MyApplication::Business::Firm"
    #       end
    #     end
    #   end
    #
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    # == Type safety with <tt>ActiveRecord::AssociationTypeMismatch</tt>
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    #
    # If you attempt to assign an object to an association that doesn't match the inferred or specified <tt>:class_name</tt>, you'll
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    # get an <tt>ActiveRecord::AssociationTypeMismatch</tt>.
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    #
    # == Options
    #
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    # All of the association macros can be specialized through options. This makes cases more complex than the simple and guessable ones
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    # possible.
    module ClassMethods
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      # Specifies a one-to-many association. The following methods for retrieval and query of
      # collections of associated objects will be added:
      #
      # [collection(force_reload = false)]
      #   Returns an array of all the associated objects.
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      #   An empty array is returned if none are found.
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      # [collection<<(object, ...)]
      #   Adds one or more objects to the collection by setting their foreign keys to the collection's primary key.
      # [collection.delete(object, ...)]
      #   Removes one or more objects from the collection by setting their foreign keys to +NULL+.
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      #   This will also destroy the objects if they're declared as +belongs_to+ and dependent on this model.
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      # [collection=objects]
      #   Replaces the collections content by deleting and adding objects as appropriate.
      # [collection_singular_ids]
      #   Returns an array of the associated objects' ids
      # [collection_singular_ids=ids]
      #   Replace the collection with the objects identified by the primary keys in +ids+
      # [collection.clear]
      #   Removes every object from the collection. This destroys the associated objects if they
      #   are associated with <tt>:dependent => :destroy</tt>, deletes them directly from the
      #   database if <tt>:dependent => :delete_all</tt>, otherwise sets their foreign keys to +NULL+.
      # [collection.empty?]
      #   Returns +true+ if there are no associated objects.
      # [collection.size]
      #   Returns the number of associated objects.
      # [collection.find(...)]
      #   Finds an associated object according to the same rules as ActiveRecord::Base.find.
      # [collection.exist?(...)]
      #   Checks whether an associated object with the given conditions exists.
      #   Uses the same rules as ActiveRecord::Base.exists?.
      # [collection.build(attributes = {}, ...)]
      #   Returns one or more new objects of the collection type that have been instantiated
      #   with +attributes+ and linked to this object through a foreign key, but have not yet
      #   been saved. <b>Note:</b> This only works if an associated object already exists, not if
      #   it's +nil+!
      # [collection.create(attributes = {})]
      #   Returns a new object of the collection type that has been instantiated
      #   with +attributes+, linked to this object through a foreign key, and that has already
      #   been saved (if it passed the validation). <b>Note:</b> This only works if an associated
      #   object already exists, not if it's +nil+!
      #
      # (*Note*: +collection+ is replaced with the symbol passed as the first argument, so
      # <tt>has_many :clients</tt> would add among others <tt>clients.empty?</tt>.)
      #
      # === Example
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      #
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      # Example: A Firm class declares <tt>has_many :clients</tt>, which will add:
      # * <tt>Firm#clients</tt> (similar to <tt>Clients.find :all, :conditions => ["firm_id = ?", id]</tt>)
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      # * <tt>Firm#clients<<</tt>
      # * <tt>Firm#clients.delete</tt>
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      # * <tt>Firm#clients=</tt>
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      # * <tt>Firm#client_ids</tt>
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      # * <tt>Firm#client_ids=</tt>
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      # * <tt>Firm#clients.clear</tt>
      # * <tt>Firm#clients.empty?</tt> (similar to <tt>firm.clients.size == 0</tt>)
      # * <tt>Firm#clients.size</tt> (similar to <tt>Client.count "firm_id = #{id}"</tt>)
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      # * <tt>Firm#clients.find</tt> (similar to <tt>Client.find(id, :conditions => "firm_id = #{id}")</tt>)
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      # * <tt>Firm#clients.exist?(:name => 'ACME')</tt> (similar to <tt>Client.exist?(:name => 'ACME', :firm_id => firm.id)</tt>)
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      # * <tt>Firm#clients.build</tt> (similar to <tt>Client.new("firm_id" => id)</tt>)
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      # * <tt>Firm#clients.create</tt> (similar to <tt>c = Client.new("firm_id" => id); c.save; c</tt>)
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      # The declaration can also include an options hash to specialize the behavior of the association.
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      #
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      # === Supported options
      # [:class_name]
      #   Specify the class name of the association. Use it only if that name can't be inferred
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      #   from the association name. So <tt>has_many :products</tt> will by default be linked to the Product class, but
      #   if the real class name is SpecialProduct, you'll have to specify it with this option.
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      # [:conditions]
      #   Specify the conditions that the associated objects must meet in order to be included as a +WHERE+
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      #   SQL fragment, such as <tt>price > 5 AND name LIKE 'B%'</tt>.  Record creations from the association are scoped if a hash
      #   is used.  <tt>has_many :posts, :conditions => {:published => true}</tt> will create published posts with <tt>@blog.posts.create</tt>
      #   or <tt>@blog.posts.build</tt>.
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      # [:order]
      #   Specify the order in which the associated objects are returned as an <tt>ORDER BY</tt> SQL fragment,
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      #   such as <tt>last_name, first_name DESC</tt>.
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      # [:foreign_key]
      #   Specify the foreign key used for the association. By default this is guessed to be the name
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      #   of this class in lower-case and "_id" suffixed. So a Person class that makes a +has_many+ association will use "person_id"
      #   as the default <tt>:foreign_key</tt>.
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      # [:primary_key]
      #   Specify the method that returns the primary key used for the association. By default this is +id+.
      # [:dependent]
      #   If set to <tt>:destroy</tt> all the associated objects are destroyed
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      #   alongside this object by calling their +destroy+ method.  If set to <tt>:delete_all</tt> all associated
      #   objects are deleted *without* calling their +destroy+ method.  If set to <tt>:nullify</tt> all associated
      #   objects' foreign keys are set to +NULL+ *without* calling their +save+ callbacks. *Warning:* This option is ignored when also using
      #   the <tt>:through</tt> option.
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      # [:finder_sql]
      #   Specify a complete SQL statement to fetch the association. This is a good way to go for complex
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      #   associations that depend on multiple tables. Note: When this option is used, +find_in_collection+ is _not_ added.
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      # [:counter_sql]
      #   Specify a complete SQL statement to fetch the size of the association. If <tt>:finder_sql</tt> is
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      #   specified but not <tt>:counter_sql</tt>, <tt>:counter_sql</tt> will be generated by replacing <tt>SELECT ... FROM</tt> with <tt>SELECT COUNT(*) FROM</tt>.
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      # [:extend]
      #   Specify a named module for extending the proxy. See "Association extensions".
      # [:include]
      #   Specify second-order associations that should be eager loaded when the collection is loaded.
      # [:group]
      #   An attribute name by which the result should be grouped. Uses the <tt>GROUP BY</tt> SQL-clause.
      # [:limit]
      #   An integer determining the limit on the number of rows that should be returned.
      # [:offset]
      #   An integer determining the offset from where the rows should be fetched. So at 5, it would skip the first 4 rows.
      # [:select]
      #   By default, this is <tt>*</tt> as in <tt>SELECT * FROM</tt>, but can be changed if you, for example, want to do a join
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      #   but not include the joined columns. Do not forget to include the primary and foreign keys, otherwise it will raise an error.
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      # [:as]
      #   Specifies a polymorphic interface (See <tt>belongs_to</tt>).
      # [:through]
      #   Specifies a Join Model through which to perform the query.  Options for <tt>:class_name</tt> and <tt>:foreign_key</tt>
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      #   are ignored, as the association uses the source reflection. You can only use a <tt>:through</tt> query through a <tt>belongs_to</tt>
      #   or <tt>has_many</tt> association on the join model.
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      # [:source]
      #   Specifies the source association name used by <tt>has_many :through</tt> queries.  Only use it if the name cannot be
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      #   inferred from the association.  <tt>has_many :subscribers, :through => :subscriptions</tt> will look for either <tt>:subscribers</tt> or
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      #   <tt>:subscriber</tt> on Subscription, unless a <tt>:source</tt> is given.
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      # [:source_type]
      #   Specifies type of the source association used by <tt>has_many :through</tt> queries where the source
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      #   association is a polymorphic +belongs_to+.
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      # [:uniq]
      #   If true, duplicates will be omitted from the collection. Useful in conjunction with <tt>:through</tt>.
      # [:readonly]
      #   If true, all the associated objects are readonly through the association.
      # [:validate]
      #   If false, don't validate the associated objects when saving the parent object. true by default.
      # [:accessible]
      #   Mass assignment is allowed for this assocation (similar to <tt>ActiveRecord::Base#attr_accessible</tt>).

