base.rb 99.7 KB
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require 'base64'
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require 'yaml'
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require 'set'
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require 'active_record/deprecated_finders'
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module ActiveRecord #:nodoc:
  class ActiveRecordError < StandardError #:nodoc:
  end
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  class SubclassNotFound < ActiveRecordError #:nodoc:
  end
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  class AssociationTypeMismatch < ActiveRecordError #:nodoc:
  end
  class SerializationTypeMismatch < ActiveRecordError #:nodoc:
  end
  class AdapterNotSpecified < ActiveRecordError # :nodoc:
  end
  class AdapterNotFound < ActiveRecordError # :nodoc:
  end
  class ConnectionNotEstablished < ActiveRecordError #:nodoc:
  end
  class ConnectionFailed < ActiveRecordError #:nodoc:
  end
  class RecordNotFound < ActiveRecordError #:nodoc:
  end
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  class RecordNotSaved < ActiveRecordError #:nodoc:
  end
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  class StatementInvalid < ActiveRecordError #:nodoc:
  end
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  class PreparedStatementInvalid < ActiveRecordError #:nodoc:
  end
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  class StaleObjectError < ActiveRecordError #:nodoc:
  end
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  class ConfigurationError < StandardError #:nodoc:
  end
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  class ReadOnlyRecord < StandardError #:nodoc:
  end
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  class Rollback < StandardError #:nodoc:
  end
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  class AttributeAssignmentError < ActiveRecordError #:nodoc:
    attr_reader :exception, :attribute
    def initialize(message, exception, attribute)
      @exception = exception
      @attribute = attribute
      @message = message
    end
  end
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  class MultiparameterAssignmentErrors < ActiveRecordError #:nodoc:
    attr_reader :errors
    def initialize(errors)
      @errors = errors
    end
  end
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  # Active Record objects don't specify their attributes directly, but rather infer them from the table definition with
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  # which they're linked. Adding, removing, and changing attributes and their type is done directly in the database. Any change
  # is instantly reflected in the Active Record objects. The mapping that binds a given Active Record class to a certain
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  # database table will happen automatically in most common cases, but can be overwritten for the uncommon ones.
  #
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  # See the mapping rules in table_name and the full example in link:files/README.html for more insight.
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  #
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  # == Creation
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  #
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  # Active Records accept constructor parameters either in a hash or as a block. The hash method is especially useful when
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  # you're receiving the data from somewhere else, like a HTTP request. It works like this:
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  #
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  #   user = User.new(:name => "David", :occupation => "Code Artist")
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  #   user.name # => "David"
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  #
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  # You can also use block initialization:
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  #
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  #   user = User.new do |u|
  #     u.name = "David"
  #     u.occupation = "Code Artist"
  #   end
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  #
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  # And of course you can just create a bare object and specify the attributes after the fact:
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  #
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  #   user = User.new
  #   user.name = "David"
  #   user.occupation = "Code Artist"
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  #
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  # == Conditions
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  #
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  # Conditions can either be specified as a string, array, or hash representing the WHERE-part of an SQL statement.
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  # The array form is to be used when the condition input is tainted and requires sanitization. The string form can
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  # be used for statements that don't involve tainted data. The hash form works much like the array form, except
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  # only equality and range is possible. Examples:
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  #
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  #   class User < ActiveRecord::Base
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  #     def self.authenticate_unsafely(user_name, password)
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  #       find(:first, :conditions => "user_name = '#{user_name}' AND password = '#{password}'")
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  #     end
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  #
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  #     def self.authenticate_safely(user_name, password)
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  #       find(:first, :conditions => [ "user_name = ? AND password = ?", user_name, password ])
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  #     end
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  #
  #     def self.authenticate_safely_simply(user_name, password)
  #       find(:first, :conditions => { :user_name => user_name, :password => password })
  #     end
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  #   end
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  #
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  # The <tt>authenticate_unsafely</tt> method inserts the parameters directly into the query and is thus susceptible to SQL-injection
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  # attacks if the <tt>user_name</tt> and +password+ parameters come directly from a HTTP request. The <tt>authenticate_safely</tt>  and
  # <tt>authenticate_safely_simply</tt> both will sanitize the <tt>user_name</tt> and +password+ before inserting them in the query, 
  # which will ensure that an attacker can't escape the query and fake the login (or worse).
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  #
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  # When using multiple parameters in the conditions, it can easily become hard to read exactly what the fourth or fifth
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  # question mark is supposed to represent. In those cases, you can resort to named bind variables instead. That's done by replacing
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  # the question marks with symbols and supplying a hash with values for the matching symbol keys:
  #
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  #   Company.find(:first, [
  #     "id = :id AND name = :name AND division = :division AND created_at > :accounting_date",
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  #     { :id => 3, :name => "37signals", :division => "First", :accounting_date => '2005-01-01' }
  #   ])
  #
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  # Similarly, a simple hash without a statement will generate conditions based on equality with the SQL AND
  # operator. For instance:
  #
  #   Student.find(:all, :conditions => { :first_name => "Harvey", :status => 1 })
  #   Student.find(:all, :conditions => params[:student])
  #
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  # A range may be used in the hash to use the SQL BETWEEN operator:
  #
  #   Student.find(:all, :conditions => { :grade => 9..12 })
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  #
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  # == Overwriting default accessors
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  #
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  # All column values are automatically available through basic accessors on the Active Record object, but some times you
  # want to specialize this behavior. This can be done by either by overwriting the default accessors (using the same
  # name as the attribute) calling read_attribute(attr_name) and write_attribute(attr_name, value) to actually change things.
  # Example:
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  #
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  #   class Song < ActiveRecord::Base
  #     # Uses an integer of seconds to hold the length of the song
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  #
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  #     def length=(minutes)
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  #       write_attribute(:length, minutes * 60)
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  #     end
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  #
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  #     def length
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  #       read_attribute(:length) / 60
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  #     end
  #   end
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  #
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  # You can alternatively use self[:attribute]=(value) and self[:attribute] instead of write_attribute(:attribute, vaule) and
  # read_attribute(:attribute) as a shorter form.
  #
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  # == Accessing attributes before they have been typecasted
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  #
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  # Sometimes you want to be able to read the raw attribute data without having the column-determined typecast run its course first.
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  # That can be done by using the <attribute>_before_type_cast accessors that all attributes have. For example, if your Account model
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  # has a balance attribute, you can call account.balance_before_type_cast or account.id_before_type_cast.
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  #
  # This is especially useful in validation situations where the user might supply a string for an integer field and you want to display
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  # the original string back in an error message. Accessing the attribute normally would typecast the string to 0, which isn't what you
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  # want.
  #
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  # == Dynamic attribute-based finders
  #
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  # Dynamic attribute-based finders are a cleaner way of getting (and/or creating) objects by simple queries without turning to SQL. They work by
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  # appending the name of an attribute to <tt>find_by_</tt> or <tt>find_all_by_</tt>, so you get finders like Person.find_by_user_name,
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  # Person.find_all_by_last_name, Payment.find_by_transaction_id. So instead of writing
  # <tt>Person.find(:first, ["user_name = ?", user_name])</tt>, you just do <tt>Person.find_by_user_name(user_name)</tt>.
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  # And instead of writing <tt>Person.find(:all, ["last_name = ?", last_name])</tt>, you just do <tt>Person.find_all_by_last_name(last_name)</tt>.
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  #
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  # It's also possible to use multiple attributes in the same find by separating them with "_and_", so you get finders like
  # <tt>Person.find_by_user_name_and_password</tt> or even <tt>Payment.find_by_purchaser_and_state_and_country</tt>. So instead of writing
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  # <tt>Person.find(:first, ["user_name = ? AND password = ?", user_name, password])</tt>, you just do
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  # <tt>Person.find_by_user_name_and_password(user_name, password)</tt>.
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  #
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  # It's even possible to use all the additional parameters to find. For example, the full interface for Payment.find_all_by_amount
  # is actually Payment.find_all_by_amount(amount, options). And the full interface to Person.find_by_user_name is
  # actually Person.find_by_user_name(user_name, options). So you could call <tt>Payment.find_all_by_amount(50, :order => "created_on")</tt>.
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  #
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  # The same dynamic finder style can be used to create the object if it doesn't already exist. This dynamic finder is called with
  # <tt>find_or_create_by_</tt> and will return the object if it already exists and otherwise creates it, then returns it. Example:
  #
  #   # No 'Summer' tag exists
  #   Tag.find_or_create_by_name("Summer") # equal to Tag.create(:name => "Summer")
  #   
  #   # Now the 'Summer' tag does exist
  #   Tag.find_or_create_by_name("Summer") # equal to Tag.find_by_name("Summer")
  #
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  # Use the <tt>find_or_initialize_by_</tt> finder if you want to return a new record without saving it first. Example:
  #
  #   # No 'Winter' tag exists
  #   winter = Tag.find_or_initialize_by_name("Winter")
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  #   winter.new_record? # true
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  #
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  # To find by a subset of the attributes to be used for instantiating a new object, pass a hash instead of
  # a list of parameters. For example:
  #
  #   Tag.find_or_create_by_name(:name => "rails", :creator => current_user)
  #
  # That will either find an existing tag named "rails", or create a new one while setting the user that created it.
  #
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  # == Saving arrays, hashes, and other non-mappable objects in text columns
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  #
  # Active Record can serialize any object in text columns using YAML. To do so, you must specify this with a call to the class method +serialize+.
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  # This makes it possible to store arrays, hashes, and other non-mappable objects without doing any additional work. Example:
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  #
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  #   class User < ActiveRecord::Base
  #     serialize :preferences
  #   end
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  #
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  #   user = User.create(:preferences => { "background" => "black", "display" => large })
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  #   User.find(user.id).preferences # => { "background" => "black", "display" => large }
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  #
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  # You can also specify a class option as the second parameter that'll raise an exception if a serialized object is retrieved as a
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  # descendent of a class not in the hierarchy. Example:
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  #
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  #   class User < ActiveRecord::Base
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  #     serialize :preferences, Hash
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  #   end
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  #
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  #   user = User.create(:preferences => %w( one two three ))
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  #   User.find(user.id).preferences    # raises SerializationTypeMismatch
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  #
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  # == Single table inheritance
  #
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  # Active Record allows inheritance by storing the name of the class in a column that by default is called "type" (can be changed
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  # by overwriting <tt>Base.inheritance_column</tt>). This means that an inheritance looking like this:
  #
  #   class Company < ActiveRecord::Base; end
  #   class Firm < Company; end
  #   class Client < Company; end
  #   class PriorityClient < Client; end
  #
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  # When you do Firm.create(:name => "37signals"), this record will be saved in the companies table with type = "Firm". You can then
  # fetch this row again using Company.find(:first, "name = '37signals'") and it will return a Firm object.
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  #
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  # If you don't have a type column defined in your table, single-table inheritance won't be triggered. In that case, it'll work just
  # like normal subclasses with no special magic for differentiating between them or reloading the right type with find.
  #
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  # Note, all the attributes for all the cases are kept in the same table. Read more:
  # http://www.martinfowler.com/eaaCatalog/singleTableInheritance.html
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  #
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  # == Connection to multiple databases in different models
  #
  # Connections are usually created through ActiveRecord::Base.establish_connection and retrieved by ActiveRecord::Base.connection.
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  # All classes inheriting from ActiveRecord::Base will use this connection. But you can also set a class-specific connection.
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  # For example, if Course is a ActiveRecord::Base, but resides in a different database you can just say Course.establish_connection
  # and Course *and all its subclasses* will use this connection instead.
  #
  # This feature is implemented by keeping a connection pool in ActiveRecord::Base that is a Hash indexed by the class. If a connection is
  # requested, the retrieve_connection method will go up the class-hierarchy until a connection is found in the connection pool.
  #
  # == Exceptions
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  #
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  # * +ActiveRecordError+ -- generic error class and superclass of all other errors raised by Active Record
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  # * +AdapterNotSpecified+ -- the configuration hash used in <tt>establish_connection</tt> didn't include a
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  #   <tt>:adapter</tt> key.
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  # * +AdapterNotFound+ -- the <tt>:adapter</tt> key used in <tt>establish_connection</tt> specified an non-existent adapter
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  #   (or a bad spelling of an existing one).
  # * +AssociationTypeMismatch+ -- the object assigned to the association wasn't of the type specified in the association definition.
  # * +SerializationTypeMismatch+ -- the object serialized wasn't of the class specified as the second parameter.
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  # * +ConnectionNotEstablished+ -- no connection has been established. Use <tt>establish_connection</tt> before querying.
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  # * +RecordNotFound+ -- no record responded to the find* method.
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  #   Either the row with the given ID doesn't exist or the row didn't meet the additional restrictions.
  # * +StatementInvalid+ -- the database server rejected the SQL statement. The precise error is added in the  message.
  #   Either the record with the given ID doesn't exist or the record didn't meet the additional restrictions.
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  # * +MultiparameterAssignmentErrors+ -- collection of errors that occurred during a mass assignment using the
  #   +attributes=+ method. The +errors+ property of this exception contains an array of +AttributeAssignmentError+
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  #   objects that should be inspected to determine which attributes triggered the errors.
  # * +AttributeAssignmentError+ -- an error occurred while doing a mass assignment through the +attributes=+ method.
  #   You can inspect the +attribute+ property of the exception object to determine which attribute triggered the error.
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  #
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  # *Note*: The attributes listed are class-level attributes (accessible from both the class and instance level).
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  # So it's possible to assign a logger to the class through Base.logger= which will then be used by all
  # instances in the current object space.
  class Base
    # Accepts a logger conforming to the interface of Log4r or the default Ruby 1.8+ Logger class, which is then passed
    # on to any new database connections made and which can be retrieved on both a class and instance level by calling +logger+.
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    cattr_accessor :logger, :instance_writer => false
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    include Reloadable::Deprecated
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    def self.inherited(child) #:nodoc:
      @@subclasses[self] ||= []
      @@subclasses[self] << child
      super
    end
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    def self.reset_subclasses #:nodoc:
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      nonreloadables = []
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      subclasses.each do |klass|
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        unless Dependencies.autoloaded? klass
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          nonreloadables << klass
          next
        end
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        klass.instance_variables.each { |var| klass.send(:remove_instance_variable, var) }
        klass.instance_methods(false).each { |m| klass.send :undef_method, m }
      end
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      @@subclasses = {}
      nonreloadables.each { |klass| (@@subclasses[klass.superclass] ||= []) << klass }
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    end

