ladybird/Userland/Libraries/LibJS/Runtime/Intl/LocaleConstructor.cpp
Andreas Kling 3c74dc9f4d LibJS: Segregate GC-allocated objects by type
This patch adds two macros to declare per-type allocators:

- JS_DECLARE_ALLOCATOR(TypeName)
- JS_DEFINE_ALLOCATOR(TypeName)

When used, they add a type-specific CellAllocator that the Heap will
delegate allocation requests to.

The result of this is that GC objects of the same type always end up
within the same HeapBlock, drastically reducing the ability to perform
type confusion attacks.

It also improves HeapBlock utilization, since each block now has cells
sized exactly to the type used within that block. (Previously we only
had a handful of block sizes available, and most GC allocations ended
up with a large amount of slack in their tails.)

There is a small performance hit from this, but I'm sure we can make
up for it elsewhere.

Note that the old size-based allocators still exist, and we fall back
to them for any type that doesn't have its own CellAllocator.
2023-11-19 12:10:31 +01:00

405 lines
18 KiB
C++

/*
* Copyright (c) 2021-2023, Tim Flynn <trflynn89@serenityos.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include <AK/Optional.h>
#include <AK/String.h>
#include <AK/TypeCasts.h>
#include <LibJS/Runtime/AbstractOperations.h>
#include <LibJS/Runtime/GlobalObject.h>
#include <LibJS/Runtime/Intl/AbstractOperations.h>
#include <LibJS/Runtime/Intl/Locale.h>
#include <LibJS/Runtime/Intl/LocaleConstructor.h>
#include <LibLocale/Locale.h>
namespace JS::Intl {
JS_DEFINE_ALLOCATOR(LocaleConstructor);
struct LocaleAndKeys {
String locale;
Optional<String> ca;
Optional<String> co;
Optional<String> fw;
Optional<String> hc;
Optional<String> kf;
Optional<String> kn;
Optional<String> nu;
};
// Note: This is not an AO in the spec. This just serves to abstract very similar steps in ApplyOptionsToTag and the Intl.Locale constructor.
static ThrowCompletionOr<Optional<String>> get_string_option(VM& vm, Object const& options, PropertyKey const& property, Function<bool(StringView)> validator, ReadonlySpan<StringView> values = {})
{
auto option = TRY(get_option(vm, options, property, OptionType::String, values, Empty {}));
if (option.is_undefined())
return OptionalNone {};
if (validator && !validator(option.as_string().utf8_string_view()))
return vm.throw_completion<RangeError>(ErrorType::OptionIsNotValidValue, option, property);
return option.as_string().utf8_string();
}
// 14.1.2 ApplyOptionsToTag ( tag, options ), https://tc39.es/ecma402/#sec-apply-options-to-tag
static ThrowCompletionOr<String> apply_options_to_tag(VM& vm, StringView tag, Object const& options)
{
// 1. Assert: Type(tag) is String.
// 2. Assert: Type(options) is Object.
// 3. If ! IsStructurallyValidLanguageTag(tag) is false, throw a RangeError exception.
auto locale_id = is_structurally_valid_language_tag(tag);
if (!locale_id.has_value())
return vm.throw_completion<RangeError>(ErrorType::IntlInvalidLanguageTag, tag);
// 4. Let language be ? GetOption(options, "language", string, empty, undefined).
// 5. If language is not undefined, then
// a. If language does not match the unicode_language_subtag production, throw a RangeError exception.
auto language = TRY(get_string_option(vm, options, vm.names.language, ::Locale::is_unicode_language_subtag));
// 6. Let script be ? GetOption(options, "script", string, empty, undefined).
// 7. If script is not undefined, then
// a. If script does not match the unicode_script_subtag production, throw a RangeError exception.
auto script = TRY(get_string_option(vm, options, vm.names.script, ::Locale::is_unicode_script_subtag));
// 8. Let region be ? GetOption(options, "region", string, empty, undefined).
// 9. If region is not undefined, then
// a. If region does not match the unicode_region_subtag production, throw a RangeError exception.
auto region = TRY(get_string_option(vm, options, vm.names.region, ::Locale::is_unicode_region_subtag));
// 10. Set tag to ! CanonicalizeUnicodeLocaleId(tag).
auto canonicalized_tag = JS::Intl::canonicalize_unicode_locale_id(*locale_id);
// 11. Assert: tag matches the unicode_locale_id production.
locale_id = ::Locale::parse_unicode_locale_id(canonicalized_tag);
VERIFY(locale_id.has_value());
