6873fc8026
Upgraded to Rails 2.0.2, except that we maintain vendor/rails/actionpack/lib/action_controller/routing.rb from Rail 1.2.6 (at least for now), so that Routes don't change. We still get to enjoy Rails's many new features. Also fixed a bug in Chunk-handling: disable WikiWord processing in tags (for real this time).
731 lines
23 KiB
Ruby
Executable file
731 lines
23 KiB
Ruby
Executable file
require 'tempfile'
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require 'stringio'
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require 'strscan'
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module ActionController
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# HTTP methods which are accepted by default.
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ACCEPTED_HTTP_METHODS = Set.new(%w( get head put post delete options ))
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# CgiRequest and TestRequest provide concrete implementations.
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class AbstractRequest
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cattr_accessor :relative_url_root
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remove_method :relative_url_root
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# The hash of environment variables for this request,
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# such as { 'RAILS_ENV' => 'production' }.
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attr_reader :env
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# The true HTTP request method as a lowercase symbol, such as :get.
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# UnknownHttpMethod is raised for invalid methods not listed in ACCEPTED_HTTP_METHODS.
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def request_method
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@request_method ||= begin
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method = ((@env['REQUEST_METHOD'] == 'POST' && !parameters[:_method].blank?) ? parameters[:_method].to_s : @env['REQUEST_METHOD']).downcase
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if ACCEPTED_HTTP_METHODS.include?(method)
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method.to_sym
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else
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raise UnknownHttpMethod, "#{method}, accepted HTTP methods are #{ACCEPTED_HTTP_METHODS.to_a.to_sentence}"
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end
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end
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end
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# The HTTP request method as a lowercase symbol, such as :get.
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# Note, HEAD is returned as :get since the two are functionally
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# equivalent from the application's perspective.
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def method
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request_method == :head ? :get : request_method
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end
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# Is this a GET (or HEAD) request? Equivalent to request.method == :get
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def get?
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method == :get
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end
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# Is this a POST request? Equivalent to request.method == :post
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def post?
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request_method == :post
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end
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# Is this a PUT request? Equivalent to request.method == :put
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def put?
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request_method == :put
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end
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# Is this a DELETE request? Equivalent to request.method == :delete
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def delete?
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request_method == :delete
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end
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# Is this a HEAD request? request.method sees HEAD as :get, so check the
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# HTTP method directly.
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def head?
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request_method == :head
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end
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def headers
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@env
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end
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def content_length
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@content_length ||= env['CONTENT_LENGTH'].to_i
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end
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# The MIME type of the HTTP request, such as Mime::XML.
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#
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# For backward compatibility, the post format is extracted from the
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# X-Post-Data-Format HTTP header if present.
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def content_type
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@content_type ||= Mime::Type.lookup(content_type_without_parameters)
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end
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# Returns the accepted MIME type for the request
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def accepts
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@accepts ||=
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if @env['HTTP_ACCEPT'].to_s.strip.empty?
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[ content_type, Mime::ALL ].compact # make sure content_type being nil is not included
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else
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Mime::Type.parse(@env['HTTP_ACCEPT'])
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end
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end
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# Returns the Mime type for the format used in the request. If there is no format available, the first of the
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# accept types will be used. Examples:
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#
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# GET /posts/5.xml | request.format => Mime::XML
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# GET /posts/5.xhtml | request.format => Mime::HTML
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# GET /posts/5 | request.format => request.accepts.first (usually Mime::HTML for browsers)
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def format
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@format ||= parameters[:format] ? Mime::Type.lookup_by_extension(parameters[:format]) : accepts.first
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end
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# Sets the format by string extension, which can be used to force custom formats that are not controlled by the extension.
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# Example:
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#
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# class ApplicationController < ActionController::Base
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# before_filter :adjust_format_for_iphone
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#
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# private
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# def adjust_format_for_iphone
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# request.format = :iphone if request.env["HTTP_USER_AGENT"][/iPhone/]
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# end
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# end
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def format=(extension)
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parameters[:format] = extension.to_s
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format
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end
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# Returns true if the request's "X-Requested-With" header contains
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# "XMLHttpRequest". (The Prototype Javascript library sends this header with
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# every Ajax request.)
