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43e9dc0500
Rather than using #ifdef blocks, update the fallback IDNA definitions to use weak symbols to match the rest of LibUnicode / LibLocale.
242 lines
11 KiB
C++
242 lines
11 KiB
C++
/*
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* Copyright (c) 2023, Simon Wanner <simon@skyrising.xyz>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Error.h>
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#include <AK/String.h>
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#include <LibUnicode/CharacterTypes.h>
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#include <LibUnicode/IDNA.h>
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#include <LibUnicode/Normalize.h>
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#include <LibUnicode/Punycode.h>
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#if ENABLE_UNICODE_DATA
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# include <LibUnicode/IDNAData.h>
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# include <LibUnicode/UnicodeData.h>
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#endif
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namespace Unicode::IDNA {
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Optional<Mapping> __attribute__((weak)) get_idna_mapping(u32) { return {}; }
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struct ProcessingResult {
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Vector<String> result {};
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bool has_error { false };
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};
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static MappingStatus translate_status(MappingStatus status, UseStd3AsciiRules use_std3_ascii_rules)
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{
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switch (status) {
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case MappingStatus::DisallowedStd3Valid:
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return use_std3_ascii_rules == UseStd3AsciiRules::Yes ? MappingStatus::Disallowed : MappingStatus::Valid;
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case MappingStatus::DisallowedStd3Mapped:
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return use_std3_ascii_rules == UseStd3AsciiRules::Yes ? MappingStatus::Disallowed : MappingStatus::Mapped;
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default:
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return status;
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}
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}
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// https://www.unicode.org/reports/tr46/#Validity_Criteria
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static bool is_valid_label(String const& label, CheckHyphens check_hyphens, CheckBidi check_bidi, CheckJoiners check_joiners, UseStd3AsciiRules use_std3_ascii_rules, TransitionalProcessing transitional_processing)
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{
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// 1. The label must be in Unicode Normalization Form NFC.
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auto normalized = normalize(label, NormalizationForm::NFC);
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if (normalized != label)
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return false;
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size_t position = 0;
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for (auto code_point : label.code_points()) {
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// 2. If CheckHyphens, the label must not contain a U+002D HYPHEN-MINUS character in both the third and fourth positions.
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if (check_hyphens == CheckHyphens::Yes && code_point == '-' && (position == 2 || position == 3))
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return false;
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// 4. The label must not contain a U+002E ( . ) FULL STOP.
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if (code_point == '.')
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return false;
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// 5. The label must not begin with a combining mark, that is: General_Category=Mark.
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static auto general_category_mark = general_category_from_string("Mark"sv);
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if (position == 0 && general_category_mark.has_value() && code_point_has_general_category(code_point, general_category_mark.value()))
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return false;
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// 6. Each code point in the label must only have certain status values according to Section 5, IDNA Mapping Table:
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Optional<Mapping> mapping = get_idna_mapping(code_point);
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if (!mapping.has_value())
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return false;
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auto status = translate_status(mapping->status, use_std3_ascii_rules);
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if (transitional_processing == TransitionalProcessing::Yes) {
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// 1. For Transitional Processing, each value must be valid.
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if (status != MappingStatus::Valid)
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return false;
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} else {
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// 2. For Nontransitional Processing, each value must be either valid or deviation.
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if (status != MappingStatus::Valid && status != MappingStatus::Deviation)
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return false;
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}
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position++;
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}
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// 3. If CheckHyphens, the label must neither begin nor end with a U+002D HYPHEN-MINUS character.
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if (check_hyphens == CheckHyphens::Yes && (label.starts_with('-') || label.ends_with('-')))
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return false;
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// FIXME: 7. If CheckJoiners, the label must satisify the ContextJ rules from Appendix A, in The Unicode Code Points and Internationalized Domain Names for Applications (IDNA) [IDNA2008].
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(void)check_joiners;
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// FIXME: 8. If CheckBidi, and if the domain name is a Bidi domain name, then the label must satisfy all six of the numbered conditions in [IDNA2008] RFC 5893, Section 2.
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(void)check_bidi;
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return true;
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}
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// https://www.unicode.org/reports/tr46/#Processing
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static ErrorOr<ProcessingResult> apply_main_processing_steps(Utf8View domain_name, ToAsciiOptions const& options)
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{
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bool has_error = false;
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StringBuilder mapped;
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// 1. Map. For each code point in the domain_name string, look up the status value in Section 5, IDNA Mapping Table, and take the following actions:
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for (u32 code_point : domain_name) {
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Optional<Mapping> mapping = get_idna_mapping(code_point);
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if (!mapping.has_value()) {
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has_error = true;
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continue;
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}
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switch (translate_status(mapping->status, options.use_std3_ascii_rules)) {
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// disallowed: Leave the code point unchanged in the string, and record that there was an error.
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case MappingStatus::Disallowed:
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TRY(mapped.try_append_code_point(code_point));
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has_error = true;
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break;
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// ignored: Remove the code point from the string. This is equivalent to mapping the code point to an empty string.
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case MappingStatus::Ignored:
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break;
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// mapped: Replace the code point in the string by the value for the mapping in Section 5, IDNA Mapping Table.