// 12. Let languageId be the substring of tag corresponding to the unicode_language_id production.
auto& language_id = locale_id->language_id;
// 13. If language is not undefined, then
if (language.has_value()) {
// a. Set languageId to languageId with the substring corresponding to the unicode_language_subtag production replaced by the string language.
language_id.language = language.release_value();
}
// 14. If script is not undefined, then
if (script.has_value()) {
// a. If languageId does not contain a unicode_script_subtag production, then
// i. Set languageId to the string-concatenation of the unicode_language_subtag production of languageId, "-", script, and the rest of languageId.
// b. Else,
// i. Set languageId to languageId with the substring corresponding to the unicode_script_subtag production replaced by the string script.
language_id.script = script.release_value();
}
// 15. If region is not undefined, then
if (region.has_value()) {
// a. If languageId does not contain a unicode_region_subtag production, then
// i. Set languageId to the string-concatenation of the unicode_language_subtag production of languageId, the substring corresponding to "-"` and the `unicode_script_subtag` production if present, `"-", region, and the rest of languageId.
// b. Else,
// i. Set languageId to languageId with the substring corresponding to the unicode_region_subtag production replaced by the string region.
language_id.region = region.release_value();
}
// 16. Set tag to tag with the substring corresponding to the unicode_language_id production replaced by the string languageId.
// 17. Return ! CanonicalizeUnicodeLocaleId(tag).
return JS::Intl::canonicalize_unicode_locale_id(*locale_id);
}
// 14.1.3 ApplyUnicodeExtensionToTag ( tag, options, relevantExtensionKeys ), https://tc39.es/ecma402/#sec-apply-unicode-extension-to-tag
static LocaleAndKeys apply_unicode_extension_to_tag(StringView tag, LocaleAndKeys options, ReadonlySpan<StringView> relevant_extension_keys)
{
// 1. Assert: Type(tag) is String.
// 2. Assert: tag matches the unicode_locale_id production.
auto locale_id = ::Locale::parse_unicode_locale_id(tag);
VERIFY(locale_id.has_value());
Vector<String> attributes;
Vector<::Locale::Keyword> keywords;
// 3. If tag contains a substring that is a Unicode locale extension sequence, then
for (auto& extension : locale_id->extensions) {
if (!extension.has<::Locale::LocaleExtension>())
continue;
// a. Let extension be the String value consisting of the substring of the Unicode locale extension sequence within tag.
// b. Let components be ! UnicodeExtensionComponents(extension).
auto& components = extension.get<::Locale::LocaleExtension>();
// c. Let attributes be components.[[Attributes]].
attributes = move(components.attributes);
// d. Let keywords be components.[[Keywords]].
keywords = move(components.keywords);
break;
}
// 4. Else,
// a. Let attributes be a new empty List.
// b. Let keywords be a new empty List.
auto field_from_key = [](LocaleAndKeys& value, StringView key) -> Optional<String>& {
if (key == "ca"sv)
return value.ca;
if (key == "co"sv)
return value.co;
if (key == "fw"sv)
return value.fw;
if (key == "hc"sv)
return value.hc;
if (key == "kf"sv)
return value.kf;
if (key == "kn"sv)
return value.kn;
if (key == "nu"sv)
return value.nu;
VERIFY_NOT_REACHED();
};
// 5. Let result be a new Record.
LocaleAndKeys result {};
// 6. For each element key of relevantExtensionKeys, do
for (auto const& key : relevant_extension_keys) {
// a. Let value be undefined.
Optional<String> value {};
::Locale::Keyword* entry = nullptr;
// b. If keywords contains an element whose [[Key]] is the same as key, then
if (auto it = keywords.find_if([&](auto const& k) { return key == k.key; }); it != keywords.end()) {
// i. Let entry be the element of keywords whose [[Key]] is the same as key.
entry = &(*it);
// ii. Let value be entry.[[Value]].
value = entry->value;
}
// c. Else,
// i. Let entry be empty.
// d. Assert: options has a field [[<key>]].
// e. Let optionsValue be options.[[<key>]].
auto options_value = field_from_key(options, key);
// f. If optionsValue is not undefined, then
if (options_value.has_value()) {
// i. Assert: Type(optionsValue) is String.
// ii. Let value be optionsValue.
value = options_value.release_value();
// iii. If entry is not empty, then