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def xml_http_request?
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!(@env['HTTP_X_REQUESTED_WITH'] !~ /XMLHttpRequest/i)
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end
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alias xhr? :xml_http_request?
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# Determine originating IP address. REMOTE_ADDR is the standard
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# but will fail if the user is behind a proxy. HTTP_CLIENT_IP and/or
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# HTTP_X_FORWARDED_FOR are set by proxies so check for these before
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# falling back to REMOTE_ADDR. HTTP_X_FORWARDED_FOR may be a comma-
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# delimited list in the case of multiple chained proxies; the first is
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# the originating IP.
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#
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# Security note: do not use if IP spoofing is a concern for your
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# application. Since remote_ip checks HTTP headers for addresses forwarded
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# by proxies, the client may send any IP. remote_addr can't be spoofed but
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# also doesn't work behind a proxy, since it's always the proxy's IP.
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def remote_ip
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return @env['HTTP_CLIENT_IP'] if @env.include? 'HTTP_CLIENT_IP'
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if @env.include? 'HTTP_X_FORWARDED_FOR' then
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remote_ips = @env['HTTP_X_FORWARDED_FOR'].split(',').reject do |ip|
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ip.strip =~ /^unknown$|^(10|172\.(1[6-9]|2[0-9]|30|31)|192\.168)\./i
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end
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return remote_ips.first.strip unless remote_ips.empty?
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end
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@env['REMOTE_ADDR']
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end
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# Returns the lowercase name of the HTTP server software.
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def server_software
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(@env['SERVER_SOFTWARE'] && /^([a-zA-Z]+)/ =~ @env['SERVER_SOFTWARE']) ? $1.downcase : nil
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end
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# Returns the complete URL used for this request
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def url
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protocol + host_with_port + request_uri
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end
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# Return 'https://' if this is an SSL request and 'http://' otherwise.
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def protocol
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ssl? ? 'https://' : 'http://'
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end
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# Is this an SSL request?
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def ssl?
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@env['HTTPS'] == 'on' || @env['HTTP_X_FORWARDED_PROTO'] == 'https'
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end
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# Returns the host for this request, such as example.com.
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def host
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end
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# Returns a host:port string for this request, such as example.com or
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# example.com:8080.
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def host_with_port
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@host_with_port ||= host + port_string
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end
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# Returns the port number of this request as an integer.
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def port
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@port_as_int ||= @env['SERVER_PORT'].to_i
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end
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# Returns the standard port number for this request's protocol
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def standard_port
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case protocol
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when 'https://' then 443
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else 80
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end
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end
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# Returns a port suffix like ":8080" if the port number of this request
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# is not the default HTTP port 80 or HTTPS port 443.
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def port_string
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(port == standard_port) ? '' : ":#{port}"
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end
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# Returns the domain part of a host, such as rubyonrails.org in "www.rubyonrails.org". You can specify
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# a different <tt>tld_length</tt>, such as 2 to catch rubyonrails.co.uk in "www.rubyonrails.co.uk".
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def domain(tld_length = 1)
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return nil unless named_host?(host)
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host.split('.').last(1 + tld_length).join('.')
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end
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# Returns all the subdomains as an array, so ["dev", "www"] would be returned for "dev.www.rubyonrails.org".
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# You can specify a different <tt>tld_length</tt>, such as 2 to catch ["www"] instead of ["www", "rubyonrails"]
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# in "www.rubyonrails.co.uk".
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def subdomains(tld_length = 1)
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return [] unless named_host?(host)
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parts = host.split('.')
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parts[0..-(tld_length+2)]
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end
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# Return the query string, accounting for server idiosyncracies.
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def query_string
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if uri = @env['REQUEST_URI']
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uri.split('?', 2)[1] || ''
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else
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@env['QUERY_STRING'] || ''
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end
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end
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# Return the request URI, accounting for server idiosyncracies.