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    @@subclasses = {}
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    cattr_accessor :configurations, :instance_writer => false
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    @@configurations = {}

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    # Accessor for the prefix type that will be prepended to every primary key column name. The options are :table_name and
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    # :table_name_with_underscore. If the first is specified, the Product class will look for "productid" instead of "id" as
    # the primary column. If the latter is specified, the Product class will look for "product_id" instead of "id". Remember
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    # that this is a global setting for all Active Records.
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    cattr_accessor :primary_key_prefix_type, :instance_writer => false
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    @@primary_key_prefix_type = nil

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    # Accessor for the name of the prefix string to prepend to every table name. So if set to "basecamp_", all
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    # table names will be named like "basecamp_projects", "basecamp_people", etc. This is a convenient way of creating a namespace
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    # for tables in a shared database. By default, the prefix is the empty string.
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    cattr_accessor :table_name_prefix, :instance_writer => false
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    @@table_name_prefix = ""

    # Works like +table_name_prefix+, but appends instead of prepends (set to "_basecamp" gives "projects_basecamp",
    # "people_basecamp"). By default, the suffix is the empty string.
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    cattr_accessor :table_name_suffix, :instance_writer => false
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    @@table_name_suffix = ""

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    # Indicates whether or not table names should be the pluralized versions of the corresponding class names.
    # If true, the default table name for a +Product+ class will be +products+. If false, it would just be +product+.
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    # See table_name for the full rules on table/class naming. This is true, by default.
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    cattr_accessor :pluralize_table_names, :instance_writer => false
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    @@pluralize_table_names = true

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    # Determines whether or not to use ANSI codes to colorize the logging statements committed by the connection adapter. These colors
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    # make it much easier to overview things during debugging (when used through a reader like +tail+ and on a black background), but
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    # may complicate matters if you use software like syslog. This is true, by default.
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    cattr_accessor :colorize_logging, :instance_writer => false
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    @@colorize_logging = true

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    # Determines whether to use Time.local (using :local) or Time.utc (using :utc) when pulling dates and times from the database.
    # This is set to :local by default.
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    cattr_accessor :default_timezone, :instance_writer => false
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    @@default_timezone = :local
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    # Determines whether or not to use a connection for each thread, or a single shared connection for all threads.
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    # Defaults to false. Set to true if you're writing a threaded application.
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    cattr_accessor :allow_concurrency, :instance_writer => false
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    @@allow_concurrency = false
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    # Determines whether to speed up access by generating optimized reader
    # methods to avoid expensive calls to method_missing when accessing
    # attributes by name. You might want to set this to false in development
    # mode, because the methods would be regenerated on each request.
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    cattr_accessor :generate_read_methods, :instance_writer => false
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    @@generate_read_methods = true
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    # Specifies the format to use when dumping the database schema with Rails'
    # Rakefile.  If :sql, the schema is dumped as (potentially database-
    # specific) SQL statements.  If :ruby, the schema is dumped as an 
    # ActiveRecord::Schema file which can be loaded into any database that
    # supports migrations.  Use :ruby if you want to have different database
    # adapters for, e.g., your development and test environments.
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    cattr_accessor :schema_format , :instance_writer => false
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    @@schema_format = :ruby
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    class << self # Class methods
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      # Find operates with three different retrieval approaches:
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      #
      # * Find by id: This can either be a specific id (1), a list of ids (1, 5, 6), or an array of ids ([5, 6, 10]).
      #   If no record can be found for all of the listed ids, then RecordNotFound will be raised.
      # * Find first: This will return the first record matched by the options used. These options can either be specific
      #   conditions or merely an order. If no record can matched, nil is returned.
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      # * Find all: This will return all the records matched by the options used. If no records are found, an empty array is returned.
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      #
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      # All approaches accept an option hash as their last parameter. The options are:
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      #
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      # * <tt>:conditions</tt>: An SQL fragment like "administrator = 1" or [ "user_name = ?", username ]. See conditions in the intro.
      # * <tt>:order</tt>: An SQL fragment like "created_at DESC, name".
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      # * <tt>:group</tt>: An attribute name by which the result should be grouped. Uses the GROUP BY SQL-clause.
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      # * <tt>:limit</tt>: An integer determining the limit on the number of rows that should be returned.
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      # * <tt>:offset</tt>: An integer determining the offset from where the rows should be fetched. So at 5, it would skip rows 0 through 4.
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      # * <tt>:joins</tt>: An SQL fragment for additional joins like "LEFT JOIN comments ON comments.post_id = id". (Rarely needed).
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      #   The records will be returned read-only since they will have attributes that do not correspond to the table's columns.
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      #   Pass :readonly => false to override.
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      # * <tt>:include</tt>: Names associations that should be loaded alongside using LEFT OUTER JOINs. The symbols named refer
      #   to already defined associations. See eager loading under Associations.
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      # * <tt>:select</tt>: By default, this is * as in SELECT * FROM, but can be changed if you for example want to do a join, but not
      #   include the joined columns.
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      # * <tt>:from</tt>: By default, this is the table name of the class, but can be changed to an alternate table name (or even the name
      #   of a database view). 
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      # * <tt>:readonly</tt>: Mark the returned records read-only so they cannot be saved or updated.
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      # * <tt>:lock</tt>: An SQL fragment like "FOR UPDATE" or "LOCK IN SHARE MODE".
      #   :lock => true gives connection's default exclusive lock, usually "FOR UPDATE".
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      #
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      # Examples for find by id:
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      #   Person.find(1)       # returns the object for ID = 1
      #   Person.find(1, 2, 6) # returns an array for objects with IDs in (1, 2, 6)
      #   Person.find([7, 17]) # returns an array for objects with IDs in (7, 17)
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      #   Person.find([1])     # returns an array for objects the object with ID = 1
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      #   Person.find(1, :conditions => "administrator = 1", :order => "created_on DESC")
      #
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      # Note that returned records may not be in the same order as the ids you
      # provide since database rows are unordered. Give an explicit :order
      # to ensure the results are sorted.
      #
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      # Examples for find first:
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      #   Person.find(:first) # returns the first object fetched by SELECT * FROM people
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      #   Person.find(:first, :conditions => [ "user_name = ?", user_name])
      #   Person.find(:first, :order => "created_on DESC", :offset => 5)
      #
      # Examples for find all:
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      #   Person.find(:all) # returns an array of objects for all the rows fetched by SELECT * FROM people
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      #   Person.find(:all, :conditions => [ "category IN (?)", categories], :limit => 50)
      #   Person.find(:all, :offset => 10, :limit => 10)
      #   Person.find(:all, :include => [ :account, :friends ])
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      #   Person.find(:all, :group => "category")
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      #
      # Example for find with a lock. Imagine two concurrent transactions:
      # each will read person.visits == 2, add 1 to it, and save, resulting
      # in two saves of person.visits = 3.  By locking the row, the second
      # transaction has to wait until the first is finished; we get the
      # expected person.visits == 4.
      #   Person.transaction do
      #     person = Person.find(1, :lock => true)
      #     person.visits += 1
      #     person.save!
      #   end
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      def find(*args)
        options = extract_options_from_args!(args)
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        validate_find_options(options)
        set_readonly_option!(options)
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        case args.first
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          when :first then find_initial(options)
          when :all   then find_every(options)
          else             find_from_ids(args, options)
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        end
      end
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      # Works like find(:all), but requires a complete SQL string. Examples:
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      #   Post.find_by_sql "SELECT p.*, c.author FROM posts p, comments c WHERE p.id = c.post_id"
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      #   Post.find_by_sql ["SELECT * FROM posts WHERE author = ? AND created > ?", author_id, start_date]
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      def find_by_sql(sql)
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        connection.select_all(sanitize_sql(sql), "#{name} Load").collect! { |record| instantiate(record) }
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      end
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      # Returns true if the given +id+ represents the primary key of a record in the database, false otherwise.
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      # You can also pass a set of SQL conditions. 
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      # Example:
      #   Person.exists?(5)
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      #   Person.exists?('5')
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      #   Person.exists?(:name => "David")
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      #   Person.exists?(['name LIKE ?', "%#{query}%"])
      def exists?(id_or_conditions)
        !find(:first, :conditions => expand_id_conditions(id_or_conditions)).nil?
      rescue ActiveRecord::ActiveRecordError
        false
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      end
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      # Creates an object, instantly saves it as a record (if the validation permits it), and returns it. If the save
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      # fails under validations, the unsaved object is still returned.
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      def create(attributes = nil)
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        if attributes.is_a?(Array)
          attributes.collect { |attr| create(attr) }
        else
          object = new(attributes)
          object.save
          object
        end
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      end

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      # Finds the record from the passed +id+, instantly saves it with the passed +attributes+ (if the validation permits it),
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      # and returns it. If the save fails under validations, the unsaved object is still returned.
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      #
      # The arguments may also be given as arrays in which case the update method is called for each pair of +id+ and 
      # +attributes+ and an array of objects is returned.
      #
      # Example of updating one record:
      #   Person.update(15, {:user_name => 'Samuel', :group => 'expert'})
      # 
      # Example of updating multiple records:
      #   people = { 1 => { "first_name" => "David" }, 2 => { "first_name" => "Jeremy"} } 	
      #   Person.update(people.keys, people.values)
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      def update(id, attributes)
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        if id.is_a?(Array)
          idx = -1
          id.collect { |id| idx += 1; update(id, attributes[idx]) }
        else
          object = find(id)
          object.update_attributes(attributes)
          object
        end
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      end