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      # Option examples:
      #   has_many :comments, :order => "posted_on"
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      #   has_many :comments, :include => :author
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      #   has_many :people, :class_name => "Person", :conditions => "deleted = 0", :order => "name"
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      #   has_many :tracks, :order => "position", :dependent => :destroy
      #   has_many :comments, :dependent => :nullify
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      #   has_many :tags, :as => :taggable
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      #   has_many :reports, :readonly => true
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      #   has_many :subscribers, :through => :subscriptions, :source => :user
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      #   has_many :subscribers, :class_name => "Person", :finder_sql =>
      #       'SELECT DISTINCT people.* ' +
      #       'FROM people p, post_subscriptions ps ' +
      #       'WHERE ps.post_id = #{id} AND ps.person_id = p.id ' +
      #       'ORDER BY p.first_name'
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      def has_many(association_id, options = {}, &extension)
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        reflection = create_has_many_reflection(association_id, options, &extension)
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        configure_dependency_for_has_many(reflection)
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        add_multiple_associated_validation_callbacks(reflection.name) unless options[:validate] == false
        add_multiple_associated_save_callbacks(reflection.name)
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        add_association_callbacks(reflection.name, reflection.options)

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        if options[:through]
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          collection_accessor_methods(reflection, HasManyThroughAssociation)
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        else
          collection_accessor_methods(reflection, HasManyAssociation)
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        end
      end

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      # Specifies a one-to-one association with another class. This method should only be used
      # if the other class contains the foreign key. If the current class contains the foreign key,
      # then you should use +belongs_to+ instead. See also ActiveRecord::Associations::ClassMethods's overview
      # on when to use has_one and when to use belongs_to.
      #
      # The following methods for retrieval and query of a single associated object will be added:
      #
      # [association(force_reload = false)]
      #   Returns the associated object. +nil+ is returned if none is found.
      # [association=(associate)]
      #   Assigns the associate object, extracts the primary key, sets it as the foreign key,
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      #   and saves the associate object.
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      # [association.nil?]
      #   Returns +true+ if there is no associated object.
      # [build_association(attributes = {})]
      #   Returns a new object of the associated type that has been instantiated
      #   with +attributes+ and linked to this object through a foreign key, but has not
      #   yet been saved. <b>Note:</b> This ONLY works if an association already exists.
      #   It will NOT work if the association is +nil+.
      # [create_association(attributes = {})]
      #   Returns a new object of the associated type that has been instantiated
      #   with +attributes+, linked to this object through a foreign key, and that
      #   has already been saved (if it passed the validation).
      #
      # (+association+ is replaced with the symbol passed as the first argument, so
      # <tt>has_one :manager</tt> would add among others <tt>manager.nil?</tt>.)
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      #
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      # === Example
      #
      # An Account class declares <tt>has_one :beneficiary</tt>, which will add:
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      # * <tt>Account#beneficiary</tt> (similar to <tt>Beneficiary.find(:first, :conditions => "account_id = #{id}")</tt>)
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      # * <tt>Account#beneficiary=(beneficiary)</tt> (similar to <tt>beneficiary.account_id = account.id; beneficiary.save</tt>)
      # * <tt>Account#beneficiary.nil?</tt>
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      # * <tt>Account#build_beneficiary</tt> (similar to <tt>Beneficiary.new("account_id" => id)</tt>)
      # * <tt>Account#create_beneficiary</tt> (similar to <tt>b = Beneficiary.new("account_id" => id); b.save; b</tt>)
      #
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      # === Options
      #
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      # The declaration can also include an options hash to specialize the behavior of the association.
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      #
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      # Options are:
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      # [:class_name]
      #   Specify the class name of the association. Use it only if that name can't be inferred
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      #   from the association name. So <tt>has_one :manager</tt> will by default be linked to the Manager class, but
      #   if the real class name is Person, you'll have to specify it with this option.
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      # [:conditions]
      #   Specify the conditions that the associated object must meet in order to be included as a +WHERE+
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      #   SQL fragment, such as <tt>rank = 5</tt>.
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      # [:order]
      #   Specify the order in which the associated objects are returned as an <tt>ORDER BY</tt> SQL fragment,
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      #   such as <tt>last_name, first_name DESC</tt>.
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      # [:dependent]
      #   If set to <tt>:destroy</tt>, the associated object is destroyed when this object is. If set to
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      #   <tt>:delete</tt>, the associated object is deleted *without* calling its destroy method. If set to <tt>:nullify</tt>, the associated
      #   object's foreign key is set to +NULL+. Also, association is assigned.
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      # [:foreign_key]
      #   Specify the foreign key used for the association. By default this is guessed to be the name
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      #   of this class in lower-case and "_id" suffixed. So a Person class that makes a +has_one+ association will use "person_id"
      #   as the default <tt>:foreign_key</tt>.
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      # [:primary_key]
      #   Specify the method that returns the primary key used for the association. By default this is +id+.
      # [:include]
      #   Specify second-order associations that should be eager loaded when this object is loaded.
      # [:as]
      #   Specifies a polymorphic interface (See <tt>belongs_to</tt>).
      # [:select]
      #   By default, this is <tt>*</tt> as in <tt>SELECT * FROM</tt>, but can be changed if, for example, you want to do a join
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      #   but not include the joined columns. Do not forget to include the primary and foreign keys, otherwise it will raise an error.
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      # [:through]
      #   Specifies a Join Model through which to perform the query.  Options for <tt>:class_name</tt> and <tt>:foreign_key</tt>
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      #   are ignored, as the association uses the source reflection. You can only use a <tt>:through</tt> query through a 
      #   <tt>has_one</tt> or <tt>belongs_to</tt> association on the join model.
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      # [:source]
      #   Specifies the source association name used by <tt>has_one :through</tt> queries.  Only use it if the name cannot be
849
      #   inferred from the association.  <tt>has_one :favorite, :through => :favorites</tt> will look for a
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      #   <tt>:favorite</tt> on Favorite, unless a <tt>:source</tt> is given.      
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      # [:source_type]
      #   Specifies type of the source association used by <tt>has_one :through</tt> queries where the source
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      #   association is a polymorphic +belongs_to+.      
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      # [:readonly]
      #   If true, the associated object is readonly through the association.
      # [:validate]
      #   If false, don't validate the associated object when saving the parent object. +false+ by default.
      # [:accessible]
      #   Mass assignment is allowed for this assocation (similar to <tt>ActiveRecord::Base#attr_accessible</tt>).
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      #
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      # Option examples:
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      #   has_one :credit_card, :dependent => :destroy  # destroys the associated credit card
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      #   has_one :credit_card, :dependent => :nullify  # updates the associated records foreign key value to NULL rather than destroying it
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      #   has_one :last_comment, :class_name => "Comment", :order => "posted_on"
      #   has_one :project_manager, :class_name => "Person", :conditions => "role = 'project_manager'"
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      #   has_one :attachment, :as => :attachable
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      #   has_one :boss, :readonly => :true
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      #   has_one :club, :through => :membership
      #   has_one :primary_address, :through => :addressables, :conditions => ["addressable.primary = ?", true], :source => :addressable
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      def has_one(association_id, options = {})
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        if options[:through]
          reflection = create_has_one_through_reflection(association_id, options)
          association_accessor_methods(reflection, ActiveRecord::Associations::HasOneThroughAssociation)
        else
          reflection = create_has_one_reflection(association_id, options)
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          ivar = "@#{reflection.name}"
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          method_name = "has_one_after_save_for_#{reflection.name}".to_sym
          define_method(method_name) do
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            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)
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883 884
            if !association.nil? && (new_record? || association.new_record? || association[reflection.primary_key_name] != id)
              association[reflection.primary_key_name] = id
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              association.save(true)
            end
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          end
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          after_save method_name
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          add_single_associated_validation_callbacks(reflection.name) if options[:validate] == true
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          association_accessor_methods(reflection, HasOneAssociation)
          association_constructor_method(:build,  reflection, HasOneAssociation)
          association_constructor_method(:create, reflection, HasOneAssociation)
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          configure_dependency_for_has_one(reflection)
        end
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      end