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# WEBrick includes the full URL. IIS leaves REQUEST_URI blank.
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def request_uri
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if uri = @env['REQUEST_URI']
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# Remove domain, which webrick puts into the request_uri.
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(%r{^\w+\://[^/]+(/.*|$)$} =~ uri) ? $1 : uri
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else
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# Construct IIS missing REQUEST_URI from SCRIPT_NAME and PATH_INFO.
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script_filename = @env['SCRIPT_NAME'].to_s.match(%r{[^/]+$})
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uri = @env['PATH_INFO']
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uri = uri.sub(/#{script_filename}\//, '') unless script_filename.nil?
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unless (env_qs = @env['QUERY_STRING']).nil? || env_qs.empty?
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uri << '?' << env_qs
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end
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if uri.nil?
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@env.delete('REQUEST_URI')
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uri
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else
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@env['REQUEST_URI'] = uri
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end
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end
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end
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# Returns the interpreted path to requested resource after all the installation directory of this application was taken into account
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def path
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path = (uri = request_uri) ? uri.split('?').first.to_s : ''
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# Cut off the path to the installation directory if given
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path.sub!(%r/^#{relative_url_root}/, '')
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path || ''
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end
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# Returns the path minus the web server relative installation directory.
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# This can be set with the environment variable RAILS_RELATIVE_URL_ROOT.
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# It can be automatically extracted for Apache setups. If the server is not
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# Apache, this method returns an empty string.
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def relative_url_root
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@@relative_url_root ||= case
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when @env["RAILS_RELATIVE_URL_ROOT"]
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@env["RAILS_RELATIVE_URL_ROOT"]
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when server_software == 'apache'
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@env["SCRIPT_NAME"].to_s.sub(/\/dispatch\.(fcgi|rb|cgi)$/, '')
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else
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''
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end
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end
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# Read the request body. This is useful for web services that need to
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# work with raw requests directly.
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def raw_post
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unless env.include? 'RAW_POST_DATA'
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env['RAW_POST_DATA'] = body.read(content_length)
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body.rewind if body.respond_to?(:rewind)
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end
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env['RAW_POST_DATA']
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end
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# Returns both GET and POST parameters in a single hash.
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def parameters
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@parameters ||= request_parameters.merge(query_parameters).update(path_parameters).with_indifferent_access
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end
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def path_parameters=(parameters) #:nodoc:
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@path_parameters = parameters
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@symbolized_path_parameters = @parameters = nil
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end
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# The same as <tt>path_parameters</tt> with explicitly symbolized keys
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def symbolized_path_parameters
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@symbolized_path_parameters ||= path_parameters.symbolize_keys
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end
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# Returns a hash with the parameters used to form the path of the request.
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# Returned hash keys are strings. See <tt>symbolized_path_parameters</tt> for symbolized keys.
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#
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# Example:
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#
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# {'action' => 'my_action', 'controller' => 'my_controller'}
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def path_parameters
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@path_parameters ||= {}
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end
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#--
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# Must be implemented in the concrete request
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#++
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# The request body is an IO input stream.
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def body
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end
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def query_parameters #:nodoc:
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end
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def request_parameters #:nodoc:
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end
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def cookies #:nodoc:
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end
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def session #:nodoc:
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end
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def session=(session) #:nodoc:
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@session = session
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end
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def reset_session #:nodoc:
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end
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protected
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# The raw content type string. Use when you need parameters such as
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# charset or boundary which aren't included in the content_type MIME type.
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# Overridden by the X-POST_DATA_FORMAT header for backward compatibility.
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def content_type_with_parameters
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content_type_from_legacy_post_data_format_header ||
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env['CONTENT_TYPE'].to_s
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end
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# The raw content type string with its parameters stripped off.