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      # Deletes the record with the given +id+ without instantiating an object first. If an array of ids is provided, all of them
      # are deleted.
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      def delete(id)
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        delete_all([ "#{connection.quote_column_name(primary_key)} IN (?)", id ])
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      end
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      # Destroys the record with the given +id+ by instantiating the object and calling #destroy (all the callbacks are the triggered).
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      # If an array of ids is provided, all of them are destroyed.
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      def destroy(id)
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        id.is_a?(Array) ? id.each { |id| destroy(id) } : find(id).destroy
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      end

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      # Updates all records with the SET-part of an SQL update statement in +updates+ and returns an integer with the number of rows updated.
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      # A subset of the records can be selected by specifying +conditions+. Example:
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      #   Billing.update_all "category = 'authorized', approved = 1", "author = 'David'"
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      #
      # Optional :order and :limit options may be given as the third parameter,
      # but their behavior is database-specific.
      def update_all(updates, conditions = nil, options = {})
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        sql  = "UPDATE #{table_name} SET #{sanitize_sql_for_assignment(updates)} "
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        scope = scope(:find)
        add_conditions!(sql, conditions, scope)
        add_order!(sql, options[:order], scope)
        add_limit!(sql, options, scope)
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        connection.update(sql, "#{name} Update")
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      end
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      # Destroys the objects for all the records that match the +condition+ by instantiating each object and calling
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      # the destroy method. Example:
      #   Person.destroy_all "last_login < '2004-04-04'"
      def destroy_all(conditions = nil)
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        find(:all, :conditions => conditions).each { |object| object.destroy }
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      end
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      # Deletes all the records that match the +condition+ without instantiating the objects first (and hence not
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      # calling the destroy method). Example:
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      #   Post.delete_all "person_id = 5 AND (category = 'Something' OR category = 'Else')"
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      def delete_all(conditions = nil)
        sql = "DELETE FROM #{table_name} "
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        add_conditions!(sql, conditions, scope(:find))
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        connection.delete(sql, "#{name} Delete all")
      end

      # Returns the result of an SQL statement that should only include a COUNT(*) in the SELECT part.
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      # The use of this method should be restricted to complicated SQL queries that can't be executed 
      # using the ActiveRecord::Calculations class methods.  Look into those before using this.
      #
      # ==== Options
      # 
      # +sql+: An SQL statement which should return a count query from the database, see the example below
      #
      # ==== Examples
      #
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      #   Product.count_by_sql "SELECT COUNT(*) FROM sales s, customers c WHERE s.customer_id = c.id"
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      def count_by_sql(sql)
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        sql = sanitize_conditions(sql)
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        connection.select_value(sql, "#{name} Count").to_i
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      end
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      # A generic "counter updater" implementation, intended primarily to be
      # used by increment_counter and decrement_counter, but which may also
      # be useful on its own. It simply does a direct SQL update for the record
      # with the given ID, altering the given hash of counters by the amount
      # given by the corresponding value:
      #
      #   Post.update_counters 5, :comment_count => -1, :action_count => 1
      #   # UPDATE posts
      #   #    SET comment_count = comment_count - 1,
      #   #        action_count = action_count + 1
      #   #  WHERE id = 5
      def update_counters(id, counters)
        updates = counters.inject([]) { |list, (counter_name, increment)|
          sign = increment < 0 ? "-" : "+"
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          list << "#{connection.quote_column_name(counter_name)} = #{connection.quote_column_name(counter_name)} #{sign} #{increment.abs}"
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        }.join(", ")
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        update_all(updates, "#{connection.quote_column_name(primary_key)} = #{quote_value(id)}")
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      end

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      # Increment a number field by one, usually representing a count.
      #
      # This is used for caching aggregate values, so that they don't need to be computed every time. 
      # For example, a DiscussionBoard may cache post_count and comment_count otherwise every time the board is 
      # shown it would have to run a SQL query to find how many posts and comments there are.
      #
      # ==== Options
      #
      # +counter_name+  The name of the field that should be incremented
      # +id+            The id of the object that should be incremented
      #
      # ==== Examples
      #
      #   # Increment the post_count column for the record with an id of 5
      #   DiscussionBoard.increment_counter(:post_count, 5)
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      def increment_counter(counter_name, id)
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        update_counters(id, counter_name => 1)
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      end

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      # Decrement a number field by one, usually representing a count.
      #
      # This works the same as increment_counter but reduces the column value by 1 instead of increasing it.
      #
      # ==== Options
      #
      # +counter_name+  The name of the field that should be decremented
      # +id+            The id of the object that should be decremented
      #
      # ==== Examples
      #
      #   # Decrement the post_count column for the record with an id of 5
      #   DiscussionBoard.decrement_counter(:post_count, 5)
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      def decrement_counter(counter_name, id)
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        update_counters(id, counter_name => -1)
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      end

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      # Attributes named in this macro are protected from mass-assignment, such as <tt>new(attributes)</tt> and
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      # <tt>attributes=(attributes)</tt>. Their assignment will simply be ignored. Instead, you can use the direct writer
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      # methods to do assignment. This is meant to protect sensitive attributes from being overwritten by URL/form hackers. Example:
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      #
      #   class Customer < ActiveRecord::Base
      #     attr_protected :credit_rating
      #   end
      #
      #   customer = Customer.new("name" => David, "credit_rating" => "Excellent")
      #   customer.credit_rating # => nil
      #   customer.attributes = { "description" => "Jolly fellow", "credit_rating" => "Superb" }
      #   customer.credit_rating # => nil
      #
      #   customer.credit_rating = "Average"
      #   customer.credit_rating # => "Average"
      def attr_protected(*attributes)
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        write_inheritable_array("attr_protected", attributes - (protected_attributes || []))
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      end
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      # Returns an array of all the attributes that have been protected from mass-assignment.
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      def protected_attributes # :nodoc:
        read_inheritable_attribute("attr_protected")
      end

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      # If this macro is used, only those attributes named in it will be accessible for mass-assignment, such as
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      # <tt>new(attributes)</tt> and <tt>attributes=(attributes)</tt>. This is the more conservative choice for mass-assignment
      # protection. If you'd rather start from an all-open default and restrict attributes as needed, have a look at
      # attr_protected.
      def attr_accessible(*attributes)
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        write_inheritable_array("attr_accessible", attributes - (accessible_attributes || []))
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      end
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      # Returns an array of all the attributes that have been made accessible to mass-assignment.
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      def accessible_attributes # :nodoc:
        read_inheritable_attribute("attr_accessible")
      end

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      # Specifies that the attribute by the name of +attr_name+ should be serialized before saving to the database and unserialized
      # after loading from the database. The serialization is done through YAML. If +class_name+ is specified, the serialized
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      # object must be of that class on retrieval or +SerializationTypeMismatch+ will be raised.
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      def serialize(attr_name, class_name = Object)
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        serialized_attributes[attr_name.to_s] = class_name
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      end
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      # Returns a hash of all the attributes that have been specified for serialization as keys and their class restriction as values.
      def serialized_attributes
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        read_inheritable_attribute("attr_serialized") or write_inheritable_attribute("attr_serialized", {})
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      end

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      # Guesses the table name (in forced lower-case) based on the name of the class in the inheritance hierarchy descending
      # directly from ActiveRecord. So if the hierarchy looks like: Reply < Message < ActiveRecord, then Message is used
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      # to guess the table name from even when called on Reply. The rules used to do the guess are handled by the Inflector class
      # in Active Support, which knows almost all common English inflections (report a bug if your inflection isn't covered).
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      #
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      # Nested classes are given table names prefixed by the singular form of
      # the parent's table name. Example:
      #   file                  class               table_name
      #   invoice.rb            Invoice             invoices
      #   invoice/lineitem.rb   Invoice::Lineitem   invoice_lineitems
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      #
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      # Additionally, the class-level table_name_prefix is prepended and the
      # table_name_suffix is appended.  So if you have "myapp_" as a prefix,
      # the table name guess for an Invoice class becomes "myapp_invoices".
      # Invoice::Lineitem becomes "myapp_invoice_lineitems".
      #
      # You can also overwrite this class method to allow for unguessable
      # links, such as a Mouse class with a link to a "mice" table. Example:
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      #
      #   class Mouse < ActiveRecord::Base
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      #     set_table_name "mice"
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      #   end
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      def table_name
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        reset_table_name
      end

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      def reset_table_name #:nodoc:
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        base = base_class

        name =
          # STI subclasses always use their superclass' table.
          unless self == base
            base.table_name
          else
            # Nested classes are prefixed with singular parent table name.
            if parent < ActiveRecord::Base && !parent.abstract_class?
              contained = parent.table_name
              contained = contained.singularize if parent.pluralize_table_names
              contained << '_'
            end
            name = "#{table_name_prefix}#{contained}#{undecorated_table_name(base.name)}#{table_name_suffix}"
          end

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        set_table_name(name)
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        name
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      end

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      # Defines the primary key field -- can be overridden in subclasses. Overwriting will negate any effect of the
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      # primary_key_prefix_type setting, though.
      def primary_key
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        reset_primary_key
      end

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      def reset_primary_key #:nodoc:
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        key = 'id'
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        case primary_key_prefix_type
          when :table_name
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            key = Inflector.foreign_key(base_class.name, false)
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          when :table_name_with_underscore
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            key = Inflector.foreign_key(base_class.name)
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        end
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        set_primary_key(key)
        key
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      end

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      # Defines the column name for use with single table inheritance
      # -- can be set in subclasses like so: self.inheritance_column = "type_id"
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      def inheritance_column
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        @inheritance_column ||= "type".freeze
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      end

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      # Lazy-set the sequence name to the connection's default.  This method
      # is only ever called once since set_sequence_name overrides it.
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      def sequence_name #:nodoc:
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        reset_sequence_name
      end

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      def reset_sequence_name #:nodoc:
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        default = connection.default_sequence_name(table_name, primary_key)
        set_sequence_name(default)
        default
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      end

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      # Sets the table name to use to the given value, or (if the value
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      # is nil or false) to the value returned by the given block.
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      #
      # Example:
      #
      #   class Project < ActiveRecord::Base
      #     set_table_name "project"
      #   end
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      def set_table_name(value = nil, &block)
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        define_attr_method :table_name, value, &block
      end
      alias :table_name= :set_table_name

      # Sets the name of the primary key column to use to the given value,
      # or (if the value is nil or false) to the value returned by the given
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      # block.
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      #
      # Example:
      #
      #   class Project < ActiveRecord::Base
      #     set_primary_key "sysid"
      #   end
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      def set_primary_key(value = nil, &block)
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        define_attr_method :primary_key, value, &block
      end
      alias :primary_key= :set_primary_key

      # Sets the name of the inheritance column to use to the given value,
      # or (if the value # is nil or false) to the value returned by the
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      # given block.
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      #
      # Example:
      #
      #   class Project < ActiveRecord::Base
      #     set_inheritance_column do
      #       original_inheritance_column + "_id"
      #     end
      #   end
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      def set_inheritance_column(value = nil, &block)
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        define_attr_method :inheritance_column, value, &block
      end
      alias :inheritance_column= :set_inheritance_column

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      # Sets the name of the sequence to use when generating ids to the given
      # value, or (if the value is nil or false) to the value returned by the
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      # given block. This is required for Oracle and is useful for any
      # database which relies on sequences for primary key generation.
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      #
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      # If a sequence name is not explicitly set when using Oracle or Firebird,
      # it will default to the commonly used pattern of: #{table_name}_seq
      #
      # If a sequence name is not explicitly set when using PostgreSQL, it
      # will discover the sequence corresponding to your primary key for you.
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      #
      # Example:
      #
      #   class Project < ActiveRecord::Base
      #     set_sequence_name "projectseq"   # default would have been "project_seq"
      #   end
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      def set_sequence_name(value = nil, &block)
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        define_attr_method :sequence_name, value, &block
      end
      alias :sequence_name= :set_sequence_name