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      # Specifies a one-to-one association with another class. This method should only be used
      # if this class contains the foreign key. If the other class contains the foreign key,
      # then you should use +has_one+ instead. See also ActiveRecord::Associations::ClassMethods's overview
      # on when to use +has_one+ and when to use +belongs_to+.
      #
      # Methods will be added for retrieval and query for a single associated object, for which
      # this object holds an id:
      #
      # [association(force_reload = false)]
      #   Returns the associated object. +nil+ is returned if none is found.
      # [association=(associate)]
      #   Assigns the associate object, extracts the primary key, and sets it as the foreign key.
      # [association.nil?]
      #   Returns +true+ if there is no associated object.
      # [build_association(attributes = {})]
      #   Returns a new object of the associated type that has been instantiated
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      #   with +attributes+ and linked to this object through a foreign key, but has not yet been saved.
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      # [create_association(attributes = {})]
      #   Returns a new object of the associated type that has been instantiated
      #   with +attributes+, linked to this object through a foreign key, and that
      #   has already been saved (if it passed the validation).
      #
      # (+association+ is replaced with the symbol passed as the first argument, so
      # <tt>belongs_to :author</tt> would add among others <tt>author.nil?</tt>.)
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      #
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      # === Example
      #
      # A Post class declares <tt>belongs_to :author</tt>, which will add:
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      # * <tt>Post#author</tt> (similar to <tt>Author.find(author_id)</tt>)
      # * <tt>Post#author=(author)</tt> (similar to <tt>post.author_id = author.id</tt>)
      # * <tt>Post#author?</tt> (similar to <tt>post.author == some_author</tt>)
      # * <tt>Post#author.nil?</tt>
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      # * <tt>Post#build_author</tt> (similar to <tt>post.author = Author.new</tt>)
      # * <tt>Post#create_author</tt> (similar to <tt>post.author = Author.new; post.author.save; post.author</tt>)
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      # The declaration can also include an options hash to specialize the behavior of the association.
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      #
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      # === Options
      #
      # [:class_name]
      #   Specify the class name of the association. Use it only if that name can't be inferred
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      #   from the association name. So <tt>has_one :author</tt> will by default be linked to the Author class, but
      #   if the real class name is Person, you'll have to specify it with this option.
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      # [:conditions]
      #   Specify the conditions that the associated object must meet in order to be included as a +WHERE+
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      #   SQL fragment, such as <tt>authorized = 1</tt>.
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      # [:select]
      #   By default, this is <tt>*</tt> as in <tt>SELECT * FROM</tt>, but can be changed if, for example, you want to do a join
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      #   but not include the joined columns. Do not forget to include the primary and foreign keys, otherwise it will raise an error.
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      # [:foreign_key]
      #   Specify the foreign key used for the association. By default this is guessed to be the name
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      #   of the association with an "_id" suffix. So a class that defines a <tt>belongs_to :person</tt> association will use
      #   "person_id" as the default <tt>:foreign_key</tt>. Similarly, <tt>belongs_to :favorite_person, :class_name => "Person"</tt>
      #   will use a foreign key of "favorite_person_id".
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      # [:dependent]
      #   If set to <tt>:destroy</tt>, the associated object is destroyed when this object is. If set to
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      #   <tt>:delete</tt>, the associated object is deleted *without* calling its destroy method. This option should not be specified when
      #   <tt>belongs_to</tt> is used in conjunction with a <tt>has_many</tt> relationship on another class because of the potential to leave
      #   orphaned records behind.
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      # [:counter_cache]
      #   Caches the number of belonging objects on the associate class through the use of +increment_counter+
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      #   and +decrement_counter+. The counter cache is incremented when an object of this class is created and decremented when it's
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      #   destroyed. This requires that a column named <tt>#{table_name}_count</tt> (such as +comments_count+ for a belonging Comment class)
      #   is used on the associate class (such as a Post class). You can also specify a custom counter cache column by providing
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      #   a column name instead of a +true+/+false+ value to this option (e.g., <tt>:counter_cache => :my_custom_counter</tt>.)
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      #   When creating a counter cache column, the database statement or migration must specify a default value of <tt>0</tt>, failing to do 
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      #   this results in a counter with +NULL+ value, which will never increment.
      #   Note: Specifying a counter cache will add it to that model's list of readonly attributes using +attr_readonly+.
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      # [:include]
      #   Specify second-order associations that should be eager loaded when this object is loaded.
      # [:polymorphic]
      #   Specify this association is a polymorphic association by passing +true+.
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      #   Note: If you've enabled the counter cache, then you may want to add the counter cache attribute
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      #   to the +attr_readonly+ list in the associated classes (e.g. <tt>class Post; attr_readonly :comments_count; end</tt>).
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      # [:readonly]
      #   If true, the associated object is readonly through the association.
      # [:validate]
      #   If false, don't validate the associated objects when saving the parent object. +false+ by default.
      # [:accessible]
      #   Mass assignment is allowed for this assocation (similar to <tt>ActiveRecord::Base#attr_accessible</tt>).
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      #
      # Option examples:
      #   belongs_to :firm, :foreign_key => "client_of"
      #   belongs_to :author, :class_name => "Person", :foreign_key => "author_id"
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      #   belongs_to :valid_coupon, :class_name => "Coupon", :foreign_key => "coupon_id",
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      #              :conditions => 'discounts > #{payments_count}'
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      #   belongs_to :attachable, :polymorphic => true
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      #   belongs_to :project, :readonly => true
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      #   belongs_to :post, :counter_cache => true
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      def belongs_to(association_id, options = {})
988
        reflection = create_belongs_to_reflection(association_id, options)
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        ivar = "@#{reflection.name}"

992 993
        if reflection.options[:polymorphic]
          association_accessor_methods(reflection, BelongsToPolymorphicAssociation)
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995 996
          method_name = "polymorphic_belongs_to_before_save_for_#{reflection.name}".to_sym
          define_method(method_name) do
997
            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)
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999 1000 1001 1002
            if association && association.target
              if association.new_record?
                association.save(true)
              end
1003

1004
              if association.updated?
1005 1006
                self[reflection.primary_key_name] = association.id
                self[reflection.options[:foreign_type]] = association.class.base_class.name.to_s
1007
              end
1008
            end
1009
          end
1010
          before_save method_name
1011
        else
1012 1013 1014
          association_accessor_methods(reflection, BelongsToAssociation)
          association_constructor_method(:build,  reflection, BelongsToAssociation)
          association_constructor_method(:create, reflection, BelongsToAssociation)
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1016 1017
          method_name = "belongs_to_before_save_for_#{reflection.name}".to_sym
          define_method(method_name) do
1018
            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)
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            if !association.nil?
              if association.new_record?
                association.save(true)
              end
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1025
              if association.updated?
1026
                self[reflection.primary_key_name] = association.id
1027
              end
1028
            end
1029
          end
1030
          before_save method_name
1031
        end
1032

1033
        # Create the callbacks to update counter cache
1034
        if options[:counter_cache]
1035 1036 1037 1038
          cache_column = options[:counter_cache] == true ?
            "#{self.to_s.underscore.pluralize}_count" :
            options[:counter_cache]

1039 1040
          method_name = "belongs_to_counter_cache_after_create_for_#{reflection.name}".to_sym
          define_method(method_name) do
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            association = send(reflection.name)
            association.class.increment_counter(cache_column, send(reflection.primary_key_name)) unless association.nil?
1043 1044
          end
          after_create method_name
1045

1046 1047
          method_name = "belongs_to_counter_cache_before_destroy_for_#{reflection.name}".to_sym
          define_method(method_name) do
1048 1049
            association = send(reflection.name)
            association.class.decrement_counter(cache_column, send(reflection.primary_key_name)) unless association.nil?
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          end
          before_destroy method_name
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          module_eval(
1054
            "#{reflection.class_name}.send(:attr_readonly,\"#{cache_column}\".intern) if defined?(#{reflection.class_name}) && #{reflection.class_name}.respond_to?(:attr_readonly)"
1055
          )
1056
        end
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        add_single_associated_validation_callbacks(reflection.name) if options[:validate] == true
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        configure_dependency_for_belongs_to(reflection)
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      end