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def content_type_without_parameters
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@content_type_without_parameters ||= self.class.extract_content_type_without_parameters(content_type_with_parameters)
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end
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private
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def content_type_from_legacy_post_data_format_header
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if x_post_format = @env['HTTP_X_POST_DATA_FORMAT']
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case x_post_format.to_s.downcase
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when 'yaml'; 'application/x-yaml'
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when 'xml'; 'application/xml'
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end
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end
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end
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def parse_formatted_request_parameters
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return {} if content_length.zero?
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content_type, boundary = self.class.extract_multipart_boundary(content_type_with_parameters)
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# Don't parse params for unknown requests.
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return {} if content_type.blank?
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mime_type = Mime::Type.lookup(content_type)
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strategy = ActionController::Base.param_parsers[mime_type]
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# Only multipart form parsing expects a stream.
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body = (strategy && strategy != :multipart_form) ? raw_post : self.body
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case strategy
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when Proc
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strategy.call(body)
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when :url_encoded_form
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self.class.clean_up_ajax_request_body! body
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self.class.parse_query_parameters(body)
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when :multipart_form
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self.class.parse_multipart_form_parameters(body, boundary, content_length, env)
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when :xml_simple, :xml_node
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body.blank? ? {} : Hash.from_xml(body).with_indifferent_access
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when :yaml
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YAML.load(body)
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else
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{}
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end
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rescue Exception => e # YAML, XML or Ruby code block errors
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raise
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{ "body" => body,
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"content_type" => content_type_with_parameters,
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"content_length" => content_length,
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"exception" => "#{e.message} (#{e.class})",
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"backtrace" => e.backtrace }
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end
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def named_host?(host)
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!(host.nil? || /\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}$/.match(host))
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end
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class << self
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def parse_query_parameters(query_string)
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return {} if query_string.blank?
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pairs = query_string.split('&').collect do |chunk|
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next if chunk.empty?
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key, value = chunk.split('=', 2)
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next if key.empty?
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value = value.nil? ? nil : CGI.unescape(value)
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[ CGI.unescape(key), value ]
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end.compact
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UrlEncodedPairParser.new(pairs).result
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end
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def parse_request_parameters(params)
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parser = UrlEncodedPairParser.new
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params = params.dup
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until params.empty?
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for key, value in params
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if key.blank?
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params.delete key
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elsif !key.include?('[')
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# much faster to test for the most common case first (GET)
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# and avoid the call to build_deep_hash
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parser.result[key] = get_typed_value(value[0])
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params.delete key
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elsif value.is_a?(Array)
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parser.parse(key, get_typed_value(value.shift))
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params.delete key if value.empty?
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else
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raise TypeError, "Expected array, found #{value.inspect}"
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end
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end
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end
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parser.result
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end
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def parse_multipart_form_parameters(body, boundary, content_length, env)
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parse_request_parameters(read_multipart(body, boundary, content_length, env))
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end
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def extract_multipart_boundary(content_type_with_parameters)
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if content_type_with_parameters =~ MULTIPART_BOUNDARY
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['multipart/form-data', $1.dup]
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else
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extract_content_type_without_parameters(content_type_with_parameters)
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end
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end
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def extract_content_type_without_parameters(content_type_with_parameters)
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$1.strip.downcase if content_type_with_parameters =~ /^([^,\;]*)/
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end
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def clean_up_ajax_request_body!(body)
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body.chop! if body[-1] == 0
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body.gsub!(/&_=$/, '')
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end
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private
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def get_typed_value(value)
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case value
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when String
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value
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when NilClass
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''
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when Array
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value.map { |v| get_typed_value(v) }
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else
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if value.is_a?(UploadedFile)
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# Uploaded file
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if value.original_filename
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value
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# Multipart param
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else
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result = value.read
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value.rewind
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result
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end
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# Unknown value, neither string nor multipart.