if (entry != nullptr) {
// 1. Set entry.[[Value]] to value.
entry->value = *value;
}
// iv. Else,
else {
// 1. Append the Record { [[Key]]: key, [[Value]]: value } to keywords.
keywords.append({ MUST(String::from_utf8(key)), *value });
}
}
// g. Set result.[[<key>]] to value.
field_from_key(result, key) = move(value);
}
// 7. Let locale be the String value that is tag with any Unicode locale extension sequences removed.
locale_id->remove_extension_type<::Locale::LocaleExtension>();
auto locale = locale_id->to_string();
// 8. Let newExtension be a Unicode BCP 47 U Extension based on attributes and keywords.
::Locale::LocaleExtension new_extension { move(attributes), move(keywords) };
// 9. If newExtension is not the empty String, then
if (!new_extension.attributes.is_empty() || !new_extension.keywords.is_empty()) {
// a. Let locale be ! InsertUnicodeExtensionAndCanonicalize(locale, newExtension).
locale = insert_unicode_extension_and_canonicalize(locale_id.release_value(), move(new_extension));
}
// 10. Set result.[[locale]] to locale.
result.locale = move(locale);
// 11. Return result.
return result;
}
// 14.1 The Intl.Locale Constructor, https://tc39.es/ecma402/#sec-intl-locale-constructor
LocaleConstructor::LocaleConstructor(Realm& realm)
: NativeFunction(realm.vm().names.Locale.as_string(), realm.intrinsics().function_prototype())
{
}
void LocaleConstructor::initialize(Realm& realm)
{
Base::initialize(realm);
auto& vm = this->vm();
// 14.2.1 Intl.Locale.prototype, https://tc39.es/ecma402/#sec-Intl.Locale.prototype
define_direct_property(vm.names.prototype, realm.intrinsics().intl_locale_prototype(), 0);
define_direct_property(vm.names.length, Value(1), Attribute::Configurable);
}
// 14.1.1 Intl.Locale ( tag [ , options ] ), https://tc39.es/ecma402/#sec-Intl.Locale
ThrowCompletionOr<Value> LocaleConstructor::call()
{
// 1. If NewTarget is undefined, throw a TypeError exception.
return vm().throw_completion<TypeError>(ErrorType::ConstructorWithoutNew, "Intl.Locale");
}
// 14.1.1 Intl.Locale ( tag [ , options ] ), https://tc39.es/ecma402/#sec-Intl.Locale
// 1.2.3 Intl.Locale ( tag [ , options ] ), https://tc39.es/proposal-intl-locale-info/#sec-Intl.Locale
ThrowCompletionOr<NonnullGCPtr<Object>> LocaleConstructor::construct(FunctionObject& new_target)
{
auto& vm = this->vm();
auto tag_value = vm.argument(0);
auto options_value = vm.argument(1);
// 2. Let relevantExtensionKeys be %Locale%.[[RelevantExtensionKeys]].
auto relevant_extension_keys = Locale::relevant_extension_keys();
// 3. Let internalSlotsList be « [[InitializedLocale]], [[Locale]], [[Calendar]], [[Collation]], [[FirstDayOfWeek]], [[HourCycle]], [[NumberingSystem]] ».
// 4. If relevantExtensionKeys contains "kf", then
// a. Append [[CaseFirst]] as the last element of internalSlotsList.
// 5. If relevantExtensionKeys contains "kn", then
// a. Append [[Numeric]] as the last element of internalSlotsList.
// 6. Let locale be ? OrdinaryCreateFromConstructor(NewTarget, "%Locale.prototype%", internalSlotsList).
auto locale = TRY(ordinary_create_from_constructor<Locale>(vm, new_target, &Intrinsics::intl_locale_prototype));
String tag;
// 7. If Type(tag) is not String or Object, throw a TypeError exception.
if (!tag_value.is_string() && !tag_value.is_object())
return vm.throw_completion<TypeError>(ErrorType::NotAnObjectOrString, "tag"sv);
// 8. If Type(tag) is Object and tag has an [[InitializedLocale]] internal slot, then
if (tag_value.is_object() && is<Locale>(tag_value.as_object())) {
// a. Let tag be tag.[[Locale]].
auto const& tag_object = static_cast<Locale const&>(tag_value.as_object());
tag = tag_object.locale();
}
// 9. Else,
else {
// a. Let tag be ? ToString(tag).
tag = TRY(tag_value.to_string(vm));
}
// 10. Set options to ? CoerceOptionsToObject(options).
auto* options = TRY(coerce_options_to_object(vm, options_value));
// 11. Set tag to ? ApplyOptionsToTag(tag, options).
tag = TRY(apply_options_to_tag(vm, tag, *options));
// 12. Let opt be a new Record.
LocaleAndKeys opt {};
// 13. Let calendar be ? GetOption(options, "calendar", string, empty, undefined).
// 14. If calendar is not undefined, then
// a. If calendar does not match the Unicode Locale Identifier type nonterminal, throw a RangeError exception.
// 15. Set opt.[[ca]] to calendar.
