
This ripples down to LibWeb's HTML and XHR decoders, which therefore become less allocation heavy.
290 lines
12 KiB
C++
290 lines
12 KiB
C++
/*
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* Copyright (c) 2021, Max Wipfli <mail@maxwipfli.ch>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/CharacterTypes.h>
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#include <AK/GenericLexer.h>
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#include <AK/StringView.h>
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#include <AK/Utf8View.h>
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#include <LibTextCodec/Decoder.h>
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#include <LibWeb/DOM/Attribute.h>
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#include <LibWeb/DOM/Document.h>
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#include <LibWeb/HTML/Parser/HTMLEncodingDetection.h>
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#include <ctype.h>
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namespace Web::HTML {
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bool prescan_should_abort(const ByteBuffer& input, const size_t& position)
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{
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return position >= input.size() || position >= 1024;
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}
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bool prescan_is_whitespace_or_slash(const u8& byte)
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{
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return byte == '\t' || byte == '\n' || byte == '\f' || byte == '\r' || byte == ' ' || byte == '/';
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}
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bool prescan_skip_whitespace_and_slashes(const ByteBuffer& input, size_t& position)
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{
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while (!prescan_should_abort(input, position) && (input[position] == '\t' || input[position] == '\n' || input[position] == '\f' || input[position] == '\r' || input[position] == ' ' || input[position] == '/'))
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++position;
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return !prescan_should_abort(input, position);
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}
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// https://html.spec.whatwg.org/multipage/urls-and-fetching.html#algorithm-for-extracting-a-character-encoding-from-a-meta-element
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Optional<StringView> extract_character_encoding_from_meta_element(String const& string)
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{
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// Checking for "charset" is case insensitive, as is getting an encoding.
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// Therefore, stick to lowercase from the start for simplicity.
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auto lowercase_string = string.to_lowercase();
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GenericLexer lexer(lowercase_string);
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for (;;) {
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auto charset_index = lexer.remaining().find("charset");
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if (!charset_index.has_value())
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return {};
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// 7 is the length of "charset".
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lexer.ignore(charset_index.value() + 7);
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lexer.ignore_while([](char c) {
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// FIXME: Not the exact same ASCII whitespace. The spec does not include vertical tab (\v).
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return is_ascii_space(c);
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});
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if (lexer.peek() != '=')
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continue;
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break;
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}
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// Ignore the '='.
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lexer.ignore();
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lexer.ignore_while([](char c) {
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// FIXME: Not the exact same ASCII whitespace. The spec does not include vertical tab (\v).
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return is_ascii_space(c);
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});
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if (lexer.is_eof())
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return {};
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if (lexer.consume_specific('"')) {
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auto matching_double_quote = lexer.remaining().find("\"");
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if (!matching_double_quote.has_value())
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return {};
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auto encoding = lexer.remaining().substring_view(0, matching_double_quote.value());
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return TextCodec::get_standardized_encoding(encoding);
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}
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if (lexer.consume_specific('\'')) {
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auto matching_single_quote = lexer.remaining().find("'");
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if (!matching_single_quote.has_value())
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return {};
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auto encoding = lexer.remaining().substring_view(0, matching_single_quote.value());
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return TextCodec::get_standardized_encoding(encoding);
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}
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auto encoding = lexer.consume_until([](char c) {
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// FIXME: Not the exact same ASCII whitespace. The spec does not include vertical tab (\v).
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return is_ascii_space(c) || c == ';';
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});
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return TextCodec::get_standardized_encoding(encoding);
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}
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RefPtr<DOM::Attribute> prescan_get_attribute(DOM::Document& document, const ByteBuffer& input, size_t& position)
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{
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if (!prescan_skip_whitespace_and_slashes(input, position))
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return {};
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if (input[position] == '>')
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return {};
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StringBuilder attribute_name;
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while (true) {
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if (input[position] == '=' && !attribute_name.is_empty()) {
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++position;
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goto value;
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} else if (input[position] == '\t' || input[position] == '\n' || input[position] == '\f' || input[position] == '\r' || input[position] == ' ')
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goto spaces;
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else if (input[position] == '/' || input[position] == '>')
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return DOM::Attribute::create(document, attribute_name.to_string(), "");
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else
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attribute_name.append_as_lowercase(input[position]);
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++position;
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if (prescan_should_abort(input, position))
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return {};
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}
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spaces:
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if (!prescan_skip_whitespace_and_slashes(input, position))
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return {};
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if (input[position] != '=')
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return DOM::Attribute::create(document, attribute_name.to_string(), "");
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++position;
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value:
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if (!prescan_skip_whitespace_and_slashes(input, position))
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return {};
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StringBuilder attribute_value;
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if (input[position] == '"' || input[position] == '\'') {
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u8 quote_character = input[position];
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++position;
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for (; !prescan_should_abort(input, position); ++position) {
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if (input[position] == quote_character)
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return DOM::Attribute::create(document, attribute_name.to_string(), attribute_value.to_string());
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else
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attribute_value.append_as_lowercase(input[position]);
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}
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return {};
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} else if (input[position] == '>')
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return DOM::Attribute::create(document, attribute_name.to_string(), "");
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else
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attribute_value.append_as_lowercase(input[position]);
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++position;
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if (prescan_should_abort(input, position))
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return {};
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for (; !prescan_should_abort(input, position); ++position) {
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if (input[position] == '\t' || input[position] == '\n' || input[position] == '\f' || input[position] == '\r' || input[position] == ' ' || input[position] == '>')
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return DOM::Attribute::create(document, attribute_name.to_string(), attribute_value.to_string());
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else
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attribute_value.append_as_lowercase(input[position]);
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}
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return {};
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}
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// https://html.spec.whatwg.org/multipage/parsing.html#prescan-a-byte-stream-to-determine-its-encoding
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Optional<String> run_prescan_byte_stream_algorithm(DOM::Document& document, const ByteBuffer& input)
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{
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// https://html.spec.whatwg.org/multipage/parsing.html#prescan-a-byte-stream-to-determine-its-encoding
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// Detects '<?x'
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if (!prescan_should_abort(input, 6)) {
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if (input[0] == 0x3C && input[1] == 0x00 && input[2] == 0x3F && input[3] == 0x00 && input[4] == 0x78 && input[5] == 0x00)
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return "utf-16le";
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if (input[0] == 0x00 && input[1] == 0x3C && input[2] == 0x00 && input[4] == 0x3F && input[5] == 0x00 && input[6] == 0x78)
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return "utf-16be";
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}
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for (size_t position = 0; !prescan_should_abort(input, position); ++position) {
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if (!prescan_should_abort(input, position + 5) && input[position] == '<' && input[position + 1] == '!'