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else
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raise "Unknown form value: #{value.inspect}"
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end
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end
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end
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MULTIPART_BOUNDARY = %r|\Amultipart/form-data.*boundary=\"?([^\";,]+)\"?|n
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EOL = "\015\012"
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def read_multipart(body, boundary, content_length, env)
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params = Hash.new([])
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boundary = "--" + boundary
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quoted_boundary = Regexp.quote(boundary, "n")
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buf = ""
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bufsize = 10 * 1024
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boundary_end=""
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# start multipart/form-data
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body.binmode if defined? body.binmode
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boundary_size = boundary.size + EOL.size
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content_length -= boundary_size
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status = body.read(boundary_size)
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if nil == status
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raise EOFError, "no content body"
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elsif boundary + EOL != status
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raise EOFError, "bad content body"
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end
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loop do
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head = nil
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content =
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if 10240 < content_length
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UploadedTempfile.new("CGI")
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else
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UploadedStringIO.new
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end
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content.binmode if defined? content.binmode
|
|
|
|
until head and /#{quoted_boundary}(?:#{EOL}|--)/n.match(buf)
|
|
|
|
if (not head) and /#{EOL}#{EOL}/n.match(buf)
|
|
buf = buf.sub(/\A((?:.|\n)*?#{EOL})#{EOL}/n) do
|
|
head = $1.dup
|
|
""
|
|
end
|
|
next
|
|
end
|
|
|
|
if head and ( (EOL + boundary + EOL).size < buf.size )
|
|
content.print buf[0 ... (buf.size - (EOL + boundary + EOL).size)]
|
|
buf[0 ... (buf.size - (EOL + boundary + EOL).size)] = ""
|
|
end
|
|
|
|
c = if bufsize < content_length
|
|
body.read(bufsize)
|
|
else
|
|
body.read(content_length)
|
|
end
|
|
if c.nil? || c.empty?
|
|
raise EOFError, "bad content body"
|
|
end
|
|
buf.concat(c)
|
|
content_length -= c.size
|
|
end
|
|
|
|
buf = buf.sub(/\A((?:.|\n)*?)(?:[\r\n]{1,2})?#{quoted_boundary}([\r\n]{1,2}|--)/n) do
|
|
content.print $1
|
|
if "--" == $2
|
|
content_length = -1
|
|
end
|
|
boundary_end = $2.dup
|
|
""
|
|
end
|
|
|
|
content.rewind
|
|
|
|
head =~ /Content-Disposition:.* filename=(?:"((?:\\.|[^\"])*)"|([^;]*))/ni
|
|
if filename = $1 || $2
|
|
if /Mac/ni.match(env['HTTP_USER_AGENT']) and
|
|
/Mozilla/ni.match(env['HTTP_USER_AGENT']) and
|
|
(not /MSIE/ni.match(env['HTTP_USER_AGENT']))
|
|
filename = CGI.unescape(filename)
|
|
end
|
|
content.original_path = filename.dup
|
|
end
|
|
|
|
head =~ /Content-Type: ([^\r]*)/ni
|
|
content.content_type = $1.dup if $1
|
|
|
|
head =~ /Content-Disposition:.* name="?([^\";]*)"?/ni
|
|
name = $1.dup if $1
|
|
|
|
if params.has_key?(name)
|
|
params[name].push(content)
|
|
else
|
|
params[name] = [content]
|
|
end
|
|
break if buf.size == 0
|
|
break if content_length == -1
|
|
end
|
|
raise EOFError, "bad boundary end of body part" unless boundary_end=~/--/
|
|
|
|
begin
|
|
body.rewind if body.respond_to?(:rewind)
|
|
rescue Errno::ESPIPE
|
|
# Handles exceptions raised by input streams that cannot be rewound
|
|
# such as when using plain CGI under Apache
|
|
end
|
|
|
|
params
|
|
end
|
|
end
|
|
end
|
|
|
|
class UrlEncodedPairParser < StringScanner #:nodoc:
|
|
attr_reader :top, :parent, :result
|
|
|
|
def initialize(pairs = [])
|
|
super('')
|
|
@result = {}
|
|
pairs.each { |key, value| parse(key, value) }
|
|
end
|
|
|
|
KEY_REGEXP = %r{([^\[\]=&]+)}
|
|
BRACKETED_KEY_REGEXP = %r{\[([^\[\]=&]+)\]}
|
|
|
|
# Parse the query string
|
|
def parse(key, value)
|
|
self.string = key
|
|
@top, @parent = result, nil
|
|
|
|
# First scan the bare key
|
|
key = scan(KEY_REGEXP) or return
|
|
key = post_key_check(key)
|
|
|
|
# Then scan as many nestings as present
|
|
until eos?
