mirror of
https://github.com/matrix-construct/construct
synced 2024-11-05 05:18:54 +01:00
512 lines
11 KiB
C++
512 lines
11 KiB
C++
// Matrix Construct
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//
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// Copyright (C) Matrix Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2018 Jason Volk <jason@zemos.net>
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//
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// Permission to use, copy, modify, and/or distribute this software for any
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// purpose with or without fee is hereby granted, provided that the above
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// copyright notice and this permission notice is present in all copies. The
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// full license for this software is available in the LICENSE file.
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namespace ircd { namespace rfc3986
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__attribute__((visibility("hidden")))
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{
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using namespace ircd::spirit;
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struct encoder extern const encoder;
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struct decoder extern const decoder;
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}}
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struct ircd::rfc3986::encoder
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:karma::grammar<char *, const string_view &>
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{
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void throw_illegal()
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{
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throw encoding_error("Generator Protection: urlencode");
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}
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karma::rule<char *, const string_view &> url_encoding
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{
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*(karma::char_("A-Za-z0-9") | (karma::lit('%') << karma::hex))
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,"url encoding"
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};
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encoder(): encoder::base_type{url_encoding} {}
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}
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const ircd::rfc3986::encoder;
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struct ircd::rfc3986::decoder
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:qi::grammar<const char *, mutable_buffer>
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{
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template<class R = unused_type, class... S> using rule = qi::rule<const char *, R, S...>;
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rule<> url_illegal
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{
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char_(0x00, 0x1f)
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,"url illegal"
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};
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rule<char()> url_encodable
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{
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char_("A-Za-z0-9")
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,"url encodable character"
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};
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rule<char()> urlencoded_character
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{
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'%' > qi::uint_parser<char, 16, 2, 2>{}
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,"urlencoded character"
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};
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rule<mutable_buffer> url_decode
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{
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*((char_ - '%') | urlencoded_character)
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,"urldecode"
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};
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decoder(): decoder::base_type { url_decode } {}
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}
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const ircd::rfc3986::decoder;
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decltype(ircd::rfc3986::parser::port)
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ircd::rfc3986::parser::port
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{
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ushort_
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,"port number"
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};
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decltype(ircd::rfc3986::parser::ip4_octet)
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ircd::rfc3986::parser::ip4_octet
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{
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repeat(1,3)[char_("0-9")]
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,"IPv4 octet"
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};
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decltype(ircd::rfc3986::parser::ip4_address)
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ircd::rfc3986::parser::ip4_address
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{
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repeat(3)[ip4_octet >> '.'] >> ip4_octet
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,"IPv4 address"
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};
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decltype(ircd::rfc3986::parser::ip4_literal)
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ircd::rfc3986::parser::ip4_literal
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{
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ip4_address
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,"IPv4 literal"
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};
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decltype(ircd::rfc3986::parser::ip4_remote)
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ircd::rfc3986::parser::ip4_remote
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{
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ip4_literal >> -(':' > port)
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,"IPv4 remote"
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};
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decltype(ircd::rfc3986::parser::ip6_char)
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ircd::rfc3986::parser::ip6_char
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{
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char_("0-9a-fA-F")
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,"IPv6 character"
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};
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decltype(ircd::rfc3986::parser::ip6_h16)
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ircd::rfc3986::parser::ip6_h16
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{
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repeat(1,4)[ip6_char]
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,"IPv6 hexdigit"
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};
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decltype(ircd::rfc3986::parser::ip6_piece)
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ircd::rfc3986::parser::ip6_piece
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{
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ip6_h16 >> ':'
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,"IPv6 address piece"
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};
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// This is reversed from the BNF in the RFC otherwise it requires
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// backtracking during the repeat[]; parsers are adjusted accordingly.