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      # Specifies a many-to-many relationship with another class. This associates two classes via an
      # intermediate join table.  Unless the join table is explicitly specified as an option, it is
      # guessed using the lexical order of the class names. So a join between Developer and Project
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      # will give the default join table name of "developers_projects" because "D" outranks "P".  Note that this precedence
      # is calculated using the <tt><</tt> operator for String.  This means that if the strings are of different lengths,
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      # and the strings are equal when compared up to the shortest length, then the longer string is considered of higher
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      # lexical precedence than the shorter one.  For example, one would expect the tables "paper_boxes" and "papers"
      # to generate a join table name of "papers_paper_boxes" because of the length of the name "paper_boxes",
      # but it in fact generates a join table name of "paper_boxes_papers".  Be aware of this caveat, and use the
      # custom <tt>:join_table</tt> option if you need to.
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      #
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      # Deprecated: Any additional fields added to the join table will be placed as attributes when pulling records out through
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      # +has_and_belongs_to_many+ associations. Records returned from join tables with additional attributes will be marked as
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      # readonly (because we can't save changes to the additional attributes). It's strongly recommended that you upgrade any
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      # associations with attributes to a real join model (see introduction).
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      #
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      # Adds the following methods for retrieval and query:
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      #
      # [collection(force_reload = false)]
      #   Returns an array of all the associated objects.
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      #   An empty array is returned if none are found.
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      # [collection<<(object, ...)]
      #   Adds one or more objects to the collection by creating associations in the join table
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      #   (<tt>collection.push</tt> and <tt>collection.concat</tt> are aliases to this method).
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      # [collection.delete(object, ...)]
      #   Removes one or more objects from the collection by removing their associations from the join table.
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      #   This does not destroy the objects.
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      # [collection=objects]
      #   Replaces the collection's content by deleting and adding objects as appropriate.
      # [collection_singular_ids]
      #   Returns an array of the associated objects' ids.
      # [collection_singular_ids=ids]
      #   Replace the collection by the objects identified by the primary keys in +ids+.
      # [collection.clear]
      #   Removes every object from the collection. This does not destroy the objects.
      # [collection.empty?]
      #   Returns +true+ if there are no associated objects.
      # [collection.size]
      #   Returns the number of associated objects.
      # [collection.find(id)]
      #   Finds an associated object responding to the +id+ and that
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      #   meets the condition that it has to be associated with this object.
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      #   Uses the same rules as ActiveRecord::Base.find.
      # [collection.exist?(...)]
      #   Checks whether an associated object with the given conditions exists.
      #   Uses the same rules as ActiveRecord::Base.exists?.
      # [collection.build(attributes = {})]
      #   Returns a new object of the collection type that has been instantiated
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      #   with +attributes+ and linked to this object through the join table, but has not yet been saved.
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      # [collection.create(attributes = {})]
      #   Returns a new object of the collection type that has been instantiated
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      #   with +attributes+, linked to this object through the join table, and that has already been saved (if it passed the validation).
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      #
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      # (+collection+ is replaced with the symbol passed as the first argument, so
      # <tt>has_and_belongs_to_many :categories</tt> would add among others <tt>categories.empty?</tt>.)
      #
      # === Example
      #
      # A Developer class declares <tt>has_and_belongs_to_many :projects</tt>, which will add:
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      # * <tt>Developer#projects</tt>
      # * <tt>Developer#projects<<</tt>
      # * <tt>Developer#projects.delete</tt>
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      # * <tt>Developer#projects=</tt>
1126
      # * <tt>Developer#project_ids</tt>
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      # * <tt>Developer#project_ids=</tt>
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      # * <tt>Developer#projects.clear</tt>
      # * <tt>Developer#projects.empty?</tt>
      # * <tt>Developer#projects.size</tt>
      # * <tt>Developer#projects.find(id)</tt>
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      # * <tt>Developer#clients.exist?(...)</tt>
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      # * <tt>Developer#projects.build</tt> (similar to <tt>Project.new("project_id" => id)</tt>)
      # * <tt>Developer#projects.create</tt> (similar to <tt>c = Project.new("project_id" => id); c.save; c</tt>)
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      # The declaration may include an options hash to specialize the behavior of the association.
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      #
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      # === Options
      #
      # [:class_name]
      #   Specify the class name of the association. Use it only if that name can't be inferred
1141
      #   from the association name. So <tt>has_and_belongs_to_many :projects</tt> will by default be linked to the
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      #   Project class, but if the real class name is SuperProject, you'll have to specify it with this option.
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      # [:join_table]
      #   Specify the name of the join table if the default based on lexical order isn't what you want.
      #   <b>WARNING:</b> If you're overwriting the table name of either class, the +table_name+ method
      #   MUST be declared underneath any +has_and_belongs_to_many+ declaration in order to work.
      # [:foreign_key]
      #   Specify the foreign key used for the association. By default this is guessed to be the name
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      #   of this class in lower-case and "_id" suffixed. So a Person class that makes a +has_and_belongs_to_many+ association
      #   will use "person_id" as the default <tt>:foreign_key</tt>.
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      # [:association_foreign_key]
      #   Specify the association foreign key used for the association. By default this is
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      #   guessed to be the name of the associated class in lower-case and "_id" suffixed. So if the associated class is Project,
      #   the +has_and_belongs_to_many+ association will use "project_id" as the default <tt>:association_foreign_key</tt>.
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      # [:conditions]
      #   Specify the conditions that the associated object must meet in order to be included as a +WHERE+
1157 1158 1159
      #   SQL fragment, such as <tt>authorized = 1</tt>.  Record creations from the association are scoped if a hash is used.  
      #   <tt>has_many :posts, :conditions => {:published => true}</tt> will create published posts with <tt>@blog.posts.create</tt> 
      #   or <tt>@blog.posts.build</tt>.
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      # [:order]
      #   Specify the order in which the associated objects are returned as an <tt>ORDER BY</tt> SQL fragment,
1162
      #   such as <tt>last_name, first_name DESC</tt>
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      # [:uniq]
      #   If true, duplicate associated objects will be ignored by accessors and query methods.
      # [:finder_sql]
      #   Overwrite the default generated SQL statement used to fetch the association with a manual statement
1167 1168 1169
      # [:counter_sql]
      #   Specify a complete SQL statement to fetch the size of the association. If <tt>:finder_sql</tt> is
      #   specified but not <tt>:counter_sql</tt>, <tt>:counter_sql</tt> will be generated by replacing <tt>SELECT ... FROM</tt> with <tt>SELECT COUNT(*) FROM</tt>.
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      # [:delete_sql]
      #   Overwrite the default generated SQL statement used to remove links between the associated
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      #   classes with a manual statement.
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      # [:insert_sql]
      #   Overwrite the default generated SQL statement used to add links between the associated classes
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      #   with a manual statement.
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      # [:extend]
      #   Anonymous module for extending the proxy, see "Association extensions".
      # [:include]
      #   Specify second-order associations that should be eager loaded when the collection is loaded.
      # [:group]
      #   An attribute name by which the result should be grouped. Uses the <tt>GROUP BY</tt> SQL-clause.
      # [:limit]
      #   An integer determining the limit on the number of rows that should be returned.
      # [:offset]
      #   An integer determining the offset from where the rows should be fetched. So at 5, it would skip the first 4 rows.
      # [:select]
      #   By default, this is <tt>*</tt> as in <tt>SELECT * FROM</tt>, but can be changed if, for example, you want to do a join
1188
      #   but not include the joined columns. Do not forget to include the primary and foreign keys, otherwise it will raise an error.
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      # [:readonly]
      #   If true, all the associated objects are readonly through the association.
      # [:validate]
      #   If false, don't validate the associated objects when saving the parent object. +true+ by default.
      # [:accessible<]
      #   Mass assignment is allowed for this assocation (similar to <tt>ActiveRecord::Base#attr_accessible</tt>).
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      #
      # Option examples:
      #   has_and_belongs_to_many :projects
1198
      #   has_and_belongs_to_many :projects, :include => [ :milestones, :manager ]
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      #   has_and_belongs_to_many :nations, :class_name => "Country"
      #   has_and_belongs_to_many :categories, :join_table => "prods_cats"
1201
      #   has_and_belongs_to_many :categories, :readonly => true
1202
      #   has_and_belongs_to_many :active_projects, :join_table => 'developers_projects', :delete_sql =>
1203
      #   'DELETE FROM developers_projects WHERE active=1 AND developer_id = #{id} AND project_id = #{record.id}'
1204
      def has_and_belongs_to_many(association_id, options = {}, &extension)
1205
        reflection = create_has_and_belongs_to_many_reflection(association_id, options, &extension)
1206

1207 1208
        add_multiple_associated_validation_callbacks(reflection.name) unless options[:validate] == false
        add_multiple_associated_save_callbacks(reflection.name)
1209
        collection_accessor_methods(reflection, HasAndBelongsToManyAssociation)
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1211 1212
        # Don't use a before_destroy callback since users' before_destroy
        # callbacks will be executed after the association is wiped out.
1213
        old_method = "destroy_without_habtm_shim_for_#{reflection.name}"
1214
        class_eval <<-end_eval unless method_defined?(old_method)
1215 1216
          alias_method :#{old_method}, :destroy_without_callbacks
          def destroy_without_callbacks
1217
            #{reflection.name}.clear
1218 1219 1220 1221
            #{old_method}
          end
        end_eval

1222
        add_association_callbacks(reflection.name, options)
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      end

      private
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        # Generates a join table name from two provided table names.
        # The names in the join table namesme end up in lexicographic order.
        #
        #   join_table_name("members", "clubs")         # => "clubs_members"
        #   join_table_name("members", "special_clubs") # => "members_special_clubs"
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        def join_table_name(first_table_name, second_table_name)
          if first_table_name < second_table_name
            join_table = "#{first_table_name}_#{second_table_name}"
          else
            join_table = "#{second_table_name}_#{first_table_name}"
          end

          table_name_prefix + join_table + table_name_suffix
        end
1240

1241
        def association_accessor_methods(reflection, association_proxy_class)
1242 1243
          ivar = "@#{reflection.name}"

1244
          define_method(reflection.name) do |*params|
1245
            force_reload = params.first unless params.empty?
1246 1247

            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)
1248 1249 1250

            if association.nil? || force_reload
              association = association_proxy_class.new(self, reflection)
1251
              retval = association.reload
1252
              if retval.nil? and association_proxy_class == BelongsToAssociation
1253
                instance_variable_set(ivar, nil)
1254 1255
                return nil
              end
1256
              instance_variable_set(ivar, association)
1257
            end
1258 1259

            association.target.nil? ? nil : association
1260 1261
          end

1262
          define_method("#{reflection.name}=") do |new_value|
1263 1264
            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)

1265
            if association.nil? || association.target != new_value
1266
              association = association_proxy_class.new(self, reflection)
1267
            end
1268

1269 1270
            new_value = reflection.klass.new(new_value) if reflection.options[:accessible] && new_value.is_a?(Hash)

1271 1272 1273 1274
            if association_proxy_class == HasOneThroughAssociation
              association.create_through_record(new_value)
              self.send(reflection.name, new_value)
            else
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              association.replace(new_value)
              instance_variable_set(ivar, new_value.nil? ? nil : association)
1277
            end
1278
          end
1279

1280
          define_method("set_#{reflection.name}_target") do |target|
1281
            return if target.nil? and association_proxy_class == BelongsToAssociation
1282
            association = association_proxy_class.new(self, reflection)
1283
            association.target = target
1284
            instance_variable_set(ivar, association)
1285
          end
1286 1287
        end

