зеркало из https://github.com/github/ruby.git
730 строки
20 KiB
Ruby
730 строки
20 KiB
Ruby
# = uri/common.rb
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#
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# Author:: Akira Yamada <akira@ruby-lang.org>
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# Revision:: $Id$
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# License::
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# You can redistribute it and/or modify it under the same term as Ruby.
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#
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module URI
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module REGEXP
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#
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# Patterns used to parse URI's
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#
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module PATTERN
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# :stopdoc:
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# RFC 2396 (URI Generic Syntax)
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# RFC 2732 (IPv6 Literal Addresses in URL's)
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# RFC 2373 (IPv6 Addressing Architecture)
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# alpha = lowalpha | upalpha
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ALPHA = "a-zA-Z"
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# alphanum = alpha | digit
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ALNUM = "#{ALPHA}\\d"
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# hex = digit | "A" | "B" | "C" | "D" | "E" | "F" |
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# "a" | "b" | "c" | "d" | "e" | "f"
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HEX = "a-fA-F\\d"
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# escaped = "%" hex hex
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ESCAPED = "%[#{HEX}]{2}"
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# mark = "-" | "_" | "." | "!" | "~" | "*" | "'" |
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# "(" | ")"
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# unreserved = alphanum | mark
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UNRESERVED = "-_.!~*'()#{ALNUM}"
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# reserved = ";" | "/" | "?" | ":" | "@" | "&" | "=" | "+" |
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# "$" | ","
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# reserved = ";" | "/" | "?" | ":" | "@" | "&" | "=" | "+" |
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# "$" | "," | "[" | "]" (RFC 2732)
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RESERVED = ";/?:@&=+$,\\[\\]"
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# domainlabel = alphanum | alphanum *( alphanum | "-" ) alphanum
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DOMLABEL = "(?:[#{ALNUM}](?:[-#{ALNUM}]*[#{ALNUM}])?)"
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# toplabel = alpha | alpha *( alphanum | "-" ) alphanum
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TOPLABEL = "(?:[#{ALPHA}](?:[-#{ALNUM}]*[#{ALNUM}])?)"
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# hostname = *( domainlabel "." ) toplabel [ "." ]
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HOSTNAME = "(?:#{DOMLABEL}\\.)*#{TOPLABEL}\\.?"
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# :startdoc:
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end # PATTERN
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# :startdoc:
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end # REGEXP
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class Parser
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include REGEXP
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#
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# == Synopsis
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#
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# URI::Parser.new([opts])
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#
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# == Args
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#
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# The constructor accepts a hash as options for parser.
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# Keys of options are pattern names of URI components
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# and values of options are pattern strings.
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# The constructor generetes set of regexps for parsing URIs.
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#
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# You can use the following keys:
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#
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# * <tt>:ESCAPED</tt> (URI::PATTERN::ESCAPED in default)
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# * <tt>:UNRESERVED</tt> (URI::PATTERN::UNRESERVED in default)
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# * <tt>:DOMLABEL</tt> (URI::PATTERN::DOMLABEL in default)
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# * <tt>:TOPLABEL</tt> (URI::PATTERN::TOPLABEL in default)
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# * <tt>:HOSTNAME</tt> (URI::PATTERN::HOSTNAME in default)
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#
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# == Examples
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#
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# p = URI::Parser.new(:ESCPAED => "(?:%[a-fA-F0-9]{2}|%u[a-fA-F0-9]{4})"
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# u = p.parse("http://example.jp/%uABCD") #=> #<URI::HTTP:0xb78cf4f8 URL:http://example.jp/%uABCD>
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# URI.parse(u.to_s) #=> raises URI::InvalidURIError
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#
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# s = "http://examle.com/ABCD"
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# u1 = p.parse(s) #=> #<URI::HTTP:0xb78c3220 URL:http://example.com/ABCD>
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# u2 = URI.parse(s) #=> #<URI::HTTP:0xb78b6d54 URL:http://example.com/ABCD>
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# u1 == u2 #=> true
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# u1.eql?(u2) #=> false
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#
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def initialize(opts = {})