opt.ca = TRY(get_string_option(vm, *options, vm.names.calendar, ::Locale::is_type_identifier));
// 16. Let collation be ? GetOption(options, "collation", string, empty, undefined).
// 17. If collation is not undefined, then
// a. If collation does not match the Unicode Locale Identifier type nonterminal, throw a RangeError exception.
// 18. Set opt.[[co]] to collation.
opt.co = TRY(get_string_option(vm, *options, vm.names.collation, ::Locale::is_type_identifier));
// 19. Let fw be ? GetOption(options, "firstDayOfWeek", "string", « "mon", "tue", "wed", "thu", "fri", "sat", "sun", "0", "1", "2", "3", "4", "5", "6", "7" », undefined).
auto first_day_of_week = TRY(get_string_option(vm, *options, vm.names.firstDayOfWeek, nullptr, AK::Array { "mon"sv, "tue"sv, "wed"sv, "thu"sv, "fri"sv, "sat"sv, "sun"sv, "0"sv, "1"sv, "2"sv, "3"sv, "4"sv, "5"sv, "6"sv, "7"sv }));
// 20. Let firstDay be undefined.
Optional<String> first_day_string;
// 21. If fw is not undefined, then
if (first_day_of_week.has_value()) {
// a. Set firstDay to !WeekdayToString(fw).
first_day_string = MUST(String::from_utf8(weekday_to_string(*first_day_of_week)));
}
// 22. Set opt.[[fw]] to firstDay.
opt.fw = move(first_day_string);
// 23. Let hc be ? GetOption(options, "hourCycle", string, « "h11", "h12", "h23", "h24" », undefined).
// 24. Set opt.[[hc]] to hc.
opt.hc = TRY(get_string_option(vm, *options, vm.names.hourCycle, nullptr, AK::Array { "h11"sv, "h12"sv, "h23"sv, "h24"sv }));
// 25. Let kf be ? GetOption(options, "caseFirst", string, « "upper", "lower", "false" », undefined).
// 26. Set opt.[[kf]] to kf.
opt.kf = TRY(get_string_option(vm, *options, vm.names.caseFirst, nullptr, AK::Array { "upper"sv, "lower"sv, "false"sv }));
// 27. Let kn be ? GetOption(options, "numeric", boolean, empty, undefined).
auto kn = TRY(get_option(vm, *options, vm.names.numeric, OptionType::Boolean, {}, Empty {}));
// 28. If kn is not undefined, set kn to ! ToString(kn).
// 29. Set opt.[[kn]] to kn.
if (!kn.is_undefined())
opt.kn = TRY(kn.to_string(vm));
// 30. Let numberingSystem be ? GetOption(options, "numberingSystem", string, empty, undefined).
// 31. If numberingSystem is not undefined, then
// a. If numberingSystem does not match the Unicode Locale Identifier type nonterminal, throw a RangeError exception.
// 32. Set opt.[[nu]] to numberingSystem.
opt.nu = TRY(get_string_option(vm, *options, vm.names.numberingSystem, ::Locale::is_type_identifier));
// 33. Let r be ! ApplyUnicodeExtensionToTag(tag, opt, relevantExtensionKeys).
auto result = apply_unicode_extension_to_tag(tag, move(opt), relevant_extension_keys);
// 34. Set locale.[[Locale]] to r.[[locale]].
locale->set_locale(move(result.locale));
// 35. Set locale.[[Calendar]] to r.[[ca]].
if (result.ca.has_value())
locale->set_calendar(result.ca.release_value());
// 36. Set locale.[[Collation]] to r.[[co]].
if (result.co.has_value())
locale->set_collation(result.co.release_value());
// 37. Let firstDay be undefined.
Optional<u8> first_day_numeric;
// 38. If r.[[fw]] is not undefined, then
if (result.fw.has_value()) {
// a. Set firstDay to ! WeekdayToNumber(r.[[fw]]).
first_day_numeric = weekday_to_number(*result.fw);
}
// 39. Set locale.[[FirstDayOfWeek]] to firstDay.
if (first_day_numeric.has_value())
locale->set_first_day_of_week(*first_day_numeric);
// 40. Set locale.[[HourCycle]] to r.[[hc]].
if (result.hc.has_value())
locale->set_hour_cycle(result.hc.release_value());
// 41. If relevantExtensionKeys contains "kf", then
if (relevant_extension_keys.span().contains_slow("kf"sv)) {
// a. Set locale.[[CaseFirst]] to r.[[kf]].
if (result.kf.has_value())
locale->set_case_first(result.kf.release_value());
}
// 42. If relevantExtensionKeys contains "kn", then
if (relevant_extension_keys.span().contains_slow("kn"sv)) {
// a. If SameValue(r.[[kn]], "true") is true or r.[[kn]] is the empty String, then
if (result.kn.has_value() && (result.kn == "true"sv || result.kn->is_empty())) {
// i. Set locale.[[Numeric]] to true.
locale->set_numeric(true);
}
// b. Else,
else {
// i. Set locale.[[Numeric]] to false.
locale->set_numeric(false);
}
}
// 43. Set locale.[[NumberingSystem]] to r.[[nu]].
if (result.nu.has_value())
locale->set_numbering_system(result.nu.release_value());
// 44. Return locale.
return locale;
}
}