1288 1289
        def collection_reader_method(reflection, association_proxy_class)
          define_method(reflection.name) do |*params|
1290 1291
            ivar = "@#{reflection.name}"

1292
            force_reload = params.first unless params.empty?
1293
            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)
1294

1295
            unless association.respond_to?(:loaded?)
1296
              association = association_proxy_class.new(self, reflection)
1297
              instance_variable_set(ivar, association)
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            end
1299

1300
            association.reload if force_reload
1301

1302 1303
            association
          end
1304 1305

          define_method("#{reflection.name.to_s.singularize}_ids") do
1306 1307 1308
            if send(reflection.name).loaded?
              send(reflection.name).map(&:id)
            else
1309
              send(reflection.name).all(:select => "#{reflection.quoted_table_name}.#{reflection.klass.primary_key}").map(&:id)
1310
            end
1311
          end
1312
        end
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1314
        def collection_accessor_methods(reflection, association_proxy_class, writer = true)
1315 1316
          collection_reader_method(reflection, association_proxy_class)

1317 1318 1319 1320 1321 1322 1323
          if writer
            define_method("#{reflection.name}=") do |new_value|
              # Loads proxy class instance (defined in collection_reader_method) if not already loaded
              association = send(reflection.name)
              association.replace(new_value)
              association
            end
1324

1325 1326 1327 1328
            define_method("#{reflection.name.to_s.singularize}_ids=") do |new_value|
              ids = (new_value || []).reject { |nid| nid.blank? }
              send("#{reflection.name}=", reflection.class_name.constantize.find(ids))
            end
1329
          end
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        end
1331

1332
        def add_single_associated_validation_callbacks(association_name)
1333 1334 1335 1336
          method_name = "validate_associated_records_for_#{association_name}".to_sym
          define_method(method_name) do
            association = instance_variable_get("@#{association_name}")
            if !association.nil?
1337
              errors.add association_name unless association.target.nil? || association.valid?
1338 1339
            end
          end
1340

1341 1342
          validate method_name
        end
1343

1344
        def add_multiple_associated_validation_callbacks(association_name)
1345
          method_name = "validate_associated_records_for_#{association_name}".to_sym
1346 1347
          ivar = "@#{association_name}"

1348
          define_method(method_name) do
1349 1350
            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)

1351
            if association.respond_to?(:loaded?)
1352
              if new_record?
1353
                association
1354
              elsif association.loaded?
1355
                association.select { |record| record.new_record? }
1356 1357
              else
                association.target.select { |record| record.new_record? }
1358
              end.each do |record|
1359
                errors.add association_name unless record.valid?
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              end
1361
            end
1362
          end
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1364
          validate method_name
1365 1366 1367 1368
        end

        def add_multiple_associated_save_callbacks(association_name)
          ivar = "@#{association_name}"
1369

1370 1371 1372 1373 1374 1375 1376 1377 1378
          method_name = "before_save_associated_records_for_#{association_name}".to_sym
          define_method(method_name) do
            @new_record_before_save = new_record?
            true
          end
          before_save method_name

          method_name = "after_create_or_update_associated_records_for_#{association_name}".to_sym
          define_method(method_name) do
1379
            association = instance_variable_get(ivar) if instance_variable_defined?(ivar)
1380

1381 1382 1383 1384
            records_to_save = if @new_record_before_save
              association
            elsif association.respond_to?(:loaded?) && association.loaded?
              association.select { |record| record.new_record? }
1385 1386
            elsif association.respond_to?(:loaded?) && !association.loaded?
              association.target.select { |record| record.new_record? }
1387 1388 1389
            else
              []
            end
1390
            records_to_save.each { |record| association.send(:insert_record, record) } unless records_to_save.blank?
1391

1392 1393
            # reconstruct the SQL queries now that we know the owner's id
            association.send(:construct_sql) if association.respond_to?(:construct_sql)
1394
          end
1395

1396
          # Doesn't use after_save as that would save associations added in after_create/after_update twice
1397 1398
          after_create method_name
          after_update method_name
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        end
1400

1401 1402
        def association_constructor_method(constructor, reflection, association_proxy_class)
          define_method("#{constructor}_#{reflection.name}") do |*params|
1403 1404
            ivar = "@#{reflection.name}"

1405 1406
            attributees      = params.first unless params.empty?
            replace_existing = params[1].nil? ? true : params[1]
1407
            association      = instance_variable_get(ivar) if instance_variable_defined?(ivar)
1408 1409

            if association.nil?
1410
              association = association_proxy_class.new(self, reflection)
1411
              instance_variable_set(ivar, association)
1412 1413
            end

1414 1415 1416 1417 1418
            if association_proxy_class == HasOneAssociation
              association.send(constructor, attributees, replace_existing)
            else
              association.send(constructor, attributees)
            end
1419 1420
          end
        end
1421

1422
        def find_with_associations(options = {})
1423
          catch :invalid_query do
1424
            join_dependency = JoinDependency.new(self, merge_includes(scope(:find, :include), options[:include]), options[:joins])
1425 1426 1427 1428
            rows = select_all_rows(options, join_dependency)
            return join_dependency.instantiate(rows)
          end
          []
1429
        end
1430

1431 1432
        # See HasManyAssociation#delete_records.  Dependent associations
        # delete children, otherwise foreign key is set to NULL.
1433
        def configure_dependency_for_has_many(reflection)
1434 1435 1436 1437 1438 1439 1440
          if reflection.options.include?(:dependent)
            # Add polymorphic type if the :as option is present
            dependent_conditions = []
            dependent_conditions << "#{reflection.primary_key_name} = \#{record.quoted_id}"
            dependent_conditions << "#{reflection.options[:as]}_type = '#{base_class.name}'" if reflection.options[:as]
            dependent_conditions << sanitize_sql(reflection.options[:conditions]) if reflection.options[:conditions]
            dependent_conditions = dependent_conditions.collect {|where| "(#{where})" }.join(" AND ")
1441

1442 1443
            case reflection.options[:dependent]
              when :destroy
1444 1445
                method_name = "has_many_dependent_destroy_for_#{reflection.name}".to_sym
                define_method(method_name) do
1446
                  send(reflection.name).each { |o| o.destroy }
1447 1448
                end
                before_destroy method_name
1449 1450 1451 1452 1453 1454 1455
              when :delete_all
                module_eval "before_destroy { |record| #{reflection.class_name}.delete_all(%(#{dependent_conditions})) }"
              when :nullify
                module_eval "before_destroy { |record| #{reflection.class_name}.update_all(%(#{reflection.primary_key_name} = NULL),  %(#{dependent_conditions})) }"
              else
                raise ArgumentError, "The :dependent option expects either :destroy, :delete_all, or :nullify (#{reflection.options[:dependent].inspect})"
            end
1456 1457
          end
        end
1458

1459
        def configure_dependency_for_has_one(reflection)
1460 1461 1462
          if reflection.options.include?(:dependent)
            case reflection.options[:dependent]
              when :destroy
1463 1464
                method_name = "has_one_dependent_destroy_for_#{reflection.name}".to_sym
                define_method(method_name) do
1465
                  association = send(reflection.name)
1466 1467 1468
                  association.destroy unless association.nil?
                end
                before_destroy method_name
1469
              when :delete
1470 1471
                method_name = "has_one_dependent_delete_for_#{reflection.name}".to_sym
                define_method(method_name) do
1472
                  association = send(reflection.name)
1473 1474 1475
                  association.class.delete(association.id) unless association.nil?
                end
                before_destroy method_name
1476
              when :nullify
1477 1478
                method_name = "has_one_dependent_nullify_for_#{reflection.name}".to_sym
                define_method(method_name) do
1479 1480
                  association = send(reflection.name)
                  association.update_attribute(reflection.primary_key_name, nil) unless association.nil?
1481 1482
                end
                before_destroy method_name
1483 1484 1485
              else
                raise ArgumentError, "The :dependent option expects either :destroy, :delete or :nullify (#{reflection.options[:dependent].inspect})"
            end
1486 1487 1488
          end
        end

1489 1490 1491 1492
        def configure_dependency_for_belongs_to(reflection)
          if reflection.options.include?(:dependent)
            case reflection.options[:dependent]
              when :destroy
1493 1494
                method_name = "belongs_to_dependent_destroy_for_#{reflection.name}".to_sym
                define_method(method_name) do
1495
                  association = send(reflection.name)
1496 1497 1498
                  association.destroy unless association.nil?
                end
                before_destroy method_name
1499
              when :delete
1500 1501
                method_name = "belongs_to_dependent_delete_for_#{reflection.name}".to_sym
                define_method(method_name) do
1502
                  association = send(reflection.name)
1503 1504 1505
                  association.class.delete(association.id) unless association.nil?
                end
                before_destroy method_name
1506 1507 1508 1509 1510 1511
              else
                raise ArgumentError, "The :dependent option expects either :destroy or :delete (#{reflection.options[:dependent].inspect})"
            end
          end
        end