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@pattern = initialize_pattern(opts)
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@pattern.each_value {|v| v.freeze}
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@pattern.freeze
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@regexp = initialize_regexp(@pattern)
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@regexp.each_value {|v| v.freeze}
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@regexp.freeze
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end
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attr_reader :pattern, :regexp
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def split(uri)
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case uri
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when ''
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# null uri
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when @regexp[:ABS_URI]
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scheme, opaque, userinfo, host, port,
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registry, path, query, fragment = $~[1..-1]
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# URI-reference = [ absoluteURI | relativeURI ] [ "#" fragment ]
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# absoluteURI = scheme ":" ( hier_part | opaque_part )
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# hier_part = ( net_path | abs_path ) [ "?" query ]
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# opaque_part = uric_no_slash *uric
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# abs_path = "/" path_segments
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# net_path = "//" authority [ abs_path ]
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# authority = server | reg_name
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# server = [ [ userinfo "@" ] hostport ]
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if !scheme
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raise InvalidURIError,
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"bad URI(absolute but no scheme): #{uri}"
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end
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if !opaque && (!path && (!host && !registry))
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raise InvalidURIError,
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"bad URI(absolute but no path): #{uri}"
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end
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when @regexp[:REL_URI]
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scheme = nil
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opaque = nil
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userinfo, host, port, registry,
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rel_segment, abs_path, query, fragment = $~[1..-1]
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if rel_segment && abs_path
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path = rel_segment + abs_path
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elsif rel_segment
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path = rel_segment
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elsif abs_path
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path = abs_path
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end
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# URI-reference = [ absoluteURI | relativeURI ] [ "#" fragment ]
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# relativeURI = ( net_path | abs_path | rel_path ) [ "?" query ]
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# net_path = "//" authority [ abs_path ]
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# abs_path = "/" path_segments
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# rel_path = rel_segment [ abs_path ]
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# authority = server | reg_name
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# server = [ [ userinfo "@" ] hostport ]
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else
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raise InvalidURIError, "bad URI(is not URI?): #{uri}"
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end
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path = '' if !path && !opaque # (see RFC2396 Section 5.2)
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ret = [
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scheme,
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userinfo, host, port, # X
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registry, # X
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path, # Y
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opaque, # Y
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query,
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fragment
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]
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return ret
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end
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def parse(uri)
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scheme, userinfo, host, port,
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registry, path, opaque, query, fragment = self.split(uri)
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if scheme && URI.scheme_list.include?(scheme.upcase)
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URI.scheme_list[scheme.upcase].new(scheme, userinfo, host, port,
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registry, path, opaque, query,
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fragment, self)
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else
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Generic.new(scheme, userinfo, host, port,
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registry, path, opaque, query,
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fragment, self)
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end
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end
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def join(*str)
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u = self.parse(str[0])
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str[1 .. -1].each do |x|
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u = u.merge(x)
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end
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u
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end
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def extract(str, schemes = nil, &block)
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if block_given?