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      # Turns the +table_name+ back into a class name following the reverse rules of +table_name+.
      def class_name(table_name = table_name) # :nodoc:
        # remove any prefix and/or suffix from the table name
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        class_name = table_name[table_name_prefix.length..-(table_name_suffix.length + 1)].camelize
        class_name = class_name.singularize if pluralize_table_names
        class_name
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      end

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      # Indicates whether the table associated with this class exists
      def table_exists?
        if connection.respond_to?(:tables)
          connection.tables.include? table_name
        else
          # if the connection adapter hasn't implemented tables, there are two crude tests that can be
          # used - see if getting column info raises an error, or if the number of columns returned is zero
          begin
            reset_column_information
            columns.size > 0
          rescue ActiveRecord::StatementInvalid
            false
          end          
        end
      end

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      # Returns an array of column objects for the table associated with this class.
      def columns
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        unless @columns
          @columns = connection.columns(table_name, "#{name} Columns")
          @columns.each {|column| column.primary = column.name == primary_key}
        end
        @columns
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      end
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      # Returns a hash of column objects for the table associated with this class.
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      def columns_hash
        @columns_hash ||= columns.inject({}) { |hash, column| hash[column.name] = column; hash }
      end
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      # Returns an array of column names as strings.
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      def column_names
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        @column_names ||= columns.map { |column| column.name }
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      end
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      # Returns an array of column objects where the primary id, all columns ending in "_id" or "_count",
      # and columns used for single table inheritance have been removed.
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      def content_columns
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        @content_columns ||= columns.reject { |c| c.primary || c.name =~ /(_id|_count)$/ || c.name == inheritance_column }
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      end

      # Returns a hash of all the methods added to query each of the columns in the table with the name of the method as the key
      # and true as the value. This makes it possible to do O(1) lookups in respond_to? to check if a given method for attribute
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      # is available.
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      def column_methods_hash #:nodoc:
857
        @dynamic_methods_hash ||= column_names.inject(Hash.new(false)) do |methods, attr|
858 859 860 861 862
          attr_name = attr.to_s
          methods[attr.to_sym]       = attr_name
          methods["#{attr}=".to_sym] = attr_name
          methods["#{attr}?".to_sym] = attr_name
          methods["#{attr}_before_type_cast".to_sym] = attr_name
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          methods
        end
      end
866

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      # Contains the names of the generated reader methods.
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      def read_methods #:nodoc:
869
        @read_methods ||= Set.new
870
      end
871

872
      # Resets all the cached information about columns, which will cause them to be reloaded on the next request.
873
      def reset_column_information
874
        read_methods.each { |name| undef_method(name) }
875
        @column_names = @columns = @columns_hash = @content_columns = @dynamic_methods_hash = @read_methods = @inheritance_column = nil
876 877
      end

878
      def reset_column_information_and_inheritable_attributes_for_all_subclasses#:nodoc:
879 880
        subclasses.each { |klass| klass.reset_inheritable_attributes; klass.reset_column_information }
      end
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      # Transforms attribute key names into a more humane format, such as "First name" instead of "first_name". Example:
      #   Person.human_attribute_name("first_name") # => "First name"
884 885
      # Deprecated in favor of just calling "first_name".humanize
      def human_attribute_name(attribute_key_name) #:nodoc:
886
        attribute_key_name.humanize
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      end
888

889 890 891 892 893 894 895
      # True if this isn't a concrete subclass needing a STI type condition.
      def descends_from_active_record?
        if superclass.abstract_class?
          superclass.descends_from_active_record?
        else
          superclass == Base || !columns_hash.include?(inheritance_column)
        end
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      end

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      # Returns a string looking like: #<Post id:integer, title:string, body:text>
      def inspect
900
        "#<#{name} #{columns.collect { |c| "#{c.name}: #{c.type}" }.join(", ")}>"
901 902
      end

903 904

      def quote_value(value, column = nil) #:nodoc:
905
        connection.quote(value,column)
906 907
      end

908 909 910
      def quote(value, column = nil) #:nodoc:
        connection.quote(value, column)
      end
911
      deprecate :quote => :quote_value
912

913
      # Used to sanitize objects before they're used in an SELECT SQL-statement. Delegates to <tt>connection.quote</tt>.
914
      def sanitize(object) #:nodoc:
915
        connection.quote(object)
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      end

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      # Log and benchmark multiple statements in a single block. Example:
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      #
      #   Project.benchmark("Creating project") do
      #     project = Project.create("name" => "stuff")
      #     project.create_manager("name" => "David")
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      #     project.milestones << Milestone.find(:all)
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      #   end
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      #
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      # The benchmark is only recorded if the current level of the logger matches the <tt>log_level</tt>, which makes it
      # easy to include benchmarking statements in production software that will remain inexpensive because the benchmark
      # will only be conducted if the log level is low enough.
      #
930
      # The logging of the multiple statements is turned off unless <tt>use_silence</tt> is set to false.
931 932
      def benchmark(title, log_level = Logger::DEBUG, use_silence = true)
        if logger && logger.level == log_level
933 934
          result = nil
          seconds = Benchmark.realtime { result = use_silence ? silence { yield } : yield }
935
          logger.add(log_level, "#{title} (#{'%.5f' % seconds})")
936 937 938 939
          result
        else
          yield
        end
940
      end
941

942 943
      # Silences the logger for the duration of the block.
      def silence
944 945 946
        old_logger_level, logger.level = logger.level, Logger::ERROR if logger
        yield
      ensure
947
        logger.level = old_logger_level if logger
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      end
949 950

      # Scope parameters to method calls within the block.  Takes a hash of method_name => parameters hash.
951
      # method_name may be :find or :create. :find parameters may include the <tt>:conditions</tt>, <tt>:joins</tt>,
952
      # <tt>:include</tt>, <tt>:offset</tt>, <tt>:limit</tt>, and <tt>:readonly</tt> options. :create parameters are an attributes hash.
953
      #
954
      #   Article.with_scope(:find => { :conditions => "blog_id = 1" }, :create => { :blog_id => 1 }) do
955
      #     Article.find(1) # => SELECT * from articles WHERE blog_id = 1 AND id = 1
956
      #     a = Article.create(1)
957
      #     a.blog_id # => 1
958
      #   end
959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981
      #
      # In nested scopings, all previous parameters are overwritten by inner rule
      # except :conditions in :find, that are merged as hash.
      #
      #   Article.with_scope(:find => { :conditions => "blog_id = 1", :limit => 1 }, :create => { :blog_id => 1 }) do
      #     Article.with_scope(:find => { :limit => 10})
      #       Article.find(:all) # => SELECT * from articles WHERE blog_id = 1 LIMIT 10
      #     end
      #     Article.with_scope(:find => { :conditions => "author_id = 3" })
      #       Article.find(:all) # => SELECT * from articles WHERE blog_id = 1 AND author_id = 3 LIMIT 1
      #     end
      #   end
      #
      # You can ignore any previous scopings by using <tt>with_exclusive_scope</tt> method.
      #
      #   Article.with_scope(:find => { :conditions => "blog_id = 1", :limit => 1 }) do
      #     Article.with_exclusive_scope(:find => { :limit => 10 })
      #       Article.find(:all) # => SELECT * from articles LIMIT 10
      #     end
      #   end
      def with_scope(method_scoping = {}, action = :merge, &block)
        method_scoping = method_scoping.method_scoping if method_scoping.respond_to?(:method_scoping)

982 983
        # Dup first and second level of hash (method and params).
        method_scoping = method_scoping.inject({}) do |hash, (method, params)|
984
          hash[method] = (params == true) ? params : params.dup
985 986 987
          hash
        end

988 989
        method_scoping.assert_valid_keys([ :find, :create ])

990
        if f = method_scoping[:find]
991
          f.assert_valid_keys([ :conditions, :joins, :select, :include, :from, :offset, :limit, :order, :readonly, :lock ])
992
          set_readonly_option! f
993
        end
994

995 996 997 998 999
        # Merge scopings
        if action == :merge && current_scoped_methods
          method_scoping = current_scoped_methods.inject(method_scoping) do |hash, (method, params)|
            case hash[method]
              when Hash
1000
                if method == :find
1001
                  (hash[method].keys + params.keys).uniq.each do |key|
1002 1003
                    merge = hash[method][key] && params[key] # merge if both scopes have the same key
                    if key == :conditions && merge
1004
                      hash[method][key] = [params[key], hash[method][key]].collect{ |sql| "( %s )" % sanitize_sql(sql) }.join(" AND ")
1005 1006
                    elsif key == :include && merge
                      hash[method][key] = merge_includes(hash[method][key], params[key]).uniq
1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021
                    else
                      hash[method][key] = hash[method][key] || params[key]
                    end
                  end
                else
                  hash[method] = params.merge(hash[method])
                end
              else
                hash[method] = params
            end
            hash
          end
        end

        self.scoped_methods << method_scoping
1022

1023 1024
        begin
          yield
1025
        ensure
1026 1027 1028 1029
          self.scoped_methods.pop
        end
      end

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      # Works like with_scope, but discards any nested properties.
1031 1032
      def with_exclusive_scope(method_scoping = {}, &block)
        with_scope(method_scoping, :overwrite, &block)
1033
      end
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1035 1036 1037
      # Overwrite the default class equality method to provide support for association proxies.
      def ===(object)
        object.is_a?(self)
1038
      end      
1039 1040

      # Deprecated 
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      def threaded_connections #:nodoc:
1042 1043 1044 1045
        allow_concurrency
      end

      # Deprecated 
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      def threaded_connections=(value) #:nodoc:
1047 1048 1049
        self.allow_concurrency = value
      end

1050 1051 1052 1053 1054 1055 1056
      # Returns the base AR subclass that this class descends from. If A
      # extends AR::Base, A.base_class will return A. If B descends from A
      # through some arbitrarily deep hierarchy, B.base_class will return A.
      def base_class
        class_of_active_record_descendant(self)
      end

1057 1058 1059 1060 1061 1062 1063 1064 1065
      # Set this to true if this is an abstract class (see #abstract_class?).
      attr_accessor :abstract_class

      # Returns whether this class is a base AR class.  If A is a base class and
      # B descends from A, then B.base_class will return B.
      def abstract_class?
        abstract_class == true
      end

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      private
1067 1068 1069 1070
        def find_initial(options)
          options.update(:limit => 1) unless options[:include]
          find_every(options).first
        end
1071

1072 1073 1074 1075 1076 1077 1078 1079 1080
        def find_every(options)
          records = scoped?(:find, :include) || options[:include] ?
            find_with_associations(options) : 
            find_by_sql(construct_finder_sql(options))

          records.each { |record| record.readonly! } if options[:readonly]

          records
        end
1081

1082
        def find_from_ids(ids, options)
1083
          expects_array = ids.first.kind_of?(Array)
1084
          return ids.first if expects_array && ids.first.empty?
1085

1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100
          ids = ids.flatten.compact.uniq

          case ids.size
            when 0
              raise RecordNotFound, "Couldn't find #{name} without an ID"
            when 1
              result = find_one(ids.first, options)
              expects_array ? [ result ] : result
            else
              find_some(ids, options)
          end
        end
      
        def find_one(id, options)
          conditions = " AND (#{sanitize_sql(options[:conditions])})" if options[:conditions]
1101
          options.update :conditions => "#{table_name}.#{connection.quote_column_name(primary_key)} = #{quote_value(id,columns_hash[primary_key])}#{conditions}"
1102

1103 1104 1105 1106
          # Use find_every(options).first since the primary key condition
          # already ensures we have a single record. Using find_initial adds
          # a superfluous :limit => 1.
          if result = find_every(options).first
1107 1108 1109 1110 1111 1112 1113 1114
            result
          else
            raise RecordNotFound, "Couldn't find #{name} with ID=#{id}#{conditions}"
          end
        end
      
        def find_some(ids, options)
          conditions = " AND (#{sanitize_sql(options[:conditions])})" if options[:conditions]
1115
          ids_list   = ids.map { |id| quote_value(id,columns_hash[primary_key]) }.join(',')
1116
          options.update :conditions => "#{table_name}.#{connection.quote_column_name(primary_key)} IN (#{ids_list})#{conditions}"
1117 1118 1119

          result = find_every(options)