1512 1513
        def create_has_many_reflection(association_id, options, &extension)
          options.assert_valid_keys(
1514
            :class_name, :table_name, :foreign_key, :primary_key,
1515
            :dependent,
1516
            :select, :conditions, :include, :order, :group, :limit, :offset,
1517
            :as, :through, :source, :source_type,
1518
            :uniq,
1519 1520
            :finder_sql, :counter_sql,
            :before_add, :after_add, :before_remove, :after_remove,
1521
            :extend, :readonly,
1522
            :validate, :accessible
1523 1524
          )

1525
          options[:extend] = create_extension_modules(association_id, extension, options[:extend])
1526

1527
          create_reflection(:has_many, association_id, options, self)
1528 1529 1530 1531
        end

        def create_has_one_reflection(association_id, options)
          options.assert_valid_keys(
1532
            :class_name, :foreign_key, :remote, :select, :conditions, :order, :include, :dependent, :counter_cache, :extend, :as, :readonly, :validate, :primary_key, :accessible
1533 1534
          )

1535
          create_reflection(:has_one, association_id, options, self)
1536
        end
1537

1538 1539
        def create_has_one_through_reflection(association_id, options)
          options.assert_valid_keys(
1540
            :class_name, :foreign_key, :remote, :select, :conditions, :order, :include, :dependent, :counter_cache, :extend, :as, :through, :source, :source_type, :validate
1541 1542 1543
          )
          create_reflection(:has_one, association_id, options, self)
        end
1544 1545 1546

        def create_belongs_to_reflection(association_id, options)
          options.assert_valid_keys(
1547
            :class_name, :foreign_key, :foreign_type, :remote, :select, :conditions, :include, :dependent,
1548
            :counter_cache, :extend, :polymorphic, :readonly, :validate, :accessible
1549
          )
1550

1551 1552 1553 1554 1555 1556 1557 1558
          reflection = create_reflection(:belongs_to, association_id, options, self)

          if options[:polymorphic]
            reflection.options[:foreign_type] ||= reflection.class_name.underscore + "_type"
          end

          reflection
        end
1559

1560 1561
        def create_has_and_belongs_to_many_reflection(association_id, options, &extension)
          options.assert_valid_keys(
1562
            :class_name, :table_name, :join_table, :foreign_key, :association_foreign_key,
1563
            :select, :conditions, :include, :order, :group, :limit, :offset,
1564
            :uniq,
1565
            :finder_sql, :delete_sql, :insert_sql,
1566
            :before_add, :after_add, :before_remove, :after_remove,
1567
            :extend, :readonly,
1568
            :validate, :accessible
1569 1570
          )

1571
          options[:extend] = create_extension_modules(association_id, extension, options[:extend])
1572 1573 1574 1575

          reflection = create_reflection(:has_and_belongs_to_many, association_id, options, self)

          reflection.options[:join_table] ||= join_table_name(undecorated_table_name(self.to_s), undecorated_table_name(reflection.class_name))
1576

1577 1578 1579
          reflection
        end

1580
        def reflect_on_included_associations(associations)
1581
          [ associations ].flatten.collect { |association| reflect_on_association(association.to_s.intern) }
1582 1583
        end

1584 1585 1586
        def guard_against_unlimitable_reflections(reflections, options)
          if (options[:offset] || options[:limit]) && !using_limitable_reflections?(reflections)
            raise(
1587
              ConfigurationError,
1588 1589 1590 1591 1592
              "You can not use offset and limit together with has_many or has_and_belongs_to_many associations"
            )
          end
        end

1593
        def select_all_rows(options, join_dependency)
1594
          connection.select_all(
1595
            construct_finder_sql_with_included_associations(options, join_dependency),
1596 1597 1598
            "#{name} Load Including Associations"
          )
        end
1599

1600
        def construct_finder_sql_with_included_associations(options, join_dependency)
1601
          scope = scope(:find)
1602
          sql = "SELECT #{column_aliases(join_dependency)} FROM #{(scope && scope[:from]) || options[:from] || quoted_table_name} "
1603
          sql << join_dependency.join_associations.collect{|join| join.association_join }.join
1604

1605
          add_joins!(sql, options[:joins], scope)
1606
          add_conditions!(sql, options[:conditions], scope)
1607
          add_limited_ids_condition!(sql, options, join_dependency) if !using_limitable_reflections?(join_dependency.reflections) && ((scope && scope[:limit]) || options[:limit])
1608

1609
          add_group!(sql, options[:group], scope)
1610
          add_order!(sql, options[:order], scope)
1611
          add_limit!(sql, options, scope) if using_limitable_reflections?(join_dependency.reflections)
1612
          add_lock!(sql, options, scope)
1613

1614 1615
          return sanitize_sql(sql)
        end
1616

1617 1618
        def add_limited_ids_condition!(sql, options, join_dependency)
          unless (id_list = select_limited_ids_list(options, join_dependency)).empty?
1619
            sql << "#{condition_word(sql)} #{connection.quote_table_name table_name}.#{primary_key} IN (#{id_list}) "
1620 1621
          else
            throw :invalid_query
1622 1623
          end
        end
1624

1625
        def select_limited_ids_list(options, join_dependency)
1626 1627
          pk = columns_hash[primary_key]

1628
          connection.select_all(
1629
            construct_finder_sql_for_association_limiting(options, join_dependency),
1630
            "#{name} Load IDs For Limited Eager Loading"
1631
          ).collect { |row| connection.quote(row[primary_key], pk) }.join(", ")
1632
        end
1633

1634
        def construct_finder_sql_for_association_limiting(options, join_dependency)
1635
          scope       = scope(:find)
1636 1637 1638 1639 1640

          # Only join tables referenced in order or conditions since this is particularly slow on the pre-query.
          tables_from_conditions = conditions_tables(options)
          tables_from_order      = order_tables(options)
          all_tables             = tables_from_conditions + tables_from_order
1641 1642 1643 1644
          distinct_join_associations = all_tables.uniq.map{|table|
            join_dependency.joins_for_table_name(table)
          }.flatten.compact.uniq

1645 1646 1647 1648 1649
          order = options[:order]
          if scoped_order = (scope && scope[:order])
            order = order ? "#{order}, #{scoped_order}" : scoped_order
          end

1650
          is_distinct = !options[:joins].blank? || include_eager_conditions?(options, tables_from_conditions) || include_eager_order?(options, tables_from_order)
1651
          sql = "SELECT "
1652
          if is_distinct
1653
            sql << connection.distinct("#{connection.quote_table_name table_name}.#{primary_key}", order)
1654 1655 1656
          else
            sql << primary_key
          end
1657
          sql << " FROM #{connection.quote_table_name table_name} "
1658

1659
          if is_distinct
1660
            sql << distinct_join_associations.collect { |assoc| assoc.association_join }.join
1661
            add_joins!(sql, options[:joins], scope)
1662
          end
1663

1664
          add_conditions!(sql, options[:conditions], scope)
1665
          add_group!(sql, options[:group], scope)
1666

1667 1668
          if order && is_distinct
            connection.add_order_by_for_association_limiting!(sql, :order => order)
1669 1670
          else
            add_order!(sql, options[:order], scope)
1671
          end
1672

1673
          add_limit!(sql, options, scope)
1674

1675 1676
          return sanitize_sql(sql)
        end
1677

1678
        def conditions_tables(options)
1679 1680 1681 1682 1683 1684 1685 1686
          # look in both sets of conditions
          conditions = [scope(:find, :conditions), options[:conditions]].inject([]) do |all, cond|
            case cond
              when nil   then all
              when Array then all << cond.first
              else            all << cond
            end
          end
1687
          conditions.join(' ').scan(/([\.a-zA-Z_]+).?\./).flatten
1688 1689 1690
        end

        def order_tables(options)
1691
          order = [options[:order], scope(:find, :order) ].join(", ")
1692
          return [] unless order && order.is_a?(String)
1693
          order.scan(/([\.a-zA-Z_]+).?\./).flatten
1694 1695
        end

1696 1697 1698
        def selects_tables(options)
          select = options[:select]
          return [] unless select && select.is_a?(String)
1699
          select.scan(/"?([\.a-zA-Z_]+)"?.?\./).flatten
1700 1701
        end

1702
        # Checks if the conditions reference a table other than the current model table
1703 1704
        def include_eager_conditions?(options, tables = nil)
          ((tables || conditions_tables(options)) - [table_name]).any?
1705
        end
1706

1707
        # Checks if the query order references a table other than the current model's table.
1708 1709
        def include_eager_order?(options, tables = nil)
          ((tables || order_tables(options)) - [table_name]).any?
1710
        end
1711

1712
        def include_eager_select?(options)
1713
          (selects_tables(options) - [table_name]).any?
1714 1715
        end

1716
        def references_eager_loaded_tables?(options)
1717
          include_eager_order?(options) || include_eager_conditions?(options) || include_eager_select?(options)
1718 1719
        end

1720 1721 1722 1723
        def using_limitable_reflections?(reflections)
          reflections.reject { |r| [ :belongs_to, :has_one ].include?(r.macro) }.length.zero?
        end

1724 1725
        def column_aliases(join_dependency)
          join_dependency.joins.collect{|join| join.column_names_with_alias.collect{|column_name, aliased_name|
1726
              "#{connection.quote_table_name join.aliased_table_name}.#{connection.quote_column_name column_name} AS #{aliased_name}"}}.flatten.join(", ")
1727 1728
        end