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str.scan(make_regexp(schemes)) { yield $& }
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nil
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else
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result = []
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str.scan(make_regexp(schemes)) { result.push $& }
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result
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end
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end
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def make_regexp(schemes = nil)
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unless schemes
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@regexp[:ABS_URI_REF]
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else
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/(?=#{Regexp.union(*schemes)}:)#{@pattern[:X_ABS_URI]}/x
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end
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end
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def escape(str, unsafe = @regexp[:UNSAFE])
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unless unsafe.kind_of?(Regexp)
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# perhaps unsafe is String object
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unsafe = Regexp.new("[#{Regexp.quote(unsafe)}]", false)
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end
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str.gsub(unsafe) do
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us = $&
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tmp = ''
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us.each_byte do |uc|
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tmp << sprintf('%%%02X', uc)
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end
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tmp
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end.force_encoding(Encoding::US_ASCII)
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end
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def unescape(str, escaped = @regexp[:ESCAPED])
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str.gsub(escaped) { [$&[1, 2].hex].pack('C') }.force_encoding(str.encoding)
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end
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@@to_s = Kernel.instance_method(:to_s)
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def inspect
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@@to_s.bind(self).call
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end
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private
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def initialize_pattern(opts = {})
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ret = {}
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ret[:ESCAPED] = escaped = (opts.delete(:ESCAPED) || PATTERN::ESCAPED)
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ret[:UNRESERVED] = unreserved = opts.delete(:UNRESERVED) || PATTERN::UNRESERVED
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ret[:RESERVED] = reserved = opts.delete(:RESERVED) || PATTERN::RESERVED
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ret[:DOMLABEL] = domlabel = opts.delete(:DOMLABEL) || PATTERN::DOMLABEL
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ret[:TOPLABEL] = toplabel = opts.delete(:TOPLABEL) || PATTERN::TOPLABEL
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ret[:HOSTNAME] = hostname = opts.delete(:HOSTNAME)
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# RFC 2396 (URI Generic Syntax)
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# RFC 2732 (IPv6 Literal Addresses in URL's)
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# RFC 2373 (IPv6 Addressing Architecture)
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# uric = reserved | unreserved | escaped
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ret[:URIC] = uric = "(?:[#{unreserved}#{reserved}]|#{escaped})"
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# uric_no_slash = unreserved | escaped | ";" | "?" | ":" | "@" |
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# "&" | "=" | "+" | "$" | ","
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ret[:URIC_NO_SLASH] = uric_no_slash = "(?:[#{unreserved};?:@&=+$,]|#{escaped})"
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# query = *uric
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ret[:QUERY] = query = "#{uric}*"
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# fragment = *uric
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ret[:FRAGMENT] = fragment = "#{uric}*"
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# hostname = *( domainlabel "." ) toplabel [ "." ]
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unless hostname
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ret[:HOSTNAME] = hostname = "(?:#{domlabel}\\.)*#{toplabel}\\.?"
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end
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# RFC 2373, APPENDIX B:
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# IPv6address = hexpart [ ":" IPv4address ]
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# IPv4address = 1*3DIGIT "." 1*3DIGIT "." 1*3DIGIT "." 1*3DIGIT
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# hexpart = hexseq | hexseq "::" [ hexseq ] | "::" [ hexseq ]
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# hexseq = hex4 *( ":" hex4)
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# hex4 = 1*4HEXDIG
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#
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# XXX: This definition has a flaw. "::" + IPv4address must be
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# allowed too. Here is a replacement.
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#
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# IPv4address = 1*3DIGIT "." 1*3DIGIT "." 1*3DIGIT "." 1*3DIGIT
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ret[:IPV4ADDR] = ipv4addr = "\\d{1,3}\\.\\d{1,3}\\.\\d{1,3}\\.\\d{1,3}"
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# hex4 = 1*4HEXDIG
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hex4 = "[#{PATTERN::HEX}]{1,4}"
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# lastpart = hex4 | IPv4address
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lastpart = "(?:#{hex4}|#{ipv4addr})"
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# hexseq1 = *( hex4 ":" ) hex4
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hexseq1 = "(?:#{hex4}:)*#{hex4}"
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# hexseq2 = *( hex4 ":" ) lastpart
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hexseq2 = "(?:#{hex4}:)*#{lastpart}"
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# IPv6address = hexseq2 | [ hexseq1 ] "::" [ hexseq2 ]
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ret[:IPV6ADDR] = ipv6addr = "(?:#{hexseq2}|(?:#{hexseq1})?::(?:#{hexseq2})?)"
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# IPv6prefix = ( hexseq1 | [ hexseq1 ] "::" [ hexseq1 ] ) "/" 1*2DIGIT
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# unused
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# ipv6reference = "[" IPv6address "]" (RFC 2732)
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ret[:IPV6REF] = ipv6ref = "\\[#{ipv6addr}\\]"
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# host = hostname | IPv4address
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# host = hostname | IPv4address | IPv6reference (RFC 2732)
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ret[:HOST] = host = "(?:#{hostname}|#{ipv4addr}|#{ipv6ref})"
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# port = *digit
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port = '\d*'
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# hostport = host [ ":" port ]
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ret[:HOSTPORT] = hostport = "#{host}(?::#{port})?"