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decltype(ircd::rfc3986::parser::ip6_ipiece)
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ircd::rfc3986::parser::ip6_ipiece
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{
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':' >> ip6_h16
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,"IPv6 address piece"
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};
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decltype(ircd::rfc3986::parser::ip6_ls32)
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ircd::rfc3986::parser::ip6_ls32
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{
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(ip6_h16 >> ':' >> ip6_h16) | ip4_address
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};
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/// https://tools.ietf.org/html/rfc3986 Appendix A
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decltype(ircd::rfc3986::parser::ip6_addr)
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ircd::rfc3986::parser::ip6_addr
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{
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{ repeat(6)[ip6_piece] >> ip6_ls32 },
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{ lit("::") >> repeat(5)[ip6_piece] >> ip6_ls32 },
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{ ip6_h16 >> lit("::") >> repeat(4)[ip6_piece] >> ip6_ls32 },
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{ ip6_h16 >> repeat(0,1)[ip6_ipiece] >> lit("::") >> repeat(3)[ip6_piece] >> ip6_ls32 },
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{ ip6_h16 >> repeat(0,2)[ip6_ipiece] >> lit("::") >> repeat(2)[ip6_piece] >> ip6_ls32 },
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{ ip6_h16 >> repeat(0,3)[ip6_ipiece] >> lit("::") >> ip6_piece >> ip6_ls32 },
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{ ip6_h16 >> repeat(0,4)[ip6_ipiece] >> lit("::") >> ip6_ls32 },
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{ ip6_h16 >> repeat(0,5)[ip6_ipiece] >> lit("::") >> -ip6_h16 },
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{ lit("::") >> -ip6_h16 },
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};
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decltype(ircd::rfc3986::parser::ip6_address)
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ircd::rfc3986::parser::ip6_address
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{
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ip6_addr[0] | ip6_addr[1] | ip6_addr[2] |
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ip6_addr[3] | ip6_addr[4] | ip6_addr[5] |
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ip6_addr[6] | ip6_addr[7] | ip6_addr[8]
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,"IPv6 address"
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};
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decltype(ircd::rfc3986::parser::ip6_literal)
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ircd::rfc3986::parser::ip6_literal
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{
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'[' >> ip6_address >> ']'
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,"IPv6 literal"
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};
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decltype(ircd::rfc3986::parser::ip6_remote)
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ircd::rfc3986::parser::ip6_remote
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{
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ip6_literal >> -(':' > port)
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,"IPv6 literal"
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};
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decltype(ircd::rfc3986::parser::ip_address)
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ircd::rfc3986::parser::ip_address
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{
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ip4_address | ip6_address
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,"IP address"
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};
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decltype(ircd::rfc3986::parser::ip_literal)
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ircd::rfc3986::parser::ip_literal
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{
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ip6_literal | ip4_literal
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,"IP literal"
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};
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decltype(ircd::rfc3986::parser::ip_remote)
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ircd::rfc3986::parser::ip_remote
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{
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ip_literal >> -(':' > port)
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,"IP literal"
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};
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decltype(ircd::rfc3986::parser::hostname)
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ircd::rfc3986::parser::hostname
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{
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char_("A-Za-z0-9") >> *(char_("A-Za-z0-9\x2D")) // x2D is '-'
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,"hostname"
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};
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decltype(ircd::rfc3986::parser::domain)
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ircd::rfc3986::parser::domain
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{
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hostname % '.'
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,"domain"
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};
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decltype(ircd::rfc3986::parser::hostport)
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ircd::rfc3986::parser::hostport
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{
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domain >> -(':' > port)
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,"hostport"
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};
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decltype(ircd::rfc3986::parser::host)
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ircd::rfc3986::parser::host
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{
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ip_address | domain
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,"host"
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};
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decltype(ircd::rfc3986::parser::host_literal)
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ircd::rfc3986::parser::host_literal
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{
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ip_literal | domain
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,"host literal"
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};
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decltype(ircd::rfc3986::parser::remote)
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ircd::rfc3986::parser::remote
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{
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ip_remote | hostport
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,"remote"
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};
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ircd::string_view
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ircd::rfc3986::encode(const mutable_buffer &out,
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const json::members &members)
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{
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window_buffer buf{out};
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const auto append{[&buf](const json::member &member)
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{
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assert(type(member.first) == json::STRING);
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if(unlikely(!member.second.serial && type(member.second) != json::STRING))
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throw panic
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{
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"Cannot encode non-serial json::member type '%s'",
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reflect(type(member.second))
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};
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consume(buf, size(encode(buf, member.first)));
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consume(buf, copy(buf, "="_sv));
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consume(buf, size(encode(buf, member.second)));
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}};
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auto it(begin(members));
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if(it != end(members))
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{
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append(*it);
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for(++it; it != end(members); ++it)
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{
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consume(buf, copy(buf, "&"_sv));
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append(*it);
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}
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}
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return buf.completed();
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}
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ircd::string_view
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ircd::rfc3986::encode(const mutable_buffer &buf,
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const string_view &url)
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{
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char *out(data(buf));
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karma::generate(out, maxwidth(size(buf))[encoder], url);
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return string_view
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{
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data(buf), size_t(std::distance(data(buf), out))
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};
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}
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ircd::string_view
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ircd::rfc3986::decode(const mutable_buffer &buf,
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const string_view &url)
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try
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{
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const char *start(url.data()), *const stop
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{
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start + std::min(size(url), size(buf))
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};
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mutable_buffer mb
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{
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data(buf), size_t(0)
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};
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qi::parse(start, stop, eps > decoder, mb);
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return string_view
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{
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data(mb), size(mb)
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};
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}
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catch(const qi::expectation_failure<const char *> &e)
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{
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const auto rule
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{
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ircd::string(e.what_)