1729
        def add_association_callbacks(association_name, options)
1730 1731
          callbacks = %w(before_add after_add before_remove after_remove)
          callbacks.each do |callback_name|
1732
            full_callback_name = "#{callback_name}_for_#{association_name}"
1733 1734 1735
            defined_callbacks = options[callback_name.to_sym]
            if options.has_key?(callback_name.to_sym)
              class_inheritable_reader full_callback_name.to_sym
1736 1737 1738
              write_inheritable_attribute(full_callback_name.to_sym, [defined_callbacks].flatten)
            else
              write_inheritable_attribute(full_callback_name.to_sym, [])
1739 1740
            end
          end
1741
        end
1742

1743 1744 1745
        def condition_word(sql)
          sql =~ /where/i ? " AND " : "WHERE "
        end
1746

1747
        def create_extension_modules(association_id, block_extension, extensions)
1748 1749
          if block_extension
            extension_module_name = "#{self.to_s}#{association_id.to_s.camelize}AssociationExtension"
1750

1751 1752 1753 1754 1755 1756
            silence_warnings do
              Object.const_set(extension_module_name, Module.new(&block_extension))
            end
            Array(extensions).push(extension_module_name.constantize)
          else
            Array(extensions)
1757 1758
          end
        end
1759

D
David Heinemeier Hansson 已提交
1760
        class JoinDependency # :nodoc:
1761
          attr_reader :joins, :reflections, :table_aliases
1762

1763
          def initialize(base, associations, joins)
1764
            @joins                 = [JoinBase.new(base, joins)]
1765 1766 1767 1768
            @associations          = associations
            @reflections           = []
            @base_records_hash     = {}
            @base_records_in_order = []
1769 1770
            @table_aliases         = Hash.new { |aliases, table| aliases[table] = 0 }
            @table_aliases[base.table_name] = 1
1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787
            build(associations)
          end

          def join_associations
            @joins[1..-1].to_a
          end

          def join_base
            @joins[0]
          end

          def instantiate(rows)
            rows.each_with_index do |row, i|
              primary_id = join_base.record_id(row)
              unless @base_records_hash[primary_id]
                @base_records_in_order << (@base_records_hash[primary_id] = join_base.instantiate(row))
              end
1788
              construct(@base_records_hash[primary_id], @associations, join_associations.dup, row)
1789
            end
1790
            remove_duplicate_results!(join_base.active_record, @base_records_in_order, @associations)
1791 1792 1793
            return @base_records_in_order
          end

1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810
          def remove_duplicate_results!(base, records, associations)
            case associations
              when Symbol, String
                reflection = base.reflections[associations]
                if reflection && [:has_many, :has_and_belongs_to_many].include?(reflection.macro)
                  records.each { |record| record.send(reflection.name).target.uniq! }
                end
              when Array
                associations.each do |association|
                  remove_duplicate_results!(base, records, association)
                end
              when Hash
                associations.keys.each do |name|
                  reflection = base.reflections[name]
                  is_collection = [:has_many, :has_and_belongs_to_many].include?(reflection.macro)

                  parent_records = records.map do |record|
1811 1812 1813 1814
                    descendant = record.send(reflection.name)
                    next unless descendant
                    descendant.target.uniq! if is_collection
                    descendant
1815 1816 1817 1818 1819 1820 1821
                  end.flatten.compact

                  remove_duplicate_results!(reflection.class_name.constantize, parent_records, associations[name]) unless parent_records.empty?
                end
            end
          end

1822
          def join_for_table_name(table_name)
1823 1824 1825
            join = (@joins.select{|j|j.aliased_table_name == table_name.gsub(/^\"(.*)\"$/){$1} }.first) rescue nil
            return join unless join.nil?
            @joins.select{|j|j.is_a?(JoinAssociation) && j.aliased_join_table_name == table_name.gsub(/^\"(.*)\"$/){$1} }.first rescue nil
1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840
          end

          def joins_for_table_name(table_name)
            join = join_for_table_name(table_name)
            result = nil
            if join && join.is_a?(JoinAssociation)
              result = [join]
              if join.parent && join.parent.is_a?(JoinAssociation)
                result = joins_for_table_name(join.parent.aliased_table_name) +
                         result
              end
            end
            result
          end

1841 1842 1843 1844 1845 1846 1847 1848
          protected
            def build(associations, parent = nil)
              parent ||= @joins.last
              case associations
                when Symbol, String
                  reflection = parent.reflections[associations.to_s.intern] or
                  raise ConfigurationError, "Association named '#{ associations }' was not found; perhaps you misspelled it?"
                  @reflections << reflection
1849
                  @joins << build_join_association(reflection, parent)
1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863
                when Array
                  associations.each do |association|
                    build(association, parent)
                  end
                when Hash
                  associations.keys.sort{|a,b|a.to_s<=>b.to_s}.each do |name|
                    build(name, parent)
                    build(associations[name])
                  end
                else
                  raise ConfigurationError, associations.inspect
              end
            end

1864 1865 1866 1867 1868
            # overridden in InnerJoinDependency subclass
            def build_join_association(reflection, parent)
              JoinAssociation.new(reflection, self, parent)
            end

1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894
            def construct(parent, associations, joins, row)
              case associations
                when Symbol, String
                  while (join = joins.shift).reflection.name.to_s != associations.to_s
                    raise ConfigurationError, "Not Enough Associations" if joins.empty?
                  end
                  construct_association(parent, join, row)
                when Array
                  associations.each do |association|
                    construct(parent, association, joins, row)
                  end
                when Hash
                  associations.keys.sort{|a,b|a.to_s<=>b.to_s}.each do |name|
                    association = construct_association(parent, joins.shift, row)
                    construct(association, associations[name], joins, row) if association
                  end
                else
                  raise ConfigurationError, associations.inspect
              end
            end

            def construct_association(record, join, row)
              case join.reflection.macro
                when :has_many, :has_and_belongs_to_many
                  collection = record.send(join.reflection.name)
                  collection.loaded
1895

1896 1897
                  return nil if record.id.to_s != join.parent.record_id(row).to_s or row[join.aliased_primary_key].nil?
                  association = join.instantiate(row)
1898
                  collection.target.push(association)
1899 1900
                when :has_one
                  return if record.id.to_s != join.parent.record_id(row).to_s
1901
                  return if record.instance_variable_defined?("@#{join.reflection.name}")
1902 1903 1904
                  association = join.instantiate(row) unless row[join.aliased_primary_key].nil?
                  record.send("set_#{join.reflection.name}_target", association)
                when :belongs_to
1905 1906 1907 1908 1909 1910 1911 1912 1913
                  return if record.id.to_s != join.parent.record_id(row).to_s or row[join.aliased_primary_key].nil?
                  association = join.instantiate(row)
                  record.send("set_#{join.reflection.name}_target", association)
                else
                  raise ConfigurationError, "unknown macro: #{join.reflection.macro}"
              end
              return association
            end

D
David Heinemeier Hansson 已提交
1914
          class JoinBase # :nodoc:
1915
            attr_reader :active_record, :table_joins
1916
            delegate    :table_name, :column_names, :primary_key, :reflections, :sanitize_sql, :to => :active_record
1917

1918
            def initialize(active_record, joins = nil)
1919 1920
              @active_record = active_record
              @cached_record = {}
1921
              @table_joins   = joins
1922 1923 1924 1925 1926 1927 1928
            end

            def aliased_prefix
              "t0"
            end

            def aliased_primary_key
1929
              "#{aliased_prefix}_r0"
1930 1931 1932 1933 1934 1935 1936
            end

            def aliased_table_name
              active_record.table_name
            end

            def column_names_with_alias
1937
              unless defined?(@column_names_with_alias)
1938
                @column_names_with_alias = []
1939

1940
                ([primary_key] + (column_names - [primary_key])).each_with_index do |column_name, i|
1941
                  @column_names_with_alias << [column_name, "#{aliased_prefix}_r#{i}"]
1942 1943
                end
              end
1944 1945

              @column_names_with_alias
1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956
            end

            def extract_record(row)
              column_names_with_alias.inject({}){|record, (cn, an)| record[cn] = row[an]; record}
            end

            def record_id(row)
              row[aliased_primary_key]
            end

            def instantiate(row)
1957
              @cached_record[record_id(row)] ||= active_record.send(:instantiate, extract_record(row))
1958 1959 1960
            end
          end

D
David Heinemeier Hansson 已提交
1961
          class JoinAssociation < JoinBase # :nodoc:
1962
            attr_reader :reflection, :parent, :aliased_table_name, :aliased_prefix, :aliased_join_table_name, :parent_table_name
1963
            delegate    :options, :klass, :through_reflection, :source_reflection, :to => :reflection
1964 1965

            def initialize(reflection, join_dependency, parent = nil)
1966 1967 1968 1969 1970
              reflection.check_validity!
              if reflection.options[:polymorphic]
                raise EagerLoadPolymorphicError.new(reflection)
              end