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case MappingStatus::Mapped:
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TRY(mapped.try_append(mapping->mapped_to));
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break;
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// deviation:
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case MappingStatus::Deviation:
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if (options.transitional_processing == TransitionalProcessing::Yes) {
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// If Transitional_Processing, replace the code point in the string by the value for the mapping in Section 5, IDNA Mapping Table .
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TRY(mapped.try_append(mapping->mapped_to));
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} else {
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TRY(mapped.try_append_code_point(code_point));
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}
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break;
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// valid: Leave the code point unchanged in the string.
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case MappingStatus::Valid:
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TRY(mapped.try_append_code_point(code_point));
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break;
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default:
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VERIFY_NOT_REACHED();
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}
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}
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// 2. Normalize. Normalize the domain_name string to Unicode Normalization Form C.
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auto normalized = normalize(mapped.string_view(), NormalizationForm::NFC);
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// 3. Break. Break the string into labels at U+002E ( . ) FULL STOP.
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auto labels = TRY(normalized.split('.', SplitBehavior::KeepEmpty));
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// 4. Convert/Validate. For each label in the domain_name string:
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for (auto& label : labels) {
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// If the label starts with “xn--”:
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if (label.starts_with_bytes("xn--"sv)) {
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// 1. Attempt to convert the rest of the label to Unicode according to Punycode [RFC3492]. If that conversion fails, record that there was an error, and continue with the next label.
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// Otherwise replace the original label in the string by the results of the conversion.
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auto punycode = Punycode::decode(label.bytes_as_string_view().substring_view(4));
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if (punycode.is_error()) {
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has_error = true;
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continue;
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}
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label = punycode.release_value();
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// 2. Verify that the label meets the validity criteria in Section 4.1, Validity Criteria for Nontransitional Processing.
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// If any of the validity criteria are not satisfied, record that there was an error.
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if (!is_valid_label(label, options.check_hyphens, options.check_bidi, options.check_joiners, options.use_std3_ascii_rules, TransitionalProcessing::No))
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has_error = true;
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}
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// If the label does not start with “xn--”:
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else {
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// Verify that the label meets the validity criteria in Section 4.1, Validity Criteria for the input Processing choice (Transitional or Nontransitional).
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// If any of the validity criteria are not satisfied, record that there was an error.
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if (!is_valid_label(label, options.check_hyphens, options.check_bidi, options.check_joiners, options.use_std3_ascii_rules, options.transitional_processing))
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has_error = true;
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}
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}
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return ProcessingResult {
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.result = move(labels),
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.has_error = has_error,
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};
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}
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// https://www.unicode.org/reports/tr46/#ToASCII
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ErrorOr<String> to_ascii(Utf8View domain_name, ToAsciiOptions const& options)
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{
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// 1. To the input domain_name, apply the Processing Steps in Section 4, Processing, using the input boolean flags Transitional_Processing, CheckHyphens, CheckBidi, CheckJoiners, and UseSTD3ASCIIRules. This may record an error.
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auto processed = TRY(apply_main_processing_steps(domain_name, options));
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bool has_error = processed.has_error;
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// 2. Break the result into labels at U+002E FULL STOP.
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auto labels = move(processed.result);
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// 3. Convert each label with non-ASCII characters into Punycode [RFC3492], and prefix by “xn--”. This may record an error.
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for (auto& label : labels) {
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auto all_ascii = true;
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for (auto code_point : label.code_points()) {
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if (!is_ascii(code_point)) {
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all_ascii = false;
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break;
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}
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}
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if (!all_ascii) {
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auto punycode = Punycode::encode(label);
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if (punycode.is_error()) {
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has_error = true;
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continue;
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}
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auto punycode_result = punycode.release_value();
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StringBuilder builder;
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TRY(builder.try_append("xn--"sv));
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TRY(builder.try_append(punycode_result));
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label = TRY(builder.to_string());
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}
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}
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// 4. If the VerifyDnsLength flag is true, then verify DNS length restrictions. This may record an error. For more information, see [STD13] and [STD3].
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if (options.verify_dns_length == VerifyDnsLength::Yes) {
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// 1. The length of the domain name, excluding the root label and its dot, is from 1 to 253.
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size_t total_length = 0;
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auto* root_label = !labels.is_empty() && labels.last().is_empty() ? &labels.last() : nullptr;
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for (auto& label : labels) {
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// 2. The length of each label is from 1 to 63.
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auto length = label.bytes().size();
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if (label.is_empty() && &label != root_label)
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return Error::from_string_literal("Invalid empty label");
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if (length > 63)
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return Error::from_string_literal("Label too long");
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total_length += length;
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}
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total_length += labels.size() - (root_label ? 2 : 1);
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if (total_length == 0 || total_length > 253)
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return Error::from_string_literal("Domain too long");
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}
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// 5. If an error was recorded in steps 1-4, then the operation has failed and a failure value is returned. No DNS lookup should be done.
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if (has_error)
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return Error::from_string_literal("Invalid domain name");
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// 6. Otherwise join the labels using U+002E FULL STOP as a separator, and return the result.
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return String::join('.', labels);
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}
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}
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