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# userinfo = *( unreserved | escaped |
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# ";" | ":" | "&" | "=" | "+" | "$" | "," )
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ret[:USERINFO] = userinfo = "(?:[#{unreserved};:&=+$,]|#{escaped})*"
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# pchar = unreserved | escaped |
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# ":" | "@" | "&" | "=" | "+" | "$" | ","
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pchar = "(?:[#{unreserved}:@&=+$,]|#{escaped})"
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# param = *pchar
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param = "#{pchar}*"
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# segment = *pchar *( ";" param )
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segment = "#{pchar}*(?:;#{param})*"
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# path_segments = segment *( "/" segment )
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ret[:PATH_SEGMENTS] = path_segments = "#{segment}(?:/#{segment})*"
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# server = [ [ userinfo "@" ] hostport ]
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server = "(?:#{userinfo}@)?#{hostport}"
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# reg_name = 1*( unreserved | escaped | "$" | "," |
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# ";" | ":" | "@" | "&" | "=" | "+" )
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ret[:REG_NAME] = reg_name = "(?:[#{unreserved}$,;:@&=+]|#{escaped})+"
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# authority = server | reg_name
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authority = "(?:#{server}|#{reg_name})"
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# rel_segment = 1*( unreserved | escaped |
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# ";" | "@" | "&" | "=" | "+" | "$" | "," )
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ret[:REL_SEGMENT] = rel_segment = "(?:[#{unreserved};@&=+$,]|#{escaped})+"
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# scheme = alpha *( alpha | digit | "+" | "-" | "." )
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ret[:SCHEME] = scheme = "[#{PATTERN::ALPHA}][-+.#{PATTERN::ALPHA}\\d]*"
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# abs_path = "/" path_segments
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ret[:ABS_PATH] = abs_path = "/#{path_segments}"
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# rel_path = rel_segment [ abs_path ]
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ret[:REL_PATH] = rel_path = "#{rel_segment}(?:#{abs_path})?"
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# net_path = "//" authority [ abs_path ]
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ret[:NET_PATH] = net_path = "//#{authority}(?:#{abs_path})?"
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# hier_part = ( net_path | abs_path ) [ "?" query ]
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ret[:HIER_PART] = hier_part = "(?:#{net_path}|#{abs_path})(?:\\?(?:#{query}))?"
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# opaque_part = uric_no_slash *uric
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ret[:OPAQUE_PART] = opaque_part = "#{uric_no_slash}#{uric}*"
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# absoluteURI = scheme ":" ( hier_part | opaque_part )
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ret[:ABS_URI] = abs_uri = "#{scheme}:(?:#{hier_part}|#{opaque_part})"
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# relativeURI = ( net_path | abs_path | rel_path ) [ "?" query ]
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ret[:REL_URI] = rel_uri = "(?:#{net_path}|#{abs_path}|#{rel_path})(?:\\?#{query})?"
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# URI-reference = [ absoluteURI | relativeURI ] [ "#" fragment ]
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ret[:URI_REF] = uri_ref = "(?:#{abs_uri}|#{rel_uri})?(?:##{fragment})?"
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ret[:X_ABS_URI] = "
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(#{scheme}): (?# 1: scheme)
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(?:
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(#{opaque_part}) (?# 2: opaque)
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(?:(?:
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//(?:
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(?:(?:(#{userinfo})@)? (?# 3: userinfo)
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(?:(#{host})(?::(\\d*))?))? (?# 4: host, 5: port)
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(#{reg_name}) (?# 6: registry)
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)
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(?!//)) (?# XXX: '//' is the mark for hostport)
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(#{abs_path})? (?# 7: path)
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)(?:\\?(#{query}))? (?# 8: query)
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)
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(?:\\#(#{fragment}))? (?# 9: fragment)
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"
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ret[:X_REL_URI] = "
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(?:
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(?:
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//
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(?:
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(?:(#{userinfo})@)? (?# 1: userinfo)
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(#{host})?(?::(\\d*))? (?# 2: host, 3: port)
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(#{reg_name}) (?# 4: registry)
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)
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)
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(#{rel_segment}) (?# 5: rel_segment)
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)?