1971
              super(reflection.klass)
1972
              @join_dependency    = join_dependency
1973 1974 1975
              @parent             = parent
              @reflection         = reflection
              @aliased_prefix     = "t#{ join_dependency.joins.size }"
1976
              @parent_table_name  = parent.active_record.table_name
1977
              @aliased_table_name = aliased_table_name_for(table_name)
1978

1979 1980
              if reflection.macro == :has_and_belongs_to_many
                @aliased_join_table_name = aliased_table_name_for(reflection.options[:join_table], "_join")
1981
              end
1982

1983
              if [:has_many, :has_one].include?(reflection.macro) && reflection.options[:through]
1984
                @aliased_join_table_name = aliased_table_name_for(reflection.through_reflection.klass.table_name, "_join")
1985
              end
1986 1987 1988
            end

            def association_join
1989
              connection = reflection.active_record.connection
1990
              join = case reflection.macro
1991
                when :has_and_belongs_to_many
1992
                  " #{join_type} %s ON %s.%s = %s.%s " % [
1993
                     table_alias_for(options[:join_table], aliased_join_table_name),
1994
                     connection.quote_table_name(aliased_join_table_name),
1995
                     options[:foreign_key] || reflection.active_record.to_s.foreign_key,
1996
                     connection.quote_table_name(parent.aliased_table_name),
1997
                     reflection.active_record.primary_key] +
1998
                  " #{join_type} %s ON %s.%s = %s.%s " % [
1999
                     table_name_and_alias,
2000 2001
                     connection.quote_table_name(aliased_table_name),
                     klass.primary_key,
2002
                     connection.quote_table_name(aliased_join_table_name),
2003
                     options[:association_foreign_key] || klass.to_s.foreign_key
2004 2005
                     ]
                when :has_many, :has_one
2006
                  case
2007
                    when reflection.options[:through]
2008
                      through_conditions = through_reflection.options[:conditions] ? "AND #{interpolate_sql(sanitize_sql(through_reflection.options[:conditions]))}" : ''
2009 2010 2011 2012

                      jt_foreign_key = jt_as_extra = jt_source_extra = jt_sti_extra = nil
                      first_key = second_key = as_extra = nil

2013
                      if through_reflection.options[:as] # has_many :through against a polymorphic join
2014 2015
                        jt_foreign_key = through_reflection.options[:as].to_s + '_id'
                        jt_as_extra = " AND %s.%s = %s" % [
2016 2017
                          connection.quote_table_name(aliased_join_table_name),
                          connection.quote_column_name(through_reflection.options[:as].to_s + '_type'),
2018
                          klass.quote_value(parent.active_record.base_class.name)
2019
                        ]
2020
                      else
2021
                        jt_foreign_key = through_reflection.primary_key_name
2022
                      end
2023

2024 2025
                      case source_reflection.macro
                      when :has_many
2026 2027 2028
                        if source_reflection.options[:as]
                          first_key   = "#{source_reflection.options[:as]}_id"
                          second_key  = options[:foreign_key] || primary_key
2029
                          as_extra    = " AND %s.%s = %s" % [
2030 2031
                            connection.quote_table_name(aliased_table_name),
                            connection.quote_column_name("#{source_reflection.options[:as]}_type"),
2032
                            klass.quote_value(source_reflection.active_record.base_class.name)
2033 2034
                          ]
                        else
2035 2036 2037
                          first_key   = through_reflection.klass.base_class.to_s.foreign_key
                          second_key  = options[:foreign_key] || primary_key
                        end
2038

2039 2040
                        unless through_reflection.klass.descends_from_active_record?
                          jt_sti_extra = " AND %s.%s = %s" % [
2041 2042
                            connection.quote_table_name(aliased_join_table_name),
                            connection.quote_column_name(through_reflection.active_record.inheritance_column),
2043
                            through_reflection.klass.quote_value(through_reflection.klass.sti_name)]
2044 2045 2046 2047 2048 2049
                        end
                      when :belongs_to
                        first_key = primary_key
                        if reflection.options[:source_type]
                          second_key = source_reflection.association_foreign_key
                          jt_source_extra = " AND %s.%s = %s" % [
2050 2051
                            connection.quote_table_name(aliased_join_table_name),
                            connection.quote_column_name(reflection.source_reflection.options[:foreign_type]),
2052
                            klass.quote_value(reflection.options[:source_type])
2053
                          ]
2054
                        else
2055
                          second_key = source_reflection.primary_key_name
2056
                        end
2057
                      end
2058

2059
                      " #{join_type} %s ON (%s.%s = %s.%s%s%s%s) " % [
2060
                        table_alias_for(through_reflection.klass.table_name, aliased_join_table_name),
2061
                        connection.quote_table_name(parent.aliased_table_name),
2062
                        connection.quote_column_name(parent.primary_key),
2063
                        connection.quote_table_name(aliased_join_table_name),
2064
                        connection.quote_column_name(jt_foreign_key),
2065 2066
                        jt_as_extra, jt_source_extra, jt_sti_extra
                      ] +
2067
                      " #{join_type} %s ON (%s.%s = %s.%s%s) " % [
2068
                        table_name_and_alias,
2069
                        connection.quote_table_name(aliased_table_name),
2070
                        connection.quote_column_name(first_key),
2071
                        connection.quote_table_name(aliased_join_table_name),
2072
                        connection.quote_column_name(second_key),
2073 2074 2075
                        as_extra
                      ]

2076
                    when reflection.options[:as] && [:has_many, :has_one].include?(reflection.macro)
2077
                      " #{join_type} %s ON %s.%s = %s.%s AND %s.%s = %s" % [
2078
                        table_name_and_alias,
2079
                        connection.quote_table_name(aliased_table_name),
2080
                        "#{reflection.options[:as]}_id",
2081
                        connection.quote_table_name(parent.aliased_table_name),
2082
                        parent.primary_key,
2083
                        connection.quote_table_name(aliased_table_name),
2084
                        "#{reflection.options[:as]}_type",
2085
                        klass.quote_value(parent.active_record.base_class.name)
2086 2087
                      ]
                    else
2088
                      foreign_key = options[:foreign_key] || reflection.active_record.name.foreign_key
2089
                      " #{join_type} %s ON %s.%s = %s.%s " % [
2090
                        table_name_and_alias,
2091
                        aliased_table_name,
2092
                        foreign_key,
2093
                        parent.aliased_table_name,
2094
                        parent.primary_key
2095 2096
                      ]
                  end
2097
                when :belongs_to
2098
                  " #{join_type} %s ON %s.%s = %s.%s " % [
2099
                     table_name_and_alias,
2100 2101
                     connection.quote_table_name(aliased_table_name),
                     reflection.klass.primary_key,
2102
                     connection.quote_table_name(parent.aliased_table_name),
2103
                     options[:foreign_key] || reflection.primary_key_name
2104 2105 2106
                    ]
                else
                  ""
2107
              end || ''
2108 2109
              join << %(AND %s) % [
                klass.send(:type_condition, aliased_table_name)] unless klass.descends_from_active_record?
2110 2111 2112 2113 2114

              [through_reflection, reflection].each do |ref|
                join << "AND #{interpolate_sql(sanitize_sql(ref.options[:conditions]))} " if ref && ref.options[:conditions]
              end

2115
              join
2116
            end
2117

2118
            protected
2119

2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136
              def aliased_table_name_for(name, suffix = nil)
                if !parent.table_joins.blank? && parent.table_joins.to_s.downcase =~ %r{join(\s+\w+)?\s+#{name.downcase}\son}
                  @join_dependency.table_aliases[name] += 1
                end

                unless @join_dependency.table_aliases[name].zero?
                  # if the table name has been used, then use an alias
                  name = active_record.connection.table_alias_for "#{pluralize(reflection.name)}_#{parent_table_name}#{suffix}"
                  table_index = @join_dependency.table_aliases[name]
                  @join_dependency.table_aliases[name] += 1
                  name = name[0..active_record.connection.table_alias_length-3] + "_#{table_index+1}" if table_index > 0
                else
                  @join_dependency.table_aliases[name] += 1
                end

                name
              end
2137

2138 2139 2140
              def pluralize(table_name)
                ActiveRecord::Base.pluralize_table_names ? table_name.to_s.pluralize : table_name
              end
2141

2142
              def table_alias_for(table_name, table_alias)
2143
                 "#{reflection.active_record.connection.quote_table_name(table_name)} #{table_alias if table_name != table_alias}".strip
2144 2145 2146 2147 2148
              end

              def table_name_and_alias
                table_alias_for table_name, @aliased_table_name
              end
2149 2150

              def interpolate_sql(sql)
2151 2152
                instance_eval("%@#{sql.gsub('@', '\@')}@")
              end
2153 2154

            private
2155 2156 2157 2158
              def join_type
                "LEFT OUTER JOIN"
              end
          end
2159 2160 2161 2162 2163 2164 2165 2166 2167
        end

        class InnerJoinDependency < JoinDependency # :nodoc:
          protected
            def build_join_association(reflection, parent)
              InnerJoinAssociation.new(reflection, self, parent)
            end

          class InnerJoinAssociation < JoinAssociation
2168 2169 2170 2171
            private
              def join_type
                "INNER JOIN"
              end
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          end
        end
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    end
D
Initial  
David Heinemeier Hansson 已提交
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  end
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end