1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131
          # If the user passes in a limit to find(), we need to check
          # to see if the result is limited before just checking the
          # size of the results.
          expected_size =
            if options[:limit] && ids.size > options[:limit]
              options[:limit]
            else
              ids.size
            end
          expected_size -= options[:offset] if options[:offset]

          if result.size == expected_size
1132 1133
            result
          else
1134
            raise RecordNotFound, "Couldn't find all #{name.pluralize} with IDs (#{ids_list})#{conditions} (found #{result.size} results, but was looking for #{expected_size})"
1135 1136 1137
          end
        end

1138 1139 1140
        # Finder methods must instantiate through this method to work with the
        # single-table inheritance model that makes it possible to create
        # objects of different types from the same table.
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        def instantiate(record)
1142
          object =
1143
            if subclass_name = record[inheritance_column]
1144
              # No type given.
1145 1146
              if subclass_name.empty?
                allocate
1147

1148
              else
1149 1150
                # Ignore type if no column is present since it was probably
                # pulled in from a sloppy join.
1151
                unless columns_hash.include?(inheritance_column)
1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163
                  allocate

                else
                  begin
                    compute_type(subclass_name).allocate
                  rescue NameError
                    raise SubclassNotFound,
                      "The single-table inheritance mechanism failed to locate the subclass: '#{record[inheritance_column]}'. " +
                      "This error is raised because the column '#{inheritance_column}' is reserved for storing the class in case of inheritance. " +
                      "Please rename this column if you didn't intend it to be used for storing the inheritance class " +
                      "or overwrite #{self.to_s}.inheritance_column to use another column for that information."
                  end
1164 1165 1166 1167
                end
              end
            else
              allocate
1168
            end
1169

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          object.instance_variable_set("@attributes", record)
1171
          object
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        end
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1174 1175
        # Nest the type name in the same module as this class.
        # Bar is "MyApp::Business::Bar" relative to MyApp::Business::Foo
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        def type_name_with_module(type_name)
1177
          (/^::/ =~ type_name) ? type_name : "#{parent.name}::#{type_name}"
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        end

1180
        def construct_finder_sql(options)
1181 1182
          scope = scope(:find)
          sql  = "SELECT #{(scope && scope[:select]) || options[:select] || '*'} "
1183
          sql << "FROM #{(scope && scope[:from]) || options[:from] || table_name} "
1184

1185 1186
          add_joins!(sql, options, scope)
          add_conditions!(sql, options[:conditions], scope)
1187

1188
          sql << " GROUP BY #{options[:group]} " if options[:group]
1189

1190
          add_order!(sql, options[:order], scope)
1191
          add_limit!(sql, options, scope)
1192
          add_lock!(sql, options, scope)
1193

1194
          sql
1195
        end
1196

1197 1198
        # Merges includes so that the result is a valid +include+
        def merge_includes(first, second)
1199
         (safe_to_array(first) + safe_to_array(second)).uniq
1200 1201
        end

1202
        # Object#to_a is deprecated, though it does have the desired behavior
1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213
        def safe_to_array(o)
          case o
          when NilClass
            []
          when Array
            o
          else
            [o]
          end
        end

1214 1215 1216
        def add_order!(sql, order, scope = :auto)
          scope = scope(:find) if :auto == scope
          scoped_order = scope[:order] if scope
1217 1218
          if order
            sql << " ORDER BY #{order}"
1219
            sql << ", #{scoped_order}" if scoped_order
1220
          else
1221
            sql << " ORDER BY #{scoped_order}" if scoped_order
1222 1223 1224
          end
        end

1225
        # The optional scope argument is for the current :find scope.
1226 1227
        def add_limit!(sql, options, scope = :auto)
          scope = scope(:find) if :auto == scope
1228
          options = options.reverse_merge(:limit => scope[:limit], :offset => scope[:offset]) if scope
1229
          connection.add_limit_offset!(sql, options)
1230
        end
1231

1232 1233 1234
        # The optional scope argument is for the current :find scope.
        # The :lock option has precedence over a scoped :lock.
        def add_lock!(sql, options, scope = :auto)
1235
          scope = scope(:find) if :auto == scope
1236 1237 1238 1239
          options = options.reverse_merge(:lock => scope[:lock]) if scope
          connection.add_lock!(sql, options)
        end

1240
        # The optional scope argument is for the current :find scope.
1241 1242
        def add_joins!(sql, options, scope = :auto)
          scope = scope(:find) if :auto == scope
1243
          join = (scope && scope[:joins]) || options[:joins]
1244 1245
          sql << " #{join} " if join
        end
1246

1247
        # Adds a sanitized version of +conditions+ to the +sql+ string. Note that the passed-in +sql+ string is changed.
1248
        # The optional scope argument is for the current :find scope.
1249 1250
        def add_conditions!(sql, conditions, scope = :auto)
          scope = scope(:find) if :auto == scope
1251 1252
          segments = []
          segments << sanitize_sql(scope[:conditions]) if scope && scope[:conditions]
1253
          segments << sanitize_sql(conditions) unless conditions.nil?
1254
          segments << type_condition unless descends_from_active_record?
1255 1256
          segments.compact!
          sql << "WHERE (#{segments.join(") AND (")}) " unless segments.empty?
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        end
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        def type_condition
1260 1261 1262
          quoted_inheritance_column = connection.quote_column_name(inheritance_column)
          type_condition = subclasses.inject("#{table_name}.#{quoted_inheritance_column} = '#{name.demodulize}' ") do |condition, subclass|
            condition << "OR #{table_name}.#{quoted_inheritance_column} = '#{subclass.name.demodulize}' "
1263
          end
1264 1265

          " (#{type_condition}) "
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        end

        # Guesses the table name, but does not decorate it with prefix and suffix information.
1269
        def undecorated_table_name(class_name = base_class.name)
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          table_name = Inflector.underscore(Inflector.demodulize(class_name))
          table_name = Inflector.pluralize(table_name) if pluralize_table_names
1272
          table_name
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        end

1275 1276
        # Enables dynamic finders like find_by_user_name(user_name) and find_by_user_name_and_password(user_name, password) that are turned into
        # find(:first, :conditions => ["user_name = ?", user_name]) and  find(:first, :conditions => ["user_name = ? AND password = ?", user_name, password])
1277
        # respectively. Also works for find(:all), but using find_all_by_amount(50) that are turned into find(:all, :conditions => ["amount = ?", 50]).
1278
        #
1279 1280
        # It's even possible to use all the additional parameters to find. For example, the full interface for find_all_by_amount
        # is actually find_all_by_amount(amount, options).
1281 1282 1283
        #
        # This also enables you to initialize a record if it is not found, such as find_or_initialize_by_amount(amount) 
        # or find_or_create_by_user_and_password(user, password).
1284
        def method_missing(method_id, *arguments)
1285
          if match = /^find_(all_by|by)_([_a-zA-Z]\w*)$/.match(method_id.to_s)
1286
            finder, deprecated_finder = determine_finder(match), determine_deprecated_finder(match)
1287

1288 1289
            attribute_names = extract_attribute_names_from_match(match)
            super unless all_attributes_exists?(attribute_names)
1290

1291
            attributes = construct_attributes_from_arguments(attribute_names, arguments)
1292

1293 1294
            case extra_options = arguments[attribute_names.size]
              when nil
1295
                options = { :conditions => attributes }
1296
                set_readonly_option!(options)
1297
                ActiveSupport::Deprecation.silence { send(finder, options) }
1298 1299

              when Hash
1300
                finder_options = extra_options.merge(:conditions => attributes)
1301 1302 1303 1304 1305
                validate_find_options(finder_options)
                set_readonly_option!(finder_options)

                if extra_options[:conditions]
                  with_scope(:find => { :conditions => extra_options[:conditions] }) do
1306
                    ActiveSupport::Deprecation.silence { send(finder, finder_options) }
1307 1308
                  end
                else
1309
                  ActiveSupport::Deprecation.silence { send(finder, finder_options) }
1310
                end
1311

1312
              else
1313
                ActiveSupport::Deprecation.silence do
1314
                  send(deprecated_finder, sanitize_sql(attributes), *arguments[attribute_names.length..-1])
1315
                end
1316
            end
1317
          elsif match = /^find_or_(initialize|create)_by_([_a-zA-Z]\w*)$/.match(method_id.to_s)
1318
            instantiator = determine_instantiator(match)
1319 1320 1321
            attribute_names = extract_attribute_names_from_match(match)
            super unless all_attributes_exists?(attribute_names)

1322 1323 1324 1325 1326 1327 1328
            if arguments[0].is_a?(Hash)
              attributes = arguments[0].with_indifferent_access
              find_attributes = attributes.slice(*attribute_names)
            else
              find_attributes = attributes = construct_attributes_from_arguments(attribute_names, arguments)
            end
            options = { :conditions => find_attributes }
1329
            set_readonly_option!(options)
1330 1331

            find_initial(options) || send(instantiator, attributes)
1332 1333 1334 1335
          else
            super
          end
        end
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1337
        def determine_finder(match)
1338 1339 1340 1341 1342
          match.captures.first == 'all_by' ? :find_every : :find_initial
        end

        def determine_deprecated_finder(match)
          match.captures.first == 'all_by' ? :find_all : :find_first
1343 1344
        end

1345 1346 1347 1348
        def determine_instantiator(match)
          match.captures.first == 'initialize' ? :new : :create
        end

1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362
        def extract_attribute_names_from_match(match)
          match.captures.last.split('_and_')
        end

        def construct_attributes_from_arguments(attribute_names, arguments)
          attributes = {}
          attribute_names.each_with_index { |name, idx| attributes[name] = arguments[idx] }
          attributes
        end

        def all_attributes_exists?(attribute_names)
          attribute_names.all? { |name| column_methods_hash.include?(name.to_sym) }
        end

1363 1364 1365 1366
        def attribute_condition(argument)
          case argument
            when nil   then "IS ?"
            when Array then "IN (?)"
1367
            when Range then "BETWEEN ? AND ?"
1368 1369 1370 1371
            else            "= ?"
          end
        end

1372 1373 1374 1375
        # Interpret Array and Hash as conditions and anything else as an id.
        def expand_id_conditions(id_or_conditions)
          case id_or_conditions
            when Array, Hash then id_or_conditions
1376
            else sanitize_sql(primary_key => id_or_conditions)
1377 1378 1379 1380
          end
        end


1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400
        # Defines an "attribute" method (like #inheritance_column or
        # #table_name). A new (class) method will be created with the
        # given name. If a value is specified, the new method will
        # return that value (as a string). Otherwise, the given block
        # will be used to compute the value of the method.
        #
        # The original method will be aliased, with the new name being
        # prefixed with "original_". This allows the new method to
        # access the original value.
        #
        # Example:
        #
        #   class A < ActiveRecord::Base
        #     define_attr_method :primary_key, "sysid"
        #     define_attr_method( :inheritance_column ) do
        #       original_inheritance_column + "_id"
        #     end
        #   end
        def define_attr_method(name, value=nil, &block)
          sing = class << self; self; end
1401
          sing.send :alias_method, "original_#{name}", name
1402 1403 1404
          if block_given?
            sing.send :define_method, name, &block
          else
1405 1406 1407 1408
            # use eval instead of a block to work around a memory leak in dev
            # mode in fcgi
            sing.class_eval "def #{name}; #{value.to_s.inspect}; end"
          end
1409 1410
        end

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      protected
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        def subclasses #:nodoc:
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          @@subclasses[self] ||= []
          @@subclasses[self] + extra = @@subclasses[self].inject([]) {|list, subclass| list + subclass.subclasses }
        end
1416 1417