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(#{abs_path})? (?# 6: abs_path)
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(?:\\?(#{query}))? (?# 7: query)
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(?:\\#(#{fragment}))? (?# 8: fragment)
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"
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ret
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end
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def initialize_regexp(pattern)
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ret = {}
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# for URI::split
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ret[:ABS_URI] = Regexp.new('^' + pattern[:X_ABS_URI] + '$', Regexp::EXTENDED)
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ret[:REL_URI] = Regexp.new('^' + pattern[:X_REL_URI] + '$', Regexp::EXTENDED)
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# for URI::extract
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ret[:URI_REF] = Regexp.new(pattern[:URI_REF])
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ret[:ABS_URI_REF] = Regexp.new(pattern[:X_ABS_URI], Regexp::EXTENDED)
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ret[:REL_URI_REF] = Regexp.new(pattern[:X_REL_URI], Regexp::EXTENDED)
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# for URI::escape/unescape
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ret[:ESCAPED] = Regexp.new(pattern[:ESCAPED])
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ret[:UNSAFE] = Regexp.new("[^#{pattern[:UNRESERVED]}#{pattern[:RESERVED]}]")
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# for Generic#initialize
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ret[:SCHEME] = Regexp.new("^#{pattern[:SCHEME]}$")
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ret[:USERINFO] = Regexp.new("^#{pattern[:USERINFO]}$")
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ret[:HOST] = Regexp.new("^#{pattern[:HOST]}$")
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ret[:PORT] = Regexp.new("^#{pattern[:PORT]}$")
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ret[:OPAQUE] = Regexp.new("^#{pattern[:OPAQUE_PART]}$")
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ret[:REGISTRY] = Regexp.new("^#{pattern[:REG_NAME]}$")
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ret[:ABS_PATH] = Regexp.new("^#{pattern[:ABS_PATH]}$")
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ret[:REL_PATH] = Regexp.new("^#{pattern[:REL_PATH]}$")
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ret[:QUERY] = Regexp.new("^#{pattern[:QUERY]}$")
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ret[:FRAGMENT] = Regexp.new("^#{pattern[:FRAGMENT]}$")
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ret
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end
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end # class Parser
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DEFAULT_PARSER = Parser.new
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DEFAULT_PARSER.pattern.each_pair do |sym, str|
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unless REGEXP::PATTERN.const_defined?(sym)
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REGEXP::PATTERN.const_set(sym, str)
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end
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end
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DEFAULT_PARSER.regexp.each_pair do |sym, str|
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const_set(sym, str)
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end
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module Util # :nodoc:
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def make_components_hash(klass, array_hash)
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tmp = {}
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if array_hash.kind_of?(Array) &&
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array_hash.size == klass.component.size - 1
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klass.component[1..-1].each_index do |i|
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begin
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tmp[klass.component[i + 1]] = array_hash[i].clone
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rescue TypeError
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tmp[klass.component[i + 1]] = array_hash[i]
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end
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end
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elsif array_hash.kind_of?(Hash)
|
|
array_hash.each do |key, value|
|
|
begin
|
|
tmp[key] = value.clone
|
|
rescue TypeError
|
|
tmp[key] = value
|
|
end
|
|
end
|
|
else
|
|
raise ArgumentError,
|
|
"expected Array of or Hash of components of #{klass.to_s} (#{klass.component[1..-1].join(', ')})"