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&& input[position + 2] == '-' && input[position + 3] == '-') {
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position += 2;
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for (; !prescan_should_abort(input, position + 3); ++position) {
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if (input[position] == '-' && input[position + 1] == '-' && input[position + 2] == '>') {
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position += 2;
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break;
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}
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}
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} else if (!prescan_should_abort(input, position + 6)
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&& input[position] == '<'
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&& (input[position + 1] == 'M' || input[position + 1] == 'm')
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&& (input[position + 2] == 'E' || input[position + 2] == 'e')
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&& (input[position + 3] == 'T' || input[position + 3] == 't')
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&& (input[position + 4] == 'A' || input[position + 4] == 'a')
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&& prescan_is_whitespace_or_slash(input[position + 5])) {
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position += 6;
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Vector<String> attribute_list {};
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bool got_pragma = false;
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Optional<bool> need_pragma {};
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Optional<String> charset {};
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while (true) {
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auto attribute = prescan_get_attribute(document, input, position);
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if (!attribute)
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break;
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if (attribute_list.contains_slow(attribute->name()))
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continue;
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auto& attribute_name = attribute->name();
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attribute_list.append(attribute->name());
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if (attribute_name == "http-equiv") {
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got_pragma = attribute->value() == "content-type";
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} else if (attribute_name == "content") {
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auto encoding = extract_character_encoding_from_meta_element(attribute->value());
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if (encoding.has_value() && !charset.has_value()) {
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charset = encoding.value();
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need_pragma = true;
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}
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} else if (attribute_name == "charset") {
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auto maybe_charset = TextCodec::get_standardized_encoding(attribute->value());
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if (maybe_charset.has_value()) {
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charset = Optional<String> { maybe_charset };
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need_pragma = { false };
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}
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}
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}
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if (!need_pragma.has_value() || (need_pragma.value() && !got_pragma) || !charset.has_value())
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continue;
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if (charset.value() == "UTF-16BE/LE")
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return "UTF-8";
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else if (charset.value() == "x-user-defined")
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return "windows-1252";
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else
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return charset.value();
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} else if (!prescan_should_abort(input, position + 3) && input[position] == '<'
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&& ((input[position + 1] == '/' && isalpha(input[position + 2])) || isalpha(input[position + 1]))) {
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position += 2;
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prescan_skip_whitespace_and_slashes(input, position);
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while (prescan_get_attribute(document, input, position)) { };
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} else if (!prescan_should_abort(input, position + 1) && input[position] == '<' && (input[position + 1] == '!' || input[position + 1] == '/' || input[position + 1] == '?')) {
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position += 2;
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while (input[position] != '>') {
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++position;
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if (prescan_should_abort(input, position))
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return {};
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}
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} else {
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// Do nothing.
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}
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}
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return {};
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}
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// https://html.spec.whatwg.org/multipage/parsing.html#determining-the-character-encoding
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String run_encoding_sniffing_algorithm(DOM::Document& document, const ByteBuffer& input)
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{
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if (input.size() >= 2) {
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if (input[0] == 0xFE && input[1] == 0xFF) {
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return "UTF-16BE";
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} else if (input[0] == 0xFF && input[1] == 0xFE) {
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return "UTF-16LE";
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} else if (input.size() >= 3 && input[0] == 0xEF && input[1] == 0xBB && input[2] == 0xBF) {
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return "UTF-8";
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}
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}
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// FIXME: If the user has explicitly instructed the user agent to override the document's character
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// encoding with a specific encoding.
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// FIXME: The user agent may wait for more bytes of the resource to be available, either in this step or
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// at any later step in this algorithm.
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// FIXME: If the transport layer specifies a character encoding, and it is supported.
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auto optional_encoding = run_prescan_byte_stream_algorithm(document, input);
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if (optional_encoding.has_value()) {
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return optional_encoding.value();
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}
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// FIXME: If the HTML parser for which this algorithm is being run is associated with a Document whose browsing context
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// is non-null and a child browsing context.
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// FIXME: If the user agent has information on the likely encoding for this page, e.g. based on the encoding of the page
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// when it was last visited.
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if (!Utf8View(StringView(input)).validate()) {
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// FIXME: As soon as Locale is supported, this should sometimes return a different encoding based on the locale.
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return "windows-1252";
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}
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// NOTE: This is the authoritative place to actually decide on using the default encoding as per the HTML specification.
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// "Otherwise, return an implementation-defined or user-specified default character encoding, [...]."
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return "UTF-8";
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}
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}
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