        # Test whether the given method and optional key are scoped.
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        def scoped?(method, key = nil) #:nodoc:
1419 1420 1421
          if current_scoped_methods && (scope = current_scoped_methods[method])
            !key || scope.has_key?(key)
          end
1422 1423 1424
        end

        # Retrieve the scope for the given method and optional key.
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        def scope(method, key = nil) #:nodoc:
1426
          if current_scoped_methods && (scope = current_scoped_methods[method])
1427 1428 1429 1430
            key ? scope[key] : scope
          end
        end

1431 1432 1433
        def thread_safe_scoped_methods #:nodoc:
          scoped_methods = (Thread.current[:scoped_methods] ||= {})
          scoped_methods[self] ||= []
1434
        end
1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446
        
        def single_threaded_scoped_methods #:nodoc:
          @scoped_methods ||= []
        end
        
        # pick up the correct scoped_methods version from @@allow_concurrency
        if @@allow_concurrency
          alias_method :scoped_methods, :thread_safe_scoped_methods
        else
          alias_method :scoped_methods, :single_threaded_scoped_methods
        end
        
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        def current_scoped_methods #:nodoc:
1448
          scoped_methods.last
1449
        end
1450

1451 1452
        # Returns the class type of the record using the current module as a prefix. So descendents of
        # MyApp::Business::Account would appear as MyApp::Business::AccountSubclass.
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        def compute_type(type_name)
1454
          modularized_name = type_name_with_module(type_name)
1455
          begin
1456 1457 1458
            class_eval(modularized_name, __FILE__, __LINE__)
          rescue NameError
            class_eval(type_name, __FILE__, __LINE__)
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          end
        end

1462 1463
        # Returns the class descending directly from ActiveRecord in the inheritance hierarchy.
        def class_of_active_record_descendant(klass)
1464
          if klass.superclass == Base || klass.superclass.abstract_class?
1465
            klass
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          elsif klass.superclass.nil?
            raise ActiveRecordError, "#{name} doesn't belong in a hierarchy descending from ActiveRecord"
          else
1469
            class_of_active_record_descendant(klass.superclass)
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          end
        end

1473
        # Returns the name of the class descending directly from ActiveRecord in the inheritance hierarchy.
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        def class_name_of_active_record_descendant(klass) #:nodoc:
1475
          klass.base_class.name
1476 1477
        end

1478
        # Accepts an array, hash, or string of sql conditions and sanitizes
1479
        # them into a valid SQL fragment for a WHERE clause.
1480 1481 1482
        #   ["name='%s' and group_id='%s'", "foo'bar", 4]  returns  "name='foo''bar' and group_id='4'"
        #   { :name => "foo'bar", :group_id => 4 }  returns "name='foo''bar' and group_id='4'"
        #   "name='foo''bar' and group_id='4'" returns "name='foo''bar' and group_id='4'"
1483
        def sanitize_sql_for_conditions(condition)
1484 1485
          case condition
            when Array; sanitize_sql_array(condition)
1486
            when Hash;  sanitize_sql_hash_for_conditions(condition)
1487 1488
            else        condition
          end
1489
        end
1490
        alias_method :sanitize_sql, :sanitize_sql_for_conditions
1491

1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503
        # Accepts an array, hash, or string of sql conditions and sanitizes
        # them into a valid SQL fragment for a SET clause.
        #   { :name => nil, :group_id => 4 }  returns "name = NULL , group_id='4'"
        def sanitize_sql_for_assignment(assignments)
          case assignments
            when Array; sanitize_sql_array(assignments)
            when Hash;  sanitize_sql_hash_for_assignment(assignments)
            else        assignments
          end
        end

        # Sanitizes a hash of attribute/value pairs into SQL conditions for a WHERE clause.
1504 1505 1506 1507
        #   { :name => "foo'bar", :group_id => 4 }
        #     # => "name='foo''bar' and group_id= 4"
        #   { :status => nil, :group_id => [1,2,3] }
        #     # => "status IS NULL and group_id IN (1,2,3)"
1508 1509
        #   { :age => 13..18 }
        #     # => "age BETWEEN 13 AND 18"
1510
        def sanitize_sql_hash_for_conditions(attrs)
1511 1512 1513 1514
          conditions = attrs.map do |attr, value|
            "#{table_name}.#{connection.quote_column_name(attr)} #{attribute_condition(value)}"
          end.join(' AND ')

1515
          replace_bind_variables(conditions, expand_range_bind_variables(attrs.values))
1516
        end
1517 1518 1519 1520 1521 1522 1523 1524 1525 1526
        alias_method :sanitize_sql_hash, :sanitize_sql_hash_for_conditions

        # Sanitizes a hash of attribute/value pairs into SQL conditions for a SET clause.
        #   { :status => nil, :group_id => 1 }
        #     # => "status = NULL , group_id = 1"
        def sanitize_sql_hash_for_assignment(attrs)
          conditions = attrs.map do |attr, value|
            "#{connection.quote_column_name(attr)} = #{quote_bound_value(value)}"
          end.join(', ')
        end
1527

1528
        # Accepts an array of conditions.  The array has each value
1529 1530
        # sanitized and interpolated into the sql statement.
        #   ["name='%s' and group_id='%s'", "foo'bar", 4]  returns  "name='foo''bar' and group_id='4'"
1531
        def sanitize_sql_array(ary)
1532 1533 1534 1535
          statement, *values = ary
          if values.first.is_a?(Hash) and statement =~ /:\w+/
            replace_named_bind_variables(statement, values.first)
          elsif statement.include?('?')
1536 1537
            replace_bind_variables(statement, values)
          else
1538
            statement % values.collect { |value| connection.quote_string(value.to_s) }
1539
          end
1540 1541
        end

1542 1543
        alias_method :sanitize_conditions, :sanitize_sql

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        def replace_bind_variables(statement, values) #:nodoc:
1545
          raise_if_bind_arity_mismatch(statement, statement.count('?'), values.size)
1546
          bound = values.dup
1547
          statement.gsub('?') { quote_bound_value(bound.shift) }
1548 1549
        end

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        def replace_named_bind_variables(statement, bind_vars) #:nodoc:
1551 1552
          statement.gsub(/:(\w+)/) do
            match = $1.to_sym
1553
            if bind_vars.include?(match)
1554
              quote_bound_value(bind_vars[match])
1555 1556
            else
              raise PreparedStatementInvalid, "missing value for :#{match} in #{statement}"
1557 1558
            end
          end
1559 1560
        end

1561 1562 1563 1564 1565 1566 1567
        def expand_range_bind_variables(bind_vars) #:nodoc:
          bind_vars.each_with_index do |var, index|
            bind_vars[index, 1] = [var.first, var.last] if var.is_a?(Range)
          end
          bind_vars
        end

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        def quote_bound_value(value) #:nodoc:
1569 1570 1571
          if value.respond_to?(:map) && !value.is_a?(String)
            if value.respond_to?(:empty?) && value.empty?
              connection.quote(nil)
1572 1573 1574
            else
              value.map { |v| connection.quote(v) }.join(',')
            end
1575 1576
          else
            connection.quote(value)
1577 1578 1579
          end
        end

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        def raise_if_bind_arity_mismatch(statement, expected, provided) #:nodoc:
1581 1582 1583
          unless expected == provided
            raise PreparedStatementInvalid, "wrong number of bind variables (#{provided} for #{expected}) in: #{statement}"
          end
1584
        end
1585

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        def extract_options_from_args!(args) #:nodoc:
1587
          args.last.is_a?(Hash) ? args.pop : {}
1588
        end
1589

1590
        VALID_FIND_OPTIONS = [ :conditions, :include, :joins, :limit, :offset,
1591 1592
                               :order, :select, :readonly, :group, :from, :lock ]

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        def validate_find_options(options) #:nodoc:
1594 1595
          options.assert_valid_keys(VALID_FIND_OPTIONS)
        end
1596

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        def set_readonly_option!(options) #:nodoc:
1598 1599 1600 1601 1602
          # Inherit :readonly from finder scope if set.  Otherwise,
          # if :joins is not blank then :readonly defaults to true.
          unless options.has_key?(:readonly)
            if scoped?(:find, :readonly)
              options[:readonly] = scope(:find, :readonly)
1603
            elsif !options[:joins].blank? && !options[:select]
1604 1605 1606
              options[:readonly] = true
            end
          end
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        end
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        def encode_quoted_value(value) #:nodoc:
1610
          quoted_value = connection.quote(value)
1611 1612
          quoted_value = "'#{quoted_value[1..-2].gsub(/\'/, "\\\\'")}'" if quoted_value.include?("\\\'") # (for ruby mode) " 
          quoted_value 
1613
        end
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    end

    public
      # New objects can be instantiated as either empty (pass no construction parameter) or pre-set with
      # attributes but not yet saved (pass a hash with key names matching the associated table column names).
1619
      # In both instances, valid attribute keys are determined by the column names of the associated table --
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      # hence you can't have attributes that aren't part of the table columns.
      def initialize(attributes = nil)
        @attributes = attributes_from_column_definition
        @new_record = true
        ensure_proper_type
        self.attributes = attributes unless attributes.nil?
1626
        self.class.send(:scope, :create).each { |att,value| self.send("#{att}=", value) } if self.class.send(:scoped?, :create)
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        yield self if block_given?
      end
1629

1630 1631
      # A model instance's primary key is always available as model.id
      # whether you name it the default 'id' or set it to something else.
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      def id
1633
        attr_name = self.class.primary_key
1634
        column = column_for_attribute(attr_name)
1635 1636 1637 1638 1639 1640 1641 1642
        
        if self.class.generate_read_methods
          define_read_method(:id, attr_name, column)
          # now that the method exists, call it
          self.send attr_name.to_sym
        else
          read_attribute(attr_name)
        end
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      end
1644

1645
      # Enables Active Record objects to be used as URL parameters in Action Pack automatically.
1646
      def to_param
1647
        # We can't use alias_method here, because method 'id' optimizes itself on the fly.
1648
        (id = self.id) ? id.to_s : nil # Be sure to stringify the id for routes
1649
      end
1650

1651
      def id_before_type_cast #:nodoc:
1652 1653 1654
        read_attribute_before_type_cast(self.class.primary_key)
      end

1655
      def quoted_id #:nodoc:
1656
        quote_value(id, column_for_attribute(self.class.primary_key))
1657
      end
1658

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      # Sets the primary ID.
      def id=(value)
        write_attribute(self.class.primary_key, value)
      end
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      # Returns true if this object hasn't been saved yet -- that is, a record for the object doesn't exist yet.
1665
      def new_record?
1666
        @new_record
1667
      end
1668

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      # * No record exists: Creates a new record with values matching those of the object attributes.
      # * A record does exist: Updates the record with values matching those of the object attributes.
      def save
        create_or_update
      end
1674 1675 1676 1677
      
      # Attempts to save the record, but instead of just returning false if it couldn't happen, it raises a 
      # RecordNotSaved exception
      def save!
1678
        create_or_update || raise(RecordNotSaved)
1679
      end
1680

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      # Deletes the record in the database and freezes this instance to reflect that no changes should
      # be made (since they can't be persisted).
      def destroy
1684
        unless new_record?
1685 1686
          connection.delete <<-end_sql, "#{self.class.name} Destroy"
            DELETE FROM #{self.class.table_name}
1687
            WHERE #{connection.quote_column_name(self.class.primary_key)} = #{quoted_id}
1688
          end_sql
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        end

        freeze
      end

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      # Returns a clone of the record that hasn't been assigned an id yet and
      # is treated as a new record.  Note that this is a "shallow" clone:
      # it copies the object's attributes only, not its associations.
      # The extent of a "deep" clone is application-specific and is therefore
      # left to the application to implement according to its need.
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      def clone
1700
        attrs = self.attributes_before_type_cast
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        attrs.delete(self.class.primary_key)
1702 1703 1704
        self.class.new do |record|
          record.send :instance_variable_set, '@attributes', attrs
        end
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      end
1706