|
|
end
|
|
tmp[:scheme] = klass.to_s.sub(/\A.*::/, '').downcase
|
|
|
|
return tmp
|
|
end
|
|
module_function :make_components_hash
|
|
end
|
|
|
|
module Escape
|
|
#
|
|
# == Synopsis
|
|
#
|
|
# URI.escape(str [, unsafe])
|
|
#
|
|
# == Args
|
|
#
|
|
# +str+::
|
|
# String to replaces in.
|
|
# +unsafe+::
|
|
# Regexp that matches all symbols that must be replaced with codes.
|
|
# By default uses <tt>REGEXP::UNSAFE</tt>.
|
|
# When this argument is a String, it represents a character set.
|
|
#
|
|
# == Description
|
|
#
|
|
# Escapes the string, replacing all unsafe characters with codes.
|
|
#
|
|
# == Usage
|
|
#
|
|
# require 'uri'
|
|
#
|
|
# enc_uri = URI.escape("http://example.com/?a=\11\15")
|
|
# p enc_uri
|
|
# # => "http://example.com/?a=%09%0D"
|
|
#
|
|
# p URI.unescape(enc_uri)
|
|
# # => "http://example.com/?a=\t\r"
|
|
#
|
|
# p URI.escape("@?@!", "!?")
|
|
# # => "@%3F@%21"
|
|
#
|
|
def escape(*arg)
|
|
warn "#{caller(1)[0]}: warning: URI.escape is obsolete" if $VERBOSE
|
|
DEFAULT_PARSER.escape(*arg)
|
|
end
|
|
alias encode escape
|
|
#
|
|
# == Synopsis
|
|
#
|
|
# URI.unescape(str)
|
|
#
|
|
# == Args
|
|
#
|
|
# +str+::
|
|
# Unescapes the string.
|
|
#
|
|
# == Usage
|
|
#
|
|
# require 'uri'
|
|
#
|
|
# enc_uri = URI.escape("http://example.com/?a=\11\15")
|
|
# p enc_uri
|
|
# # => "http://example.com/?a=%09%0D"
|
|
#
|
|
# p URI.unescape(enc_uri)
|
|
# # => "http://example.com/?a=\t\r"
|
|
#
|
|
def unescape(*arg)
|
|
warn "#{caller(1)[0]}: warning: URI.unescape is obsolete" if $VERBOSE
|
|
DEFAULT_PARSER.unescape(*arg)
|
|
end
|
|
alias decode unescape
|
|
end
|
|
|
|
extend Escape
|
|
include REGEXP
|
|
|
|
@@schemes = {}
|
|
def self.scheme_list
|
|
@@schemes
|
|
end
|
|
|
|
#
|
|
# Base class for all URI exceptions.
|
|
#
|
|
class Error < StandardError; end
|
|
#
|
|
# Not a URI.
|
|
#
|
|
class InvalidURIError < Error; end
|
|
#
|
|
# Not a URI component.
|
|
#
|
|
class InvalidComponentError < Error; end
|
|
#
|
|
# URI is valid, bad usage is not.
|
|
#
|
|
class BadURIError < Error; end
|
|
|
|
#
|
|
# == Synopsis
|
|
#
|
|
# URI::split(uri)
|
|
#
|
|
# == Args
|
|
#
|
|
# +uri+::
|
|
# String with URI.
|
|
#
|
|
# == Description
|
|
#
|
|
# Splits the string on following parts and returns array with result:
|
|
#
|
|
# * Scheme
|
|
# * Userinfo
|
|
# * Host
|
|
# * Port
|
|
# * Registry
|
|
# * Path
|
|
# * Opaque
|
|
# * Query
|
|
# * Fragment
|
|
#
|
|
# == Usage
|
|
#
|
|
# require 'uri'
|
|
#
|
|
# p URI.split("http://www.ruby-lang.org/")
|
|
# # => ["http", nil, "www.ruby-lang.org", nil, nil, "/", nil, nil, nil]
|
|
#
|
|
def self.split(uri)
|
|
DEFAULT_PARSER.split(uri)