|
|
r = scan(BRACKETED_KEY_REGEXP) or return
|
|
key = self[1]
|
|
key = post_key_check(key)
|
|
end
|
|
|
|
bind(key, value)
|
|
end
|
|
|
|
private
|
|
# After we see a key, we must look ahead to determine our next action. Cases:
|
|
#
|
|
# [] follows the key. Then the value must be an array.
|
|
# = follows the key. (A value comes next)
|
|
# & or the end of string follows the key. Then the key is a flag.
|
|
# otherwise, a hash follows the key.
|
|
def post_key_check(key)
|
|
if scan(/\[\]/) # a[b][] indicates that b is an array
|
|
container(key, Array)
|
|
nil
|
|
elsif check(/\[[^\]]/) # a[b] indicates that a is a hash
|
|
container(key, Hash)
|
|
nil
|
|
else # End of key? We do nothing.
|
|
key
|
|
end
|
|
end
|
|
|
|
# Add a container to the stack.
|
|
def container(key, klass)
|
|
type_conflict! klass, top[key] if top.is_a?(Hash) && top.key?(key) && ! top[key].is_a?(klass)
|
|
value = bind(key, klass.new)
|
|
type_conflict! klass, value unless value.is_a?(klass)
|
|
push(value)
|
|
end
|
|
|
|
# Push a value onto the 'stack', which is actually only the top 2 items.
|
|
def push(value)
|
|
@parent, @top = @top, value
|
|
end
|
|
|
|
# Bind a key (which may be nil for items in an array) to the provided value.
|
|
def bind(key, value)
|
|
if top.is_a? Array
|
|
if key
|
|
if top[-1].is_a?(Hash) && ! top[-1].key?(key)
|
|
top[-1][key] = value
|
|
else
|
|
top << {key => value}.with_indifferent_access
|
|
push top.last
|
|
end
|
|
else
|
|
top << value
|
|
end
|
|
elsif top.is_a? Hash
|
|
key = CGI.unescape(key)
|
|
parent << (@top = {}) if top.key?(key) && parent.is_a?(Array)
|
|
return top[key] ||= value
|
|
else
|
|
raise ArgumentError, "Don't know what to do: top is #{top.inspect}"
|
|
end
|
|
|
|
return value
|
|
end
|
|
|
|
def type_conflict!(klass, value)
|
|
raise TypeError, "Conflicting types for parameter containers. Expected an instance of #{klass} but found an instance of #{value.class}. This can be caused by colliding Array and Hash parameters like qs[]=value&qs[key]=value."
|
|
end
|
|
end
|
|
|
|
module UploadedFile
|
|
def self.included(base)
|
|
base.class_eval do
|
|
attr_accessor :original_path, :content_type
|
|
alias_method :local_path, :path
|
|
end
|
|
end
|
|
|
|
# Take the basename of the upload's original filename.
|
|
# This handles the full Windows paths given by Internet Explorer
|
|
# (and perhaps other broken user agents) without affecting
|
|
# those which give the lone filename.
|
|
# The Windows regexp is adapted from Perl's File::Basename.
|
|
def original_filename
|
|
unless defined? @original_filename
|
|
@original_filename =
|
|
unless original_path.blank?
|
|
if original_path =~ /^(?:.*[:\\\/])?(.*)/m
|
|
$1
|
|
else
|
|
File.basename original_path
|
|
end
|
|
end
|
|
end
|
|
@original_filename
|
|
end
|
|
end
|
|
|
|
class UploadedStringIO < StringIO
|
|
include UploadedFile
|
|
end
|
|
|
|
class UploadedTempfile < Tempfile
|
|
include UploadedFile
|
|
end
|
|
end
|