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      # Updates a single attribute and saves the record. This is especially useful for boolean flags on existing records.
1708 1709
      # Note: This method is overwritten by the Validation module that'll make sure that updates made with this method
      # doesn't get subjected to validation checks. Hence, attributes can be updated even if the full object isn't valid.
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      def update_attribute(name, value)
1711
        send(name.to_s + '=', value)
1712
        save
1713 1714
      end

1715
      # Updates all the attributes from the passed-in Hash and saves the record. If the object is invalid, the saving will
1716
      # fail and false will be returned.
1717
      def update_attributes(attributes)
1718
        self.attributes = attributes
1719
        save
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      end
1721 1722 1723 1724 1725 1726
      
      # Updates an object just like Base.update_attributes but calls save! instead of save so an exception is raised if the record is invalid.
      def update_attributes!(attributes)
        self.attributes = attributes
        save!
      end
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1728 1729 1730 1731 1732 1733
      # Initializes the +attribute+ to zero if nil and adds one. Only makes sense for number-based attributes. Returns self.
      def increment(attribute)
        self[attribute] ||= 0
        self[attribute] += 1
        self
      end
1734

1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750
      # Increments the +attribute+ and saves the record.
      def increment!(attribute)
        increment(attribute).update_attribute(attribute, self[attribute])
      end

      # Initializes the +attribute+ to zero if nil and subtracts one. Only makes sense for number-based attributes. Returns self.
      def decrement(attribute)
        self[attribute] ||= 0
        self[attribute] -= 1
        self
      end

      # Decrements the +attribute+ and saves the record.
      def decrement!(attribute)
        decrement(attribute).update_attribute(attribute, self[attribute])
      end
1751

1752 1753
      # Turns an +attribute+ that's currently true into false and vice versa. Returns self.
      def toggle(attribute)
1754
        self[attribute] = !send("#{attribute}?")
1755 1756 1757 1758 1759 1760 1761 1762
        self
      end

      # Toggles the +attribute+ and saves the record.
      def toggle!(attribute)
        toggle(attribute).update_attribute(attribute, self[attribute])
      end

1763
      # Reloads the attributes of this object from the database.
1764 1765 1766 1767
      # The optional options argument is passed to find when reloading so you
      # may do e.g. record.reload(:lock => true) to reload the same record with
      # an exclusive row lock.
      def reload(options = nil)
1768
        clear_aggregation_cache
1769
        clear_association_cache
1770
        @attributes.update(self.class.find(self.id, options).instance_variable_get('@attributes'))
1771
        self
1772 1773
      end

1774
      # Returns the value of the attribute identified by <tt>attr_name</tt> after it has been typecast (for example,
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      # "2004-12-12" in a data column is cast to a date object, like Date.new(2004, 12, 12)).
      # (Alias for the protected read_attribute method).
1777
      def [](attr_name)
1778
        read_attribute(attr_name)
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      end
1780

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      # Updates the attribute identified by <tt>attr_name</tt> with the specified +value+.
      # (Alias for the protected write_attribute method).
1783
      def []=(attr_name, value)
1784
        write_attribute(attr_name, value)
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      end

      # Allows you to set all the attributes at once by passing in a hash with keys
      # matching the attribute names (which again matches the column names). Sensitive attributes can be protected
      # from this form of mass-assignment by using the +attr_protected+ macro. Or you can alternatively
      # specify which attributes *can* be accessed in with the +attr_accessible+ macro. Then all the
      # attributes not included in that won't be allowed to be mass-assigned.
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      def attributes=(new_attributes)
        return if new_attributes.nil?
        attributes = new_attributes.dup
1795
        attributes.stringify_keys!
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        multi_parameter_attributes = []
1798
        remove_attributes_protected_from_mass_assignment(attributes).each do |k, v|
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          k.include?("(") ? multi_parameter_attributes << [ k, v ] : send(k + "=", v)
        end
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        assign_multiparameter_attributes(multi_parameter_attributes)
      end

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1806
      # Returns a hash of all the attributes with their names as keys and clones of their objects as values.
1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824
      def attributes(options = nil)
        attributes = clone_attributes :read_attribute
        
        if options.nil?
          attributes
        else
          if except = options[:except]
            except = Array(except).collect { |attribute| attribute.to_s }
            except.each { |attribute_name| attributes.delete(attribute_name) }
            attributes
          elsif only = options[:only]
            only = Array(only).collect { |attribute| attribute.to_s }
            attributes.delete_if { |key, value| !only.include?(key) }
            attributes
          else
            raise ArgumentError, "Options does not specify :except or :only (#{options.keys.inspect})"
          end
        end
1825 1826 1827 1828 1829
      end

      # Returns a hash of cloned attributes before typecasting and deserialization.
      def attributes_before_type_cast
        clone_attributes :read_attribute_before_type_cast
1830 1831
      end

1832 1833
      # Format attributes nicely for inspect.
      def attribute_for_inspect(attr_name)
1834
        raise "Attribute not present #{attr_name}" unless has_attribute?(attr_name) || new_record?
1835 1836
        value = read_attribute(attr_name)

1837 1838 1839 1840
        if value.is_a?(String) && value.length > 50
          %("#{value[0..50]}...")
        elsif value.is_a?(Date) || value.is_a?(Time)
          %("#{value.to_s(:db)}")
1841 1842 1843 1844 1845
        else
          value.inspect
        end
      end

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      # Returns true if the specified +attribute+ has been set by the user or by a database load and is neither
1847
      # nil nor empty? (the latter only applies to objects that respond to empty?, most notably Strings).
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      def attribute_present?(attribute)
1849
        value = read_attribute(attribute)
1850
        !value.blank?
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1851 1852
      end

1853 1854 1855 1856 1857
      # Returns true if the given attribute is in the attributes hash
      def has_attribute?(attr_name)
        @attributes.has_key?(attr_name.to_s)
      end

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      # Returns an array of names for the attributes available on this object sorted alphabetically.
      def attribute_names
        @attributes.keys.sort
      end

      # Returns the column object for the named attribute.
      def column_for_attribute(name)
1865
        self.class.columns_hash[name.to_s]
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      end
1867

1868
      # Returns true if the +comparison_object+ is the same object, or is of the same type and has the same id.
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      def ==(comparison_object)
1870 1871
        comparison_object.equal?(self) ||
          (comparison_object.instance_of?(self.class) && 
1872
            comparison_object.id == id && 
1873
            !comparison_object.new_record?)
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      end

      # Delegates to ==
      def eql?(comparison_object)
        self == (comparison_object)
      end
1880

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      # Delegates to id in order to allow two records of the same type and id to work with something like:
      #   [ Person.find(1), Person.find(2), Person.find(3) ] & [ Person.find(1), Person.find(4) ] # => [ Person.find(1) ]
      def hash
1884
        id.hash
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      end

      # For checking respond_to? without searching the attributes (which is faster).
      alias_method :respond_to_without_attributes?, :respond_to?

      # A Person object with a name attribute can ask person.respond_to?("name"), person.respond_to?("name="), and
      # person.respond_to?("name?") which will all return true.
1892
      def respond_to?(method, include_priv = false)
1893
        if @attributes.nil?
1894
          return super
1895
        elsif attr_name = self.class.column_methods_hash[method.to_sym]
1896 1897 1898 1899
          return true if @attributes.include?(attr_name) || attr_name == self.class.primary_key
          return false if self.class.read_methods.include?(attr_name)
        elsif @attributes.include?(method_name = method.to_s)
          return true
1900
        elsif md = self.class.match_attribute_method?(method.to_s)
1901 1902 1903 1904 1905
          return true if @attributes.include?(md.pre_match)
        end
        # super must be called at the end of the method, because the inherited respond_to?
        # would return true for generated readers, even if the attribute wasn't present
        super
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      end
1907

1908 1909
      # Just freeze the attributes hash, such that associations are still accessible even on destroyed records.
      def freeze
1910
        @attributes.freeze; self
1911
      end
1912

1913 1914 1915
      def frozen?
        @attributes.frozen?
      end
1916

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      # Records loaded through joins with piggy-back attributes will be marked as read only as they cannot be saved and return true to this query.
1918 1919 1920 1921
      def readonly?
        @readonly == true
      end

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      def readonly! #:nodoc:
1923 1924
        @readonly = true
      end
1925

1926 1927
      # Nice pretty inspect.
      def inspect
1928 1929 1930 1931
        attributes_as_nice_string = self.class.column_names.collect { |name|
          "#{name}: #{attribute_for_inspect(name)}"
        }.join(", ")
        "#<#{self.class} #{attributes_as_nice_string}>"
1932
      end
1933

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    private
      def create_or_update
1936
        raise ReadOnlyRecord if readonly?
1937 1938
        result = new_record? ? create : update
        result != false
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      end

1941
      # Updates the associated record with values matching those of the instance attributes.
1942
      # Returns the number of affected rows.
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      def update
        connection.update(
          "UPDATE #{self.class.table_name} " +
1946
          "SET #{quoted_comma_pair_list(connection, attributes_with_quotes(false))} " +
1947
          "WHERE #{connection.quote_column_name(self.class.primary_key)} = #{quote_value(id)}",
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          "#{self.class.name} Update"
        )
      end

1952 1953
      # Creates a record with values matching those of the instance attributes
      # and returns its id.
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      def create
1955
        if self.id.nil? && connection.prefetch_primary_key?(self.class.table_name)
1956 1957
          self.id = connection.next_sequence_value(self.class.sequence_name)
        end
1958

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        self.id = connection.insert(
          "INSERT INTO #{self.class.table_name} " +
          "(#{quoted_column_names.join(', ')}) " +
          "VALUES(#{attributes_with_quotes.values.join(', ')})",
          "#{self.class.name} Create",
1964
          self.class.primary_key, self.id, self.class.sequence_name
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        )
1966

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        @new_record = false
1968
        id
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      end

1971
      # Sets the attribute used for single table inheritance to this class name if this is not the ActiveRecord descendent.
1972 1973
      # Considering the hierarchy Reply < Message < ActiveRecord, this makes it possible to do Reply.new without having to
      # set Reply[Reply.inheritance_column] = "Reply" yourself. No such attribute would be set for objects of the
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      # Message class in that example.
      def ensure_proper_type
        unless self.class.descends_from_active_record?
          write_attribute(self.class.inheritance_column, Inflector.demodulize(self.class.name))
        end
      end

1981

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      # Allows access to the object attributes, which are held in the @attributes hash, as were
      # they first-class methods. So a Person class with a name attribute can use Person#name and
      # Person#name= and never directly use the attributes hash -- except for multiple assigns with
      # ActiveRecord#attributes=. A Milestone class can also ask Milestone#completed? to test that
1986
      # the completed attribute is not nil or 0.
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      #
      # It's also possible to instantiate related objects, so a Client class belonging to the clients
      # table with a master_id foreign key can instantiate master through Client#master.
1990 1991
      def method_missing(method_id, *args, &block)
        method_name = method_id.to_s
1992 1993
        if @attributes.include?(method_name) or
            (md = /\?$/.match(method_name) and
1994 1995
            @attributes.include?(query_method_name = md.pre_match) and
            method_name = query_method_name)
1996 1997 1998 1999 2000 2001 2002
          if self.class.read_methods.empty? && self.class.generate_read_methods
            define_read_methods
            # now that the method exists, call it
            self.send method_id.to_sym
          else
            md ? query_attribute(method_name) : read_attribute(method_name)
          end
2003 2004
        elsif self.class.primary_key.to_s == method_name
          id
2005
        elsif md = self.class.match_attribute_method?(method_name)
2006 2007
          attribute_name, method_type = md.pre_match, md.to_s
          if @attributes.include?(attribute_name)
2008
            __send__("attribute#{method_type}", attribute_name, *args, &block)
2009 2010 2011
          else
            super
          end
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        else
          super
        end
      end