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};
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throw decoding_error
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{
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"I require a valid urlencoded %s. You sent %zu invalid chars starting with `%s'.",
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between(rule, "<", ">"),
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size_t(e.last - e.first),
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string_view{e.first, e.last}
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};
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}
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ircd::string_view
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ircd::rfc3986::host(const string_view &str)
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try
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{
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static const parser::rule<string_view> literal
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{
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parser::ip6_address
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};
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static const parser::rule<string_view> non_literal
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{
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parser::ip6_address | parser::ip4_address | parser::domain
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};
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static const parser::rule<string_view> rule
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{
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(lit('[') >> raw[literal]) | raw[non_literal]
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,"host"
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};
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string_view ret;
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const char *start(str.data()), *const stop(start + str.size());
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qi::parse(start, stop, eps > rule, ret);
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return ret;
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}
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catch(const qi::expectation_failure<const char *> &e)
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{
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throw expectation_failure<error>{e};
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}
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uint16_t
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ircd::rfc3986::port(const string_view &str)
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try
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{
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static const parser::rule<> literal
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{
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parser::ip6_literal | parser::ip4_literal | parser::domain
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};
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static const parser::rule<> non_literal
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{
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parser::ip6_address
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};
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static const parser::rule<uint16_t> rule
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{
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non_literal | (literal >> -(lit(':') >> parser::port) >> eoi)
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,"port"
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};
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uint16_t ret(0);
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const char *start(str.data()), *const stop(start + str.size());
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qi::parse(start, stop, rule, ret);
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return ret;
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}
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catch(const qi::expectation_failure<const char *> &e)
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{
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throw expectation_failure<error>{e};
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}
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bool
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ircd::rfc3986::valid_remote(std::nothrow_t,
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const string_view &str)
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{
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if(str.size() > DOMAIN_MAX + 6)
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return false;
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return valid(std::nothrow, parser::remote, str);
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}
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void
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ircd::rfc3986::valid_remote(const string_view &str)
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{
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if(str.size() > DOMAIN_MAX + 6)
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throw error
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{
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"String length %zu exceeds maximum of %zu characters",
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size(str),
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DOMAIN_MAX + 6
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};
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valid(parser::remote, str);
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}
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bool
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ircd::rfc3986::valid_domain(std::nothrow_t,
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const string_view &str)
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{
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if(str.size() > DOMAIN_MAX)
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return false;
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return valid(std::nothrow, parser::domain, str);
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}
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void
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ircd::rfc3986::valid_domain(const string_view &str)
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{
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if(str.size() > DOMAIN_MAX)
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throw error
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{
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"String length %zu exceeds maximum of %zu characters",
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size(str),
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DOMAIN_MAX
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};
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valid(parser::domain, str);
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}
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bool
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ircd::rfc3986::valid_host(std::nothrow_t,
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const string_view &str)
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{
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if(str.size() > DOMAIN_MAX)
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return false;
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return valid(std::nothrow, parser::host, str);
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}
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void
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ircd::rfc3986::valid_host(const string_view &str)
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{
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if(str.size() > DOMAIN_MAX)
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throw error
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{
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"String length %zu exceeds maximum of %zu characters",
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size(str),
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DOMAIN_MAX
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};
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valid(parser::host, str);
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}
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bool
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ircd::rfc3986::valid_hostname(std::nothrow_t,
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const string_view &str)
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{
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if(str.size() > HOSTNAME_MAX)
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return false;
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return valid(std::nothrow, parser::hostname, str);
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}
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void
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ircd::rfc3986::valid_hostname(const string_view &str)
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{
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if(str.size() > HOSTNAME_MAX)
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throw error
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{
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"String length %zu exceeds maximum of %zu characters",
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size(str),
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HOSTNAME_MAX
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};
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valid(parser::hostname, str);
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}
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bool
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ircd::rfc3986::valid(std::nothrow_t,
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const parser::rule<> &rule,
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const string_view &str)
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{
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const parser::rule<> only_rule
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{
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rule >> eoi
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};
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const char *start(str.data()), *const stop(start + str.size());
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return qi::parse(start, stop, only_rule);
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}
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void
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ircd::rfc3986::valid(const parser::rule<> &rule,
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const string_view &str)
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try
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{
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const parser::rule<> only_rule
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{
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rule >> eoi
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};
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const char *start(str.data()), *const stop(start + str.size());
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qi::parse(start, stop, eps > only_rule);
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}
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catch(const qi::expectation_failure<const char *> &e)
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{
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throw expectation_failure<error>{e};
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}
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