|
|
end
|
|
|
|
#
|
|
# == Synopsis
|
|
#
|
|
# URI::parse(uri_str)
|
|
#
|
|
# == Args
|
|
#
|
|
# +uri_str+::
|
|
# String with URI.
|
|
#
|
|
# == Description
|
|
#
|
|
# Creates one of the URI's subclasses instance from the string.
|
|
#
|
|
# == Raises
|
|
#
|
|
# URI::InvalidURIError
|
|
# Raised if URI given is not a correct one.
|
|
#
|
|
# == Usage
|
|
#
|
|
# require 'uri'
|
|
#
|
|
# uri = URI.parse("http://www.ruby-lang.org/")
|
|
# p uri
|
|
# # => #<URI::HTTP:0x202281be URL:http://www.ruby-lang.org/>
|
|
# p uri.scheme
|
|
# # => "http"
|
|
# p uri.host
|
|
# # => "www.ruby-lang.org"
|
|
#
|
|
def self.parse(uri)
|
|
DEFAULT_PARSER.parse(uri)
|
|
end
|
|
|
|
#
|
|
# == Synopsis
|
|
#
|
|
# URI::join(str[, str, ...])
|
|
#
|
|
# == Args
|
|
#
|
|
# +str+::
|
|
# String(s) to work with
|
|
#
|
|
# == Description
|
|
#
|
|
# Joins URIs.
|
|
#
|
|
# == Usage
|
|
#
|
|
# require 'uri'
|
|
#
|
|
# p URI.join("http://localhost/","main.rbx")
|
|
# # => #<URI::HTTP:0x2022ac02 URL:http://localhost/main.rbx>
|
|
#
|
|
def self.join(*str)
|
|
DEFAULT_PARSER.join(*str)
|
|
end
|
|
|
|
#
|
|
# == Synopsis
|
|
#
|
|
# URI::extract(str[, schemes][,&blk])
|
|
#
|
|
# == Args
|
|
#
|
|
# +str+::
|
|
# String to extract URIs from.
|
|
# +schemes+::
|
|
# Limit URI matching to a specific schemes.
|
|
#
|
|
# == Description
|
|
#
|
|
# Extracts URIs from a string. If block given, iterates through all matched URIs.
|
|
# Returns nil if block given or array with matches.
|
|
#
|
|
# == Usage
|
|
#
|
|
# require "uri"
|
|
#
|
|
# URI.extract("text here http://foo.example.org/bla and here mailto:test@example.com and here also.")
|
|
# # => ["http://foo.example.com/bla", "mailto:test@example.com"]
|
|
#
|
|
def self.extract(str, schemes = nil, &block)
|
|
DEFAULT_PARSER.extract(str, schemes, &block)
|
|
end
|
|
|
|
#
|
|
# == Synopsis
|
|
#
|
|
# URI::regexp([match_schemes])
|
|
#
|
|
# == Args
|
|
#
|
|
# +match_schemes+::
|
|
# Array of schemes. If given, resulting regexp matches to URIs
|
|
# whose scheme is one of the match_schemes.
|
|
#
|
|
# == Description
|
|
# Returns a Regexp object which matches to URI-like strings.
|
|
# The Regexp object returned by this method includes arbitrary
|
|
# number of capture group (parentheses). Never rely on it's number.
|
|
#
|
|
# == Usage
|
|
#
|
|
# require 'uri'
|
|
#
|
|
# # extract first URI from html_string
|
|
# html_string.slice(URI.regexp)
|
|
#
|
|
# # remove ftp URIs
|
|
# html_string.sub(URI.regexp(['ftp'])
|
|
#
|
|
# # You should not rely on the number of parentheses
|
|
# html_string.scan(URI.regexp) do |*matches|
|
|
# p $&
|
|
# end
|
|
#
|
|
def self.regexp(schemes = nil)
|
|
DEFAULT_PARSER.make_regexp(schemes)
|
|
end
|
|
|
|
end
|
|
|
|
module Kernel
|
|
# alias for URI.parse.
|
|
#
|
|
# This method is introduced at 1.8.2.
|
|
def URI(uri_str) # :doc:
|
|
URI.parse(uri_str)
|
|
end
|
|
module_function :URI
|
|
end
|