2017
      # Returns the value of the attribute identified by <tt>attr_name</tt> after it has been typecast (for example,
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      # "2004-12-12" in a data column is cast to a date object, like Date.new(2004, 12, 12)).
2019
      def read_attribute(attr_name)
2020
        attr_name = attr_name.to_s
2021
        if !(value = @attributes[attr_name]).nil?
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          if column = column_for_attribute(attr_name)
2023 2024 2025
            if unserializable_attribute?(attr_name, column)
              unserialize_attribute(attr_name)
            else
2026
              column.type_cast(value)
2027
            end
2028
          else
2029
            value
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          end
        else
          nil
        end
      end

2036 2037 2038 2039
      def read_attribute_before_type_cast(attr_name)
        @attributes[attr_name]
      end

2040 2041 2042 2043 2044
      # Called on first read access to any given column and generates reader
      # methods for all columns in the columns_hash if
      # ActiveRecord::Base.generate_read_methods is set to true.
      def define_read_methods
        self.class.columns_hash.each do |name, column|
2045 2046 2047 2048 2049 2050 2051 2052 2053 2054
          unless respond_to_without_attributes?(name)
            if self.class.serialized_attributes[name]
              define_read_method_for_serialized_attribute(name)
            else
              define_read_method(name.to_sym, name, column)
            end
          end

          unless respond_to_without_attributes?("#{name}?")
            define_question_method(name)
2055 2056 2057 2058
          end
        end
      end

2059
      # Define an attribute reader method.  Cope with nil column.
2060
      def define_read_method(symbol, attr_name, column)
2061
        cast_code = column.type_cast_code('v') if column
2062
        access_code = cast_code ? "(v=@attributes['#{attr_name}']) && #{cast_code}" : "@attributes['#{attr_name}']"
2063
        
2064
        unless attr_name.to_s == self.class.primary_key.to_s
2065
          access_code = access_code.insert(0, "raise NoMethodError, 'missing attribute: #{attr_name}', caller unless @attributes.has_key?('#{attr_name}'); ")
2066
          self.class.read_methods << attr_name
2067 2068 2069 2070 2071
        end
        
        evaluate_read_method attr_name, "def #{symbol}; #{access_code}; end"
      end
      
2072 2073 2074 2075 2076 2077 2078 2079 2080
      # Define read method for serialized attribute.
      def define_read_method_for_serialized_attribute(attr_name)
        unless attr_name.to_s == self.class.primary_key.to_s
          self.class.read_methods << attr_name
        end
        
        evaluate_read_method attr_name, "def #{attr_name}; unserialize_attribute('#{attr_name}'); end"
      end
           
2081 2082 2083
      # Define an attribute ? method.
      def define_question_method(attr_name)
        unless attr_name.to_s == self.class.primary_key.to_s
2084
          self.class.read_methods << "#{attr_name}?"
2085
        end
2086 2087 2088 2089 2090 2091
        
        evaluate_read_method attr_name, "def #{attr_name}?; query_attribute('#{attr_name}'); end"
      end
      
      # Evaluate the definition for an attribute reader or ? method
      def evaluate_read_method(attr_name, method_definition)
2092
        begin
2093
          self.class.class_eval(method_definition)
2094 2095 2096
        rescue SyntaxError => err
          self.class.read_methods.delete(attr_name)
          if logger
2097
            logger.warn "Exception occurred during reader method compilation."
2098 2099 2100 2101
            logger.warn "Maybe #{attr_name} is not a valid Ruby identifier?"
            logger.warn "#{err.message}"
          end
        end
2102 2103
      end

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      # Returns true if the attribute is of a text column and marked for serialization.
      def unserializable_attribute?(attr_name, column)
2106
        column.text? && self.class.serialized_attributes[attr_name]
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      end

      # Returns the unserialized object of the attribute.
      def unserialize_attribute(attr_name)
        unserialized_object = object_from_yaml(@attributes[attr_name])

        if unserialized_object.is_a?(self.class.serialized_attributes[attr_name])
          @attributes[attr_name] = unserialized_object
        else
2116
          raise SerializationTypeMismatch,
2117
            "#{attr_name} was supposed to be a #{self.class.serialized_attributes[attr_name]}, but was a #{unserialized_object.class.to_s}"
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        end
      end

      # Updates the attribute identified by <tt>attr_name</tt> with the specified +value+. Empty strings for fixnum and float
      # columns are turned into nil.
2123
      def write_attribute(attr_name, value)
2124 2125 2126 2127 2128 2129
        attr_name = attr_name.to_s
        if (column = column_for_attribute(attr_name)) && column.number?
          @attributes[attr_name] = convert_number_column_value(value)
        else
          @attributes[attr_name] = value
        end
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2130 2131
      end

2132 2133 2134 2135 2136 2137 2138
      def convert_number_column_value(value)
        case value
          when FalseClass: 0
          when TrueClass:  1
          when '':         nil
          else value
        end
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2139 2140 2141
      end

      def query_attribute(attr_name)
2142
        unless value = read_attribute(attr_name)
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2143 2144
          false
        else
2145
          column = self.class.columns_hash[attr_name]
2146
          if column.nil?
J
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            if Numeric === value || value !~ /[^0-9]/
2148 2149 2150 2151 2152
              !value.to_i.zero?
            else
              !value.blank?
            end
          elsif column.number?
2153 2154 2155 2156
            !value.zero?
          else
            !value.blank?
          end
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        end
      end

      def remove_attributes_protected_from_mass_assignment(attributes)
        if self.class.accessible_attributes.nil? && self.class.protected_attributes.nil?
2162
          attributes.reject { |key, value| attributes_protected_by_default.include?(key.gsub(/\(.+/, "")) }
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        elsif self.class.protected_attributes.nil?
2164
          attributes.reject { |key, value| !self.class.accessible_attributes.include?(key.gsub(/\(.+/, "").intern) || attributes_protected_by_default.include?(key.gsub(/\(.+/, "")) }
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        elsif self.class.accessible_attributes.nil?
2166
          attributes.reject { |key, value| self.class.protected_attributes.include?(key.gsub(/\(.+/,"").intern) || attributes_protected_by_default.include?(key.gsub(/\(.+/, "")) }
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        end
      end

2170 2171
      # The primary key and inheritance column can never be set by mass-assignment for security reasons.
      def attributes_protected_by_default
2172 2173 2174
        default = [ self.class.primary_key, self.class.inheritance_column ]
        default << 'id' unless self.class.primary_key.eql? 'id'
        default
2175 2176
      end

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      # Returns copy of the attributes hash where all the values have been safely quoted for use in
2178
      # an SQL statement.
2179
      def attributes_with_quotes(include_primary_key = true)
2180
        attributes.inject({}) do |quoted, (name, value)|
2181
          if column = column_for_attribute(name)
2182
            quoted[name] = quote_value(value, column) unless !include_primary_key && column.primary
2183 2184
          end
          quoted
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2185 2186
        end
      end
2187

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      # Quote strings appropriately for SQL statements.
2189
      def quote_value(value, column = nil)
2190
        self.class.connection.quote(value, column)
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2191 2192
      end

2193 2194 2195 2196
      # Deprecated, use quote_value
      def quote(value, column = nil)
        self.class.connection.quote(value, column)
      end
2197
      deprecate :quote => :quote_value
2198 2199
      
      
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      # Interpolate custom sql string in instance context.
      # Optional record argument is meant for custom insert_sql.
      def interpolate_sql(sql, record = nil)
2203
        instance_eval("%@#{sql.gsub('@', '\@')}@")
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      end

      # Initializes the attributes array with keys matching the columns from the linked table and
      # the values matching the corresponding default value of that column, so
      # that a new instance, or one populated from a passed-in Hash, still has all the attributes
      # that instances loaded from the database would.
      def attributes_from_column_definition
2211
        self.class.columns.inject({}) do |attributes, column|
2212
          attributes[column.name] = column.default unless column.name == self.class.primary_key
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          attributes
        end
      end

      # Instantiates objects for all attribute classes that needs more than one constructor parameter. This is done
      # by calling new on the column type or aggregation type (through composed_of) object with these parameters.
      # So having the pairs written_on(1) = "2004", written_on(2) = "6", written_on(3) = "24", will instantiate
      # written_on (a date type) with Date.new("2004", "6", "24"). You can also specify a typecast character in the
2221
      # parentheses to have the parameters typecasted before they're used in the constructor. Use i for Fixnum, f for Float,
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      # s for String, and a for Array. If all the values for a given attribute is empty, the attribute will be set to nil.
      def assign_multiparameter_attributes(pairs)
        execute_callstack_for_multiparameter_attributes(
          extract_callstack_for_multiparameter_attributes(pairs)
        )
      end
2228

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2229 2230
      # Includes an ugly hack for Time.local instead of Time.new because the latter is reserved by Time itself.
      def execute_callstack_for_multiparameter_attributes(callstack)
2231
        errors = []
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        callstack.each do |name, values|
2233
          klass = (self.class.reflect_on_aggregation(name.to_sym) || column_for_attribute(name)).klass
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2234 2235 2236
          if values.empty?
            send(name + "=", nil)
          else
2237
            begin
2238
              send(name + "=", Time == klass ? (@@default_timezone == :utc ? klass.utc(*values) : klass.local(*values)) : klass.new(*values))
2239 2240 2241
            rescue => ex
              errors << AttributeAssignmentError.new("error on assignment #{values.inspect} to #{name}", ex, name)
            end
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2242 2243
          end
        end
2244 2245 2246
        unless errors.empty?
          raise MultiparameterAssignmentErrors.new(errors), "#{errors.size} error(s) on assignment of multiparameter attributes"
        end
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2247
      end
2248

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2249 2250 2251 2252 2253 2254 2255 2256 2257
      def extract_callstack_for_multiparameter_attributes(pairs)
        attributes = { }

        for pair in pairs
          multiparameter_name, value = pair
          attribute_name = multiparameter_name.split("(").first
          attributes[attribute_name] = [] unless attributes.include?(attribute_name)

          unless value.empty?
2258
            attributes[attribute_name] <<
2259
              [ find_parameter_position(multiparameter_name), type_cast_attribute_value(multiparameter_name, value) ]
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          end
        end

        attributes.each { |name, values| attributes[name] = values.sort_by{ |v| v.first }.collect { |v| v.last } }
      end
2265

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      def type_cast_attribute_value(multiparameter_name, value)
        multiparameter_name =~ /\([0-9]*([a-z])\)/ ? value.send("to_" + $1) : value
      end
2269

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      def find_parameter_position(multiparameter_name)
        multiparameter_name.scan(/\(([0-9]*).*\)/).first.first
      end
2273

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      # Returns a comma-separated pair list, like "key1 = val1, key2 = val2".
      def comma_pair_list(hash)
        hash.inject([]) { |list, pair| list << "#{pair.first} = #{pair.last}" }.join(", ")
      end

      def quoted_column_names(attributes = attributes_with_quotes)
2280 2281 2282
        attributes.keys.collect do |column_name|
          self.class.connection.quote_column_name(column_name)
        end
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      end

2285 2286 2287 2288
      def quote_columns(quoter, hash)
        hash.inject({}) do |quoted, (name, value)|
          quoted[quoter.quote_column_name(name)] = value
          quoted
2289
        end
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      end

2292 2293
      def quoted_comma_pair_list(quoter, hash)
        comma_pair_list(quote_columns(quoter, hash))
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      end

      def object_from_yaml(string)
2297
        return string unless string.is_a?(String)
2298
        YAML::load(string) rescue string
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      end
2300 2301 2302 2303 2304 2305 2306 2307 2308 2309

      def clone_attributes(reader_method = :read_attribute, attributes = {})
        self.attribute_names.inject(attributes) do |attributes, name|
          attributes[name] = clone_attribute_value(reader_method, name)
          attributes
        end
      end

      def clone_attribute_value(reader_method, attribute_name)
        value = send(reader_method, attribute_name)
2310 2311 2312 2313 2314 2315 2316

        case value
        when nil, Fixnum, true, false
          value
        else
          value.clone
        end
2317 2318 2319
      rescue TypeError, NoMethodError
        value
      end
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  end
2321
end